540 lines
15 KiB
C++
540 lines
15 KiB
C++
/*
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* Generated by erpcgen 1.14.0 on Tue Apr 28 13:10:25 2026.
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*
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* AUTOGENERATED - DO NOT EDIT
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*/
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#include "servo_service_server.hpp"
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#if ERPC_ALLOCATION_POLICY == ERPC_ALLOCATION_POLICY_DYNAMIC
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#include <new>
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#include "erpc_port.h"
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#endif
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#include "erpc_manually_constructed.hpp"
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#if 11400 != ERPC_VERSION_NUMBER
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#error "The generated shim code version is different to the rest of eRPC code."
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#endif
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using namespace erpc;
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using namespace std;
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using namespace erpcShim;
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#if ERPC_NESTED_CALLS_DETECTION
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extern bool nestingDetection;
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#endif
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//! @brief Function to read struct ServoCmd
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static void read_ServoCmd_struct(erpc::Codec * codec, ServoCmd * data);
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//! @brief Function to read struct list_ServoCmd_1_t
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static void read_list_ServoCmd_1_t_struct(erpc::Codec * codec, list_ServoCmd_1_t * data);
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//! @brief Function to read struct list_float_1_t
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static void read_list_float_1_t_struct(erpc::Codec * codec, list_float_1_t * data);
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// Read struct ServoCmd function implementation
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static void read_ServoCmd_struct(erpc::Codec * codec, ServoCmd * data)
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{
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if(NULL == data)
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{
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return;
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}
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{
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uint32_t id_len;
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char * id_local;
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codec->readString(id_len, &id_local);
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data->id = (char*) erpc_malloc((id_len + 1) * sizeof(char));
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if ((data->id == NULL) || (id_local == NULL))
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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else
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{
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memcpy(data->id, id_local, id_len);
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(data->id)[id_len] = 0;
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}
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}
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codec->read(data->angle_rad);
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}
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// Read struct list_ServoCmd_1_t function implementation
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static void read_list_ServoCmd_1_t_struct(erpc::Codec * codec, list_ServoCmd_1_t * data)
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{
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if(NULL == data)
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{
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return;
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}
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codec->startReadList(data->elementsCount);
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data->elements = (ServoCmd *) erpc_malloc(data->elementsCount * sizeof(ServoCmd));
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if ((data->elements == NULL) && (data->elementsCount > 0))
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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for (uint32_t listCount = 0U; listCount < data->elementsCount; ++listCount)
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{
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read_ServoCmd_struct(codec, &(data->elements[listCount]));
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}
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}
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// Read struct list_float_1_t function implementation
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static void read_list_float_1_t_struct(erpc::Codec * codec, list_float_1_t * data)
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{
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if(NULL == data)
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{
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return;
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}
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codec->startReadList(data->elementsCount);
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data->elements = (float *) erpc_malloc(data->elementsCount * sizeof(float));
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if ((data->elements == NULL) && (data->elementsCount > 0))
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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for (uint32_t listCount = 0U; listCount < data->elementsCount; ++listCount)
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{
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codec->read(data->elements[listCount]);
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}
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}
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//! @brief Function to free space allocated inside struct ServoCmd
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static void free_ServoCmd_struct(ServoCmd * data);
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//! @brief Function to free space allocated inside struct list_ServoCmd_1_t
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static void free_list_ServoCmd_1_t_struct(list_ServoCmd_1_t * data);
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//! @brief Function to free space allocated inside struct list_float_1_t
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static void free_list_float_1_t_struct(list_float_1_t * data);
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// Free space allocated inside struct ServoCmd function implementation
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static void free_ServoCmd_struct(ServoCmd * data)
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{
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erpc_free(data->id);
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}
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// Free space allocated inside struct list_ServoCmd_1_t function implementation
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static void free_list_ServoCmd_1_t_struct(list_ServoCmd_1_t * data)
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{
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for (uint32_t listCount = 0; listCount < data->elementsCount; ++listCount)
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{
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free_ServoCmd_struct(&data->elements[listCount]);
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}
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erpc_free(data->elements);
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}
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// Free space allocated inside struct list_float_1_t function implementation
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static void free_list_float_1_t_struct(list_float_1_t * data)
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{
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erpc_free(data->elements);
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}
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servo_service_service::servo_service_service(servo_service_interface *_servo_service_interface)
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: erpc::Service(servo_service_interface::m_serviceId)
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, m_handler(_servo_service_interface)
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{
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}
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servo_service_service::~servo_service_service()
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{
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}
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// return service interface handler.
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servo_service_interface* servo_service_service::getHandler(void)
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{
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return m_handler;
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}
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// Call the correct server shim based on method unique ID.
