CData Python Connector for Acumatica

Build 26.0.9655

CData Python Connector for Acumatica

Overview

The CData Python Connector for Acumatica allows developers to write Python scripts with connectivity to Acumatica. The connector wraps the complexity of accessing Acumatica data in an interface commonly used by Python connectors to common database systems.

Key Features

  • WHL installation packages that enable installation with "pip install".
  • Supported for Python 3.10 or newer on Windows, Linux, and macOS.
  • Write and execute SQL queries to fetch and update data in Acumatica.
  • Custom dialect class that enables SQLAlchemy 1.3 and 1.4 to use this connector.

Getting Started

See Getting Started to install the connector to your Python distribution and to create a basic connection to Acumatica.

Using the Python Connector/Using from Tools

See Using the Connector for examples of executing basic SELECT, INSERT, UPDATE, DELETE, and EXECUTE queries with the module's provided classes.

See Using from Tools to connect Acumatica data to tools such as Pandas or Petl.

SQLAlchemy ORM

SQLAlchemy can be leveraged to model the tables in Acumatica with mapped classes. See From SQLAlchemy for instructions for configuring the Python connector with SQLAlchemy.

Pandas

Pandas' DataFrames can be used alongside the connector to generate analytical graphics. See From Pandas for a guide.

Schema Discovery

See Schema Discovery to query the provided system tables, which allows users to discover the available tables, views, and stored procedure, alongside additional information about their columns or parameters.

Advanced Features

Advanced Features details additional features supported by the connector, such as defining user defined views, ssl configuration, remoting, caching, firewall/proxy settings, and advanced logging.

SQL Compliance

See SQL Compliance for a syntax reference and code examples outlining the supported SQL.

Data Model

See REST Data Model for the available database objects. This section also provides more detailed information on querying specific Acumatica entities.

Connection String Options

The Connection properties describe the various options that can be used to establish a connection.

CData Python Connector for Acumatica

Getting Started

Connecting to Acumatica

For information on the available WHL files for supported environments, and how to install the appropriate file for your Python distribution, see Package Installation.

For information on the module to import, and how to configure the necessary connection properties in a connection string, see Establishing a Connection.

Other available connection properties can be used to configure other aspects of the connector capabilities.

Python Version Support

The CData Python Connector for Acumatica can be installed and used in Python 3.10 or newer.

Acumatica Version Support

The connector supports Acumatica 2017 R2 and later.

See Also

  • Using the Connector: Establish connections and query Acumatica through Python code.
  • From SQLAlchemy: Use SQLAlchemy to establish a connection with dialect URL, and interact with Acumatica data using mapped classes and Sessions.

CData Python Connector for Acumatica

Package Installation

Dependencies

The Python connectors require that Python 3.10 or newer be installed.

Installation

The CData Python Connector for Acumatica is available as a WHL file for Windows, Linux, and Mac. Each connector is built using the Python 3.10 Stable ABI (indicated by the abi3 tag in the filename), so a single wheel supports any Python 3.10 or newer installation — there is no need to match your exact Python minor version. Use the "pip install" command with the appropriate WHL file for your platform.

Windows:

pip install cdata_acumatica_connector-26.0.9655-cp310-abi3-win_amd64.whl

Linux:

pip install cdata_acumatica_connector-26.0.9655-cp310-abi3-linux_x86_64.whl

macOS:

pip install cdata_acumatica_connector-26.0.9655-cp310-abi3-macosx_12_0_arm64.whl

The macOS wheel supports arm64 (Apple Silicon) architectures only on macOS 12 and newer.

Regardless of the environment, certain distributions might require that the "pip3 install" command be used instead, to differentiate from a Python 2 distribution that might exist already. After installation, confirm whether the connector is successfully installed by running the "pip list" command. If "cdata_acumatica_connector" is present in the list output by the command, then the installation was successful.

Upgrading

When upgrading, "pip install" does not automatically clean up old JRE files. To avoid leftover files that could cause JVM errors, uninstall the previous version before installing the new one.

Licensing

After the installation is complete, a separate step is needed to activate a license for the connector. Among the CData assets in the distribution's site packages, there is an install-license tool that activates this license. From within the distribution's site-packages folder, after navigating to the "cdata/installlic_acumatica" folder, simply use a command like the below to activate the license. Omitting the <key> argument activates a trial license:

  • Windows:
    ./install-license.exe <key>
  • Linux / Mac:
    ./install-license.sh <key>

Sometimes, file access issues may cause pip to install the connector in a fallback file path that is not the python distribution's main or primary site-packages location. This can make it difficult to find where the connector was installed, and from there, the license activator. In that event, this python script below will print out the full file path of the connector's native file. This file will be stored in the mentioned cdata folder, from which the installlic_acumatica folder is trivial to find:

import os
import cdata.acumatica
path = os.path.abspath(cdata.acumatica.__file__)
print(path)

Uninstallation

If the connector needs to be uninstalled for any reason, do so by running the pip uninstall command, as in the example below:

pip uninstall cdata-acumatica-connector

CData Python Connector for Acumatica

Establishing a Connection

The objects available within our connector are accessible from the "cdata.acumatica" module. To use the module's objects directly:

  1. Import the module as follows:
    import cdata.acumatica as mod
  2. To establish a connection string, call the connect() method from the connector object using an appropriate connection string, such as:
    mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

Connecting to Acumatica

In order to connect to the Acumatica data source, you must specify the following connection properties.

  • URL: (Required) The base URL for the Acumatica ERP instance. For example: https://domain.acumatica.com/.
  • Schema: (Optional) There are two schemas that contain different data. The default one is REST, which uses the Acumatica REST Contract-Based API, and the OData schema, which uses the Acumatica OData API. The OData schema is used to query Acumatica Generic Inquiries.
  • Company: (Partially required) Set this to the name of your company or tenant. It is required if Schema is set to OData.
  • EndpointVersion: (Optional) The version of the Web Services endpoint. For example: 24.200.001. This applies only to the REST schema.
  • EndpointName: (Optional) The name of the Web Services endpoint. For example: Default. This applies only to the REST schema.

To find out the EndpointVersion and EndpointName for your Acumatica instance, log into Acumatica in a web browser, and then navigate to the Web Service Endpoints page. If necessary, navigate to this page by editing the web browser URL and replacing ScreenId=00000000 (the homepage) with ScreenId=SM207060. If you are redirected back to the homepage, this means your user does not have the necessary permissions to access web services. Under Endpoints properties get the Endpoint Name and Endpoint Version.

Exposing Generic Inquiries

The connector is capable of discovering generic inquiry data as tables and views. However, you must first extend the Web Services Endpoint to expose them.

The process for exposing generic inquiries is different depending on the schema specified in the Schema connection property.

REST Schema

Generic Inquiries are not exposed via REST by default. To expose them:

  1. Navigate in the Acumatica UI to Integration > Show All > Web Service Endpoints.
  2. Click the "Default" endpoint with the most recent Endpoint Version.
  3. From the available action buttons (in the button bar below the endpoint name at the top of the page), click EXTEND ENDPOINT.
    • You may have to find this action in the full action list, which you can view by clicking the "..." button.
  4. Use Endpoint Name to name the extended endpoint and Endpoint Version to specify the endpoint version you want it to have, then click OK.
  5. On the page for your new extended endpoint, click the + Insert button (above the ENDPOINT tree structure).
  6. Create an entity definition for a new custom object as follows.
    • Name the object in the Object Name field.
    • Leave the Object Type field set to the default -- Top-Level.
    • In the Screen Name field, click the magnifying glass icon to search for the screen associated with your generic inquiry. Select the screen matching the Site Map Title field of your generic inquiry.
      • Ensure that the autopopulated Screen ID field's value matches that of your generic inquiry.
    • Click OK.
  7. Create a new "Results" entity under your custom object as follows:
    • Select the newly created object in the ENDPOINT tree structure, then click the + Insert button.
    • Set Field Name to "Result".
    • Specify a name for this object in Object Name.
    • Set Object Type to Detail.
    • Click OK.
  8. In the ENDPOINT tree structure, expand the node for your custom object, select the new Results object you just created, then click FIELDS > POPULATE.
  9. In the Populate Field window's Object field, select "Result" (the object you just created).
  10. Select the check box for each field you want to expose from the general inquiry, then click OK.
  11. To see the exposed general inquiry in your table list, set EndpointName to the name of your extended endpoint and set InquiryTables to the name of your top-level custom object from step 6 above.

OData Schema

Generic Inquiries are not exposed via OData by default. To expose them, navigate in the Acumatica UI to Customization > Profiles > Generic Inquiry and select the Expose via OData checkbox.

Authenticating to Acumatica

There are two authentication methods available for connecting to Acumatica data source, Basic and OAuth.

User Credentials

Set the AuthScheme to Basic and set the User and Password to your login credentials.

OAuth

OAuth requires the authenticating user to interact with Acumatica using the browser, so all OAuth flows require a custom OAuth application. Also, for all flows, set AuthScheme to OAuth. The following sections assume that you have done so.

Desktop Applications

CData provides an embedded OAuth application that simplifies OAuth desktop Authentication. Alternatively, you can create a custom OAuth application. See Creating a Custom OAuth App for information about creating custom applications and reasons for doing so.

For authentication, the only difference between the two methods is that you must set two additional connection properties when using custom OAuth applications.

After setting the following connection properties, you are ready to connect:

  • InitiateOAuth: Set this to GETANDREFRESH. You can use InitiateOAuth to avoid repeating the OAuth exchange and manually setting the OAuthAccessToken.
  • OAuthClientId: Set this to the client Id in your application settings.
  • OAuthClientSecret: Set this to the client secret in your application settings.
  • CallbackURL: Set this to the Redirect URL in your application settings.

When you connect the connector opens the OAuth endpoint in your default browser. Log in and grant permissions to the application. The connector then completes the OAuth process:

  1. Extracts the access token from the callback URL and authenticates requests.
  2. Obtains a new access token when the old one expires.
  3. Saves OAuth values in OAuthSettingsLocation that persist across connections.

Web Applications

When connecting via a Web application, you need to create and register a custom OAuth application with Acumatica. See Creating a Custom OAuth App for more information about custom applications. You can then use the connector to acquire and manage the OAuth token values.

Get an OAuth Access Token

Set the following connection properties to obtain the OAuthAccessToken:

Then call stored procedures to complete the OAuth exchange:

  1. Call the GetOAuthAuthorizationURL stored procedure. Set the CallbackURL input to the callback URL you specified in your application settings. If necessary, set the Scope parameter to request custom permissions.

    The stored procedure returns the URL to the OAuth endpoint.

  2. Open the URL, log in, and authorize the application. You are redirected back to the callback URL.
  3. Call the GetOAuthAccessToken stored procedure. Set the AuthMode input to WEB. Set the Verifier input to the "code" parameter in the query string of the callback URL. If necessary, set the Scope parameter to request custom permissions.

Once you have obtained the access and refresh tokens, you can connect to data and refresh the OAuth access token either automatically or manually.

Automatic Refresh of the OAuth Access Token

To have the driver automatically refresh the OAuth access token, set the following for the first data connection:

On subsequent data connections, the values for OAuthAccessToken and OAuthRefreshToken are taken from OAuthSettingsLocation.

Manual Refresh of the OAuth Access Token

The only value needed to manually refresh the OAuth access token when connecting to data is the OAuth refresh token.

Use the RefreshOAuthAccessToken stored procedure to manually refresh the OAuthAccessToken after the ExpiresIn parameter value returned by GetOAuthAccessToken has elapsed, then set the following connection properties:

  • OAuthClientId: Set this to the client Id in your application settings.
  • OAuthClientSecret: Set this to the client secret in your application settings.

Then call RefreshOAuthAccessToken with OAuthRefreshToken set to the OAuth refresh token returned by GetOAuthAccessToken. After retrieving the new tokens, open a new connection by setting the OAuthAccessToken property to the value returned by RefreshOAuthAccessToken.

Finally, store the OAuth refresh token so that you can use it to manually refresh the OAuth access token after it has expired.

CData Python Connector for Acumatica

Configuring JNI

Java Native Interface (JNI) is a standard programming interface for writing Java native methods and embedding the Java virtual machine into native applications.

The connector leverages the JNI for improved performance on Mac and Linux.

Configure the Config INI File

The Linux and Mac editions of the Acumatica python connector are configured with an ini file. This file is used to set several parameters, including JNI behavior. This file is to be located in:

{path_to_distribution_site-packages}/cdata/config.ini

Ensure that any configuration properties you set in the ini file fall under the following section name (adjust the 311 number if you are using an different python version from 3.11):

  • For Linux:
    [acumatica.cpython-311-x86_64-linux-gnu.so]
  • For Mac:
    [acumatica.cpython-311-darwin.so]

Configure the JNI connector's behavior by editing the properties in the connector's config.ini file. The connector can be configured as follows:

  • LOGFILE: Set this the same way as the CDATA_LOGFILE envrionment variable below.
  • JAVA_HOME: Configure the path to the JVM library location used to launch the JVM.
  • CLASS_PATH: Use a colon-separated list to configure the paths to the third-party jar libraries.

Configure Environment Variables

Additionally, set the following environment variables:

  • CDATA_JAVA_HOME: Configure the path to the JVM library location used to launch the JVM.
  • CDATA_JVM_OPTIONS: Place JVM options here.
  • CDATA_LOGFILE: Set this in the following scheme: <SCHEME>://<TAG>[|<LEVEL>]

    • SCHEME: The options are STDOUT, FILE.
      • STDOUT: Both the native wrapper and odbc core log into stdout. The Logfile and Verbosity properties can override the behavior of ODBC core.
      • FILE: The native wrapper logs into <FILENAME> while the odbc core logs into <FILENAME>.driver.log. The Logfile and Verbosity properties can override the behavior of ODBC core.
    • TAG
      • For STDOUT, set this to 1. For FILE, set this to the filename.
    • LEVEL
      • Set to one of: FATAL | ERROR | WARNING | INFO | DEBUG

The following are some examples of this syntax:

  • STDOUT://1|DEBUG
  • FILE:///tmp/my_py.log|DEBUG

Custom Logger

The Python connector supports a custom logging mechanism for redirecting log output to any destination, such as a cloud storage service or logging framework. Use setCustomLoggerFactory() to register a factory function that creates a logger instance for each connection.

The factory function receives the context string from the Logfile connection property (the portion after CUSTOM://) and must return an object with a writeLog(verbosity, message) method.

To enable custom logging:

  1. Call setCustomLoggerFactory() with your factory function before opening connections.
  2. Set Logfile to CUSTOM:// followed by a context string to identify the connection.
  3. Set Verbosity to the desired log level.

The following example demonstrates a custom logger factory that creates a separate logger instance per connection:

import cdata.acumatica as mod
import time

class MyLogger:
    def __init__(self, loggerId):
        self.loggerId = loggerId
    def writeLog(self, verbosity, message):
        print("[MyLogger " + self.loggerId + "] " + message)

def createLogger(context):
    return MyLogger(context[len("MyLoggerId="):])

mod.setCustomLoggerFactory(createLogger)

conn1 = mod.connect("...;Logfile=CUSTOM://MyLoggerId=1;Verbosity=2;")
# do something with conn1
time.sleep(1)  # Wait for logs to flush from conn1

conn2 = mod.connect("...;Logfile=CUSTOM://MyLoggerId=2;Verbosity=2;")
# do something with conn2
time.sleep(1)  # Wait for logs to flush from conn2

CData Python Connector for Acumatica

Creating a Custom OAuth App

Acumatica uses the OAuth authentication standard, which requires the authenticating user to interact with Acumatica via the browser. The connector facilitates the OAuth exchange in various ways as described below.

Register an OAuth Application

You can follow the procedure below to obtain the OAuth client credentials, the OAuthClientId and OAuthClientSecret.

  1. You use the Connected Applications (SM303010) form to register an OAuth 2.0 or OpenID Connect client application. To register a client application in Acumatica ERP, you need to know the OAuth 2.0 flow that this application implements.
  2. When you are registering the client application, you have to be logged in to the tenant whose data the client application needs to access.
  3. On the System tab, click Integration. In the navigation pane, navigate to Configure > Connected Applications.
  4. In the Client Name box, type the name of the registered application.
  5. In the OAuth 2.0 Flow box, select Authorization Code.
  6. On the Secrets tab, do the following for each client secret you want to add:
    1. On the tab toolbar, click Add Shared Secret. The Add Shared Secret dialog box opens.
    2. In the Description box, type the description of the shared secret.
    3. Optional: In the Expires On (UTC) box, enter the date and time on which the secret expires.
    4. Copy and save the value that is displayed in the Value box. The client application should use this client secret for authentication in Acumatica ERP.
  7. Click OK to save the secret and close the dialog box.
  8. On the Redirect URIs tab, do the following for each redirect URI you want to add: On the tab toolbar, click Add Row. In the Redirect URI column of the new row, type the exact redirect URI to which Acumatica ERP should redirect the client application after the client application has been authorized. The redirect URI must be absolute and must not have the fragment part (the part preceded with #). On the form toolbar, click Save. Notice that the client ID has been generated in the Client ID box. The client application should use this client ID along with the client secret for authentication in Acumatica ERP.

Authenticate to Acumatica from a Desktop Application

In order to obtain a token, the client application needs to call the Oauth2 endpoint using various grants depending on the authentication scenarios required. After setting the following connection properties, you are ready to connect:

When you connect, the connector completes the OAuth process:
  1. Extracts the access token from the CallbackURL.
  2. Obtains a new access token when the old one expires.
  3. Saves OAuth values along with geolocation in OAuthSettingsLocation to be persisted across connections.

Authenticate to Acumatica from a Web Application

In the Web OAuth flow, set the following connection properties and follow the steps below to call stored procedures to obtain the access token.

When connecting via a Web application, or if the connector is not authorized to open a browser window, you need to exchange a verifier code for the OAuthAccessToken.

  1. Call GetOAuthAuthorizationURL. The stored procedure returns the URL to the OAuth endpoint.
  2. Go to that URL and log in to authorize the application. Afterwards, you are redirected back to the callback URL.

    When you are redirected, the callback URL contains the code query string parameter.

  3. Set the following parameters and call GetOAuthAccessToken:

    NameValue
    AuthModeWEB
    VerifierSet this to the verifier code.

To make requests to Acumatica, set OAuthAccessToken to the values returned in step 3.

To automatically refresh the token when it expires, set InitiateOAuth to REFRESH.

CData Python Connector for Acumatica

Acumatica Optimization

Acumatica has introduced an optimization in version 3 of the Contract Based API. When multiple records are retrieved from the Acumatica ERP through an endpoint, the system tries to optimize the retrieval of the records and obtain all needed records in one request to the database. If the optimization fails, the system returns an error, specifying the entities or fields that caused the failure of the optimized request. Mostly the Navigation Views break the optimization because Acumatica is trying to get data from the linked tables, because of this the SELECT * queries from Navigation Views without specifying the key of the parent table are not possible. Our drivers tries to remove the columns that break the optimization from the SELECT * queries.

Some of the Views that break the optimization when selected without specifying the keyfields are JournalVoucher_Details. In order to qyery the JournalVoucher_Details the ParentBatchNbr should be specified.

 SELECT * FROM JournalVoucher_Details where ParentBatchNbr = '0001'

The view can be queried by geting the parent key field in this case ParentBatchNbr from the parent table JournalVoucher.

 SELECT * FROM JournalVoucher_Details where ParentBatchNbr IN (SELECT BatchNbr FROM JournalVoucher)

More information on how to bypass the Acumatica optimization can be found here: Limitations.

CData Python Connector for Acumatica

Changelog

General Changes

DateVersionSourceCategoryTypeDescription
2026-05-2726.0.9643GeneralConnectionRemoved
  • Removed the deprecated ReplaceInvalidTypesWithNull connection property. Use the ReplaceInvalidValuesWithNull property instead.
2026-05-2226.0.9638PythonRemoved
  • Remove support for Intel x64 architecture on macOS
2026-05-0726.0.9623GeneralData ModelAdded
  • Added the ColumnCapabilities column to the sys_tablecolumns system table. This column is a bit mask denoting the column's write capabilities.
2026-05-0726.0.9623PythonChanged
  • Updated embedded JRE to jre-17.0.19+10 (Linux x64 / MacOs x64).
2026-04-1526.0.9601GeneralQuery ExecChanged
  • String comparisons using GREATER, LESS, and CONTAINS operators are now case-insensitive by default.
2026-04-0826.0.9594AcumaticaSecurityChanged
  • TLS 1.3 is now supported by default for HTTP connections.
2026-04-0126.0.9587AcumaticaData ModelChanged
  • When IncludeLinkedColumns is enabled, additional "Linked" columns are exposed. Previously, these were described as foreign key references, but they represent entire related rows. These columns no longer return reference values.
2026-01-1325.0.9509GeneralAdded
  • Added support for the REGEXP_REPLACE() string function.
2025-12-2125.0.9486PythonAdded
  • Added support for custom loggers in Python connectors on Linux and macOS.
2025-12-0525.0.9470GeneralAdded
  • Added support for the INSERT INTO SELECT statement, with driver-side execution for providers that do not support the operation natively.
2025-10-3025.0.9434PythonChanged
  • Updated embedded JRE to jre-17.0.17+10 (Linux x64 / MacOs x64).
2025-10-0625.0.9410GeneralAdded
  • Support for parsing datetime formats using ".S" and ",S" for milliseconds and nanoseconds.
2025-09-1225.0.9386GeneralAdded
  • Added the IsInsertable, IsUpdateable, and IsDeleteable columns to the sys_tables table.
2025-09-1025.0.9384GeneralChanged
  • All columns in statically defined Views are now reported as read-only.
2025-09-0325.0.9377GeneralChanged
  • Corrected the behavior when IN criteria with NULL values are used in the projection part. It now returns NULL instead of 0. For example, "NULL IN (1,2)" returns "NULL".
2025-09-0125.0.9375GeneralAdded
  • Added support for using the CAST function with infinity values. This function can cast "inf" and "-inf" to DOUBLE, FLOAT, or REAL.
2025-08-2125.0.9364GeneralChanged
  • Report behavior change:
    • Fixed inconsistent string value comparisons in non-table queries.
    • For example, "SELECT 'A' = 'a'" previously returned false, but it now returns true.
2025-08-1325.0.9356GeneralChanged
  • Changed the maximum number of pages held in memory from 15 to 5 for the page providers to decrease heap usage.
2025-07-1825.0.9330AcumaticaRemoved
  • Removed the OAuthGrantType property. The grant type is now set implicitly through the 'AuthScheme' property. For example, you can use the 'OAuthPassword' AuthScheme instead of AuthScheme=OAuth with OAuthGrantType=Password.
2025-07-1025.0.9322AcumaticaAdded
  • Added the Scope connection property.
2025-07-0725.0.9319PythonRemoved
  • Removed the 32-bit version of Windows Python.
2025-07-0425.0.9316AcumaticaRemoved
  • Removed the UseIdURL connection property because it has been deprecated.# [9307]
2025-07-0425.0.9316AcumaticaChangedIn the REST schema, the 'Id' primary key is now only pushed if the 'NoteId' field is present.
2025-07-0225.0.9314PythonRemoved
  • Removed support for Python 3.9.
2025-06-2525.0.9307GeneralRemoved
  • Removed the "ADLS Gen 1" value from the ConnectionType property.
2025-06-2525.0.9307PythonAdded
  • Added support for Python 3.13 in Windows, Linux, and Mac editions.
2025-06-2525.0.9307PythonRemoved
  • Removed support for Python 3.8 as it is no longer supported.
2025-06-2425.0.9306AcumaticaRemoved
  • Removed the "BatchSize" connection property.
2025-06-2025.0.9302GeneralAdded
  • Created the following functions:
    • TEXT_ENCODE: encodes a string into a different charset (UTF8 → UTF7 and returns a binary array as the result).
    • TEXT_DECODE: takes a binary array and decodes it back into a string when provided the charset.
    • BASE64_ENCODE: takes a binary array and encodes it as a base64 string (varchar).
    • BASE64_DECODE: takes a base 64-encoded string and decodes it into a binary array.
2025-06-1825.0.9300GeneralChanged
  • The internal code for exception handling has been refactored. Exception messages returned during certain error conditions may now have different wording or formatting.
2025-06-1225.0.9294AcumaticaChanged
  • In both the Shipment and SalesOrders tables, changed the name of the Archived column to IncludeArchived, and marked it as a pseudo-column instead of a mirror column.
2025-06-1125.0.9293AcumaticaChanged
  • Changed the datatype of UUID fields from VARCHAR to UUID.
2025-06-0425.0.9286AcumaticaChanged
  • The default value for the EndpointVersion connection property has been updated to 24.200.001.
2025-05-2725.0.9278GeneralRemoved
  • Removed the "Proprietary" enum option from ProxyAuthscheme.
2025-05-1225.0.9263PythonChanged
  • Updated embedded JRE to jre-17.0.15+6 (Linux x64 / MacOS x64) and jre-17.0.15+6 (MacOS aarch64).
2025-03-2725.0.9217AcumaticaAdded
  • In tables/views whose corresponding OData entity is marked with hasStream:true in its API metadata responses, the "MediaReadLink" column is added to the table/view metadata. When present, this column displays the link to the OData entity's media stream.
2025-03-1325.0.9203AcumaticaAdded
  • Added Customer as a composite key to the CustomerLocation table, along with the existing key, LocationID, which is now marked as KEY.
  • Added a new ParentCustomer column to the following child tables in the navigation view of the CustomerLocation table: CustomerLocation_files.ParentCustomer, CustomerLocation_LocationContact.ParentCustomer, and CustomerLocation_RoleAssignments.ParentCustomer.
2025-03-1325.0.9203AcumaticaChanged
  • TaxReportingSettings.TaxAgency is no longer designated as a primary key. The column remains available but is no longer marked as KEY.
2025-03-1325.0.9203AcumaticaRemoved
  • The ParentTaxAgency column has been removed from the child tables of TaxReportingSettings: TaxReportingSettings_files and TaxReportingSettings_ReportingGroups.
2025-02-1524.0.9177GeneralAdded
  • Added support for converting unsigned integer types to the nearest signed data type that has enough precision to hold the unsigned value.This is done for JDBC only because it does not have support for unsigned data types.
2024-11-2724.0.9097GeneralAdded
  • Added ThreadId to LogModule output. Logfile lines now include the Thread ID associated with the action being performed.
2024-09-2324.0.9032AcumaticaAdded
  • Added support for ODataV4 using the Schema connection property. The V4 schema exposes Data Access Class (DAC) objects, while the existing V3 schema continues to expose generic inquiries.
2024-06-0524.0.8922PythonAdded
  • Added support for Python 3.12.
2024-06-0524.0.8922AcumaticaRemoved
  • Removed the Auto AuthScheme option. The default value for the AuthScheme connection property is now Basic.
2024-05-0924.0.8895GeneralChanged
  • The ROUND function previously did not accept negative precision values. That feature has now been restored.
2024-03-1523.0.8840GeneralAdded
  • Created a new SQL function called STRING_COMPARE that provides java's String.compare() ability to SQL queries. Returns a number representative of the compared value of two strings
2024-03-0523.0.8830AcumaticaAdded
  • Added the Id column in all tables.
  • Added the ParentGUID column for all the views.
2023-11-2923.0.8733GeneralChanged
  • The ROUND function doesn't accept the negative precision values anymore.
2023-11-2923.0.8733GeneralChanged
  • The returning types of the FDMonth, FDQuarter, FDWeek, LDMonth, LDQuarter, LDWeek functions are changed from Timestamp to Date.
  • The return type of the ABS function will be consistent with the parameter value type.
2023-11-2823.0.8732GeneralAdded
  • Added the HMACSHA256 formatter to allow for secrets to be decoded if it is in base64 format
2023-11-0323.0.8707AcumaticaAdded
  • Added Archived column for SalesOrder and Shipment tables used to retrieve archived data, for the Rest schema.
2023-08-2923.0.8641PythonAdded
  • Added support for SQLAlchemy 2.0.
2023-06-2023.0.8571GeneralAdded
  • Added the new sys_lastresultinfo system table.
2023-05-1923.0.8539PythonAdded
  • Added support for Python 3.11 on Windows, Linux and Mac.
2023-05-1623.0.8536PythonRemoved
  • Removed support for Python 3.7 on Windows and Linux
2023-04-2523.0.8515GeneralRemoved
  • Removed support for the SELECT INTO CSV statement. The core code doesn't support it anymore.
2022-12-1422.0.8383GeneralChanged
  • Added the Default column to the sys_procedureparameters table.
2022-12-0922.0.8378AcumaticaAdded
  • Added the hidden property DisableCompositeKey, which disables the composite keys for the OData schema.
2022-11-1522.0.8354PythonChanged
  • Updated embedded JRE to jre8u345-b01(Linux x64 / MacOS x64) and jre-17.0.5+8(MacOS aarch64).
2022-09-3022.0.8308GeneralChanged
  • Added the IsPath column to the sys_procedureparameters table.
2022-09-0922.0.8287AcumaticaAdded
  • Added support for Output streams in CreateSchema via the FileStream parameter.
2022-08-3122.0.8278AcumaticaAdded
  • Added support for Output streams in GetAttachment via the FileStream parameter.
2022-05-1822.0.8173PythonAdded
  • Added support for Python 3.10 on Windows, Linux, and Mac
  • Added support for Python 3.9 on Mac
  • Added support for Mac M1
2022-05-1822.0.8173PythonRemoved
  • Removed support for Python 3.6 on Windows and Linux
2022-02-2821.0.8094AcumaticaChanged
  • Changed the default value of the IncludeCustomFields property to true.
2021-09-0221.0.7915GeneralAdded
  • Added support for the STRING_SPLIT table-valued function in the CROSS APPLY clause.
2021-09-0121.0.7914AcumaticaAdded
  • The linked and detail entities are exposed as aggregate columns with the 'Linked' prefix. If no Primary Key is specified in the WHERE clause criteria, the linked aggregate column values will be null. The driver will request and return them only when specifying either a single parent Primary Key value or a list of Primary Key values using either the = or IN condition
2021-08-1721.0.7899AcumaticaChanged
  • Changed the ExecuteAction Stored Procedure to accept either a JSON object or a temporary table for the EntityRecord input, instead of a comma separated list of entity field and value pairs. Also, the Parameters input accepts a JSON object instead of a comma separated list of entity field and value pairs.
2021-08-0721.0.7889GeneralChanged
  • Added the KeySeq column to the sys_foreignkeys table.
2021-08-0621.0.7888GeneralChanged
  • Added the new sys_primarykeys system table.
2021-07-2321.0.7874GeneralChanged
  • Updated the Literal Function Names for relative date/datetime functions. Previously, relative date/datetime functions resolved to a different value when used in the projection as opposed to the predicate. For example: SELECT LAST_MONTH() AS lm, Col FROM Table WHERE Col > LAST_MONTH(). Formerly, the two LAST_MONTH() methods would resolve to different datetimes. Now, they will match.
  • As a replacement for the previous behavior, the relative date/datetime functions in the criteria may have an 'L' appended to them. For example: WHERE col > L_LAST_MONTH(). This will continue to resolve to the same values that were previously calculated in the criteria. Note that the "L_" prefix will only work in the predicate - it not available for the projection.
2021-04-2521.0.7785GeneralAdded
  • Added support for handling client side formulas during insert / update. For example: UPDATE Table SET Col1 = CONCAT(Col1, " - ", Col2) WHERE Col2 LIKE 'A%'
2021-04-2321.0.7783GeneralChanged
  • Updated how display sizes are determined for varchar primary key and foreign key columns so they will match the reported length of the column.
2021-04-1621.0.7776GeneralAdded
  • Non-conditional updates between two columns is now available to all drivers. For example: UPDATE Table SET Col1=Col2
2021-04-1621.0.7776GeneralChanged
  • Reduced the length to 255 for varchar primary key and foreign key columns.
2021-04-1621.0.7776GeneralChanged
  • Updated implicit and metadata caching to improve performance and support for multiple connections. Old metadata caches are not compatible - you need to generate new metadata caches if you are currently using CacheMetadata.
2021-04-1621.0.7776GeneralChanged
  • Updated index naming convention to avoid duplicates.
2020-05-2220.0.7447AcumaticaChanged
  • Added the EndpointName and EndpointVersion connection properties. This changes how the Url connection property is defined when connecting to the data source. From now on, the Url connection property should be set to the Acumatica ERP instance Url (ex. https://domain.acumatica.com/). The EndpointVersion should be set to the version of the Web Services endpoint (ex. 17.200.001), and lastly the EndpointName should be set to name of the Web Services endpoint (ex. Default).

CData Python Connector for Acumatica

Using the Connector

This section provides a walk-through for writing Acumatica data access code in Python script.

For more information on the available data source entities and how to query them with SQL, see Data Model. For the SQL syntax, see SQL Compliance.

Connecting from Code

For information on how to deploy the connector and configure the connection to Acumatica, see Package Installation and Establishing a Connection.

For information on how to connect with the acumatica.connector module and its related classes, see Connecting.

Executing SQL

The connection's cursor object is used to directly execute SQL queries. For information on how to execute SELECT statements and process the returned result sets, see Querying Data. For information on to modify the data in Acumatica with INSERT, UPDATE, and DELETE statements, see Modifying Data .

Executing Stored Procedures

You can call stored procedures by using the EXECUTE statement. For further information, see Calling Stored Procedures.

CData Python Connector for Acumatica

Connecting

Connecting with the cdata.acumatica Module:

The connector's module is used directly to establish a connection with the data source. It does this by using a connection string as its argument. For example:
import cdata.acumatica as mod
conn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

Once the connection is created, you can use it to execute subsequent SQL queries.

CData Python Connector for Acumatica

Querying Data

After connecting as described in Connecting, you can use the open connection to execute SQL statements.

Executing Queries

To execute SQL statements that return data, use the execute() method. Once a query is executed, the result set is fetched from the cursor. This result set can then be iterated over to process the records individually.

For example:

cur = conn.execute("SELECT Id, location_displayName FROM Events")
rs = cur.fetchall()
for row in rs:
	print(row)

Parameterized Queries

Various Python collections, such as arrays and tuples, can act as additional arguments for the execute() method. This enables you to parameterize the queries executed and help to prevent SQL Injection.

For example:

cmd = "SELECT Id, location_displayName FROM Events WHERE Id = ?"
params = ["Jq74mCczmFXk1tC10GB"]
cur = conn.execute(cmd, params)
rs = cur.fetchall()
for row in rs:
	print(row)

CData Python Connector for Acumatica

Modifying Data

The connection is also used to issue INSERT, UPDATE, and DELETE commands to the data source. Parameters can be used with these statements if desired.

Note that the connector does not support transactions. As with normal write operations, all SQL statements executed by this connector affect the data source immediately. Call the connection's commit() method following the execution.

Insert

The following example adds a new record to the table:
cmd = "INSERT INTO Events (Id, location_displayName) VALUES (?, ?)"
params = ["Town Hall Grille", "Zenburger"]
cur = conn.execute(cmd, params)
print("Records affected: ", cur.rowcount)

Update

The following example modifies an existing record in the table:
cmd = "UPDATE Events SET location_displayName = ? WHERE Id = ?"
params = ["Zenburger", "Jq74mCczmFXk1tC10GB"]
cur = conn.execute(cmd, params)
print("Records affected: ", cur.rowcount)

Delete

The following example removes an existing record from the table:

cmd = "DELETE FROM Events WHERE Id = ?"
params = ["Jq74mCczmFXk1tC10GB"]
cur = conn.execute(cmd, params)
print("Records affected: ", cur.rowcount)

CData Python Connector for Acumatica

Calling Stored Procedures

You can execute stored procedures using either the execute() or callproc() method of the connection.

Calling Stored Procedures Using Execute()

When you call stored procedures by issuing EXECUTE commands, the stored procedure arguments are parameterized. For example:
cmd = "EXECUTE SendMail MessageId = ?"
params = ["abc123"]
conn.execute(cmd, params)

Calling Stored Procedures Using Callproc()

When you call stored procedured by issuing the callproc() method, the stored procedure arguments are a procedure name and a list of parameters. For example:
cur = conn.cursor()
params = ["abc123"]
cur.callproc("SendMail", params)

CData Python Connector for Acumatica

Using from Tools

The connector is integrated with other tools and packages within Python.

Python Integration Guides

The following sections show how to create and use connections with the connector in common packages in Python:

Complete List of Acumatica Integration Quickstarts

For information on connecting from other applications, see Acumatica integration guides.

CData Python Connector for Acumatica

From SQLAlchemy

The CData Python Connector for Acumatica includes a Dialect class that enables integration with SQLAlchemy. Bear in mind that several aspects of connector functionality are not currently supported in SQLAlchemy 2.0 or above. If necessary, downgrade SQLAlchemy to version 1.4 or 1.3 before using this connector.

The following sections detail various aspects of this integration:

Connecting From SQLAlchemy

To construct a URL with which SQLAlchemy loads and uses the appropriate connector automatically, see Connecting

Reflecting Metadata With SQLAlchemy

To learn how to model Acumatica tables with mapped classes, see Reflecting Metadata.

Querying Data From SQLAlchemy

To learn how to use mapped classes to query the associated tables, see Querying Data.

Modifying Data From SQLAlchemy

The connector provides INSERT/UPDATE/DELETE functionality in SQLAlchemy. To learn how to call the session's execute() method to affect the data in the data source, see Modifying Data.

CData Python Connector for Acumatica

Connecting

Connecting With a Dialect URL

Establishing a connection using SQLAlchemy requires a specific URL format. For this connector, you can create the engine using either of the following URL formats:

Format 1


from sqlalchemy import create_engine
engine = create_engine("acumatica:///?Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

Format 2


from sqlalchemy import create_engine
engine = create_engine("acumatica://User:Password@/?URL=https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

For SQLAlchemy 2.0, the dialect name is acumatica_2. To establish a connection, use the following URL format:

from sqlalchemy import create_engine
engine = create_engine("acumatica_2:///?Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

CData Python Connector for Acumatica

Reflecting Metadata

SQLAlchemy can act as an Object-relational Map (ORM). This enables you to treat records of a database table as instantiable records. To leverage this functionality, you must reflect the underlying metadata in one of the following ways.

Note: The following examples employ SQLAlchemy 1.4.

Modeling Data Using a Mapping Class

Use "sqlalchemy.ext.declarative.declarative_base" to declare a mapping class for the table you wish to model in the ORM. A known table in the data model is modeled either partially or completely, as shown in the following example:
from sqlalchemy.ext.declarative import declarative_base
Base = declarative_base()
class Events(Base):
	__tablename__ = "Events"
	Id = Column(String, primary_key=True)
	Id = Column(String)
	location_displayName = Column(String)

Automatically Reflecting Metadata

Rather than mapping tables manually, SQLAlchemy can discover the metadata for one or more tables automatically. To accomplish this across the entire data model, use automap_base:
from sqlalchemy import MetaData
from sqlalchemy.ext.automap import automap_base
meta = MetaData()
abase = automap_base(metadata=meta)
abase.prepare(autoload_with=engine)
Events = abase.classes.Events

You can also reflect a single table with an inspector. When reflecting this way, providing a list of specific columns to map is optional:

from sqlalchemy import MetaData, Table
from sqlalchemy import inspect
meta = MetaData()
insp = inspect(engine)
Events_table = Table("Events", meta)
insp.reflect_table(Events_table, ["Id","location_displayName"])

CData Python Connector for Acumatica

Querying Data

After you use the steps in Connecting to connect, and use one of the methods in Reflecting Metadata to reflect some of the metadata, you can use a session object to query data.

Querying Data Using the Query Method

If the mapping class has been prepared, use it with a session object to query the data source. After binding the engine to the session, provide the mapping class to the session's query method.

For example:

engine = create_engine("acumatica:///?Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")
factory = sessionmaker(bind=engine)
session = factory()
for instance in session.query(Events).filter_by(Id="Jq74mCczmFXk1tC10GB"):
	print("Id: ", instance.Id)
	print("Id: ", instance.Id)
	print("location_displayName: ", instance.location_displayName)
	print("---------")

Querying Data Using the Execute Method

The session object can also run the query with the execute() method alongside the appropriate Table object. Assuming you have an active session, the following is just as viable:
Events_table = Events.metadata.tables["Events"]
for instance in session.execute(Events_table.select().where(Events_table.c.Id == "Jq74mCczmFXk1tC10GB")):
	print("Id: ", instance.Id)
	print("FullName: ", instance.Name)
	print("City: ", instance.BillingCity)
	print("---------")

CData Python Connector for Acumatica

Executing JOINs

Implicit Joining

If mapped classes of related Acumatica objects have a singular foreign key relationship, the classes are implicitly joined. After importing the necessary objects, a relationship is established between your two mapped classes, as in the example below:
from sqlalchemy.ext.declarative import declarative_base
from sqlalchemy import Column, String, Integer, DateTime, ForeignKey
from sqlalchemy.orm import sessionmaker, relationship

Base = declarative_base()
class Contact(Base):
	__tablename__ = "Contact"
	Id = Column(Integer, primary_key=True)
	Name = Column(String)
	Email = Column(String)
	BirthDate = Column(DateTime)
	AccountId = Column(String, ForeignKey("Account.Id"))
	Account_Link = relationship("Account", back_populates="Contact_Link")

class Account(Base):
	__tablename__ = "Account"
	Id = Column(String, primary_key=True)
	Name = Column(String)
	BillingCity = Column(String)
	NumberOfEmployees = Column(Integer)
	Contact_Link = relationship("Contact", order_by=Contact.Id, back_populates="Account_Link")

Once the relationship is established, the tables are queried simultaneously using the session's query() method. For example:

rs = session.query(Account, Contact).filter(Account.Id == Contact.AccountId)
for Ac, Ct in rs:
  print("AccountId: ", Ac.Id)
  print("AccountName: ", Ac.Name)
  print("ContactId: ", Ct.Id)
  print("ContactName: ", Ct.Name)

Other Join Forms

In situations where mapped classes have either no foreign keys or multiple foreign keys, you may need different forms of the JOIN query to accommodate them. Using the earlier classes as examples, the following JOIN queries are possible as well:
  • Explicit condition (necessary if there are no foreign keys in your mapped classes):
    rs = session.query(Account, Contact).join(Contact, Account.Id == Contact.AccountId)
    for Ac, Ct in rs:
  • Left-to-right relationship:
    rs = session.query(Account, Contact).join(Account.Contact_Link)
    for Ac, Ct in rs:
  • Left-to-right relationship with explicit target:
    rs = session.query(Account, Contact).join(Contact, Account.Contact_Link)
    for Ac, Ct in rs:
  • String form of a left-to-right relationship:
    rs = session.query(Account, Contact).join("Contact_Link")
    for Ac, Ct in rs:

CData Python Connector for Acumatica

Other SQL Clauses

SQLAlchemy ORM also exposes support for other clauses in SQL, such as ORDER BY, GROUP BY, LIMIT, and OFFSET. All of these are supported by this connector:

ORDER BY

The following example sorts by a specified column using the session object's query() method:
rs = session.query(Events).order_by(Events.Reminder)
for instance in rs:
	print("Id: ", instance.Id)
	print("Id: ", instance.Id)
	print("location_displayName: ", instance.location_displayName)
	print("---------")

You can also use the session object's execute() method perform an ORDER BY. For example:

rs = session.execute(Events_table.select().order_by(Events_table.c.Reminder))
for instance in rs:

GROUP BY

The following example uses the session object's query() method to group records with a specified column:
rs = session.query(func.count(Events.Id).label("CustomCount"), Events.Id).group_by(Events.Id)
for instance in rs:
	print("Count: ", instance.CustomCount)
	print("Id: ", instance.Id)
	print("---------")

You can also use the session object's execute() method to perform a GROUP BY:

rs = session.execute(Events_table.select().with_only_columns([func.count(Events_table.c.Id).label("CustomCount"), Events_table.c.Id]).group_by(Events_table.c.Id))
for instance in rs:

LIMIT and OFFSET

The following example uses the session object's query() method to skip the first 100 records and fetch the following 25:
rs = session.query(Events).limit(25).offset(100)
for instance in rs:
	print("Id: ", instance.Id)
	print("Id: ", instance.Id)
	print("location_displayName: ", instance.location_displayName)
	print("---------")

You can also use the session object's execute() method to set a LIMIT or OFFSET:

rs = session.execute(Events_table.select().limit(25).offset(100))
for instance in rs:

CData Python Connector for Acumatica

Aggregate Functions

Certain aggregate functions can also be used within SQLAlchemy by using the func module.

To import this module, execute:

from sqlalchemy.sql import func

Once func is imported, the following aggregate functions are available:

COUNT

The following example counts the number of records in a set of groups using the session object's query() method.
rs = session.query(func.count(Events.Id).label("CustomCount"), Events.Id).group_by(Events.Id)
for instance in rs:
	print("Count: ", instance.CustomCount)
	print("Id: ", instance.Id)
	print("---------")

You can also execute COUNT using the session object's execute() method:

rs = session.execute(Events_table.select().with_only_columns([func.count(Events_table.c.Id).label("CustomCount"), Events_table.c.Id])group_by(Events_table.c.Id))
for instance in rs:

SUM

This example calculates the cumulative amount of a numeric column in a set of groups.

rs = session.query(func.sum(Events.Reminder).label("CustomSum"), Events.Id).group_by(Events.Id)
for instance in rs:
	print("Sum: ", instance.CustomSum)
	print("Id: ", instance.Id)
	print("---------")

You can also invoke SUM using the session object's execute() method.

rs = session.execute(Events_table.select().with_only_columns([func.sum(Events_table.c.Reminder).label("CustomSum"), Events_table.c.Id]).group_by(Events_table.c.Id))
for instance in rs:

AVG

This example uses the session object's query() method to calculate the average amount of a numeric column in a set of groups:
rs = session.query(func.avg(Events.Reminder).label("CustomAvg"), Events.Id).group_by(Events.Id)
for instance in rs:
	print("Avg: ", instance.CustomAvg)
	print("Id: ", instance.Id)
	print("---------")

You can also use the session object's execute() method to invoke AVG:

rs = session.execute(Events_table.select().with_only_columns([func.avg(Events_table.c.Reminder).label("CustomAvg"), Events_table.c.Id]).group_by(Events_table.c.Id))
for instance in rs:

MAX and MIN

This example finds the maximum value and minimum value of a numeric column in a set of groups.
rs = session.query(func.max(Events.Reminder).label("CustomMax"), func.min(Events.Reminder).label("CustomMin"), Events.Id).group_by(Events.Id)
for instance in rs:
	print("Max: ", instance.CustomMax)
	print("Min: ", instance.CustomMin)
	print("Id: ", instance.Id)
	print("---------")

You can also use the session object's execute() method to invoke MAX and MIN:

rs = session.execute(Events_table.select().with_only_columns([func.max(Events_table.c.Reminder).label("CustomMax"), func.min(Events_table.c.Reminder).label("CustomMin"), Events_table.c.Id]).group_by(Events_table.c.Id))
for instance in rs:

CData Python Connector for Acumatica

Modifying Data

Commands can be executed individually by the session with a call to "execute()".

Obtaining the Table Object

The query supplied to this method is constructed using the associated Table object of a mapped class. This Table object is obtained from the mapped class's metadata field, as below:

Events_table = Events.metadata.tables["Events"]

Once the table object is obtained, the write operations are executed in the following ways. The queries are executed immediately without the need for a call to "commit()":

Insert

The following example adds a new record to the table:

session.execute(Events_table.insert(), {"Id": "Town Hall Grille", "location_displayName": "Zenburger"})

Update

The following example modifies an existing record in the table:

session.execute(Events_table.update().where(Events_table.c.Id == "Jq74mCczmFXk1tC10GB").values(Id="Town Hall Grille", location_displayName="Zenburger"))

Delete

The following example removes an existing record from the table:

session.execute(Events_table.delete().where(Events_table.c.Id == "Jq74mCczmFXk1tC10GB"))

CData Python Connector for Acumatica

From Pandas

When combined with the connector, Pandas can be used to generate data frames that contain your Acumatica data. Once created, a data frame can be passed to various other Python packages.

Connecting

Pandas relies on an SQLAlchemy engine to execute queries. Before you can use Pandas you must import it:
import pandas as pd
from sqlalchemy import create_engine
engine = create_engine("acumatica:///?Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

Querying Data

In Pandas, SELECT queries are provided in a call to the read_sql() method, alongside a relevant connection object. Pandas executes the query on that connection, and returns the results in the form of a data frame, which can be used for a variety of purposes.
df = pd.read_sql("""
	SELECT
	   Id,
	   location_displayName,
     $exNumericCol;
	FROM Events;""", engine)
print(df)

Modifying Data

To insert new records into a table, create a new data frame, and define its fields accordingly. When that is done, call to_sql() on the data frame to perform the INSERT operation with the connector, as shown in the example below. You must set the "if _exists" argument to "append" to prevent Pandas from attempting building the table from scratch. To prevent Pandas from writing the data frame index as a column, set index=False.
df = pd.DataFrame({"Id": ["Town Hall Grille"], "location_displayName": ["Zenburger"]})
df.to_sql("Events", con=engine, if_exists="append", index=False)

CData Python Connector for Acumatica

From Matplotlib

Matplotlib contains a number of tools that can graphically model Acumatica data after being fed a data frame From Pandas.

Using PyPlot

Before any Matplotlib tool, such as pyplot, can be used, it must be imported:
from matplotlib import pyplot as plt

Once a Pandas data frame is obtained, it can be used to create a plot visualizing Acumatica data. For example, the following plot generates and displays a bar graph relating Id and Reminder values:

df.plot(kind="bar", x="Id", y=["Reminder"])
plt.show()

CData Python Connector for Acumatica

From Petl

The connector can be used to create ETL applications and pipelines for CSV data in Python using Petl.

Install Required Modules

Install the Petl modules using the pip utility.
pip install petl

Connecting

After you import the modules, including the CData Python Connector for Acumatica, you can use the connector's connect function to create a connection using a valid Acumatica connection string. If you prefer not to use a direct connection, you can use a SQLAlchemy engine.
import petl as etl
import cdata.acumatica as mod
cnxn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")

Extract, Transform, and Load the Acumatica Data

Create a SQL query string and store the query results in a DataFrame.
sql = "SELECT	Id, location_displayName FROM Events "
table1 = etl.fromdb(cnxn,sql)

Loading Data

With the query results stored in a DataFrame, you can load your data into any supported Petl destination. The following example loads the data into a CSV file.
etl.tocsv(table1,'output.csv')

Modifying Data

Insert new rows into Acumatica tables using Petl's appenddb function.
table1 = [['Id','location_displayName'],['Town Hall Grille','Zenburger']]
etl.appenddb(table1,cnxn,'Events')

CData Python Connector for Acumatica

Schema Discovery

The extension supports schema discovery by using SQL queries to available System Tables.

Using SQL

The following sections describe the discovery of metadata through several System Tables:

CData Python Connector for Acumatica

Tables and Views

The connector possesses system tables that are used to discover the tables and views available in the data model. Of these system tables, "sys_tables" and "sys_views" are used to fetch information about the available tables and views respectively:

Tables


import cdata.acumatica as mod
conn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")
cur = conn.cursor()
cmd = "SELECT * FROM sys_tables"
cur.execute(cmd)
rs = cur.fetchall()
for row in rs:
	print(row)

Views


import cdata.acumatica as mod
conn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")
cur = conn.cursor()
cmd = "SELECT * FROM sys_views"
cur.execute(cmd, params)
rs = cur.fetchall()
for row in rs:
	print(row)

CData Python Connector for Acumatica

Columns

The available columns for any given table are fetched from a system table called "sys_tablecolumns". A specific table name is provided in the WHERE criteria to restrict the table from which the column information is fetched:

import cdata.acumatica as mod
conn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")
cur = conn.cursor()
cmd = "SELECT * FROM sys_tablecolumns WHERE TableName = 'Events'"
cur.execute(cmd)
rs = cur.fetchall()
for row in rs:
	print(row)

CData Python Connector for Acumatica

Procedures

Procedures

A system table called "sys_procedures" is queried to obtain the available stored procedures that are executed:
import cdata.acumatica as mod
conn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")
cur = conn.cursor()
cmd = "SELECT * FROM sys_procedures"
cur.execute(cmd)
rs = cur.fetchall()
for row in rs:
	print(row)

Parameters

The input parameters of any stored procedure are similarly obtained from the "sys_procedureparameters" system table:
import cdata.acumatica as mod
conn = mod.connect("Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;")
cur = conn.cursor()
cmd = "SELECT * FROM sys_procedureparameters WHERE ProcedureName = 'SendMail'"
cur.execute(cmd)
rs = cur.fetchall()
for row in rs:
	print(row)

CData Python Connector for Acumatica

Advanced Features

This section details a selection of advanced features of the Acumatica connector.

User Defined Views

The connector supports the use of user defined views, virtual tables whose contents are decided by a pre-configured user defined query. These views are useful when you cannot directly control queries being issued to the drivers. For an overview of creating and configuring custom views, see User Defined Views .

SSL Configuration

Use SSL Configuration to adjust how connector handles TLS/SSL certificate negotiations. You can choose from various certificate formats;. For further information, see the SSLServerCert property under "Connection String Options" .

Firewall and Proxy

Configure the connector for compliance with Firewall and Proxy, including Windows proxies and HTTP proxies. You can also set up tunnel connections.

Caching Data

Caching Data enables faster access to data and reduces the number of API calls, improving performance. The connector supports a simple caching model where multiple connections can also share the cache over time. When configuring the cache connection, you can specify automatic or explicit data caching.

Query Processing

The connector offloads as much of the SELECT statement processing as possible to Acumatica and then processes the rest of the query in memory (client-side).

For further information, see Query Processing.

Logging

For an overview of configuration settings that can be used to refine CData logging, see Logging. Only two connection properties are required for basic logging, but there are numerous features that support more refined logging, which enables you to use the LogModules connection property to specify subsets of information to be logged.

Exception Handling

For an overview of how exceptions are reported and the components of an exception, see Exception Handling.

CData Python Connector for Acumatica

User Defined Views

The CData Python Connector for Acumatica supports the use of user defined views: user-defined virtual tables whose contents are decided by a preconfigured query. User defined views are useful in situations where you cannot directly control the query being issued to the driver; for example, when using the driver from a tool.

Use a user defined view to define predicates that are always applied. If you specify additional predicates in the query to the view, they are combined with the query already defined as part of the view.

There are two ways to create user defined views:

  • Create a JSON-formatted configuration file defining the views you want.
  • DDL statements.

Defining Views Using a Configuration File

User defined views are defined in a JSON-formatted configuration file called UserDefinedViews.json. The connector automatically detects the views specified in this file.

You can also have multiple view definitions and control them using the UserDefinedViews connection property. When you use this property, only the specified views are seen by the connector.

This user defined view configuration file is formatted so that each root element defines the name of a view, and includes a child element, called query, which contains the custom SQL query for the view.

For example:

{
	"MyView": {
		"query": "SELECT * FROM Events WHERE MyColumn = 'value'"
	},
	"MyView2": {
		"query": "SELECT * FROM MyTable WHERE Id IN (1,2,3)"
	}
}
Use the UserDefinedViews connection property to specify the location of your JSON configuration file. For example:
"UserDefinedViews", "C:\\Users\\yourusername\\Desktop\\tmp\\UserDefinedViews.json"

Defining Views Using DDL Statements

The connector is also capable of creating and altering the schema via DDL Statements such as CREATE LOCAL VIEW, ALTER LOCAL VIEW, and DROP LOCAL VIEW.

Create a View

To create a new view using DDL statements, provide the view name and query as follows:

CREATE LOCAL VIEW [MyViewName] AS SELECT * FROM Customers LIMIT 20;

If no JSON file exists, the above code creates one. The view is then created in the JSON configuration file and is now discoverable. The JSON file location is specified by the UserDefinedViews connection property.

Alter a View

To alter an existing view, provide the name of an existing view alongside the new query you would like to use instead:

ALTER LOCAL VIEW [MyViewName] AS SELECT * FROM Customers WHERE TimeModified > '3/1/2020';

The view is then updated in the JSON configuration file.

Drop a View

To drop an existing view, provide the name of an existing schema alongside the new query you would like to use instead.

DROP LOCAL VIEW [MyViewName]

This removes the view from the JSON configuration file. It can no longer be queried.

Schema for User Defined Views

In order to avoid a view's name clashing with an actual entity in the data model, user defined views are exposed in the UserViews schema by default. To change the name of the schema used for UserViews, reset the UserViewsSchemaName property.

Working with User Defined Views

For example, a SQL statement with a user defined view called UserViews.RCustomers only lists customers in Raleigh:
SELECT * FROM Customers WHERE City = 'Raleigh';
An example of a query to the driver:
SELECT * FROM UserViews.RCustomers WHERE Status = 'Active';
Resulting in the effective query to the source:
SELECT * FROM Customers WHERE City = 'Raleigh' AND Status = 'Active';
That is a very simple example of a query to a user defined view that is effectively a combination of the view query and the view definition. It is possible to compose these queries in much more complex patterns. All SQL operations are allowed in both queries and are combined when appropriate.

CData Python Connector for Acumatica

SSL Configuration

Customizing the SSL Configuration

To enable TLS, set the following:

  • URL: Prefix the connection string with https://

With this configuration, the connector attempts to negotiate TLS with the server. The server certificate is validated against the default system trusted certificate store. You can override how the certificate gets validated using the SSLServerCert connection property.

