2018-05-04 20:16:21 +02:00
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// Basic support for common SPI controlled thermocouple chips
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//
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// Copyright (C) 2018 Petri Honkala <cruwaller@gmail.com>
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// Copyright (C) 2018 Kevin O'Connor <kevin@koconnor.net>
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//
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// This file may be distributed under the terms of the GNU GPLv3 license.
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#include <string.h> // memcpy
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#include "board/irq.h" // irq_disable
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#include "basecmd.h" // oid_alloc
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#include "byteorder.h" // be32_to_cpu
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#include "command.h" // DECL_COMMAND
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#include "sched.h" // DECL_TASK
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#include "spicmds.h" // spidev_transfer
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enum {
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2019-03-12 17:58:04 +01:00
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TS_CHIP_MAX31855, TS_CHIP_MAX31856, TS_CHIP_MAX31865, TS_CHIP_MAX6675
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2018-05-04 20:16:21 +02:00
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};
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2019-03-12 17:58:04 +01:00
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DECL_ENUMERATION("thermocouple_type", "MAX31855", TS_CHIP_MAX31855);
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DECL_ENUMERATION("thermocouple_type", "MAX31856", TS_CHIP_MAX31856);
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DECL_ENUMERATION("thermocouple_type", "MAX31865", TS_CHIP_MAX31865);
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DECL_ENUMERATION("thermocouple_type", "MAX6675", TS_CHIP_MAX6675);
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2018-05-04 20:16:21 +02:00
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struct thermocouple_spi {
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struct timer timer;
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uint32_t rest_time;
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uint32_t min_value; // Min allowed ADC value
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uint32_t max_value; // Max allowed ADC value
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struct spidev_s *spi;
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uint8_t chip_type, flags;
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};
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enum {
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TS_PENDING = 1,
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};
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static struct task_wake thermocouple_wake;
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static uint_fast8_t thermocouple_event(struct timer *timer) {
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struct thermocouple_spi *spi = container_of(
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timer, struct thermocouple_spi, timer);
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// Trigger task to read and send results
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sched_wake_task(&thermocouple_wake);
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spi->flags |= TS_PENDING;
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spi->timer.waketime += spi->rest_time;
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return SF_RESCHEDULE;
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}
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void
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command_config_thermocouple(uint32_t *args)
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{
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uint8_t chip_type = args[2];
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2019-03-12 17:58:04 +01:00
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if (chip_type > TS_CHIP_MAX6675)
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2018-05-04 20:16:21 +02:00
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shutdown("Invalid thermocouple chip type");
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struct thermocouple_spi *spi = oid_alloc(
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args[0], command_config_thermocouple, sizeof(*spi));
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spi->timer.func = thermocouple_event;
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spi->spi = spidev_oid_lookup(args[1]);
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spi->chip_type = chip_type;
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}
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DECL_COMMAND(command_config_thermocouple,
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2019-03-12 17:58:04 +01:00
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"config_thermocouple oid=%c spi_oid=%c thermocouple_type=%c");
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2018-05-04 20:16:21 +02:00
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void
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command_query_thermocouple(uint32_t *args)
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{
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struct thermocouple_spi *spi = oid_lookup(
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args[0], command_config_thermocouple);
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sched_del_timer(&spi->timer);
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spi->timer.waketime = args[1];
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spi->rest_time = args[2];
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2018-07-25 15:06:50 +02:00
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if (! spi->rest_time)
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return;
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2018-05-04 20:16:21 +02:00
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spi->min_value = args[3];
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spi->max_value = args[4];
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sched_add_timer(&spi->timer);
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}
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DECL_COMMAND(command_query_thermocouple,
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"query_thermocouple oid=%c clock=%u rest_ticks=%u"
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" min_value=%u max_value=%u");
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static void
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thermocouple_respond(struct thermocouple_spi *spi, uint32_t next_begin_time
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, uint32_t value, uint8_t fault, uint8_t oid)
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{
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sendf("thermocouple_result oid=%c next_clock=%u value=%u fault=%c",
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oid, next_begin_time, value, fault);
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2018-07-25 15:06:50 +02:00
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/* check the result and stop if below or above allowed range */
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if (value < spi->min_value || value > spi->max_value)
