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217 lines
5.5 KiB
C
217 lines
5.5 KiB
C
/*
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* Copyright (C) 2015 PHYTEC Messtechnik GmbH
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* 2017 Freie Universität Berlin
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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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/**
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* @ingroup drivers_tcs37727
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* @{
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*
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* @file
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* @brief Driver for the AMS TCS37727 Color Light-To-Digital Converter
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*
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* @author Felix Siebel <f.siebel@phytec.de>
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* @author Johann Fischer <j.fischer@phytec.de>
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* @author Hauke Petersen <hauke.petersen@fu-berlin.de>
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*
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* @}
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*/
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#include <string.h>
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#include "log.h"
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#include "assert.h"
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#include "tcs37727.h"
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#include "tcs37727-internal.h"
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#define ENABLE_DEBUG 0
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#include "debug.h"
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#define BUS (dev->p.i2c)
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#define ADR (dev->p.addr)
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int tcs37727_init(tcs37727_t *dev, const tcs37727_params_t *params)
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{
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uint8_t tmp;
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/* check parameters */
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assert(dev && params);
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/* initialize the device descriptor */
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dev->p = *params;
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/* setup the I2C bus */
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i2c_acquire(BUS);
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/* check if we can communicate with the device */
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i2c_read_reg(BUS, ADR, TCS37727_ID, &tmp, 0);
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if (tmp != TCS37727_ID_VALUE) {
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i2c_release(BUS);
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LOG_ERROR("[tcs37727] init: error while reading ID register\n");
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return TCS37727_NODEV;
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}
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/* configure gain and conversion time */
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i2c_write_reg(BUS, ADR, TCS37727_ATIME,
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TCS37727_ATIME_TO_REG(dev->p.atime), 0);
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i2c_write_reg(BUS, ADR, TCS37727_CONTROL, TCS37727_CONTROL_AGAIN_4, 0);
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dev->again = 4;
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/* enable the device */
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tmp = (TCS37727_ENABLE_AEN | TCS37727_ENABLE_PON);
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i2c_write_reg(BUS, ADR, TCS37727_ENABLE, tmp, 0);
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i2c_release(BUS);
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return TCS37727_OK;
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}
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void tcs37727_set_rgbc_active(const tcs37727_t *dev)
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{
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uint8_t reg;
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assert(dev);
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i2c_acquire(BUS);
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i2c_read_reg(BUS, ADR, TCS37727_ENABLE, ®, 0);
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reg |= (TCS37727_ENABLE_AEN | TCS37727_ENABLE_PON);
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i2c_write_reg(BUS, ADR, TCS37727_ENABLE, reg, 0);
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i2c_release(BUS);
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}
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void tcs37727_set_rgbc_standby(const tcs37727_t *dev)
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{
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uint8_t reg;
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assert(dev);
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i2c_acquire(BUS);
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i2c_read_reg(BUS, ADR, TCS37727_ENABLE, ®, 0);
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reg &= ~TCS37727_ENABLE_AEN;
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if (!(reg & TCS37727_ENABLE_PEN)) {
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reg &= ~TCS37727_ENABLE_PON;
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}
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i2c_write_reg(BUS, ADR, TCS37727_ENABLE, reg, 0);
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i2c_release(BUS);
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}
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static uint8_t tcs37727_trim_gain(tcs37727_t *dev, int32_t rawc)
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{
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uint8_t reg_again = 0;
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int val_again = dev->again;
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if (rawc < TCS37727_AG_THRESHOLD_LOW) {
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switch (val_again) {
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case 1:
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reg_again = TCS37727_CONTROL_AGAIN_4;
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val_again = 4;
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break;
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case 4:
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reg_again = TCS37727_CONTROL_AGAIN_16;
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val_again = 16;
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break;
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case 16:
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reg_again = TCS37727_CONTROL_AGAIN_60;
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val_again = 60;
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break;
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case 60:
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default:
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return -1;
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}
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}
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else if (rawc > TCS37727_AG_THRESHOLD_HIGH) {
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switch (val_again) {
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case 60:
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reg_again = TCS37727_CONTROL_AGAIN_16;
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val_again = 16;
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break;
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case 16:
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reg_again = TCS37727_CONTROL_AGAIN_4;
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val_again = 4;
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break;
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case 4:
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reg_again = TCS37727_CONTROL_AGAIN_1;
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val_again = 1;
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break;
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case 1:
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default:
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return -1;
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}
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}
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else {
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return 0;
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}
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i2c_acquire(BUS);
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uint8_t reg = 0;
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if (i2c_read_reg(BUS, ADR, TCS37727_CONTROL, ®, 0) < 0) {
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i2c_release(BUS);
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return -2;
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}
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reg &= ~TCS37727_CONTROL_AGAIN_MASK;
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reg |= reg_again;
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if (i2c_write_reg(BUS, ADR, TCS37727_CONTROL, reg, 0) < 0) {
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i2c_release(BUS);
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return -2;
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}
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i2c_release(BUS);
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dev->again = val_again;
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return 0;
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}
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void tcs37727_read(const tcs37727_t *dev, tcs37727_data_t *data)
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{
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uint8_t buf[8];
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assert(dev && data);
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i2c_acquire(BUS);
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i2c_read_regs(BUS, ADR, (TCS37727_INC_TRANS | TCS37727_CDATA), buf, 8, 0);
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i2c_release(BUS);
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int32_t tmpc = ((uint16_t)buf[1] << 8) | buf[0];
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int32_t tmpr = ((uint16_t)buf[3] << 8) | buf[2];
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int32_t tmpg = ((uint16_t)buf[5] << 8) | buf[4];
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int32_t tmpb = ((uint16_t)buf[7] << 8) | buf[6];
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DEBUG("rawr: %"PRIi32" rawg %"PRIi32" rawb %"PRIi32" rawc %"PRIi32"\n",
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tmpr, tmpg, tmpb, tmpc);
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/* Remove IR component as described in the DN40. */
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int32_t ir = (tmpr + tmpg + tmpb - tmpc) >> 1;
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tmpr -= ir;
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tmpg -= ir;
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tmpb -= ir;
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/* Color temperature calculation as described in the DN40. */
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int32_t ct = (CT_COEF_IF * tmpb) / tmpr + CT_OFFSET_IF;
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/* Lux calculation as described in the DN40. */
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int32_t gi = R_COEF_IF * tmpr + G_COEF_IF * tmpg + B_COEF_IF * tmpb;
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/* TODO: add Glass Attenuation Factor GA compensation */
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int32_t cpl = (dev->p.atime * dev->again) / DGF_IF;
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int32_t lux = gi / cpl;
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/* Autogain */
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tcs37727_trim_gain((tcs37727_t *)dev, tmpc);
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data->red = (tmpr < 0) ? 0 : (tmpr * 1000) / cpl;
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data->green = (tmpg < 0) ? 0 : (tmpg * 1000) / cpl;
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data->blue = (tmpb < 0) ? 0 : (tmpb * 1000) / cpl;
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data->clear = (tmpb < 0) ? 0 : (tmpc * 1000) / cpl;
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data->lux = (lux < 0) ? 0 : lux;
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data->ct = (ct < 0) ? 0 : ct;
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}
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