258 lines
8.7 KiB
C
258 lines
8.7 KiB
C
/**
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****************************************************************************************
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*
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* @file mm_genc_oo.c
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*
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* @brief Mesh Model Generic OnOff Client Module
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*
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****************************************************************************************
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*/
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/**
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****************************************************************************************
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* @addtogroup MM_GENC_OO
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* @{
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****************************************************************************************
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*/
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/*
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* INCLUDE FILES
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****************************************************************************************
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*/
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#include "mm_itf.h"
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#include "mm_genc.h"
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/*
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* TYPE DEFINITIONS
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****************************************************************************************
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*/
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/// Structure for Generic OnOff Client model environment
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typedef struct mm_genc_oo_env
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{
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/// Basic model environment - Must be first element in the structure - DO NOT MOVE
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mm_mdl_env_t env;
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} mm_genc_oo_env_t;
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/*
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* INTERNAL CALLBACK FUNCTIONS
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****************************************************************************************
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*/
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/**
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****************************************************************************************
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* @brief Inform Generic OnOff Client model about reception of a message
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*
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* @param[in] p_env Pointer to the environment allocated for the model
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* @param[in] p_buf Pointer to buffer containing the received message
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* @param[in] p_route_env Pointer to routing environment containing information about the
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* received message
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****************************************************************************************
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*/
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__STATIC void mm_genc_oo_cb_rx(mm_mdl_env_t *p_env, mesh_buf_t *p_buf,
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mm_route_env_t *p_route_env)
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{
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if (p_route_env->opcode == MM_MSG_GEN_OO_STATUS)
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{
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// Get pointer to data
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uint8_t *p_data = MESH_BUF_DATA(p_buf);
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// Current state
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uint8_t cur_state = *(p_data + MM_GEN_OO_STATUS_OO_POS);
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// Target state
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uint8_t tgt_state = 0;
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// Remaining time
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uint8_t rem_time = 0;
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// Read optional parameters if presents
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if (p_buf->data_len == MM_GEN_OO_STATUS_LEN)
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{
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tgt_state = *(p_data + MM_GEN_OO_STATUS_TGT_OO_POS);
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rem_time = *(p_data + MM_GEN_OO_STATUS_REM_TIME_POS);
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}
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// Inform the application about the received Generic OnOff state value
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mm_cli_state_ind_send(p_route_env->u_addr.src, MM_STATE_GEN_ONOFF, cur_state,
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tgt_state, mm_get_trans_time_ms(rem_time));
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}
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}
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/**
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****************************************************************************************
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* @brief Inform Generic OnOff Client model about a received opcode in order to check if the
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* model is authorized to handle the associated message
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*
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* @param[in] p_env Pointer to the environment allocated for the model
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* @param[in] opcode Opcode value to be checked
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*
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* @return An error status (@see enum mesh_err)
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****************************************************************************************
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*/
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__STATIC uint8_t mm_genc_oo_cb_opcode_check(mm_mdl_env_t *p_env, uint32_t opcode)
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{
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uint8_t status;
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if (opcode == MM_MSG_GEN_OO_STATUS)
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{
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status = MESH_ERR_NO_ERROR;
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}
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else
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{
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status = MESH_ERR_MDL_INVALID_OPCODE;
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}
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return (status);
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}
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/**
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****************************************************************************************
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* @brief Send a Generic OnOff Get message to a given node's element
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*
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* @param[in] p_env Pointer to the environment allocated for the model
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* @param[in] dst Address of node's element to which message will be sent
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*
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* @return An error status (@see enum mesh_err)
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****************************************************************************************
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*/
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__STATIC uint8_t mm_genc_oo_cb_get(mm_mdl_env_t *p_env, m_lid_t app_key_lid, uint16_t dst,
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uint16_t get_info)
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{
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uint8_t status = MESH_ERR_NO_ERROR;
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// Pointer to the buffer that will contain the message
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mesh_buf_t *p_buf_get = mm_route_buf_alloc(0);
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if (p_buf_get)
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{