To specify another certificate, see the SSLServerCert connection property.

CData Python Connector for Acumatica

Firewall and Proxy

Connecting Through a Firewall or Proxy

HTTP Proxies

Note: The connector uses the system proxy settings by default, without further configuration needed. If you want to connect to other proxies, set ProxyAutoDetect to False and read further.

To authenticate to an HTTP proxy, set the following:

  • ProxyServer: the hostname or IP address of the proxy server that you want to route HTTP traffic through.
  • ProxyPort: the TCP port that the proxy server is running on.
  • ProxyAuthScheme: the authentication method the connector uses when authenticating to the proxy server.
  • ProxyUser: the username of a user account registered with the proxy server.
  • ProxyPassword: the password associated with the ProxyUser.

Other Proxies

Set the following properties:

CData Python Connector for Acumatica

Caching Data

Caching Data

Caching data provides several benefits, including faster access to data and reducing the number of API calls, which improve performance. The connector supports a simple caching model where multiple connections can also share the cache over time. You can enable and configure caching features by setting the necessary connection properties.

Contents

The sections in this chapter detail the connector's caching functionality and link to the corresponding connection properties, as well as SQL statements.

Configuring the Cache Connection

Configuring the Cache Connection describes the properties that you can set when configuring the cache database.

Caching Metadata

Caching Metadata describes the CacheMetadata property. This property determines whether or not to cache the table metadata to a file store.

Automatically Caching Data

Automatically Caching Data describes how the connector automatically refreshes the cache when the AutoCache property is set.

Explicitly Caching Data

Explicitly Caching Data describes how you can decide what data is stored in the cache and when it is updated.

Data Type Mapping

Data Type Mapping shows the mappings between the data types configured in the schema and the data types in the database.

CData Python Connector for Acumatica

Configuring the Cache Connection

Configuring the Caching Database

This section describes the properties for caching data to the persistent store of your choice.

CacheLocation

The CacheLocation property species the path to a file-system-based database. When caching is enabled, a file-system-based database is used by default. If CacheLocation is not specified, this database is stored at the path in Location. If neither of these connection properties are specified, the connector uses a platform-dependent default location.

CacheConnection

The CacheConnection property specifies a database driver and the connection string to the caching database.

CacheDriver and CacheProvider

Both the CacheDriver and CacheProvider properties are supported. Each specifies a database driver and the connection string to the caching database. CacheDriver is designed for Linux and MacOS; CacheProvider is Windows-based.

CData Python Connector for Acumatica

Caching Metadata

This section describes how to enable caching metadata and how to update the metadata cache.

Before being able to query data, the connector requires relevant metadata to be retrieved. By default, metadata is cached in memory and shared across connections. But if you want to persist across processes, or if metadata requests are expensive, the solution is to cache the metadata to disk.

Enable Caching Metadata

To enable caching of metadata, set CacheMetadata = true and see Configuring the Cache Connection for instructions on how to configure your connection string. The connector caches the metadata the first time it is needed and uses the metadata cache for subsequent requests.

Update the Metadata Cache

Because metadata is cached, changes to metadata on the live source, for example, adding or removing a column or attribute, are not automatically reflected in the metadata cache. To get updates to the live metadata, you need to delete or drop the cached data.

CData Python Connector for Acumatica

Automatically Caching Data

Automatically caching data is useful when you do not want to rebuild the cache for each query. When you query data for the first time, the connector automatically initializes and builds a cache in the background. When AutoCache = true, the connector uses the cache for subsequent query executions, resulting in faster response times.

Configuring Automatic Caching

Caching the Events Table

The following example caches the Events table in the file specified by the CacheLocation property of the connection string.

SELECT Id, location_displayName FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'

Common Use Case

A common use for automatically caching data is to improve driver performance when making repeated requests to a live data source, such as building a report or creating a visualization. With auto caching enabled, repeated requests to the same data may be executed in a short period of time, but within an allowable tolerance (CacheTolerance) of what is considered "live" data.

CData Python Connector for Acumatica

Explicitly Caching Data

With explicit caching (AutoCache = false), you decide exactly what data is cached and when to query the cache instead of the live data. Explicit caching gives you full control over the cache contents by using CACHE Statements. This section describes some strategies to use the caching features offered by the connector.

Creating the Cache

To load data in the cache, issue the following statement.

CACHE SELECT * FROM tableName WHERE ...

Once the statement is issued, any matching data in tableName is loaded into the corresponding table.

Updating the Cache

This section describes two ways to update the cache.

Updating with the SELECT Statement

The following example shows a statement that can update modified rows and add missing rows in the cached table. However, this statement does not delete extra rows that are already in the cache. This statement only merges the new rows or updates the existing rows.

CACHE SELECT * FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'

Updating with the TRUNCATE Statement

The following example shows a statement that can update modified rows and add missing rows in the cached table. This statement can also delete rows in the cache table that are not present in the live data source.

  CACHE WITH TRUNCATE SELECT * FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'
  

Query the Data in Online or Offline Mode

This section describes how to query the data in online or offline mode.

Online: Select Cached Tables

You can use the tableName#CACHE syntax to explicitly execute queries to the cache while still online, as shown in the following example.

SELECT * FROM Events#CACHE

Offline: Select Cached Tables

With Offline = true, SELECT statements always execute against the local cache database, regardless of whether you explicitly specify the cached table or not. Modification of the cache is disabled in Offline mode to prevent accidentally updating only the cached data. Executing a DELETE/UPDATE/INSERT statement while in Offline mode results in an exception.

The following example selects from the local cache but not the live data source because Offline = true.

SELECT * FROM Events WHERE Id='Jq74mCczmFXk1tC10GB' ORDER BY location_displayName ASC

Delete Data from the Cache

You can delete data from the cache by building a direct connection to the database. Note that the connector does not support manually deleting data from the cache.

Common Use Case

A common use for caching is to have an application always query the cached data and only update the cache at set intervals, such as once every day or every two hours. There are two ways in which this can be implemented:

  • AutoCache = false and Offline = false. All queries issued by the application explicitly reference the tableName#CACHE table. When the cache needs to be updated, the application executes a tableName#CACHE ... statement to bring the cached data up to date.
  • Offline = true. Caching is transparent to the application. All queries are executed against the table as normal, so most application code does not need to be aware that caching is done. To update the cached data, simply create a separate connection with Offline = false and execute a tableName#CACHE ... statement.

CData Python Connector for Acumatica

Data Type Mapping

The connector maps types from the data source to the corresponding data type available in the chosen cache database. The following table shows the mappings between the data types configured in the schema and the data types in the database. Some schema types have synonyms which are all listed in the Schema column.

Data Type Mapping

Note: String columns can map to different data types depending on their length.

Schema .NET JDBC SQL Server Derby MySQL Oracle SQLite Access
int, integer, int32 Int32 int int INTEGER INT NUMBER integer LONG
smallint, short, int16 Int16 short smallint SMALLINT SMALLINT NUMBER integer SHORT
double, float, real Double double float DOUBLE DOUBLE NUMBER double DOUBLE
date DateTime java.sql.Date date DATE DATE DATE date DATETIME
datetime, timestamp DateTime java.sql.Date datetime TIMESTAMP DATETIME TIMESTAMP datetime DATETIME
time, timespan TimeSpan java.sql.Time time TIME TIME TIMESTAMP datetime DATETIME
string, varchar String java.lang.String If length > 4000: nvarchar(max), Otherwise: nvarchar(length)If length > 32672: LONG VARCHAR, Otherwise VARCHAR(length)If length > 255: LONGTEXT, Otherwise: VARCHAR(length)If length > 4000: CLOB, Otherwise: VARCHAR2(length)nvarchar(length)If length > 255: LONGTEXT, Otherwise: VARCHAR(length)
long, int64, bigint Int64 long bigint BIGINT BIGINT NUMBER bigint LONG
boolean, bool Boolean boolean tinyint SMALLINT BIT NUMBER tinyint BIT
decimal, numeric Decimal java.math.BigDecimal decimal DECIMAL DECIMAL DECIMAL decimal CURRENCY
uuid Guid java.util.UUID nvarchar(length) VARCHAR(length)VARCHAR(length) VARCHAR2(length)nvarchar(length) VARCHAR(length)
binary, varbinary, longvarbinary byte[] byte[] binary(1000) or varbinary(max) after SQL Server 2000, image otherwise BLOB LONGBLOB BLOB BLOB LONGBINARY

CData Python Connector for Acumatica

Query Processing

Query Processing

CData has a client-side SQL engine built into the connector library. This enables support for the full capabilities that SQL-92 offers, including filters, aggregations, functions, etc.

For sources that do not support SQL-92, the connector offloads as much of SQL statement processing as possible to Acumatica and then processes the rest of the query in memory (client-side). This results in optimal performance.

For data sources with limited query capabilities, the connector handles transformations of the SQL query to make it simpler for the connector. The goal is to make smart decisions based on the query capabilities of the data source to push down as much of the computation as possible. The Acumatica Query Evaluation component examines SQL queries and returns information indicating what parts of the query the connector is not capable of executing natively.

The Acumatica Query Slicer component is used in more specific cases to separate a single query into multiple independent queries. The client-side Query Engine makes decisions about simplifying queries, breaking queries into multiple queries, and pushing down or computing aggregations on the client-side while minimizing the size of the result set.

There's a significant trade-off in evaluating queries, even partially, client-side. There are always queries that are impossible to execute efficiently in this model, and some can be particularly expensive to compute in this manner. CData always pushes down as much of the query as is feasible for the data source to generate the most efficient query possible and provide the most flexible query capabilities.

More Information

For a full discussion of how CData handles query processing, see CData Architecture: Query Execution.

CData Python Connector for Acumatica

Logging

Logging

Capturing connector logging can be very helpful when diagnosing error messages or other unexpected behavior.

Basic Logging

To begin capturing connector logging, set these properties:

  • Logfile: A filepath that designates the name and location of the log file.
  • Verbosity: A numerical value (1-5) that determines the amount of detail in the log. See the page in the Connection Properties section for an explanation of the five levels.
  • MaxLogFileSize: When the limit is hit, a new log is created in the same folder with the date and time appended to the end. The default limit is 100 MB. Values lower than 100 kB will use 100 kB as the value instead.
  • MaxLogFileCount: A string specifying the maximum file count of log files. When the limit is hit, a new log is created in the same folder with the date and time appended to the end and the oldest log file will be deleted. Minimum supported value is 2. A value of 0 or a negative value indicates no limit on the count.

Once these properties are set, the connector populates the log file as it carries out various tasks, such as when authentication is performed or queries are executed. If the specified file doesn't already exist, it is created.

Log Verbosity

The verbosity level determines the amount of detail that the connector reports to the Logfile. Supported Verbosity levels range from 1 to 5.

The following list describes each level:

1Setting Verbosity to 1 logs the query, the number of rows returned by it, the start of execution and the time taken, and any errors.
2Setting Verbosity to 2 logs everything included in Verbosity 1, cache queries, and additional information about the request.
3Setting Verbosity to 3 also logs HTTP headers, as well as the body of the request and the response.
4Setting Verbosity to 4 also logs transport-level communication with the data source. This includes SSL negotiation.
5Setting Verbosity to 5 also logs communication with the data source and additional details that may be helpful in troubleshooting problems. This includes interface commands.

For normal operations, Verbosity should not be set to greater than 1. At higher verbosities you can log substantial amounts of data, which can delay execution times.

To refine the logged content further by showing/hiding specific categories of information, see LogModules.

Sensitive Data

Verbosity levels of 3 and higher may capture information that you do not want shared outside of your organization. The following lists information of concern for each level:

  • Verbosity 3: The full body of the request and the response, which includes all the data returned by the connector
  • Verbosity 4: SSL certificates
  • Verbosity 5: Any extra transfer data not included at Verbosity 3, such as non human-readable binary transfer data

Note: Although we mask sensitive values, such as passwords, in the connection string and any request in the log, it is always best practice to review the logs for any sensitive information before sharing outside your organization.

Advanced Logging

You may want to refine the exact information that is recorded to the log file. This can be accomplished using the LogModules property. This property allows you to filter the logging using a semicolon-separated list of logging modules.

Example property value:

LogModules=INFO;EXEC;SSL;SQL;META;

Note that the logfile filtering triggered by the Verbosity connection property takes precedence over the filtering imposed by this connection property. This means that operations of a higher verbosity level than the level specified in the Verbosity connection property are not printed in the logfile, even if they belong to one of the modules specified in this connection property.

The available modules and submodules are:

Module Name Module Description Submodules
INFO General Information. Includes the connection string, product version (build number), and initial connection messages.
  • Connec – Information related to creating or destroying connections.
  • Messag – Generic label for messages pertaining to connections, the connection string, and product version. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
EXEC Query Execution. Includes execution messages for user-written SQL queries, parsed SQL queries, and normalized SQL queries. Success/failure messages for queries and query pages appear here as well.
  • Messag – Messages pertaining to query execution. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • Normlz – Query normalization steps. Query normalization is when the product takes the user-submitted query and rewrites the query to get the same results with optimal performance.
  • Origin – This label applies to any messages recording a user's original query (the exact, unaltered, non-normalized query executed by the user).
  • Page – Messages related to query paging.
  • Parsed – Query parsing steps. Parsing is the process of converting the user-submitted query into a standardized format for easier processing.
HTTP HTTP protocol messages. Includes HTTP requests/responses (including POST messages), as well as Kerberos related messages.
  • KERB – HTTP requests related to Kerberos.
  • Messag – Messages pertaining to HTTP protocols. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • Unpack – This label applies to messages about zipped data being returned from the service API and unpacked by the product.
  • Res – Messages containing HTTP responses.
  • Req – Messages containing HTTP requests.
WSDL Messages pertaining to the generation of WSDL/XSD files.
SSL SSL certificate messages.
  • Certif – Messages pertaining to SSL certificates.
AUTH Authentication related failure/success messages.
  • Messag – Messages pertaining to authentication. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • OAuth – Messages related to OAuth authentication.
  • Krbros – Kerberos-related authentication messages.
SQL Includes SQL transactions, SQL bulk transfer messages, and SQL result set messages.
  • Bulk – Messages pertaining to bulk query execution.
  • Cache – Messages related to reading row data from and writing row data to the product's cache for better performance.
  • Messag – Messages pertaining to SQL transactions. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • ResSet – Query resultsets.
  • Transc – Messages related to handling transactions, including information about the number of jobs executed and backup table handling.
META Metadata cache and schema messages.
  • Cache – Messages related to reading from and modifying column and table definitions in the product's cache for better performance.
  • Schema – Messages related to retrieving metadata from or modifying the service schema.
  • MemSto – Messages related to writing to or reading from in-memory metadata cache.
  • Storag – Messages relating to storing metadata on disk or in an external data store, rather than in memory.
FUNC Information related to executing SQL functions.
  • Errmsg – Error messages related to executing SQL functions.
TCP Incoming and outgoing raw bytes on TCP transport layer messages.
  • Send – Raw data sent via the TCP protocol.
  • Receiv – Raw data received via the TCP protocol.
FTP Messages pertaining to the File Transfer Protocol.
  • Info – Status messages related to communication in the FTP protocol.
  • Client – Messages related to actions taken by the FTP client (the product) during FTP communication.
  • Server – Messages related to actions taken by the FTP server during FTP communication.
SFTP Messages pertaining to the Secure File Transfer Protocol.
  • Info – Status messages related to communication in the SFTP protocol.
  • To_Server – Messages related to actions taken by the SFTP client (the product) during SFTP communication.
  • From_Server – Messages related to actions taken by the SFTP server during SFTP communication.
POP Messages pertaining to data transferred via the Post Office Protocol.
  • Client – Messages related to actions taken by the POP client (the product) during POP communication.
  • Server – Messages related to actions taken by the POP server during POP communication.
  • Status – Status messages related to communication in the POP protocol.
SMTP Messages pertaining to data transferred via the Simple Mail Transfer Protocol.
  • Client – Messages related to actions taken by the SMTP client (the product) during SMTP communication.
  • Server – Messages related to actions taken by the SMTP server during SMTP communication.
  • Status – Status messages related to communication in the SMTP protocol.
CORE Messages relating to various internal product operations not covered by other modules.
DEMN Messages related to SQL remoting.
CLJB Messages about bulk data uploads (cloud job).
  • Commit – Submissions for bulk data uploads.
SRCE Miscellaneous messages produced by the product that don't belong in any other module.
TRANCE Advanced messages concerning low-level product operations.

CData Python Connector for Acumatica

Exception Handling

Exception Handling

Exceptions can be surfaced from either the API or the CData Python Connector for Acumatica. Each exception will have an error code, an error message, and a SQL state.

Error Codes

The error code classifies the type of error.

0 NONE Used for unclassified errors and internally handled errors. This code also covers data source-specific errors that do not fit in any specific category.
65537 TCP_UNKNOWN_HOST Unable to resolve a hostname (DNS failure).
65538 TCP_CONNECTION_REFUSED Could not connect to the remote port.
65539 TCP_AUTH_FAILED Login failed when using a binary authentication protocol. Use this for auth errors when the protocol is not HTTP (LDAP, SASL, Kerberos, ...).
65540 TCP_TIMEOUT Did not receive a response after sending a request to the server.
65541 TCP_PROTOCOL For wire protocol drivers. Either the server sent a bad packet that we are unable to process, or we cannot construct a packet to send.
131073 TLS_SERVER_UNTRUSTED Could not verify SSL server certificate.
131074 TLS_CLIENT_UNTRUSTED Server did not accept the client certificate we sent.
196609 OAUTH_DECRYPT_FAILED OAuthEncryptKey did not decrypt the OAuthSettings file.
196610 OAUTH_MISSING_CLIENT_INFO OAuthClientId / OAuthClientSecret / OAuthJWTCert is missing.
196611 OAUTH_MISSING_PROP General OAuth property missing. OAUTH_MISSING_CLIENT_INFO is used for missing client ID/secret and JWT cert.
196612 OAUTH_NO_ACCESS_TOKEN Unable to retrieve access token. Only use this when getting a token in GetOAuthAccessToken / RefreshOAuthAccessToken.
196613 OAUTH_TOKEN_EXPIRED The access token expired. Normally used with a RefreshOAuth/OAuthException behavior.
196614 OAUTH_INVALID_PROP OAuth property has an invalid value. OAUTH_MISSING_CLIENT_INFO / OAUTH_MISSING_PROP is used if the value is not set.
262145 HTTP_REQUEST_TIMEOUT Did not receive a response from the HTTP server.
262146 HTTP_CLIENT_ERROR Generic HTTP 4xx error. Only use for 4xx errors not covered by other codes.
262147 HTTP_AUTH_FAILED HTTP 401 error.
262148 HTTP_LIMIT_EXCEEDED HTTP 429 error.
262149 HTTP_SERVER_ERROR HTTP 5xx error.
262150 HTTP_NOT_FOUND_ERROR HTTP 404 error.
327681 CORE_TIMEOUT General timeout. Not related to a specific network request.
327682 CORE_OP_NOT_ALLOWED Operation blocked by provider permissions.
327683 CORE_CONNECTION_CONFIG Connection configuration is not valid.
327684 CORE_SERIALIZE Failed to encode data into a specific format (XML, JSON, CSV, ...).
327685 CORE_DESERIALIZE Failed to decode data from a specific format (XML, JSON, CSV, ...).
393217 SQL_SYNTAX_ERROR Unable to parse a SQL query.
393218 SQL_MISSING_COLUMNS Query did not include required columns.
393219 SQL_MISSING_PARAMS Stored procedure call did not include required parameters.
393220 SQL_QUERY_NOT_SUPPORTED A part of the query is not allowed in the current context.
458753 SSH_SERVER_UNTRUSTED Could not verify SSH server.
524289 STORAGE_LIST_EXCEPTION Issue listing storage resources.
524290 STORAGE_RESOURCE_NOT_FOUND Issue finding storage resources.
524291 STORAGE_ROOT_RESOURCE_NOT_FOUND The root resource (bucket/share/drive) was not found; cannot create it in flat file drivers.
524292 STORAGE_RESOURCE_NOT_A_DIRECTORY Storage resource is not a directory.
524293 STORAGE_RESOURCE_NOT_A_FILE Storage resource is not a file.
524294 STORAGE_PERMISSIONS_DENIED Storage permissions denied.

SQL State

The SQL state is used when throwing generic provider errors to the wrapper and indicates the success or failure of a call.

Some of the common SQL states are listed below:

07007 REQUIRED_CLAUSE Class Code 07: Dynamic SQL Error.
08001 OPEN_CONNECTION Class Code 08: Connection Exception. The connection was unable to be established to the application server or other server.
08004 REJECT_CONNECTION The application server rejected establishment of the connection.
42501 PRIVILEGE_IDENTIFIED_OBJECT Class Code 42: Syntax Error or Access Rule Violation. The authorization ID does not have the privilege to perform the specified operation on the identified object.
42506 AUTH_FAILED Owner authorization failure occurred.
42601 SQL_SYNTAX A character, token, or clause is invalid or missing.

Error Message

The error message provides more detailed reasoning about why the error occurred. It provides an explanation of the issue, and may include steps on how to resolve it.

CData Python Connector for Acumatica

SQL Compliance

The CData Python Connector for Acumatica supports several operations on data, including querying, deleting, modifying, and inserting.

SELECT Statements

See SELECT Statements for a syntax reference and examples.

See Data Model for information on the capabilities of the Acumatica API.

INSERT Statements

See INSERT Statements for a syntax reference and examples, as well as retrieving the new records' Ids.

UPDATE Statements

The primary key Id is required to update a record. See UPDATE Statements for a syntax reference and examples.

DELETE Statements

The primary key Id is required to delete a record. See DELETE Statements for a syntax reference and examples.

CACHE Statements

CACHE statements allow granular control over the connector's caching functionality. For a syntax reference and examples, see CACHE Statements.

For more information on the caching feature, see Caching Data.

EXECUTE Statements

Use EXECUTE or EXEC statements to execute stored procedures. See EXECUTE Statements for a syntax reference and examples.

Names and Quoting

  • Table and column names are considered identifier names; as such, they are restricted to the following characters: [A-Z, a-z, 0-9, _:@].
  • To use a table or column name with characters not listed above, the name must be quoted using square brackets ([name]) in any SQL statement.
  • Parameter names can optionally start with the @ symbol (e.g., @p1 or @CustomerName) and cannot be quoted.
  • Strings must be quoted using single quotes (e.g., 'John Doe').

CData Python Connector for Acumatica

SQL Functions

The connector provides functions that are similar to those that are available with most standard databases. These functions are implemented in the CData provider engine and thus are available across all data sources with the same consistent API. Three categories of functions are available: string, date, and math.

The connector interprets all SQL function inputs as either strings or column identifiers, so you need to escape all literals as strings, with single quotes. For example, contrast the SQL Server syntax and connector syntax for the DATENAME function:

  • SQL Server:
    SELECT DATENAME(yy,GETDATE())
  • connector:
    SELECT DATENAME('yy',GETDATE())

String Functions

These functions perform string manipulations and return a string value. See STRING Functions for more details.

Date Functions

These functions perform date and date time manipulations. See DATE Functions for more details.

Math Functions

These functions provide mathematical operations. See MATH Functions for more details.

CData Python Connector for Acumatica

STRING Functions

ASCII(character_expression)

Returns the ASCII code value of the left-most character of the character expression.

  • character_expression: The character expression.

                      SELECT ASCII('0');
                      --  Result: 48
                    

BASE64_ENCODE(input_binary)

Returns the Base64-encoded string form of a binary input.

  • input_binary: The binary value to encode.

                        SELECT BASE64_ENCODE(BinaryData);
                    -- Result: 'QmFzZTY0RW5jb2RlZA=='
                    

BASE64_DECODE(input_string)

Returns the binary result of decoding a Base64-encoded string.

  • input_string: The Base64-encoded string.

                        SELECT BASE64_DECODE('QmFzZTY0RW5jb2RlZA==');
                    -- Result: (binary output)
                    

CHAR(integer_expression)

Converts the integer ASCII code to the corresponding character.

  • integer_expression: The integer from 0 through 255.

                      SELECT CHAR(48);
                      -- Result: '0'
                    

CHARINDEX(expressionToFind ,expressionToSearch [,start_location ])

Returns the starting position of the specified expression in the character string.

  • expressionToFind: The character expression to find.
  • expressionToSearch: The character expression, typically a column, to search.
  • start_location: An optional character position to start searching for expressionToFind in expressionToSearch.

                      SELECT CHARINDEX('456', '0123456');
                      -- Result: 4

                      SELECT CHARINDEX('456', '0123456', 5);
                      -- Result: -1
                    

CHAR_LENGTH(character_expression),

Returns the number of UTF-8 characters present in the expression.

  • character_expression: The set of characters to be evaluated for length.

				 SELECT CHAR_LENGTH('sample text') FROM Account LIMIT 1
				 -- Result: 11			
				

CONCAT(string_value1, string_value2, ..., string_valueN)

Returns the string that is the concatenation of two or more string values.

  • string_value1: The first string to be concatenated.
  • string_value2: The second string to be concatenated.
  • string_valueN: (optional) Any additional strings to be concatenated.

                      SELECT CONCAT('Hello, ', 'world!');
                      -- Result: 'Hello, world!'
                    

CONTAINS(expressionToSearch, expressionToFind)

Returns 1 if expressionToFind is found within expressionToSearch; otherwise, 0.

  • expressionToSearch: The character expression, typically a column, to search.
  • expressionToFind: The character expression to find.

                      SELECT CONTAINS('0123456', '456');
                      -- Result: 1

                      SELECT CONTAINS('0123456', 'Not a number');
                      -- Result: 0
                    

ENDSWITH(character_expression, character_suffix)

Returns 1 if character_expression ends with character_suffix; otherwise, 0.

  • character_expression: The character expression.
  • character_suffix: The character suffix to search for.

                      SELECT ENDSWITH('0123456', '456');
                      -- Result: 1

                      SELECT ENDSWITH('0123456', '012');
                      -- Result: 0
                    

FILESIZE(uri)

Returns the number of bytes present in the file at the specified file path.

  • uri: The path of the file from which to read the size.

				SELECT FILESIZE('C:/Users/User1/Desktop/myfile.txt');
				-- Result: 23684
				

FORMAT(value [, parseFormat], format )

Returns the value formatted with the specified format.

  • value: The string to format.
  • format: The string specifying the output syntax of the date or numeric format.
  • parseFormat: The string specifying the input syntax of the date value. Not applicable to numeric types.

                      SELECT FORMAT(12.34, '#');
                      -- Result: 12

                      SELECT FORMAT(12.34, '#.###');
                      -- Result: 12.34

                      SELECT FORMAT(1234, '0.000E0');
                      -- Result: 1.234E3
                      
                      SELECT FORMAT('2019/01/01', 'yyyy-MM-dd');
                      -- Result: 2019-01-01
                      
                      SELECT FORMAT('20190101', 'yyyyMMdd', 'yyyy-MM-dd');
                      -- Result: '2019-01-01'
                    

HASHBYTES(algorithm, value)

Returns the hash of the input value as a byte array using the given algorithm. The supported algorithms are MD5, SHA1, SHA2_256, SHA2_512, SHA3_224, SHA3_256, SHA3_384, and SHA3_512.

  • algorithm: The algorithm to use for hashing. Must be one of MD5, SHA1, SHA2_256, SHA2_512, SHA3_224, SHA3_256, SHA3_384, or SHA3_512.
  • value: The value to hash. Must be either a string or byte array.

                      SELECT HASHBYTES('MD5', 'Test');
                      -- Result (byte array): 0x0CBC6611F5540BD0809A388DC95A615B
                    

INDEXOF(expressionToSearch, expressionToFind [,start_location ])

Returns the starting position of the specified expression in the character string.

  • expressionToSearch: The character expression, typically a column, to search.
  • expressionToFind: The character expression to find.
  • start_location: An optional character position to start searching for expressionToFind in expressionToSearch.

                      SELECT INDEXOF('0123456', '456');
                      -- Result: 4

                      SELECT INDEXOF('0123456', '456', 5);
                      -- Result: -1
                    

ISALPHABETIC(character_expression)

Returns 1 if the character expression consists only of alphabetic characters; otherwise, 0.

  • character_expression: The string expression to evaluate.

                      SELECT ISALPHABETIC('Hello');
                      -- Result: 1

                      SELECT ISALPHABETIC('Hello123');
                      -- Result: 0

                      SELECT ISALPHABETIC('Hello!');
                      -- Result: 0
                    

ISALPHANUMERIC(character_expression)

Returns 1 if the character expression consists only of alphabetic and numeric characters; otherwise, 0.

  • character_expression: The string expression to evaluate.

                      SELECT ISALPHANUMERIC('Hello123');
                      -- Result: 1

                      SELECT ISALPHANUMERIC('123');
                      -- Result: 1

                      SELECT ISALPHANUMERIC('Hello.123');
                      -- Result: 0
                    

ISNUMERIC(character_expression)

Returns 1 if the character expression consists only of numeric digits and up to one decimal point; otherwise, 0.

  • character_expression: The string expression to evaluate.

                      SELECT ISNUMERIC('123');
                      -- Result: 1

                      SELECT ISNUMERIC('123.45');
                      -- Result: 1

                      SELECT ISNUMERIC('123.45.67');
                      -- Result: 0

                      SELECT ISNUMERIC('12a3');
                      -- Result: 0
                    

JSON_EXTRACT(json, jsonpath)

Selects any value in a JSON array or object. The path to the array is specified in the jsonpath argument. Return value is numeric or null.

  • json: The JSON document to extract.
  • jsonpath: The XPath used to select the nodes. The JSONPath must be a string constant. The values of the nodes selected will be returned in a token-separated list.

                      SELECT JSON_EXTRACT('{"test": {"data": 1}}', '$.test');
                      -- Result: '{"data":1}'

                      SELECT JSON_EXTRACT('{"test": {"data": 1}}', '$.test.data');
                      -- Result: 1

                      SELECT JSON_EXTRACT('{"test": {"data": [1, 2, 3]}}', '$.test.data[1]');
                      -- Result: 2
                    

LEFT ( character_expression , integer_expression )

Returns the specified number of characters counting from the left of the specified string.

  • character_expression: The character expression.
  • integer_expression: The positive integer that specifies how many characters will be returned counting from the left of character_expression.

                      SELECT LEFT('1234567890', 3);
                      -- Result: '123'
                    

LEN(string_expression)

Returns the number of characters of the specified string expression.

  • string_expression: The string expression.

                      SELECT LEN('12345');
                      -- Result: 5
                    

LOCATE(substring,string)

Returns an integer representing how many characters into the string the substring appears.

  • substring: The substring to find inside larger string.
  • string: The larger string that is searched for the substring.
  • start locations: An optional integer that sets the character position (offset) from which to start searching.

				SELECT LOCATE('sample','XXXXXsampleXXXXX');
				-- Result: 6

                SELECT LOCATE('sample', 'XXXXXsampleXXXXX', 7)
                -- Result: 0
				

LOWER ( character_expression )

Returns the character expression with the uppercase character data converted to lowercase.

  • character_expression: The character expression.

                      SELECT LOWER('MIXED case');
                      -- Result: 'mixed case'
                    

LTRIM(character_expression)

Returns the character expression with leading blanks removed.

  • character_expression: The character expression.

                      SELECT LTRIM('     trimmed');
                      -- Result: 'trimmed'
                    

MASK(string_expression, mask_character [, start_index [, end_index ]])

Replaces the characters between start_index and end_index with the mask_character within the string.

  • string_expression: The string expression to be searched.
  • mask_character: The character to mask with.
  • start_index: The optional number of characters to leave unmasked at beginning of string. Defaults to 0.
  • end_index: The optional number of characters to leave unmasked at end of string. Defaults to 0.

                        SELECT MASK('1234567890','*',);
                        -- Result: '**********'
                        SELECT MASK('1234567890','*', 4);
                        -- Result: '1234******'
                        SELECT MASK('1234567890','*', 4, 2);
                        -- Result: '1234****90'  
                    

NCHAR(integer_expression)

Returns the Unicode character with the specified integer code as defined by the Unicode standard.

  • integer_expression: The integer from 0 through 65535 (0 through xFFFF).

OCTET_LENGTH(character_expression),

Returns the number of bytes present in the expression.

  • character_expression: The set of characters to be be evaluated.

				 SELECT OCTET_LENGTH('text') FROM Account LIMIT 1
				 -- Result: 4
				

PATINDEX(pattern, expression)

Returns the starting position of the first occurrence of the pattern in the expression. Returns 0 if the pattern is not found.

  • pattern: The character expression that contains the sequence to be found. The wild-card character % can be used only at the start or end of the expression.
  • expression: The expression, typically a column, to search for the pattern.

                      SELECT PATINDEX('123%', '1234567890');
                      -- Result: 1

                      SELECT PATINDEX('%890', '1234567890');
                      -- Result: 8

                      SELECT PATINDEX('%456%', '1234567890');
                      -- Result: 4
                    

POSITION(expressionToFind IN expressionToSearch)

Returns the starting position of the specified expression in the character string.

  • expressionToFind: The character expression to find.
  • expressionToSearch: The character expression, typically a column, to search.

                      SELECT POSITION('456' IN '123456');
                      -- Result: 4

                      SELECT POSITION('x' IN '123456');
                      -- Result: 0
                    

QUOTENAME(character_string [, quote_character])

Returns a valid SQL Server-delimited identifier by adding the necessary delimiters to the specified Unicode string.

  • character_string: The string of Unicode character data. The string is limited to 128 characters. Inputs greater than 128 characters return null.
  • quote_character: An optional single character to be used as the delimiter. These include:
    • a single quotation mark (')
    • a left or right bracket ([])
    • a double quotation mark (")
    • a left or right parenthesis ( () )
    • a greater or less than sign (><)
    • a left or right brace ({})
    • a backtick (`)

    If quote_character is not specified brackets are used. If an unacceptable character is supplied, it returns NULL.


                      SELECT QUOTENAME('table_name');
                      -- Result: '[table_name]'

                      SELECT QUOTENAME('table_name', '"');
                      -- Result: '"table_name"'

                      SELECT QUOTENAME('table_name', '[');
                      -- Result: '[table_name]'
                    

REGEXP_REPLACE(expr, pattern [, replacement [, position [, occurrence [, match_type]]]])

Replaces occurrences of a regular expression pattern in the input string with a specified value and returns the resulting string.

  • expr: The string expression to be searched.
  • pattern: The regular expression pattern to match.
  • replacement: (optional) The string to replace each matched occurrence of pattern with. Supports backreferences \1 through \9 and escape sequences \n, \r, \t, and \\. By default, this argument is an empty string, meaning matched portions are removed from the output string.
  • position: (optional) The 1-based starting position used when searching for regular expression matches in expr. The default is 1. All characters prior to the starting position are included in the output string unaltered. Skipped characters are ignored when calculating regular expression matches, even if they match pattern.
  • occurrence: (optional) Specifies whether all occurrences of pattern,, or only a specific occurrence of pattern are replaced. The default is 0, which means all occurrences of pattern are replaced with replacement. Set to 1 to only replace the first instance of the pattern; 2 to replace the second; etc.
  • match_type: (optional) Modifiers used to customize matching behavior. Supported values are: 'c' (case-sensitive, default), 'i' (case-insensitive), 'm' (multiline), 'n' (dot matches newline), 'x' (extended mode). These can be freely combined by including the letters back to back. For example, 'im' applies the functionality of both 'i' and 'm'. The regular expression syntax used is that of the Extended mode ('x') ignores whitespace and allows inline comments. If the pattern needs to match a literal space, it must be explicitly escaped.

                      SELECT REGEXP_REPLACE('abc123def456', '\d+', 'NUM');
                      -- Result: 'abcNUMdefNUM'

                      SELECT REGEXP_REPLACE('Hello\nHELLO\nhello', '^hello', 'X', 1, 0, 'im');
                      -- Result: 'X\nX\nX'
                    

REPLACE(string_expression, string_pattern, string_replacement)

Replaces all occurrences of a string with another string.

  • string_expression: The string expression to be searched. This can be a character or binary data type.
  • string_pattern: The substring to be found. Cannot be an empty string.
  • string_replacement: The replacement string.

                      SELECT REPLACE('1234567890', '456', '|');
                      -- Result: '123|7890'

                      SELECT REPLACE('123123123', '123', '.');
                      -- Result: '...'

                      SELECT REPLACE('1234567890', 'a', 'b');
                      -- Result: '1234567890'
                    

REPLICATE ( string_expression ,integer_expression )

Repeats the string value the specified number of times.

  • string_expression: The string to replicate.
  • integer_expression: The repeat count.

                      SELECT REPLACE('x', 5);
                      -- Result: 'xxxxx'
                    

REVERSE ( string_expression )

Returns the reverse order of the string expression.

  • string_expression: The string.

                      SELECT REVERSE('1234567890');
                      -- Result: '0987654321'
                    

RIGHT ( character_expression , integer_expression )

Returns the right part of the string with the specified number of characters.

  • character_expression: The character expression.
  • integer_expression: The positive integer that specifies how many characters of the character expression will be returned.

                      SELECT RIGHT('1234567890', 3);
                      -- Result: '890'
                    

RTRIM(character_expression)

Returns the character expression after it removes trailing blanks.

  • character_expression: The character expression.

                      SELECT RTRIM('trimmed     ');
                      -- Result: 'trimmed'
                    

SOUNDEX(character_expression)

Returns the four-character Soundex code, based on how the string sounds when spoken.

  • character_expression: The alphanumeric expression of character data.

                      SELECT SOUNDEX('smith');
                      -- Result: 'S530'
                    

SPACE(repeatcount)

Returns the string that consists of repeated spaces.

  • repeatcount: The number of spaces.

                      SELECT SPACE(5);
                      -- Result: '     '
                    

SPLIT(string, delimiter, offset)

Returns a section of the string between to delimiters.

  • string: The string to split.
  • delimiter: The character to split the string with.
  • offset: The number of the split to return. Positive numbers are treated as offsets from the left, and negative numbers are treated as offsets from the right.

                      SELECT SPLIT('a/b/c/d', '/', 1);
                      -- Result: 'a'
                      SELECT SPLIT('a/b/c/d', '/', -2);
                      -- Result: 'c'
                    

STARTSWITH(character_expression, character_prefix)

Returns 1 if character_expression starts with character_prefix; otherwise, 0.

  • character_expression: The character expression.
  • character_prefix: The character prefix to search for.

                      SELECT STARTSWITH('0123456', '012');
                      -- Result: 1

                      SELECT STARTSWITH('0123456', '456');
                      -- Result: 0
                    

STR ( float_expression [ , integer_length [ , integer_decimal ] ] )

Returns the character data converted from the numeric data. For example, STR(123.45, 6, 1) returns 123.5.

  • float_expression: The float expression.
  • length: The optional total length to return. This includes decimal point, sign, digits, and spaces. The default is 10.
  • decimal: The optional number of places to the right of the decimal point. The decimal must be less than or equal to 16.

                      SELECT STR('123.456');
                      -- Result: '123'

                      SELECT STR('123.456', 2);
                      -- Result: '**'

                      SELECT STR('123.456', 10, 2);
                      -- Result: '123.46'
                    

STUFF(character_expression , integer_start , integer_length , replaceWith_expression)

Inserts a string into another string. It deletes the specified length of characters in the first string at the start position and then inserts the second string into the first string at the start position.

  • character_expression: The string expression.
  • start: The integer value that specifies the location to start deletion and insertion. If start or length is negative, null is returned. If start is longer than the string to be modified, character_expression, null is returned.
  • length: The integer that specifies the number of characters to delete. If length is longer than character_expression, deletion occurs up to the last character in replaceWith_expression.
  • replaceWith_expression: The expression of character data that will replace length characters of character_expression beginning at the start value.

                      SELECT STUFF('1234567890', 3, 2, 'xx');
                      -- Result: '12xx567890'
                    

SUBSTRING(string_value FROM start FOR length)

Returns the part of the string with the specified length; starts at the specified index.

  • string_value: The character string.
  • start: The positive integer that specifies the start index of characters to return.
  • length: Optional. The positive integer that specifies how many characters will be returned.

                      SELECT SUBSTRING('1234567890' FROM 3 FOR 2);
                      -- Result: '34'

                      SELECT SUBSTRING('1234567890' FROM 3);
                      -- Result: '34567890'
                    
You can also drop the FROM and FOR clauses:
                    SELECT SUBSTRING('1234567890', 3, 2)
                    --Result: '34'
                    SELECT SUBSTRING('1234567890', 3)
                    --Result: '34567890'
                    

TEXT_ENCODE(input_string, charset)

Returns binary output by encoding a string using the specified character set.

  • input_string: The plain text string.
  • charset: The character set to use, such as 'UTF-8', 'ISO-8859-1'.

                    SELECT TEXT_ENCODE('Café', 'UTF-8');
                    -- Result: (binary output)
                    

TEXT_DECODE(input_binary, charset)

Returns a string decoded from binary data using the specified character set.

  • input_binary: The binary value to decode.
  • charset: The character set used for decoding.

                    SELECT TEXT_DECODE(BinaryData, 'UTF-8');
                    -- Result: 'Café'
                    

TOSTRING(string_value1)

Converts the value of this instance to its equivalent string representation.

  • string_value1: The string to be converted.

                      SELECT TOSTRING(123);
                      -- Result: '123'

                      SELECT TOSTRING(123.456);
                      -- Result: '123.456'

                      SELECT TOSTRING(null);
                      -- Result: ''
                    

TRIM(trimspec trimchar FROM string_value)

Returns the character expression with leading and/or trailing blanks removed.

  • trimspec: Optional. If included must be one of the keywords BOTH, LEADING or TRAILING.
  • trimchar: Optional. If included should be a one-character string value.
  • string_value: The string value to trim.

                      SELECT TRIM('     trimmed     ');
                      -- Result: 'trimmed'

                      SELECT TRIM(LEADING FROM '     trimmed     ');
                      -- Result: 'trimmed     '

                      SELECT TRIM('-' FROM '-----trimmed-----');
                      -- Result: 'trimmed'

                      SELECT TRIM(BOTH '-' FROM '-----trimmed-----');
                      -- Result: 'trimmed'

                      SELECT TRIM(TRAILING '-' FROM '-----trimmed-----');
                      -- Result: '-----trimmed'
                    

UNICODE(ncharacter_expression)

Returns the integer value defined by the Unicode standard of the first character of the input expression.

  • ncharacter_expression: The Unicode character expression.

UPPER ( character_expression )

Returns the character expression with lowercase character data converted to uppercase.

  • character_expression: The character expression.

                      SELECT UPPER('MIXED case');
                      -- Result: 'MIXED CASE'
                    

XML_EXTRACT(xml, xpath [, separator])

Extracts an XML document using the specified XPath to flatten the XML. A comma is used to separate the outputs by default, but this can be changed by specifying the third parameter.

  • xml: The XML document to extract.
  • xpath: The XPath used to select the nodes. The nodes selected will be returned in a token-separated list.
  • separator: The optional token used to separate the items in the flattened response. If this is not specified, the separator will be a comma.

                      SELECT XML_EXTRACT('<vowels><ch>a</ch><ch>e</ch><ch>i</ch><ch>o</ch><ch>u</ch></vowels>', '/vowels/ch');
                      -- Result: 'a,e,i,o,u'

                      SELECT XML_EXTRACT('<vowels><ch>a</ch><ch>e</ch><ch>i</ch><ch>o</ch><ch>u</ch></vowels>', '/vowels/ch', ';');
                      -- Result: 'a;e;i;o;u'
                    

CData Python Connector for Acumatica

MATH Functions

ABS ( numeric_expression )

Returns the absolute (positive) value of the specified numeric expression.

  • numeric_expression: The expression of an indeterminate numeric data type except for the bit data type.

                      SELECT ABS(15);
                      -- Result: 15

                      SELECT ABS(-15);
                      -- Result: 15
                    

ACOS ( float_expression )

Returns the arc cosine, the angle in radians whose cosine is the specified float expression.

  • float_expression: The float expression that specifies the cosine of the angle to be returned. Values outside the range from -1 to 1 return null.

                      SELECT ACOS(0.5);
                      -- Result: 1.0471975511966
                    

ASIN ( float_expression )

Returns the arc sine, the angle in radians whose sine is the specified float expression.

  • float_expression: The float expression that specifies the sine of the angle to be returned. Values outside the range from -1 to 1 return null.

                      SELECT ASIN(0.5);
                      -- Result: 0.523598775598299
                    

ATAN ( float_expression )

Returns the arc tangent, the angle in radians whose tangent is the specified float expression.

  • float_expression: The float expression that specifies the tangent of the angle to be returned.

                      SELECT ATAN(10);
                      -- Result: 1.47112767430373
                    

ATN2 ( float_expression1 , float_expression2 )

Returns the angle in radians between the positive x-axis and the ray from the origin to the point (y, x) where x and y are the values of the two specified float expressions.

  • float_expression1: The float expression that is the y-coordinate.
  • float_expression2: The float expression that is the x-coordinate.

                      SELECT ATN2(1, 1);
                      -- Result: 0.785398163397448
                    

CEILING ( numeric_expression ) or CEIL( numeric_expression )

Returns the smallest integer greater than or equal to the specified numeric expression.

  • numeric_expression: The expression of an indeterminate numeric data type except for the bit data type.

                      SELECT CEILING(1.3);
                      -- Result: 2

                      SELECT CEILING(1.5);
                      -- Result: 2

                      SELECT CEILING(1.7);
                      -- Result: 2
                    

COS ( float_expression )

Returns the trigonometric cosine of the specified angle in radians in the specified expression.

  • float_expression: The float expression of the specified angle in radians.

                      SELECT COS(1);
                      -- Result: 0.54030230586814
                    

COT ( float_expression )

Returns the trigonometric cotangent of the angle in radians specified by float_expression.

  • float_expression: The float expression of the angle in radians.

                      SELECT COT(1);
                      -- Result: 0.642092615934331
                    

DEGREES ( numeric_expression )

Returns the angle in degrees for the angle specified in radians.

  • numeric_expression: The angle in radians, an expression of an indeterminate numeric data type except for the bit data type.

                      SELECT DEGREES(3.1415926);
                      -- Result: 179.999996929531
                    

EXP ( float_expression )

Returns the exponential value of the specified float expression. For example, EXP(LOG(20)) is 20.

  • float_expression: The float expression.

                      SELECT EXP(2);
                      -- Result: 7.38905609893065
                    

EXPR ( expression )

Evaluates the expression.

  • expression: The expression. Operators allowed are +, -, *, /, ==, !=, >, <, >=, and <=.

                      SELECT EXPR('1 + 2 * 3');
                      -- Result: 7

                      SELECT EXPR('1 + 2 * 3 == 7');
                      -- Result: true
                    

FLOOR ( numeric_expression )

Returns the largest integer less than or equal to the numeric expression.

  • numeric_expression: The expression of an indeterminate numeric data type except for the bit data type.

                      SELECT FLOOR(1.3);
                      -- Result: 1

                      SELECT FLOOR(1.5);
                      -- Result: 1

                      SELECT FLOOR(1.7);
                      -- Result: 1
                    

GREATEST(int1,int2,....)

Returns the greatest of the supplied integers.

				SELECT GREATEST(3,5,8,10,1)
				-- Result: 10			
				

HEX(value)

Returns a the equivalent hex for the input value.

  • value: A string or numerical value to be converted into hex.

				SELECT HEX(866849198);
				-- Result: 33AB11AE
				
				SELECT HEX('Sample Text');
				-- Result: 53616D706C652054657874
				

JSON_AVG(json, jsonpath)

Computes the average value of a JSON array within a JSON object. The path to the array is specified in the jsonpath argument. Return value is numeric or null.

  • json: The JSON document to compute.
  • jsonpath: The JSONPath used to select the nodes. [x], [2..], [..8], or [1..12] are accepted. [x] selects all nodes.

                      SELECT JSON_AVG('[1,2,3,4,5]', '$[x]');
                      -- Result: 3

                      SELECT JSON_AVG('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[x]');
                      -- Result: 3

                      SELECT JSON_AVG('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[3..]');
                      -- Result: 4.5
                    

JSON_COUNT(json, jsonpath)

Returns the number of elements in a JSON array within a JSON object. The path to the array is specified in the jsonpath argument. Return value is numeric or null.

  • json: The JSON document to compute.
  • jsonpath: The JSONPath used to select the nodes. [x], [2..], [..8], or [1..12] are accepted. [x] selects all nodes.

                      SELECT JSON_COUNT('[1,2,3,4,5]', '$[x]');
                      -- Result: 5

                      SELECT JSON_COUNT('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[x]');
                      -- Result: 5

                      SELECT JSON_COUNT('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[3..]');
                      -- Result: 2
                    

JSON_MAX(json, jsonpath)

Gets the maximum value in a JSON array within a JSON object. The path to the array is specified in the jsonpath argument. Return value is numeric or null.

  • json: The JSON document to compute.
  • jsonpath: The JSONPath used to select the nodes. [x], [2..], [..8], or [1..12] are accepted. [x] selects all nodes.

                      SELECT JSON_MAX('[1,2,3,4,5]', '$[x]');
                      -- Result: 5

                      SELECT JSON_MAX('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[x]');
                      -- Result: 5

                      SELECT JSON_MAX('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[..3]');
                      -- Result: 4
                    

JSON_MIN(json, jsonpath)

Gets the minimum value in a JSON array within a JSON object. The path to the array is specified in the jsonpath argument. Return value is numeric or null.

  • json: The JSON document to compute.
  • jsonpath: The JSONPath used to select the nodes. [x], [2..], [..8], or [1..12] are accepted. [x] selects all nodes.

                      SELECT JSON_MIN('[1,2,3,4,5]', '$[x]');
                      -- Result: 1

                      SELECT JSON_MIN('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[x]');
                      -- Result: 1

                      SELECT JSON_MIN('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[3..]');
                      -- Result: 4
                    

JSON_SUM(json, jsonpath)

Computes the summary value in JSON according to the JSONPath expression. Return value is numeric or null.

  • json: The JSON document to compute.
  • jsonpath: The JSONPath used to select the nodes. [x], [2..], [..8], or [1..12] are accepted. [x] selects all nodes.

                      SELECT JSON_SUM('[1,2,3,4,5]', '$[x]');
                      -- Result: 15

                      SELECT JSON_SUM('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[x]');
                      -- Result: 15

                      SELECT JSON_SUM('{"test": {"data": [1,2,3,4,5]}}', '$.test.data[3..]');
                      -- Result: 9
                    

LEAST(int1,int2,....)

Returns the least of the supplied integers.

				SELECT LEAST(3,5,8,10,1)
				-- Result: 1			
				

LOG ( float_expression [, base ] )

Returns the natural logarithm of the specified float expression.

  • float_expression: The float expression.
  • base: The optional integer argument that sets the base for the logarithm.

                      SELECT LOG(7.3890560);
                      -- Result: 1.99999998661119
                    

LOG10 ( float_expression )

Returns the base-10 logarithm of the specified float expression.

  • float_expression: The expression of type float.

                      SELECT LOG10(10000);
                      -- Result: 4
                    

MOD(dividend,divisor)

Returns the integer value associated with the remainder when dividing the dividend by the divisor.

  • dividend: The number to take the modulus of.
  • divisor: The number to divide the dividend by when determining the modulus.

				SELECT MOD(10,3);
				-- Result: 1
				

NEGATE(real_number)

Returns the opposite to the real number input.

  • real_number: The real number to find the opposite of.

				SELECT NEGATE(10);
				-- Result: -10
				
				SELECT NEGATE(-12.4)
				--Result: 12.4
				

PI ( )

Returns the constant value of pi.

                  SELECT PI()
                  -- Result: 3.14159265358979 
                

POWER ( float_expression , y )

Returns the value of the specified expression raised to the specified power.

  • float_expression: The float expression.
  • y: The power to raise float_expression to.

                      SELECT POWER(2, 10);
                      -- Result: 1024

                      SELECT POWER(2, -2);
                      -- Result: 0.25
                    

RADIANS ( float_expression )

Returns the angle in radians of the angle in degrees.

  • float_expression: The degrees of the angle as a float expression.

                      SELECT RADIANS(180);
                      -- Result: 3.14159265358979
                    

RAND ( [ integer_seed ] )

Returns a pseudorandom float value from 0 through 1, exclusive.

  • seed: The optional integer expression that specifies the seed value. If seed is not specified, a seed value at random will be assigned.

                      SELECT RAND();
                      -- This result may be different, since the seed is randomized
                      -- Result: 0.873159630165044

                      SELECT RAND(1);
                      -- This result will always be the same, since the seed is constant
                      -- Result: 0.248668584157093
                    

ROUND ( numeric_expression [ ,integer_length] [ ,function ] )

Returns the numeric value rounded to the specified length or precision.

  • numeric_expression: The expression of a numeric data type.
  • length: The optional precision to round the numeric expression to. When this is omitted, the default behavior will be to round to the nearest whole number.
  • function: The optional type of operation to perform. When the function parameter is omitted or has a value of 0 (default), numeric_expression is rounded. When a value other than 0 is specified, numeric_expression is truncated.

                      SELECT ROUND(1.3, 0);
                      -- Result: 1

                      SELECT ROUND(1.55, 1);
                      -- Result: 1.6

                      SELECT ROUND(1.7, 0, 0);
                      -- Result: 2

                      SELECT ROUND(1.7, 0, 1);
                      -- Result: 1
                      
                      SELECT ROUND (1.24);
                      -- Result: 1.0
                    

SIGN ( numeric_expression )

Returns the positive sign (1), 0, or negative sign (-1) of the specified expression.

  • numeric_expression: The expression of an indeterminate data type except for the bit data type.

                      SELECT SIGN(0);
                      -- Result: 0

                      SELECT SIGN(10);
                      -- Result: 1

                      SELECT SIGN(-10);
                      -- Result: -1
                    

SIN ( float_expression )

Returns the trigonometric sine of the angle in radians.

  • float_expression: The float expression specifying the angle in radians.

                     SELECT SIN(1);
                     -- Result: 0.841470984807897
                    

SQRT ( float_expression )

Returns the square root of the specified float value.

  • float_expression: The expression of type float.

                      SELECT SQRT(100);
                      -- Result: 10
                    

SQUARE ( float_expression )

Returns the square of the specified float value.

  • float_expression: The expression of type float.

                      SELECT SQUARE(10);
                      -- Result: 100

                      SELECT SQUARE(-10);
                      -- Result: 100
                    

TAN ( float_expression )

Returns the tangent of the input expression.

  • float_expression: The expression of type float.

                      SELECT TAN(1);
                      -- Result: 1.5574077246549
                    

TRUNC(decimal_number,precision)

Returns the supplied decimal number truncated to have the supplied decimal precision.

  • decimal_number: The decimal value to truncate.
  • precision: The number of decimal places to truncate the decimal number to.

				SELECT TRUNC(10.3423,2);
				-- Result: 10.34
				

_ROW_NUMBER_()

Returns a row index as an additional column.

				SELECT ColumnName, _ROW_NUMBER_() FROM TableName
				-- Result: ColumnData, 0
				ColumnData2, 1
				ColumnData3, 2
				

CData Python Connector for Acumatica

DATE Functions

CURRENT_DATE()

Returns the current date value.

                  SELECT CURRENT_DATE();
                  -- Result: 2018-02-01
                

CURRENT_TIMESTAMP()

Returns the current time stamp of the database system as a datetime value. This value is equal to GETDATE and SYSDATETIME, and is always in the local timezone.

                  SELECT CURRENT_TIMESTAMP();
                  -- Result: 2018-02-01 03:04:05
                

DATEADD (datepart , integer_number , date [, dateformat])

Returns the datetime value that results from adding the specified number (a signed integer) to the specified date part of the date.

  • datepart: The part of the date to add the specified number to. The valid values and abbreviations are
    • year (yy, yyyy)
    • quarter (qq, q)
    • month (mm, m)
    • week (wk, ww)
    • weekday (dw)
    • dayofyear (dy, y)
    • day (dd, d)
    • hour (hh)
    • minute (mi, n)
    • second (ss, s)
    • millisecond (ms)
  • number: The number to be added.
  • date: The expression of the datetime data type.
  • dateformat: The optional output date format.

                  SELECT DATEADD('d', 5, '2018-02-01');
                  -- Result: 2018-02-06

                  SELECT DATEADD('hh', 5, '2018-02-01 00:00:00');
                  -- Result: 2018-02-01 05:00:00
                

DATEDIFF ( datepart , startdate , enddate )

Returns the difference (a signed integer) of the specified time interval between the specified start date and end date.

  • datepart: The part of the date that is the time interval of the difference between the start date and end date. The valid values and abbreviations are:
    • Year (year, yyyy, yy)
    • Quarter (quarter, qq, q)
    • Month (month, mm, m)
    • Week (week, wk, ww)
    • Weekday (weekday, dw)
    • Dayofyear (dayofyear, dy, y)
    • Day (day, dd, d)
    • Hour (hour, hh)
    • Minute (minute, mi, n)
    • Second (second, ss, s)
    • Millisecond (millisecond, ms)
  • startdate: The datetime expression of the start date.
  • enddate: The datetime expression of the end date.

