500 lines
12 KiB
C
500 lines
12 KiB
C
/* Bluetooth Mesh */
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/*
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* Copyright (c) 2017 Intel Corporation
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr.h>
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#include <string.h>
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#include <errno.h>
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#include <stdbool.h>
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#include <zephyr/types.h>
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#include <sys/util.h>
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#include <sys/byteorder.h>
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#include <bluetooth/bluetooth.h>
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#include <bluetooth/conn.h>
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#include <bluetooth/mesh.h>
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#define BT_DBG_ENABLED IS_ENABLED(CONFIG_BT_MESH_DEBUG_MODEL)
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#define LOG_MODULE_NAME bt_mesh_health_cli
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#include "common/log.h"
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#include "net.h"
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#include "foundation.h"
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static int32_t msg_timeout;
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static struct bt_mesh_health_cli *health_cli;
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struct health_fault_param {
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uint16_t cid;
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uint8_t *expect_test_id;
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uint8_t *test_id;
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uint8_t *faults;
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size_t *fault_count;
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};
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static void health_fault_status(struct bt_mesh_model *model,
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struct bt_mesh_msg_ctx *ctx,
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struct net_buf_simple *buf)
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{
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struct health_fault_param *param;
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uint8_t test_id;
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uint16_t cid;
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BT_DBG("net_idx 0x%04x app_idx 0x%04x src 0x%04x len %u: %s",
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ctx->net_idx, ctx->app_idx, ctx->addr, buf->len,
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bt_hex(buf->data, buf->len));
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if (!bt_mesh_msg_ack_ctx_match(&health_cli->ack_ctx, OP_HEALTH_FAULT_STATUS, ctx->addr,
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(void **)¶m)) {
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return;
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}
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test_id = net_buf_simple_pull_u8(buf);
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if (param->expect_test_id && test_id != *param->expect_test_id) {
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BT_WARN("Health fault with unexpected Test ID");
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return;
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}
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cid = net_buf_simple_pull_le16(buf);
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if (cid != param->cid) {
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BT_WARN("Health fault with unexpected Company ID");
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return;
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}
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if (param->test_id) {
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*param->test_id = test_id;
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}
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if (buf->len > *param->fault_count) {
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BT_WARN("Got more faults than there's space for");
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} else {
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*param->fault_count = buf->len;
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}
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memcpy(param->faults, buf->data, *param->fault_count);
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bt_mesh_msg_ack_ctx_rx(&health_cli->ack_ctx);
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}
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static void health_current_status(struct bt_mesh_model *model,
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struct bt_mesh_msg_ctx *ctx,
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struct net_buf_simple *buf)
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{
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struct bt_mesh_health_cli *cli = model->user_data;
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uint8_t test_id;
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uint16_t cid;
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BT_DBG("net_idx 0x%04x app_idx 0x%04x src 0x%04x len %u: %s",
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ctx->net_idx, ctx->app_idx, ctx->addr, buf->len,
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bt_hex(buf->data, buf->len));
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test_id = net_buf_simple_pull_u8(buf);
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cid = net_buf_simple_pull_le16(buf);
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BT_DBG("Test ID 0x%02x Company ID 0x%04x Fault Count %u",
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test_id, cid, buf->len);
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if (!cli->current_status) {
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BT_WARN("No Current Status callback available");
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return;
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}
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cli->current_status(cli, ctx->addr, test_id, cid, buf->data, buf->len);
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}
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struct health_period_param {
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uint8_t *divisor;
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};
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static void health_period_status(struct bt_mesh_model *model,
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struct bt_mesh_msg_ctx *ctx,
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struct net_buf_simple *buf)
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{
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struct health_period_param *param;
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BT_DBG("net_idx 0x%04x app_idx 0x%04x src 0x%04x len %u: %s",
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ctx->net_idx, ctx->app_idx, ctx->addr, buf->len,
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bt_hex(buf->data, buf->len));
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if (!bt_mesh_msg_ack_ctx_match(&health_cli->ack_ctx, OP_HEALTH_PERIOD_STATUS, ctx->addr,
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(void **)¶m)) {
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return;
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}
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*param->divisor = net_buf_simple_pull_u8(buf);
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bt_mesh_msg_ack_ctx_rx(&health_cli->ack_ctx);
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}
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struct health_attention_param {
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uint8_t *attention;
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};