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// Get pointer to environment
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mm_route_env_t *p_buf_env = (mm_route_env_t *)&p_buf_get->env;
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// Prepare environment
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p_buf_env->app_key_lid = app_key_lid;
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p_buf_env->u_addr.dst = dst;
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p_buf_env->info = 0;
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p_buf_env->mdl_lid = p_env->mdl_lid;
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p_buf_env->opcode = MM_MSG_GEN_OO_GET;
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// Send the message
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mm_route_send(p_buf_get);
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}
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else
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{
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status = MESH_ERR_INSUFFICIENT_RESOURCES;
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}
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return (status);
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}
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/**
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****************************************************************************************
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* @brief Initiate transition of Generic OnOff state value on a given node's element by
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* sending either a Generic OnOff Set or a Generic OnOff Set Unacknowledged message
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*
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* @param[in] p_env Pointer to the environment allocated for the model
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* @param[in] dst Address of node's element to which message will be sent
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* @param[in] state_1 Target Generic OnOff state value
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* @param[in] state_2 N\A
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* @param[in] trans_time_ms Transition time in milliseconds
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* @param[in] delay_ms Delay in milliseconds
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* @param[in] trans_info Transition information (@see enum mm_trans_info)
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*
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* @return An error status (@see enum mesh_err)
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****************************************************************************************
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*/
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__STATIC uint8_t mm_genc_oo_cb_trans(mm_mdl_env_t *p_env, m_lid_t app_key_lid, uint16_t dst,
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uint32_t state_1, uint32_t state_2,
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uint32_t trans_time_ms, uint16_t delay_ms,
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uint16_t trans_info)
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{
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uint8_t status = MESH_ERR_NO_ERROR;
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// Get message length
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uint8_t length = (GETB(trans_info, MM_TRANS_INFO_LONG) || trans_time_ms || delay_ms)
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? MM_GEN_OO_SET_LEN : MM_GEN_OO_SET_MIN_LEN;
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// Pointer to the buffer that will contain the message
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mesh_buf_t *p_buf_set = mm_route_buf_alloc(length);
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if (p_buf_set)
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{
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// Get pointer to data
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uint8_t *p_data = MESH_BUF_DATA(p_buf_set);
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// Get pointer to environment
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mm_route_env_t *p_buf_env = (mm_route_env_t *)&p_buf_set->env;
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// Generic OnOff state value
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uint8_t onoff = state_1;
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// Prepare environment
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p_buf_env->app_key_lid = app_key_lid;
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p_buf_env->u_addr.dst = dst;
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p_buf_env->info = 0;
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p_buf_env->mdl_lid = p_env->mdl_lid;
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p_buf_env->opcode = GETB(trans_info, MM_TRANS_INFO_ACK)
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? MM_MSG_GEN_OO_SET : MM_MSG_GEN_OO_SET_UNACK;
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// Fill the message
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*(p_data + MM_GEN_OO_SET_OO_POS) = onoff;
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*(p_data + MM_GEN_OO_SET_TID_POS) = GETF(trans_info, MM_TRANS_INFO_TID);
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if (length == MM_GEN_OO_SET_LEN)
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{
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*(p_data + MM_GEN_OO_SET_TRANS_TIME_POS) = mm_get_trans_time(trans_time_ms);
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*(p_data + MM_GEN_OO_SET_DELAY_POS) = delay_ms / 5;
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}
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// Send the message
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mm_route_send(p_buf_set);
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}
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else
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{
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status = MESH_ERR_INSUFFICIENT_RESOURCES;
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}
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return (status);
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}
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/*
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* GLOBAL FUNCTIONS
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****************************************************************************************
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*/
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__STATIC mm_cli_cb_t mm_genc_oo_cb =
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{
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.cb_get = mm_genc_oo_cb_get,
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.cb_set = NULL,
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.cb_trans = mm_genc_oo_cb_trans,
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};
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uint8_t mm_genc_oo_register(void)
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{
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// Register the model
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m_lid_t mdl_lid = ms_register_model(MM_ID_GENC_OO, 0, MM_CFG_PUBLI_AUTH_BIT);
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if (mdl_lid != MESH_INVALID_LID) //if (status == MESH_ERR_NO_ERROR)
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{
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// Inform the Model State Manager about registered model
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mm_genc_oo_env_t *p_env_oo = (mm_genc_oo_env_t *)mm_state_register(0, MM_ID_GENC_OO, mdl_lid,
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MM_ROLE_CLI, sizeof(mm_genc_oo_env_t));
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if (p_env_oo)
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{
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// Get client-specific callback functions
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//mm_cli_cb_t *p_cb_cli = p_env_oo->env.cb.u.p_cb_cli;
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// Set internal callback functions
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p_env_oo->env.mdl_cb.cb_rx = mm_genc_oo_cb_rx;
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p_env_oo->env.mdl_cb.cb_opcode_check = mm_genc_oo_cb_opcode_check;
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//p_cb_cli->cb_get = mm_genc_oo_cb_get;
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//p_cb_cli->cb_trans = mm_genc_oo_cb_trans;
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p_env_oo->env.mdl_cb.p_cb_cli = &mm_genc_oo_cb;
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// Inform application about registered model
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mm_register_ind_send(MM_ID_GENC_OO, 0, mdl_lid);
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}
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}
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return (mdl_lid);
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}
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/// @} end of group
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