                  SELECT DATEDIFF('d', '2018-02-01', '2018-02-10');
                  -- Result: 9

                  SELECT DATEDIFF('hh', '2018-02-01 00:00:00', '2018-02-01 12:00:00');
                  -- Result: 12
                

DATE_FORMAT(date,format)

Returns the date or timestamp in the format specified. This function mirrors the MySQL DATE_FORMAT function.

  • date: A date or timestamp string.
  • format: The specifier string of the desired output format. The list of supported format specifiers comes from the MySQL DATE_FORMAT function (see link to MySQL documentation above).

					SELECT DATE_FORMAT('9/4/2021 3:11:53 AM','%h')
					-- Result: 03
				  

DATEFROMPARTS(integer_year, integer_month, integer_day)

Returns the datetime value for the specified year, month, and day.

  • year: The integer expression specifying the year.
  • month: The integer expression specifying the month.
  • day: The integer expression specifying the day.

                    SELECT DATEFROMPARTS(2018, 2, 1);
                    -- Result: 2018-02-01
                  

DATENAME(datepart , date)

Returns the character string that represents the specified date part of the specified date.

  • datepart: The part of the date to return. The valid values and abbreviations are year (yy, yyyy), quarter (qq, q), month (mm, m), dayofyear (dy, y), day (dd, d), week (wk, ww), weekday (dw), hour (hh), minute (mi, n), second (ss, s), millisecond (ms), microsecond (mcs), and nanosecond (ns).
  • date: The datetime expression.

                     SELECT DATENAME('yy', '2018-02-01');
                     -- Result: '2018'

                     SELECT DATENAME('dw', '2018-02-01');
                     -- Result: 'Thursday'
                   

DATEPART(datepart, date [,integer_datefirst])

Returns a character string that represents the specified date part of the specified date.

  • datepart: The part of the date to return. The valid values and abbreviations are year (yy, yyyy), quarter (qq, q), month (mm, m), dayofyear (dy, y), day (dd, d), week (wk, ww), weekday (dw), hour (hh), minute (mi, n), second (ss, s), millisecond (ms), microsecond (mcs), nanosecond (ns), ISODOW, ISO_WEEK (isoweek, isowk,isoww), and ISOYEAR.
  • date: The datetime string.
  • datefirst: The optional integer representing the first day of the week. The default is 7, Sunday.

                    SELECT DATEPART('yy', '2018-02-01');
                    -- Result: 2018

                    SELECT DATEPART('dw', '2018-02-01');
                    -- Result: 5
                  

DATETIMEFROMPARTS(integer_year, integer_month, integer_day, integer_hour, integer_minute, integer_seconds, integer_milliseconds)

Returns the datetime value for the specified date parts.

  • year: The integer expression specifying the year.
  • month: The integer expression specifying the month.
  • day: The integer expression specifying the day.
  • hour: The integer expression specifying the hour.
  • minute: The integer expression specifying the minute.
  • seconds: The integer expression specifying the seconds.
  • milliseconds: The integer expression specifying the milliseconds.

                    SELECT DATETIMEFROMPARTS(2018, 2, 1, 1, 2, 3, 456);
                    -- Result: 2018-02-01 01:02:03.456
                  

DATETIME2FROMPARTS(integer_year, integer_month, integer_day, integer_hour, integer_minute, integer_seconds, integer_fractions, integer_precision)

Returns the datetime value for the specified date parts.

  • year: The integer expression specifying the year.
  • month: The integer expression specifying the month.
  • day: The integer expression specifying the day.
  • hour: The integer expression specifying the hour.
  • minute: The integer expression specifying the minute.
  • seconds: The integer expression specifying the seconds.
  • fractions: The integer expression specifying the fractions of the second.
  • precision: The integer expression specifying the precision of the fraction.

				    SELECT DATETIME2FROMPARTS(2018, 2, 1, 1, 2, 3, 456, 3);
                    -- Result: 2018-02-01 01:02:03.456
                  

DATE_TRUNC(date, datepart)

Truncates the date to the precision of the given date part. Modeled after the Oracle TRUNC function.

  • date: The datetime string that specifies the date.
  • datepart: Refer to the Oracle documentation for valid datepart syntax.

				    SELECT DATE_TRUNC('05-04-2005', 'YY');
                    -- Result: '1/1/2005'
					
                    SELECT DATE_TRUNC('05-04-2005', 'MM');
                    -- Result: '5/1/2005'                    
                  

DATE_TRUNC2(datepart, date, [weekday])

Truncates the date to the precision of the given date part. Modeled after the PostgreSQL date_trunc function.

  • datepart: One of 'millennium', 'century', 'decade', 'year', 'quarter', 'month', 'week', 'day', 'hour', 'minute' or 'second'.
  • date: The datetime string that specifies the date.
  • weekday: The optional day of the week to use as the first day for 'week'. One of 'sunday', 'monday', etc.

                    SELECT DATE_TRUNC2('year', '2020-02-04');
                    -- Result: '2020-01-01'

                    SELECT DATE_TRUNC2('week', '2020-02-04', 'monday');
                    -- Result: '2020-02-02', which is the previous Monday
                  

DAY(date)

Returns the integer that specifies the day component of the specified date.

  • date: The datetime string that specifies the date.

                    SELECT DAY('2018-02-01');
                    -- Result: 1
                  

DAYNAME(date)

Returns the name of the day of the week of the specified date.

  • date: The datetime string that specifies the date.

                    SELECT DAYNAME('8/18/2021');
                    -- Result: Wednesday
                  

DAYOFMONTH(date)

Returns the day of the month of the given date part.
  • date: The datetime string that specifies the date.

				  SELECT DAYOFMONTH('04/15/2000');
				  -- Result: 15
				  

DAYOFWEEK(date)

Returns the day of the week of the given date part.
  • date: The datetime string that specifies the date.

				  SELECT DAYOFWEEK('04/15/2000');
				  -- Result: 7
				  

DAYOFYEAR(date)

Returns the day of the year of the given date part.
  • date: The datetime string that specifies the date.

				  SELECT DAYOFYEAR('04/15/2000');
				  -- Result: 106
				  

EOMONTH(date [, integer_month_to_add ]) or LAST_DAY(date)

Returns the last day of the month that contains the specified date with an optional offset.

  • date: The datetime expression specifying the date for which to return the last day of the month.
  • integer_month_to_add: The optional integer expression specifying the number of months to add to the date before calculating the end of the month.

                  SELECT EOMONTH('2018-02-01');
                  -- Result: 2018-02-28
                  
                  SELECT LAST_DAY('2018-02-01');
                  -- Result: 2018-02-28

                  SELECT EOMONTH('2018-02-01', 2);
                  -- Result: 2018-04-30
                

EXTRACT(date_part FROM date_column_name)

Returns the last day of the month that contains the specified date with an optional offset.

  • date_part: One of the following date components: YEAR, MONTH, DAY, HOUR, MINUTE, SECOND.
  • date_column_name: The name of a date column in a table.

                  SELECT EXTRACT(YEAR FROM DateColumn)
                  -- Result: 2021
                

FDWEEK(date)

Returns the first day of the week of the given date part.
  • date: The datetime string that specifies the date.
  • weeks to add: An optional integer expression specifying the number of months to add to the date before calculating the first day of the week.

				  SELECT FDWEEK('02-08-2018');
				  -- Result: 2/4/2018

          SELECT FDWEEK('02-08-2018', 1)
          --Result: 02/11/2018
				  

FDMONTH(date)

Returns the first day of the month of the given date part.
  • date: The datetime string that specifies the date.
  • month to add: An optional integer expression specifying the number of months to add to the date before calculating the first day of the month.

				  SELECT FDMONTH('02-08-2018');
				  -- Result: 2/1/2018

          SELECT FDMONTH('02-08-2018', 1) 
          --Result: 03/01/2018
				  

FDQUARTER(date)

Returns the first day of the quarter of the given date part.
  • date: The datetime string that specifies the date.
  • quarters to add: An optional integer expression specifying the number of months to add to the date before calculating the first day of the quarter.

				  SELECT FDQUARTER('05-08-2018');
				  -- Result: 4/1/2018

          SELECT FDQUARTER('05-08-2018',1)
          --Result: 07/01/2018
				  

FILEMODIFIEDTIME(uri)

Returns the time stamp associated with the Date Modified of the relevant file.

  • uri: An absolute path pointing to a file on the local file system.

				 SELECT FILEMODIFIEDTIME('C:/Documents/myfile.txt');
				 -- Result: 6/25/2019 10:06:58 AM
				 

FROM_DAYS(datevalue)

Returns a date derived from the number of days after 1582-10-15 (based upon the Gregorian calendar). This will be equivalent to the MYSQL FROM_DAYS function.

  • datevalue: A integer value representing the number of days since 1582-10-15.

				SELECT FROM_DAYS(736000);
				-- Result: 2/6/2015
				

FROM_UNIXTIME(time, issecond)

Returns a representation of the unix_timestamp argument as a value in YYYY-MM-DD HH:MM:SS expressed in the current time zone.

  • time: The time stamp value from epoch time. Milliseconds are accepted.
  • issecond: Indicates the time stamp value is milliseconds to epoch time.

                      SELECT FROM_UNIXTIME(1540495231, 1);
                      -- Result: 2018-10-25 19:20:31

                      SELECT FROM_UNIXTIME(1540495357385, 0);
                      -- Result: 2018-10-25 19:22:37
                    

GETDATE()

Returns the current time stamp of the database system as a datetime value. This value is equal to CURRENT_TIMESTAMP and SYSDATETIME, and is always in the local timezone.

                  SELECT GETDATE();
                  -- Result: 2018-02-01 03:04:05
                

GETUTCDATE()

Returns the current time stamp of the database system formatted as a UTC datetime value. This value is equal to SYSUTCDATETIME.

In addition, GETUTCDATE can take an optional second parameter, a date and time that are converted to UTC.

                  SELECT GETUTCDATE();
                  -- For example, if the local timezone is Eastern European Time (GMT+2)
                  -- Result: 2018-02-01 05:04:05

                  SELECT GETUTCDATE('2020/08/31 13:56:00')
                  --Result: '2020-08-31 17:56:00'
                

HOUR(date)

Returns the hour component from the provided datetime.

  • date: The datetime string that specifies the date.

				SELECT HOUR('02-02-2020 11:30:00');
				-- Result: 11
				

ISDATE(date, [date_format])

Returns 1 if the value is a valid date, time, or datetime value; otherwise, 0.

  • date: The datetime string.
  • date_format: The optional datetime format.

                      SELECT ISDATE('2018-02-01', 'yyyy-MM-dd');
                      -- Result: 1

                      SELECT ISDATE('Not a date');
                      -- Result: 0
                    

LAST_WEEK()

Returns a time stamp equivalent to exactly one week before the current date.

				SELECT LAST_WEEK();	//Assume the date is 3/17/2020	
			 -- Result: 3/10/2020 00:00:00
				

LAST_MONTH()

Returns a time stamp equivalent to exactly one month before the current date.

	
				SELECT LAST_MONTH(); //Assume the date is 3/17/2020
				-- Result: 2/17/2020 00:00:00
				

LAST_YEAR()

Returns a time stamp equivalent to exactly one year before the current date.

				SELECT LAST_YEAR();	//Assume the date is 3/17/2020	
				-- Result: 3/10/2019 00:00:00
				

LDWEEK(date)

Returns the last day of the provided week.

  • date: The datetime string.
  • weeks to add: An optional integer expression specifying the number of months to add to the date before calculating the last day of the week.

				SELECT LDWEEK('02-02-2020');
				-- Result: 2/8/2020
				

LDMONTH(date)

Returns the last day of the provided month.

  • date: The datetime string.
  • months to add: An optional integer expression specifying the number of months to add to the date before calculating the last day of the month.

				SELECT LDMONTH('02-02-2020');
				-- Result: 2/29/2020

        SELECT LDMONTH('02-08-2020', 1)
        --Result: 03/31/2020
				

LDQUARTER(date)

Returns the last day of the provided quarter.

  • date: The datetime string.
  • quarters to add: An optional integer expression specifying the number of months to add to the date before calculating the last day of the quarter.

				SELECT LDQUARTER('02-02-2020');
				-- Result: 3/31/2020

        SELECT LDQUARTER('02-02-2020',1)
        --Result: 06/30/2020
				

MAKEDATE(year, days)

Returns a date value from a year and a number of days.

  • year: The year
  • days: The number of days into the year. Value must be greater than 0.

          SELECT MAKEDATE(2020, 1);
          -- Result: 2020-01-01
        

MINUTE(date)

Returns the minute component from the provided datetime.

  • date: The datetime string that specifies the date.

				SELECT MINUTE('02-02-2020 11:15:00');
				-- Result: 15
				

MONTH(date)

Returns the month component from the provided datetime.

  • date: The datetime string that specifies the date.

				SELECT MONTH('02-02-2020');
				-- Result: 2
				

QUARTER(date)

Returns the quarter associated with the provided datetime.

  • date: The datetime string that specifies the date.

				SELECT QUARTER('02-02-2020');
				-- Result: 1
				

SECOND(date)

Returns the second component from the provided datetime.

  • date: The datetime string that specifies the date.

				SELECT SECOND('02-02-2020 11:15:23');
				-- Result: 23
				

SMALLDATETIMEFROMPARTS(integer_year, integer_month, integer_day, integer_hour, integer_minute)

Returns the datetime value for the specified date and time.

  • year: The integer expression specifying the year.
  • month: The integer expression specifying the month.
  • day: The integer expression specifying the day.
  • hour: The integer expression specifying the hour.
  • minute: The integer expression specifying the minute.

                      SELECT SMALLDATETIMEFROMPARTS(2018, 2, 1, 1, 2);
                      -- Result: 2018-02-01 01:02:00
                    

STRTODATE(string,format)

Parses the provided string value and returns the corresponding datetime.

  • string: The string value to be converted to datetime format.
  • format: A format string which describes how to interpret the first string input. A few special formats are available as well, including UNIX, UNIXMILIS, TICKS, and FILETICKS.

				SELECT STRTODATE('03*04*2020','dd*MM*yyyy');
				-- Result: 4/3/2020
				

SYSDATETIME()

Returns the current time stamp as a datetime value of the database system. It is equal to GETDATE and CURRENT_TIMESTAMP, and is always in the local timezone.

                  SELECT SYSDATETIME();
                  -- Result: 2018-02-01 03:04:05
                

SYSUTCDATETIME()

Returns the current system date and time as a UTC datetime value. It is equal to GETUTCDATE.

                  SELECT SYSUTCDATETIME();
                  -- For example, if the local timezone is Eastern European Time (GMT+2)
                  -- Result: 2018-02-01 05:04:05
                

TIMEFROMPARTS(integer_hour, integer_minute, integer_seconds, integer_fractions, integer_precision)

Returns the time value for the specified time and with the specified precision.

  • hour: The integer expression specifying the hour.
  • minute: The integer expression specifying the minute.
  • seconds: The integer expression specifying the seconds.
  • fractions: The integer expression specifying the fractions of the second.
  • precision : The integer expression specifying the precision of the fraction.

                      SELECT TIMEFROMPARTS(1, 2, 3, 456, 3);
                      -- Result: 01:02:03.456
                    

TO_DAYS(date)

Returns the number of days since 0000-00-01. This will only return a value for dates on or after 1582-10-15 (based upon the Gregorian calendar). This will be equivalent to the MYSQL TO_DAYS function.

  • date: The datetime string that specifies the date.

				SELECT TO_DAYS('02-06-2015');
				-- Result: 736000
				

WEEK(date)

Returns the week (of the year) associated with the provided datetime.

  • date: The datetime string that specifies the date.

				SELECT WEEK('02-17-2020 11:15:23');
				-- Result: 8
				

YEAR(date)

Returns the integer that specifies the year of the specified date.

  • date: The datetime string.

                      SELECT YEAR('2018-02-01');
                      -- Result: 2018
                    

CData Python Connector for Acumatica

Date Literal Functions

The following date literal functions can be used to filter date fields using relative intervals. Note that while the <, >, and = operators are supported for these functions, <= and >= are not.

L_TODAY()

The current day.

  SELECT * FROM MyTable WHERE MyDateField = L_TODAY()

L_YESTERDAY()

The previous day.

  SELECT * FROM MyTable WHERE MyDateField = L_YESTERDAY()

L_TOMORROW()

The following day.

  SELECT * FROM MyTable WHERE MyDateField = L_TOMORROW()

L_LAST_WEEK()

Every day in the preceding week.

  SELECT * FROM MyTable WHERE MyDateField = L_LAST_WEEK()

L_THIS_WEEK()

Every day in the current week.

  SELECT * FROM MyTable WHERE MyDateField = L_THIS_WEEK()

L_NEXT_WEEK()

Every day in the following week.

  SELECT * FROM MyTable WHERE MyDateField = L_NEXT_WEEK()
Also available:
  • L_LAST/L_THIS/L_NEXT MONTH
  • L_LAST/L_THIS/L_NEXT QUARTER
  • L_LAST/L_THIS/L_NEXT YEAR

L_LAST_N_DAYS(n)

The previous n days, excluding the current day.

  SELECT * FROM MyTable WHERE MyDateField = L_LAST_N_DAYS(3)

L_NEXT_N_DAYS(n)

The following n days, including the current day.

  SELECT * FROM MyTable WHERE MyDateField = L_NEXT_N_DAYS(3)
Also available:
  • L_LAST/L_NEXT_90_DAYS

L_LAST_N_WEEKS(n)

Every day in every week, starting n weeks before current week, and ending in the previous week.

  SELECT * FROM MyTable WHERE MyDateField = L_LAST_N_WEEKS(3)

L_NEXT_N_WEEKS(n)

Every day in every week, starting the following week, and ending n weeks in the future.

  SELECT * FROM MyTable WHERE MyDateField = L_NEXT_N_WEEKS(3)
Also available:
  • L_LAST/L_NEXT_N_MONTHS(n)
  • L_LAST/L_NEXT_N_QUARTERS(n)
  • L_LAST/L_NEXT_N_YEARS(n)

CData Python Connector for Acumatica

SELECT Statements

A SELECT statement can consist of the following basic clauses.

  • SELECT
  • INTO
  • FROM
  • JOIN
  • WHERE
  • GROUP BY
  • HAVING
  • UNION
  • ORDER BY
  • LIMIT

SELECT Syntax

The following syntax diagram outlines the syntax supported by the SQL engine of the connector:

SELECT {
  [ TOP <numeric_literal> | DISTINCT ]
  { 
    * 
    | { 
        <expression> [ [ AS ] <column_reference> ] 
        | { <table_name> | <correlation_name> } .* 
      } [ , ... ] 
  }
  { 
    FROM <table_reference> [ [ AS ] <identifier> ] 
  } [ , ... ]
  [ [  
      INNER | { { LEFT | RIGHT | FULL } [ OUTER ] } 
    ] JOIN <table_reference> [ ON <search_condition> ] [ [ AS ] <identifier> ] 
  ] [ ... ] 
  [ WHERE <search_condition> ]
  [ GROUP BY <column_reference> [ , ... ]
  [ HAVING <search_condition> ]
  [ UNION [ ALL ] <select_statement> ]
  [ 
    ORDER BY 
    <column_reference> [ ASC | DESC ] [ NULLS FIRST | NULLS LAST ]
  ]
  [ 
    LIMIT <expression>
    [ 
      { OFFSET | , }
      <expression> 
    ]
  ] 
} | SCOPE_IDENTITY() 

<expression> ::=
  | <column_reference>
  | @ <parameter> 
  | ?
  | COUNT( * | { [ DISTINCT ] <expression> } )
  | { AVG | MAX | MIN | SUM | COUNT } ( <expression> ) 
  | NULLIF ( <expression> , <expression> ) 
  | COALESCE ( <expression> , ... ) 
  | CASE <expression>
      WHEN { <expression> | <search_condition> } THEN { <expression> | NULL } [ ... ]
    [ ELSE { <expression> | NULL } ]
    END 
  | {RANK() | DENSE_RANK()} OVER ([PARTITION BY <column_reference>] {ORDER BY <column_reference>})
  | <literal>
  | <sql_function> 

<search_condition> ::= 
  {
    <expression> { = | > | < | >= | <= | <> | != | LIKE | NOT LIKE | IN | NOT IN | IS NULL | IS NOT NULL | AND | OR | CONTAINS | BETWEEN | IS DISTINCT FROM | IS NOT DISTINCT FROM } [ <expression> ]
  } [ { AND | OR } ... ] 

Examples

  1. Return all columns:
    SELECT * FROM Events
  2. Rename a column:
    SELECT [location_displayName] AS MY_location_displayName FROM Events
  3. Cast a column's data as a different data type:
    SELECT CAST(Reminder AS VARCHAR) AS Str_Reminder FROM Events
  4. Search data:
    SELECT * FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'
  5. Return the number of items matching the query criteria:
    SELECT COUNT(*) AS MyCount FROM Events 
  6. Return the number of unique items matching the query criteria:
    SELECT COUNT(DISTINCT location_displayName) FROM Events 
  7. Return the unique items matching the query criteria:
    SELECT DISTINCT location_displayName FROM Events 
  8. Sort a result set in ascending order:
    SELECT Id, location_displayName FROM Events  ORDER BY location_displayName ASC
  9. Restrict a result set to the specified number of rows:
    SELECT Id, location_displayName FROM Events LIMIT 10 
  10. Parameterize a query to pass in inputs at execution time. This enables you to create prepared statements and mitigate SQL injection attacks.
    SELECT * FROM Events WHERE Id = @param
See Explicitly Caching Data for information on using the SELECT statement in offline mode.

Pseudo Columns

Some input-only fields are available in SELECT statements. These fields, called pseudo columns, do not appear as regular columns in the results, yet may be specified as part of the WHERE clause. You can use pseudo columns to access additional features from Acumatica.

    SELECT * FROM Events WHERE Pseudo = '@Pseudo'
    

Aggregate Functions

For SELECT examples using aggregate functions, see Aggregate Functions.

JOIN Queries

See JOIN Queries for SELECT query examples using JOINs.

Date Literal Functions

Date Literal Functions contains SELECT examples with date literal functions.

Window Functions

See Window Functions for SELECT examples containing window functions.

Table-Valued Functions

See Table-Valued Functions for SELECT examples with table-valued functions.

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Aggregate Functions

COUNT

Returns the number of rows matching the query criteria.

SELECT COUNT(*) FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'

COUNT(DISTINCT)

Returns the number of distinct, non-null field values matching the query criteria.

SELECT COUNT(DISTINCT Id) AS DistinctValues FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'

AVG

Returns the average of the column values.

SELECT location_displayName, AVG(Reminder) FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'  GROUP BY location_displayName

MIN

Returns the minimum column value.

SELECT MIN(Reminder), location_displayName FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB' GROUP BY location_displayName

MAX

Returns the maximum column value.

SELECT location_displayName, MAX(Reminder) FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB' GROUP BY location_displayName

SUM

Returns the total sum of the column values.

SELECT SUM(Reminder) FROM Events WHERE Id = 'Jq74mCczmFXk1tC10GB'

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JOIN Queries

The CData Python Connector for Acumatica supports standard SQL joins like the following examples.

Inner Join

An inner join selects only rows from both tables that match the join condition:

SELECT Customer.CustomerName, MainContact.DisplayName FROM Customer, Customer_Maincontact WHERE Customer.CustomerID=Customer_Maincontact.ParentCustomerID

Left Join

A left join selects all rows in the FROM table and only matching rows in the JOIN table:

SELECT Groups.displayName, Conversations.Topic FROM Groups LEFT OUTER JOIN Conversations ON Groups.Id=Conversations.GroupId

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Window Functions

Window functions allow you to create computed fields from a group of rows (a window) that return a result for each row, as opposed to one computed result for a set of rows, as is the case with aggregate functions. The connector supports the following window function syntax.

Note: Window function support is an experimental feature of the connector. This functionality extends beyond the connector's core scope of being SQL-92 compliant. As such, performance with window functions may not be optimal.

Window Function Clauses

OVER

The OVER clause defines the window over which window functions are performed.

SELECT A, B, <window function> OVER (<window frame>) FROM TableName

The <window function> refers to any supported window function clause, and the <window frame> refers to one or more clauses that specify the logic by which the window is defined.

PARTITION BY

The PARTITION BY clause subdivides a window into sub-windows called partitions. For each unique value in the column specified in the PARTITION BY clause, every record with that value collectively forms an individual partition.

SELECT A, B, <window function> OVER (PARTITION BY A ORDER BY B) From Events

The <window function> refers to any supported window function clause.

Window Functions

The connector supports math, ranking, and analytic window functions.

Math

These window functions perform mathematical operations on the records within the window.

COUNT()

Calculates the number of records in each partition. The calculated column is of the data type "int".

In each partition, every record will display the total number of records in that partition.

SELECT Name, Role, Earnings, COUNT() OVER (PARTITION BY Role) FROM Employees

COUNT_BIG()

Calculates the number of records in each partition. The calculated column is of the data type "bigint".

In each partition, every record will display the total number of records in that partition.

SELECT Name, Role, Earnings, COUNT_BIG() OVER (PARTITION BY Role) FROM Employees

MIN(numeric_column)

Calculates the minimum value of a numerical column per partition.

In each partition, every record will display the minimum value of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, MIN(Earnings) OVER (PARTITION BY Role) FROM Employees

MAX(numeric_column)

Calculates the maximum value of a numerical column per partition.

In each partition, every record will display the maximum value of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, MAX(Earnings) OVER (PARTITION BY Role) FROM Employees

SUM(numeric_column)

Calculates the sum of a numerical column per partition.

In each partition, every record will display the sum of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, SUM(Earnings) OVER (PARTITION BY Role) FROM Employees

AVG(numeric_column)

Calculates the average value of a numerical column per partition.

In each partition, every record will display the average value of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, AVG(Earnings) OVER (PARTITION BY Role) FROM Employees

MEDIAN(numeric_column)

Calculates the median value of a numerical column per partition.

In each partition, every record will display the median value of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, MEDIAN(Earnings) OVER (PARTITION BY Role) FROM Employees

STDEV(numeric_column)

Calculates the standard deviation of a numerical column per partition.

In each partition, every record will display the standard deviation of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, STDEV(Earnings) OVER (PARTITION BY Role) FROM Employees

STDEVP(numeric_column)

Calculates the population standard deviation of a numerical column per partition.

In each partition, every record will display the population standard deviation of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, STDEVP(Earnings) OVER (PARTITION BY Role) FROM Employees

VAR(numeric_column)

Calculates the statistical standard variance of a numerical column per partition.

In each partition, every record will display the statistical standard variance of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, VAR(Earnings) OVER (PARTITION BY Role) FROM Employees

VARP(numeric_column)

Calculates the variance population of a numerical column per partition.

In each partition, every record will display the variance population of numeric_column across the records in that partition.

SELECT Name, Role, Earnings, VARP(Earnings) OVER (PARTITION BY Role) FROM Employees

Ranking

These window functions rank records that fall within the window and its partitions.

RANK()

Assigns a rank number to each record in a window based on the value of the column specified in the required ORDER BY clause.

If two or more records have an equal value in the in ranked column, they all receive the same rank number and the rank count increments internally, skipping ahead one rank number for each record with a duplicate value in the ORDER BY column.

SELECT Id, location_displayName, RANK() OVER (ORDER BY location_displayName) AS Rank FROM Events

If you add a PARTITION BY clause, a separate set of ranks is calculated for each partition.

SELECT Id, location_displayName, RANK() OVER (PARTITION BY Id ORDER BY location_displayName) AS Rank FROM Events

DENSE_RANK()

Operates like the RANK() function, but it doesn't increment the internal rank counter for each record with a duplicate value in the ranked column.

This means that, while records with identical values in the ORDER BY column still share a rank number, the function never skips a rank number.

SELECT Id, location_displayName, DENSE_RANK() OVER (PARTITION BY Id ORDER BY location_displayName) AS Rank FROM Events

If you add a PARTITION BY clause, a separate set of ranks is calculated for each partition.

SELECT Id, location_displayName, DENSE_RANK() OVER (PARTITION BY Id ORDER BY location_displayName) AS Rank FROM Events

ROW_NUMBER()

Calculates a row number for each record. An ORDER BY clause in the OVER clause is required.

SELECT Name, Role, Earnings, ROW_NUMBER() OVER (ORDER BY Role) FROM Employees
If you define multiple partitions with PARTITION BY, a new set of row numbers are calculated for each partition.
SELECT Name, Role, Earnings, ROW_NUMBER() OVER (PARTITION BY Role ORDER BY Earnings) FROM Employees

NTILE()

Distributes rows of an ordered partition into a specified number of approximately equal groups, or buckets. It assigns each group a bucket number starting from one. For each row in a group, the NTILE() function assigns a bucket number representing the group to which the row belongs.

The syntax of NTILE() is:

NTILE(buckets) OVER (
    [PARTITION BY partition_expression, ... ]
    ORDER BY sort_expression [ASC | DESC], ...
)
The following are paramaters that NTILE() supports:

  • buckets: The number of buckets into which the rows are divided. The buckets can be an expression or subquery that evaluates to a positive integer. It cannot be a window function.
  • PARTITION BY: distributes rows of a result set into partitions to which the NTILE() function is applied.
  • ORDER BY is clause that specifies the logical order of rows in each partition to which the NTILE() is applied.

If the number of rows is not divisible by the buckets, the NTILE() function returns groups of two sizes with the difference by one. The larger groups always precede the smaller group in the order set by ORDER BY in the OVER() clause.

If the total of rows is divisible by the number of buckets, the function divides the rows evenly among buckets. The following statement creates a new table named ntile_demo that stores 10 integers:

CREATE TABLE sales.ntile_demo (
	v INT NOT NULL
);
	
INSERT INTO sales.ntile_demo(v) 
VALUES(1),(2),(3),(4),(5),(6),(7),(8),(9),(10);	
	
SELECT * FROM sales.ntile_demo;
This statement uses the NTILE() function to divide ten rows into three groups:
SELECT 
	v, 
	NTILE (3) OVER (
		ORDER BY v
	) buckets
FROM 
	sales.ntile_demo;

Analytical

These window functions perform analytical operations on the records within the window.

PERCENT_RANK()

Calculates the relative rank SQL Percentile of each row. It returns values greater than zero, but the maximum value is one. It does not count any NULL values. This function is nondeterministic.

The syntax of PERCENT_RANK() is:

PERCENT_RANK() OVER (
      [PARTITION BY partition_expression, ... ]
      ORDER BY sort_expression [ASC | DESC], ...
  )
  
This syntax uses the following parameters.

  • PARTITION BY: By default, SQL Server treats the whole data set as a single set. You can specify the PARTITION BY clause to divide data into multiple sets. The Percent_Rank function performs the analytical calculations on each set. This parameter is optional.
  • ORDER BY: Sorts the data in either ascending or descending order. This parameter is required.

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Table-Valued Functions

Table-valued functions are functions that return a table (rowset).

Note: Table-valued function support is an experimental feature of the connector. This functionality extends beyond the connector's core scope of being SQL-92 compliant. As such, performance with these functions may not be optimal.

Table-Valued Function Clauses

CROSS APPLY

The CROSS APPLY operator is used to perform a subquery on each row of a table or resultset produced by a preceding table expression.

<table_expression_1> CROSS APPLY <table_expression_2>

The second table expression can reference results from the first table expression to create derived columns or an altered recordset via a table-valued function.

Each resulting record is an instance of the record it's splitting, with all the same column values, except for the column(s) containing the value split by the function.

WITH

The WITH clause is used alongside certain table-valued functions to match against constructs within the structure being split (keys, element names, attribute names, etc.) and/or to specify metadata for the columns generated from the function.
SELECT A.ColumnName, X.DerivedColumnName FROM TableName A CROSS APPLY <table-valued function> WITH (DerivedColumnName varchar(255)) AS X

Table-Valued Functions

STRING_SPLIT(input_text,delimiter)

Takes each record in the recordset of the preceding table expression, splits the column containing delimiters (input_text) into substrings separated by the delimiter, and returns one record per substring.

  • input_text: A column whose value you want to parse.
  • delimiter: The character used to split the value of the column specified in input_text.

Suppose there is a column called "SplitColumn" with the following content:

One-Two-Three
To unpack this value across multiple records:
SELECT A.ID, X.Value FROM [TableWithDelimitedStringField] A CROSS APPLY STRING_SPLIT(A.SplitColumn,'-') WITH (Value VARCHAR(255)) AS X

-- Results:
-----------
|ID|Value|
|1|One|
|1|Two|
|1|Three|

JSONTABLE(json_content,[jsonpath])

For each record in the recordset of the preceding table expression, returns one record for each instance of a key in a JSON array (json_content) that matches the key(s) specified in the WITH clause, at the scope specified by the "jsonpath" input.

  • json_content: A JSON "table" (array of objects). The contents can nest, but this must be a single JSON array, not any other JSON structure, at the root level.
    • The values of every instance of the key(s) provided in the WITH clause are retrievable only for substructures which are immediate children of the root-level JSON array.
  • jsonpath: An optional JSONPath query defining the scope, within the json_content array, that you want to pull content from. The JSON key(s) identified in the WITH clause must exist at the scope defined in this parameter. This defaults to the JSON root ($).

Consider a sample table with a single record, including an ID column and column with JSON content called "JSONColumn" with the following content:

[
	{
		"name": "Samuel",
		"email": "sam@gmail.com",
		"extrainfo": {
			"city": "Seattle"
		}
	},
	{
		"name": "Katherine",
		"email": "kat@gmail.com",
	},
	{
		"name": "George",
		"email": "george23@gmail.com",
	},
	{
		"name": "Carlos",
		"email": "carlos32@gmail.com",
	}
]

To extract all values for a certain key, specify the scope in the JSONTABLE function and provide the desired key(s) in the WITH clause.

SELECT A.ID, X.name FROM [TableWithJSONField] A CROSS APPLY JSONTABLE(A.JSONColumn) WITH (name VARCHAR(255)) AS X

-- Results: 
|ID|name|
---------
|1 |Samuel|
|1 |Katherine|
|1 |George|
|1 |Carlos|

XMLTABLE(xml_content,[xpath,child_type])

For each record in the resultset of the preceding table expression, returns one record for each of the elements and/or attributes in an XML structure (xml_content) that match the tag name(s) and/or attribute name(s) specified in the WITH clause, at the scope specified in the "xpath" input.

  • xml_content: A column containing an XML structure.
  • xpath: An optional XPath that specifies the scope within the XML structure at which the connector extracts content matching the tag/attribute name(s) specified in the WITH clause.
    • When extracting the content of sub-elements, the connector can retrieve all content from tags at the root level, (depth 0) immediate children of the root (depth 1), and children of those children (depth 2).
    • When extracting element attribute content, the connector can retrieve all content from tags containing the specified attribute at the root level (depth 0) and from immediate children of root-level elements (depth 1).
  • child_type: An optional parameter that specifies the part(s) of the parent element (specified in the xpath input) that the column(s) provided in the WITH clause are checked against to identify content.
    • You can supply the following values:
      • 0: The column(s) in the WITH clause are checked for matches against the parent element's attribute names and sub-element tag names.
      • 1: The column(s) in the WITH clause are checked for matches against the parent element's attribute names.
      • 2: The column(s) in the WITH clause are checked for matches against the parent element's sub-element tag names.
    • When not supplied, this defaults to 0.

Extracting Sub-Element Values

Consider a sample table with a single record, including an ID column and a column with XML content called "XMLContent" with the following content:
<shoppingList>
    <item>
        <name>Apples</name>
        <quantity>3</quantity>
        <unit>Kg</unit>
    </item>
    <item>
        <name>Bread</name>
        <quantity>2</quantity>
        <unit>Loaf</unit>
		<extrainfo>
			<Type>Whole-Grain</Type>
		</extrainfo>
    </item>
    <item>
        <name>Milk</name>
        <quantity>1</quantity>
        <unit>Carton</unit>
    </item>
    <item>
        <name>Eggs</name>
        <quantity>12</quantity>
        <unit></unit>
    </item>
</shoppingList>

To extract sub-element content, specify the scope in the XMLTABLE function and provide the desired element name(s) in the WITH clause. Note that this will not work if the XMLTABLE function's child_type input is set to 1.

SELECT A.ID, X.name FROM [TableWithXMLField] A CROSS APPLY XMLTABLE(A.XMLContent,'//*/item') WITH (name VARCHAR(255)) AS X

-- Results: 
|ID|name|
---------
|1|Apples|
|1|Bread|
|1|Milk|
|1|Eggs|

Extracting Values Using Element Tag Attributes

Suppose you have this sample table with a single record, including an ID column and a column with XML content called "XMLContent" with the following content:

<restaurant>
  <dish type="appetizer">
    <name lang="en">Caprese Salad</name>
    <chef>Chef Giovanni</chef>
    <price currency="USD">9.99</price>
  </dish>
  <dish type="main-course">
    <name lang="fr">Boeuf Bourguignon</name>
    <chef>Chef Marie</chef>
    <price currency="EUR">19.99</price>
  </dish>
  <dish type="dessert">
    <name lang="es">Tres Leches Cake</name>
    <chef>Chef Alejandro</chef>
    <price currency="MXN">89.99</price>
  </dish>
</restaurant>

To extract attribute content, specify the scope in the XMLTABLE function and provide the desired attribute name(s) in the WITH clause. Note that this will not work if the XMLTABLE function's child_type input is set to 2.

SELECT A.ID, X.type FROM [TableWithXMLField] A CROSS APPLY XMLTABLE(A.XMLContent,'//*/dish') WITH (type VARCHAR(255)) AS X

-- Results: 
|ID|type|
---------
|1|appetizer|
|1|main-course|
|1|dessert|

CSVTABLE(csv_content,[delimiter])

For each record in the resultset of the preceding table expression, reads from a column that contains a CSV table (csv_content) and for each record in that CSV table, returns one record containing the value of the CSV column(s) specified in the WITH clause.

  • csv_content: A column containing a CSV table.
  • delimiter: An optional custom delimiter (instead of a comma) which splits the CSV content contained in the csv_content input.

Consider a sample table with a single record, including an ID column and a column containing CSV table called "CSVContent" with the following content:

Name;Category;Price
Apple;Fruit;0.99
Spaghetti;Pasta;5.49
Chicken Breast;Meat;8.99
Broccoli;Vegetable;2.49

To select every value in the "Name" column and account for the custom delimiter (;):

SELECT A.ID, X.Name FROM [TableWithCSVField] A CROSS APPLY CSVTABLE(A.CSVContent,';') WITH (Name VARCHAR(255)) AS X

-- Results:
|ID|Name|
-----------
|1|Apple|
|1|Spaghetti|
|1|Chicken Breast|
|1|Broccoli|

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INSERT Statements

To create new records, use INSERT statements.

INSERT Syntax

The INSERT statement specifies the columns to be inserted and the new column values. You can specify the column values in a comma-separated list in the VALUES clause, as shown in the following example:

INSERT INTO <table_name> 
( <column_reference> [ , ... ] )
VALUES 
( { <expression> | NULL } [ , ... ] ) 
  

<expression> ::=
  | @ <parameter> 
  | ?
  | <literal>
The following is an example query:
INSERT INTO Events (location_displayName) VALUES ('Zenburger')

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UPDATE Statements

To modify existing records, use UPDATE statements.

Update Syntax

The UPDATE statement takes as input a comma-separated list of columns and new column values as name-value pairs in the SET clause, as shown in the following example:

UPDATE <table_name> SET <select_statement> | {<column_reference> = <expression> [ , ... ]} WHERE { Id = <expression>  } [ { AND | OR } ... ] 

<expression> ::=
  | @ <parameter> 
  | ?
  | <literal>

The following is an example query:

UPDATE Events SET location_displayName='Zenburger' WHERE Id = @myId

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DELETE Statements

To delete information from a table, use DELETE statements.

DELETE Syntax

The DELETE statement requires the table name in the FROM clause and the row's primary key in the WHERE clause, as shown in the following example:

<delete_statement> ::= DELETE FROM <table_name> WHERE { Id = <expression> } [ { AND | OR } ... ]

<expression> ::=
  | @ <parameter> 
  | ?
  | <literal>

The following is an example query:

DELETE FROM Events WHERE Id = @myId

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CACHE Statements

When caching is enabled, CACHE statements provide complete control over the data that is cached and the table to which it is cached. The CACHE statement executes the SELECT statement specified and caches its results to a table with the same name in the cache database or to table specified in <cached_table_name>. The connector updates or inserts rows to the cache depending on whether or not they already exist in the cache, so the primary key, which is used to identify existing rows, must be included in the selected columns.

See Caching Data for more information on different caching strategies.

CACHE Statement Syntax

The cache statement may include the following options that alter its behavior:

CACHE [ <cached_table_name> ] [ WITH TRUNCATE | AUTOCOMMIT | SCHEMA ONLY | DROP EXISTING | ALTER SCHEMA ] <select_statement> 

WITH TRUNCATE

If this option is set, the connector removes existing rows in the cache table before adding the selected rows. Use this option if you want to refresh the entire cache table but keep its existing schema.

AUTOCOMMIT

If this option is set, the connector commits each row individually. Use this option if you want to ignore the rows that could not be cached due to some reason. By default, the entire result set is cached as a single transaction.

DROP EXISTING

If this option is set, the connector drops the existing cache table before caching the new results. Use this option if you want to refresh the entire cache table, including its schema.

SCHEMA ONLY

If this option is set, the connector creates the cache table based on the SELECT statement without executing the query.

ALTER SCHEMA

If this option is set, the connector alters the schema of the existing table in the cache if it does not match the schema of the SELECT statement. This option results in new columns or dropped columns, if the schema of the SELECT statement does not match the cached table.

Common Queries

Use the following cache statement to cache all rows of a table:

CACHE SELECT * FROM Events

Use the following cache statement to cache all rows of a table into the cache table CachedEvents:

CACHE CachedEvents SELECT * FROM Events

Use the following cache statement for incremental caching. The DateModified column may not exist in all tables. The cache statement shows how incremental caching would work if there were such a column. Also, notice that, in this case, the WITH TRUNCATE and DROP EXISTING options are specifically omitted, which would have deleted all existing rows.

CACHE CachedEvents SELECT * FROM Events WHERE DateModified > '2013-04-04'

Use the following cache statements to create a table with all available columns that will then cache only a few of them. The sequence of statements cache only Id and location_displayName even though the cache table CachedEvents has all the columns in Events.

CACHE CachedEvents SCHEMA ONLY SELECT * FROM Events
CACHE CachedEvents SELECT Id, location_displayName FROM Events

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EXECUTE Statements

To execute stored procedures, you can use EXECUTE or EXEC statements.

EXEC and EXECUTE assign stored procedure inputs, referenced by name, to values or parameter names.

Stored Procedure Syntax

To execute a stored procedure as an SQL statement, use the following syntax:

 
{ EXECUTE | EXEC } <stored_proc_name> 
{
  [ @ ] <input_name> = <expression>
} [ , ... ]

<expression> ::=
  | @ <parameter> 
  | ?
  | <literal>

Example Statements

Reference stored procedure inputs by name:

EXECUTE my_proc @second = 2, @first = 1, @third = 3;

Execute a parameterized stored procedure statement:

EXECUTE my_proc second = @p1, first = @p2, third = @p3; 

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PIVOT and UNPIVOT

PIVOT and UNPIVOT can be used to change a table-valued expression into another table.

PIVOT

PIVOT rotates a table-value expression by turning unique values from one column into multiple columns in the output. PIVOT can run aggregations where required on any column value.
PIVOT Synax

 
"SELECT 'AverageCost' AS Cost_Sorted_By_Production_Days, [0], [1], [2], [3], [4]
FROM
(
SELECT DaysToManufacture, StandardCost
FROM Production.Product
) AS SourceTable
PIVOT
(
AVG(StandardCost)
FOR DaysToManufacture IN ([0], [1], [2], [3], [4])
) AS PivotTable;"

UNPIVOT

UNPIVOT carries out nearly the opposite to PIVOT by rotating columns of a table-valued expressions into column values.
UNPIVOT Sytax

 
"SELECT VendorID, Employee, Orders
FROM
(SELECT VendorID, Emp1, Emp2, Emp3, Emp4, Emp5
FROM pvt) p
UNPIVOT
(Orders FOR Employee IN
(Emp1, Emp2, Emp3, Emp4, Emp5)
)AS unpvt;"

For further information on PIVOT and UNPIVOT, see FROM clause plus JOIN, APPLY, PIVOT (Transact-SQL)

CData Python Connector for Acumatica

REST Data Model

The connector models the Acumatica API as relational tables.

When you connect, the connector connects to Acumatica and gets the list of tables and the metadata for the tables and views.

Since the table definitions are dynamically retrieved, any changes to the remote data are immediately reflected in your queries;.

Generic Inquiries

The connector can discover generic inquiry data as tables and views when the Web Services Endpoint has been extended to expose them.

See Establishing a Connection for a guide to extending the Web Services Endpoint and exposing your generic inquiries.

Generic inquiries can also be configured to support server-side filtering. Server-side Filtering for Generic Inquiries describes this procedure.

Limitations

Limitations describes the limits of the Acumatica REST API and how they affect the operation of the connector.

Tables

Tables shows default table definitions from Acumatica. Your actual tables may differ depending on your customizations. Set the URL connection property to the latest version to get the changes.

The CData Python Connector for Acumatica reads table and column metadata dynamically, so it will include both your customizations and any new features that are added to standard Acumatica entities in the future.

Views

Views are read-only tables representing Acumatica entities such as child tables.

Stored Procedures

Stored Procedures are function-like interfaces to Acumatica. They can be used to perform extra tasks that do not fit into the standard operation of directly interacting with a table.

CData Python Connector for Acumatica

Server-side Filtering for Generic Inquiries

Server-side Filtering for Generic Inquiries

By default, queries that filter on general inquiry columns will not be processed server-side. In order to enable server-side filtering for these columns, you must first explicitly set them as filter columns in the Acumatica UI.

To expose a general inquiry column as a filter:

  1. Navigate in the Acumatica UI to the sidebar and select More Items > Customization > Generic Inquiry. The configuration page for your generic inquiry appears.
  2. Click the magnifying glass icon in the Inquiry Title field. Select the generic inquiry that you have exposed as a table.
  3. Click PARAMETERS. Perform the following steps for each column for which you want to enable server-side filtering.
    1. Click + (Add Row).
    2. Ensure the checkbox in the Active column is checked.
    3. Provide a name for the parameter in the Name column.
    4. Click the dropdown in the Schema Field column. Choose the general inquiry column for which you want to enable server-side filtering.
  4. Click CONDITIONS. Perform the following steps for each column for which you want to enable server-side filtering.
    1. Click + (Add Row).
    2. Ensure the checkbox in the Active column is checked.
    3. Leave the Condition column set to Equals.
    4. Click the dropdown in the Data Field column. Choose the general inquiry column for which you want to enable server-side filtering. This should match the column chosen in the Schema Field column on the PARAMETERS tab.
    5. Click the dropdown in the Value 1 column. Choose the parameter you created earlier for this column.
  5. Click the Save icon to submit these changes.
  6. Navigate in the sidebar to Integration > Web Service Endpoints (expand the Integration page with Show More to find this, if needed).
  7. Select the endpoint in which you have exposed the general inquiry as an object.
  8. Expand the node for the general inquiry object's endpoint in the ENDPOINT tree structure, then select its child entity (Result), which you created earlier.
  9. Click the FIELDS tab. Perform the following steps for each column for which you want to enable server-side filtering.
    1. Select the Mapped Object field associated with the column, then click its magnifying glass icon.
    2. Double-click Filter to set "Filter" as the mapped object.
  10. Click the Save icon to submit these changes. Server-side filtering for these columns is now enabled.

CData Python Connector for Acumatica

Limitations

Custom Fields

By default, the table and view schemas describe the column behavior of system fields as well as custom fields. You can set the IncludeCustomFields property to false if you want to work only with system fields. On a SELECT * FROM EntityName query, the custom fields will not be returned even though IncludeCustomFields is set to true. The Custom fields will be returned only when they are specified on projections. For example:

SELECT Custom_FieldA, Custom_FieldB, Custom_FieldC FROM EntityName

The requirement to explicitly select the custom fields is due to a limitation with the Acumatica API. It will not return results when too much overall data is selected per record. It is not possible to dynamically calculate at what point Acumatica will cut off results. You should only select the columns you need and not everything to keep things working smoothly.

In case a group of custom fields are important to your use case and the Acumatica API cannot return them in a single response, it is recommended to setup an extended endpoint and include the custom fields in it. After this change, you should be able to retrieve them as non-custom fields from the extended endpoint.

An alternative to extending an existing endpoint is to split the main query into two or more subqueries and distribute the selected custom fields between them. Lastly, you can join the subqueries on the primary key column as in the example below.

SELECT Customer_1.CustomerID, Customer_1.Custom_Timezone, Customer_1.Custom_ProductGroup, Customer_2.Custom_ContactCategory, Customer_2.Custom_DiscountGroup 
FROM Customer Customer_1 JOIN Customer Customer_2 
ON Customer_1.CustomerID = Customer_2.CustomerID

Linked and Detail Entities

The Linked and Detail entities to main entity are exposed in the main entity table as aggregate columns starting with the 'Linked' prefix. They are also exposed as separate views using the naming format 'MainEntityName_LinkedEntityName'. For example, the Customer table exposes the linked entity 'Contacts' as the aggregate field 'LinkedContacts'. The linked entity Contacts is also exposed as the separate view Customer_Contacts.

Due to Acumatica REST API limitations, the Linked and Detail entities cannot be retrieved when requesting multiple main entity records. For this reason, when querying the main entity, without specifying the primary key in the WHERE clause conditions, the linked aggregate fields are returned as null. For example, in order to retrieve the aggregate values of the linked entity Contacts in the Customer table, you can execute one of the queries below.

SELECT CustomerID, LinkedContacts FROM Customer WHERE customerId = '100009'

You can also make use of the IN operator and subqueries as below, in order to retrieve the Linked and Detail entities for multiple parent records.

SELECT CustomerID, LinkedContacts FROM Customer WHERE CustomerId IN (SELECT CustomerId FROM Customer)

Additionally, to query the exposed Linked and Detail entities, specifying the parent entity primary key in the WHERE clause conditions, is required. For example:

SELECT * from Customer_Contacts where ParentCustomerID = '100009'

Excluded Columns

Acumatica has introduced an optimization in version 3 of the Contract Based API. When multiple records are retrieved from the Acumatica ERP through an endpoint, the system tries to optimize the retrieval of the records and obtain all needed records in one request to the database. If the optimization fails, the system returns an error, specifying the entities or fields that caused the failure of the optimized request. To prevent the error from occurring, we need to do one of the following:

  • Get all the records one by one by specifying the key fields.
  • Get only the fields that don't break the optimization.

Create the schema by calling the CreateSchema if you have not already done so.

Add the additional parameters in the .rsd schema files below.

  • key="true"
  • other:exclude="true"

These two parameters are needed so the new entities don't return an error in SELECT * FROM Table queries. The example below is a rsd snippet that shows how these parameters are used.

In the example Contact.rsd, Duplicate and AddressValidated are fields that break the Acumatica optimization so they have the additional parameter other:exclude="true". When a SELECT * FROM Contact query is done, the driver will get all fields except those with the other:exclude="true" parameter. However, the omitted fields will still appear on your result set as null. The data provider will request the excluded fields from the endpoint only if they are explicitly stated in the SELECT clause or if the primary key column/s are specified.

In the example Contact.rsd, ContactID is the primary key so the additional parameter key="true" is added. When a SELECT * FROM Contact WHERE ContactID='contactid' is done, the driver will get all fields from the API including the Duplicate and AddressValidated.

<rsb:script xmlns:rsb="http://www.rssbus.com/ns/rsbscript/2">
  <rsb:info title="Contact" description="Contact is an auto-generated table." other:tablehref="https://try.acumatica.com/ISV/entity/Default/17.200.001/Contact" other:tablekind="EntitySet"/>
    <attr name="LanguageOrLocale" xs:type="string" columnsize="2000" readonly="false" description="null" other:entityname="Contact" other:schemanamespace="Contact" other:internalcolumnname="LanguageOrLocale"/>
    <attr name="DuplicateFound" xs:type="bool" readonly="false" description="null" other:internalcolumnname="DuplicateFound"/>
    <attr name="JobTitle" xs:type="string" columnsize="2000" readonly="false" description="null" other:internalcolumnname="JobTitle"/>
    <attr name="ContactID" xs:type="int" key="true" readonly="false" description="null" other:queue="0" other:internalkey="ContactID" other:internalcolumnname="ContactID"/>
    .......
    <attr name="Duplicate" xs:type="string" columnsize="2000" readonly="false" description="null" other:exclude="true" other:internalcolumnname="Duplicate"/>
    .......
    <attr name="AddressValidated" xs:type="bool" readonly="false" description="null" other:exclude="true" other:internalcolumnname="AddressValidated"/>
    .......
      <rsb:set attr="other:tablekind" value="EntitySet" />
  <rsb:set attr="tablename" value="Contact" />
  <rsb:set attr="description" value="Contact is an auto-generated table." />
  <rsb:set attr="entity" value="Contact" />
  <rsb:set attr="other:tablehref" value="https://try.acumatica.com/ISV/entity/Default/17.200.001/Contact" />
  <rsb:set attr="supportgetdeleted" value="true" />

  <rsb:script method="GET">
    <rsb:call op="acumaticaadoExecuteSearch">
      <rsb:push/>
    </rsb:call>
  </rsb:script>

  <rsb:script method="POST">
    <rsb:call op="acumaticaadoExecuteInsert">
      <rsb:push/>
    </rsb:call>
  </rsb:script>

  <rsb:script method="MERGE">
    <rsb:call op="acumaticaadoExecuteUpdate">
      <rsb:push/>
    </rsb:call>
  </rsb:script>

  <rsb:script method="DELETE">
    <rsb:call op="acumaticaadoExecuteDelete">
      <rsb:push/>
    </rsb:call>
  </rsb:script>
</rsb:script>
    

Creating User Defined Views

A simple and effective way to automate the process of getting all records one by one by specifying the key fields are the User Defined Views. User Defined Views are predefined queries stored in a local JSON file, which can be queried from the driver just as the existing views.

As stated in the above section, the excluded fields will be retrieved if the primary key is specified. You can use the driver's enhanced SQL support to automatically do this for each record by appending an IN subquery to your main query. From the subquery, you should be selecting only the primary key column as in the example below.

SELECT * FROM Contact WHERE ContactId IN (SELECT ContactId FROM Contact)

You can then add this query under the "query" field of a local created JSON file (ex. C:\Users\user\Desktop\CustomViews.json).

{
    "AllContacts": {
        "query": "SELECT * FROM Contact WHERE ContactId IN (SELECT ContactId FROM Contact)"
    },
    "AllCustomers": {
        "query": "SELECT * FROM Customer WHERE CustomerId IN (SELECT CustomerId FROM Customer)"
    }
}

Lastly, you can directly query the defined views (AllContacts and AllCustomers) after stating the Custom Views file location in the UserDefinedViews property under the Other connection parameter.

Other='UserDefinedViews=C:\Users\User\Desktop\CustomViews.json;'

You can also execute a query to the sys_tables view to verify if the custom views are added. You should be able to find them under the UserViews schema.

SELECT * FROM sys_tables where TableType='view'

CData Python Connector for Acumatica

Tables

The connector models the data in Acumatica as a list of tables in a relational database that can be queried using standard SQL statements.