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static void health_attention_status(struct bt_mesh_model *model,
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struct bt_mesh_msg_ctx *ctx,
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struct net_buf_simple *buf)
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{
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struct health_attention_param *param;
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BT_DBG("net_idx 0x%04x app_idx 0x%04x src 0x%04x len %u: %s",
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ctx->net_idx, ctx->app_idx, ctx->addr, buf->len,
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bt_hex(buf->data, buf->len));
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if (!bt_mesh_msg_ack_ctx_match(&health_cli->ack_ctx, OP_ATTENTION_STATUS, ctx->addr,
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(void **)¶m)) {
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return;
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}
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if (param->attention) {
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*param->attention = net_buf_simple_pull_u8(buf);
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}
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bt_mesh_msg_ack_ctx_rx(&health_cli->ack_ctx);
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}
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const struct bt_mesh_model_op bt_mesh_health_cli_op[] = {
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{ OP_HEALTH_FAULT_STATUS, 3, health_fault_status },
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{ OP_HEALTH_CURRENT_STATUS, 3, health_current_status },
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{ OP_HEALTH_PERIOD_STATUS, 1, health_period_status },
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{ OP_ATTENTION_STATUS, 1, health_attention_status },
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BT_MESH_MODEL_OP_END,
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};
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static int cli_prepare(void *param, uint32_t op, uint16_t addr)
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{
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if (!health_cli) {
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BT_ERR("No available Health Client context!");
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return -EINVAL;
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}
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return bt_mesh_msg_ack_ctx_prepare(&health_cli->ack_ctx, op, addr, param);
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}
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int bt_mesh_health_attention_get(uint16_t addr, uint16_t app_idx, uint8_t *attention)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_ATTENTION_GET, 0);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_attention_param param = {
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.attention = attention,
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};
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int err;
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err = cli_prepare(¶m, OP_ATTENTION_STATUS, addr);
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if (err) {
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return err;
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}
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bt_mesh_model_msg_init(&msg, OP_ATTENTION_GET);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int bt_mesh_health_attention_set(uint16_t addr, uint16_t app_idx, uint8_t attention,
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uint8_t *updated_attention)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_ATTENTION_SET, 1);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_attention_param param = {
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.attention = updated_attention,
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};
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int err;
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err = cli_prepare(¶m, OP_ATTENTION_STATUS, addr);
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if (err) {
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return err;
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}
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if (updated_attention) {
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bt_mesh_model_msg_init(&msg, OP_ATTENTION_SET);
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} else {
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bt_mesh_model_msg_init(&msg, OP_ATTENTION_SET_UNREL);
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}
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net_buf_simple_add_u8(&msg, attention);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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if (!updated_attention) {
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return 0;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int bt_mesh_health_period_get(uint16_t addr, uint16_t app_idx, uint8_t *divisor)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_HEALTH_PERIOD_GET, 0);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_period_param param = {
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.divisor = divisor,
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};
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int err;
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err = cli_prepare(¶m, OP_HEALTH_PERIOD_STATUS, addr);
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if (err) {
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return err;
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}
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bt_mesh_model_msg_init(&msg, OP_HEALTH_PERIOD_GET);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int bt_mesh_health_period_set(uint16_t addr, uint16_t app_idx, uint8_t divisor,
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uint8_t *updated_divisor)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_HEALTH_PERIOD_SET, 1);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_period_param param = {
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.divisor = updated_divisor,
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};
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int err;
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err = cli_prepare(¶m, OP_HEALTH_PERIOD_STATUS, addr);
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if (err) {
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return err;
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}
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if (updated_divisor) {
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bt_mesh_model_msg_init(&msg, OP_HEALTH_PERIOD_SET);
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} else {
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bt_mesh_model_msg_init(&msg, OP_HEALTH_PERIOD_SET_UNREL);
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}
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net_buf_simple_add_u8(&msg, divisor);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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if (!updated_divisor) {
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return 0;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int bt_mesh_health_fault_test(uint16_t addr, uint16_t app_idx, uint16_t cid,
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uint8_t test_id, uint8_t *faults,
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size_t *fault_count)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_HEALTH_FAULT_TEST, 3);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_fault_param param = {
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.cid = cid,
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.expect_test_id = &test_id,
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.faults = faults,
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.fault_count = fault_count,
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};