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erpc_status_t servo_service_service::handleInvocation(uint32_t methodId, uint32_t sequence, Codec * codec, MessageBufferFactory *messageFactory, Transport * transport)
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{
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erpc_status_t erpcStatus;
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switch (methodId)
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{
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case servo_service_interface::m_setConstraintsId:
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{
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erpcStatus = setConstraints_shim(codec, messageFactory, transport, sequence);
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break;
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}
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case servo_service_interface::m_setPositionGainId:
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{
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erpcStatus = setPositionGain_shim(codec, messageFactory, transport, sequence);
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break;
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}
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case servo_service_interface::m_setModeId:
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{
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erpcStatus = setMode_shim(codec, messageFactory, transport, sequence);
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break;
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}
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case servo_service_interface::m_setUpdatePeriodMsId:
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{
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erpcStatus = setUpdatePeriodMs_shim(codec, messageFactory, transport, sequence);
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break;
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}
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case servo_service_interface::m_moveId:
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{
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erpcStatus = move_shim(codec, messageFactory, transport, sequence);
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break;
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}
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case servo_service_interface::m_moveJId:
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{
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erpcStatus = moveJ_shim(codec, messageFactory, transport, sequence);
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break;
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}
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default:
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{
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erpcStatus = kErpcStatus_InvalidArgument;
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break;
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}
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}
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return erpcStatus;
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}
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// Server shim for setConstraints of servo_service interface.
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erpc_status_t servo_service_service::setConstraints_shim(Codec * codec, MessageBufferFactory *messageFactory, Transport * transport, uint32_t sequence)
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{
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erpc_status_t err = kErpcStatus_Success;
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char * id = NULL;
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float max_velocity_rad;
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float max_acceleration_rad;
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float max_jerk_rad;
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bool result;
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// startReadMessage() was already called before this shim was invoked.
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{
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uint32_t id_len;
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char * id_local;
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codec->readString(id_len, &id_local);
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id = (char*) erpc_malloc((id_len + 1) * sizeof(char));
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if ((id == NULL) || (id_local == NULL))
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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else
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{
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memcpy(id, id_local, id_len);
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(id)[id_len] = 0;
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}
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}
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codec->read(max_velocity_rad);
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codec->read(max_acceleration_rad);
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codec->read(max_jerk_rad);
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err = codec->getStatus();
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if (err == kErpcStatus_Success)
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{
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// Invoke the actual served function.
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = true;
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#endif
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result = m_handler->setConstraints(id, max_velocity_rad, max_acceleration_rad, max_jerk_rad);
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = false;
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#endif
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// preparing MessageBuffer for serializing data
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err = messageFactory->prepareServerBufferForSend(codec->getBufferRef(), transport->reserveHeaderSize());
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}
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if (err == kErpcStatus_Success)
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{
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// preparing codec for serializing data
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codec->reset(transport->reserveHeaderSize());
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// Build response message.
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codec->startWriteMessage(message_type_t::kReplyMessage, servo_service_interface::m_serviceId, servo_service_interface::m_setConstraintsId, sequence);
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codec->write(result);
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err = codec->getStatus();
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}
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erpc_free(id);
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return err;
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}
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// Server shim for setPositionGain of servo_service interface.
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erpc_status_t servo_service_service::setPositionGain_shim(Codec * codec, MessageBufferFactory *messageFactory, Transport * transport, uint32_t sequence)
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{
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erpc_status_t err = kErpcStatus_Success;
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char * id = NULL;
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float position_gain;
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bool result;
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// startReadMessage() was already called before this shim was invoked.
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{
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uint32_t id_len;
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char * id_local;
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codec->readString(id_len, &id_local);
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id = (char*) erpc_malloc((id_len + 1) * sizeof(char));
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if ((id == NULL) || (id_local == NULL))
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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else
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{
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memcpy(id, id_local, id_len);
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(id)[id_len] = 0;
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}
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}
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codec->read(position_gain);
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err = codec->getStatus();
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if (err == kErpcStatus_Success)
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{
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// Invoke the actual served function.
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = true;
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#endif
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result = m_handler->setPositionGain(id, position_gain);
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = false;
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#endif
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// preparing MessageBuffer for serializing data
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err = messageFactory->prepareServerBufferForSend(codec->getBufferRef(), transport->reserveHeaderSize());
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}
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if (err == kErpcStatus_Success)
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{
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// preparing codec for serializing data
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codec->reset(transport->reserveHeaderSize());
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// Build response message.
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codec->startWriteMessage(message_type_t::kReplyMessage, servo_service_interface::m_serviceId, servo_service_interface::m_setPositionGainId, sequence);
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codec->write(result);
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err = codec->getStatus();
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}
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erpc_free(id);
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return err;
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}
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// Server shim for setMode of servo_service interface.
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erpc_status_t servo_service_service::setMode_shim(Codec * codec, MessageBufferFactory *messageFactory, Transport * transport, uint32_t sequence)
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{
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erpc_status_t err = kErpcStatus_Success;
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RpcMotionMode mode;
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int32_t _tmp_local_i32;
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bool result;
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// startReadMessage() was already called before this shim was invoked.
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codec->read(_tmp_local_i32);
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mode = static_cast<RpcMotionMode>(_tmp_local_i32);
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err = codec->getStatus();
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if (err == kErpcStatus_Success)
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{
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// Invoke the actual served function.