CData Python Connector for Acumatica Tables

Name Description
Account Account is an auto-generated table.
AccountByPeriodInquiry AccountByPeriodInquiry is an auto-generated table.
AccountBySubaccountInquiry AccountBySubaccountInquiry is an auto-generated table.
AccountDetailsInquiry AccountDetailsInquiry is an auto-generated table.
AccountLocation AccountLocation is an auto-generated table.
AccountSummaryInquiry AccountSummaryInquiry is an auto-generated table.
Adjustment Adjustment is an auto-generated table.
AttributeDefinition AttributeDefinition is an auto-generated table.
Bill Bill is an auto-generated table.
BusinessAccount BusinessAccount is an auto-generated table.
Carrier Carrier is an auto-generated table.
Case Case is an auto-generated table.
CashSale CashSale is an auto-generated table.
Check Check is an auto-generated table.
Contact Contact is an auto-generated table.
Currency Currency is an auto-generated table.
Customer Customer is an auto-generated table.
CustomerClass CustomerClass is an auto-generated table.
CustomerLocation CustomerLocation is an auto-generated table.
CustomerPaymentMethod CustomerPaymentMethod is an auto-generated table.
CustomerPriceClass CustomerPriceClass is an auto-generated table.
Discount Discount is an auto-generated table.
DiscountCode DiscountCode is an auto-generated table.
Email Email is an auto-generated table.
Employee Employee is an auto-generated table.
Event Event is an auto-generated table.
FinancialPeriod FinancialPeriod is an auto-generated table.
FOBPoint FOBPoint is an auto-generated table.
InterBranchAccountMapping InterBranchAccountMapping is an auto-generated table.
InventoryAllocationInquiry InventoryAllocationInquiry is an auto-generated table.
InventoryReceipt InventoryReceipt is an auto-generated table.
InventorySummaryInquiry InventorySummaryInquiry is an auto-generated table.
Invoice Invoice is an auto-generated table.
ItemClass ItemClass is an auto-generated table.
ItemWarehouse ItemWarehouse is an auto-generated table.
JournalTransaction JournalTransaction is an auto-generated table.
JournalVoucher JournalVoucher is an auto-generated table.
KitAssembly KitAssembly is an auto-generated table.
KitSpecification KitSpecification is an auto-generated table.
Lead Lead is an auto-generated table.
LotSerialClass LotSerialClass is an auto-generated table.
NonStockItem NonStockItem is an auto-generated table.
Opportunity Opportunity is an auto-generated table.
Payment Payment is an auto-generated table.
PaymentMethod PaymentMethod is an auto-generated table.
PhysicalInventoryReview PhysicalInventoryReview is an auto-generated table.
ProjectTransaction ProjectTransaction is an auto-generated table.
PurchaseOrder PurchaseOrder is an auto-generated table.
PurchaseReceipt PurchaseReceipt is an auto-generated table.
ReportingSettings ReportingSettings is an auto-generated table.
SalesInvoice SalesInvoice is an auto-generated table.
SalesOrder SalesOrder is an auto-generated table.
Salesperson Salesperson is an auto-generated table.
SalesPricesInquiry SalesPricesInquiry is an auto-generated table.
SalesPriceWorksheet SalesPriceWorksheet is an auto-generated table.
Shipment Shipment is an auto-generated table.
ShippingBox ShippingBox is an auto-generated table.
ShippingTerm ShippingTerm is an auto-generated table.
ShippingZones ShippingZones is an auto-generated table.
ShipVia ShipVia is an auto-generated table.
StatementCycle StatementCycle is an auto-generated table.
StockItem StockItem is an auto-generated table.
Subaccount Subaccount is an auto-generated table.
Task Task is an auto-generated table.
Tax Tax is an auto-generated table.
TaxCategory TaxCategory is an auto-generated table.
TaxZone TaxZone is an auto-generated table.
TransferOrder TransferOrder is an auto-generated table.
TrialBalance TrialBalance is an auto-generated table.
UnitsOfMeasure UnitsOfMeasure is an auto-generated table.
Vendor Vendor is an auto-generated table.
VendorClass VendorClass is an auto-generated table.
VendorPricesInquiry VendorPricesInquiry is an auto-generated table.
VendorPriceWorksheet VendorPriceWorksheet is an auto-generated table.
VoucherEntryCode VoucherEntryCode is an auto-generated table.
Warehouse Warehouse is an auto-generated table.

CData Python Connector for Acumatica

Account

Account is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

TaxCategory String False

AccountGroup String False

AccountClass String False

ConsolidationAccount String False

Type String False

AccountCD [KEY] String False

PostOption String False

RequireUnits Bool False

LastModifiedDateTime Datetime False

AccountID Int False

CurrencyID String False

CreatedDateTime Datetime False

Active Bool False

RevaluationRateType String False

Secured Bool False

UseDefaultSubaccount Bool False

CashAccount Bool False

Description String False

ChartOfAccountsOrder Int False

Custom_AccountRecords_NoteText String False

Custom_AccountRecords_NoteID String False

CData Python Connector for Acumatica

AccountByPeriodInquiry

AccountByPeriodInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Subaccount String False

LinkedResults String False

Account [KEY] String False

Ledger String False

BranchID String False

FinancialYear String False

Custom_Filter_ShowCuryDetail Bool False

CData Python Connector for Acumatica

AccountBySubaccountInquiry

AccountBySubaccountInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Subaccount String False

Branch String False

LinkedResults String False

Account [KEY] String False

Ledger String False

Period String False

Custom_Filter_ShowCuryDetail Bool False

CData Python Connector for Acumatica

AccountDetailsInquiry

AccountDetailsInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

FromPeriod String False

ToPeriod String False

LinkedResults String False

PeriodStartDate Datetime False

PeriodEndDate Datetime False

BeginingBalance Double False

Account [KEY] String False

FromDate Datetime False

Turnover Double False

IncludeReclassified Bool False

Subaccount String False

IncludeUnreleased Bool False

ToDate Datetime False

Branch String False

Ledger String False

IncludeUnposted Bool False

EndingBalance Double False

Custom_Filter_ShowCuryDetail Bool False

Custom_Filter_StartDateUI String False

Custom_Filter_ShowSummary Bool False

Custom_Filter_PeriodStartDateUI String False

CData Python Connector for Acumatica

AccountLocation

AccountLocation is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

DefaultProject String False

Warehouse String False

ShippingRule String False

FreightAccount String False

FOBPoint String False

BusinessAccountID String False

ShippingTerms String False

ARAccount String False

LinkedContact String False

Calendar String False

ShippingBranch String False

SaturdayDelivery Bool False

Active Bool False

ShippingZone String False

ResidentialDelivery Bool False

DiscountSubaccount String False

LocationID [KEY] String False

SameAsDefaultLocation Bool False

TaxZone String False

SalesAccount String False

LeadTimeInDays Int False

TaxRegistrationID String False

AddressValidated Bool False

ARSubaccount String False

FedExGroundCollect Bool False

SalesSubaccount String False

LinkedAddress String False

PriceClass String False

OrderPriority Int False

ShipVia String False

FreightSubaccount String False

Insurance Bool False

DiscountAccount String False

EntityUsageType String False

LinkedOpportunities String False

TaxExemptionNumber String False

AddressSameAsMain Bool False

LinkedCases String False

LocationName String False

Custom_LocationCurrent_CSiteID String False

Custom_LocationCurrent_CDiscountSubID String False

Custom_LocationCurrent_CInsurance Bool False

Custom_LocationCurrent_CCarrierID String False

Custom_LocationCurrent_CShipTermsID String False

Custom_LocationCurrent_CLeadTime Int False

Custom_LocationCurrent_NoteID String False

Custom_LocationCurrent_IsAddressSameAsMain Bool False

Custom_LocationCurrent_CDefProjectID String False

Custom_LocationCurrent_CFreightAcctID String False

Custom_LocationCurrent_CTaxZoneID String False

Custom_LocationCurrent_IsARAccountSameAsMain Bool False

Custom_LocationCurrent_CCalendarID String False

Custom_LocationCurrent_CAvalaraExemptionNumber String False

Custom_LocationCurrent_CPriceClassID String False

Custom_LocationCurrent_COrderPriority Int False

Custom_Address_NoteID String False

Custom_LocationCurrent_CShipZoneID String False

Custom_LocationCurrent_CDiscountAcctID String False

Custom_LocationCurrent_CResedential Bool False

Custom_LocationCurrent_CBranchID String False

Custom_LocationCurrent_CAvalaraCustomerUsageType String False

Custom_LocationCurrent_CFreightSubID String False

Custom_LocationCurrent_CSalesAcctID String False

Custom_Location_NoteText String False

Custom_LocationCurrent_CSalesSubID String False

Custom_LocationCurrent_TaxRegistrationID String False

Custom_LocationCurrent_CGroundCollect Bool False

Custom_LocationCurrent_CFOBPointID String False

Custom_LocationCurrent_CSaturdayDelivery Bool False

Custom_Location_NoteID String False

Custom_LocationCurrent_CShipComplete String False

CData Python Connector for Acumatica

AccountSummaryInquiry

AccountSummaryInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Subaccount String False

Branch String False

LinkedResults String False

Ledger String False

Period String False

AccountClass [KEY] String False

Custom_Filter_ShowCuryDetail Bool False

CData Python Connector for Acumatica

Adjustment

Adjustment is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

TotalQty Double False

TotalCost Double False

Hold Bool False

ExternalRef String False

Date Datetime False

Status String False

ReferenceNbr [KEY] String False

LinkedDetails String False

Custom_adjustment_ControlQty String False

Custom_adjustment_NoteText String False

Custom_adjustment_NoteID String False

Custom_adjustment_FinPeriodID String False

Custom_adjustment_ControlCost String False

CData Python Connector for Acumatica

AttributeDefinition

AttributeDefinition is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

LinkedValues String False

Internal Bool False

ControlType String False

AttributeID [KEY] String False

EntryMask String False

LastModifiedDateTime Datetime False

CreatedDateTime Datetime False

RegExp String False

Custom_Attributes_NoteID String False

CData Python Connector for Acumatica

Bill

Bill is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Date Datetime False

LinkedDetails String False

Type [KEY] String False

DueDate Datetime False

BranchID String False

LocationID String False

CurrencyID String False

Balance Double False

LinkedApplications String False

ReferenceNbr [KEY] String False

Terms String False

Status String False

ApprovedForPayment Bool False

TaxTotal Double False

Hold Bool False

PostPeriod String False

Amount Double False

Vendor String False

LinkedTaxDetails String False

CashAccount String False

Description String False

VendorRef String False

Custom_CurrentDocument_PayLocationID String False

Custom_CurrentDocument_SuppliedByVendorID String False

Custom_Document_DiscDate String False

Custom_CurrentDocument_PayDate String False

Custom_CurrentDocument_PayAccountID String False

Custom_Document_CuryLineTotal String False

Custom_CurrentDocument_EmployeeID String False

Custom_CurrentDocument_UsesManualVAT Bool False

Custom_CurrentDocument_EmployeeWorkgroupID String False

Custom_CurrentDocument_BatchNbr String False

Custom_CurrentDocument_APSubID String False

Custom_CurrentDocument_PaySel Bool False

Custom_CurrentDocument_OrigRefNbr String False

Custom_CurrentDocument_CuryDiscountedPrice String False

Custom_Document_CuryVatExemptTotal String False

Custom_CurrentDocument_PrebookSubID String False

Custom_CurrentDocument_PrebookBatchNbr String False

Custom_CurrentDocument_CuryDiscountedDocTotal String False

Custom_Document_CuryViewState Bool False

Custom_Document_CuryOrigWhTaxAmt String False

Custom_CurrentDocument_SuppliedByVendorLocationID String False

Custom_CurrentDocument_NoteID String False

Custom_Document_NoteText String False

Custom_CurrentDocument_PayTypeID String False

Custom_Document_CuryRoundDiff String False

Custom_Document_CuryInitDocBal String False

Custom_CurrentDocument_DisplayCuryInitDocBal String False

Custom_CurrentDocument_PrebookAcctID String False

Custom_CurrentDocument_VoidBatchNbr String False

Custom_Document_NoteID String False

Custom_Document_CuryTaxAmt String False

Custom_CurrentDocument_APAccountID String False

Custom_Document_CuryVatTaxableTotal String False

Custom_CurrentDocument_TaxCalcMode String False

Custom_CurrentDocument_TaxZoneID String False

Custom_CurrentDocument_CuryDiscountedTaxableTotal String False

Custom_Document_LCEnabled Bool False

Custom_Document_CuryOrigDiscAmt String False

Custom_CurrentDocument_SeparateCheck Bool False

Custom_Document_CuryDiscTot String False

CData Python Connector for Acumatica

BusinessAccount

BusinessAccount is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

WorkgroupDescription String False

LinkedLocations String False

LinkedMainContact String False

ParentAccount String False

AccountRef String False

BusinessAccountID [KEY] String False

LinkedContacts String False

ShippingAddressSameAsMain Bool False

Duplicate String False

Name String False

SourceCampaign String False

Owner String False

LinkedCases String False

LinkedCampaigns String False

LinkedRelations String False

Workgroup String False

Type String False

LinkedActivities String False

LinkedShippingContact String False

LinkedMainAddress String False

LinkedDuplicates String False

Status String False

LastOutgoingActivity Datetime False

LinkedMarketingLists String False

LinkedDefaultLocationSettings String False

LinkedAttributes String False

LinkedOpportunities String False

ClassID String False

LinkedContracts String False

LinkedShippingAddress String False

MainAddressValidated Bool False

ShippingAddressValidated Bool False

LastIncomingActivity Datetime False

LinkedOrders String False

OwnerEmployeeName String False

Custom_CurrentBAccount_NoteID String False

Custom_DefLocationCurrent_NoteID String False

Custom_AddressCurrent_NoteID String False

Custom_DefLocationAddress_NoteID String False

Custom_BAccount_NoteID String False

Custom_BAccount_NoteText String False

CData Python Connector for Acumatica

Carrier

Carrier is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

CarrierUnitOfWeight String False

PlugInType String False

LinkedPlugInParameters String False

CarrierID [KEY] String False

UOM String False

LastModifiedDateTime Datetime False

CreatedDateTime Datetime False

LinkedCustomerAccounts String False

Custom_Plugin_NoteID String False

Custom_Plugin_NoteText String False

CData Python Connector for Acumatica

Case

Case is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ManualOverride Bool False

Subject String False

LinkedAttributes String False

Status String False

OwnerEmployeeName String False

OvertimeSpent String False

Description String False

Owner String False

LinkedActivities String False

ContactID Int False

BillableTime Int False

Severity String False

ResolutionTime String False

LinkedRelations String False

Contract String False

ClosingDate Datetime False

DateReported Datetime False

InitialResponse String False

LastOutgoingActivity Datetime False

LastActivityDate Datetime False

Workgroup String False

LastIncomingActivity Datetime False

BusinessAccountName String False

ClassID String False

Billable Bool False

ContactDisplayName String False

Reason String False

TimeSpent String False

Location String False

Priority String False

BillableOvertime Int False

SLA Datetime False

BusinessAccount String False

LinkedRelatedCases String False

CaseID [KEY] String False

WorkgroupDescription String False

Custom_CaseCurrent_NoteID String False

Custom_CaseCurrent_ContractID String False

Custom_Case_NoteText String False

Custom_CaseCurrent_CustomerID String False

Custom_CaseCurrent_OvertimeSpent String False

Custom_CaseCurrent_IsBillable Bool False

Custom_CaseCurrent_ManualBillableTimes Bool False

Custom_CaseCurrent_TimeBillable Int False

Custom_CaseCurrent_TimeSpent String False

Custom_CaseCurrent_LocationID String False

Custom_CaseCurrent_OvertimeBillable Int False

Custom_Case_NoteID String False

Custom_CaseCurrent_WorkgroupID String False

Custom_CaseCurrent_WorkgroupID_description String False

Custom_CaseCurrent_TimeResolution String False

Custom_CaseCurrent_InitResponse String False

CData Python Connector for Acumatica

CashSale

CashSale is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

Type [KEY] String False

CustomerID String False

PaymentMethod String False

Hold Bool False

Amount Double False

CashAccount String False

Date Datetime False

PaymentRef String False

Status String False

ReferenceNbr [KEY] String False

LinkedDetails String False

TaxTotal Double False

CreatedDateTime Datetime False

Balance Double False

LastModifiedDateTime Datetime False

Custom_Document_DepositAfter String False

Custom_Document_PMInstanceID Int False

Custom_Document_CCPaymentStateDescr String False

Custom_Document_NoteText String False

Custom_Document_CuryChargeAmt String False

Custom_Document_RefTranExtNbr String False

Custom_Document_CuryConsolidateChargeTotal String False

Custom_Document_CuryLineTotal String False

Custom_Document_IsCCPayment Bool False

Custom_Document_PMInstanceID_description String False

Custom_Document_CustomerLocationID String False

Custom_Document_CuryRoundDiff String False

Custom_Document_ProjectID String False

Custom_Document_CuryID String False

Custom_Document_NoteID String False

Custom_Document_CuryVatExemptTotal String False

Custom_Document_AdjFinPeriodID String False

Custom_Document_CuryVatTaxableTotal String False

Custom_Document_CuryViewState Bool False

Custom_Document_CuryOrigDiscAmt String False

CData Python Connector for Acumatica

Check

Check is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

Type [KEY] String False

CurrencyID String False

Vendor String False

LinkedHistory String False

PaymentMethod String False

UnappliedBalance Double False

ApplicationDate Datetime False

Hold Bool False

CashAccount String False

PaymentRef String False

Status String False

ReferenceNbr [KEY] String False

LinkedDetails String False

PaymentAmount Double False

Custom_Document_NoteID String False

Custom_Document_DepositAfter String False

Custom_Document_NoteText String False

Custom_Document_CuryApplAmt String False

Custom_Document_AdjFinPeriodID String False

Custom_Document_PTInstanceID_description String False

Custom_Document_CuryChargeAmt String False

Custom_Document_CuryViewState Bool False

Custom_Document_PTInstanceID Int False

Custom_Document_VendorLocationID String False

Custom_Document_CuryInitDocBal String False

CData Python Connector for Acumatica

Contact

Contact is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LanguageOrLocale String False

DuplicateFound Bool False

JobTitle String False

MiddleName String False

FirstName String False

DoNotFax Bool False

LinkedAttributes String False

Status String False

ParentAccount String False

OwnerEmployeeName String False

Phone3 String False

Phone2 String False

Phone1 String False

Phone2Type String False

MaritalStatus String False

Email String False

FaxType String False

LinkedMarketingLists String False

DoNotCall Bool False

LinkedNotifications String False

Active Bool False

LinkedDuplicates String False

Owner String False

DoNotMail Bool False

Title String False

Gender String False

LinkedActivities String False

Phone1Type String False

ContactID [KEY] Int False

WebSite String False

LinkedRelations String False

ContactClass String False

CompanyName String False

AddressIsSameAsInAccount Bool False

NoMassMail Bool False

LastOutgoingActivity Datetime False

DisplayName String False

LinkedUserInfo String False

ContactMethod String False

Workgroup String False

AddressValidated Bool False

LastIncomingActivity Datetime False

LinkedCampaigns String False

SourceCampaign String False

SpouseOrPartnerName String False

LinkedAddress String False

Reason String False

Synchronize Bool False

ConvertedBy String False

Image String False

Type String False

NoMarketing Bool False

DateOfBirth Datetime False

Duplicate String False

DoNotEmail Bool False

Phone3Type String False

Source String False

BusinessAccount String False

LastName String False

LinkedOpportunities String False

Fax String False

QualificationDate Datetime False

WorkgroupDescription String False

LinkedCases String False

Custom_ContactCurrent_NoMarketing Bool False

Custom_ContactCurrent_DuplicateStatus String False

Custom_ContactCurrent2_NoteID String False

Custom_ContactCurrent_FullName String False

Custom_ContactCurrent_NoEMail Bool False

Custom_ContactCurrent_Method String False

Custom_ContactCurrent_ParentBAccountID String False

Custom_ContactCurrent_Synchronize Bool False

Custom_ContactCurrent_Gender String False

Custom_ContactCurrent_QualificationDate String False

Custom_ContactCurrent_DateOfBirth String False

Custom_ContactCurrent_ConvertedBy String False

Custom_Contact_ContactID_displayName String False

Custom_ContactCurrent_NoteID String False

Custom_ContactCurrent_CampaignID String False

Custom_ContactCurrent_LanguageID String False

Custom_ContactCurrent_Resolution String False

Custom_ContactCurrent_Source String False

Custom_ContactCurrent_MaritalStatus String False

Custom_ContactCurrent_NoFax Bool False

Custom_AddressCurrent_NoteID String False

Custom_ContactCurrent_NoCall Bool False

Custom_ContactCurrent_Status String False

Custom_ContactCurrent_NoMail Bool False

Custom_ContactCurrent_Img String False

Custom_ContactCurrent_Spouse String False

Custom_ContactCurrent_NoMassMail Bool False

Custom_Contact_NoteID String False

Custom_Contact_NoteText String False

CData Python Connector for Acumatica

Currency

Currency is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

DecimalPrecision Int False

CurrencyID [KEY] String False

Active Bool False

CreatedDateTime Datetime False

CurrencySymbol String False

Description String False

UseForAccounting Bool False

LastModifiedDateTime Datetime False

CData Python Connector for Acumatica

Customer

Customer is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedBillingContact String False

ShippingRule String False

AccountRef String False

CurrencyID String False

BillingAddressSameAsMain Bool False

LinkedAttributes String False

Status String False

WarehouseID String False

PrintStatements Bool False

ShippingAddressSameAsMain Bool False

FOBPoint String False

AutoApplyPayments Bool False

ShippingTerms String False

PrintDunningLetters Bool False

CustomerID [KEY] String False

CustomerClass String False

ParentRecord String False

ShippingBranch String False

LinkedMainContact String False

SaturdayDelivery Bool False

CurrencyRateType String False

StatementCycleID String False

SendStatementsbyEmail Bool False

LeadTimedays Int False

ResidentialDelivery Bool False

LinkedShippingContact String False

LinkedPaymentInstructions String False

PriceClassID String False

SendDunningLettersbyEmail Bool False

Terms String False

CustomerName String False

TaxZone String False

PrintInvoices Bool False

LastModifiedDateTime Datetime False

MultiCurrencyStatements Bool False

EnableCurrencyOverride Bool False

WriteOffLimit Double False

EnableRateOverride Bool False

TaxRegistrationID String False

ApplyOverdueCharges Bool False

SendInvoicesbyEmail Bool False

ShippingZoneID String False

BillingContactSameAsMain Bool False

StatementType String False

LinkedContacts String False

ShippingContactSameAsMain Bool False

OrderPriority Int False

ShipVia String False

CreatedDateTime Datetime False

EnableWriteOffs Bool False

LinkedSalespersons String False

LinkedCreditVerificationRules String False

LocationName String False

CData Python Connector for Acumatica

CustomerClass

CustomerClass is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

OverdueChargeID String False

GroupDocumentDiscountLimit Double False

CreditVerification String False

ShippingRule String False

FreightAccount String False

CurrencyID String False

LinkedAttributes String False

PrintStatements Bool False

CreditLimit Double False

PaymentMethod String False

DefaultRestrictionGroup String False

OverLimitAmount Double False

AutoApplyPayments Bool False

ShippingTerms String False

ARAccount String False

DefaultLocationIDfromBranch Bool False

PrintDunningLetters Bool False

MiscAccount String False

SalespersonID String False

UnrealizedGainAccount String False

SendStatementsByEmail Bool False

Description String False

CurrencyRateType String False

StatementCycleID String False

CashDiscountSubaccount String False

DiscountSubaccount String False

RequireTaxZone Bool False

COGSAccount String False

SendDunningLettersbyEmail Bool False

Terms String False

UnrealizedGainSubaccount String False

UnrealizedLossSubaccount String False

PrintInvoices Bool False

SalesAccount String False

MultiCurrencyStatements Bool False

LastModifiedDateTime Datetime False

EnableCurrencyOverride Bool False

CashDiscountAccount String False

COGSSubaccount String False

TaxZoneID String False

WriteOffLimit Double False

EnableRateOverride Bool False

ApplyOverdueCharges Bool False

RequireEntityUsageType Bool False

Country String False

SendInvoicesbyEmail Bool False

ClassID [KEY] String False

ARSubaccount String False

PrepaymentSubaccount String False

SalesSubaccount String False

StatementType String False

MiscSubaccount String False

PrepaymentAccount String False

CreditDaysPastDue Int False

ShipVia String False

FreightSubaccount String False

DiscountAccount String False

CreatedDateTime Datetime False

EntityUsageType String False

EnableWriteOffs Bool False

UnrealizedLossAccount String False

Custom_CurCustomerClassRecord_FinChargeApply Bool False

Custom_CurCustomerClassRecord_FreightAcctID String False

Custom_CurCustomerClassRecord_DiscTakenSubID String False

Custom_CurCustomerClassRecord_FinChargeID String False

Custom_CurCustomerClassRecord_CreditLimit String False

Custom_CurCustomerClassRecord_COGSAcctID String False

Custom_CustomerClassRecord_LocaleName_translatedName String False

Custom_CurCustomerClassRecord_UnrealizedGainAcctID String False

Custom_CurCustomerClassRecord_SmallBalanceAllow Bool False

Custom_CurCustomerClassRecord_PrepaymentAcctID String False

Custom_CurCustomerClassRecord_PrintDunningLetters Bool False

Custom_CurCustomerClassRecord_CuryID String False

Custom_CurCustomerClassRecord_ARAcctID String False

Custom_CurCustomerClassRecord_DiscountAcctID String False

Custom_CurCustomerClassRecord_AllowOverrideCury Bool False

Custom_CurCustomerClassRecord_AutoApplyPayments Bool False

Custom_CurCustomerClassRecord_OverLimitAmount String False

Custom_CustomerClassRecord_NoteID String False

Custom_CurCustomerClassRecord_UnrealizedLossAcctID String False

Custom_CurCustomerClassRecord_DiscountLimit String False

Custom_CurCustomerClassRecord_ARSubID String False

Custom_CurCustomerClassRecord_NoteID String False

Custom_CustomerClassRecord_LocaleName String False

Custom_CurCustomerClassRecord_CreditRule String False

Custom_CurCustomerClassRecord_DiscountSubID String False

Custom_CurCustomerClassRecord_SalesSubID String False

Custom_CurCustomerClassRecord_MailDunningLetters Bool False

Custom_CurCustomerClassRecord_COGSSubID String False

Custom_CurCustomerClassRecord_MiscAcctID String False

Custom_CurCustomerClassRecord_SmallBalanceLimit String False

Custom_CurCustomerClassRecord_ShipTermsID String False

Custom_CurCustomerClassRecord_TermsID String False

Custom_CurCustomerClassRecord_SalesAcctID String False

Custom_CurCustomerClassRecord_ShipComplete String False

Custom_CurCustomerClassRecord_StatementType String False

Custom_CurCustomerClassRecord_MiscSubID String False

Custom_CurCustomerClassRecord_AllowOverrideRate Bool False

Custom_CurCustomerClassRecord_DefPaymentMethodID String False

Custom_CurCustomerClassRecord_DiscTakenAcctID String False

Custom_CustomerClassRecord_NoteText String False

Custom_CurCustomerClassRecord_UnrealizedGainSubID String False

Custom_CurCustomerClassRecord_CreditDaysPastDue Int False

Custom_CurCustomerClassRecord_UnrealizedLossSubID String False

Custom_CurCustomerClassRecord_PrintCuryStatements Bool False

Custom_CurCustomerClassRecord_CuryRateTypeID String False

Custom_CurCustomerClassRecord_FreightSubID String False

Custom_CurCustomerClassRecord_PrintStatements Bool False

Custom_CurCustomerClassRecord_MailInvoices Bool False

Custom_CurCustomerClassRecord_SendStatementByEmail Bool False

Custom_CurCustomerClassRecord_PrepaymentSubID String False

Custom_CurCustomerClassRecord_PrintInvoices Bool False

Custom_CurCustomerClassRecord_StatementCycleId String False

Custom_CurCustomerClassRecord_ShipVia String False

CData Python Connector for Acumatica

CustomerLocation

CustomerLocation is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

TaxRegistrationID String False

ShippingTerms String False

ShippingZone String False

TaxZone String False

ShipVia String False

Warehouse String False

Insurance Bool False

FOBPoint String False

AddressSameAsMain Bool False

LinkedLocationContact String False

LeadTimeDays Int False

TaxExemptionNbr String False

FedExGroundCollect Bool False

Customer String False

EntityUsageType String False

ShippingRule String False

LocationName String False

LocationID [KEY] String False

LastModifiedDateTime Datetime False

Calendar String False

CreatedDateTime Datetime False

PriceClass String False

DefaultProject String False

Active Bool False

ContactSameAsMain Bool False

SaturdayDelivery Bool False

ShippingBranch String False

OrderPriority Int False

ResidentialDelivery Bool False

CData Python Connector for Acumatica

CustomerPaymentMethod

CustomerPaymentMethod is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

CustomerID [KEY] String False

Active Bool False

PaymentMethod [KEY] String False

CashAccount String False

CustomerProfileID String False

LinkedDetails String False

InstanceID Int False

CardAccountNbr String False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

ProcCenterID String False

Custom_CustomerPaymentMethod_NoteText String False

Custom_CustomerPaymentMethod_HasBillingInfo Bool False

Custom_CustomerPaymentMethod_ExpirationDate String False

Custom_CustomerPaymentMethod_NoteID String False

CData Python Connector for Acumatica

CustomerPriceClass

CustomerPriceClass is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

CreatedDateTime Datetime False

Description String False

LastModifiedDateTime Datetime False

PriceClassID [KEY] String False

Custom_Records_SortOrder Int False

Custom_Records_NoteText String False

Custom_Records_NoteID String False

CData Python Connector for Acumatica

Discount

Discount is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Promotional Bool False

LinkedCustomerPriceClasses String False

BreakBy String False

LinkedItemPriceClasses String False

LinkedDiscountBreakpoints String False

DiscountCode [KEY] String False

LinkedCustomers String False

Sequence [KEY] String False

EffectiveDate Datetime False

ProrateDiscount Bool False

LastModifiedDateTime Datetime False

DiscountBy String False

CreatedDateTime Datetime False

Active Bool False

LinkedWarehouses String False

LinkedItems String False

ExpirationDate Datetime False

ShowFreeItem Bool False

Description String False

Custom_Sequence_NoteID String False

Custom_Sequence_NoteText String False

CData Python Connector for Acumatica

DiscountCode

DiscountCode is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ApplicableTo String False

CreatedDateTime Datetime False

DiscountType String False

Description String False

LastModifiedDateTime Datetime False

DiscountCodeID [KEY] String False

Custom_Document_IsManual Bool False

Custom_Document_IsAutoNumber Bool False

Custom_Document_ExcludeFromDiscountableAmt Bool False

Custom_Document_IsAppliedToDR Bool False

Custom_Document_SkipDocumentDiscounts Bool False

Custom_Document_LastNumber String False

CData Python Connector for Acumatica

Email

Email is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Bcc String False

Date Datetime False

To String False

StartTime Datetime False

Owner String False

Parent String False

RelatedEntityDescription String False

Workgroup String False

Subject String False

Internal Bool False

Incoming Bool False

LinkedTimeActivity String False

FromEmailAccountDisplayName String False

Body String False

Cc String False

MailStatus String False

ParentSummary String False

FromEmailAccountID Int False

Description String False

From String False

Custom_CurrentMessage_WorkgroupID String False

Custom_CurrentMessage_StartDate_Time String False

Custom_Message_MailTo_SearchSuggestion String False

Custom_CurrentMessage_Source String False

Custom_CurrentMessage_IsIncome Bool False

Custom_CurrentMessage_ParentNoteID String False

Custom_Message_MailBcc_SearchSuggestion String False

Custom_CurrentMessage_ParentNoteID_description String False

Custom_Message_NoteID String False

Custom_CurrentMessage_OwnerID String False

Custom_CurrentMessage_NoteID String False

Custom_Message_MailCc_SearchSuggestion String False

Custom_CurrentMessage_StartDate_Date String False

Custom_CurrentMessage_IsPrivate Bool False

Custom_Message_NoteText String False

Custom_CurrentMessage_MPStatus String False

CData Python Connector for Acumatica

Employee

Employee is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

CurrencyID String False

LinkedContact String False

PaymentMethod String False

EmployeeClassID String False

Name String False

Status String False

BranchID String False

ReportsToID String False

LinkedEmployeeCost String False

EmployeeID [KEY] String False

LinkedEmploymentHistory String False

DepartmentID String False

DateOfBirth Datetime False

CData Python Connector for Acumatica

Event

Event is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Location String False

AllDay Bool False

StartTime Datetime False

ShowAs String False

LinkedReminder String False

EndDate Datetime False

RelatedEntityDescription String False

Summary [KEY] String False

NoteID String False

Internal Bool False

LinkedTimeActivity String False

Status String False

LinkedAttendees String False

Body String False

Category String False

EndTime Datetime False

StartDate Datetime False

LinkedRelatedActivities String False

Priority String False

Custom_Events_NoteText String False

CData Python Connector for Acumatica

FinancialPeriod

FinancialPeriod is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

UserDefinedPeriods Bool False

LinkedDetails String False

NbrOfPeriods Int False

CreatedDateTime Datetime False

FinancialYear String False

LastModifiedDateTime Datetime False

StartDate Datetime False

Custom_FiscalYear_NoteID String False

Custom_FiscalYear_NoteText String False

CData Python Connector for Acumatica

FOBPoint

FOBPoint is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

FOBPointID [KEY] String False

Custom_FOBPoint_NoteText String False

Custom_FOBPoint_NoteID String False

CData Python Connector for Acumatica

InterBranchAccountMapping

InterBranchAccountMapping is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedTransactionsInSourceBranch String False

OriginatingBranch [KEY] String False

PostingLedger String False

LinkedTransactionsInDestinationBranch String False

CData Python Connector for Acumatica

InventoryAllocationInquiry

InventoryAllocationInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Location String False

KitAssemblyDemand Double False

OnHand Double False

PurchaseOrders Double False

OnLocationNotAvailable Double False

SOToPurchase Double False

PurchaseReceipts Double False

LinkedResults String False

SOPrepared Double False

PurchaseForSO Double False

InventoryIssues Double False

InTransitToSO Double False

SOShipped Double False

KitAssemblySupply Double False

PurchasePrepared Double False

AvailableForIssue Double False

TotalAddition Double False

TotalDeduction Double False

AvailableForShipping Double False

SOBackOrdered Double False

Available Double False

InTransit Double False

SOBooked Double False

PurchaseForSOPrepared Double False

ReceiptsForSO Double False

SOAllocated Double False

WarehouseID String False

BaseUnit String False

InventoryReceipts Double False

InventoryID [KEY] String False

Custom_Filter_InclQtyInTransit Bool False

Custom_Filter_QtyPODropShipOrders String False

Custom_Filter_LotSerialNbr String False

Custom_Filter_QtyPODropShipPrepared String False

Custom_Filter_SubItemCD String False

Custom_Filter_InclQtyPOPrepared Bool False

Custom_Filter_Label2 String False

Custom_Filter_InclQtyINReceipts Bool False

Custom_Filter_Label String False

Custom_Filter_InclQtyINAssemblySupply Bool False

Custom_Filter_QtyPODropShipReceipts String False

Custom_Filter_InclQtyINAssemblyDemand Bool False

Custom_Filter_InclQtySOBackOrdered Bool False

Custom_Filter_InclQtySOShipping Bool False

Custom_Filter_InclQtySOShipped Bool False

Custom_Filter_InclQtySOBooked Bool False

Custom_Filter_InclQtyINIssues Bool False

Custom_Filter_InclQtyPOReceipts Bool False

Custom_Filter_InclQtySOPrepared Bool False

Custom_Filter_InclQtyPOOrders Bool False

Custom_Filter_QtyExpired String False

Custom_Filter_QtySODropShip String False

CData Python Connector for Acumatica

InventoryReceipt

InventoryReceipt is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

TransferNbr String False

TotalQty Double False

TotalCost Double False

Hold Bool False

Date Datetime False

Status String False

ReferenceNbr [KEY] String False

LinkedDetails String False

ControlCost Double False

ControlQty Double False

PostPeriod String False

Custom_receipt_NoteText String False

Custom_receipt_ExtRefNbr String False

Custom_receipt_NoteID String False

CData Python Connector for Acumatica

InventorySummaryInquiry

InventorySummaryInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedResults String False

WarehouseID String False

ExpandByLotSerialNbr Bool False

InventoryID [KEY] String False

Subitem String False

LocationID String False

CData Python Connector for Acumatica

Invoice

Invoice is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkBranch String False

Date Datetime False

LinkedApplicationsCreditMemo String False

BillingPrinted Bool False

LinkARAccount String False

LinkedDetails String False

Customer String False

Type [KEY] String False

DueDate Datetime False

LocationID String False

LastModifiedDateTime Datetime False

Balance Double False

ReferenceNbr [KEY] String False

Terms String False

Status String False

CreatedDateTime Datetime False

CustomerOrder String False

Project String False

TaxTotal Double False

Hold Bool False

Amount Double False

PostPeriod String False

LinkedTaxDetails String False

Description String False

LinkedApplicationsDefault String False

Custom_CurrentDocument_DontEmail Bool False

Custom_Document_DiscDate String False

Custom_CurrentDocument_WorkgroupID String False

Custom_CurrentDocument_PMInstanceID_description String False

Custom_Document_CuryLineTotal String False

Custom_CurrentDocument_BatchNbr String False

Custom_Document_CuryID String False

Custom_CurrentDocument_OrigRefNbr String False

Custom_CurrentDocument_CuryDiscountedPrice String False

Custom_CurrentDocument_AvalaraCustomerUsageType String False

Custom_Document_CuryVatExemptTotal String False

Custom_CurrentDocument_CuryDiscountedDocTotal String False

Custom_Document_CuryViewState Bool False

Custom_CurrentDocument_ARSubID String False

Custom_CurrentDocument_CuryCommnblAmt String False

Custom_CurrentDocument_NoteID String False

Custom_Document_NoteText String False

Custom_CurrentDocument_ApplyOverdueCharge Bool False

Custom_CurrentDocument_CashAccountID String False

Custom_Document_CuryRoundDiff String False

Custom_CurrentDocument_PMInstanceID Int False

Custom_Document_CuryInitDocBal String False

Custom_CurrentDocument_DisplayCuryInitDocBal String False

Custom_Document_NoteID String False

Custom_CurrentDocument_CampaignID String False

Custom_CurrentDocument_DontPrint Bool False

Custom_CurrentDocument_OwnerID String False

Custom_Document_CuryVatTaxableTotal String False

Custom_CurrentDocument_TaxZoneID String False

Custom_CurrentDocument_CuryCommnAmt String False

Custom_CurrentDocument_CuryDiscountedTaxableTotal String False

Custom_CurrentDocument_Emailed Bool False

Custom_CurrentDocument_PaymentMethodID String False

Custom_CurrentDocument_Revoked Bool False

Custom_CurrentDocument_SalesPersonID String False

Custom_Document_CuryOrigDiscAmt String False

Custom_Document_CuryDiscTot String False

Custom_CurrentDocument_Printed Bool False

CData Python Connector for Acumatica

ItemClass

ItemClass is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

PriceClass String False

LinkedAttributes String False

TaxCategoryID String False

PurchaseUOM String False

ItemType String False

SalesUOM String False

PostingClass String False

StockItem Bool False

ValuationMethod String False

DefaultWarehouseID String False

ClassID [KEY] String False

BaseUOM String False

LotSerialClass String False

LastModifiedDateTime Datetime False

AvailabilityCalculationRule String False

Custom_itemclasssettings_TaxCalcMode String False

Custom_itemclasssettings_NegQty Bool False

Custom_itemclasssettings_DemandCalculation String False

Custom_itemclasssettings_PriceWorkgroupID String False

Custom_itemclasssettings_MinGrossProfitPct String False

Custom_itemclasssettings_PriceManagerID String False

Custom_itemclasssettings_SalesUnit String False

Custom_itemclasssettings_MarkupPct String False

Custom_itemclasssettings_NoteID String False

Custom_itemclass_NoteID String False

Custom_itemclass_NoteText String False

Custom_itemclasssettings_PurchaseUnit String False

Custom_itemclasssettings_BaseUnit String False

CData Python Connector for Acumatica

ItemWarehouse

ItemWarehouse is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

OverrideServiceLevelOverride Bool False

OverrideReplenishmentSettings Bool False

ProductManager String False

ReplenishmentSource String False

OverrideInventoryAccountSubaccount Bool False

DefaultReceiptTo String False

ReplenishmentClass String False

DefaultSubitem String False

ProductWorkgroup String False

InventorySubaccount String False

LastModifiedDateTime Datetime False

PreferredVendor String False

MSRP Double False

Status String False

InventoryAccount String False

CreatedDateTime Datetime False

ReplenishmentWarehouse String False

OverridePreferredVendor Bool False

ReplenishmentMethod String False

PreferredLocation String False

Seasonality String False

OverrideStandardCost Bool False

WarehouseID [KEY] String False

ServiceLevel Double False

DefaultIssueFrom String False

OverridePrice Bool False

InventoryID [KEY] String False

Custom_itemsitesettings_SubItemOverride Bool False

Custom_itemsitesettings_SafetyStock String False

Custom_itemsitesettings_MaxQty String False

Custom_itemsitesettings_LaunchDate String False

Custom_itemsitesettings_PreferredVendorOverride Bool False

Custom_itemsitesettings_SafetyStockOverride Bool False

Custom_itemsitesettings_MinQtySuggested String False

Custom_itemsitesettings_RecPriceOverride Bool False

Custom_itemsitesettings_ServiceLevelOverride Bool False

Custom_itemsitesettings_ReplenishmentMethod String False

Custom_itemsitesettings_MaxShelfLife Int False

Custom_itemsitesettings_TerminationDate String False

Custom_itemsitesettings_ABCCodeID String False

Custom_itemsitesettings_TerminationDateOverride Bool False

Custom_itemsiterecord_NoteID String False

Custom_itemsitesettings_MovementClassIsFixed Bool False

Custom_itemsitesettings_TransferERQ String False

Custom_itemsitesettings_ServiceLevelPct String False

Custom_itemsitesettings_MovementClassOverride Bool False

Custom_itemsitesettings_MinQty String False

Custom_itemsitesettings_MaxQtyOverride Bool False

Custom_itemsitesettings_LastForecastDate String False

Custom_itemsitesettings_ReplenishmentClassID String False

Custom_itemsitesettings_InventoryItem_DefaultSubItemID String False

Custom_itemsitesettings_ReplenishmentPolicyOverride Bool False

Custom_itemsitesettings_LeadTimeSTDEV String False

Custom_itemsitesettings_PendingStdCostDate String False

Custom_itemsitesettings_LastStdCost String False

Custom_itemsitesettings_MaxShelfLifeOverride Bool False

Custom_itemsitesettings_InvtAcctID String False

Custom_itemsitesettings_PendingStdCost String False

Custom_itemsitesettings_LaunchDateOverride Bool False

Custom_itemsitesettings_DemandPerDayAverage String False

Custom_itemsitesettings_ReplenishmentPolicyID String False

Custom_itemsitesettings_SafetyStockSuggested String False

Custom_itemsitesettings_ABCCodeIsFixed Bool False

Custom_itemsitesettings_StdCost String False

Custom_itemsitesettings_ABCCodeOverride Bool False

Custom_itemsitesettings_RecPrice String False

Custom_itemsitesettings_DemandPerDaySTDEV String False

Custom_itemsitesettings_MinCost String False

Custom_itemsitesettings_InvtSubID String False

Custom_itemsitesettings_OverrideInvtAcctSub Bool False

Custom_itemsitesettings_PriceWorkgroupID String False

Custom_itemsitesettings_PreferredVendorLocationID String False

Custom_itemsitesettings_MaxCost String False

Custom_itemsitesettings_ReplenishmentSource String False

Custom_itemsitesettings_LastCost String False

Custom_itemsitesettings_AvgCost String False

Custom_itemsitesettings_PriceManagerID String False

Custom_itemsitesettings_TransferERQOverride Bool False

Custom_itemsitesettings_StdCostOverride Bool False

Custom_itemsitesettings_NoteID String False

Custom_itemsitesettings_MovementClassID String False

Custom_itemsitesettings_Commissionable Bool False

Custom_itemsitesettings_PreferredVendorID String False

Custom_itemsitesettings_LeadTimeAverage String False

Custom_itemsitesettings_MarkupPct String False

Custom_itemsitesettings_MinQtyOverride Bool False

Custom_itemsitesettings_MarkupPctOverride Bool False

Custom_itemsiterecord_NoteText String False

Custom_itemsitesettings_StdCostDate String False

Custom_itemsitesettings_ReplenishmentSourceSiteID String False

CData Python Connector for Acumatica

JournalTransaction

JournalTransaction is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

CurrencyID String False

Hold Bool False

Module [KEY] String False

TransactionDate Datetime False

BatchNbr [KEY] String False

Status String False

LinkedDetails String False

BranchID String False

LedgerID String False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

PostPeriod String False

Custom_BatchModule_CuryViewState Bool False

Custom_BatchModule_NoteID String False

Custom_BatchModule_CuryCreditTotal String False

Custom_BatchModule_BatchType String False

Custom_BatchModule_SkipTaxValidation Bool False

Custom_BatchModule_ReverseCount Int False

Custom_BatchModule_CreateTaxTrans Bool False

Custom_BatchModule_CuryDebitTotal String False

Custom_BatchModule_AutoReverseCopy Bool False

Custom_BatchModule_OrigBatchNbr String False

Custom_BatchModule_CuryControlTotal String False

Custom_BatchModule_AutoReverse Bool False

Custom_BatchModule_NoteText String False

CData Python Connector for Acumatica

JournalVoucher

JournalVoucher is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ControlTotal Double False

BaseCurrencyID String False

ReciprocalRate Double False

TransactionDate Datetime False

Ledger String False

LinkedDetails String False

EffectiveDate Datetime False

LastModifiedDateTime Datetime False

Branch String False

DebitTotal Double False

CurrencyID String False

BatchNbr [KEY] String False

Status String False

CreditTotal Double False

CreatedDateTime Datetime False

Hold Bool False

PostPeriod String False

CurrencyRate Double False

CurrencyRateTypeID String False

Description String False

LinkedGLTransactions String False

Custom_BatchModule_CuryViewState Bool False

Custom_BatchModule_NoteID String False

Custom_BatchModule_NoteText String False

CData Python Connector for Acumatica

KitAssembly

KitAssembly is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Date Datetime False

KitInventoryID String False

LinkedNonStockComponents String False

UOM String False

Subitem String False

Revision String False

Type String False

LocationID String False

LinkedAllocations String False

ReferenceNbr String False

Status String False

Qty Double False

Hold Bool False

PostPeriod String False

LinkedStockComponents String False

WarehouseID String False

ReasonCode String False

Description String False

Custom_Document_NoteID String False

Custom_Document_NoteText String False

CData Python Connector for Acumatica

KitSpecification

KitSpecification is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

KitInventoryID [KEY] String False

LinkedStockComponents String False

Active Bool False

RevisionID [KEY] String False

Description String False

LinkedNonStockComponents String False

IsNonStock Bool False

Custom_Hdr_AllowCompAddition Bool False

Custom_Hdr_NoteID String False

Custom_Hdr_NoteText String False

Custom_Hdr_KitSubItemID String False

CData Python Connector for Acumatica

Lead

Lead is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LanguageOrLocale String False

DuplicateFound Bool False

JobTitle String False

FirstName String False

DoNotFax Bool False

LinkedAttributes String False

Status String False

ParentAccount String False

OwnerEmployeeName String False

Phone3 String False

LeadClass String False

Phone2 String False

Phone1 String False

Phone2Type String False

Email String False

FaxType String False

LinkedMarketingLists String False

DoNotCall Bool False

LeadID [KEY] Int False

LinkedDuplicates String False

Owner String False

DoNotMail Bool False

Title String False

LinkedActivities String False

Phone1Type String False

WebSite String False

LinkedRelations String False

CompanyName String False

NoMassMail Bool False

LastOutgoingActivity Datetime False

LeadDisplayName String False

ContactMethod String False

Workgroup String False

LastIncomingActivity Datetime False

LinkedCampaigns String False

SourceCampaign String False

LinkedAddress String False

Reason String False

NoMarketing Bool False

Duplicate String False

DoNotEmail Bool False

Phone3Type String False

Source String False

BusinessAccount String False

LastName String False

Fax String False

WorkgroupDescription String False

Custom_LeadCurrent_Method String False

Custom_LeadCurrent_NoMarketing Bool False

Custom_LeadCurrent_Source String False

Custom_Lead_NoteText String False

Custom_LeadCurrent_CampaignID String False

Custom_LeadCurrent_NoMassMail Bool False

Custom_LeadCurrent_NoMail Bool False

Custom_LeadCurrent_LanguageID String False

Custom_LeadCurrent_ClassID String False

Custom_Lead_FullName String False

Custom_LeadCurrent_NoEMail Bool False

Custom_LeadCurrent_NoFax Bool False

Custom_LeadCurrent_DuplicateStatus String False

Custom_Lead_ContactID_displayName String False

Custom_LeadCurrent_ParentBAccountID String False

Custom_LeadCurrent_NoteID String False

Custom_Lead_NoteID String False

Custom_LeadCurrent_NoCall Bool False

CData Python Connector for Acumatica

LotSerialClass

LotSerialClass is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

IssueMethod String False

TrackingMethod String False

ClassID [KEY] String False

LinkedSegments String False

AssignmentMethod String False

Description String False

TrackExpirationDate Bool False

Custom_lotserclass_NoteText String False

Custom_lotserclass_NoteID String False

Custom_lotserclass_LotSerNumVal String False

Custom_lotserclass_AutoSerialMaxCount Int False

Custom_lotserclass_LotSerNumShared Bool False

Custom_lotserclass_RequiredForDropship Bool False

Custom_lotserclass_AutoNextNbr Bool False

CData Python Connector for Acumatica

NonStockItem

NonStockItem is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

PendingCostDate Datetime False

IsKit Bool False

LinkedAttributes String False

WeightUOM String False

LinkedCrossReferences String False

ItemType String False

Volume Double False

VolumeUOM String False

POAccrualSubaccount String False

ExpenseAccrualSubaccount String False

CurrentCost Double False

POAccrualAccount String False

Weight Double False

Description String False

PendingCost Double False

EffectiveDate Datetime False

LinkedVendorDetails String False

DeferralAccount String False

PurchasePriceVarianceAccount String False

SalesUnit String False

PostingClass String False

DeferralSubaccount String False

ExpenseAccrualAccount String False

SalesAccount String False

TaxCategory String False

LastModifiedDateTime Datetime False

RequireReceipt Bool False

ExpenseAccount String False

LinkedSalesCategories String False

LastCost Double False

ItemClass String False

SalesSubaccount String False

BaseUnit String False

ReasonCodeSubaccount String False

PurchasePriceVarianceSubaccount String False

PriceClass String False

PurchaseUnit String False

ItemStatus String False

RequireShipment Bool False

DefaultPrice Double False

InventoryID [KEY] String False

ExpenseSubaccount String False

Custom_ItemSettings_Body String False

Custom_ItemSettings_PriceClassID String False

Custom_ItemSettings_NoteID String False

Custom_ItemSettings_TaxCalcMode String False

Custom_ItemSettings_TotalPercentage String False

Custom_ItemSettings_DeferralAcctID String False

Custom_ItemSettings_DefaultTermUOM String False

Custom_ItemSettings_DeferredCode String False

Custom_ItemSettings_InvtSubID String False

Custom_ItemSettings_LastStdCost String False

Custom_ItemSettings_BaseItemVolume String False

Custom_ItemSettings_StdCostDate String False

Custom_Item_ProductManagerID String False

Custom_ItemSettings_StdCost String False

Custom_ItemSettings_SalesAcctID String False

Custom_ItemSettings_Commisionable Bool False

Custom_ItemSettings_ImageUrl String False

Custom_ItemSettings_SalesUnit String False

Custom_ItemSettings_PurchaseUnit String False

Custom_ItemSettings_PendingStdCost String False

Custom_ItemSettings_DfltSiteID String False

Custom_ItemSettings_RecPrice String False

Custom_ItemSettings_BaseItemWeight String False

Custom_ItemSettings_ReasonCodeSubID String False

Custom_ItemSettings_SalesSubID String False

Custom_ItemSettings_PriceWorkgroupID String False

Custom_ItemSettings_DeferralSubID String False

Custom_Item_ProductWorkgroupID String False

Custom_Item_NoteID String False

Custom_ItemSettings_WeightUOM String False

Custom_ItemSettings_VolumeUOM String False

Custom_ItemSettings_POAccrualSubID String False

Custom_ItemSettings_PPVAcctID String False

Custom_ItemSettings_UseParentSubID Bool False

Custom_ItemSettings_PPVSubID String False

Custom_ItemSettings_CompletePOLine String False

Custom_ItemSettings_DefaultTerm String False

Custom_ItemSettings_BasePrice String False

Custom_ItemSettings_PriceManagerID String False

Custom_ItemSettings_MinGrossProfitPct String False

Custom_Item_NoteText String False

Custom_ItemSettings_POAccrualAcctID String False

Custom_ItemSettings_COGSAcctID String False

Custom_ItemSettings_InvtAcctID String False

Custom_ItemSettings_PendingStdCostDate String False

Custom_ItemSettings_MarkupPct String False

Custom_ItemSettings_COGSSubID String False

Custom_ItemSettings_BaseUnit String False

CData Python Connector for Acumatica

Opportunity

Opportunity is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ManualAmount Bool False

Subject String False

CurrencyID String False

LinkedContactInformation String False

LinkedAttributes String False

Status String False

ParentAccount String False

OwnerEmployeeName String False

WorkgroupID String False

WeightTotal Double False

ConvertedLeadID Int False

Owner String False

Override Bool False

Total Double False

LinkedDiscounts String False

Estimation Datetime False

LinkedActivities String False

ContactID Int False

Branch String False

LinkedRelations String False

TaxZone String False

Amount Double False

ClassID String False

SourceCampaign String False

OpportunityID [KEY] String False

Details String False

Discount Double False

LinkedAddress String False

ContactDisplayName String False

Reason String False

CurrencyViewState Bool False

ConvertedLeadDisplayName String False

Location String False

LinkedTaxDetails String False

Source String False

BusinessAccount String False

Project String False

LinkedProducts String False

WorkgroupDescription String False

Stage String False

Custom_OpportunityCurrent_NoteID String False

Custom_Opportunity_NoteID String False

Custom_OpportunityCurrent_AllowOverrideContactAddress Bool False

Custom_Opportunity_NoteText String False

CData Python Connector for Acumatica

Payment

Payment is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedDocumentsToApply String False

ApplicationDate Datetime False

LinkedOrdersToApply String False

AppliedToDocuments Double False

LinkedApplicationHistory String False

LinkedCreditCardProcessingInfo String False

Type [KEY] String False

CustomerID String False

CurrencyID String False

ReferenceNbr [KEY] String False

Status String False

PaymentMethod String False

CardAccountNbr Int False

Hold Bool False

PaymentRef String False

PaymentAmount Double False

CashAccount String False

Description String False

Custom_Document_CCPaymentStateDescr String False

Custom_Document_DepositAfter String False

Custom_Document_NoteText String False

Custom_Document_CuryChargeAmt String False

Custom_Document_RefTranExtNbr String False

Custom_Document_CuryUnappliedBal String False

Custom_Document_CurySOApplAmt String False

Custom_Document_CuryConsolidateChargeTotal String False

Custom_Document_PMInstanceID_description String False

Custom_Document_IsCCPayment Bool False

Custom_Document_CustomerLocationID String False

Custom_Document_CuryInitDocBal String False

Custom_Document_NoteID String False

Custom_Document_CuryWOAmt String False

Custom_Document_AdjFinPeriodID String False

Custom_Document_CuryViewState Bool False

CData Python Connector for Acumatica

PaymentMethod

PaymentMethod is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedAllowedCashAccounts String False

Description String False

IntegratedProcessing Bool False

UseInAR Bool False

Active Bool False

RequireRemittanceInformationforCashAccount Bool False

UseInAP Bool False

PaymentMethodID [KEY] String False

MeansOfPayment String False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

LinkedProcessingCenters String False

Custom_PaymentMethod_NoteText String False

Custom_PaymentMethod_NoteID String False

CData Python Connector for Acumatica

PhysicalInventoryReview

PhysicalInventoryReview is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

WarehouseID String False

FreezeDate Datetime False

TotalVarianceCost Double False

Status String False

TotalVarianceQty Double False

TypeID String False

ReferenceNbr [KEY] String False

LinkedDetails String False

TotalPhysicalQty Double False

Custom_PIHeaderInfo_NoteID String False

Custom_PIHeader_NoteID String False

Custom_PIHeaderInfo_TotalPhysicalQty String False

Custom_PIHeaderInfo_TotalVarCost String False

Custom_PIHeaderInfo_TotalVarQty String False

Custom_PIHeader_NoteText String False

Custom_PIHeaderInfo_PIAdjRefNbr String False

CData Python Connector for Acumatica

ProjectTransaction

ProjectTransaction is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

TotalQty Double False

Module [KEY] String False

TotalAmount Double False

Status String False

OriginalDocNbr String False

ReferenceNbr [KEY] String False

LinkedDetails String False

TotalBillableQty Double False

OriginalDocType String False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

Custom_Document_NoteID String False

Custom_Transactions_NoteText String False

Custom_Transactions_NoteID String False

Custom_Transactions_CostCodeID String False

CData Python Connector for Acumatica

PurchaseOrder

PurchaseOrder is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ControlTotal Double False

Location String False

Date Datetime False

PromisedOn Datetime False

Owner String False

LinkedShippingInstructions String False

LinkedDetails String False

Type [KEY] String False

LineTotal Double False

CurrencyID String False

VendorID String False

Status String False

OrderNbr [KEY] String False

TaxTotal Double False

Hold Bool False

OrderTotal Double False

Description String False

VendorRef String False

Custom_Document_NoteID String False

Custom_Document_Approved Bool False

Custom_Document_CuryVatExemptTotal String False

Custom_Document_NoteText String False

Custom_Document_CuryVatTaxableTotal String False

Custom_Document_CuryViewState Bool False

Custom_Document_RequestApproval Bool False

Custom_Document_ExpirationDate String False

Custom_Document_CuryDiscTot String False

CData Python Connector for Acumatica

PurchaseReceipt

PurchaseReceipt is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Type [KEY] String False

TotalQty Double False

CurrencyID String False

VendorRef String False

ControlAmount Double False

Hold Bool False

CreateBill Bool False

Date Datetime False

ReceiptNbr [KEY] String False

Status String False

TotalAmount Double False

LinkedDetails String False

ControlQty Double False

PostPeriod String False

VendorID String False

Custom_Document_NoteID String False

Custom_Document_CuryVatExemptTotal String False

Custom_Document_NoteText String False

Custom_Document_SiteID String False

Custom_Document_CuryVatTaxableTotal String False

Custom_Document_CuryViewState Bool False

Custom_Document_VendorLocationID String False

Custom_Document_CuryDiscTot String False

CData Python Connector for Acumatica

ReportingSettings

ReportingSettings is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedReportingGroups String False