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int err;
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err = cli_prepare(¶m, OP_HEALTH_FAULT_STATUS, addr);
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if (err) {
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return err;
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}
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if (faults) {
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bt_mesh_model_msg_init(&msg, OP_HEALTH_FAULT_TEST);
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} else {
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bt_mesh_model_msg_init(&msg, OP_HEALTH_FAULT_TEST_UNREL);
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}
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net_buf_simple_add_u8(&msg, test_id);
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net_buf_simple_add_le16(&msg, cid);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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if (!faults) {
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return 0;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int bt_mesh_health_fault_clear(uint16_t addr, uint16_t app_idx, uint16_t cid,
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uint8_t *test_id, uint8_t *faults,
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size_t *fault_count)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_HEALTH_FAULT_CLEAR, 2);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_fault_param param = {
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.cid = cid,
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.test_id = test_id,
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.faults = faults,
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.fault_count = fault_count,
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};
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int err;
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err = cli_prepare(¶m, OP_HEALTH_FAULT_STATUS, addr);
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if (err) {
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return err;
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}
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if (test_id) {
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bt_mesh_model_msg_init(&msg, OP_HEALTH_FAULT_CLEAR);
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} else {
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bt_mesh_model_msg_init(&msg, OP_HEALTH_FAULT_CLEAR_UNREL);
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}
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net_buf_simple_add_le16(&msg, cid);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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if (!test_id) {
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return 0;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int bt_mesh_health_fault_get(uint16_t addr, uint16_t app_idx, uint16_t cid,
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uint8_t *test_id, uint8_t *faults,
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size_t *fault_count)
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{
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BT_MESH_MODEL_BUF_DEFINE(msg, OP_HEALTH_FAULT_GET, 2);
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struct bt_mesh_msg_ctx ctx = {
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.app_idx = app_idx,
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.addr = addr,
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.send_ttl = BT_MESH_TTL_DEFAULT,
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};
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struct health_fault_param param = {
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.cid = cid,
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.test_id = test_id,
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.faults = faults,
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.fault_count = fault_count,
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};
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int err;
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err = cli_prepare(¶m, OP_HEALTH_FAULT_STATUS, addr);
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if (err) {
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return err;
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}
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bt_mesh_model_msg_init(&msg, OP_HEALTH_FAULT_GET);
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net_buf_simple_add_le16(&msg, cid);
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err = bt_mesh_model_send(health_cli->model, &ctx, &msg, NULL, NULL);
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if (err) {
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BT_ERR("model_send() failed (err %d)", err);
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bt_mesh_msg_ack_ctx_clear(&health_cli->ack_ctx);
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return err;
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}
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return bt_mesh_msg_ack_ctx_wait(&health_cli->ack_ctx, K_MSEC(msg_timeout));
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}
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int32_t bt_mesh_health_cli_timeout_get(void)
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{
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return msg_timeout;
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}
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void bt_mesh_health_cli_timeout_set(int32_t timeout)
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{
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msg_timeout = timeout;
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}
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int bt_mesh_health_cli_set(struct bt_mesh_model *model)
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{
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if (!model->user_data) {
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BT_ERR("No Health Client context for given model");
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return -EINVAL;
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}
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health_cli = model->user_data;
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msg_timeout = 2 * MSEC_PER_SEC;
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return 0;
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}
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static int health_cli_init(struct bt_mesh_model *model)
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{
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struct bt_mesh_health_cli *cli = model->user_data;
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BT_DBG("primary %u", bt_mesh_model_in_primary(model));
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if (!cli) {
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BT_ERR("No Health Client context provided");
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return -EINVAL;
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}
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cli = model->user_data;
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cli->model = model;
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/* Set the default health client pointer */
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if (!health_cli) {
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health_cli = cli;
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}
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bt_mesh_msg_ack_ctx_init(&health_cli->ack_ctx);
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return 0;
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}
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const struct bt_mesh_model_cb bt_mesh_health_cli_cb = {
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.init = health_cli_init,
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};
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