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = true;
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#endif
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result = m_handler->setMode(mode);
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = false;
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#endif
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// preparing MessageBuffer for serializing data
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err = messageFactory->prepareServerBufferForSend(codec->getBufferRef(), transport->reserveHeaderSize());
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}
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if (err == kErpcStatus_Success)
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{
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// preparing codec for serializing data
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codec->reset(transport->reserveHeaderSize());
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// Build response message.
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codec->startWriteMessage(message_type_t::kReplyMessage, servo_service_interface::m_serviceId, servo_service_interface::m_setModeId, sequence);
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codec->write(result);
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err = codec->getStatus();
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}
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return err;
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}
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// Server shim for setUpdatePeriodMs of servo_service interface.
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erpc_status_t servo_service_service::setUpdatePeriodMs_shim(Codec * codec, MessageBufferFactory *messageFactory, Transport * transport, uint32_t sequence)
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{
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erpc_status_t err = kErpcStatus_Success;
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uint32_t ms;
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bool result;
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// startReadMessage() was already called before this shim was invoked.
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codec->read(ms);
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err = codec->getStatus();
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if (err == kErpcStatus_Success)
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{
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// Invoke the actual served function.
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = true;
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#endif
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result = m_handler->setUpdatePeriodMs(ms);
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = false;
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#endif
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// preparing MessageBuffer for serializing data
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err = messageFactory->prepareServerBufferForSend(codec->getBufferRef(), transport->reserveHeaderSize());
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}
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if (err == kErpcStatus_Success)
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{
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// preparing codec for serializing data
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codec->reset(transport->reserveHeaderSize());
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// Build response message.
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codec->startWriteMessage(message_type_t::kReplyMessage, servo_service_interface::m_serviceId, servo_service_interface::m_setUpdatePeriodMsId, sequence);
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codec->write(result);
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err = codec->getStatus();
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}
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return err;
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}
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// Server shim for move of servo_service interface.
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erpc_status_t servo_service_service::move_shim(Codec * codec, MessageBufferFactory *messageFactory, Transport * transport, uint32_t sequence)
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{
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erpc_status_t err = kErpcStatus_Success;
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list_ServoCmd_1_t *cmds = NULL;
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cmds = (list_ServoCmd_1_t *) erpc_malloc(sizeof(list_ServoCmd_1_t));
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if (cmds == NULL)
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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int32_t result;
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// startReadMessage() was already called before this shim was invoked.
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read_list_ServoCmd_1_t_struct(codec, cmds);
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err = codec->getStatus();
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if (err == kErpcStatus_Success)
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{
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// Invoke the actual served function.
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = true;
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#endif
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result = m_handler->move(cmds);
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = false;
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#endif
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// preparing MessageBuffer for serializing data
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err = messageFactory->prepareServerBufferForSend(codec->getBufferRef(), transport->reserveHeaderSize());
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}
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if (err == kErpcStatus_Success)
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{
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// preparing codec for serializing data
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codec->reset(transport->reserveHeaderSize());
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// Build response message.
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codec->startWriteMessage(message_type_t::kReplyMessage, servo_service_interface::m_serviceId, servo_service_interface::m_moveId, sequence);
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codec->write(result);
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err = codec->getStatus();
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}
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if (cmds)
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{
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free_list_ServoCmd_1_t_struct(cmds);
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}
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erpc_free(cmds);
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return err;
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}
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// Server shim for moveJ of servo_service interface.
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erpc_status_t servo_service_service::moveJ_shim(Codec * codec, MessageBufferFactory *messageFactory, Transport * transport, uint32_t sequence)
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{
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erpc_status_t err = kErpcStatus_Success;
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list_float_1_t *angles_rad = NULL;
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angles_rad = (list_float_1_t *) erpc_malloc(sizeof(list_float_1_t));
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if (angles_rad == NULL)
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{
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codec->updateStatus(kErpcStatus_MemoryError);
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}
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int32_t result;
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// startReadMessage() was already called before this shim was invoked.
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read_list_float_1_t_struct(codec, angles_rad);
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err = codec->getStatus();
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if (err == kErpcStatus_Success)
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{
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// Invoke the actual served function.
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = true;
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#endif
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result = m_handler->moveJ(angles_rad);
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#if ERPC_NESTED_CALLS_DETECTION
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nestingDetection = false;
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#endif
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// preparing MessageBuffer for serializing data
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err = messageFactory->prepareServerBufferForSend(codec->getBufferRef(), transport->reserveHeaderSize());
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}
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if (err == kErpcStatus_Success)
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{
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// preparing codec for serializing data
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codec->reset(transport->reserveHeaderSize());
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// Build response message.
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codec->startWriteMessage(message_type_t::kReplyMessage, servo_service_interface::m_serviceId, servo_service_interface::m_moveJId, sequence);
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codec->write(result);
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err = codec->getStatus();
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}
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if (angles_rad)
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{
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free_list_float_1_t_struct(angles_rad);
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}
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erpc_free(angles_rad);
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return err;
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}
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