semaphore for SPI bus access removed from the driver, the user has to deal with concurrency
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37408659ca
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4 changed files with 34 additions and 35 deletions
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@ -138,10 +138,7 @@ void user_init(void)
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if (sensor)
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if (sensor)
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{
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{
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// Create a task that uses the sensor
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/** -- SENSOR CONFIGURATION PART (optional) --- */
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xTaskCreate(user_task, "user_task", TASK_STACK_DEPTH, NULL, 2, NULL);
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/** -- OPTIONAL PART -- */
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// Changes the oversampling rates to 4x oversampling for temperature
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// Changes the oversampling rates to 4x oversampling for temperature
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// and 2x oversampling for humidity. Pressure measurement is skipped.
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// and 2x oversampling for humidity. Pressure measurement is skipped.
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@ -156,5 +153,15 @@ void user_init(void)
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// Set ambient temperature to 10 degree Celsius
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// Set ambient temperature to 10 degree Celsius
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bme680_set_ambient_temperature (sensor, 10);
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bme680_set_ambient_temperature (sensor, 10);
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/** -- TASK CREATION PART --- */
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// must be done last to avoid concurrency situations with the sensor
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// configuration part
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// Create a task that uses the sensor
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xTaskCreate(user_task, "user_task", TASK_STACK_DEPTH, NULL, 2, NULL);
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}
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}
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else
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printf("Could not initialize BME680 sensor\n");
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}
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}
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@ -378,10 +378,7 @@ Optionally, you could wish to set some measurement parameters. For details see t
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```
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```
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if (sensor)
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if (sensor)
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{
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{
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// Create a task that uses the sensor
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/** -- SENSOR CONFIGURATION PART (optional) --- */
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xTaskCreate(user_task, "user_task", 256, NULL, 2, NULL);
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/** -- OPTIONAL PART -- */
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// Changes the oversampling rates to 4x oversampling for temperature
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// Changes the oversampling rates to 4x oversampling for temperature
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// and 2x oversampling for humidity. Pressure measurement is skipped.
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// and 2x oversampling for humidity. Pressure measurement is skipped.
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@ -394,11 +391,21 @@ if (sensor)
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bme680_set_heater_profile (sensor, 0, 200, 100);
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bme680_set_heater_profile (sensor, 0, 200, 100);
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bme680_use_heater_profile (sensor, 0);
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bme680_use_heater_profile (sensor, 0);
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/** -- TASK CREATION PART --- */
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// must be done last to avoid concurrency situations with the sensor
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// configuration part
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// Create a task that uses the sensor
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xTaskCreate(user_task, "user_task", TASK_STACK_DEPTH, NULL, 2, NULL);
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...
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...
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}
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}
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```
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```
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Last, the user task that uses the sensor has to be created.
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Finally, a user task that uses the sensor has to be created.
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**Please note:** To avoid concurrency situations when driver functions are used to access the sensor, for example to read data, the user task must not be created until the sensor configuration is completed.
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### User task
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### User task
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@ -566,10 +573,7 @@ void user_init(void)
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if (sensor)
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if (sensor)
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{
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{
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// Create a task that uses the sensor
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/** -- SENSOR CONFIGURATION PART (optional) --- */
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xTaskCreate(user_task, "user_task", TASK_STACK_DEPTH, NULL, 2, NULL);
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/** -- OPTIONAL PART -- */
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// Changes the oversampling rates to 4x oversampling for temperature
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// Changes the oversampling rates to 4x oversampling for temperature
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// and 2x oversampling for humidity. Pressure measurement is skipped.
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// and 2x oversampling for humidity. Pressure measurement is skipped.
