67f62a79c1
add support of modbus master ascii rename base dir name of master and slave example to be mb_slave, mb_master to avoid conflict with sdio/slave example test add Kconfig option to enable ASCII and RTU mode separately update ASCII options + remove cast for errors added baudrate for examples into Kconfig updated magic numbers for timer timeout put ascii private definitions into one file
252 lines
9.8 KiB
C
252 lines
9.8 KiB
C
/* Copyright 2018 Espressif Systems (Shanghai) PTE LTD
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "esp_err.h" // for esp_err_t
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#include "sdkconfig.h" // for KConfig defines
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#include "mbc_slave.h" // for slave private type definitions
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#include "esp_modbus_common.h" // for common defines
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#include "esp_modbus_slave.h" // for public slave defines
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#include "esp_modbus_callbacks.h" // for modbus callbacks function pointers declaration
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#include "mbc_serial_slave.h" // for create function of serial port
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#ifdef CONFIG_FMB_CONTROLLER_SLAVE_ID_SUPPORT
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#define MB_ID_BYTE0(id) ((uint8_t)(id))
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#define MB_ID_BYTE1(id) ((uint8_t)(((uint16_t)(id) >> 8) & 0xFF))
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#define MB_ID_BYTE2(id) ((uint8_t)(((uint32_t)(id) >> 16) & 0xFF))
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#define MB_ID_BYTE3(id) ((uint8_t)(((uint32_t)(id) >> 24) & 0xFF))
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#define MB_CONTROLLER_SLAVE_ID (CONFIG_FMB_CONTROLLER_SLAVE_ID)
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#define MB_SLAVE_ID_SHORT (MB_ID_BYTE3(CONFIG_FMB_CONTROLLER_SLAVE_ID))
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// Slave ID constant
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static uint8_t mb_slave_id[] = { MB_ID_BYTE0(MB_CONTROLLER_SLAVE_ID),
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MB_ID_BYTE1(MB_CONTROLLER_SLAVE_ID),
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MB_ID_BYTE2(MB_CONTROLLER_SLAVE_ID) };
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#endif
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// Common interface pointer for slave port
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static mb_slave_interface_t* slave_interface_ptr = NULL;
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/**
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* Initialization of Modbus slave controller
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*/
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esp_err_t mbc_slave_init(mb_port_type_t port_type, void** handler)
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{
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void* port_handler = NULL;
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esp_err_t error = ESP_ERR_NOT_SUPPORTED;
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switch(port_type)
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{
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case MB_PORT_SERIAL_SLAVE:
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// Call constructor function of actual port implementation
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error = mbc_serial_slave_create(port_type, &port_handler);
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break;
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case MB_PORT_TCP_SLAVE:
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// Not yet supported
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//error = mbc_tcp_slave_create(port_type, &port_handler);
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return ESP_ERR_NOT_SUPPORTED;
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default:
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return ESP_ERR_NOT_SUPPORTED;
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}
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MB_SLAVE_CHECK((port_handler != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface initialization failure, error=(0x%x), port type=(0x%x).",
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error, (uint16_t)port_type);
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if ((port_handler != NULL) && (error == ESP_OK)) {
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slave_interface_ptr = (mb_slave_interface_t*) port_handler;
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*handler = port_handler;
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}
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return error;
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}
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/**
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* Modbus controller destroy function
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*/
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esp_err_t mbc_slave_destroy(void)
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{
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esp_err_t error = ESP_OK;
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// Is initialization done?