TaxAgency [KEY] String False

Custom_TaxVendor_ShowNoTemp Bool False

Custom_TaxVendor_NoteID String False

CData Python Connector for Acumatica

SalesInvoice

SalesInvoice is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

Type [KEY] String False

CustomerOrder String False

LinkedBillingSettings String False

CustomerID String False

Hold Bool False

Amount Double False

DueDate Datetime False

Date Datetime False

Status String False

ReferenceNbr [KEY] String False

LinkedDetails String False

Balance Double False

LinkedFreightDetails String False

Custom_Document_NoteText String False

Custom_Document_DiscDate String False

Custom_Document_TermsID String False

Custom_Document_CreditHold Bool False

Custom_Document_CustomerLocationID String False

Custom_Document_ProjectID String False

Custom_Document_CuryID String False

Custom_Document_CuryVatExemptTotal String False

Custom_Document_NoteID String False

Custom_Document_CuryVatTaxableTotal String False

Custom_Document_CuryViewState Bool False

Custom_Document_FinPeriodID String False

Custom_Document_CuryOrigDiscAmt String False

CData Python Connector for Acumatica

SalesOrder

SalesOrder is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedShipToContact String False

OrderNbr [KEY] String False

CurrencyID String False

TaxTotal Double False

Status String False

CurrencyRate Double False

LinkedBillToContact String False

PaymentMethod String False

ControlTotal Double False

VATTaxableTotal Double False

ShipToAddressOverride Bool False

CustomerID String False

PreferredWarehouseID String False

OrderTotal Double False

PreAuthorizationNbr String False

BaseCurrencyID String False

Description String False

BillToAddressValidated Bool False

EffectiveDate Datetime False

IsTaxValid Bool False

BillToContactOverride Bool False

PreAuthorizedAmount Double False

LinkedShipments String False

Hold Bool False

CurrencyRateTypeID String False

LastModified Datetime False

LocationID String False

CreditHold Bool False

ShipToAddressValidated Bool False

LinkedShipToAddress String False

LinkedCommissions String False

LinkedDiscountDetails String False

CashAccount String False

ReciprocalRate Double False

OrderType [KEY] String False

LinkedBillToAddress String False

PaymentCardIdentifier String False

CustomerOrder String False

VATExemptTotal Double False

ExternalRef String False

BillToAddressOverride Bool False

LinkedDetails String False

NewCard Bool False

Date Datetime False

DestinationWarehouseID String False

LinkedPayments String False

PaymentRef String False

OrderedQty Double False

LinkedShippingSettings String False

Approved Bool False

ShipToContactOverride Bool False

ShipVia String False

RequestedOn Datetime False

LinkedTaxDetails String False

LinkedTotals String False

Project String False

LinkedFinancialSettings String False

Custom_CurrentDocument_CuryPremiumFreightAmt String False

Custom_CurrentDocument_DueDate String False

Custom_CurrentDocument_CuryDiscTot String False

Custom_CurrentDocument_CuryUnpaidBalance String False

Custom_CurrentDocument_PackageWeight String False

Custom_CurrentDocument_OverrideTaxZone Bool False

Custom_CurrentDocument_AvalaraCustomerUsageType String False

Custom_CurrentDocument_CuryOpenOrderTotal String False

Custom_CurrentDocument_CuryFreightCost String False

Custom_CurrentDocument_Insurance Bool False

Custom_CurrentDocument_CCAuthExpirationDate String False

Custom_CurrentDocument_CuryTaxTotal String False

Custom_CurrentDocument_CreatePMInstance Bool False

Custom_CurrentDocument_CuryPaymentTotal String False

Custom_CurrentDocument_PreAuthTranNumber String False

Custom_DefPaymentMethodInstance_NoteID String False

Custom_CurrentDocument_CancelDate String False

Custom_CurrentDocument_PMInstanceID Int False

Custom_CurrentDocument_FOBPoint String False

Custom_CurrentDocument_ExtRefNbr String False

Custom_CurrentDocument_GroundCollect Bool False

Custom_CurrentDocument_CuryMiscTot String False

Custom_CurrentDocument_Emailed Bool False

Custom_CurrentDocument_PaymentMethodID String False

Custom_Document_DontApprove Bool False

Custom_CurrentDocument_CCPaymentStateDescr String False

Custom_CurrentDocument_CuryUnbilledOrderTotal String False

Custom_CurrentDocument_CaptureTranNumber String False

Custom_CurrentDocument_UseCustomerAccount Bool False

Custom_CurrentDocument_OrigOrderType String False

Custom_CurrentDocument_FreightCostIsValid Bool False

Custom_CurrentDocument_DefaultSiteID String False

Custom_CurrentDocument_UnbilledOrderQty String False

Custom_CurrentDocument_Cancelled Bool False

Custom_CurrentDocument_OrigOrderNbr String False

Custom_CurrentDocument_PMInstanceID_description String False

Custom_CurrentDocument_CuryFreightAmt String False

Custom_CurrentDocument_OrderVolume String False

Custom_CurrentDocument_CCCardNumber String False

Custom_CurrentDocument_CuryCCPreAuthAmount String False

Custom_CurrentDocument_RefTranExtNbr String False

Custom_CurrentDocument_WillCall Bool False

Custom_CurrentDocument_FinPeriodID String False

Custom_CurrentDocument_OrderWeight String False

Custom_Document_CuryViewState Bool False

Custom_CurrentDocument_ShipZoneID String False

Custom_CurrentDocument_CuryLineTotal String False

Custom_CurrentDocument_ShipComplete String False

Custom_CurrentDocument_FreightTaxCategoryID String False

Custom_CurrentDocument_PCResponseReasonText String False

Custom_CurrentDocument_Resedential Bool False

Custom_CurrentDocument_NoteID String False

Custom_Document_NoteText String False

Custom_CurrentDocument_ShipDate String False

Custom_CurrentDocument_ShipTermsID String False

Custom_CurrentDocument_CashAccountID String False

Custom_DefPaymentMethodInstance_CCProcessingCenterID String False

Custom_CurrentDocument_ShipVia String False

Custom_Document_NoteID String False

Custom_CurrentDocument_SaturdayDelivery Bool False

Custom_CurrentDocument_CampaignID String False

Custom_CurrentDocument_TermsID String False

Custom_CurrentDocument_ShipSeparately Bool False

Custom_CurrentDocument_OwnerID String False

Custom_CurrentDocument_OpenOrderQty String False

Custom_CurrentDocument_TaxZoneID String False

Custom_CurrentDocument_BillSeparately Bool False

Custom_CurrentDocument_InvoiceNbr String False

Custom_CurrentDocument_Priority Int False

Custom_CurrentDocument_DiscDate String False

Custom_CurrentDocument_BranchID String False

Custom_CurrentDocument_InvoiceDate String False

CData Python Connector for Acumatica

Salesperson

Salesperson is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Name String False

CreatedDateTime Datetime False

DefaultCommission Double False

IsActive Bool False

SalespersonID [KEY] String False

SalesSubaccount String False

LastModifiedDateTime Datetime False

Custom_Salesperson_NoteID String False

Custom_Salesperson_NoteText String False

CData Python Connector for Acumatica

SalesPricesInquiry

SalesPricesInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

EffectiveAsOf Datetime False

PriceCode String False

PriceClass String False

PriceWorkgroupIsMine Bool False

ItemClassID String False

LinkedSalesPriceDetails String False

PriceType String False

PriceManagerIsMe Bool False

PriceManager String False

InventoryID [KEY] String False

PriceWorkgroup String False

Custom_Filter_SiteID String False

CData Python Connector for Acumatica

SalesPriceWorksheet

SalesPriceWorksheet is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

Hold Bool False

EffectiveDate Datetime False

ExpirationDate Datetime False

Status String False

ReferenceNbr [KEY] String False

LinkedSalesPrices String False

OverwriteOverlappingPrices Bool False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

Custom_Document_NoteID String False

Custom_Document_IsPromotional Bool False

CData Python Connector for Acumatica

Shipment

Shipment is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ShipmentNbr [KEY] String False

LinkedPackages String False

Operation String False

CurrencyID String False

Status String False

WarehouseID String False

CurrencyRate Double False

FOBPoint String False

PackageCount Int False

UseCustomersAccount Bool False

ShippingTerms String False

ShipmentDate Datetime False

WorkgroupID String False

CustomerID String False

BaseCurrencyID String False

FreightAmount Double False

SaturdayDelivery Bool False

Owner String False

ShippedVolume Double False

EffectiveDate Datetime False

ResidentialDelivery Bool False

ControlQty Double False

Hold Bool False

CurrencyRateTypeID String False

LocationID String False

ShippedWeight Double False

LinkedOrders String False

ReciprocalRate Double False

FreightCost Double False

LastModifiedDateTime Datetime False

FreightCurrency String False

GroundCollect Bool False

PackageWeight Double False

ShippedQty Double False

LinkedDetails String False

ShippingZoneID String False

LinkedShippingSettings String False

ToWarehouseID String False

CurrencyViewState Bool False

Type String False

ShipVia String False

Insurance Bool False

CreatedDateTime Datetime False

Custom_Document_NoteID String False

Custom_CurrentDocument_NoteID String False

Custom_Document_NoteText String False

Custom_Document_OwnerID_description String False

CData Python Connector for Acumatica

ShippingBox

ShippingBox is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

BoxID [KEY] String False

Height Int False

WeightUOM String False

BoxWeight Double False

Length Int False

VolumeUOM String False

CarriersPackage String False

MaxVolume Double False

MaxWeight Double False

ActiveByDefault Bool False

Width Int False

CData Python Connector for Acumatica

ShippingTerm

ShippingTerm is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedDetails String False

Description String False

TermID [KEY] String False

Custom_ShipTermsCurrent_NoteID String False

CData Python Connector for Acumatica

ShippingZones

ShippingZones is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

ZoneID [KEY] String False

CData Python Connector for Acumatica

ShipVia

ShipVia is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

Calendar String False

LinkedFreightRates String False

LinkedPackages String False

FreightExpenseAccount String False

TaxCategory String False

CarrierID [KEY] String False

FreightSalesSubaccount String False

FreightSalesAccount String False

CommonCarrier Bool False

CalculationMethod String False

FreightExpenseSubaccount String False

Custom_Carrier_NoteText String False

Custom_Carrier_NoteID String False

Custom_CarrierCurrent_PackageRequired Bool False

Custom_CarrierCurrent_ConfirmationRequired Bool False

Custom_Carrier_IsExternal Bool False

Custom_CarrierCurrent_BaseRate String False

Custom_CarrierCurrent_CarrierPluginID String False

Custom_CarrierCurrent_PluginMethod String False

Custom_CarrierCurrent_NoteID String False

CData Python Connector for Acumatica

StatementCycle

StatementCycle is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

OverdueChargeID String False

LastStatementDate Datetime False

AgingPeriod3Message String False

AgingPeriod1Message String False

AgingPeriod1EndDay Int False

PrepareOn String False

ApplyOverdueCharges Bool False

LastModifiedDateTime Datetime False

RequirePaymentApplicationBeforeStatementProcessing Bool False

AgingPeriod4Message String False

CreatedDateTime Datetime False

AgingPeriod2Message String False

AgingPeriod3EndDay Int False

AgingPeriod2EndDay Int False

RequireOverdueChargesCalculationBeforeStatement Bool False

DayOfMonth1 Int False

Description String False

DayOfMonth Int False

CycleID [KEY] String False

Custom_ARStatementCycleRecord_AgeBasedOn String False

Custom_ARStatementCycleRecord_AgeDays02 Int False

Custom_ARStatementCycleRecord_Bucket04LowerExclusiveBound Int False

Custom_ARStatementCycleRecord_AgeMsgCurrent String False

Custom_ARStatementCycleRecord_AgeMsg00 String False

Custom_ARStatementCycleRecord_NoteID String False

Custom_ARStatementCycleRecord_AgeDays01 Int False

Custom_ARStatementCycleRecord_DayOfWeek String False

Custom_ARStatementCycleRecord_PrintEmptyStatements Bool False

Custom_ARStatementCycleRecord_NoteText String False

Custom_ARStatementCycleRecord_AgeMsg01 String False

Custom_ARStatementCycleRecord_UseFinPeriodForAging Bool False

Custom_ARStatementCycleRecord_AgeDays00 Int False

Custom_ARStatementCycleRecord_Bucket02LowerInclusiveBound Int False

Custom_ARStatementCycleRecord_AgeMsg02 String False

Custom_ARStatementCycleRecord_FinChargeID String False

Custom_ARStatementCycleRecord_Bucket01LowerInclusiveBound Int False

Custom_ARStatementCycleRecord_AgeMsg03 String False

Custom_ARStatementCycleRecord_RequireFinChargeProcessing Bool False

Custom_ARStatementCycleRecord_Bucket03LowerInclusiveBound Int False

Custom_ARStatementCycleRecord_FinChargeApply Bool False

CData Python Connector for Acumatica

StockItem

StockItem is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

DefaultPrice Double False

PriceWorkgroup String False

LandedCostVarianceSubaccount String False

InventorySubaccount String False

LandedCostVarianceAccount String False

POAccrualSubaccount String False

ItemStatus String False

LinkedWarehouseDetails String False

LastModified Datetime False

DefaultIssueLocationID String False

DefaultReceiptLocationID String False

UseOnEntry Bool False

SalesSubaccount String False

LinkedVendorDetails String False

DefaultSubitem String False

LotSerialClass String False

SubjectToCommission Bool False

PriceManager String False

LinkedReplenishmentParameters String False

LastCost Double False

COGSAccount String False

SalesAccount String False

StandardCostVarianceSubaccount String False

COGSSubaccount String False

PackSeparately Bool False

ReasonCodeSubaccount String False

ImageUrl String False

ItemClass String False

ItemType String False

MinMarkup Double False

DeferralAccount String False

VolumeUOM String False

StandardCostVarianceAccount String False

AverageCost Double False

IsAKit Bool False

CurrentStdCost Double False

SalesUOM String False

DefaultWarehouseID String False

BaseUOM String False

ProductWorkgroup String False

ProductManager String False

AutoIncrementalValue String False

Description String False

PackagingOption String False

DimensionVolume Double False

PostingClass String False

DimensionWeight Double False

InventoryAccount String False

ABCCode String False

ValuationMethod String False

LinkedCrossReferences String False

LinkedUOMConversions String False

MSRP Double False

PriceClass String False

PurchaseUOM String False

LinkedBoxes String False

DiscountAccount String False

MaxCost Double False

Markup Double False

StandardCostRevaluationSubaccount String False

DeferralSubaccount String False

StandardCostRevaluationAccount String False

WeightUOM String False

LastStdCost Double False

LinkedAttributes String False

TaxCategory String False

LinkedCategories String False

PurchasePriceVarianceSubaccount String False

MinCost Double False

POAccrualAccount String False

LinkedSubItems String False

DiscountSubaccount String False

InventoryID [KEY] String False

Content String False

PendingStdCost Double False

PurchasePriceVarianceAccount String False

Custom_ItemSettings_Body String False

Custom_ItemSettings_NoteID String False

Custom_ItemSettings_MovementClassID String False

Custom_ItemSettings_StdCstRevSubID String False

Custom_ItemSettings_LCVarianceSubID String False

Custom_ItemSettings_DefaultTermUOM String False

Custom_ItemSettings_ABCCodeID String False

Custom_ItemSettings_InvtSubID String False

Custom_ItemSettings_ABCCodeIsFixed Bool False

Custom_ItemSettings_BaseItemVolume String False

Custom_ItemSettings_DiscAcctID String False

Custom_ItemSettings_ImageUrl String False

Custom_ItemSettings_PurchaseUnit String False

Custom_ItemSettings_BaseItemWeight String False

Custom_ItemSettings_DeferralSubID String False

Custom_ItemSettings_UseParentSubID Bool False

Custom_ItemSettings_PPVAcctID String False

Custom_ItemSettings_DefaultTerm String False

Custom_ItemSettings_StdCstVarSubID String False

Custom_ItemSettings_PackSeparately Bool False

Custom_ItemSettings_DfltReceiptLocationID String False

Custom_ItemSettings_COGSAcctID String False

Custom_ItemSettings_LCVarianceAcctID String False

Custom_ItemSettings_MarkupPct String False

Custom_ItemSettings_DiscSubID String False

Custom_ItemSettings_COGSSubID String False

Custom_ItemSettings_BaseUnit String False

Custom_ItemSettings_PriceClassID String False

Custom_ItemSettings_TotalPercentage String False

Custom_ItemSettings_DeferralAcctID String False

Custom_ItemSettings_CycleID String False

Custom_ItemSettings_StdCstRevAcctID String False

Custom_ItemSettings_DeferredCode String False

Custom_ItemSettings_MovementClassIsFixed Bool False

Custom_ItemSettings_LastStdCost String False

Custom_ItemSettings_StdCstVarAcctID String False

Custom_ItemSettings_DefaultSubItemID String False

Custom_ItemSettings_StdCostDate String False

Custom_ItemSettings_StdCost String False

Custom_ItemSettings_SalesAcctID String False

Custom_ItemSettings_Commisionable Bool False

Custom_ItemSettings_SalesUnit String False

Custom_ItemSettings_PendingStdCost String False

Custom_ItemSettings_DefaultSubItemOnEntry Bool False

Custom_ItemSettings_DfltSiteID String False

Custom_ItemSettings_RecPrice String False

Custom_ItemSettings_ReasonCodeSubID String False

Custom_ItemSettings_SalesSubID String False

Custom_ItemSettings_PriceWorkgroupID String False

Custom_Item_NoteID String False

Custom_ItemSettings_WeightUOM String False

Custom_ItemSettings_VolumeUOM String False

Custom_ItemSettings_POAccrualSubID String False

Custom_ItemSettings_PPVSubID String False

Custom_ItemSettings_DfltShipLocationID String False

Custom_ItemSettings_BasePrice String False

Custom_ItemSettings_PriceManagerID String False

Custom_ItemSettings_MinGrossProfitPct String False

Custom_Item_NoteText String False

Custom_ItemSettings_POAccrualAcctID String False

Custom_ItemSettings_InvtAcctID String False

Custom_ItemSettings_PendingStdCostDate String False

Custom_ItemSettings_PackageOption String False

CData Python Connector for Acumatica

Subaccount

Subaccount is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Secured Bool False

Active Bool False

SubaccountCD String False

SubaccountID Int False

Description String False

Custom_SubRecords_NoteText String False

Custom_SubRecords_NoteID String False

CData Python Connector for Acumatica

Task

Task is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedReminder String False

Owner String False

Parent String False

RelatedEntityDescription String False

Summary String False

NoteID String False

DueDate Datetime False

Internal Bool False

CompletedAt Datetime False

LinkedTimeActivity String False

Status String False

WorkgroupID String False

Body String False

CompletionPercentage Int False

Category String False

ParentSummary String False

StartDate Datetime False

LinkedRelatedActivities String False

Priority String False

LinkedRelatedTasks String False

Custom_Tasks_ParentNoteID_Subject String False

Custom_Tasks_NoteText String False

CData Python Connector for Acumatica

Tax

Tax is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

CalculateOn String False

TaxID [KEY] String False

IncludeInVATTaxableTotal Bool False

TaxPayableAccount String False

TaxExpenseAccount String False

TaxClaimableSubaccount String False

PendingVAT Bool False

ExcludeFromTaxonTaxCalculation Bool False

TaxClaimableAccount String False

TaxType String False

TaxAgency String False

ReverseVAT Bool False

IncludeInVATExemptTotal Bool False

StatisticalVAT Bool False

LastModifiedDateTime Datetime False

LinkedTaxSchedule String False

EnterFromTaxBill Bool False

CashDiscount String False

TaxPayableSubaccount String False

TaxExpenseSubaccount String False

CreatedDateTime Datetime False

NotValidAfter Datetime False

LinkedZones String False

Description String False

DeductibleVAT Bool False

Custom_Tax_PurchTaxSubID String False

Custom_Tax_ReportExpenseToSingleAccount Bool False

Custom_Tax_NoteID String False

Custom_Tax_PurchTaxAcctID String False

Custom_Tax_PendingSalesTaxSubID String False

Custom_Tax_PendingSalesTaxAcctID String False

Custom_Tax_ExpenseSubID String False

Custom_Tax_PendingPurchTaxSubID String False

Custom_Tax_SalesTaxSubID String False

Custom_Tax_ExpenseAccountID String False

Custom_Tax_SalesTaxAcctID String False

Custom_Tax_PendingPurchTaxAcctID String False

CData Python Connector for Acumatica

TaxCategory

TaxCategory is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

LinkedDetails String False

TaxCategoryID [KEY] String False

ExcludeListedTaxes Bool False

Active Bool False

CreatedDateTime Datetime False

Description String False

LastModifiedDateTime Datetime False

Custom_TxCategory_NoteText String False

Custom_TxCategory_NoteID String False

CData Python Connector for Acumatica

TaxZone

TaxZone is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

TaxZoneID [KEY] String False

CreatedDateTime Datetime False

Description String False

LastModifiedDateTime Datetime False

LinkedApplicableTaxes String False

Custom_TxZone_DfltTaxCategoryID String False

Custom_TxZone_ShowZipTabExpr Bool False

Custom_TxZone_TaxVendorID String False

Custom_TxZone_ShowTaxTabExpr Bool False

Custom_TxZone_IsManualVATZone Bool False

Custom_TxZone_NoteID String False

Custom_TxZone_TaxID String False

Custom_TxZone_IsExternal Bool False

Custom_TxZone_NoteText String False

CData Python Connector for Acumatica

TransferOrder

TransferOrder is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

TotalQty Double False

Hold Bool False

ExternalRef String False

Date Datetime False

Status String False

ReferenceNbr [KEY] String False

LinkedDetails String False

ToWarehouseID String False

TransferType String False

FromWarehouseID String False

PostPeriod String False

Custom_transfer_ControlQty String False

Custom_transfer_NoteID String False

Custom_transfer_NoteText String False

CData Python Connector for Acumatica

TrialBalance

TrialBalance is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

ControlTotal Double False

CreditTotal Double False

DebitTotal Double False

Hold Bool False

ImportNbr [KEY] String False

BatchNbr String False

ImportDate Datetime False

Status String False

LinkedDetails String False

Branch String False

Ledger String False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

Period String False

Custom_Map_NoteID String False

Custom_Map_NoteText String False

CData Python Connector for Acumatica

UnitsOfMeasure

UnitsOfMeasure is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

FromUOM String False

ConversionFactor Double False

CreatedDateTime Datetime False

MultiplyOrDivide String False

LastModifiedDateTime Datetime False

ToUOM String False

Custom_Unit_ItemClassID Int False

Custom_Unit_UnitType String False

Custom_Unit_InventoryID Int False

CData Python Connector for Acumatica

Vendor

Vendor is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

APAccount String False

F1099Box String False

Warehouse String False

AccountRef String False

CurrencyID String False

LinkedAttributes String False

Status String False

MinReceipt Double False

ParentAccount String False

PaymentMethod String False

FOBPoint String False

PaySeparately Bool False

ReceivingBranch String False

LandedCostVendor Bool False

ShippingTerms String False

VendorIsTaxAgency Bool False

VendorID [KEY] String False

FATCA Bool False

LinkedRemittanceContact String False

RemittanceContactSameasMain Bool False

ThresholdReceipt Double False

LinkedMainContact String False

CurrencyRateType String False

VendorClass String False

ShippersContactSameasMain Bool False

LeadTimedays Int False

ReceiptAction String False

LinkedShippingContact String False

MaxReceipt Double False

LinkedPaymentInstructions String False

PaymentLeadTimedays Int False

Terms String False

PaymentBy String False

ForeignEntity Bool False

RemittanceAddressSameasMain Bool False

TaxZone String False

CashAccount String False

ShippingAddressSameasMain Bool False

LastModifiedDateTime Datetime False

EnableCurrencyOverride Bool False

SendOrdersbyEmail Bool False

EnableRateOverride Bool False

TaxRegistrationID String False

F1099Vendor Bool False

PrintOrders Bool False

TaxCalculationMode String False

VendorIsLaborUnion Bool False

LinkedContacts String False

APSubaccount String False

ShipVia String False

CreatedDateTime Datetime False

LocationName String False

VendorName String False

CData Python Connector for Acumatica

VendorClass

VendorClass is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ClassID [KEY] String False

CreatedDateTime Datetime False

Description String False

LinkedAttributes String False

LastModifiedDateTime Datetime False

Custom_VendorClassRecord_LocaleName String False

Custom_VendorClassRecord_NoteText String False

Custom_VendorClassRecord_NoteID String False

Custom_VendorClassRecord_LocaleName_translatedName String False

CData Python Connector for Acumatica

VendorPricesInquiry

VendorPricesInquiry is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ProductWorkgroup String False

ProductManager String False

InventoryID [KEY] String False

ItemClass String False

Vendor String False

LinkedVendorPriceDetails String False

Custom_Filter_SiteID String False

Custom_Filter_MyOwner Bool False

Custom_Filter_EffectiveAsOfDate String False

Custom_Filter_MyWorkGroup Bool False

CData Python Connector for Acumatica

VendorPriceWorksheet

VendorPriceWorksheet is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

Description String False

LinkedVendorSalesPrices String False

Hold Bool False

EffectiveDate Datetime False

ExpirationDate Datetime False

Status String False

Promotional Bool False

ReferenceNbr [KEY] String False

OverwriteOverlappingPrices Bool False

CreatedDateTime Datetime False

LastModifiedDateTime Datetime False

Custom_Document_NoteID String False

CData Python Connector for Acumatica

VoucherEntryCode

VoucherEntryCode is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ModuleTransactionType String False

UniqueTransactionCode String False

Module String False

Active Bool False

Description String False

CData Python Connector for Acumatica

Warehouse

Warehouse is an auto-generated table.

Columns

Name Type ReadOnly Description
Id [KEY] String True

ReceivingLocationID String False

LinkedLocations String False

StandardCostVarianceAccount String False

MiscChargeAccount String False

PurchasePriceVarianceSubaccount String False

LandedCostVarianceAccount String False

POAccrualSubaccount String False

DropShipLocationID String False

COGSExpenseAccount String False

StandardCostRevaluationSubaccount String False

DiscountSubaccount String False

DiscountAccount String False

OverrideInventoryAccountSubaccount Bool False

SalesSubaccount String False

LandedCostVarianceSubaccount String False

InventorySubaccount String False

COGSExpenseSubaccount String False

FreightChargeAccount String False

PurchasePriceVarianceAccount String False

ShippingLocationID String False

InventoryAccount String False

FreightChargeSubaccount String False

POAccrualAccount String False

StandardCostRevaluationAccount String False

StandardCostVarianceSubaccount String False

Active Bool False

RMALocationID String False

ReasonCodeSubaccount String False

MiscChargeSubaccount String False

WarehouseID [KEY] String False

Description String False

SalesAccount String False

Custom_siteaccounts_POAccrualAcctID String False

Custom_siteaccounts_LCVarianceAcctID String False

Custom_siteaccounts_StdCstVarAcctID String False

Custom_site_ReplenishmentClassID String False

Custom_siteaccounts_MiscAcctID String False

Custom_siteaccounts_FreightAcctID String False

Custom_siteaccounts_DiscAcctID String False

Custom_siteaccounts_POAccrualSubID String False

Custom_siteaccounts_NoteID String False

Custom_siteaccounts_PPVSubID String False

Custom_siteaccounts_DiscSubID String False

Custom_site_BranchID String False

Custom_siteaccounts_FreightSubID String False

Custom_site_AvgDefaultCost String False

Custom_siteaccounts_SalesAcctID String False

Custom_siteaccounts_OverrideInvtAccSub Bool False

Custom_siteaccounts_COGSSubID String False

Custom_siteaccounts_SalesSubID String False

Custom_site_FIFODefaultCost String False

Custom_siteaccounts_PPVAcctID String False

Custom_site_LocationValid String False

Custom_siteaccounts_LCVarianceSubID String False

Custom_site_NoteText String False

Custom_siteaccounts_InvtAcctID String False

Custom_siteaccounts_StdCstRevSubID String False

Custom_siteaccounts_MiscSubID String False

Custom_siteaccounts_InvtSubID String False

Custom_site_LockSitePICountEntry Bool False

Custom_siteaccounts_StdCstRevAcctID String False

Custom_siteaccounts_StdCstVarSubID String False

Custom_siteaccounts_ReasonCodeSubID String False

Custom_site_NoteID String False

Custom_siteaccounts_COGSAcctID String False

CData Python Connector for Acumatica

Views

Views are similar to tables in the way that data is represented; however, views are read-only.

Queries can be executed against a view as if it were a normal table.

CData Python Connector for Acumatica Views

Name Description
AccountByPeriodInquiry_Results AccountByPeriodInquiry_Results is an auto-generated table.
AccountBySubaccountInquiry_Results AccountBySubaccountInquiry_Results is an auto-generated table.
AccountDetailsInquiry_Results AccountDetailsInquiry_Results is an auto-generated table.
AccountLocation_Address AccountLocation_Address is an auto-generated table.
AccountLocation_Cases AccountLocation_Cases is an auto-generated table.
AccountLocation_Contact AccountLocation_Contact is an auto-generated table.
AccountLocation_Opportunities AccountLocation_Opportunities is an auto-generated table.
AccountSummaryInquiry_Results AccountSummaryInquiry_Results is an auto-generated table.
Adjustment_Details Adjustment_Details is an auto-generated table.
AttributeDefinition_Values AttributeDefinition_Values is an auto-generated table.
Bill_Applications Bill_Applications is an auto-generated table.
Bill_Details Bill_Details is an auto-generated table.
Bill_TaxDetails Bill_TaxDetails is an auto-generated table.
BusinessAccount_Activities BusinessAccount_Activities is an auto-generated table.
BusinessAccount_Attributes BusinessAccount_Attributes is an auto-generated table.
BusinessAccount_Campaigns BusinessAccount_Campaigns is an auto-generated table.
BusinessAccount_Cases BusinessAccount_Cases is an auto-generated table.
BusinessAccount_Contacts BusinessAccount_Contacts is an auto-generated table.
BusinessAccount_Contracts BusinessAccount_Contracts is an auto-generated table.
BusinessAccount_DefaultLocationSettings BusinessAccount_DefaultLocationSettings is an auto-generated table.
BusinessAccount_Duplicates BusinessAccount_Duplicates is an auto-generated table.
BusinessAccount_Locations BusinessAccount_Locations is an auto-generated table.
BusinessAccount_MainAddress BusinessAccount_MainAddress is an auto-generated table.
BusinessAccount_MainContact BusinessAccount_MainContact is an auto-generated table.
BusinessAccount_MarketingLists BusinessAccount_MarketingLists is an auto-generated table.
BusinessAccount_Opportunities BusinessAccount_Opportunities is an auto-generated table.
BusinessAccount_Orders BusinessAccount_Orders is an auto-generated table.
BusinessAccount_Relations BusinessAccount_Relations is an auto-generated table.
BusinessAccount_ShippingAddress BusinessAccount_ShippingAddress is an auto-generated table.
BusinessAccount_ShippingContact BusinessAccount_ShippingContact is an auto-generated table.
Carrier_CustomerAccounts Carrier_CustomerAccounts is an auto-generated table.
Carrier_PlugInParameters Carrier_PlugInParameters is an auto-generated table.
Case_Activities Case_Activities is an auto-generated table.
Case_Attributes Case_Attributes is an auto-generated table.
Case_RelatedCases Case_RelatedCases is an auto-generated table.
Case_Relations Case_Relations is an auto-generated table.
CashSale_Details CashSale_Details is an auto-generated table.
Check_Details Check_Details is an auto-generated table.
Check_History Check_History is an auto-generated table.
Contact_Activities Contact_Activities is an auto-generated table.
Contact_Address Contact_Address is an auto-generated table.
Contact_Attributes Contact_Attributes is an auto-generated table.
Contact_Campaigns Contact_Campaigns is an auto-generated table.
Contact_Cases Contact_Cases is an auto-generated table.
Contact_Duplicates Contact_Duplicates is an auto-generated table.
Contact_MarketingLists Contact_MarketingLists is an auto-generated table.
Contact_Notifications Contact_Notifications is an auto-generated table.
Contact_Opportunities Contact_Opportunities is an auto-generated table.
Contact_Relations Contact_Relations is an auto-generated table.
Contact_UserInfo Contact_UserInfo is an auto-generated table.
CustomerClass_Attributes CustomerClass_Attributes is an auto-generated table.
CustomerLocation_LocationContact CustomerLocation_LocationContact is an auto-generated table.
CustomerPaymentMethod_Details CustomerPaymentMethod_Details is an auto-generated table.
Customer_Attributes Customer_Attributes is an auto-generated table.
Customer_BillingContact Customer_BillingContact is an auto-generated table.
Customer_Contacts Customer_Contacts is an auto-generated table.
Customer_CreditVerificationRules Customer_CreditVerificationRules is an auto-generated table.
Customer_MainContact Customer_MainContact is an auto-generated table.
Customer_PaymentInstructions Customer_PaymentInstructions is an auto-generated table.
Customer_Salespersons Customer_Salespersons is an auto-generated table.
Customer_ShippingContact Customer_ShippingContact is an auto-generated table.
Discount_CustomerPriceClasses Discount_CustomerPriceClasses is an auto-generated table.
Discount_Customers Discount_Customers is an auto-generated table.
Discount_DiscountBreakpoints Discount_DiscountBreakpoints is an auto-generated table.
Discount_ItemPriceClasses Discount_ItemPriceClasses is an auto-generated table.
Discount_Items Discount_Items is an auto-generated table.
Discount_Warehouses Discount_Warehouses is an auto-generated table.
Email_TimeActivity Email_TimeActivity is an auto-generated table.
Employee_Contact Employee_Contact is an auto-generated table.
Employee_EmployeeCost Employee_EmployeeCost is an auto-generated table.
Employee_EmploymentHistory Employee_EmploymentHistory is an auto-generated table.
Event_Attendees Event_Attendees is an auto-generated table.
Event_RelatedActivities Event_RelatedActivities is an auto-generated table.
Event_Reminder Event_Reminder is an auto-generated table.
Event_TimeActivity Event_TimeActivity is an auto-generated table.
FinancialPeriod_Details FinancialPeriod_Details is an auto-generated table.
InterBranchAccountMapping_TransactionsInDestinationBranch InterBranchAccountMapping_TransactionsInDestinationBranch is an auto-generated table.
InterBranchAccountMapping_TransactionsInSourceBranch InterBranchAccountMapping_TransactionsInSourceBranch is an auto-generated table.
InventoryAllocationInquiry_Results InventoryAllocationInquiry_Results is an auto-generated table.
InventoryReceipt_Details InventoryReceipt_Details is an auto-generated table.
InventorySummaryInquiry_Results InventorySummaryInquiry_Results is an auto-generated table.
Invoice_ApplicationsCreditMemo Invoice_ApplicationsCreditMemo is an auto-generated table.
Invoice_ApplicationsDefault Invoice_ApplicationsDefault is an auto-generated table.
Invoice_Details Invoice_Details is an auto-generated table.
Invoice_TaxDetails Invoice_TaxDetails is an auto-generated table.
ItemClass_Attributes ItemClass_Attributes is an auto-generated table.
JournalTransaction_Details JournalTransaction_Details is an auto-generated table.
JournalVoucher_Details JournalVoucher_Details is an auto-generated table.
JournalVoucher_GLTransactions JournalVoucher_GLTransactions is an auto-generated table.
KitAssembly_Allocations KitAssembly_Allocations is an auto-generated table.
KitAssembly_NonStockComponents KitAssembly_NonStockComponents is an auto-generated table.
KitAssembly_StockComponents KitAssembly_StockComponents is an auto-generated table.
KitSpecification_NonStockComponents KitSpecification_NonStockComponents is an auto-generated table.
KitSpecification_StockComponents KitSpecification_StockComponents is an auto-generated table.
Lead_Activities Lead_Activities is an auto-generated table.
Lead_Address Lead_Address is an auto-generated table.
Lead_Attributes Lead_Attributes is an auto-generated table.
Lead_Campaigns Lead_Campaigns is an auto-generated table.
Lead_Duplicates Lead_Duplicates is an auto-generated table.
Lead_MarketingLists Lead_MarketingLists is an auto-generated table.
Lead_Relations Lead_Relations is an auto-generated table.
LotSerialClass_Segments LotSerialClass_Segments is an auto-generated table.
NonStockItem_Attributes NonStockItem_Attributes is an auto-generated table.
NonStockItem_CrossReferences NonStockItem_CrossReferences is an auto-generated table.
NonStockItem_SalesCategories NonStockItem_SalesCategories is an auto-generated table.
NonStockItem_VendorDetails NonStockItem_VendorDetails is an auto-generated table.
Opportunity_Activities Opportunity_Activities is an auto-generated table.
Opportunity_Address Opportunity_Address is an auto-generated table.
Opportunity_Attributes Opportunity_Attributes is an auto-generated table.
Opportunity_ContactInformation Opportunity_ContactInformation is an auto-generated table.
Opportunity_Discounts Opportunity_Discounts is an auto-generated table.
Opportunity_Products Opportunity_Products is an auto-generated table.
Opportunity_Relations Opportunity_Relations is an auto-generated table.
Opportunity_TaxDetails Opportunity_TaxDetails is an auto-generated table.
PaymentMethod_AllowedCashAccounts PaymentMethod_AllowedCashAccounts is an auto-generated table.
PaymentMethod_ProcessingCenters PaymentMethod_ProcessingCenters is an auto-generated table.
Payment_ApplicationHistory Payment_ApplicationHistory is an auto-generated table.
Payment_CreditCardProcessingInfo Payment_CreditCardProcessingInfo is an auto-generated table.
Payment_DocumentsToApply Payment_DocumentsToApply is an auto-generated table.
Payment_OrdersToApply Payment_OrdersToApply is an auto-generated table.
PhysicalInventoryReview_Details PhysicalInventoryReview_Details is an auto-generated table.
ProjectTransaction_Details ProjectTransaction_Details is an auto-generated table.
PurchaseOrder_Details PurchaseOrder_Details is an auto-generated table.
PurchaseOrder_ShippingInstructions PurchaseOrder_ShippingInstructions is an auto-generated table.
PurchaseReceipt_Details PurchaseReceipt_Details is an auto-generated table.
ReportingSettings_ReportingGroups ReportingSettings_ReportingGroups is an auto-generated table.
SalesInvoice_BillingSettings SalesInvoice_BillingSettings is an auto-generated table.
SalesInvoice_Details SalesInvoice_Details is an auto-generated table.
SalesInvoice_FreightDetails SalesInvoice_FreightDetails is an auto-generated table.
SalesOrder_BillToAddress SalesOrder_BillToAddress is an auto-generated table.
SalesOrder_BillToContact SalesOrder_BillToContact is an auto-generated table.
SalesOrder_Commissions SalesOrder_Commissions is an auto-generated table.
SalesOrder_Details SalesOrder_Details is an auto-generated table.
SalesOrder_DiscountDetails SalesOrder_DiscountDetails is an auto-generated table.
SalesOrder_FinancialSettings SalesOrder_FinancialSettings is an auto-generated table.
SalesOrder_Payments SalesOrder_Payments is an auto-generated table.
SalesOrder_Shipments SalesOrder_Shipments is an auto-generated table.
SalesOrder_ShippingSettings SalesOrder_ShippingSettings is an auto-generated table.
SalesOrder_ShipToAddress SalesOrder_ShipToAddress is an auto-generated table.
SalesOrder_ShipToContact SalesOrder_ShipToContact is an auto-generated table.
SalesOrder_TaxDetails SalesOrder_TaxDetails is an auto-generated table.
SalesOrder_Totals SalesOrder_Totals is an auto-generated table.
SalesPricesInquiry_SalesPriceDetails SalesPricesInquiry_SalesPriceDetails is an auto-generated table.
SalesPriceWorksheet_SalesPrices SalesPriceWorksheet_SalesPrices is an auto-generated table.
Shipment_Details Shipment_Details is an auto-generated table.
Shipment_Orders Shipment_Orders is an auto-generated table.
Shipment_Packages Shipment_Packages is an auto-generated table.
Shipment_ShippingSettings Shipment_ShippingSettings is an auto-generated table.
ShippingTerm_Details ShippingTerm_Details is an auto-generated table.
ShipVia_FreightRates ShipVia_FreightRates is an auto-generated table.
ShipVia_Packages ShipVia_Packages is an auto-generated table.
StockItem_Attributes StockItem_Attributes is an auto-generated table.
StockItem_Boxes StockItem_Boxes is an auto-generated table.
StockItem_Categories StockItem_Categories is an auto-generated table.
StockItem_CrossReferences StockItem_CrossReferences is an auto-generated table.
StockItem_ReplenishmentParameters StockItem_ReplenishmentParameters is an auto-generated table.
StockItem_SubItems StockItem_SubItems is an auto-generated table.
StockItem_UOMConversions StockItem_UOMConversions is an auto-generated table.
StockItem_VendorDetails StockItem_VendorDetails is an auto-generated table.
StockItem_WarehouseDetails StockItem_WarehouseDetails is an auto-generated table.
Task_RelatedActivities Task_RelatedActivities is an auto-generated table.
Task_RelatedTasks Task_RelatedTasks is an auto-generated table.
Task_Reminder Task_Reminder is an auto-generated table.
Task_TimeActivity Task_TimeActivity is an auto-generated table.
TaxCategory_Details TaxCategory_Details is an auto-generated table.
TaxZone_ApplicableTaxes TaxZone_ApplicableTaxes is an auto-generated table.
Tax_TaxSchedule Tax_TaxSchedule is an auto-generated table.
Tax_Zones Tax_Zones is an auto-generated table.
TransferOrder_Details TransferOrder_Details is an auto-generated table.
TrialBalance_Details TrialBalance_Details is an auto-generated table.
VendorClass_Attributes VendorClass_Attributes is an auto-generated table.
VendorPricesInquiry_VendorPriceDetails VendorPricesInquiry_VendorPriceDetails is an auto-generated table.
VendorPriceWorksheet_VendorSalesPrices VendorPriceWorksheet_VendorSalesPrices is an auto-generated table.
Vendor_Attributes Vendor_Attributes is an auto-generated table.
Vendor_Contacts Vendor_Contacts is an auto-generated table.
Vendor_MainContact Vendor_MainContact is an auto-generated table.
Vendor_PaymentInstructions Vendor_PaymentInstructions is an auto-generated table.
Vendor_RemittanceContact Vendor_RemittanceContact is an auto-generated table.
Vendor_ShippingContact Vendor_ShippingContact is an auto-generated table.
Warehouse_Locations Warehouse_Locations is an auto-generated table.

CData Python Connector for Acumatica

AccountByPeriodInquiry_Results

AccountByPeriodInquiry_Results is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentAccount [KEY] String
CreditTotal Double
CurrencyBeginingBalance Double
CurrencyID String
CurrencyCreditTotal Double
DebitTotal Double
BeginingBalance Double
CurrencyEndingBalance Double
CurrencyDebitTotal Double
CurrencyPtdTotal Double
PtdTotal Double
LedgerID Int
EndingBalance Double
Period String
Custom_EnqResult_AccountCD String
Custom_EnqResult_SubCD String

CData Python Connector for Acumatica

AccountBySubaccountInquiry_Results

AccountBySubaccountInquiry_Results is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentAccount [KEY] String
CreditTotal Double
CurrencyBeginingBalance Double
CurrencyID String
CurrencyCreditTotal Double
DebitTotal Double
BeginingBalance Double
CurrencyEndingBalance Double
CurrencyDebitTotal Double
CurrencyPtdTotal Double
Subaccount String
PtdTotal Double
LedgerID Int
EndingBalance Double
Custom_EnqResult_AccountCD String

CData Python Connector for Acumatica

AccountDetailsInquiry_Results

AccountDetailsInquiry_Results is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentAccount [KEY] String
CurrencyCreditAmount Double
CurrencyBeginingBalance Double
CreditAmount Double
TransactionDate Datetime
Subaccount String
LineNbr Int
VendorOrCustomer String
Branch String
CurrencyID String
IncludedinReclassHistory Bool
DebitAmount Double
ReferenceNbr String
BatchNbr String
CurrencyEndingBalance Double
Selected Bool
CurrencyDebitAmount Double
Account String
Period String
EndingBalance Double
ReclassBatchNbr String
BeginingBalance Double
Description String
Module String
InventoryID String
Custom_GLTranEnq_NoteText String
Custom_GLTranEnq_NoteID String
Custom_GLTranEnq_ReferenceID_BaccountR_AcctName String

CData Python Connector for Acumatica

AccountLocation_Address

AccountLocation_Address is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLocationId [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

AccountLocation_Cases

AccountLocation_Cases is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLocationId [KEY] String
DateReported Datetime
Subject String
Workgroup String
Estimation String
ClosingDate Datetime
CaseID String
Status String
Reason String
Severity String
ClassID String
Owner String
InitialResponse String
Custom_Cases_NoteText String
Custom_Cases_NoteID String

CData Python Connector for Acumatica

AccountLocation_Contact

AccountLocation_Contact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLocationId [KEY] String
WebSite String
Phone2 String
Fax String
Phone1 String
Phone2Type String
CompanyName String
FaxType String
Email String
Phone1Type String
Attention String
SameAsMain Bool
Custom_Contact_NoteID String

CData Python Connector for Acumatica

AccountLocation_Opportunities

AccountLocation_Opportunities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLocationId [KEY] String
Subject String
DisplayName String
Workgroup String
Estimation Datetime
Stage String
Currency String
Total Double
Status String
Owner String
Probability Int
Custom_Opportunities_NoteID String
Custom_Opportunities_OpportunityID String
Custom_Opportunities_NoteText String

CData Python Connector for Acumatica

AccountSummaryInquiry_Results

AccountSummaryInquiry_Results is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentAccountClass [KEY] String
CurrencyDebitTotal Double
CurrencyBeginingBalance Double
AccountClass String
LedgerID Int
ConsolidationAccount String
Subaccount String
PtdTotal Double
Type String
LastActivity String
Branch String
DebitTotal Double
CurrencyID String
CurrencyEndingBalance Double
CreditTotal Double
CurrencyPtdTotal Double
Account String
CurrencyCreditTotal Double
EndingBalance Double
BeginingBalance Double
Description String

CData Python Connector for Acumatica

Adjustment_Details

Adjustment_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentReferenceNbr [KEY] String
Description String
WarehouseID String
LocationID String
Subitem String
ReasonCode String
ExtendedCost Double
ExpirationDate Datetime
ReceiptNbr String
UOM String
BranchID String
InventoryID String
LotSerialNbr String
Qty Double
Custom_transactions_Availability String
Custom_transactions_POReceiptNbr String
Custom_transactions_SOOrderNbr String
Custom_transactions_DocType String
Custom_transactions_SOOrderType String
Custom_transactions_NoteID String
Custom_transactions_SOShipmentNbr String
Custom_transactions_UnitCost String
Custom_transactions_RefNbr String
Custom_transactions_NoteText String
Custom_transactions_LineNbr Int

CData Python Connector for Acumatica

AttributeDefinition_Values

AttributeDefinition_Values is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentAttributeID [KEY] String
SortOrder Int
Disabled Bool
ValueID String
Description String
Custom_AttributeDetails_AttributeID String
Custom_AttributeDetails_NoteText String
Custom_AttributeDetails_NoteID String

CData Python Connector for Acumatica

Bill_Applications

Bill_Applications is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Status String
ReferenceNbr String
Balance Double
AmountPaid Double
DocType String
Custom_Adjustments_AdjNbr Int
Custom_Adjustments_AdjgDocType String
Custom_Adjustments_DisplayCuryID String
Custom_Adjustments_CuryAdjdPPDAmt String
Custom_Adjustments_AdjdRefNbr String
Custom_Adjustments_AdjgBranchID String
Custom_Adjustments_DisplayDocDate String
Custom_Adjustments_DisplayDocDesc String
Custom_Adjustments_AdjdDocType String
Custom_Adjustments_DisplayFinPeriodID String
Custom_Adjustments_AdjgRefNbr String
Custom_Adjustments_APPayment_ExtRefNbr String
Custom_Adjustments_NoteID String
Custom_Adjustments_NoteText String

CData Python Connector for Acumatica

Bill_Details

Bill_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
UnitCost Double
Description String
Account String
TaxCategory String
Amount Double
Project String
ExtendedCost Double
ProjectTask String
POOrderType String
Subaccount String
TransactionDescription String
UOM String
NonBillable Bool
POOrderNbr String
Branch String
Qty Double
Custom_Transactions_ReceiptNbr String
Custom_Transactions_ManualDisc Bool
Custom_Transactions_POLineNbr Int
Custom_Transactions_CostCodeID String
Custom_Transactions_POReceiptLine_SubItemID String
Custom_Transactions_ManualPrice Bool
Custom_Transactions_DiscountSequenceID String
Custom_Transactions_DiscPct String
Custom_Transactions_NoteText String
Custom_Transactions_NoteID String
Custom_Transactions_PPVRefNbr String
Custom_Transactions_PPVDocType String
Custom_Transactions_DefScheduleID String
Custom_Transactions_LineNbr Int
Custom_Transactions_ReceiptLineNbr Int
Custom_Transactions_Box1099 String
Custom_Transactions_TranType String
Custom_Transactions_CuryDiscCost String
Custom_Transactions_SortOrder Int
Custom_Transactions_RefNbr String
Custom_Transactions_Date String
Custom_Transactions_BaseQty String
Custom_Transactions_InventoryID String
Custom_Transactions_DiscountID String
Custom_Transactions_CuryDiscAmt String
Custom_Transactions_DeferredCode String

CData Python Connector for Acumatica

Bill_TaxDetails

Bill_TaxDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
TaxableAmount Double
TaxAmount Double
TaxRate Double
TaxID String
Custom_Taxes_CuryExpenseAmt String
Custom_Taxes_CuryDiscountedPrice String
Custom_Taxes_CuryDiscountedTaxableAmt String
Custom_Taxes_TranType String
Custom_Taxes_Module String
Custom_Taxes_RefNbr String
Custom_Taxes_Tax_ExemptTax Bool
Custom_Taxes_RecordID Int
Custom_Taxes_Tax_ReverseTax Bool
Custom_Taxes_Tax_PendingTax Bool
Custom_Taxes_Tax_StatisticalTax Bool
Custom_Taxes_NonDeductibleTaxRate String
Custom_Taxes_Tax_TaxType String

CData Python Connector for Acumatica

BusinessAccount_Activities

BusinessAccount_Activities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
ClassIcon String
IsCompleteIcon String
PriorityIcon String
Owner String
Released Bool
RelatedEntityDescription String
Workgroup String
Summary String
Type String
CreatorID String
CreatedAt Datetime
Status String
Project String
RefNoteID String
ProjectTask String
StartDate Datetime
TimeSpent String
CreatorUsername String
ReminderIcon String
Custom_Activities_NoteID String
Custom_Activities_NoteText String

CData Python Connector for Acumatica

BusinessAccount_Attributes

BusinessAccount_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

BusinessAccount_Campaigns

BusinessAccount_Campaigns is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
CampaignName String
CampaignID String
ContactID Int
Stage String

CData Python Connector for Acumatica

BusinessAccount_Cases

BusinessAccount_Cases is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
DateReported Datetime
Subject String
Workgroup String
Estimation String
ClosingDate Datetime
CaseID String
Contract String
Status String
Reason String
Severity String
ClassID String
Owner String
InitialResponse String
Custom_Cases_NoteText String
Custom_Cases_NoteID String

CData Python Connector for Acumatica

BusinessAccount_Contacts

BusinessAccount_Contacts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Type String
DisplayName String
Workgroup String
Phone1 String
Active Bool
Email String
JobTitle String
City String
ContactID Int
Owner String
Custom_Contacts_NoteID String
Custom_Contacts_NoteText String

CData Python Connector for Acumatica

BusinessAccount_Contracts

BusinessAccount_Contracts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
BusinessAccountID String
Status String
BusinessAccountName String
Location String
ContractID String
Description String
ExpirationDate Datetime
Custom_Contracts_NoteID String
Custom_Contracts_NoteText String

CData Python Connector for Acumatica

BusinessAccount_DefaultLocationSettings

BusinessAccount_DefaultLocationSettings is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
LocationName String
ResidentialDelivery Bool
FOBPoint String
PriceClass String
Warehouse String
ShippingZone String
ShippingTerms String
LeadTimeInDays Int
SaturdayDelivery Bool
ShippingRule String
ShipVia String
Insurance Bool
TaxRegistrationID String
ShippingBranch String
OrderPriority Int
TaxZone String
Custom_DefLocation_CPriceClassID String
Custom_DefLocation_CBranchID String
Custom_DefLocation_CShipComplete String
Custom_DefLocation_CTaxZoneID String
Custom_DefLocation_CLeadTime Int
Custom_DefLocation_CShipTermsID String
Custom_DefLocation_COrderPriority Int
Custom_DefLocation_NoteID String
Custom_DefLocation_CShipZoneID String
Custom_DefLocation_CFOBPointID String
Custom_DefLocation_CSaturdayDelivery Bool
Custom_DefLocation_CInsurance Bool
Custom_DefLocation_CCarrierID String
Custom_DefLocation_TaxRegistrationID String
Custom_DefLocation_CSiteID String
Custom_DefLocation_Descr String
Custom_DefLocation_CResedential Bool

CData Python Connector for Acumatica

BusinessAccount_Duplicates

BusinessAccount_Duplicates is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Type String
LastModifiedDate Datetime
AccountName String
DisplayName String
EntityType String
Email String
BusinessAccountType String
BusinessAccount String
Duplicate String
DuplicateContactID Int
ContactID Int
Custom_Duplicates_Selected Bool

CData Python Connector for Acumatica

BusinessAccount_Locations

BusinessAccount_Locations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
LocationName String
LocationID String
PriceClass String
Active Bool
SalesSubaccount String
Default Bool
SalesAccount String
City String
State String
Country String
TaxZone String
Custom_Locations_BAccountID Int
Custom_Locations_NoteID String
Custom_Locations_NoteText String

CData Python Connector for Acumatica

BusinessAccount_MainAddress

BusinessAccount_MainAddress is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

BusinessAccount_MainContact

BusinessAccount_MainContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
CompanyName String
Phone2 String
Fax String
Phone1 String
LanguageOrLocale String
JobTitle String
Web String
Email String
Custom_DefContact_LanguageID String
Custom_DefContact_DuplicateFound Bool
Custom_DefContact_NoteID String

CData Python Connector for Acumatica

BusinessAccount_MarketingLists

BusinessAccount_MarketingLists is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Phone1 String
Email String
MarketingListID Int
Subscribed Bool
MemberName String
DynamicList Bool
Format String
ContactID Int
ListName String

CData Python Connector for Acumatica

BusinessAccount_Opportunities

BusinessAccount_Opportunities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
BusinessAccountName String
CurrencyID String
Subject String
DisplayName String
BusinessAccountID String
Workgroup String
Estimation Datetime
Stage String
Total Double
Status String
Owner String
Probability Int
Custom_Opportunities_NoteID String
Custom_Opportunities_OpportunityID String
Custom_Opportunities_NoteText String

CData Python Connector for Acumatica

BusinessAccount_Orders

BusinessAccount_Orders is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Description String
CustomerOrder String
RequestedOn Datetime
CurrencyID String
OrderTotal Double
ScheduledShipment Datetime
ShippingZone String
ShipVia String
Status String
OrderNbr String
OrderVolume Double
OrderedQty Double
OrderWeight Double
OrderType String
Custom_Orders_NoteID String
Custom_Orders_NoteText String

CData Python Connector for Acumatica

BusinessAccount_Relations

BusinessAccount_Relations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Type String
DocumentTargetNoteIDDescription String
ContactDisplayName String
Account String
Email String
Document String
Name String
RelationID Int
Role String
ContactID Int
AddToCc Bool
Primary Bool

CData Python Connector for Acumatica

BusinessAccount_ShippingAddress

BusinessAccount_ShippingAddress is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

BusinessAccount_ShippingContact

BusinessAccount_ShippingContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBusinessAccountID [KEY] String
Phone2 String
Fax String
Phone1 String
SameasMain Bool
JobTitle String
Email String
Custom_DefLocationContact_NoteID String

CData Python Connector for Acumatica

Carrier_CustomerAccounts

Carrier_CustomerAccounts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCarrierID [KEY] String
CustomerID String
CustomerName String
Location String
PostalCode String
RecordID Int
Active Bool
CarrierAccount String
Custom_CustomerAccounts_CarrierPluginID String

CData Python Connector for Acumatica

Carrier_PlugInParameters

Carrier_PlugInParameters is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCarrierID [KEY] String
PluginID String
Value String
Description String
Custom_Details_CarrierPluginID String

CData Python Connector for Acumatica

Case_Activities

Case_Activities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCaseID [KEY] String
BillableTime String
ClassIcon String
IsCompleteIcon String
BillableOvertime String
PriorityIcon String
Owner String
Released Bool
Workgroup String
Summary String
Type String
CreatedAt Datetime
Status String
Category String
Project String
RefNoteID String
ProjectTask String
CreatedBy String
StartDate Datetime
Overtime String
Billable Bool
TimeSpent String
ReminderIcon String
Custom_Activities_NoteID String
Custom_Activities_NoteText String

