tests/driver_isl29125: initial import
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22
tests/driver_isl29125/Makefile
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tests/driver_isl29125/Makefile
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APPLICATION = driver_isl29125
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include ../Makefile.tests_common
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FEATURES_REQUIRED = periph_i2c
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USEMODULE += isl29125
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USEMODULE += vtimer
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ifneq (,$(TEST_ISL29125_I2C))
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CFLAGS += -DTEST_ISL29125_I2C=$(TEST_ISL29125_I2C)
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else
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# set random default
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CFLAGS += -DTEST_ISL29125_I2C=I2C_0
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endif
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ifneq (,$(TEST_ISL29125_IRQ_PIN))
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CFLAGS += -DTEST_ISL29125_IRQ_PIN=$(TEST_ISL29125_IRQ_PIN)
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else
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# set random default
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CFLAGS += -DTEST_ISL29125_IRQ_PIN=GPIO_5
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endif
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include $(RIOTBASE)/Makefile.include
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tests/driver_isl29125/README.md
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tests/driver_isl29125/README.md
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# About
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This is a manual test application for the ISL29125 light sensor driver.
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# Usage
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This test application will initialize the list sensor with the following parameters:
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- Mode: All modes are tested once, then RGB mode is used continuously
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- Range: 16000 lux
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- Resolution: 16 bit
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After initialization, the sensor value is read every 250ms and printed to the stdout.
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Expose the sensor to varying light sources to see changing readouts.
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tests/driver_isl29125/main.c
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tests/driver_isl29125/main.c
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/*
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* Copyright 2015 Ludwig Ortmann
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*
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* This file is subject to the terms and conditions of the GNU Lesser
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* General Public License v2.1. See the file LICENSE in the top level
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* directory for more details.
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*/
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/**
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* @ingroup tests
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* @{
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*
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* @file
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* @brief Test application for the ISL29125 RGB light sensor
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*
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* @author Ludwig Ortmann <ludwig.ortmann@fu-berlin.de>
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*
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* @}
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*/
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#ifndef TEST_ISL29125_I2C
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#error "TEST_ISL29125_I2C not defined"
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#endif
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#ifndef TEST_ISL29125_IRQ_PIN
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#error "ISL29125_IRQ_PIN not defined"
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#endif
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#include <stdio.h>
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#include <string.h>
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#include "vtimer.h"
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#include "isl29125.h"
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#define SLEEP (250 * 1000U)
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int main(void)
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{
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isl29125_t dev;
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isl29125_rgb_t data;
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color_rgb_t data8bit;
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memset(&data, 0x00, sizeof(data));
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puts("ISL29125 light sensor test application\n");
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printf("Initializing ISL29125 sensor at I2C_%i... ", TEST_ISL29125_I2C);
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if (isl29125_init(&dev, TEST_ISL29125_I2C, TEST_ISL29125_IRQ_PIN,
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ISL29125_MODE_RGB, ISL29125_RANGE_10K,
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ISL29125_RESOLUTION_16) == 0) {
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puts("[OK]\n");
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}
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else {
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puts("[Failed]");
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return 1;
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}
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/* try out some modes */
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static const isl29125_mode_t modes[] = {
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ISL29125_MODE_DOWN, ISL29125_MODE_STANDBY, ISL29125_MODE_RGB,
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ISL29125_MODE_R, ISL29125_MODE_G, ISL29125_MODE_B,
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ISL29125_MODE_RG, ISL29125_MODE_GB};
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static const char* mode_names[] = {
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"ISL29125_MODE_DOWN", "ISL29125_MODE_STANDBY", "ISL29125_MODE_RGB",
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"ISL29125_MODE_R", "ISL29125_MODE_G", "ISL29125_MODE_B",
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"ISL29125_MODE_RG", "ISL29125_MODE_GB"};
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for (int i = 0; i < sizeof(modes); i++) {
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printf("Setting mode %s\n", mode_names[i]);
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isl29125_set_mode(&dev, modes[i]);
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vtimer_usleep(SLEEP);
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isl29125_read_rgb_color(&dev, &data8bit);
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printf("RGB value: (%3i / %3i / %3i) 8 bit\n",
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data8bit.r, data8bit.g, data8bit.b);
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}
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puts("Resetting mode to RGB and reading continuously");
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isl29125_set_mode(&dev, ISL29125_MODE_RGB);
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vtimer_usleep(SLEEP);
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while (1) {
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isl29125_read_rgb_lux(&dev, &data);
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printf("RGB value: (%5i / %5i / %5i) lux\n",
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(int)data.red, (int)data.green, (int)data.blue);
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vtimer_usleep(SLEEP);
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}
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return 0;
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}
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