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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// Check if interface has been initialized
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MB_SLAVE_CHECK((slave_interface_ptr->destroy != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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// Call the slave port destroy function
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error = slave_interface_ptr->destroy();
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MB_SLAVE_CHECK((error == ESP_OK),
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ESP_ERR_INVALID_STATE,
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"SERIAL slave destroy failure error=(0x%x).", error);
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return error;
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}
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/**
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* Setup Modbus controller parameters
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*/
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esp_err_t mbc_slave_setup(void* comm_info)
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{
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esp_err_t error = ESP_OK;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->setup != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->setup(comm_info);
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MB_SLAVE_CHECK((error == ESP_OK),
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ESP_ERR_INVALID_STATE,
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"SERIAL slave setup failure error=(0x%x).", error);
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return error;
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}
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/**
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* Start Modbus controller start function
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*/
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esp_err_t mbc_slave_start(void)
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{
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esp_err_t error = ESP_OK;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->start != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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#ifdef CONFIG_FMB_CONTROLLER_SLAVE_ID_SUPPORT
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// Set the slave ID if the KConfig option is selected
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eMBErrorCode status = eMBSetSlaveID(MB_SLAVE_ID_SHORT, TRUE, (UCHAR*)mb_slave_id, sizeof(mb_slave_id));
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MB_SLAVE_CHECK((status == MB_ENOERR), ESP_ERR_INVALID_STATE, "mb stack set slave ID failure.");
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#endif
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error = slave_interface_ptr->start();
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MB_SLAVE_CHECK((error == ESP_OK),
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error, "SERIAL slave start failure error=(0x%x).", error);
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return error;
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}
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/**
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* Blocking function to get event on parameter group change for application task
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*/
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mb_event_group_t mbc_slave_check_event(mb_event_group_t group)
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{
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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MB_EVENT_NO_EVENTS,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->check_event != NULL),
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MB_EVENT_NO_EVENTS,
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"Slave interface is not correctly initialized.");
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mb_event_group_t event = slave_interface_ptr->check_event(group);
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return event;
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}
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/**
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* Function to get notification about parameter change from application task
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*/
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esp_err_t mbc_slave_get_param_info(mb_param_info_t* reg_info, uint32_t timeout)
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{
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esp_err_t error = ESP_OK;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->get_param_info != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->get_param_info(reg_info, timeout);
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MB_SLAVE_CHECK((error == ESP_OK),
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error, "SERIAL slave get parameter info failure error=(0x%x).", error);
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return error;
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}
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/**
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* Function to set area descriptors for modbus parameters
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*/
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esp_err_t mbc_slave_set_descriptor(mb_register_area_descriptor_t descr_data)
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{
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esp_err_t error = ESP_OK;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->set_descriptor != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->set_descriptor(descr_data);
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MB_SLAVE_CHECK((error == ESP_OK),
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error, "SERIAL slave set descriptor failure error=(0x%x).", error);
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return error;
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}
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/**
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* Below are stack callback functions to read/write registers
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*/
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eMBErrorCode eMBRegDiscreteCB(UCHAR * pucRegBuffer, USHORT usAddress,
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USHORT usNDiscrete)
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{
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eMBErrorCode error = MB_ENOERR;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->slave_reg_cb_discrete != NULL),
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error,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->slave_reg_cb_discrete(pucRegBuffer, usAddress, usNDiscrete);
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return error;
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}
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eMBErrorCode eMBRegCoilsCB(UCHAR* pucRegBuffer, USHORT usAddress,
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USHORT usNCoils, eMBRegisterMode eMode)
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{
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eMBErrorCode error = MB_ENOERR;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->slave_reg_cb_coils != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->slave_reg_cb_coils(pucRegBuffer, usAddress,
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usNCoils, eMode);
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return error;
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}
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eMBErrorCode eMBRegHoldingCB(UCHAR * pucRegBuffer, USHORT usAddress,
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USHORT usNRegs, eMBRegisterMode eMode)
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{
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eMBErrorCode error = MB_ENOERR;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->slave_reg_cb_holding != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->slave_reg_cb_holding(pucRegBuffer, usAddress,
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usNRegs, eMode);
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return error;
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}
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eMBErrorCode eMBRegInputCB(UCHAR * pucRegBuffer, USHORT usAddress,
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USHORT usNRegs)
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{
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eMBErrorCode error = MB_ENOERR;
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MB_SLAVE_CHECK((slave_interface_ptr != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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MB_SLAVE_CHECK((slave_interface_ptr->slave_reg_cb_input != NULL),
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ESP_ERR_INVALID_STATE,
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"Slave interface is not correctly initialized.");
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error = slave_interface_ptr->slave_reg_cb_input(pucRegBuffer, usAddress, usNRegs);
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return error;
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}
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