Add optional BMA456 accelerometer init on shared I2C bus.
Probe and configure the sensor when present; log and continue boot if init fails so boards without BMA456 still run normally. Co-authored-by: Cursor <cursoragent@cursor.com>
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COINES_INSTALL_PATH ?= ../../../..
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EXAMPLE_FILE ?= wrist_wear_wakeup_hw_int.c
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API_LOCATION ?= ../..
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COMMON_LOCATION ?= ..
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C_SRCS += \
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$(API_LOCATION)/bma4.c \
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$(API_LOCATION)/bma456w.c \
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$(COMMON_LOCATION)/common/common.c
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INCLUDEPATHS += \
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$(API_LOCATION) \
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$(COMMON_LOCATION)/common
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TARGET = MCU_APP30
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include $(COINES_INSTALL_PATH)/coines.mk
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+251
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/**\
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* Copyright (c) 2022 Bosch Sensortec GmbH. All rights reserved.
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*
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* SPDX-License-Identifier: BSD-3-Clause
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**/
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#include <stdio.h>
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#include <math.h>
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#include "bma456w.h"
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#include "common.h"
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/******************************************************************************/
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/*! Global variable Declaration */
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volatile uint8_t interrupt_status = 0;
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/******************************************************************************/
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/*! Macro definition */
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/*! APP20 Board number */
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#define BOARD_MCU_APP20 UINT8_C(0x03)
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/*! APP30 Board number */
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#define BOARD_MCU_APP30 UINT8_C(0x05)
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/******************************************************************************/
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/*! Static Function Declaration */
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/*!
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* @brief This function gets board information
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*
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* @param[out] board : Board value to determine as APP2.0 or APP3.0
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*/
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static void get_board_info(uint8_t *board);
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/*!
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* @brief This internal API is used to set the interrupt status
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*/
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static void interrupt_callback(uint32_t param1, uint32_t param2)
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{
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(void)param1;
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(void)param2;
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interrupt_status = 1;
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}
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/******************************************************************************/
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/*! Function */
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int main(void)
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{
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struct bma4_dev bma;
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struct bma4_accel_config accel_conf;
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struct bma456w_wrist_wear_wakeup_params setting;
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uint8_t try = 10;
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int8_t rslt;
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uint16_t int_status = 0;
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uint8_t board = 0;
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struct bma4_int_pin_config pin_config = { 0 };
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/* Variable for interrupt line selection*/
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uint8_t int_line;
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/* Interface reference is given as a parameter
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* For I2C : BMA4_I2C_INTF
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* For SPI : BMA4_SPI_INTF
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* Variant information given as parameter - BMA45X_VARIANT
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*/
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rslt = bma4_interface_init(&bma, BMA4_I2C_INTF, BMA45X_VARIANT);
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bma4_error_codes_print_result("bma4_interface_init", rslt);
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/* Sensor initialization */
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rslt = bma456w_init(&bma);
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bma4_error_codes_print_result("bma456w_init", rslt);
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/* Upload the configuration file to enable the features of the sensor. */
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rslt = bma456w_write_config_file(&bma);
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bma4_error_codes_print_result("bma456w_write_config", rslt);
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/* Accelerometer Configuration Setting */
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/* Output data Rate */
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accel_conf.odr = BMA4_OUTPUT_DATA_RATE_100HZ;
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/* Gravity range of the sensor (+/- 2G, 4G, 8G, 16G) */
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accel_conf.range = BMA4_ACCEL_RANGE_2G;
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/* Bandwidth configure number of sensor samples required to average
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* if value = 2, then 4 samples are averaged
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* averaged samples = 2^(val(accel bandwidth))
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* Note1 : More info refer datasheets
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* Note2 : A higher number of averaged samples will result in a lower noise level of the signal, but since the
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* performance power mode phase is increased, the power consumption will also rise.
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*/
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accel_conf.bandwidth = BMA4_ACCEL_NORMAL_AVG4;
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/* Enable the filter performance mode where averaging of samples
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* will be done based on above set bandwidth and ODR.
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* There are two modes
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* 0 -> Averaging samples (Default)
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* 1 -> No averaging
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* For more info on No Averaging mode refer datasheets.