CData Python Connector for Acumatica

Case_Attributes

Case_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCaseID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

Case_RelatedCases

Case_RelatedCases is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCaseID [KEY] String
Status String
Subject String
Workgroup String
ParentCaseID Int
RelationType String
Owner String
CaseID String

CData Python Connector for Acumatica

Case_Relations

Case_Relations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCaseID [KEY] String
Type String
DocumentTargetNoteIDDescription String
ContactDisplayName String
Account String
Email String
Document String
Name String
RelationID Int
Role String
ContactID Int
AddToCc Bool
Primary Bool

CData Python Connector for Acumatica

CashSale_Details

CashSale_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Account String
ExtendedPrice Double
TaxCategory String
Amount Double
Subaccount String
TransactionDescription String
Branch String
InventoryID String
UnitPrice Double
Qty Double
Custom_Transactions_DRTermStartDate String
Custom_Transactions_CuryUnitPriceDR String
Custom_Transactions_DRTermEndDate String
Custom_Transactions_TranType String
Custom_Transactions_Commissionable Bool
Custom_Transactions_ManualDisc Bool
Custom_Transactions_CostCodeID String
Custom_Transactions_RefNbr String
Custom_Transactions_SalesPersonID String
Custom_Transactions_ManualPrice Bool
Custom_Transactions_TaskID String
Custom_Transactions_DiscPct String
Custom_Transactions_UOM String
Custom_Transactions_NoteText String
Custom_Transactions_NoteID String
Custom_Transactions_CuryDiscAmt String
Custom_Transactions_DefScheduleID String
Custom_Transactions_DiscPctDR String
Custom_Transactions_DeferredCode String
Custom_Transactions_LineNbr Int

CData Python Connector for Acumatica

Check_Details

Check_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
ReferenceNbr String
CashDiscountBalance Double
Balance Double
AmountPaid Double
DocType String
Custom_Adjustments_CuryAdjgWhTaxAmt String
Custom_Adjustments_AdjNbr Int
Custom_Adjustments_AdjgDocType String
Custom_Adjustments_APInvoice_SuppliedByVendorID String
Custom_Adjustments_AdjdCuryID String
Custom_Adjustments_AdjdFinPeriodID String
Custom_Adjustments_AdjdCuryRate String
Custom_Adjustments_CuryWhTaxBal String
Custom_Adjustments_APInvoice_InvoiceNbr String
Custom_Adjustments_APInvoice_DocDesc String
Custom_Adjustments_AdjdDocDate String
Custom_Adjustments_AdjgRefNbr String
Custom_Adjustments_CuryAdjgPPDAmt String
Custom_Adjustments_APInvoice_DueDate String
Custom_Adjustments_NoteID String
Custom_Adjustments_NoteText String
Custom_Adjustments_APInvoice_DiscDate String
Custom_Adjustments_AdjdBranchID String

CData Python Connector for Acumatica

Check_History

Check_History is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
CashDiscountTaken Double
ReferenceNbr String
VendorRef String
CashDiscountBalance Double
Balance Double
AmountPaid Double
DocType String
Custom_Adjustments_History_AdjdRefNbr String
Custom_Adjustments_History_NoteID String
Custom_Adjustments_History_APInvoice_DueDate String
Custom_Adjustments_History_AdjdDocDate String
Custom_Adjustments_History_AdjNbr Int
Custom_Adjustments_History_NoteText String
Custom_Adjustments_History_PendingPPD Bool
Custom_Adjustments_History_PPDDebitAdjRefNbr String
Custom_Adjustments_History_AdjdFinPeriodID String
Custom_Adjustments_History_TaxInvoiceNbr String
Custom_Adjustments_History_AdjgRefNbr String
Custom_Adjustments_History_DisplayCuryWhTaxAmt String
Custom_Adjustments_History_AdjgDocType String
Custom_Adjustments_History_DisplayDocDesc String
Custom_Adjustments_History_DisplayDocType String
Custom_Adjustments_History_AdjBatchNbr String
Custom_Adjustments_History_DisplayCuryID String
Custom_Adjustments_History_APInvoice_DiscDate String
Custom_Adjustments_History_DisplayCuryPPDAmt String
Custom_Adjustments_History_AdjgFinPeriodID String
Custom_Adjustments_History_AdjdBranchID String
Custom_Adjustments_History_APInvoice_SuppliedByVendorID String

CData Python Connector for Acumatica

Contact_Activities

Contact_Activities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
ClassIcon String
IsCompleteIcon String
PriorityIcon String
Owner String
Released Bool
Summary String
Type String
CreatorID String
CreatedAt Datetime
Status String
WorkgroupID String
Project String
RefNoteID String
ProjectTask String
StartDate Datetime
TimeSpent String
CreatorUsername String
ReminderIcon String
Custom_Activities_NoteID String
Custom_Activities_NoteText String

CData Python Connector for Acumatica

Contact_Address

Contact_Address is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

Contact_Attributes

Contact_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

Contact_Campaigns

Contact_Campaigns is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
CampaignName String
CampaignID String
ContactID Int
Stage String

CData Python Connector for Acumatica

Contact_Cases

Contact_Cases is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
DateReported Datetime
Subject String
Workgroup String
Estimation String
ClosingDate Datetime
CaseID String
Status String
Reason String
Severity String
ClassID String
Owner String
InitialResponse String
Custom_Cases_NoteText String
Custom_Cases_NoteID String

CData Python Connector for Acumatica

Contact_Duplicates

Contact_Duplicates is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
BusinessAccount String
BusinessAccountName String
Type String
BusinessAccountType String
LastModifiedDate Datetime
DisplayName String
Duplicate String
Email String
Custom_Duplicates_ContactID Int
Custom_Duplicates_Selected Bool
Custom_Duplicates_DuplicateContactID Int
Custom_Duplicates_ValidationType String
Custom_Duplicates_Contact2_ContactID Int

CData Python Connector for Acumatica

Contact_MarketingLists

Contact_MarketingLists is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
DynamicList Bool
ListName String
Subscribed Bool
Format String
ContactID Int
MarketingListID Int
Custom_Subscriptions_CRMarketingList_IsStatic Bool

CData Python Connector for Acumatica

Contact_Notifications

Contact_Notifications is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
Description String
MailingID String
Source String
Active Bool
Module String
Bcc Bool
Report String
NotificationID Int
ClassID String
Format String

CData Python Connector for Acumatica

Contact_Opportunities

Contact_Opportunities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
Subject String
DisplayName String
Workgroup String
Estimation Datetime
Stage String
Currency String
Total Double
Status String
Owner String
Probability Int
Custom_Opportunities_NoteID String
Custom_Opportunities_OpportunityID String
Custom_Opportunities_NoteText String

CData Python Connector for Acumatica

Contact_Relations

Contact_Relations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
Type String
DocumentTargetNoteIDDescription String
ContactDisplayName String
Account String
Email String
Document String
Name String
RelationID Int
Role String
ContactID Int
AddToCc Bool
Primary Bool

CData Python Connector for Acumatica

Contact_UserInfo

Contact_UserInfo is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentContactID [KEY] String
Status String
GeneratePassword Bool
Password String
Login String
UserType String
Custom_User_ConfirmPassword String
Custom_User_NewPassword String
Custom_User_NoteID String

CData Python Connector for Acumatica

CustomerClass_Attributes

CustomerClass_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentClassID [KEY] String
DefaultValue String
Active Bool
SortOrder Int
Description String
AttributeID String
Required Bool
Custom_Mapping_EntityClassID String
Custom_Mapping_CSAttribute_IsInternal Bool
Custom_Mapping_ControlType String
Custom_Mapping_EntityType String

CData Python Connector for Acumatica

CustomerLocation_LocationContact

CustomerLocation_LocationContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLocationID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

CustomerPaymentMethod_Details

CustomerPaymentMethod_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
ParentPaymentMethod [KEY] String
Name String
Value String
Custom_Details_PaymentMethodID String
Custom_Details_PMInstanceID Int

CData Python Connector for Acumatica

Customer_Attributes

Customer_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

Customer_BillingContact

Customer_BillingContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Customer_Contacts

Customer_Contacts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
ContactID Int

CData Python Connector for Acumatica

Customer_CreditVerificationRules

Customer_CreditVerificationRules is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
OpenOrdersBalance Double
CreditDaysPastDue Int
CreditVerification String
RemainingCreditLimit Double
CreditLimit Double
FirstDueDate Datetime
UnreleasedBalance Double

CData Python Connector for Acumatica

Customer_MainContact

Customer_MainContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Customer_PaymentInstructions

Customer_PaymentInstructions is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
Value String
PaymentInstructionsID String
PaymentMethod String
Description String
LocationID Int

CData Python Connector for Acumatica

Customer_Salespersons

Customer_Salespersons is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
Name String
Default Bool
Commission Double
LocationName String
SalespersonID String
LocationID String

CData Python Connector for Acumatica

Customer_ShippingContact

Customer_ShippingContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCustomerID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Discount_CustomerPriceClasses

Discount_CustomerPriceClasses is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentDiscountCode [KEY] String
ParentSequence [KEY] String
PriceClassID String
Custom_CustomerPriceClasses_ARPriceClass_Description String
Custom_CustomerPriceClasses_DiscountID String
Custom_CustomerPriceClasses_DiscountSequenceID String

CData Python Connector for Acumatica

Discount_Customers

Discount_Customers is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentDiscountCode [KEY] String
ParentSequence [KEY] String
CustomerID String
CustomerName String
Custom_Customers_DiscountID String
Custom_Customers_DiscountSequenceID String

CData Python Connector for Acumatica

Discount_DiscountBreakpoints

Discount_DiscountBreakpoints is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentDiscountCode [KEY] String
ParentSequence [KEY] String
PendingFreeItemQty Double
BreakAmount Double
DiscountDetailID Int
LastFreeItemQty Double
PendingDate Datetime
LastBreakQty Double
DiscountPercent Double
FreeItemQty Double
LastDiscountPercent Double
PendingDiscountPercent Double
PendingBreakQty Double
PendingDiscountAmount Double
DiscountAmount Double
EffectiveDate Datetime
LastBreakAmount Double
LastDiscountAmount Double
PendingBreakAmount Double
BreakQty Double
Custom_Details_IsActive Bool

CData Python Connector for Acumatica

Discount_ItemPriceClasses

Discount_ItemPriceClasses is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentDiscountCode [KEY] String
ParentSequence [KEY] String
PriceClassID String
Custom_InventoryPriceClasses_INPriceClass_Description String
Custom_InventoryPriceClasses_DiscountSequenceID String
Custom_InventoryPriceClasses_DiscountID String

CData Python Connector for Acumatica

Discount_Items

Discount_Items is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentDiscountCode [KEY] String
ParentSequence [KEY] String
Description String
InventoryID String
Custom_Items_DiscountID String
Custom_Items_DiscountSequenceID String

CData Python Connector for Acumatica

Discount_Warehouses

Discount_Warehouses is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentDiscountCode [KEY] String
ParentSequence [KEY] String
Warehouse String
Custom_Sites_INSite_Descr String
Custom_Sites_DiscountID String
Custom_Sites_DiscountSequenceID String

CData Python Connector for Acumatica

Email_TimeActivity

Email_TimeActivity is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
EarningType String
Approver String
TrackTime Bool
Overtime String
BillableOvertime String
Project String
ProjectTask String
Released Bool
Status String
TimeSpent String
BillableTime String
Billable Bool
Custom_TimeActivity_NoteID String
Custom_TimeActivity_CostCodeID String

CData Python Connector for Acumatica

Employee_Contact

Employee_Contact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentEmployeeID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Employee_EmployeeCost

Employee_EmployeeCost is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentEmployeeID [KEY] String
EffectiveDate Datetime
HourlyRate Double
AnnualSalaryAmount Double
RegularHoursPerWeek Double
TypeOfEmployment String

CData Python Connector for Acumatica

Employee_EmploymentHistory

Employee_EmploymentHistory is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentEmployeeID [KEY] String
StartDate Datetime
EndDate Datetime
PositionID String
RehireEligible Bool
Active Bool
LineNbr Int
TerminationReason String
StartReason String
Terminated Bool

CData Python Connector for Acumatica

Event_Attendees

Event_Attendees is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentSummary [KEY] String
Key String
Name String
Type Int
EventNoteID String
Comment String
InvitationStatus String
NameAttendeeName String
Email String

CData Python Connector for Acumatica

Event_RelatedActivities

Event_RelatedActivities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentSummary [KEY] String
Type String
Summary String
StartDate Datetime
Overtime String
BillableOvertime String
Status String
TimeSpent String
BillableTime String
Billable Bool
Custom_ChildActivities_CostCodeID String
Custom_ChildActivities_NoteText String
Custom_ChildActivities_NoteID String

CData Python Connector for Acumatica

Event_Reminder

Event_Reminder is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentSummary [KEY] String
RemindAtDate Datetime
IsActive Bool
RemindAtTime Datetime

CData Python Connector for Acumatica

Event_TimeActivity

Event_TimeActivity is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentSummary [KEY] String
TimeSpent String
BillableOvertime String
Overtime String
BillableTime String

CData Python Connector for Acumatica

FinancialPeriod_Details

FinancialPeriod_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
Description String
StartDate Datetime
FinancialPeriodID String
EndDate Datetime
AdjustmentPeriod Bool
LengthInDays Int
Active Bool
ClosedInPR Bool
ClosedInFA Bool
ClosedInAR Bool
ClosedInCA Bool
ClosedInAP Bool
ClosedInGL Bool
PeriodNbr String
ClosedInIN Bool
Custom_Periods_StartDateUI String
Custom_Periods_NoteID String
Custom_Periods_NoteText String

CData Python Connector for Acumatica

InterBranchAccountMapping_TransactionsInDestinationBranch

InterBranchAccountMapping_TransactionsInDestinationBranch is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOriginatingBranch [KEY] String
OffsetAccount String
OffsetSubaccount String
AccountFrom String
LineNbr Int
BranchID Int
DestinationBranch String
AccountTo String

CData Python Connector for Acumatica

InterBranchAccountMapping_TransactionsInSourceBranch

InterBranchAccountMapping_TransactionsInSourceBranch is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOriginatingBranch [KEY] String
OffsetAccount String
OffsetSubaccount String
AccountFrom String
LineNbr Int
BranchID Int
DestinationBranch String
AccountTo String

CData Python Connector for Acumatica

InventoryAllocationInquiry_Results

InventoryAllocationInquiry_Results is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
Location String
Expired Bool
Module String
LotSerialNbr String
Qty Double
AllocationDate Datetime
DocType String
AllocationType String
Custom_ResultRecords_RefNbr String
Custom_ResultRecords_SubItemID String
Custom_ResultRecords_AcctName String
Custom_ResultRecords_GridLineNbr Int
Custom_ResultRecords_LocNotAvailable Bool
Custom_ResultRecords_BAccountID String
Custom_ResultRecords_SiteID String

CData Python Connector for Acumatica

InventoryReceipt_Details

InventoryReceipt_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentReferenceNbr [KEY] String
UnitCost Double
Description String
WarehouseID String
LineNumber Int
Subitem String
Location String
ExpirationDate Datetime
UOM String
InventoryID String
ExtCost Double
LotSerialNbr String
Qty Double
Custom_transactions_TaskID String
Custom_transactions_Availability String
Custom_transactions_POReceiptNbr String
Custom_transactions_ProjectID String
Custom_transactions_ReasonCode String
Custom_transactions_DocType String
Custom_transactions_NoteID String
Custom_transactions_RefNbr String
Custom_transactions_NoteText String
Custom_transactions_BranchID String

CData Python Connector for Acumatica

InventorySummaryInquiry_Results

InventorySummaryInquiry_Results is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
EstimatedUnitCost Double
WarehouseID String
LocationID String
QtyNotAvailable Double
EstimatedTotalCost Double
QtyAvailableForShipment Double
Subitem String
QtyOnHand Double
QtyAvailable Double
ExpirationDate Datetime
BaseUOM String
LotSerialNbr String
Custom_ISERecords_QtyPODropShipReceipts String
Custom_ISERecords_QtyInTransit String
Custom_ISERecords_QtyInTransitToSO String
Custom_ISERecords_QtySOPrepared String
Custom_ISERecords_QtyActual String
Custom_ISERecords_QtySOBackOrdered String
Custom_ISERecords_QtyPOFixedOrders String
Custom_ISERecords_QtyPOPrepared String
Custom_ISERecords_QtySOBooked String
Custom_ISERecords_QtyPODropShipPrepared String
Custom_ISERecords_QtySODropShip String
Custom_ISERecords_QtyPODropShipOrders String
Custom_ISERecords_QtyPOFixedPrepared String
Custom_ISERecords_QtyINIssues String
Custom_ISERecords_QtyInAssemblyDemand String
Custom_ISERecords_QtySOShipping String
Custom_ISERecords_QtySOShipped String
Custom_ISERecords_QtyINReceipts String
Custom_ISERecords_QtyExpired String
Custom_ISERecords_QtyInAssemblySupply String
Custom_ISERecords_QtySOFixed String
Custom_ISERecords_QtyPOFixedReceipts String
Custom_ISERecords_QtyPOOrders String
Custom_ISERecords_QtyPOReceipts String
Custom_ISERecords_InventoryID String

CData Python Connector for Acumatica

Invoice_ApplicationsCreditMemo

Invoice_ApplicationsCreditMemo is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Description String
CustomerOrder String
Customer String
DocType String
AmountPaid Double
Status String
ReferenceNbr String
Balance Double
PostPeriod String
Custom_Adjustments_1_AdjgDocType String
Custom_Adjustments_1_ARInvoice_DocDate String
Custom_Adjustments_1_ARInvoice_CuryID String
Custom_Adjustments_1_NoteID String
Custom_Adjustments_1_AdjNbr Int
Custom_Adjustments_1_AdjgBranchID String
Custom_Adjustments_1_AdjgRefNbr String
Custom_Adjustments_1_NoteText String

CData Python Connector for Acumatica

Invoice_ApplicationsDefault

Invoice_ApplicationsDefault is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Status String
CashDiscountTaken Double
ReferenceNbr String
Balance Double
AmountPaid Double
PaymentDate Datetime
DocType String
Custom_Adjustments_CustomerID String
Custom_Adjustments_PPDCrMemoRefNbr String
Custom_Adjustments_AdjNbr Int
Custom_Adjustments_ARPayment_DocDesc String
Custom_Adjustments_AdjdRefNbr String
Custom_Adjustments_AdjgBranchID String
Custom_Adjustments_ARPayment_CuryID String
Custom_Adjustments_ARPayment_ExtRefNbr String
Custom_Adjustments_AdjdDocType String
Custom_Adjustments_NoteID String
Custom_Adjustments_PendingPPD Bool
Custom_Adjustments_ARPayment_FinPeriodID String
Custom_Adjustments_NoteText String

CData Python Connector for Acumatica

Invoice_Details

Invoice_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Subitem String
Account String
LineNbr Int
ExtendedPrice Double
DiscountAmount Double
Amount Double
ProjectTask String
Subaccount String
TransactionDescription String
UOM String
Branch String
InventoryID String
UnitPrice Double
LastModifiedDateTime Datetime
Qty Double
Custom_Transactions_CaseID String
Custom_Transactions_DRTermStartDate String
Custom_Transactions_CuryUnitPriceDR String
Custom_Transactions_DRTermEndDate String
Custom_Transactions_TranType String
Custom_Transactions_Commissionable Bool
Custom_Transactions_ManualDisc Bool
Custom_Transactions_AccountID_Account_description String
Custom_Transactions_CostCodeID String
Custom_Transactions_RefNbr String
Custom_Transactions_Date String
Custom_Transactions_SalesPersonID String
Custom_Transactions_BaseQty String
Custom_Transactions_ManualPrice Bool
Custom_Transactions_DiscountSequenceID String
Custom_Transactions_DiscountID String
Custom_Transactions_TaxCategoryID String
Custom_Transactions_DiscPct String
Custom_Transactions_NoteText String
Custom_Transactions_NoteID String
Custom_Transactions_DefScheduleID String
Custom_Transactions_DiscPctDR String
Custom_Transactions_DeferredCode String

CData Python Connector for Acumatica

Invoice_TaxDetails

Invoice_TaxDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
TaxableAmount Double
TaxAmount Double
TaxRate Double
TaxID String
Custom_Taxes_RecordID Int
Custom_Taxes_Tax_ReverseTax Bool
Custom_Taxes_Tax_PendingTax Bool
Custom_Taxes_CuryDiscountedPrice String
Custom_Taxes_CuryDiscountedTaxableAmt String
Custom_Taxes_Tax_StatisticalTax Bool
Custom_Taxes_TranType String
Custom_Taxes_Module String
Custom_Taxes_RefNbr String
Custom_Taxes_Tax_ExemptTax Bool
Custom_Taxes_Tax_TaxType String

CData Python Connector for Acumatica

ItemClass_Attributes

ItemClass_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentClassID [KEY] String
SortOrder Int
AttributeID String
Required Bool
Custom_Mapping_IsActive Bool
Custom_Mapping_EntityClassID String
Custom_Mapping_Description String
Custom_Mapping_ControlType String
Custom_Mapping_EntityType String

CData Python Connector for Acumatica

JournalTransaction_Details

JournalTransaction_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentModule [KEY] String
ParentBatchNbr [KEY] String
Description String
VendorOrCustomer String
Account String
LineNbr Int
Project String
ProjectTask String
Subaccount String
TransactionDescription String
UOM String
NonBillable Bool
ReferenceNbr String
BranchID String
DebitAmount Double
CreditAmount Double
Qty Double
Custom_GLTranModuleBatNbr_NoteText String
Custom_GLTranModuleBatNbr_ReclassBatchNbr String
Custom_GLTranModuleBatNbr_OrigBatchNbr String
Custom_GLTranModuleBatNbr_InventoryID String
Custom_GLTranModuleBatNbr_CostCodeID String
Custom_GLTranModuleBatNbr_IncludedInReclassHistory Bool
Custom_GLTranModuleBatNbr_OrigModule String
Custom_GLTranModuleBatNbr_Module String
Custom_GLTranModuleBatNbr_TaxID String
Custom_GLTranModuleBatNbr_BatchNbr String
Custom_GLTranModuleBatNbr_TranDate String
Custom_GLTranModuleBatNbr_TaxCategoryID String
Custom_GLTranModuleBatNbr_OrigLineNbr Int
Custom_GLTranModuleBatNbr_LedgerID String
Custom_GLTranModuleBatNbr_NoteID String

CData Python Connector for Acumatica

JournalVoucher_Details

JournalVoucher_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBatchNbr [KEY] String
DocTotal Double
DebitSubaccount String
PaymentMethod String
CreditAccount String
VendorOrCustomer String
Released Bool
Split Bool
TaxAmount Double
CardAccountNbr Int
CashDiscount Double
ProjectTask String
Terms String
LineNbr Int
TaxZone String
ReferenceNbr String
EntryTypeID String
TaxCategory String
IncludedTaxAmount Double
TransactionDate Datetime
GroupTransactionID Int
TotalAmount Double
BatchNbr String
DueDate Datetime
ExternalRef String
CardAccountNbrCardAccountNbr String
TransactionDescription String
CashDiscountDate Datetime
TransactionCode String
Location String
DocCreated Bool
Project String
SubtotalAmount Double
BatchModule String
DebitAccount String
CreditSubaccount String
Custom_GLTranModuleBatNbr_NoteText String
Custom_GLTranModuleBatNbr_CostCodeID String
Custom_GLTranModuleBatNbr_NoteID String

CData Python Connector for Acumatica

JournalVoucher_GLTransactions

JournalVoucher_GLTransactions is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentBatchNbr [KEY] String
CurrencyID String
Account String
LineNbr Int
Module String
TransactionDate Datetime
Subaccount String
BatchNbr String
TransactionDescription String
ReferenceNbr String
DebitAmount Double
CreditAmount Double
Qty Double
Custom_GLTransactions_NoteID String
Custom_GLTransactions_NoteText String

CData Python Connector for Acumatica

KitAssembly_Allocations

KitAssembly_Allocations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
SplitLineNbr Int
LotSerialNbr String
UOM String
LineNbr Int
Qty Double
ExpirationDate Datetime
Subitem String
LocationID String
Custom_MasterSplits_LineNbr Int
Custom_MasterSplits_DocType String
Custom_MasterSplits_RefNbr String

CData Python Connector for Acumatica

KitAssembly_NonStockComponents

KitAssembly_NonStockComponents is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ComponentQty Double
UOM String
ReasonCode String
LineNbr Int
Qty Double
NonStockInventoryID String
UnitCost Double
Custom_Overhead_RefNbr String
Custom_Overhead_INKitSpecNonStkDet_MinCompQty String
Custom_Overhead_INKitSpecNonStkDet_MaxCompQty String
Custom_Overhead_INKitSpecNonStkDet_UOM String
Custom_Overhead_INKitSpecNonStkDet_AllowQtyVariation Bool
Custom_Overhead_DocType String

CData Python Connector for Acumatica

KitAssembly_StockComponents

KitAssembly_StockComponents is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
UnitCost Double
LocationID String
Subitem String
ComponentQty Double
LineNbr Int
ReasonCode String
StockInventoryID String
UOM String
Qty Double
Custom_Components_NoteText String
Custom_Components_INKitSpecStkDet_AllowSubstitution Bool
Custom_Components_RefNbr String
Custom_Components_NoteID String
Custom_Components_INKitSpecStkDet_MaxCompQty String
Custom_Components_INKitSpecStkDet_MinCompQty String
Custom_Components_INKitSpecStkDet_DisassemblyCoeff String
Custom_Components_DocType String
Custom_Components_INKitSpecStkDet_UOM String
Custom_Components_INKitSpecStkDet_AllowQtyVariation Bool
Custom_Components_Availability String

CData Python Connector for Acumatica

KitSpecification_NonStockComponents

KitSpecification_NonStockComponents is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentKitInventoryID [KEY] String
ParentRevisionID [KEY] String
AllowComponentQtyVariance Bool
ComponentQty Double
MaxComponentQty Double
UOM String
NonStockInventoryID String
MinComponentQty Double
Custom_NonStockDet_KitInventoryID String
Custom_NonStockDet_RevisionID String
Custom_NonStockDet_LineNbr Int

CData Python Connector for Acumatica

KitSpecification_StockComponents

KitSpecification_StockComponents is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentKitInventoryID [KEY] String
ParentRevisionID [KEY] String
AllowComponentQtyVariance Bool
ComponentQty Double
MaxComponentQty Double
UOM String
StockInventoryID String
MinComponentQty Double
Subitem String
Custom_StockDet_DisassemblyCoeff String
Custom_StockDet_KitInventoryID String
Custom_StockDet_RevisionID String
Custom_StockDet_LineNbr Int
Custom_StockDet_AllowSubstitution Bool

CData Python Connector for Acumatica

Lead_Activities

Lead_Activities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
ClassIcon String
IsCompleteIcon String
PriorityIcon String
Owner String
Released Bool
Summary String
Type String
CreatorID String
CreatedAt Datetime
Status String
WorkgroupID String
Project String
RefNoteID String
ProjectTask String
StartDate Datetime
TimeSpent String
CreatorUsername String
ReminderIcon String
Custom_Activities_NoteID String
Custom_Activities_NoteText String

CData Python Connector for Acumatica

Lead_Address

Lead_Address is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String
Custom_AddressCurrent_NoteID String

CData Python Connector for Acumatica

Lead_Attributes

Lead_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

Lead_Campaigns

Lead_Campaigns is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
CampaignName String
CampaignID String
ContactID Int
Stage String

CData Python Connector for Acumatica

Lead_Duplicates

Lead_Duplicates is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
Type String
LastModifiedDate Datetime
AccountName String
DisplayName String
EntityType String
Email String
BusinessAccountType String
BusinessAccount String
Duplicate String
DuplicateContactID Int
ContactID Int
Custom_Duplicates_Selected Bool

CData Python Connector for Acumatica

Lead_MarketingLists

Lead_MarketingLists is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
DynamicList Bool
ListName String
Subscribed Bool
Format String
ContactID Int
MarketingListID Int

CData Python Connector for Acumatica

Lead_Relations

Lead_Relations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentLeadID [KEY] String
Type String
DocumentTargetNoteIDDescription String
ContactDisplayName String
Account String
Email String
Document String
Name String
RelationID Int
Role String
ContactID Int
AddToCc Bool
Primary Bool

CData Python Connector for Acumatica

LotSerialClass_Segments

LotSerialClass_Segments is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentClassID [KEY] String
Type String
Value String
SegmentNbr Int
Custom_lotsersegments_LotSerClassID String

CData Python Connector for Acumatica

NonStockItem_Attributes

NonStockItem_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
Value String
Attribute String
Required Bool
Custom_Answers_RefNoteID String

CData Python Connector for Acumatica

NonStockItem_CrossReferences

NonStockItem_CrossReferences is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
AlternateID String
VendorOrCustomer String
Description String
AlternateType String
Subitem String
Custom_itemxrefrecords_InventoryID String
Custom_itemxrefrecords_SubItemID String
Custom_itemxrefrecords_UOM String

CData Python Connector for Acumatica

NonStockItem_SalesCategories

NonStockItem_SalesCategories is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
CategoryID Int
Custom_Category_InventoryID String

CData Python Connector for Acumatica

NonStockItem_VendorDetails

NonStockItem_VendorDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
VendorID String
VendorName String
Custom_VendorItems_CuryID String
Custom_VendorItems_VendorInventoryID String
Custom_VendorItems_VendorLocationID String
Custom_VendorItems_PurchaseUnit String
Custom_VendorItems_IsDefault Bool
Custom_VendorItems_LastPrice String
Custom_VendorItems_Active Bool
Custom_VendorItems_RecordID Int

CData Python Connector for Acumatica

Opportunity_Activities

Opportunity_Activities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
ClassIcon String
IsCompleteIcon String
PriorityIcon String
Owner String
Released Bool
Summary String
Type String
CreatorID String
CreatedAt Datetime
Status String
WorkgroupID String
Project String
RefNoteID String
ProjectTask String
StartDate Datetime
TimeSpent String
CreatorUsername String
ReminderIcon String
Custom_Activities_NoteID String
Custom_Activities_NoteText String

CData Python Connector for Acumatica

Opportunity_Address

Opportunity_Address is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

Opportunity_Attributes

Opportunity_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

Opportunity_ContactInformation

Opportunity_ContactInformation is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
WebSite String
Phone3 String
Position String
Phone2 String
Fax String
Phone1 String
Phone3Type String
FaxType String
CompanyName String
Phone2Type String
Email String
Phone1Type String
Title String
LastName String
FirstName String

CData Python Connector for Acumatica

Opportunity_Discounts

Opportunity_Discounts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
Type String
SequenceID String
DiscountableQty Double
LineNbr Int
ManualDiscount Bool
DiscountAmount Double
DiscountCode String
DiscountPercent Double
SkipDiscount Bool
FreeItem String
FreeItemQty Double
DiscountableAmount Double
Custom_DiscountDetails_OpportunityID String

CData Python Connector for Acumatica

Opportunity_Products

Opportunity_Products is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
ExternalPrice Double
TaxCategory String
Discount Double
Warehouse String
UnitPrice Double
UOM String
FreeItem Bool
ManualDiscount Bool
Subitem String
DiscountCode String
DiscountAmount Double
OpportunityProductID Int
DiscountSequence String
Qty Double
ProjectTask String
Amount Double
TransactionDescription String
InventoryID String
Custom_Products_CROpportunityID String
Custom_Products_NoteID String
Custom_Products_NoteText String

CData Python Connector for Acumatica

Opportunity_Relations

Opportunity_Relations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
Type String
DocumentTargetNoteIDDescription String
ContactDisplayName String
Account String
Email String
Document String
Name String
RelationID Int
Role String
ContactID Int
AddToCc Bool
Primary Bool

CData Python Connector for Acumatica

Opportunity_TaxDetails

Opportunity_TaxDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOpportunityID [KEY] String
TaxType String
ReverseVAT Bool
TaxID String
PendingVAT Bool
LineNbr Int
TaxAmount Double
TaxableAmount Double
StatisticalVAT Bool
IncludeInVATExemptTotal Bool
TaxRate Double
Custom_Taxes_OpportunityID String

CData Python Connector for Acumatica

PaymentMethod_AllowedCashAccounts

PaymentMethod_AllowedCashAccounts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentPaymentMethodID [KEY] String
Description String
APDefault Bool
UseInAR Bool
ARLastRefNbr String
PaymentMethod String
UseInAP Bool
BatchLastRefNbr String
CashAccount String
ARDefaultForRefund Bool
ARSuggestNextNbr Bool
APLastRefNbr String
APSuggestNextNbr Bool
Branch String
ARDefault Bool
Custom_CashAccounts_NoteText String

CData Python Connector for Acumatica

PaymentMethod_ProcessingCenters

PaymentMethod_ProcessingCenters is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentPaymentMethodID [KEY] String
Default Bool
PaymentMethod String
Active Bool
ProcCenterID String

CData Python Connector for Acumatica

Payment_ApplicationHistory

Payment_ApplicationHistory is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Date Datetime
AdjustingRefNbr String
VATCreditMemo String
CashDiscountBalance Double
Customer String
DisplayDocType String
DueDate Datetime
AdjustingDocType String
DisplayRefNbr String
CurrencyID String
Balance Double
AdjustedDocType String
BatchNbr String
CashDiscountTaken Double
ApplicationPeriod String
AmountPaid Double
CustomerOrder String
AdjustmentNbr Int
PostPeriod String
AdjustsVAT Bool
AdjustedRefNbr String
CashDiscountDate Datetime
BalanceWriteOff Double
Description String
Custom_Adjustments_History_NoteID String
Custom_Adjustments_History_NoteText String
Custom_Adjustments_History_TaxInvoiceNbr String
Custom_Adjustments_History_AdjdBranchID String

CData Python Connector for Acumatica

Payment_CreditCardProcessingInfo

Payment_CreditCardProcessingInfo is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
TransactionStatus String
TransactionAmount Double
Custom_ccProcTran_ErrorSource String
Custom_ccProcTran_PCResponseReasonText String
Custom_ccProcTran_RefTranNbr Int
Custom_ccProcTran_CVVVerificationStatus String
Custom_ccProcTran_TranNbr Int
Custom_ccProcTran_AuthNumber String
Custom_ccProcTran_ErrorText String
Custom_ccProcTran_PCTranNumber String
Custom_ccProcTran_StartTime String
Custom_ccProcTran_ProcStatus String
Custom_ccProcTran_TranType String
Custom_ccProcTran_ProcessingCenterID String

CData Python Connector for Acumatica

Payment_DocumentsToApply

Payment_DocumentsToApply is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
BalanceWriteOff Double
ReferenceNbr String
AmountPaid Double
Description String
DocType String
CustomerOrder String
WriteOffReasonCode String
Custom_Adjustments_AdjNbr Int
Custom_Adjustments_AdjgDocType String
Custom_Adjustments_AdjdCuryID String
Custom_Adjustments_AdjdFinPeriodID String
Custom_Adjustments_AdjdCuryRate String
Custom_Adjustments_AdjdCustomerID String
Custom_Adjustments_ARRegisterAlias_DocDesc String
Custom_Adjustments_ARRegisterAlias_DueDate String
Custom_Adjustments_CuryDiscBal String
Custom_Adjustments_AdjdDocDate String
Custom_Adjustments_AdjgRefNbr String
Custom_Adjustments_CuryAdjgPPDAmt String
Custom_Adjustments_NoteID String
Custom_Adjustments_ARInvoice_DiscDate String
Custom_Adjustments_CuryDocBal String
Custom_Adjustments_NoteText String
Custom_Adjustments_AdjdBranchID String

CData Python Connector for Acumatica

Payment_OrdersToApply

Payment_OrdersToApply is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
OrderType String
AppliedToOrder Double
OrderNbr String
Custom_SOAdjustments_SOOrder_DueDate String
Custom_SOAdjustments_SOOrder_InvoiceDate String
Custom_SOAdjustments_AdjgRefNbr String
Custom_SOAdjustments_AdjgDocType String
Custom_SOAdjustments_SOOrder_InvoiceNbr String
Custom_SOAdjustments_CuryDocBal String
Custom_SOAdjustments_SOOrder_CuryID String
Custom_SOAdjustments_CuryAdjgBilledAmt String
Custom_SOAdjustments_SOOrder_DiscDate String
Custom_SOAdjustments_NoteID String
Custom_SOAdjustments_SOOrder_CuryOrderTotal String
Custom_SOAdjustments_SOOrder_OrderDesc String
Custom_SOAdjustments_NoteText String
Custom_SOAdjustments_AdjdOrderDate String
Custom_SOAdjustments_SOOrder_Status String

CData Python Connector for Acumatica

PhysicalInventoryReview_Details

PhysicalInventoryReview_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentReferenceNbr [KEY] String
UnitCost Double
Description String
LocationID String
PhysicalQty Double
BookQty Double
Subitem String
VarianceQty Double
LineNbr Int
ReasonCode String
TagNbr Int
ExtendedVarianceCost Double
ExpirationDate Datetime
Status String
InventoryID String
LotSerialNbr String
Custom_PIDetail_NoteText String
Custom_PIDetail_BaseUnit String
Custom_PIDetail_NoteID String
Custom_PIDetail_PIID String

CData Python Connector for Acumatica

ProjectTransaction_Details

ProjectTransaction_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentModule [KEY] String
ParentReferenceNbr [KEY] String
DebitAccount String
Location String
AccountGroup String
DebitSubaccount String
Date Datetime
EarningType String
UOM String
AccountGroupDescription String
Allocated Bool
Released Bool
EndDate Datetime
CreditAccount String
VendorOrCustomer String
Employee String
UnitRate Double
Branch String
BatchNbr String
Project String
Qty Double
FinPeriod String
ProjectTask String
Amount Double
Multiplier Double
StartDate Datetime
Billable Bool
TransactionID Long
Description String
UseBillableQtyInAmountFormula Bool
CreditSubaccount String
BillableQty Double
InventoryID String

CData Python Connector for Acumatica

PurchaseOrder_Details

PurchaseOrder_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentOrderNbr [KEY] String
TaxCategory String
ReceivedAmount Double
Cancelled Bool
ExtendedCost Double
UOM String
MaxReceiptPercent Double
OrigPOType String
Requested Datetime
AlternateID String
OrderQty Double
Subaccount String
UnitCost Double
Subitem String
LineDescription String
BranchID String
LineNbr Int
QtyOnReceipts Double
OrderType String
Account String
OrderNbr String
MinReceiptPercent Double
CompleteOn Double
WarehouseID String
LineType String
Description String
ReceiptAction String
Completed Bool
OrigPONbr String
Promised Datetime
InventoryID String
Custom_Transactions_CompletePOLine String
Custom_Transactions_CuryDiscCost String
Custom_Transactions_ManualDisc Bool
Custom_Transactions_CostCodeID String
Custom_Transactions_SortOrder Int
Custom_Transactions_CuryExtCost String
Custom_Transactions_ManualPrice Bool
Custom_Transactions_DiscountSequenceID String
Custom_Transactions_DiscountID String
Custom_Transactions_TaskID String
Custom_Transactions_ProjectID String
Custom_Transactions_DiscPct String
Custom_Transactions_NoteText String
Custom_Transactions_NoteID String
Custom_Transactions_CuryDiscAmt String
Custom_Transactions_BaseOrderQty String
Custom_Transactions_LotSerialNbr String

CData Python Connector for Acumatica

PurchaseOrder_ShippingInstructions

PurchaseOrder_ShippingInstructions is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentOrderNbr [KEY] String
ShipToContactOverride Bool
Warehouse String
ShippingLocation String
ShipTo String
ShippingDestinationType String
ShipToAddressOverride Bool
ShipToAddressValidated Bool
Custom_CurrentDocument_NoteID String
Custom_CurrentDocument_DontEmail Bool
Custom_CurrentDocument_RQReqNbr String
Custom_CurrentDocument_PayToVendorID String
Custom_CurrentDocument_ShipVia String
Custom_CurrentDocument_CuryOpenOrderTotal String
Custom_CurrentDocument_DontPrint Bool
Custom_CurrentDocument_FOBPoint String
Custom_CurrentDocument_TermsID String
Custom_CurrentDocument_OpenOrderQty String
Custom_CurrentDocument_TaxZoneID String
Custom_CurrentDocument_Emailed Bool
Custom_CurrentDocument_SOOrderType String
Custom_CurrentDocument_OwnerWorkgroupID String
Custom_CurrentDocument_PrepaymentRefNbr String
Custom_CurrentDocument_BranchID String
Custom_CurrentDocument_SOOrderNbr String
Custom_CurrentDocument_Printed Bool

CData Python Connector for Acumatica

PurchaseReceipt_Details

PurchaseReceipt_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReceiptNbr [KEY] String
Location String
ExtendedCost Double
Warehouse String
UOM String
Subaccount String
UnitCost Double
POLineNbr Int
Subitem String
LineNbr Int
OrderedQty Double
POOrderType String
Branch String
OpenQty Double
Account String
Project String
AccrualAccount String
ProjectTask String
LotSerialNbr String
ExpirationDate Datetime
LineType String
POOrderNbr String
AccrualSubaccount String
ReceiptQty Double
InventoryID String
TransactionDescription String
Custom_transactions_CuryDiscCost String
Custom_transactions_ReasonCode String
Custom_transactions_BaseReceiptQty String
Custom_transactions_ManualDisc Bool
Custom_transactions_SOOrderType String
Custom_transactions_DiscPct String
Custom_transactions_SOOrderLineNbr Int
Custom_transactions_ReceiptNbr String
Custom_transactions_NoteText String
Custom_transactions_ManualPrice Bool
Custom_transactions_Availability String
Custom_transactions_DiscountSequenceID String
Custom_transactions_SOOrderNbr String
Custom_transactions_NoteID String
Custom_transactions_ExpenseAcctID_Account_description String
Custom_transactions_CuryDiscAmt String
Custom_transactions_SOShipmentNbr String
Custom_transactions_AllowComplete Bool
Custom_transactions_DiscountID String
Custom_transactions_TaxCategoryID String
Custom_transactions_SortOrder Int
Custom_transactions_AllowOpen Bool
Custom_transactions_CuryExtCost String

CData Python Connector for Acumatica

ReportingSettings_ReportingGroups

ReportingSettings_ReportingGroups is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentTaxAgency [KEY] String
Name String
GroupType String
LastModifiedDateTime Datetime
Custom_Bucket_BucketID Int
Custom_Bucket_VendorID Int

CData Python Connector for Acumatica

SalesInvoice_BillingSettings

SalesInvoice_BillingSettings is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
BillToAddressOverride Bool
BillToContactOverride Bool

CData Python Connector for Acumatica

SalesInvoice_Details

SalesInvoice_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Description String
LineNbr Int
ShipmentNbr String
Amount Double
UOM String
OrderNbr String
BranchID String
InventoryID String
UnitPrice Double
OrderType String
Qty Double
Custom_Transactions_AccountID String
Custom_Transactions_DRTermStartDate String
Custom_Transactions_ManualDisc Bool
Custom_Transactions_CostCodeID String
Custom_Transactions_SubID String
Custom_Transactions_LineType String
Custom_Transactions_SubItemID String
Custom_Transactions_ManualPrice Bool
Custom_Transactions_DiscountSequenceID String
Custom_Transactions_TaskID String
Custom_Transactions_TaxCategoryID String
Custom_Transactions_DiscPct String
Custom_Transactions_NoteText String
Custom_Transactions_NoteID String
Custom_Transactions_DefScheduleID String
Custom_Transactions_SOOrderLineNbr Int
Custom_Transactions_DRTermEndDate String
Custom_Transactions_TranType String
Custom_Transactions_Commissionable Bool
Custom_Transactions_SortOrder Int
Custom_Transactions_RefNbr String
Custom_Transactions_SalesPersonID String
Custom_Transactions_BaseQty String
Custom_Transactions_DiscountID String
Custom_Transactions_TranDesc String
Custom_Transactions_CuryDiscAmt String
Custom_Transactions_DeferredCode String

CData Python Connector for Acumatica

SalesInvoice_FreightDetails

SalesInvoice_FreightDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentType [KEY] String
ParentReferenceNbr [KEY] String
Description String
LineTotal Double
ShipmentNbr String
PremiumFreightAmount Double
TotalFreightAmount Double
ShipmentType String
FreightCost Double
Weight Double
Volume Double
FreightAmount Double
Custom_FreightDetails_ShipTermsID String
Custom_FreightDetails_DocType String
Custom_FreightDetails_RefNbr String
Custom_FreightDetails_AccountID String
Custom_FreightDetails_TaskID String
Custom_FreightDetails_TaxCategoryID String
Custom_FreightDetails_ShipVia String
Custom_FreightDetails_SubID String
Custom_FreightDetails_NoteID String
Custom_FreightDetails_ShipZoneID String
Custom_FreightDetails_NoteText String

CData Python Connector for Acumatica

SalesOrder_BillToAddress

SalesOrder_BillToAddress is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

SalesOrder_BillToContact

SalesOrder_BillToContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
Attention String
Phone1 String
BusinessName String
Email String

CData Python Connector for Acumatica

SalesOrder_Commissions

SalesOrder_Commissions is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
DefaultSalesperson String

CData Python Connector for Acumatica

SalesOrder_Details

SalesOrder_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
OpenQty Double
AlternateID String
DiscountedUnitPrice Double
Operation String
ShippingRule String
Account String
ReasonCode String
WarehouseID String
UndershipThreshold Double
MarkForPO Bool
LineType String
SalespersonID String
UnitCost Double
QtyOnShipments Double
Subitem String
UnitPrice Double
POSource String
ProjectTask String
ManualDiscount Bool
Commissionable Bool
AverageCost Double
LineNbr Int
DiscountCode String
Branch String
UOM String
ShipOn Datetime
ExtendedPrice Double
TaxCategory String
FreeItem Bool
OrderQty Double
OvershipThreshold Double
LastModifiedDate String
Completed Bool
DiscountPercent Double
DiscountAmount Double
Location String
AutoCreateIssue Bool
RequestedOn Datetime
LineDescription String
InventoryID String
UnbilledAmount Double
Custom_Transactions_Availability String
Custom_Transactions_DRTermStartDate String
Custom_Transactions_DRTermEndDate String
Custom_Transactions_CuryUnitPriceDR String
Custom_Transactions_SalesSubID String
Custom_Transactions_IsStockItem Bool
Custom_Transactions_OrderType String
Custom_Transactions_CostCodeID String
Custom_Transactions_SortOrder Int
Custom_Transactions_OrderNbr String
Custom_Transactions_InvoiceNbr String
Custom_Transactions_ManualPrice Bool
Custom_Transactions_DiscountSequenceID String
Custom_Transactions_NoteText String
Custom_Transactions_NoteID String
Custom_Transactions_ExpireDate String
Custom_Transactions_DiscPctDR String
Custom_Transactions_BaseOrderQty String
Custom_Transactions_LotSerialNbr String

CData Python Connector for Acumatica

SalesOrder_DiscountDetails

SalesOrder_DiscountDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
Type String
SequenceID String
DiscountableQty Double
ManualDiscount Bool
DiscountAmount Double
DiscountCode String
DiscountPercent Double
SkipDiscount Bool
FreeItem String
FreeItemQty Double
DiscountableAmount Double
Custom_DiscountDetails_OrderNbr String
Custom_DiscountDetails_OrderType String
Custom_DiscountDetails_LineNbr Int

CData Python Connector for Acumatica

SalesOrder_FinancialSettings

SalesOrder_FinancialSettings is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
OriginalOrderType String
BillSeparately Bool
OverrideTaxZone Bool
Terms String
EntityUsageType String
InvoiceDate Datetime
DueDate Datetime
InvoiceNbr String
CustomerTaxZone String
Branch String
CashDiscountDate Datetime
OriginalOrderNbr String
Owner String
PostPeriod String

CData Python Connector for Acumatica

SalesOrder_Payments

SalesOrder_Payments is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
CurrencyID String
DocType String
PaymentMethod String
CashAccount String
PaymentRef String
Status String
OrderNbr String
ReferenceNbr String
PaymentAmount Double
TransferredtoInvoice Double
AppliedToOrder Double
Balance Double
OrderType String
Custom_Adjustments_NoteID String
Custom_Adjustments_NoteText String

CData Python Connector for Acumatica

SalesOrder_Shipments

SalesOrder_Shipments is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
ShipmentDate Datetime
ShipmentNbr String
ShippedQty Double
InventoryRefNbr String
Status String
InventoryDocType String
InvoiceNbr String
ShipmentType String
ShippedWeight Double
ShippedVolume Double
InvoiceType String
Custom_ShipmentList_NoteText String
Custom_ShipmentList_Operation String
Custom_ShipmentList_OrderType String
Custom_ShipmentList_NoteID String
Custom_ShipmentList_OrderNbr String

CData Python Connector for Acumatica

SalesOrder_ShippingSettings

SalesOrder_ShippingSettings is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
UseCustomersAccount Bool
ScheduledShipmentDate Datetime
ResidentialDelivery Bool
FOBPoint String
ShipSeparately Bool
Canceled Bool
GroundCollect Bool
ShippingTerms String
ShippingZone String
SaturdayDelivery Bool
ShippingRule String
ShipVia String
PreferredWarehouseID String
Priority Int
CancelByDate Datetime
Insurance Bool

CData Python Connector for Acumatica

SalesOrder_ShipToAddress

SalesOrder_ShipToAddress is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
State String
AddressLine2 String
PostalCode String
AddressLine1 String
City String
Country String

CData Python Connector for Acumatica

SalesOrder_ShipToContact

SalesOrder_ShipToContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
Attention String
Phone1 String
BusinessName String
Email String

CData Python Connector for Acumatica

SalesOrder_TaxDetails

SalesOrder_TaxDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
TaxType String
ReverseVAT Bool
TaxID String
PendingVAT Bool
LineNbr Int
RecordID Int
TaxAmount Double
OrderNbr String
TaxableAmount Double
StatisticalVAT Bool
IncludeInVATExemptTotal Bool
TaxRate Double
OrderType String

CData Python Connector for Acumatica

SalesOrder_Totals

SalesOrder_Totals is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentOrderType [KEY] String
ParentOrderNbr [KEY] String
UnbilledAmount Double
FreightTaxCategory String
FreightCostIsuptodate Bool
PremiumFreight Double
MiscTotalAmount Double
UnbilledQty Double
PackageWeight Double
LineTotalAmount Double
DiscountTotal Double
FreightCost Double
OrderVolume Double
OrderWeight Double
TaxTotal Double
UnpaidBalance Double
Freight Double

CData Python Connector for Acumatica

SalesPricesInquiry_SalesPriceDetails

SalesPricesInquiry_SalesPriceDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
Description String
PriceCode String
CurrencyID String
Promotion Bool
Tax String
Price Double
RecordID Int
EffectiveDate Datetime
PriceType String
ExpirationDate Datetime
UOM String
BreakQty Double
InventoryID String
CreatedDateTime Datetime
LastModifiedDateTime Datetime
Custom_Records_SiteID String
Custom_Records_AlternateID String

CData Python Connector for Acumatica

SalesPriceWorksheet_SalesPrices

SalesPriceWorksheet_SalesPrices is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentReferenceNbr [KEY] String
Description String
PriceCode String
CurrencyID String
LineID Int
Tax String
PriceType String
UOM String
PendingPrice Double
ReferenceNbr String
BreakQty Double
InventoryID String
SourcePrice Double
Custom_Details_AlternateID String
Custom_Details_SiteID String

CData Python Connector for Acumatica

Shipment_Details

Shipment_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentShipmentNbr [KEY] String
UOM String
FreeItem Bool
ShippedQty Double
Subitem String
OrderLineNbr Int
LineNbr Int
OrderedQty Double
LocationID String
OpenQty Double
OrderType String
OrderNbr String
LotSerialNbr String
ExpirationDate Datetime
WarehouseID String
ReasonCode String
OriginalQty Double
Description String
InventoryID String
Custom_Transactions_CompleteQtyMin String
Custom_Transactions_ShipmentNbr String
Custom_Transactions_BaseShippedQty String
Custom_Transactions_Availability String
Custom_Transactions_NoteText String
Custom_Transactions_UnassignedQty String
Custom_Transactions_NoteID String
Custom_Transactions_ShipmentType String
Custom_Transactions_ShipComplete String

CData Python Connector for Acumatica

Shipment_Orders

Shipment_Orders is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentShipmentNbr [KEY] String
ShipmentNbr String
ShippedQty Double
InventoryRefNbr String
InventoryDocType String
InvoiceNbr String
ShippedWeight Double
OrderNbr String
ShippedVolume Double
ShipmentType String
InvoiceType String
OrderType String
Custom_OrderList_NoteText String
Custom_OrderList_NoteID String

CData Python Connector for Acumatica

Shipment_Packages

Shipment_Packages is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentShipmentNbr [KEY] String
Description String
CustomRefNbr1 String
Type String
BoxID String
CODAmount Double
Confirmed Bool
DeclaredValue Double
UOM String
TrackingNbr String
Weight Double
CustomRefNbr2 String
Custom_Packages_NoteID String
Custom_Packages_ShipmentNbr String
Custom_Packages_LineNbr Int
Custom_Packages_NoteText String

CData Python Connector for Acumatica

Shipment_ShippingSettings

Shipment_ShippingSettings is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentShipmentNbr [KEY] String
ShipToAddressOverride Bool
ShipToContactOverride Bool
Validated Bool

CData Python Connector for Acumatica

ShippingTerm_Details

ShippingTerm_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentTermID [KEY] String
InvoiceAmount Double
LineHandling Double
ShippingandHandling Double
BreakAmount Double
LineNbr Int
FreightCost Double
Custom_ShipTermsDetail_ShipTermsID String

CData Python Connector for Acumatica

ShipVia_FreightRates

ShipVia_FreightRates is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCarrierID [KEY] String
Rate Double
Volume Double
LineNbr Int
Weight Double
ZoneID String
Custom_FreightRates_CarrierID String

CData Python Connector for Acumatica

ShipVia_Packages

ShipVia_Packages is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentCarrierID [KEY] String
Description String
BoxID String
Height Int
WeightUOM String
BoxWeight Double
Length Int
VolumeUOM String
CarriersPackage String
MaxVolume Double
MaxWeight Double
ActiveByDefault Bool
Width Int
Custom_CarrierPackages_CarrierID String

CData Python Connector for Acumatica

StockItem_Attributes

StockItem_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
Value String
AttributeID String
Required Bool
Custom_Answers_RefNoteID String

CData Python Connector for Acumatica

StockItem_Boxes

StockItem_Boxes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
BoxID String
MaxVolume Double
MaxWeight Double
UOM String
Qty Double
Description String
MaxQty Double
Custom_Boxes_NoteID String
Custom_Boxes_InventoryID Int

CData Python Connector for Acumatica

StockItem_Categories

StockItem_Categories is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
CategoryID Int
Custom_Category_InventoryID String

CData Python Connector for Acumatica

StockItem_CrossReferences

StockItem_CrossReferences is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
AlternateID String
VendorOrCustomer String
Description String
AlternateType String
Subitem String
Custom_itemxrefrecords_InventoryID String
Custom_itemxrefrecords_UOM String

CData Python Connector for Acumatica

StockItem_ReplenishmentParameters

StockItem_ReplenishmentParameters is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
DemandForecastModel String
TransferERQ Double
MaxShelfLifeInDays Int
ReplenishmentWarehouse String
ReplenishmentClass String
Method String
Source String
ReorderPoint Double
TerminationDate Datetime
Seasonality String
ServiceLevel Double
PeriodsToAnalyze Int
SafetyStock Double
ForecastPeriodType String
LaunchDate Datetime
MaxQty Double
Custom_replenishment_InventoryID String

CData Python Connector for Acumatica

StockItem_SubItems

StockItem_SubItems is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
SegmentID Int
Value String
Active Bool
Description String

CData Python Connector for Acumatica

StockItem_UOMConversions

StockItem_UOMConversions is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
FromUOM String
ConversionFactor Double
MultiplyOrDivide String
ToUOM String
Custom_itemunits_ItemClassID Int
Custom_itemunits_UnitType String
Custom_itemunits_PriceAdjustmentMultiplier String
Custom_itemunits_SampleToUnit String
Custom_itemunits_InventoryID Int

CData Python Connector for Acumatica

StockItem_VendorDetails

StockItem_VendorDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
Location String
LastVendorPrice Double
Warehouse String
LeadTimeDays Int
MaxOrderQty Double
MinOrderQty Double
EOQ Double
Default Bool
Subitem String
Override Bool
MinOrderFrequencyInDays Int
AddLeadTimeDays Int
CurrencyID String
VendorID String
LotSize Double
RecordID Int
Active Bool
PurchaseUnit String
VendorName String
Custom_VendorItems_VendorInventoryID String

CData Python Connector for Acumatica

StockItem_WarehouseDetails

StockItem_WarehouseDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
DefaultReceiptLocationID String
OverrideReplenishmentSettings Bool
DailyDemandForecastErrorSTDEV Double
DefaultIssueLocationID String
ProductManager String
ReplenishmentSource String
ProductWorkgroup String
Override Bool
InventorySubaccount String
DailyDemandForecast Double
PreferredVendor String
Status String
InventoryAccount String
QtyOnHand Double
ReplenishmentWarehouse String
LastForecastDate Datetime
OverridePreferredVendor Bool
OverrideStdCost Bool
Seasonality String
WarehouseID String
IsDefault Bool
ServiceLevel Double
PriceOverride Bool
Custom_itemsiterecords_SiteID_INSite_SiteCD String
Custom_itemsiterecords_NoteText String
Custom_itemsiterecords_NoteID String
Custom_itemsiterecords_InventoryID String

CData Python Connector for Acumatica

Task_RelatedActivities

Task_RelatedActivities is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
BillableTime String
IsCompleteIcon String
BillableOvertime String
PriorityIcon String
Owner String
Released Bool
Workgroup String
Summary String
Type String
CreatedAt Datetime
Status String
Category String
RefNoteID String
CreatedBy String
StartDate Datetime
Billable Bool
Overtime String
TimeSpent String
Custom_ChildActivities_CostCodeID String
Custom_ChildActivities_NoteText String
Custom_ChildActivities_NoteID String

CData Python Connector for Acumatica

Task_RelatedTasks

Task_RelatedTasks is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
Status String
Subject String
CompletedAt Datetime
DueDate Datetime
RecordID Int
StartDate Datetime
Custom_ReferencedTasks_NoteID String

CData Python Connector for Acumatica

Task_Reminder

Task_Reminder is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
RemindAtDate Datetime
IsActive Bool
RemindAtTime Datetime

CData Python Connector for Acumatica

Task_TimeActivity

Task_TimeActivity is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ProjectTask String
TimeSpent String
BillableOvertime String
Overtime String
BillableTime String
Project String
Custom_TimeActivity_CostCodeID String

CData Python Connector for Acumatica

TaxCategory_Details

TaxCategory_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentTaxCategoryID [KEY] String
CashDiscount String
CalculateOn String
TaxCategory String
TaxType String
Description String
TaxID String

CData Python Connector for Acumatica

TaxZone_ApplicableTaxes

TaxZone_ApplicableTaxes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentTaxZoneID [KEY] String
TaxID String
Custom_Details_Tax_TaxType String
Custom_Details_Tax_TaxApplyTermsDisc String
Custom_Details_Tax_TaxCalcRule String
Custom_Details_TaxZoneID String
Custom_Details_Tax_Descr String

CData Python Connector for Acumatica

Tax_TaxSchedule

Tax_TaxSchedule is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentTaxID [KEY] String
MinTaxableAmount Double
MaxTaxableAmount Double
DeductibleTaxRate Double
RevisionID Int
TaxRate Double
ReportingGroup String
TaxID String
StartDate Datetime
Custom_TaxRevisions_TaxType String

CData Python Connector for Acumatica

Tax_Zones

Tax_Zones is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentTaxID [KEY] String
TaxZoneID String
DefaultTaxCategory String
Description String
TaxID String

CData Python Connector for Acumatica

TransferOrder_Details

TransferOrder_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentReferenceNbr [KEY] String
Description String
Subitem String
LineNbr Int
ToLocationID String
ReasonCode String
ExpirationDate Datetime
UOM String
InventoryID String
FromLocationID String
LotSerialNbr String
Qty Double
Custom_transactions_Availability String
Custom_transactions_ReceiptedQty String
Custom_transactions_DocType String
Custom_transactions_INTransitQty String
Custom_transactions_NoteID String
Custom_transactions_RefNbr String
Custom_transactions_NoteText String

CData Python Connector for Acumatica

TrialBalance_Details

TrialBalance_Details is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentImportNbr [KEY] String
Description String
Type String
Selected Bool
MappedSubaccount String
ImportedAccount String
Line Int
MappedAccount String
ImportedSubaccount String
YTDBalance Double
Status String
MapNbr String
CurrencyYTDBalance Double

CData Python Connector for Acumatica

VendorClass_Attributes

VendorClass_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentClassID [KEY] String
DefaultValue String
Active Bool
SortOrder Int
Description String
AttributeID String
Required Bool
Custom_Mapping_EntityClassID String
Custom_Mapping_CSAttribute_IsInternal Bool
Custom_Mapping_ControlType String
Custom_Mapping_EntityType String

CData Python Connector for Acumatica

VendorPricesInquiry_VendorPriceDetails

VendorPricesInquiry_VendorPriceDetails is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentInventoryID [KEY] String
Description String
CurrencyID String
Vendor String
VendorName String
Price Double
RecordID Int
EffectiveDate Datetime
ExpirationDate Datetime
Promotional Bool
UOM String
BreakQty Double
InventoryID String
CreatedDateTime Datetime
LastModifiedDateTime Datetime
Custom_Records_SiteID String
Custom_Records_AlternateID String

CData Python Connector for Acumatica

VendorPriceWorksheet_VendorSalesPrices

VendorPriceWorksheet_VendorSalesPrices is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentReferenceNbr [KEY] String
Description String
CurrencyID String
Vendor String
LineID Int
Tax String
UOM String
PendingPrice Double
ReferenceNbr String
BreakQty Double
InventoryID String
SourcePrice Double
Custom_Details_AlternateID String
Custom_Details_SiteID String

CData Python Connector for Acumatica

Vendor_Attributes

Vendor_Attributes is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentVendorID [KEY] String
Value String
Attribute String
RefNoteID String
Required Bool

CData Python Connector for Acumatica

Vendor_Contacts

Vendor_Contacts is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentVendorID [KEY] String
ContactID Int

CData Python Connector for Acumatica

Vendor_MainContact

Vendor_MainContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentVendorID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Vendor_PaymentInstructions

Vendor_PaymentInstructions is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentVendorID [KEY] String
Value String
PaymentInstructionsID String
PaymentMethod String
Description String
LocationID Int

CData Python Connector for Acumatica

Vendor_RemittanceContact

Vendor_RemittanceContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentVendorID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Vendor_ShippingContact

Vendor_ShippingContact is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentVendorID [KEY] String
LanguageOrLocale String
DuplicateFound Bool
JobTitle String
MiddleName String
FirstName String
DoNotFax Bool
Status String
ParentAccount String
OwnerEmployeeName String
Phone3 String
Phone2 String
Phone1 String
Phone2Type String
MaritalStatus String
Email String
FaxType String
DoNotCall Bool
Active Bool
Owner String
DoNotMail Bool
Title String
Gender String
Phone1Type String
ContactID Int
WebSite String
ContactClass String
CompanyName String
AddressIsSameAsInAccount Bool
NoMassMail Bool
LastOutgoingActivity Datetime
DisplayName String
ContactMethod String
Workgroup String
AddressValidated Bool
LastIncomingActivity Datetime
SourceCampaign String
SpouseOrPartnerName String
Reason String
Synchronize Bool
ConvertedBy String
Image String
Type String
NoMarketing Bool
DateOfBirth Datetime
Duplicate String
DoNotEmail Bool
Phone3Type String
Source String
BusinessAccount String
LastName String
Fax String
QualificationDate Datetime
WorkgroupDescription String

CData Python Connector for Acumatica

Warehouse_Locations

Warehouse_Locations is an auto-generated table.