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@ -584,7 +588,17 @@ void user_init(void)
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// Set ambient temperature to 10 degree Celsius
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// Set ambient temperature to 10 degree Celsius
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bme680_set_ambient_temperature (sensor, 10);
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bme680_set_ambient_temperature (sensor, 10);
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/** -- TASK CREATION PART --- */
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// must be done last to avoid concurrency situations with the sensor
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// configuration part
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// Create a task that uses the sensor
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xTaskCreate(user_task, "user_task", TASK_STACK_DEPTH, NULL, 2, NULL);
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}
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}
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else
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printf("Could not initialize BME680 sensor\n");
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}
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}
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```
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```
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@ -305,8 +305,6 @@ bme680_sensor_t* bme680_init_sensor(uint8_t bus, uint8_t addr, uint8_t cs)
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free (dev);
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free (dev);
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return NULL;
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return NULL;
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}
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}
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if (!addr)
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spi_semaphore_init(dev);
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// reset the sensor
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// reset the sensor
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if (!bme680_reset(dev))
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if (!bme680_reset(dev))
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@ -1278,12 +1276,9 @@ static bool bme680_spi_read(bme680_sensor_t* dev, uint8_t reg, uint8_t *data, ui
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return false;
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return false;
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}
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}
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spi_semaphore_take (dev);
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// set mem page first
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// set mem page first
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if (!bme680_spi_set_mem_page (dev, reg))
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if (!bme680_spi_set_mem_page (dev, reg))
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{
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{
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spi_semaphore_give (dev);
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error_dev ("Error on read from SPI slave on bus 1. Could not set mem page.",
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error_dev ("Error on read from SPI slave on bus 1. Could not set mem page.",
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__FUNCTION__, dev);
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__FUNCTION__, dev);
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return false;
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return false;
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@ -1302,7 +1297,6 @@ static bool bme680_spi_read(bme680_sensor_t* dev, uint8_t reg, uint8_t *data, ui
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if (!spi_transfer_pf (dev->bus, dev->cs, mosi, miso, len+1))
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if (!spi_transfer_pf (dev->bus, dev->cs, mosi, miso, len+1))
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{
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{
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spi_semaphore_give (dev);
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error_dev ("Could not read data from SPI", __FUNCTION__, dev);
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error_dev ("Could not read data from SPI", __FUNCTION__, dev);
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dev->error_code |= BME680_SPI_READ_FAILED;
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dev->error_code |= BME680_SPI_READ_FAILED;
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return false;
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return false;
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@ -1311,8 +1305,6 @@ static bool bme680_spi_read(bme680_sensor_t* dev, uint8_t reg, uint8_t *data, ui
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for (int i=0; i < len; i++)
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for (int i=0; i < len; i++)
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data[i] = miso[i+1];
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data[i] = miso[i+1];
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spi_semaphore_give (dev);
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#ifdef BME680_DEBUG_LEVEL_2
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#ifdef BME680_DEBUG_LEVEL_2
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printf("BME680 %s: read the following bytes: ", __FUNCTION__);
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printf("BME680 %s: read the following bytes: ", __FUNCTION__);
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printf("%0x ", reg);
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printf("%0x ", reg);
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@ -1340,15 +1332,11 @@ static bool bme680_spi_write(bme680_sensor_t* dev, uint8_t reg, uint8_t *data, u
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return false;
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return false;
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}
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}
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if (reg != BME680_REG_STATUS)
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spi_semaphore_take (dev);
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// set mem page first if not mem page register is used
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// set mem page first if not mem page register is used
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if (reg != BME680_REG_STATUS && !bme680_spi_set_mem_page (dev, reg))
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if (reg != BME680_REG_STATUS && !bme680_spi_set_mem_page (dev, reg))
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{
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{
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error_dev ("Error on write from SPI slave on bus 1. Could not set mem page.",
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error_dev ("Error on write from SPI slave on bus 1. Could not set mem page.",
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__FUNCTION__, dev);
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__FUNCTION__, dev);
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spi_semaphore_give (dev);
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return false;
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return false;
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}
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}
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@ -1370,14 +1358,10 @@ static bool bme680_spi_write(bme680_sensor_t* dev, uint8_t reg, uint8_t *data, u
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if (!spi_transfer_pf (dev->bus, dev->cs, mosi, NULL, len+1))
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if (!spi_transfer_pf (dev->bus, dev->cs, mosi, NULL, len+1))
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{
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{
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if (reg != BME680_REG_STATUS)
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spi_semaphore_give (dev);
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error_dev ("Could not write data to SPI.", __FUNCTION__, dev);
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error_dev ("Could not write data to SPI.", __FUNCTION__, dev);
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dev->error_code |= BME680_SPI_WRITE_FAILED;
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dev->error_code |= BME680_SPI_WRITE_FAILED;
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return false;
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return false;
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}
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}
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if (reg != BME680_REG_STATUS)
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spi_semaphore_give (dev);
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return true;
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return true;
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}
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}
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@ -66,12 +66,6 @@
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#include "esp/spi.h"
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#include "esp/spi.h"
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#include "i2c/i2c.h"
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#include "i2c/i2c.h"
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// platform specific definitions
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#define spi_semaphore_init(d)
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#define spi_semaphore_take(d)
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#define spi_semaphore_give(d)
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// platform specific SPI functions
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// platform specific SPI functions
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#define spi_bus_init(bus,sck,miso,mosi) // not needed on ESP8266
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#define spi_bus_init(bus,sck,miso,mosi) // not needed on ESP8266
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