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*/
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accel_conf.perf_mode = BMA4_CIC_AVG_MODE;
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/* Set the accel configurations */
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rslt = bma4_set_accel_config(&accel_conf, &bma);
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bma4_error_codes_print_result("bma4_set_accel_config status", rslt);
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/* NOTE : Enable accel after set of configurations */
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rslt = bma4_set_accel_enable(1, &bma);
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bma4_error_codes_print_result("bma4_set_accel_enable status", rslt);
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printf("\nEnable wear feature\n");
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rslt = bma456w_feature_enable(BMA456W_WRIST_WEAR_WAKEUP, 1, &bma);
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bma4_error_codes_print_result("bma456w_feature_enable status", rslt);
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rslt = bma456w_get_wrist_wear_wakeup_param_config(&setting, &bma);
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bma4_error_codes_print_result("bma456w_get_wrist_wear_wakeup_param_config status", rslt);
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/* Hardware interrupt configuration */
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int_line = BMA4_INTR1_MAP;
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rslt = bma4_get_int_pin_config(&pin_config, int_line, &bma);
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bma4_error_codes_print_result("bma4_get_int_pin_config status", rslt);
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rslt = bma456w_map_interrupt(int_line, BMA456W_WRIST_WEAR_WAKEUP_INT, BMA4_ENABLE, &bma);
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bma4_error_codes_print_result("bma456w_map_interrupt status", rslt);
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pin_config.edge_ctrl = BMA4_EDGE_TRIGGER;
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pin_config.output_en = BMA4_OUTPUT_ENABLE;
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pin_config.lvl = BMA4_ACTIVE_HIGH;
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pin_config.od = BMA4_PUSH_PULL;
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pin_config.input_en = BMA4_INPUT_DISABLE;
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rslt = bma4_set_int_pin_config(&pin_config, int_line, &bma);
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bma4_error_codes_print_result("bma4_set_int_pin_config status", rslt);
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/* Get board information */
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get_board_info(&board);
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/*
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* Attach interrupt based on board
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*/
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if (board == BOARD_MCU_APP20)
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{
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switch (int_line)
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{
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case BMA4_INTR1_MAP:
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coines_attach_interrupt(COINES_SHUTTLE_PIN_20, interrupt_callback, COINES_PIN_INTERRUPT_RISING_EDGE);
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break;
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case BMA4_INTR2_MAP:
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coines_attach_interrupt(COINES_SHUTTLE_PIN_21, interrupt_callback, COINES_PIN_INTERRUPT_RISING_EDGE);
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break;
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default:
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break;
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}
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}
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#if !defined(MCU_APP20)
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else if (board == BOARD_MCU_APP30)
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{
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switch (int_line)
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{
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case BMA4_INTR1_MAP:
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coines_attach_interrupt(COINES_MINI_SHUTTLE_PIN_1_6,
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interrupt_callback,
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COINES_PIN_INTERRUPT_RISING_EDGE);
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break;
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case BMA4_INTR2_MAP:
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coines_attach_interrupt(COINES_MINI_SHUTTLE_PIN_1_7,
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interrupt_callback,
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COINES_PIN_INTERRUPT_RISING_EDGE);
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break;
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default:
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break;
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}
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}
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#endif
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printf("Do wear movement\n");
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for (;;)
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{
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if (interrupt_status == 1)
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{
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interrupt_status = 0;
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/* Read the interrupt register to check whether wrist wear interrupt is received. */
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rslt = bma456w_read_int_status(&int_status, &bma);
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bma4_error_codes_print_result("bma456w_read_int_status status", rslt);
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/* Check if step counter interrupt is triggered */
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if ((BMA4_OK == rslt) && (int_status & BMA456W_WRIST_WEAR_WAKEUP_INT))
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{
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printf("\nWear interrupt is received\n\n");
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break;
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}
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}
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}
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printf("\nDisable wear feature\n");
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rslt = bma456w_feature_enable(BMA456W_WRIST_WEAR_WAKEUP, BMA4_DISABLE, &bma);
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bma4_error_codes_print_result("bma456w_feature_enable status", rslt);
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rslt = bma456w_map_interrupt(BMA4_INTR1_MAP, BMA456W_WRIST_WEAR_WAKEUP_INT, BMA4_ENABLE, &bma);
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bma4_error_codes_print_result("bma456w_map_interrupt status", rslt);
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printf("Do wear movement\n\n");
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while (try--)
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{
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rslt = bma456w_read_int_status(&int_status, &bma);
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bma4_error_codes_print_result("bma456w_read_int_status status", rslt);
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if (int_status & BMA456W_WRIST_WEAR_WAKEUP_INT)
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{
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printf("Wear interrupt is received, Test is failed\n");
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break;
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}
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else
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{
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printf("Wear feature disable and wear interrupt not received\n");
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}
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}
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bma4_coines_deinit();
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return rslt;
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}
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/*!
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* @brief This function gets board information
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*/
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static void get_board_info(uint8_t *board)
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{
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struct coines_board_info board_info;
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int16_t result;
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result = coines_get_board_info(&board_info);
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if (result == COINES_SUCCESS)
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{
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(*board) = board_info.board;
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}
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}
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