Columns

Name Type Description
ParentGUID [KEY] String
ParentWarehouseID [KEY] String
AssemblyAllowed Bool
Active Bool
TransfersAllowed Bool
Description String
ReceiptsAllowed Bool
SalesAllowed Bool
LocationID String
PickPriority Int
Custom_location_PrimaryItemClassID String
Custom_location_TaskID String
Custom_location_ProjectID String
Custom_location_NoteID String
Custom_location_IsCosted Bool
Custom_location_PrimaryItemValid String
Custom_location_SiteID Int
Custom_location_PrimaryItemID String
Custom_location_InclQtyAvail Bool
Custom_location_NoteText String

CData Python Connector for Acumatica

Stored Procedures

Stored procedures are function-like interfaces that extend the functionality of the connector beyond simple SELECT/INSERT/UPDATE/DELETE operations with Acumatica.

Stored procedures accept a list of parameters, perform their intended function, and then return any relevant response data from Acumatica, along with an indication of whether the procedure succeeded or failed.

CData Python Connector for Acumatica Stored Procedures

Name Description
GetOAuthAccessToken Gets the OAuth access token from Basecamp.
GetOAuthAuthorizationURL Gets the Acumatica authorization URL. Access the URL returned in the output in a Web browser.
RefreshOAuthAccessToken Refreshes the OAuth access token used for authentication.

CData Python Connector for Acumatica

CreateAttachment

Attach a file to a record.

Note: This procedure makes use of indexed parameters. Indexed parameters facilitate providing multiple instances a single parameter as inputs for the procedure.

Suppose there is an input parameter named Param#. To input multiple instances of an indexed parameter like this, execute:

EXEC ProcedureName Param#1 = "value1", Param#2 = "value2", Param#3 = "value3"

In the Input table below, indexed parameters are denoted with a '#' character at the end of their names.

Input

Name Type Description
TopLevelEntity String The name of the entity for which you are going to attach a file.
KeyValues String A comma-separated list of values for the key fields of the record to which you are going to attach a file. You should provide the number and order of key fields as they are defined on the corresponding Acumatica ERP form.
LocalFile String The local file path including the file name of the file to be attached.
FileName String The name of the file that you are going to attach with the extension.

Result Set Columns

Name Type Description
Status String Specific message text describing the status or any errors or warning for the stored procedure.

CData Python Connector for Acumatica

CreateSchema

Creates a schema file for the specified table or view.

CreateSchema

Creates a local schema file (.rsd) from an existing table or view in the data model.

The schema file is created in the directory set in the Location connection property when this procedure is executed. You can edit the file to include or exclude columns, rename columns, or adjust column datatypes.

The connector checks the Location to determine if the names of any .rsd files match a table or view in the data model. If there is a duplicate, the schema file will take precedence over the default instance of this table in the data model. If a schema file is present in Location that does not match an existing table or view, a new table or view entry is added to the data model of the connector.

Input

Name Type Description
TableName String The name of the table or view.
FileName String The full file path and name of the schema to generate. Begin by choosing a parent directory (this parent directory should be set in the Location property). Complete the filepath by adding a directory corresponding to the schema used (REST), followed by a .rsd file with a name corresponding to the desired table name. For example : 'C:\\Users\\User\\Desktop\\Acumatica\\REST\\table.rsd'

Result Set Columns

Name Type Description
Result String Returns Success or Failure.
FileData String If the FileName input is empty.

CData Python Connector for Acumatica

ExecuteAction

Perform an action on an Acumatica ERP form.

Executing an Action

To execute an Acumatica Action, you will need to specify the action that you are going to execute via the 'ActionName' input parameter, the entity type via the TopLevelEntity input parameter, the EntityRecord and optionally the Action parameters via the Parameters input, if you are executing a custom Action.

To specify the entity record, you may either submit the single record in JSON format, or you may create a temporary table containing group of recrods and then reference the temporary table in the EntityRecord input parameter.

Note: The custom parameters can only be submitted in the JSON format as in the example below.

EXEC ExecuteAction ActionName = 'Close', TopLevelEntity = 'Case', EntityRecord = '{"id": "e3f46a39-1a14-e911-816f-bc920a5e0ac8"}',
    Parameters = '{
        "custom": {
            "FilterPreview": {
                "Reason": {
                    "type" : "CustomStringField", 
                    "value" : "Abandoned"
                }
            }
        }
    }'

Executing an Action submitting the record in the JSON format

To submit a record in the JSON format, you will need set the EntityRecord input parameter to the JSON object containing the record on which the action is going to be executed.

For example, via the below statement you can confirm the shipment for the shipment with number 003523.

EXEC ExecuteAction ActionName = 'ConfirmShipment', TopLevelEntity = 'Shipment',
      EntityRecord = '{
      "Type": {
        "value": "Shipment"
      },
      "ShipmentNbr": {
        "value": "003523"
      }
    }'

You should note, that only one entity record can be specified in the EntityRecord input parameter when using the JSON format.

Executing an Action submitting a Temporary Table of recrods

If using a temporary table, it must be defined and inserted within the same connection. Closing the connection will clear out any temporary tables in memory.

Start by inserting the related entities corresponding to the same entity type into a temporary table.

The following statements add three Shipment records into the Shipment#TEMP temporary table.

INSERT INTO Shipment#TEMP (Type, ShipmentNbr) VALUES ('Shipment', '003523')
INSERT INTO Shipment#TEMP (Type, ShipmentNbr) VALUES ('Shipment', '003524')
INSERT INTO Shipment#TEMP (Type, ShipmentNbr) VALUES ('Shipment', '003525')

Lastly, reference the temporary table via the EntityRecord input parameter, just as in the below example.

EXEC ExecuteAction ActionName = 'ConfirmShipment', TopLevelEntity = 'Shipment', EntityRecord = 'Shipment#TEMP'

If more than one entity record is provided, the connector will automatically split the records and execute the Action for each of them.

Input

Name Type Description
TopLevelEntity String The name of the entity type for which you are going to perform an action.
ActionName String The name of the action that you are going to execute.
EntityRecord String The entity record in the JSON format or the temporary table of entity records to which the action should be applied.
Parameters String The parameters of the action in the JSON format.

Result Set Columns

Name Type Description
Status String Specific message text describing the status or any errors or warning for the execute action.
AffectedRecords String The number of affected records.

CData Python Connector for Acumatica

GetAttachment

Obtain a file attached to a record

Input

Name Type Description
FileId String The internal identifier of the file in the system.
DownloadTo String The absolute path where the file will be saved.

Result Set Columns

Name Type Description
Status String Specific message text describing the status or any errors or warning for the stored procedure.
FileData String The file data encoded as BASE64. Returns a value only if DownloadTo and FileStream inputs are empty.

CData Python Connector for Acumatica

GetOAuthAccessToken

Gets the OAuth access token from Basecamp.

Input

Name Type Description
AuthMode String WEB or APP. The Basecamp authentication mode. Default is APP.

The default value is APP.

CallbackUrl String The URL the user will be redirected to after authorizing your application.
Verifier String The verifier token returned by Basecamp. Required for only the Web AuthMode.
State String This field indicates any state that may be useful to your application upon receipt of the response. Your application receives the same value it sent, as this parameter makes a round-trip to Acumatica authorization server and back. Uses include redirecting the user to the correct resource in your site, using nonces, and mitigating cross-site request forgery.

Result Set Columns

Name Type Description
OAuthAccessToken String The OAuth token.
OAuthRefreshToken String The OAuth refresh token.
ExpiresIn String The remaining lifetime for the access token in seconds.

CData Python Connector for Acumatica

GetOAuthAuthorizationURL

Gets the Acumatica authorization URL. Access the URL returned in the output in a Web browser.

Input

Name Type Description
CallbackUrl String The URL that Acumatica will return to after the user has authorized your app.
State String This field indicates any state that may be useful to your application upon receipt of the response. Your application receives the same value it sent, as this parameter makes a round-trip to Acumatica authorization server and back. Uses include redirecting the user to the correct resource in your site, using nonces, and mitigating cross-site request forgery.

Result Set Columns

Name Type Description
URL String The URL to be entered into a Web browser to obtain the verifier token and authorize the data provider with.

CData Python Connector for Acumatica

RefreshOAuthAccessToken

Refreshes the OAuth access token used for authentication.

Input

Name Type Description
OAuthRefreshToken String The refresh token returned with the previous access token.

Result Set Columns

Name Type Description
OAuthAccessToken String The authentication token returned from Acumatica. This can be used in subsequent calls to other operations for this particular service.
OAuthRefreshToken String A token that may be used to obtain a new access token.
ExpiresIn String The remaining lifetime on the access token.

CData Python Connector for Acumatica

OData Data Model

The connector models the Acumatica OData API as relational views, supporting access through the ODataV3 and ODataV4 schemas. These schemas offer read-only access to views, and any changes to the remote data appear immediately in your queries. When you connect, the connector retrieves table definitions dynamically, calling Acumatica's web services to access the list of views and their metadata.

You can specify your schema preference in the Schema connection property. If you set the schema to OData, the driver uses the ODataV3 API to retrieve all available Generic Inquiries (GIs). If you set it to ODataV4, the driver uses the ODataV4 API to access Data Access Class (DAC) objects.

Views

The OData V3 schema exposes Generic Inquiries, which users create as custom queries or reports in Acumatica. These inquiries allow you to customize how data is aggregated and displayed. The CData Python Connector for Acumatica reads view and column metadata dynamically, ensuring compatibility with your customizations and new features in Acumatica.

Note: Generic Inquiries do not appear in OData by default, so you may need to enable them by selecting the "Expose via OData" checkbox in the Acumatica Generic Inquiries screen.

The OData V4 schema, on the other hand, focuses on exposing DAC objects, which represent core entities in Acumatica, like Orders, Customers, and other essential data structures. DAC objects may vary depending on your Acumatica instance, version, and applied customizations, making ODataV4 a suitable option if you want a deeper view of Acumatica's core data.

Stored Procedures

Stored Procedures act as function-like interfaces within Acumatica. Use them to perform tasks that extend beyond standard querying of views. They provide flexibility for executing operations not directly tied to querying views, helping you meet specialized requirements.

CData Python Connector for Acumatica

Stored Procedures

Stored procedures are function-like interfaces that extend the functionality of the connector beyond simple SELECT/INSERT/UPDATE/DELETE operations with Acumatica.

Stored procedures accept a list of parameters, perform their intended function, and then return any relevant response data from Acumatica, along with an indication of whether the procedure succeeded or failed.

CData Python Connector for Acumatica Stored Procedures

Name Description
GetOAuthAccessToken Gets the OAuth access token from Basecamp.
GetOAuthAuthorizationURL Gets the Acumatica authorization URL. Access the URL returned in the output in a Web browser.
RefreshOAuthAccessToken Refreshes the OAuth access token used for authentication.

CData Python Connector for Acumatica

CreateSchema

Creates a schema file for the specified table or view.

CreateSchema

Creates a local schema file (.rsd) from an existing table or view in the data model.

The schema file is created in the directory set in the Location connection property when this procedure is executed. You can edit the file to include or exclude columns, rename columns, or adjust column datatypes.

The connector checks the Location to determine if the names of any .rsd files match a table or view in the data model. If there is a duplicate, the schema file will take precedence over the default instance of this table in the data model. If a schema file is present in Location that does not match an existing table or view, a new table or view entry is added to the data model of the connector.

Input

Name Type Description
TableName String The name of the table or view.
FileName String The full file path and name of the schema to generate. Begin by choosing a parent directory (this parent directory should be set in the Location property). Complete the filepath by adding a directory corresponding to the schema used (REST), followed by a .rsd file with a name corresponding to the desired table name. For example : 'C:\\Users\\User\\Desktop\\Acumatica\\REST\\table.rsd'

Result Set Columns

Name Type Description
Result String Returns Success or Failure.
FileData String If the FileName input is empty.

CData Python Connector for Acumatica

GetOAuthAccessToken

Gets the OAuth access token from Basecamp.

Input

Name Type Description
AuthMode String WEB or APP. The Basecamp authentication mode. Default is APP.

The default value is APP.

CallbackUrl String The URL the user will be redirected to after authorizing your application.
Verifier String The verifier token returned by Basecamp. Required for only the Web AuthMode.
State String This field indicates any state that may be useful to your application upon receipt of the response. Your application receives the same value it sent, as this parameter makes a round-trip to Acumatica authorization server and back. Uses include redirecting the user to the correct resource in your site, using nonces, and mitigating cross-site request forgery.

Result Set Columns

Name Type Description
OAuthAccessToken String The OAuth token.
OAuthRefreshToken String The OAuth refresh token.
ExpiresIn String The remaining lifetime for the access token in seconds.

CData Python Connector for Acumatica

GetOAuthAuthorizationURL

Gets the Acumatica authorization URL. Access the URL returned in the output in a Web browser.

Input

Name Type Description
CallbackUrl String The URL that Acumatica will return to after the user has authorized your app.
State String This field indicates any state that may be useful to your application upon receipt of the response. Your application receives the same value it sent, as this parameter makes a round-trip to Acumatica authorization server and back. Uses include redirecting the user to the correct resource in your site, using nonces, and mitigating cross-site request forgery.

Result Set Columns

Name Type Description
URL String The URL to be entered into a Web browser to obtain the verifier token and authorize the data provider with.

CData Python Connector for Acumatica

RefreshOAuthAccessToken

Refreshes the OAuth access token used for authentication.

Input

Name Type Description
OAuthRefreshToken String The refresh token returned with the previous access token.

Result Set Columns

Name Type Description
OAuthAccessToken String The authentication token returned from Acumatica. This can be used in subsequent calls to other operations for this particular service.
OAuthRefreshToken String A token that may be used to obtain a new access token.
ExpiresIn String The remaining lifetime on the access token.

CData Python Connector for Acumatica

System Tables

You can query the system tables described in this section to access schema information, information on data source functionality, and batch operation statistics.

Schema Tables

The following tables return database metadata for Acumatica:

Data Source Tables

The following tables return information about how to connect to and query the data source:

  • sys_connection_props: Returns information on the available connection properties.
  • sys_sqlinfo: Describes the SELECT queries that the connector can offload to the data source.

Query Information Tables

The following table returns query statistics for data modification queries

  • sys_identity: Returns information about batch operations or single updates.

CData Python Connector for Acumatica

sys_catalogs

Lists the available databases.

The following query retrieves all databases determined by the connection string:

SELECT * FROM sys_catalogs

Columns

Name Type Description
CatalogName String The database name.

CData Python Connector for Acumatica

sys_schemas

Lists the available schemas.

The following query retrieves all available schemas:

          SELECT * FROM sys_schemas
          

Columns

Name Type Description
CatalogName String The database name.
SchemaName String The schema name.

CData Python Connector for Acumatica

sys_tables

Lists the available tables.

The following query retrieves the available tables and views:

          SELECT * FROM sys_tables
          

Columns

Name Type Description
CatalogName String The database containing the table or view.
SchemaName String The schema containing the table or view.
TableName String The name of the table or view.
TableType String The table type (table or view).
Description String A description of the table or view.
IsUpdateable Boolean Whether the table can be updated.
IsInsertable Boolean Whether the table can be inserted into.
IsDeleteable Boolean Whether rows can be deleted from the table.

CData Python Connector for Acumatica

sys_tablecolumns

Describes the columns of the available tables and views.

The following query returns the columns and data types for the Events table:

SELECT ColumnName, DataTypeName FROM sys_tablecolumns WHERE TableName = 'Events' 

Columns

Name Type Description
CatalogName String The name of the database containing the table or view.
SchemaName String The schema containing the table or view.
TableName String The name of the table or view containing the column.
ColumnName String The column name.
DataTypeName String The data type name.
DataType Int32 An integer indicating the data type. This value is determined at run time based on the environment.
Length Int32 The storage size of the column.
DisplaySize Int32 The designated column's normal maximum width in characters.
NumericPrecision Int32 The maximum number of digits in numeric data. The column length in characters for character and date-time data.
NumericScale Int32 The column scale or number of digits to the right of the decimal point.
IsNullable Boolean Whether the column can contain null.
Description String A brief description of the column.
Ordinal Int32 The sequence number of the column.
IsAutoIncrement String Whether the column value is assigned in fixed increments.
IsGeneratedColumn String Whether the column is generated.
IsHidden Boolean Whether the column is hidden.
IsArray Boolean Whether the column is an array.
IsReadOnly Boolean Whether the column is read-only.
IsKey Boolean Indicates whether a field returned from sys_tablecolumns is the primary key of the table.
ColumnType String The role or classification of the column in the schema. Possible values include SYSTEM, LINKEDCOLUMN, NAVIGATIONKEY, REFERENCECOLUMN, and NAVIGATIONPARENTCOLUMN.
ColumnCapabilities Int32 A bit mask denoting the column's write capabilities. The value is the sum of the following: 1 if the column is required for INSERTs, 2 if the column is allowed for INSERTs, and 4 if the column is allowed for UPDATEs. A value of 0 indicates that the write capabilities of the column are unknown or that the column is read-only.

CData Python Connector for Acumatica

sys_procedures

Lists the available stored procedures.

The following query retrieves the available stored procedures:

          SELECT * FROM sys_procedures
          

Columns

Name Type Description
CatalogName String The database containing the stored procedure.
SchemaName String The schema containing the stored procedure.
ProcedureName String The name of the stored procedure.
Description String A description of the stored procedure.
ProcedureType String The type of the procedure, such as PROCEDURE or FUNCTION.

CData Python Connector for Acumatica

sys_procedureparameters

Describes stored procedure parameters.

The following query returns information about all of the input parameters for the SendMail stored procedure:

SELECT * FROM sys_procedureparameters WHERE ProcedureName = 'SendMail' AND Direction = 1 OR Direction = 2

To include result set columns in addition to the parameters, set the IncludeResultColumns pseudo column to True:

SELECT * FROM sys_procedureparameters WHERE ProcedureName = 'SendMail' AND IncludeResultColumns='True'

Columns

Name Type Description
CatalogName String The name of the database containing the stored procedure.
SchemaName String The name of the schema containing the stored procedure.
ProcedureName String The name of the stored procedure containing the parameter.
ColumnName String The name of the stored procedure parameter.
Direction Int32 An integer corresponding to the type of the parameter: input (1), input/output (2), or output(4). input/output type parameters can be both input and output parameters.
DataType Int32 An integer indicating the data type. This value is determined at run time based on the environment.
DataTypeName String The name of the data type.
NumericPrecision Int32 The maximum precision for numeric data. The column length in characters for character and date-time data.
Length Int32 The number of characters allowed for character data. The number of digits allowed for numeric data.
NumericScale Int32 The number of digits to the right of the decimal point in numeric data.
IsNullable Boolean Whether the parameter can contain null.
IsRequired Boolean Whether the parameter is required for execution of the procedure.
IsArray Boolean Whether the parameter is an array.
Description String The description of the parameter.
Ordinal Int32 The index of the parameter.
Values String The values you can set in this parameter are limited to those shown in this column. Possible values are comma-separated.
SupportsStreams Boolean Whether the parameter represents a file that you can pass as either a file path or a stream.
IsPath Boolean Whether the parameter is a target path for a schema creation operation.
Default String The value used for this parameter when no value is specified.
SpecificName String A label that, when multiple stored procedures have the same name, uniquely identifies each identically-named stored procedure. If there's only one procedure with a given name, its name is simply reflected here.
IsCDataProvided Boolean Whether the procedure is added/implemented by CData, as opposed to being a native Acumatica procedure.

Pseudo-Columns

Name Type Description
IncludeResultColumns Boolean Whether the output should include columns from the result set in addition to parameters. Defaults to False.

CData Python Connector for Acumatica

sys_keycolumns

Describes the primary and foreign keys.

The following query retrieves the primary key for the Events table:

         SELECT * FROM sys_keycolumns WHERE IsKey='True' AND TableName='Events' 
          

Columns

Name Type Description
CatalogName String The name of the database containing the key.
SchemaName String The name of the schema containing the key.
TableName String The name of the table containing the key.
ColumnName String The name of the key column.
IsKey Boolean Whether the column is a primary key in the table referenced in the TableName field.
IsForeignKey Boolean Whether the column is a foreign key referenced in the TableName field.
PrimaryKeyName String The name of the primary key.
ForeignKeyName String The name of the foreign key.
ReferencedCatalogName String The database containing the primary key.
ReferencedSchemaName String The schema containing the primary key.
ReferencedTableName String The table containing the primary key.
ReferencedColumnName String The column name of the primary key.

CData Python Connector for Acumatica

sys_foreignkeys

Describes the foreign keys.

The following query retrieves all foreign keys which refer to other tables:

         SELECT * FROM sys_foreignkeys WHERE ForeignKeyType = 'FOREIGNKEY_TYPE_IMPORT'
          

Columns

Name Type Description
CatalogName String The name of the database containing the key.
SchemaName String The name of the schema containing the key.
TableName String The name of the table containing the key.
ColumnName String The name of the key column.
PrimaryKeyName String The name of the primary key.
ForeignKeyName String The name of the foreign key.
ReferencedCatalogName String The database containing the primary key.
ReferencedSchemaName String The schema containing the primary key.
ReferencedTableName String The table containing the primary key.
ReferencedColumnName String The column name of the primary key.
ForeignKeyType String Designates whether the foreign key is an import (points to other tables) or export (referenced from other tables) key.

CData Python Connector for Acumatica

sys_primarykeys

Describes the primary keys.

The following query retrieves the primary keys from all tables and views:

         SELECT * FROM sys_primarykeys
          

Columns

Name Type Description
CatalogName String The name of the database containing the key.
SchemaName String The name of the schema containing the key.
TableName String The name of the table containing the key.
ColumnName String The name of the key column.
KeySeq String The sequence number of the primary key.
KeyName String The name of the primary key.

CData Python Connector for Acumatica

sys_indexes

Describes the available indexes. By filtering on indexes, you can write more selective queries with faster query response times.

The following query retrieves all indexes that are not primary keys:

          SELECT * FROM sys_indexes WHERE IsPrimary='false'
          

Columns

Name Type Description
CatalogName String The name of the database containing the index.
SchemaName String The name of the schema containing the index.
TableName String The name of the table containing the index.
IndexName String The index name.
ColumnName String The name of the column associated with the index.
IsUnique Boolean True if the index is unique. False otherwise.
IsPrimary Boolean True if the index is a primary key. False otherwise.
Type Int16 An integer value corresponding to the index type: statistic (0), clustered (1), hashed (2), or other (3).
SortOrder String The sort order: A for ascending or D for descending.
OrdinalPosition Int16 The sequence number of the column in the index.

CData Python Connector for Acumatica

sys_connection_props

Returns information on the available connection properties and those set in the connection string.

The following query retrieves all connection properties that have been set in the connection string or set through a default value:

SELECT * FROM sys_connection_props WHERE Value <> ''

Columns

Name Type Description
Name String The name of the connection property.
ShortDescription String A brief description.
Type String The data type of the connection property.
Default String The default value if one is not explicitly set.
Values String A comma-separated list of possible values. A validation error is thrown if another value is specified.
Value String The value you set or a preconfigured default.
Required Boolean Whether the property is required to connect.
Category String The category of the connection property.
IsSessionProperty String Whether the property is a session property, used to save information about the current connection.
Sensitivity String The sensitivity level of the property. This informs whether the property is obfuscated in logging and authentication forms.
PropertyName String A camel-cased truncated form of the connection property name.
Ordinal Int32 The index of the parameter.
CatOrdinal Int32 The index of the parameter category.
Hierarchy String Shows dependent properties associated that need to be set alongside this one.
Visible Boolean Informs whether the property is visible in the connection UI.
ETC String Various miscellaneous information about the property.

CData Python Connector for Acumatica

sys_sqlinfo

Describes the SELECT query processing that the connector can offload to the data source.

See SQL Compliance for SQL syntax details.

Discovering the Data Source's SELECT Capabilities

Below is an example data set of SQL capabilities. Some aspects of SELECT functionality are returned in a comma-separated list if supported; otherwise, the column contains NO.

NameDescriptionPossible Values
AGGREGATE_FUNCTIONSSupported aggregation functions.AVG, COUNT, MAX, MIN, SUM, DISTINCT
COUNTWhether COUNT function is supported.YES, NO
IDENTIFIER_QUOTE_OPEN_CHARThe opening character used to escape an identifier.[
IDENTIFIER_QUOTE_CLOSE_CHARThe closing character used to escape an identifier.]
SUPPORTED_OPERATORSA list of supported SQL operators.=, >, <, >=, <=, <>, !=, LIKE, NOT LIKE, IN, NOT IN, IS NULL, IS NOT NULL, AND, OR
GROUP_BYWhether GROUP BY is supported, and, if so, the degree of support.NO, NO_RELATION, EQUALS_SELECT, SQL_GB_COLLATE
OJ_CAPABILITIESThe supported varieties of outer joins supported.NO, LEFT, RIGHT, FULL, INNER, NOT_ORDERED, ALL_COMPARISON_OPS
OUTER_JOINSWhether outer joins are supported.YES, NO
SUBQUERIESWhether subqueries are supported, and, if so, the degree of support.NO, COMPARISON, EXISTS, IN, CORRELATED_SUBQUERIES, QUANTIFIED
STRING_FUNCTIONSSupported string functions.LENGTH, CHAR, LOCATE, REPLACE, SUBSTRING, RTRIM, LTRIM, RIGHT, LEFT, UCASE, SPACE, SOUNDEX, LCASE, CONCAT, ASCII, REPEAT, OCTET, BIT, POSITION, INSERT, TRIM, UPPER, REGEXP, LOWER, DIFFERENCE, CHARACTER, SUBSTR, STR, REVERSE, PLAN, UUIDTOSTR, TRANSLATE, TRAILING, TO, STUFF, STRTOUUID, STRING, SPLIT, SORTKEY, SIMILAR, REPLICATE, PATINDEX, LPAD, LEN, LEADING, KEY, INSTR, INSERTSTR, HTML, GRAPHICAL, CONVERT, COLLATION, CHARINDEX, BYTE
NUMERIC_FUNCTIONSSupported numeric functions.ABS, ACOS, ASIN, ATAN, ATAN2, CEILING, COS, COT, EXP, FLOOR, LOG, MOD, SIGN, SIN, SQRT, TAN, PI, RAND, DEGREES, LOG10, POWER, RADIANS, ROUND, TRUNCATE
TIMEDATE_FUNCTIONSSupported date/time functions.NOW, CURDATE, DAYOFMONTH, DAYOFWEEK, DAYOFYEAR, MONTH, QUARTER, WEEK, YEAR, CURTIME, HOUR, MINUTE, SECOND, TIMESTAMPADD, TIMESTAMPDIFF, DAYNAME, MONTHNAME, CURRENT_DATE, CURRENT_TIME, CURRENT_TIMESTAMP, EXTRACT
REPLICATION_SKIP_TABLESIndicates tables skipped during replication.
REPLICATION_TIMECHECK_COLUMNSA string array containing a list of columns which will be used to check for (in the given order) to use as a modified column during replication.
IDENTIFIER_PATTERNString value indicating what string is valid for an identifier.
SUPPORT_TRANSACTIONIndicates if the provider supports transactions such as commit and rollback.YES, NO
DIALECTIndicates the SQL dialect to use.
KEY_PROPERTIESIndicates the properties which identify the uniform database.
SUPPORTS_MULTIPLE_SCHEMASIndicates if multiple schemas may exist for the provider.YES, NO
SUPPORTS_MULTIPLE_CATALOGSIndicates if multiple catalogs may exist for the provider.YES, NO
DATASYNCVERSIONThe CData Data Sync version needed to access this driver.Standard, Starter, Professional, Enterprise
DATASYNCCATEGORYThe CData Data Sync category of this driver.Source, Destination, Cloud Destination
SUPPORTSENHANCEDSQLWhether enhanced SQL functionality beyond what is offered by the API is supported.TRUE, FALSE
SUPPORTS_BATCH_OPERATIONSWhether batch operations are supported.YES, NO
SQL_CAPAll supported SQL capabilities for this driver.SELECT, INSERT, DELETE, UPDATE, TRANSACTIONS, ORDERBY, OAUTH, ASSIGNEDID, LIMIT, LIKE, BULKINSERT, COUNT, BULKDELETE, BULKUPDATE, GROUPBY, HAVING, AGGS, OFFSET, REPLICATE, COUNTDISTINCT, JOINS, DROP, CREATE, DISTINCT, INNERJOINS, SUBQUERIES, ALTER, MULTIPLESCHEMAS, GROUPBYNORELATION, OUTERJOINS, UNIONALL, UNION, UPSERT, GETDELETED, CROSSJOINS, GROUPBYCOLLATE, MULTIPLECATS, FULLOUTERJOIN, MERGE, JSONEXTRACT, BULKUPSERT, SUM, SUBQUERIESFULL, MIN, MAX, JOINSFULL, XMLEXTRACT, AVG, MULTISTATEMENTS, FOREIGNKEYS, CASE, LEFTJOINS, COMMAJOINS, WITH, LITERALS, RENAME, NESTEDTABLES, EXECUTE, BATCH, BASIC, INDEX
PREFERRED_CACHE_OPTIONSA string value specifies the preferred cacheOptions.
ENABLE_EF_ADVANCED_QUERYIndicates if the driver directly supports advanced queries coming from Entity Framework. If not, queries will be handled client side.YES, NO
PSEUDO_COLUMNSA string array indicating the available pseudo columns.
MERGE_ALWAYSIf the value is true, The Merge Mode is forcibly executed in Data Sync.TRUE, FALSE
REPLICATION_MIN_DATE_QUERYA select query to return the replicate start datetime.
REPLICATION_MIN_FUNCTIONAllows a provider to specify the formula name to use for executing a server side min.
REPLICATION_START_DATEAllows a provider to specify a replicate startdate.
REPLICATION_MAX_DATE_QUERYA select query to return the replicate end datetime.
REPLICATION_MAX_FUNCTIONAllows a provider to specify the formula name to use for executing a server side max.
IGNORE_INTERVALS_ON_INITIAL_REPLICATEA list of tables which will skip dividing the replicate into chunks on the initial replicate.
CHECKCACHE_USE_PARENTIDIndicates whether the CheckCache statement should be done against the parent key column.TRUE, FALSE
CREATE_SCHEMA_PROCEDURESIndicates stored procedures that can be used for generating schema files.

The following query retrieves the operators that can be used in the WHERE clause:

SELECT * FROM sys_sqlinfo WHERE Name = 'SUPPORTED_OPERATORS'
Note that individual tables may have different limitations or requirements on the WHERE clause; refer to the Data Model section for more information.

Columns

Name Type Description
NAME String A component of SQL syntax, or a capability that can be processed on the server.
VALUE String Detail on the supported SQL or SQL syntax.

CData Python Connector for Acumatica

sys_identity

Returns information about attempted modifications.

The following query retrieves the Ids of the modified rows in a batch operation:

         SELECT * FROM sys_identity
          

Columns

Name Type Description
Id String The database-generated Id returned from a data modification operation.
Batch String An identifier for the batch. 1 for a single operation.
Operation String The result of the operation in the batch: INSERTED, UPDATED, or DELETED.
Message String SUCCESS or an error message if the update in the batch failed.

CData Python Connector for Acumatica

sys_information

Describes the available system information.

The following query retrieves all columns:

SELECT * FROM sys_information

Columns

NameTypeDescription
ProductStringThe name of the product.
VersionStringThe version number of the product.
DatasourceStringThe name of the datasource the product connects to.
NodeIdStringThe unique identifier of the machine where the product is installed.
HelpURLStringThe URL to the product's help documentation.
LicenseStringThe license information for the product. (If this information is not available, the field may be left blank or marked as 'N/A'.)
LocationStringThe file path location where the product's library is stored.
EnvironmentStringThe version of the environment or rumtine the product is currently running under.
DataSyncVersionStringThe tier of CData Sync required to use this connector.
DataSyncCategoryStringThe category of CData Sync functionality (e.g., Source, Destination).

CData Python Connector for Acumatica

Connection String Options

The connection string properties are the various options that can be used to establish a connection. This section provides a complete list of the options you can configure in the connection string for this provider. Click the links for further details.

For more information on establishing a connection, see Establishing a Connection.

Authentication


PropertyDescription
AuthSchemeThe scheme used for authentication. Accepted entries are Basic, OAuth, OAuthImplicit and OAuthPassword.
URLThe base URL of your Acumatica site.
UserSpecifies the authenticating user's user ID.
PasswordSpecifies the authenticating user's password.
CompanyYour Acumatica Company.
EndpointNameThe name of the endpoint in Acumatica WebService which you wish to access. You can find available endpoints in Web Service Endpoints form in Acumatica ERP.
EndpointVersionThe version of the endpoint. You can find available endpoints in Web Service Endpoints form in Acumatica ERP and their version under Endpoint Version.

OAuth


PropertyDescription
InitiateOAuthSpecifies the process for obtaining or refreshing the OAuth access token, which maintains user access while an authenticated, authorized user is working.
OAuthClientIdSpecifies the client ID (also known as the consumer key) assigned to your custom OAuth application. This ID is required to identify the application to the OAuth authorization server during authentication.
OAuthClientSecretSpecifies the client secret assigned to your custom OAuth application. This confidential value is used to authenticate the application to the OAuth authorization server. (Custom OAuth applications only.).
OAuthAccessTokenSpecifies the OAuth access token used to authenticate requests to the data source. This token is issued by the authorization server after a successful OAuth exchange.
OAuthSettingsLocationSpecifies the location of the settings file where OAuth values are saved.
CallbackURLIdentifies the URL users return to after authenticating to Acumatica via OAuth (Custom OAuth applications only).
OAuthVerifierSpecifies a verifier code returned from the OAuthAuthorizationURL . Used when authenticating to OAuth on a headless server, where a browser can't be launched. Requires both OAuthSettingsLocation and OAuthVerifier to be set.
OAuthRefreshTokenSpecifies the OAuth refresh token used to request a new access token after the original has expired.
OAuthExpiresInSpecifies the duration in seconds, of an OAuth Access Token's lifetime. The token can be reissued to keep access alive as long as the user keeps working.
OAuthTokenTimestampDisplays a Unix epoch timestamp in milliseconds that shows how long ago the current access token was created.

SSL


PropertyDescription
SSLServerCertSpecifies the certificate to be accepted from the server when connecting using TLS/SSL.

Firewall


PropertyDescription
FirewallTypeSpecifies the protocol the provider uses to tunnel traffic through a proxy-based firewall.
FirewallServerIdentifies the IP address, DNS name, or host name of a proxy used to traverse a firewall and relay user queries to network resources.
FirewallPortSpecifies the TCP port to be used for a proxy-based firewall.
FirewallUserIdentifies the user ID of the account authenticating to a proxy-based firewall.
FirewallPasswordSpecifies the password of the user account authenticating to a proxy-based firewall.

Proxy


PropertyDescription
ProxyAutoDetectSpecifies whether the provider checks your system proxy settings for existing proxy server configurations, rather than using a manually specified proxy server.
ProxyServerIdentifies the hostname or IP address of the proxy server through which you want to route HTTP traffic.
ProxyPortIdentifies the TCP port on your specified proxy server that has been reserved for routing HTTP traffic to and from the client.
ProxyAuthSchemeSpecifies the authentication method the provider uses when authenticating to the proxy server specified in the ProxyServer connection property.
ProxyUserProvides the username of a user account registered with the proxy server specified in the ProxyServer connection property.
ProxyPasswordSpecifies the password of the user specified in the ProxyUser connection property.
ProxySSLTypeSpecifies the SSL type to use when connecting to the proxy server specified in the ProxyServer connection property.
ProxyExceptionsSpecifies a semicolon-separated list of destination hostnames or IPs that are exempt from connecting through the proxy server set in the ProxyServer connection property.

Logging


PropertyDescription
LogfileSpecifies the file path to the log file where the provider records its activities, such as authentication, query execution, and connection details.
VerbositySpecifies the verbosity level of the log file, which controls the amount of detail logged. Supported values range from 1 to 5.
LogModulesSpecifies the core modules to include in the log file. Use a semicolon-separated list of module names. By default, all modules are logged.
MaxLogFileSizeSpecifies the maximum size of a single log file in bytes. For example, '10 MB'. When the file reaches the limit, the provider creates a new log file with the date and time appended to the name.
MaxLogFileCountSpecifies the maximum number of log files the provider retains. When the limit is reached, the oldest log file is deleted to make space for a new one.

Schema


PropertyDescription
LocationSpecifies the location of a directory containing schema files that define tables, views, and stored procedures. Depending on your service's requirements, this may be expressed as either an absolute path or a relative path.
BrowsableSchemasOptional setting that restricts the schemas reported to a subset of all available schemas. For example, BrowsableSchemas=SchemaA,SchemaB,SchemaC .
TablesOptional setting that restricts the tables reported to a subset of all available tables. For example, Tables=TableA,TableB,TableC .
ViewsOptional setting that restricts the views reported to a subset of the available tables. For example, Views=ViewA,ViewB,ViewC .
SchemaSpecifies which Acumatica API to use.

Caching


PropertyDescription
AutoCacheSpecifies whether the content of tables targeted by SELECT queries is automatically cached to the specified cache database.
CacheProviderThe namespace of an ADO.NET provider. The specified provider is used as the target database for all caching operations.
CacheDriverThe driver class of a JDBC driver. The specified driver is used to connect to the target database for all caching operations.
CacheConnectionSpecifies the connection string for the specified cache database.
CacheLocationSpecifies the path to the cache when caching to a file.
CacheToleranceNotes the tolerance, in seconds, for stale data in the specified cache database. Requires AutoCache to be set to True.
OfflineGets the data from the specified cache database instead of live Acumatica data.
CacheMetadataDetermines whether the provider caches table metadata to a file-based cache database.

Miscellaneous


PropertyDescription
GenerateSchemaFilesIndicates the user preference as to when schemas should be generated and saved.
IncludeCustomFieldsWhether or not to retrieve custom fields that are added to Acumatica Screens.
InquiryTablesProvide a comma-separated list of general inquiry tables to expose them in the provider.
MaxRowsSpecifies the maximum number of rows returned for queries that do not include either aggregation or GROUP BY.
OtherSpecifies advanced connection properties for specialized scenarios. Use this property only under the guidance of our Support team to address specific issues.
PagesizeSpecifies the maximum number of records per page the provider returns when requesting data from Acumatica.
PseudoColumnsSpecifies the pseudocolumns to expose as table columns, expressed as a string in the format 'TableName=ColumnName;TableName=ColumnName'.
ReadonlyToggles read-only access to Acumatica from the provider.
RTKSpecifies the runtime key for licensing the provider. If unset or invalid, the provider defaults to the standard licensing method. This property is only required in environments where the standard licensing method is unsupported or requires a runtime key.
TimeoutSpecifies the maximum time, in seconds, that the provider waits for a server response before throwing a timeout error.
UserDefinedViewsSpecifies a filepath to a JSON configuration file that defines custom views. The provider automatically detects and uses the views specified in this file.
CData Python Connector for Acumatica

Authentication

This section provides a complete list of the Authentication properties you can configure in the connection string for this provider.


PropertyDescription
AuthSchemeThe scheme used for authentication. Accepted entries are Basic, OAuth, OAuthImplicit and OAuthPassword.
URLThe base URL of your Acumatica site.
UserSpecifies the authenticating user's user ID.
PasswordSpecifies the authenticating user's password.
CompanyYour Acumatica Company.
EndpointNameThe name of the endpoint in Acumatica WebService which you wish to access. You can find available endpoints in Web Service Endpoints form in Acumatica ERP.
EndpointVersionThe version of the endpoint. You can find available endpoints in Web Service Endpoints form in Acumatica ERP and their version under Endpoint Version.
CData Python Connector for Acumatica

AuthScheme

The scheme used for authentication. Accepted entries are Basic, OAuth, OAuthImplicit and OAuthPassword.

Possible Values

Basic, OAuth, OAuthImplicit, OAuthPassword

Data Type

string

Default Value

"Basic"

Remarks

  • Basic: Set this to authenticate using the Basic authentication schema. You need to specify the User, Password and Company connection properties for this schema.
  • OAuth: Set to this to perform OAuth authentication with CODE flow.
  • OAuthImplicit: Set to this to perform OAuth authentication with IMPLICIT flow.
  • OAuthPassword: Set to this to perform OAuth authentication with PASSWORD flow.

CData Python Connector for Acumatica

URL

The base URL of your Acumatica site.

Data Type

string

Default Value

""

Remarks

The base URL of your Acumatica site. For example: https://domain.acumatica.com/.

CData Python Connector for Acumatica

User

Specifies the authenticating user's user ID.

Data Type

string

Default Value

""

Remarks

The authenticating server requires both User and Password to validate the user's identity.

CData Python Connector for Acumatica

Password

Specifies the authenticating user's password.

Data Type

string

Default Value

""

Remarks

The authenticating server requires both User and Password to validate the user's identity.

CData Python Connector for Acumatica

Company

Your Acumatica Company.

Data Type

string

Default Value

""

Remarks

This connection parameter is required when Schema is set to "OData".

CData Python Connector for Acumatica

EndpointName

The name of the endpoint in Acumatica WebService which you wish to access. You can find available endpoints in Web Service Endpoints form in Acumatica ERP.

Data Type

string

Default Value

"Default"

Remarks

The name of the endpoint. You can find available endpoints in Web Service Endpoints form (ScreenId SM207060) in Acumatica ERP. Under Endpoints properties, you will find the Endpoint Name and Endpoint Version.

CData Python Connector for Acumatica

EndpointVersion

The version of the endpoint. You can find available endpoints in Web Service Endpoints form in Acumatica ERP and their version under Endpoint Version.

Data Type

string

Default Value

"24.200.001"

Remarks

The version of the endpoint. You can find available endpoints in Web Service Endpoints form (ScreenId SM207060) in Acumatica ERP. Under Endpoints properties, you will find the Endpoint Name and Endpoint Version.

CData Python Connector for Acumatica

OAuth

This section provides a complete list of the OAuth properties you can configure in the connection string for this provider.


PropertyDescription
InitiateOAuthSpecifies the process for obtaining or refreshing the OAuth access token, which maintains user access while an authenticated, authorized user is working.
OAuthClientIdSpecifies the client ID (also known as the consumer key) assigned to your custom OAuth application. This ID is required to identify the application to the OAuth authorization server during authentication.
OAuthClientSecretSpecifies the client secret assigned to your custom OAuth application. This confidential value is used to authenticate the application to the OAuth authorization server. (Custom OAuth applications only.).
OAuthAccessTokenSpecifies the OAuth access token used to authenticate requests to the data source. This token is issued by the authorization server after a successful OAuth exchange.
OAuthSettingsLocationSpecifies the location of the settings file where OAuth values are saved.
CallbackURLIdentifies the URL users return to after authenticating to Acumatica via OAuth (Custom OAuth applications only).
OAuthVerifierSpecifies a verifier code returned from the OAuthAuthorizationURL . Used when authenticating to OAuth on a headless server, where a browser can't be launched. Requires both OAuthSettingsLocation and OAuthVerifier to be set.
OAuthRefreshTokenSpecifies the OAuth refresh token used to request a new access token after the original has expired.
OAuthExpiresInSpecifies the duration in seconds, of an OAuth Access Token's lifetime. The token can be reissued to keep access alive as long as the user keeps working.
OAuthTokenTimestampDisplays a Unix epoch timestamp in milliseconds that shows how long ago the current access token was created.
CData Python Connector for Acumatica

InitiateOAuth

Specifies the process for obtaining or refreshing the OAuth access token, which maintains user access while an authenticated, authorized user is working.

Possible Values

OFF, REFRESH, GETANDREFRESH

Data Type

string

Default Value

"OFF"

Remarks

OAuth is an authorization framework that enables applications to obtain limited access to user accounts on an HTTP service. The OAuth flow defines the method to be used for:

  • Logging in users.
  • Exchanging user credentials for an OAuth access token to be used for authentication.
  • Providing limited access to applications.

The options for initiating and maintaining OAuth access are named for the parts of that flow that the connector handles:

OFF The connector provides no automatic OAuth flow initiation. The OAuth flow is handled entirely by the user.
This means that the user must refresh the token manually, and reconnect with an updated OAuthAccessToken property when the current token expires.
GETANDREFRESH The connector handles the entire OAuth flow (both GET and REFRESH). This means that if a token already exists, the connector refreshes it when necessary; if no token currently exists, the connector obtains it by prompting the user to login.
REFRESH The user obtains the OAuth Access Token and sets up the sequence for refreshing the OAuth Access Token. (The user is never prompted to log in to authenticate.) After the user logs in, the connector handles the refresh of the OAuth Access Token.

For more information on how to set up OAuth and use this property when configuring a connection, see Establishing a Connection.

CData Python Connector for Acumatica

OAuthClientId

Specifies the client ID (also known as the consumer key) assigned to your custom OAuth application. This ID is required to identify the application to the OAuth authorization server during authentication.

Data Type

string

Default Value

""

Remarks

This property is required in two cases:

  • When using a custom OAuth application, such as in web-based authentication flows, service-based authentication, or certificate-based flows that require application registration.
  • If the driver does not provide embedded OAuth credentials.

(When the driver provides embedded OAuth credentials, this value may already be provided by the connector and thus not require manual entry.)

OAuthClientId is generally used alongside other OAuth-related properties such as OAuthClientSecret and OAuthSettingsLocation when configuring an authenticated connection.

OAuthClientId is one of the key connection parameters that need to be set before users can authenticate via OAuth. You can usually find this value in your identity provider’s application registration settings. Look for a field labeled Client ID, Application ID, or Consumer Key.

While the client ID is not considered a confidential value like a client secret, it is still part of your application's identity and should be handled carefully. Avoid exposing it in public repositories or shared configuration files.

For more information on how this property is used when configuring a connection, see Establishing a Connection.

CData Python Connector for Acumatica

OAuthClientSecret

Specifies the client secret assigned to your custom OAuth application. This confidential value is used to authenticate the application to the OAuth authorization server. (Custom OAuth applications only.).

Data Type

string

Default Value

""

Remarks

This property (sometimes called the application secret or consumer secret) is required when using a custom OAuth application in any flow that requires secure client authentication, such as web-based OAuth, service-based connections, or certificate-based authorization flows. It is not required when using an embedded OAuth application.

The client secret is used during the token exchange step of the OAuth flow, when the driver requests an access token from the authorization server. If this value is missing or incorrect, authentication fails with either an invalid_client or an unauthorized_client error.

OAuthClientSecret is one of the key connection parameters that need to be set before users can authenticate via OAuth. You can obtain this value from your identity provider when registering the OAuth application.

Notes:

  • This value should be stored securely and never exposed in public repositories, scripts, or unsecured environments.
  • Client secrets may also expire after a set period. Be sure to monitor expiration dates and rotate secrets as needed to maintain uninterrupted access.

For more information on how this property is used when configuring a connection, see Establishing a Connection

CData Python Connector for Acumatica

OAuthAccessToken

Specifies the OAuth access token used to authenticate requests to the data source. This token is issued by the authorization server after a successful OAuth exchange.

Data Type

string

Default Value

""

Remarks

OAuthAccessToken is a temporary credential that authorizes access to protected resources. It is typically returned by the identity provider after the user or client application completes an OAuth authentication flow. This property is most commonly used in automated workflows or custom OAuth implementations where you want to manage token handling outside of the driver.

The OAuth access token has a server-dependent timeout, limiting user access. The timeout is set using the OAuthExpiresIn property. However, it can be reissued between requests to keep access alive as long as the user keeps working.

If InitiateOAuth is set to REFRESH, we recommend that you also set both OAuthExpiresIn and OAuthTokenTimestamp. The connector uses these properties to determine when the token expires so it can refresh most efficiently. If OAuthExpiresIn and OAuthTokenTimestamp are not specified, the connector refreshes the token immediately.

Note: Access tokens should be treated as sensitive credentials and stored securely. Avoid exposing them in logs, scripts, or configuration files that are not access-controlled.

For more information on how this property is used when configuring a connection, see Establishing a Connection.

CData Python Connector for Acumatica

OAuthSettingsLocation

Specifies the location of the settings file where OAuth values are saved.

Data Type

string

Default Value

"%APPDATA%\\CData\\Acumatica Data Provider\\OAuthSettings.txt"

Remarks

Storing OAuth settings in a central location avoids the need for users to enter OAuth connection properties manually each time they log in. It also enables credentials to be shared across connections or processes.

You can store OAuth values in a central file for shared access to those values, in either of the following ways:

  • Set InitiateOAuth to either GETANDREFRESH or REFRESH and specify a filepath to the OAuth settings file.
  • Use memory storage to load the credentials into static memory.

The following sections provide more detail on each of these methods.

Specifying the OAuthSettingsLocation Filepath

The default OAuth setting location is %APPDATA%\\CData\\Acumatica Data Provider\\OAuthSettings.txt, with %APPDATA% set to the user's configuration directory. Default values vary, depending on the user's operating system.

  • Windows (ODBC and Power BI): registry://%DSN%
  • Windows: %APPDATA%CDataAcumatica Data Provider\OAuthSettings.txt
  • Mac: %APPDATA%/CData/Acumatica Data Provider/OAuthSettings.txt
  • Linux: %APPDATA%/CData/Acumatica Data Provider/OAuthSettings.txt

Loading Credentials Via Memory Storage

Memory locations are specified by using a value starting with memory://, followed by a unique identifier for that set of credentials (for example, memory://user1). The identifier can be anything you choose, but it should be unique to the user.

Unlike file-based storage, where credentials persist across connections, memory storage loads the credentials into static memory and the credentials are shared between connections using the same identifier for the life of the process. To persist credentials outside the current process, you must manually store the credentials prior to closing the connection. This enables you to set them in the connection when the process is started again.

To retrieve OAuth property values, query the sys_connection_props system table. If there are multiple connections using the same credentials, the properties are read from the previously closed connection.

Supported Storage Types

  • memory://: Stores OAuth tokens in-memory (unique identifier, shared within same process, etc.)
  • registry://: Only supported in the Windows ODBC and Power BI editions. Stores OAuth tokens in the registry under the DSN settings. Must end in a DSN name like registry://CData Python Connector for Acumatica Data Source, or registry://%DSN%.
  • %DSN%: The name of the DSN you are connecting with.
  • Default (no prefix): Stores OAuth tokens within files. The value can be either an absolute path, or a path starting with %APPDATA% or %PROGRAMFILES%.

For more information on how this property is used when configuring a connection, see Establishing a Connection.

CData Python Connector for Acumatica

CallbackURL

Identifies the URL users return to after authenticating to Acumatica via OAuth (Custom OAuth applications only).

Data Type

string

Default Value

"http://localhost:33333"

Remarks

If you created a custom OAuth application, the OAuth authorization server redirects the user to this URL during the authentication process. This value must match the callback URL you specified when you configured the custom OAuth application.

CData Python Connector for Acumatica

OAuthVerifier

Specifies a verifier code returned from the OAuthAuthorizationURL . Used when authenticating to OAuth on a headless server, where a browser can't be launched. Requires both OAuthSettingsLocation and OAuthVerifier to be set.

Data Type

string

Default Value

""

Remarks

For detailed instructions about how to obtain the OAuthVerifier value, see Establishing a Connection.

CData Python Connector for Acumatica

OAuthRefreshToken

Specifies the OAuth refresh token used to request a new access token after the original has expired.

Data Type

string

Default Value

""

Remarks

The refresh token is used to obtain a new access token when the current one expires. It enables seamless authentication for long-running or automated workflows without requiring the user to log in again. This property is especially important in headless, CI/CD, or server-based environments where interactive authentication is not possible.

The refresh token is typically obtained during the initial OAuth exchange by calling the GetOAuthAccessToken stored procedure. After that, it can be set using this property to enable automatic token refresh, or passed to the RefreshOAuthAccessTokenproc; stored procedure if you prefer to manage the refresh manually.

When InitiateOAuth is set to REFRESH, the driver uses this token to retrieve a new access token automatically. After the first refresh, the driver saves updated tokens in the location defined by OAuthSettingsLocation, and uses those values for subsequent connections.

Note: The OAuthRefreshToken should be handled securely and stored in a trusted location. Like access tokens, refresh tokens can expire or be revoked depending on the identity provider’s policies.

For more information on how this property is used when configuring a connection, see Establishing a Connection.

CData Python Connector for Acumatica

OAuthExpiresIn

Specifies the duration in seconds, of an OAuth Access Token's lifetime. The token can be reissued to keep access alive as long as the user keeps working.

Data Type

string

Default Value

""

Remarks

The OAuth Access Token is assigned to an authenticated user, granting that user access to the network for a specified period of time. The access token is used in place of the user's login ID and password, which stay on the server.

An access token created by the server is only valid for a limited time. OAuthExpiresIn is the number of seconds the token is valid from when it was created. For example, a token generated at 2024-01-29 20:00:00 UTC that expires at 2024-01-29 21:00:00 UTC (an hour later) would have an OAuthExpiresIn value of 3600, no matter what the current time is.

To determine how long the user has before the Access Token will expire, check OAuthTokenTimestamp.

CData Python Connector for Acumatica

OAuthTokenTimestamp

Displays a Unix epoch timestamp in milliseconds that shows how long ago the current access token was created.

Data Type

string

Default Value

""

Remarks

The OAuth access token is assigned to an authenticated user, granting that user access to the network for a specified period of time. The access token is used in place of the user's login ID and password, which stay on the server.

An access token created by the server is only valid for a limited time. OAuthTokenTimestamp is the Unix timestamp when the server created the token. For example, OAuthTokenTimestamp=1706558400 indicates the OAuthAccessToken was generated by the server at 2024-01-29 20:00:00 UTC.

CData Python Connector for Acumatica

SSL

This section provides a complete list of the SSL properties you can configure in the connection string for this provider.


PropertyDescription
SSLServerCertSpecifies the certificate to be accepted from the server when connecting using TLS/SSL.
CData Python Connector for Acumatica

SSLServerCert

Specifies the certificate to be accepted from the server when connecting using TLS/SSL.

Data Type

string

Default Value

""

Remarks

If you are using a TLS/SSL connection, use this property to specify the TLS/SSL certificate to be accepted from the server. If you specify a value for this property, all other certificates that are not trusted by the machine are rejected.

This property can take the following forms:

Description Example
A full PEM Certificate (example shortened for brevity) -----BEGIN CERTIFICATE-----
MIIChTCCAe4CAQAwDQYJKoZIhv......Qw==
-----END CERTIFICATE-----
A path to a local file containing the certificate C:\cert.cer
The public key (example shortened for brevity) -----BEGIN RSA PUBLIC KEY-----
MIGfMA0GCSq......AQAB
-----END RSA PUBLIC KEY-----
The MD5 Thumbprint (hex values can also be either space- or colon-separated) ecadbdda5a1529c58a1e9e09828d70e4
The SHA1 Thumbprint (hex values can also be either space- or colon-separated) 34a929226ae0819f2ec14b4a3d904f801cbb150d

Note: It is possible to use '*' to signify that all certificates should be accepted, but due to security concerns this is not recommended.

CData Python Connector for Acumatica

Firewall

This section provides a complete list of the Firewall properties you can configure in the connection string for this provider.


PropertyDescription
FirewallTypeSpecifies the protocol the provider uses to tunnel traffic through a proxy-based firewall.
FirewallServerIdentifies the IP address, DNS name, or host name of a proxy used to traverse a firewall and relay user queries to network resources.
FirewallPortSpecifies the TCP port to be used for a proxy-based firewall.
FirewallUserIdentifies the user ID of the account authenticating to a proxy-based firewall.
FirewallPasswordSpecifies the password of the user account authenticating to a proxy-based firewall.
CData Python Connector for Acumatica

FirewallType

Specifies the protocol the provider uses to tunnel traffic through a proxy-based firewall.

Possible Values

NONE, TUNNEL, SOCKS4, SOCKS5

Data Type

string

Default Value

"NONE"

Remarks

A proxy-based firewall (or proxy firewall) is a network security device that acts as an intermediary between user requests and the resources they access. The proxy accepts the request of an authenticated user, tunnels through the firewall, and transmits the request to the appropriate server.

Because the proxy evaluates and transfers data backets on behalf of the requesting users, the users never connect directly with the servers, only with the proxy.

Note: By default, the connector connects to the system proxy. To disable this behavior and connect to one of the following proxy types, set ProxyAutoDetect to false.

The following table provides port number information for each of the supported protocols.

Protocol Default Port Description
TUNNEL 80 The port where the connector opens a connection to Acumatica. Traffic flows back and forth via the proxy at this location.
SOCKS4 1080 The port where the connector opens a connection to Acumatica. SOCKS 4 then passes theFirewallUser value to the proxy, which determines whether the connection request should be granted.
SOCKS5 1080 The port where the connector sends data to Acumatica. If the SOCKS 5 proxy requires authentication, set FirewallUser and FirewallPassword to credentials the proxy recognizes.

To connect to HTTP proxies, use ProxyServer and ProxyPort. To authenticate to HTTP proxies, use ProxyAuthScheme, ProxyUser, and ProxyPassword.

CData Python Connector for Acumatica

FirewallServer

Identifies the IP address, DNS name, or host name of a proxy used to traverse a firewall and relay user queries to network resources.

Data Type

string

Default Value

""

Remarks

A proxy-based firewall (or proxy firewall) is a network security device that acts as an intermediary between user requests and the resources they access. The proxy accepts the request of an authenticated user, tunnels through the firewall, and transmits the request to the appropriate server.

Because the proxy evaluates and transfers data backets on behalf of the requesting users, the users never connect directly with the servers, only with the proxy.

CData Python Connector for Acumatica

FirewallPort

Specifies the TCP port to be used for a proxy-based firewall.

Data Type

int

Default Value

0

Remarks

A proxy-based firewall (or proxy firewall) is a network security device that acts as an intermediary between user requests and the resources they access. The proxy accepts the request of an authenticated user, tunnels through the firewall, and transmits the request to the appropriate server.

Because the proxy evaluates and transfers data backets on behalf of the requesting users, the users never connect directly with the servers, only with the proxy.

CData Python Connector for Acumatica

FirewallUser

Identifies the user ID of the account authenticating to a proxy-based firewall.

Data Type

string

Default Value

""

Remarks

A proxy-based firewall (or proxy firewall) is a network security device that acts as an intermediary between user requests and the resources they access. The proxy accepts the request of an authenticated user, tunnels through the firewall, and transmits the request to the appropriate server.

Because the proxy evaluates and transfers data backets on behalf of the requesting users, the users never connect directly with the servers, only with the proxy.

CData Python Connector for Acumatica

FirewallPassword

Specifies the password of the user account authenticating to a proxy-based firewall.

Data Type

string

Default Value

""

Remarks

A proxy-based firewall (or proxy firewall) is a network security device that acts as an intermediary between user requests and the resources they access. The proxy accepts the request of an authenticated user, tunnels through the firewall, and transmits the request to the appropriate server.

Because the proxy evaluates and transfers data backets on behalf of the requesting users, the users never connect directly with the servers, only with the proxy.

CData Python Connector for Acumatica

Proxy

This section provides a complete list of the Proxy properties you can configure in the connection string for this provider.


PropertyDescription
ProxyAutoDetectSpecifies whether the provider checks your system proxy settings for existing proxy server configurations, rather than using a manually specified proxy server.
ProxyServerIdentifies the hostname or IP address of the proxy server through which you want to route HTTP traffic.
ProxyPortIdentifies the TCP port on your specified proxy server that has been reserved for routing HTTP traffic to and from the client.
ProxyAuthSchemeSpecifies the authentication method the provider uses when authenticating to the proxy server specified in the ProxyServer connection property.
ProxyUserProvides the username of a user account registered with the proxy server specified in the ProxyServer connection property.
ProxyPasswordSpecifies the password of the user specified in the ProxyUser connection property.
ProxySSLTypeSpecifies the SSL type to use when connecting to the proxy server specified in the ProxyServer connection property.
ProxyExceptionsSpecifies a semicolon-separated list of destination hostnames or IPs that are exempt from connecting through the proxy server set in the ProxyServer connection property.
CData Python Connector for Acumatica

ProxyAutoDetect

Specifies whether the provider checks your system proxy settings for existing proxy server configurations, rather than using a manually specified proxy server.

Data Type

bool

Default Value

true

Remarks

When this connection property is set to True, the connector checks your system proxy settings for existing proxy server configurations (no need to manually supply proxy server details).

This connection property takes precedence over other proxy settings. If you want to configure the connector to connect to a specific proxy server, set ProxyAutoDetect to False.

On Windows, the connector reads the proxy settings from the Internet Options in the registry, specifically the registry key HKCU\SOFTWARE\Microsoft\Windows\CurrentVersion\Internet Settings\. On Windows 10 and later, this corresponds to the Proxy Settings found in the Windows Settings.

Note that these settings apply only to the current user of the machine. If you're running an application as a service, the connector does not read your own user's settings. You must instead manually supply the proxy settings in the connector's connection properties.

On Mac, the connector reads proxy settings from the system-configured CFNetwork settings.

On Linux, this property is unsupported, and is set to False by default.

To connect to an HTTP proxy, see ProxyServer. For other proxies, such as SOCKS or tunneling, see FirewallType.

CData Python Connector for Acumatica

ProxyServer

Identifies the hostname or IP address of the proxy server through which you want to route HTTP traffic.

Data Type

string

Default Value

""

Remarks

The connector only routes HTTP traffic through the proxy server specified in this connection property when ProxyAutoDetect is set to False.

If ProxyAutoDetect is set to True (the default), the connector instead routes HTTP traffic through the proxy server specified in your system proxy settings.

CData Python Connector for Acumatica

ProxyPort

Identifies the TCP port on your specified proxy server that has been reserved for routing HTTP traffic to and from the client.

Data Type

int

Default Value

80

Remarks

The connector only routes HTTP traffic through the ProxyServer port specified in this connection property when ProxyAutoDetect is set to False.

If ProxyAutoDetect is set to True (the default), the connector instead routes HTTP traffic through the proxy server port specified in your system proxy settings.

For other proxy types, see FirewallType.

CData Python Connector for Acumatica

ProxyAuthScheme

Specifies the authentication method the provider uses when authenticating to the proxy server specified in the ProxyServer connection property.

Possible Values

BASIC, DIGEST, NONE, NEGOTIATE, NTLM

Data Type

string

Default Value

"BASIC"

Remarks

Note: The connector only uses this ProxyAuthScheme when ProxyAutoDetect is set to False. If ProxyAutoDetect is set to True (the default), the connector instead uses the authentication method specified in your system proxy settings.

Supported authentication types :

  • BASIC: The connector performs HTTP basic authentication.
  • DIGEST: The connector performs HTTP digest authentication.
  • NTLM: The connector retrieves an NTLM token.
  • NEGOTIATE: The connector retrieves an NTLM or Kerberos token based on the applicable protocol for authentication.
  • NONE: Signifies that the ProxyServer does not require authentication.

For all values other than NONE, you must also set the ProxyUser and ProxyPassword connection properties.

If you need to use another authentication type, such as SOCKS 5 authentication, see FirewallType.

CData Python Connector for Acumatica

ProxyUser

Provides the username of a user account registered with the proxy server specified in the ProxyServer connection property.

Data Type

string

Default Value

""

Remarks

The ProxyUser and ProxyPassword connection properties are used to connect and authenticate against the HTTP proxy specified in ProxyServer.

After selecting one of the available authentication types in ProxyAuthScheme, set this property as follows:

ProxyAuthScheme Value Value to set for ProxyUser
BASIC The username of a user registered with the proxy server.
DIGEST The username of a user registered with the proxy server.
NEGOTIATE The username of a Windows user who is a valid user in the domain or trusted domain that the proxy server is part of, in the format user@domain or domain\user.
NTLM The username of a Windows user who is a valid user in the domain or trusted domain that the proxy server is part of, in the format user@domain or domain\user.
NONE Do not set the ProxyPassword connection property.

Note: The connector only uses this username if ProxyAutoDetect is set to False. If ProxyAutoDetect is set to True (the default), the connector instead uses the username specified in your system proxy settings.

CData Python Connector for Acumatica

ProxyPassword

Specifies the password of the user specified in the ProxyUser connection property.

Data Type

string

Default Value

""

Remarks

The ProxyUser and ProxyPassword connection properties are used to connect and authenticate against the HTTP proxy specified in ProxyServer.

After selecting one of the available authentication types in ProxyAuthScheme, set this property as follows:

ProxyAuthScheme Value Value to set for ProxyPassword
BASIC The password associated with the proxy server user specified in ProxyUser.
DIGEST The password associated with the proxy server user specified in ProxyUser.
NEGOTIATE The password associated with the Windows user account specified in ProxyUser.
NTLM The password associated with the Windows user account specified in ProxyUser.
NONE Do not set the ProxyPassword connection property.

For SOCKS 5 authentication or tunneling, see FirewallType.

Note: The connector only uses this password if ProxyAutoDetect is set to False. If ProxyAutoDetect is set to True (the default), the connector instead uses the password specified in your system proxy settings.

CData Python Connector for Acumatica

ProxySSLType

Specifies the SSL type to use when connecting to the proxy server specified in the ProxyServer connection property.

Possible Values

AUTO, ALWAYS, NEVER, TUNNEL

Data Type

string

Default Value

"AUTO"

Remarks

This property determines when to use SSL for the connection to the HTTP proxy specified by ProxyServer. You can set this connection property to the following values :

AUTODefault setting. If ProxyServer is set to an HTTPS URL, the connector uses the TUNNEL option. If ProxyServer is set to an HTTP URL, the component uses the NEVER option.
ALWAYSThe connection is always SSL enabled.
NEVERThe connection is not SSL enabled.
TUNNELThe connection is made through a tunneling proxy. The proxy server opens a connection to the remote host and traffic flows back and forth through the proxy.

CData Python Connector for Acumatica

ProxyExceptions

Specifies a semicolon-separated list of destination hostnames or IPs that are exempt from connecting through the proxy server set in the ProxyServer connection property.

Data Type

string

Default Value

""

Remarks

The ProxyServer is used for all addresses, except for addresses defined in this property. Use semicolons to separate entries.

Note: The connector uses the system proxy settings by default, without further configuration needed. If you want to explicitly configure proxy exceptions for this connection, set ProxyAutoDetect to False.

CData Python Connector for Acumatica

Logging

This section provides a complete list of the Logging properties you can configure in the connection string for this provider.


PropertyDescription
LogfileSpecifies the file path to the log file where the provider records its activities, such as authentication, query execution, and connection details.
VerbositySpecifies the verbosity level of the log file, which controls the amount of detail logged. Supported values range from 1 to 5.
LogModulesSpecifies the core modules to include in the log file. Use a semicolon-separated list of module names. By default, all modules are logged.
MaxLogFileSizeSpecifies the maximum size of a single log file in bytes. For example, '10 MB'. When the file reaches the limit, the provider creates a new log file with the date and time appended to the name.
MaxLogFileCountSpecifies the maximum number of log files the provider retains. When the limit is reached, the oldest log file is deleted to make space for a new one.
CData Python Connector for Acumatica

Logfile

Specifies the file path to the log file where the provider records its activities, such as authentication, query execution, and connection details.

Data Type

string

Default Value

""

Remarks

This property specifies the location and name of the log file where the connector records its operations, including authentication events, query execution, and connection details. If the specified file does not exist, the connector creates it. Ensure that the user or the service running the connector has write access to the specified path or file. Without sufficient permissions, the log file is not created.

Sensitive information from the connection string, such as passwords and tokens, is automatically masked in the logs. However, sensitive information present in the data itself may not be masked.

If you specify a relative path for Logfile, and if the Location property is set, that directory is used as the base path for the log file.

Additional properties allow you to customize logging behavior:

CData Python Connector for Acumatica

Verbosity

Specifies the verbosity level of the log file, which controls the amount of detail logged. Supported values range from 1 to 5.

Data Type

string

Default Value

"1"

Remarks

This property defines the level of detail the connector includes in the log file. Higher verbosity levels increase the detail of the logged information, but may also result in larger log files and slower performance due to the additional data being captured.

The default verbosity level is 1, which is recommended for regular operation. Higher verbosity levels are primarily intended for debugging purposes. For more information on each level, refer to Logging.

When combined with the LogModules property, Verbosity can refine logging to specific categories of information.

CData Python Connector for Acumatica

LogModules

Specifies the core modules to include in the log file. Use a semicolon-separated list of module names. By default, all modules are logged.

Data Type

string

Default Value

""

Remarks

The connector writes details about each operation it performs into the logfile specified by the Logfile connection property.

Each of these logged operations are assigned to a themed category called a module, and each module has a corresponding short code used to labels individual connector operations as belonging to that module.

When this connection property is set to a semicolon-separated list of module codes, only operations belonging to the specified modules are written to the logfile. Note that this only affects which operations are logged moving forward and doesn't retroactively alter the existing contents of the logfile. For example: INFO;EXEC;SSL;META;

By default, logged operations from all modules are included.

You can explicitly exclude a module by prefixing it with a "-". For example: -HTTP

To apply filters to submodules, identify them with the syntax <module name>.<submodule name>. For example, the following value causes the connector to only log actions belonging to the HTTP module, and further refines it to exclude actions belonging to the Res submodule of the HTTP module: HTTP;-HTTP.Res

Note that the logfile filtering triggered by the Verbosity connection property takes precedence over the filtering imposed by this connection property. This means that operations of a higher verbosity level than the level specified in the Verbosity connection property are not printed in the logfile, even if they belong to one of the modules specified in this connection property.

The available modules and submodules are:

Module Name Module Description Submodules
INFO General Information. Includes the connection string, product version (build number), and initial connection messages.
  • Connec – Information related to creating or destroying connections.
  • Messag – Generic label for messages pertaining to connections, the connection string, and product version. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
EXEC Query Execution. Includes execution messages for user-written SQL queries, parsed SQL queries, and normalized SQL queries. Success/failure messages for queries and query pages appear here as well.
  • Messag – Messages pertaining to query execution. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • Normlz – Query normalization steps. Query normalization is when the product takes the user-submitted query and rewrites the query to get the same results with optimal performance.
  • Origin – This label applies to any messages recording a user's original query (the exact, unaltered, non-normalized query executed by the user).
  • Page – Messages related to query paging.
  • Parsed – Query parsing steps. Parsing is the process of converting the user-submitted query into a standardized format for easier processing.
HTTP HTTP protocol messages. Includes HTTP requests/responses (including POST messages), as well as Kerberos related messages.
  • KERB – HTTP requests related to Kerberos.
  • Messag – Messages pertaining to HTTP protocols. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • Unpack – This label applies to messages about zipped data being returned from the service API and unpacked by the product.
  • Res – Messages containing HTTP responses.
  • Req – Messages containing HTTP requests.
WSDL Messages pertaining to the generation of WSDL/XSD files.
SSL SSL certificate messages.
  • Certif – Messages pertaining to SSL certificates.
AUTH Authentication related failure/success messages.
  • Messag – Messages pertaining to authentication. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • OAuth – Messages related to OAuth authentication.
  • Krbros – Kerberos-related authentication messages.
SQL Includes SQL transactions, SQL bulk transfer messages, and SQL result set messages.
  • Bulk – Messages pertaining to bulk query execution.
  • Cache – Messages related to reading row data from and writing row data to the product's cache for better performance.
  • Messag – Messages pertaining to SQL transactions. These messages are typically specific to the connector, rather than being received and passed along directly from the service.
  • ResSet – Query resultsets.
  • Transc – Messages related to handling transactions, including information about the number of jobs executed and backup table handling.
META Metadata cache and schema messages.
  • Cache – Messages related to reading from and modifying column and table definitions in the product's cache for better performance.
  • Schema – Messages related to retrieving metadata from or modifying the service schema.
  • MemSto – Messages related to writing to or reading from in-memory metadata cache.
  • Storag – Messages relating to storing metadata on disk or in an external data store, rather than in memory.
FUNC Information related to executing SQL functions.
  • Errmsg – Error messages related to executing SQL functions.
TCP Incoming and outgoing raw bytes on TCP transport layer messages.
  • Send – Raw data sent via the TCP protocol.
  • Receiv – Raw data received via the TCP protocol.
FTP Messages pertaining to the File Transfer Protocol.
  • Info – Status messages related to communication in the FTP protocol.
  • Client – Messages related to actions taken by the FTP client (the product) during FTP communication.
  • Server – Messages related to actions taken by the FTP server during FTP communication.
SFTP Messages pertaining to the Secure File Transfer Protocol.
  • Info – Status messages related to communication in the SFTP protocol.
  • To_Server – Messages related to actions taken by the SFTP client (the product) during SFTP communication.
  • From_Server – Messages related to actions taken by the SFTP server during SFTP communication.
POP Messages pertaining to data transferred via the Post Office Protocol.
  • Client – Messages related to actions taken by the POP client (the product) during POP communication.
  • Server – Messages related to actions taken by the POP server during POP communication.
  • Status – Status messages related to communication in the POP protocol.
SMTP Messages pertaining to data transferred via the Simple Mail Transfer Protocol.
  • Client – Messages related to actions taken by the SMTP client (the product) during SMTP communication.
  • Server – Messages related to actions taken by the SMTP server during SMTP communication.
  • Status – Status messages related to communication in the SMTP protocol.
CORE Messages relating to various internal product operations not covered by other modules.
DEMN Messages related to SQL remoting.
CLJB Messages about bulk data uploads (cloud job).
  • Commit – Submissions for bulk data uploads.
SRCE Miscellaneous messages produced by the product that don't belong in any other module.
TRANCE Advanced messages concerning low-level product operations.

CData Python Connector for Acumatica

MaxLogFileSize

Specifies the maximum size of a single log file in bytes. For example, '10 MB'. When the file reaches the limit, the provider creates a new log file with the date and time appended to the name.

Data Type

string

Default Value

"100MB"

Remarks

For values lower than 100 KB, the connector uses 100 KB as the minimum allowable size.

To control the total number of log files retained, use the MaxLogFileCount property in conjunction with this property. Together, these properties allow you to manage the size and retention of log files effectively.

CData Python Connector for Acumatica

MaxLogFileCount

Specifies the maximum number of log files the provider retains. When the limit is reached, the oldest log file is deleted to make space for a new one.

Data Type

int

Default Value

-1

Remarks

Each log file name includes the date and time for easier identification.

This property accepts the following values:

  • A value of 2 or higher sets the maximum number of log files retained.
  • A value of 1 retains only one log file. When it reaches the maximum size, the file is deleted and replaced by a new one, leaving no history beyond the current log.
  • A value of 0 or negative indicates no limit on the number of log files, and logging continues indefinitely.

To manage log file size, use the MaxLogFileSize property. The two properties work together to control the size and retention of log files in the logging folder.

CData Python Connector for Acumatica

Schema

This section provides a complete list of the Schema properties you can configure in the connection string for this provider.


PropertyDescription
LocationSpecifies the location of a directory containing schema files that define tables, views, and stored procedures. Depending on your service's requirements, this may be expressed as either an absolute path or a relative path.
BrowsableSchemasOptional setting that restricts the schemas reported to a subset of all available schemas. For example, BrowsableSchemas=SchemaA,SchemaB,SchemaC .
TablesOptional setting that restricts the tables reported to a subset of all available tables. For example, Tables=TableA,TableB,TableC .
ViewsOptional setting that restricts the views reported to a subset of the available tables. For example, Views=ViewA,ViewB,ViewC .
SchemaSpecifies which Acumatica API to use.
CData Python Connector for Acumatica

Location

Specifies the location of a directory containing schema files that define tables, views, and stored procedures. Depending on your service's requirements, this may be expressed as either an absolute path or a relative path.

Data Type

string

Default Value

"%APPDATA%\\CData\\Acumatica Data Provider\\Schema"

Remarks

The Location property is only needed if you want to either customize definitions (for example, change a column name, ignore a column, etc.) or extend the data model with new tables, views, or stored procedures.

Note: Since this connector supports multiple schemas, custom schema files for Acumatica should be structured such that:

  • Each schema should have its own folder, named for that schema.
  • All schema folders should be contained in a parent folder.

Location should always be set to the parent folder, and not to an individual schema's folder.

If left unspecified, the default location is %APPDATA%\\CData\\Acumatica Data Provider\\Schema, where %APPDATA% is set to the user's configuration directory:

Platform %APPDATA%
Windows The value of the APPDATA environment variable
Linux ~/.config

CData Python Connector for Acumatica

BrowsableSchemas

Optional setting that restricts the schemas reported to a subset of all available schemas. For example, BrowsableSchemas=SchemaA,SchemaB,SchemaC .

Data Type

string

Default Value

""

Remarks

Listing all available database schemas can take extra time, thus degrading performance. Providing a list of schemas in the connection string saves time and improves performance.

CData Python Connector for Acumatica

Tables

Optional setting that restricts the tables reported to a subset of all available tables. For example, Tables=TableA,TableB,TableC .

Data Type

string

Default Value

""

Remarks

Listing all available tables from some databases can take extra time, thus degrading performance. Providing a list of tables in the connection string saves time and improves performance.

If there are lots of tables available and you already know which ones you want to work with, you can use this property to restrict your viewing to only those tables. To do this, specify the tables you want in a comma-separated list. Each table should be a valid SQL identifier with any special characters escaped using square brackets, double-quotes or backticks. For example, Tables=TableA,[TableB/WithSlash],WithCatalog.WithSchema.`TableC With Space`.

Note: If you are connecting to a data source with multiple schemas or catalogs, you must specify each table you want to view by its fully qualified name. This avoids ambiguity between tables that may exist in multiple catalogs or schemas.

CData Python Connector for Acumatica

Views

Optional setting that restricts the views reported to a subset of the available tables. For example, Views=ViewA,ViewB,ViewC .

Data Type

string

Default Value

""

Remarks

Listing all available views from some databases can take extra time, thus degrading performance. Providing a list of views in the connection string saves time and improves performance.

If there are lots of views available and you already know which ones you want to work with, you can use this property to restrict your viewing to only those views. To do this, specify the views you want in a comma-separated list. Each view should be a valid SQL identifier with any special characters escaped using square brackets, double-quotes or backticks. For example, Views=ViewA,[ViewB/WithSlash],WithCatalog.WithSchema.`ViewC With Space`.

Note: If you are connecting to a data source with multiple schemas or catalogs, you must specify each view you want to examine by its fully qualified name. This avoids ambiguity between views that may exist in multiple catalogs or schemas.

CData Python Connector for Acumatica

Schema

Specifies which Acumatica API to use.

Possible Values

OData, ODataV4, REST

Data Type

string

Default Value

"REST"

Remarks

Specifies which Acumatica API to use. There are three options:

  • REST (default): Use the Contract-Based REST API.
  • OData: Use the OData Version 3.0 API to dynamically retrieve all Generic Inquiries available through OData.
  • ODataV4: Use the OData 4.0 API to query Data Access Class (DAC) objects.

CData Python Connector for Acumatica

Caching

This section provides a complete list of the Caching properties you can configure in the connection string for this provider.


PropertyDescription
AutoCacheSpecifies whether the content of tables targeted by SELECT queries is automatically cached to the specified cache database.
CacheProviderThe namespace of an ADO.NET provider. The specified provider is used as the target database for all caching operations.
CacheDriverThe driver class of a JDBC driver. The specified driver is used to connect to the target database for all caching operations.
CacheConnectionSpecifies the connection string for the specified cache database.
CacheLocationSpecifies the path to the cache when caching to a file.
CacheToleranceNotes the tolerance, in seconds, for stale data in the specified cache database. Requires AutoCache to be set to True.
OfflineGets the data from the specified cache database instead of live Acumatica data.
CacheMetadataDetermines whether the provider caches table metadata to a file-based cache database.
CData Python Connector for Acumatica

AutoCache

Specifies whether the content of tables targeted by SELECT queries is automatically cached to the specified cache database.

Data Type

bool

Default Value

false

Remarks

When this connection property is set to True, the connector automatically caches the contents of tables targeted by SELECT queries. The content of these tables is cached to the cache database specified by the CacheConnection and CacheProvider connection properties.

See Also

For additional information, see:

  • CacheMetadata: With CacheMetadata enabled, all retrieved metadata is mirrored in the cache database. This means that any subsequent attempts by the connector to discover metadata are much faster, as this metadata is then read directly from the cache database, without needing to spend time requesting metadata from Acumatica.
  • Explicitly Caching Data: This topic provides examples for using AutoCache in Offline mode.
  • CACHE Statements: You can use the CACHE statement to explicitly cache the content of any table targeted by a SELECT query.

CData Python Connector for Acumatica

CacheProvider

The namespace of an ADO.NET provider. The specified provider is used as the target database for all caching operations.

Data Type

string

Default Value

""

Remarks

You can cache to ADO.NET providers saved in your ADO.NET global assembly cache (GAC).

CData ADO.NET providers automatically register themselves with the GAC during installation, so you don't need to do so manually.

Third-party ADO.NET providers may or may not automatically register themselves with the GAC during installation. If you want to cache to a third-party ADO.NET provider, consult the documentation for that provider to determine what steps (if any) you must take to register them with the GAC. Once they have been registered, you can supply their namespace in this connection property.

You must also set the CacheConnection connection property to provide a connection string for the specified ADO.NET provider.

The following sections show connection examples and address other requirements for several popular database providers. Refer to CacheConnection for more information on typical connection properties.

SQLite

You can use the Microsoft ADO.NET Provider for SQLite to cache to SQLite databases.

CacheProvider=Microsoft.Data.Sqlite;CacheConnection='DataSource=C:\\Users\\Public\\cache.db;'Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

MySQL

To cache to MySQL, you can use the CData ADO.NET Provider for MySQL:
Cache Provider=System.Data.CData.MySQL;Cache Connection='Server=localhost;Port=3306;Database=cache;User=root;Password=123456';User=myUser;Password=myPassword;Security Token=myToken;

SQL Server

You can use the Microsoft .NET Framework Provider for SQL Server, included in the .NET Framework, to cache to SQL Server:

Cache Provider=System.Data.SqlClient;Cache Connection="Server=MyMACHINE\MyInstance;Database=SQLCACHE;User Id=root;Password=admin";Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

Oracle

To cache to Oracle, you can use the Oracle Data Provider for .NET, as shown in the following example:

Cache Provider=Oracle.DataAccess.Client;Cache Connection='User Id=scott;Password=tiger;Data Source=ORCL';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

The Oracle Data Provider for .NET also requires the Oracle Database Client. When you download the Oracle Database Client, ensure that its bitness matches the bitness of your machine. When you install, select either the Runtime or Administrator installation type. The Instant Client is not sufficient.

PostgreSQL

To cache to PostgreSQL, you can use the CData ADO.NET Provider for PostgreSQL:
Cache Provider=System.Data.CData.PostgreSQL;Cache Connection='Server=localhost;Port=5432;Database=cache;User=postgres;Password=123456';User=myUser;Password=myPassword;Security Token=myToken;

CData Python Connector for Acumatica

CacheDriver

The driver class of a JDBC driver. The specified driver is used to connect to the target database for all caching operations.

Data Type

string

Default Value

""

Remarks

You can cache to any database for which you have a JDBC driver, including CData JDBC drivers.

Note: You must add the JAR file of the specified JDBC driver to the classpath. For CData JDBC drivers, you can find this JAR file in the "lib" subfolder of that driver's installation directory.

You must also set the CacheConnection connection property to provide a connection string for the specified JDBC driver.

For Linux systems and macOS, you need to create a config.ini file on the installation path of the driver (site-packages/cdata). The config.ini file has the following format (the driver and the path of the JDBC driver):

[salesforce.cpython-38-x86_64-linux-gnu.so]
CLASSPATH = /home/usrname/Downloads/lib/cdata.jdbc.postgresql.jar

Examples

The following examples show how to cache to several major databases. For more information on the JDBC URL syntax and typical connection properties, see CacheConnection.

Derby and Java DB

Java DB is the Oracle distribution of Derby. You must add the Derby JDBC driver's JAR file, derbytools.jar, to your classpath to cache to Java DB.

The Derby JDBC driver's JAR file is bundled in db-derby-10.17.1.0-bin.zip, which you can download from this page. You can find derbytools.jar in the "lib" subfolder of this zip file.

After adding derbytools.jar to the classpath, you can cache to a Java DB database as follows:

jdbc:acumatica:CacheDriver=org.apache.derby.jdbc.EmbeddedDriver;CacheConnection='jdbc:derby:sample';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;
To cache to an in-memory database, use a JDBC URL like the following:
jdbc:acumatica:CacheDriver=org.apache.derby.jdbc.EmbeddedDriver;CacheConnection='jdbc:derby:memory';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

SQLite

The following is a JDBC URL for the SQLite JDBC driver:

jdbc:acumatica:CacheDriver=org.sqlite.JDBC;CacheConnection='jdbc:sqlite:C:/Temp/sqlite.db';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

MySQL

The following is a JDBC URL for the CData JDBC Driver for MySQL:

  jdbc:acumatica:Cache Driver=cdata.jdbc.mysql.MySQLDriver;Cache Connection='jdbc:mysql:Server=localhost;Port=3306;Database=cache;User=root;Password=123456';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;
  

SQL Server

The following JDBC URL uses the Microsoft JDBC Driver for SQL Server:

jdbc:acumatica:Cache Driver=com.microsoft.sqlserver.jdbc.SQLServerDriver;Cache Connection='jdbc:sqlserver://localhost\sqlexpress:7437;user=sa;password=123456;databaseName=Cache';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

Oracle

The following is a JDBC URL for the Oracle Thin Client:

jdbc:acumatica:Cache Driver=oracle.jdbc.OracleDriver;CacheConnection='jdbc:oracle:thin:scott/tiger@localhost:1521:orcldb';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;
NOTE: If using a version of Oracle older than 9i, the cache driver will instead be oracle.jdbc.driver.OracleDriver .

PostgreSQL

The following JDBC URL uses the official PostgreSQL JDBC driver:

jdbc:acumatica:CacheDriver=cdata.jdbc.postgresql.PostgreSQLDriver;CacheConnection='jdbc:postgresql:User=postgres;Password=admin;Database=postgres;Server=localhost;Port=5432;';Url = https://try.acumatica.com/ISV/;EndpointName=Default;EndpointVersion=24.200.001;User=user;Password=password;Company=CompanyName;

CData Python Connector for Acumatica

CacheConnection

Specifies the connection string for the specified cache database.

Data Type

string

Default Value

""

Remarks

The target cache database is determined by a combination of this connection property and the CacheProvider connection property. Both properties are required to use the specified cache database.

The connection string specified in this connection property is passed directly to the specified in the CacheProvider connection property. Consult the documentation for the specified for more information on its available connection properties.

Examples of common cache database settings can be found below.

SQLite

MySQL

The following are typical connection properties:

  • Server: The IP address or domain name of the server hosting the MySQL database that you want to cache to.
  • Port: The port on the specified server where your MySQL instance is running.
  • Database: The name of the MySQL database that you want to cache to. Must match the name of a MySQL database hosted on the specified server.
  • User: The username of a user registered with the selected MySQL database.
  • Password: The password associated with the specified MySQL user.

SQL Server

The following are typical SQL Server connection properties:

  • Server: The name or network address of the computer running SQL Server. To connect to a named instance instead of the default instance, specify the host name and the instance name, separated by a backslash.
  • Port: The port on the specified server where your SQL Server instance is running.
  • Database: The name of the SQL Server database you want to cache to. Must match the name of a SQL Server database hosted on the specified server.
  • Integrated Security: To use the current Windows account for authentication, set this option to True. To authenticate with User and Password instead, set this option to False.
  • User Id: The username of a user registered with the selected SQL Server database. This property is only needed if you are not using integrated security.
  • Password: The password associated with the specified SQL Server user. This property is only needed if you are not using integrated security.

Oracle

The following are typical connection properties:

  • Data Source: The connect descriptor that identifies the Oracle database. This can be a TNS connect descriptor, an Oracle Net Services name that resolves to a connect descriptor, or, after version 11g, an Easy Connect naming (the host name of the Oracle server with an optional port and service name).

  • User Id: The username of a user registered with the selected Oracle database.
  • Password: The password associated with the specified Oracle user.

PostgreSQL

The following are typical connection properties:

  • Host: The address of the server hosting the PostgreSQL database.
  • Port: The port on the specified host server where your PostgreSQL database is hosted.
  • Database: The name of the PostgreSQL database you want to cache to. Must match the name of a PostgreSQL database hosted on the specified server.
  • User name: The username of a user registered with the selected PostgreSQL database.
  • Password: The password associated with the specified user.

CData Python Connector for Acumatica

CacheLocation

Specifies the path to the cache when caching to a file.

Data Type

string

Default Value

"%APPDATA%\\CData\\Acumatica Data Provider"

Remarks

The CacheLocation is a simple, file-based cache.

If left unspecified, the default location is %APPDATA%\\CData\\Acumatica Data Provider, where %APPDATA% is set to the user's configuration directory:

Platform %APPDATA%
Windows The value of the APPDATA environment variable
Linux ~/.config

See Also

  • AutoCache: Set to implicitly create and maintain a cache for later offline use.
  • CacheMetadata: Set to persist the Acumatica catalog in CacheLocation.

CData Python Connector for Acumatica

CacheTolerance

Notes the tolerance, in seconds, for stale data in the specified cache database. Requires AutoCache to be set to True.

Data Type

int

Default Value

600

Remarks

When you execute a query for tables in the cache, the connector checks the time elapsed since the last update to the cache.

If the last update to the cache is older than the value of this connection property (measured in seconds), the connector refreshes the cache.

Otherwise, the connector returns data directly from the cache.

CData Python Connector for Acumatica

Offline

Gets the data from the specified cache database instead of live Acumatica data.

Data Type

bool

Default Value

false

Remarks

When this connection property is set to True, all queries execute against the cache database instead of the live Acumatica data.

In this mode, some SQL operations like INSERT, UPDATE, DELETE, and CACHE are disabled.

CData Python Connector for Acumatica

CacheMetadata

Determines whether the provider caches table metadata to a file-based cache database.

Data Type

bool

Default Value

false

Remarks

When this connection property is set to True, as you execute queries, table metadata in the Acumatica catalog is cached to the cache database specified by CacheConnection and CacheProvider, or, if those connection properties are not set, to the user's home directory.

The location of your home directory varies by platform:

PlatformHome Directory
Windows %APPDATA%\\CData\\Acumatica Data Provider
Mac ~/Library/Application Support/CData/Acumatica Data Provider
Unix ~/.config/CData/Acumatica Data Provider

A table's metadata is retrieved only once, when the table is queried for the first time.

When to Use CacheMetadata

When there are a large number of Acumatica tables and columns for the connector to retrieve during metadata discovery, the connector may take a while to list all table metadata.

You may experience slow metadata retrieval when:

  • Your Acumatica instance naturally has a large table count.
  • The connector has been configured, via its connection properties, to discover more tables than it would under its default configuration.
  • You make many short-lived connections to the connector.
With CacheMetadata enabled, all retrieved metadata is mirrored in the cache database. This means that any subsequent attempts by the connector to discover metadata are much faster, as this metadata is then read directly from the cache database, without needing to spend time requesting metadata from Acumatica.

When Not to Use CacheMetadata

The connector automatically persists metadata in memory for up to an hour when you first discover the metadata for a table or view, so CacheMetadata is generally not necessary.

CacheMetadata is not ideal in scenarios where you are working with volatile metadata. The first time you query a table, the connector caches its metadata to the cache database file. This cache is not dynamically updated to reflect updates to the table schema, so you must delete and rebuild the cache database file to pick up new, changed, or deleted columns.

CData Python Connector for Acumatica

Miscellaneous

This section provides a complete list of the Miscellaneous properties you can configure in the connection string for this provider.


PropertyDescription
GenerateSchemaFilesIndicates the user preference as to when schemas should be generated and saved.
IncludeCustomFieldsWhether or not to retrieve custom fields that are added to Acumatica Screens.
InquiryTablesProvide a comma-separated list of general inquiry tables to expose them in the provider.
MaxRowsSpecifies the maximum number of rows returned for queries that do not include either aggregation or GROUP BY.
OtherSpecifies advanced connection properties for specialized scenarios. Use this property only under the guidance of our Support team to address specific issues.
PagesizeSpecifies the maximum number of records per page the provider returns when requesting data from Acumatica.
PseudoColumnsSpecifies the pseudocolumns to expose as table columns, expressed as a string in the format 'TableName=ColumnName;TableName=ColumnName'.
ReadonlyToggles read-only access to Acumatica from the provider.
RTKSpecifies the runtime key for licensing the provider. If unset or invalid, the provider defaults to the standard licensing method. This property is only required in environments where the standard licensing method is unsupported or requires a runtime key.
TimeoutSpecifies the maximum time, in seconds, that the provider waits for a server response before throwing a timeout error.
UserDefinedViewsSpecifies a filepath to a JSON configuration file that defines custom views. The provider automatically detects and uses the views specified in this file.
CData Python Connector for Acumatica

GenerateSchemaFiles

Indicates the user preference as to when schemas should be generated and saved.

Possible Values

Never, OnUse, OnStart, OnCreate

Data Type

string

Default Value

"Never"

Remarks

This property outputs schemas to .rsd files in the path specified by Location.

Available settings are the following:

  • Never: A schema file will never be generated.
  • OnUse: A schema file will be generated the first time a table is referenced, provided the schema file for the table does not already exist. For Acumatica, OnUse has the same behavior as OnStart.
  • OnStart: A schema file will be generated at connection time for any tables that do not currently have a schema file.
  • OnCreate: A schema file will be generated by when running a CREATE TABLE SQL query.
Note that if you want to regenerate a file, you will first need to delete it.

Generate Schemas with SQL

When you set GenerateSchemaFiles to OnUse, the connector generates schemas as you execute SELECT queries. Schemas are generated for each table referenced in the query. Note that in the case of connections to Acumatica, all metadata is obtained in a single request. Therefore, OnUse has the same behavior as OnStart.

When you set GenerateSchemaFiles to OnCreate, schemas are only generated when a CREATE TABLE query is executed.

Generate Schemas on Connection

Another way to use this property is to obtain schemas for every table in your database when you connect. To do so, set GenerateSchemaFiles to OnStart and connect.

CData Python Connector for Acumatica

IncludeCustomFields

Whether or not to retrieve custom fields that are added to Acumatica Screens.

Data Type

bool

Default Value

true

Remarks

Leave this set to true if you have custom fields added and have not extended the API to include custom fields in your entities. Set it to false if you don't want to retrieve custom fields.

Acumatica endpoints support a small amount of custom fields per request. Once a certain amount is reached, it is recommended to setup an extended endpoint and include the custom fields in it.

CData Python Connector for Acumatica

InquiryTables

Provide a comma-separated list of general inquiry tables to expose them in the provider.

Data Type

string

Default Value

""

Remarks

Inquiry tables in Contract 3 Acumatica API version 17.200.001 are: AccountByPeriodInquiry, AccountBySubaccountInquiry, AccountDetailsInquiry, AccountSummaryInquiry, InventoryAllocationInquiry, InventorySummaryInquiry, InvoicedItemsInquiry, SalesPricesInquiry,VendorPricesInquiry.

CData Python Connector for Acumatica

MaxRows

Specifies the maximum number of rows returned for queries that do not include either aggregation or GROUP BY.

Data Type

int

Default Value

-1

Remarks

The default value for this property, -1, means that no row limit is enforced unless the query explicitly includes a LIMIT clause. (When a query includes a LIMIT clause, the value specified in the query takes precedence over the MaxRows setting.)

Setting MaxRows to a whole number greater than 0 ensures that queries do not return excessively large result sets by default.

This property is useful for optimizing performance and preventing excessive resource consumption when executing queries that could otherwise return very large datasets.

CData Python Connector for Acumatica

Other

Specifies advanced connection properties for specialized scenarios. Use this property only under the guidance of our Support team to address specific issues.

Data Type

string

Default Value

""

Remarks

This property allows advanced users to configure hidden properties for specialized situations, with the advice of our Support team. These settings are not required for normal use cases but can address unique requirements or provide additional functionality. To define multiple properties, use a semicolon-separated list.

Note: It is strongly recommended to set these properties only when advised by the Support team to address specific scenarios or issues.

Caching Configuration

PropertyDescription
CachePartial=TrueCaches only a subset of columns, which you can specify in your query.
QueryPassthrough=TruePasses the specified query to the cache database instead of using the SQL parser of the connector.

Integration and Formatting

PropertyDescription
DefaultColumnSizeSets the default length of string fields when the data source does not provide column length in the metadata. The default value is 2000.
ConvertDateTimeToGMT=TrueConverts date-time values to GMT, instead of the local time of the machine. The default value is False (use local time).
RecordToFile=filenameRecords the underlying socket data transfer to the specified file.

CData Python Connector for Acumatica

Pagesize

Specifies the maximum number of records per page the provider returns when requesting data from Acumatica.

Data Type

int

Default Value

1000

Remarks

When processing a query, instead of requesting all of the queried data at once from Acumatica, the connector can request the queried data in pieces called pages.

This connection property determines the maximum number of results that the connector requests per page.

Note: Setting large page sizes may improve overall query execution time, but doing so causes the connector to use more memory when executing queries and risks triggering a timeout.

CData Python Connector for Acumatica

PseudoColumns

Specifies the pseudocolumns to expose as table columns, expressed as a string in the format 'TableName=ColumnName;TableName=ColumnName'.

Data Type

string

Default Value

""

Remarks

This property allows you to define which pseudocolumns the connector exposes as table columns.

To specify individual pseudocolumns, use the following format:

Table1=Column1;Table1=Column2;Table2=Column3

To include all pseudocolumns for all tables use:

*=*

CData Python Connector for Acumatica

Readonly

Toggles read-only access to Acumatica from the provider.

Data Type

bool

Default Value

false

Remarks

When set to True, the connector allows only SELECT queries. Attempting an INSERT, UPDATE, DELETE, or stored procedure query fails with an error message.

CData Python Connector for Acumatica

RTK

Specifies the runtime key for licensing the provider. If unset or invalid, the provider defaults to the standard licensing method. This property is only required in environments where the standard licensing method is unsupported or requires a runtime key.

Data Type

string

Default Value

""

Remarks

This property is typically unnecessary, as most configurations support a standard licensing mechanism.

Warning: The value of this property takes precedence over all existing licensing information. To avoid licensing errors, ensure the provided runtime key is correct.

CData Python Connector for Acumatica

Timeout

Specifies the maximum time, in seconds, that the provider waits for a server response before throwing a timeout error.

Data Type

int

Default Value

60

Remarks

The timeout applies to each individual communication with the server rather than the entire query or operation. For example, a query could continue running beyond 60 seconds if each paging call completes within the timeout limit.

Timeout is set to 60 seconds by default. To disable timeouts, set this property to 0.

Disabling the timeout allows operations to run indefinitely until they succeed or fail due to other conditions such as server-side timeouts, network interruptions, or resource limits on the server.

Note: Use this property cautiously to avoid long-running operations that could degrade performance or result in unresponsive behavior.

CData Python Connector for Acumatica

UserDefinedViews

Specifies a filepath to a JSON configuration file that defines custom views. The provider automatically detects and uses the views specified in this file.

Data Type

string

Default Value

""

Remarks

UserDefinedViews allows you to define and manage custom views through a JSON-formatted configuration file called UserDefinedViews.json. These views are automatically recognized by the connector and enable you to execute custom SQL queries as if they were standard database views. The JSON file defines each view as a root element with a child element called "query", which contains the SQL query for the view.

For example:

{
	"MyView": {
		"query": "SELECT * FROM Events WHERE MyColumn = 'value'"
	},
	"MyView2": {
		"query": "SELECT * FROM MyTable WHERE Id IN (1,2,3)"
	}
}

You can use this property to define multiple views in a single file and specify the filepath. For example:

UserDefinedViews=C:\Path\To\UserDefinedViews.json
When you specify a view in UserDefinedViews, the connector only sees that view.

For further information, see User Defined Views.

CData Python Connector for Acumatica

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AdoptOpenJDK / Adoptium Temurin JRE 17.0.18_8

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  • b) a copy of this Agreement must be included with each copy of the Program.
3.3 Contributors may not remove or alter any copyright, patent, trademark, attribution notices, disclaimers of warranty, or limitations of liability (‘notices') contained within the Program from any copy of the Program which they Distribute, provided that Contributors may add their own appropriate notices.

4. COMMERCIAL DISTRIBUTION Commercial distributors of software may accept certain responsibilities with respect to end users, business partners and the like. While this license is intended to facilitate the commercial use of the Program, the Contributor who includes the Program in a commercial product offering should do so in a manner which does not create potential liability for other Contributors. Therefore, if a Contributor includes the Program in a commercial product offering, such Contributor ("Commercial Contributor") hereby agrees to defend and indemnify every other Contributor ("Indemnified Contributor") against any losses, damages and costs (collectively "Losses") arising from claims, lawsuits and other legal actions brought by a third party against the Indemnified Contributor to the extent caused by the acts or omissions of such Commercial Contributor in connection with its distribution of the Program in a commercial product offering. The obligations in this section do not apply to any claims or Losses relating to any actual or alleged intellectual property infringement. In order to qualify, an Indemnified Contributor must: a) promptly notify the Commercial Contributor in writing of such claim, and b) allow the Commercial Contributor to control, and cooperate with the Commercial Contributor in, the defense and any related settlement negotiations. The Indemnified Contributor may participate in any such claim at its own expense.

For example, a Contributor might include the Program in a commercial product offering, Product X. That Contributor is then a Commercial Contributor. If that Commercial Contributor then makes performance claims, or offers warranties related to Product X, those performance claims and warranties are such Commercial Contributor's responsibility alone. Under this section, the Commercial Contributor would have to defend claims against the other Contributors related to those performance claims and warranties, and if a court requires any other Contributor to pay any damages as a result, the Commercial Contributor must pay those damages.

5. NO WARRANTY EXCEPT AS EXPRESSLY SET FORTH IN THIS AGREEMENT, AND TO THE EXTENT PERMITTED BY APPLICABLE LAW, THE PROGRAM IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED INCLUDING, WITHOUT LIMITATION, ANY WARRANTIES OR CONDITIONS OF TITLE, NON-INFRINGEMENT, MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Each Recipient is solely responsible for determining the appropriateness of using and distributing the Program and assumes all risks associated with its exercise of rights under this Agreement, including but not limited to the risks and costs of program errors, compliance with applicable laws, damage to or loss of data, programs or equipment, and unavailability or interruption of operations.

6. DISCLAIMER OF LIABILITY EXCEPT AS EXPRESSLY SET FORTH IN THIS AGREEMENT, AND TO THE EXTENT PERMITTED BY APPLICABLE LAW, NEITHER RECIPIENT NOR ANY CONTRIBUTORS SHALL HAVE ANY LIABILITY FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING WITHOUT LIMITATION LOST PROFITS), HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OR DISTRIBUTION OF THE PROGRAM OR THE EXERCISE OF ANY RIGHTS GRANTED HEREUNDER, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.

7. GENERAL If any provision of this Agreement is invalid or unenforceable under applicable law, it shall not affect the validity or enforceability of the remainder of the terms of this Agreement, and without further action by the parties hereto, such provision shall be reformed to the minimum extent necessary to make such provision valid and enforceable.

If Recipient institutes patent litigation against any entity (including a cross-claim or counterclaim in a lawsuit) alleging that the Program itself (excluding combinations of the Program with other software or hardware) infringes such Recipient's patent(s), then such Recipient's rights granted under Section 2(b) shall terminate as of the date such litigation is filed.

All Recipient's rights under this Agreement shall terminate if it fails to comply with any of the material terms or conditions of this Agreement and does not cure such failure in a reasonable period of time after becoming aware of such noncompliance. If all Recipient's rights under this Agreement terminate, Recipient agrees to cease use and distribution of the Program as soon as reasonably practicable. However, Recipient's obligations under this Agreement and any licenses granted by Recipient relating to the Program shall continue and survive.

Everyone is permitted to copy and distribute copies of this Agreement, but in order to avoid inconsistency the Agreement is copyrighted and may only be modified in the following manner. The Agreement Steward reserves the right to publish new versions (including revisions) of this Agreement from time to time. No one other than the Agreement Steward has the right to modify this Agreement. The Eclipse Foundation is the initial Agreement Steward. The Eclipse Foundation may assign the responsibility to serve as the Agreement Steward to a suitable separate entity. Each new version of the Agreement will be given a distinguishing version number. The Program (including Contributions) may always be Distributed subject to the version of the Agreement under which it was received. In addition, after a new version of the Agreement is published, Contributor may elect to Distribute the Program (including its Contributions) under the new version.

Except as expressly stated in Sections 2(a) and 2(b) above, Recipient receives no rights or licenses to the intellectual property of any Contributor under this Agreement, whether expressly, by implication, estoppel or otherwise. All rights in the Program not expressly granted under this Agreement are reserved. Nothing in this Agreement is intended to be enforceable by any entity that is not a Contributor or Recipient. No third-party beneficiary rights are created under this Agreement.

Exhibit A – Form of Secondary Licenses Notice "This Source Code may also be made available under the following Secondary Licenses when the conditions for such availability set forth in the Eclipse Public License, v. 2.0 are satisfied: {name license(s), version(s), and exceptions or additional permissions here}."

Simply including a copy of this Agreement, including this Exhibit A is not sufficient to license the Source Code under Secondary Licenses.

If it is not possible or desirable to put the notice in a particular file, then You may include the notice in a location (such as a LICENSE file in a relevant directory) where a recipient would be likely to look for such a notice.

You may add additional accurate notices of copyright ownership.

GNU Classpath

Classpath is distributed under the terms of the GNU General Public License with the following clarification and special exception.

Linking this library statically or dynamically with other modules is making a combined work based on this library. Thus, the terms and conditions of the GNU General Public License cover the whole combination.

As a special exception, the copyright holders of this library give you permission to link this library with independent modules to produce an executable, regardless of the license terms of these independent modules, and to copy and distribute the resulting executable under terms of your choice, provided that you also meet, for each linked independent module, the terms and conditions of the license of that module. An independent module is a module which is not derived from or based on this library. If you modify this library, you may extend this exception to your version of the library, but you are not obligated to do so. If you do not wish to do so, delete this exception statement from your version.

As such, it can be used to run, create and distribute a large class of applications and applets. When GNU Classpath is used unmodified as the core class library for a virtual machine, compiler for the java languge, or for a program written in the java programming language it does not affect the licensing for distributing those programs directly.

OpenJDK Assembly Exception

The OpenJDK source code made available by Oracle America, Inc. (Oracle) at openjdk.java.net ("OpenJDK Code") is distributed under the terms of the GNU General Public License <http://www.gnu.org/copyleft/gpl.html> version 2 only ("GPL2"), with the following clarification and special exception.

Linking this OpenJDK Code statically or dynamically with other code is making a combined work based on this library. Thus, the terms and conditions of GPL2 cover the whole combination.

As a special exception, Oracle gives you permission to link this OpenJDK Code with certain code licensed by Oracle as indicated at http://openjdk.java.net/legal/exception-modules-2007-05-08.html ("Designated Exception Modules") to produce an executable, regardless of the license terms of the Designated Exception Modules, and to copy and distribute the resulting executable under GPL2, provided that the Designated Exception Modules continue to be governed by the licenses under which they were offered by Oracle.

As such, it allows licensees and sublicensees of Oracle's GPL2 OpenJDK Code to build an executable that includes those portions of necessary code that Oracle could not provide under GPL2 (or that Oracle has provided under GPL2 with the Classpath exception). If you modify or add to the OpenJDK code, that new GPL2 code may still be combined with Designated Exception Modules if the new code is made subject to this exception by its copyright holder.

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