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try_shutdown("Thermocouple ADC out of range");
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2018-05-04 20:16:21 +02:00
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}
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static void
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thermocouple_handle_max31855(struct thermocouple_spi *spi
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, uint32_t next_begin_time, uint8_t oid)
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{
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uint8_t msg[4] = { 0x00, 0x00, 0x00, 0x00 };
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spidev_transfer(spi->spi, 1, sizeof(msg), msg);
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uint32_t value;
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memcpy(&value, msg, sizeof(value));
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value = be32_to_cpu(value);
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thermocouple_respond(spi, next_begin_time, value, 0, oid);
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// Kill after data send, host decode an error
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if (value & 0x04)
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try_shutdown("Thermocouple reader fault");
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}
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#define MAX31856_LTCBH_REG 0x0C
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#define MAX31856_SR_REG 0x0F
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static void
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thermocouple_handle_max31856(struct thermocouple_spi *spi
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, uint32_t next_begin_time, uint8_t oid)
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{
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uint8_t msg[4] = { MAX31856_LTCBH_REG, 0x00, 0x00, 0x00 };
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spidev_transfer(spi->spi, 1, sizeof(msg), msg);
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uint32_t value;
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memcpy(&value, msg, sizeof(value));
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value = be32_to_cpu(value) & 0x00ffffff;
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// Read faults
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msg[0] = MAX31856_SR_REG;
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msg[1] = 0x00;
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spidev_transfer(spi->spi, 1, 2, msg);
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thermocouple_respond(spi, next_begin_time, value, msg[1], oid);
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}
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#define MAX31865_RTDMSB_REG 0x01
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#define MAX31865_FAULTSTAT_REG 0x07
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static void
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thermocouple_handle_max31865(struct thermocouple_spi *spi
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, uint32_t next_begin_time, uint8_t oid)
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{
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uint8_t msg[4] = { MAX31865_RTDMSB_REG, 0x00, 0x00, 0x00 };
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spidev_transfer(spi->spi, 1, 3, msg);
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uint32_t value;
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memcpy(&value, msg, sizeof(value));
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value = (be32_to_cpu(value) >> 8) & 0xffff;
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// Read faults
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msg[0] = MAX31865_FAULTSTAT_REG;
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msg[1] = 0x00;
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spidev_transfer(spi->spi, 1, 2, msg);
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thermocouple_respond(spi, next_begin_time, value, msg[1], oid);
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// Kill after data send, host decode an error
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if (value & 0x0001)
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try_shutdown("Thermocouple reader fault");
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}
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2018-06-18 02:59:29 +02:00
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static void
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thermocouple_handle_max6675(struct thermocouple_spi *spi
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, uint32_t next_begin_time, uint8_t oid)
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{
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uint8_t msg[2] = { 0x00, 0x00};
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spidev_transfer(spi->spi, 1, sizeof(msg), msg);
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uint16_t value;
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memcpy(&value, msg, sizeof(msg));
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value = be16_to_cpu(value);
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thermocouple_respond(spi, next_begin_time, value, 0, oid);
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// Kill after data send, host decode an error
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if (value & 0x04)
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try_shutdown("Thermocouple reader fault");
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}
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2018-05-04 20:16:21 +02:00
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// task to read thermocouple and send response
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void
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thermocouple_task(void)
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{
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if (!sched_check_wake(&thermocouple_wake))
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return;
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uint8_t oid;
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struct thermocouple_spi *spi;
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foreach_oid(oid, spi, command_config_thermocouple) {
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if (!(spi->flags & TS_PENDING))
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continue;
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irq_disable();
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uint32_t next_begin_time = spi->timer.waketime;
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spi->flags &= ~TS_PENDING;
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irq_enable();
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switch (spi->chip_type) {
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case TS_CHIP_MAX31855:
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thermocouple_handle_max31855(spi, next_begin_time, oid);
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break;
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case TS_CHIP_MAX31856:
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thermocouple_handle_max31856(spi, next_begin_time, oid);
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break;
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case TS_CHIP_MAX31865:
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thermocouple_handle_max31865(spi, next_begin_time, oid);
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break;
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2018-06-18 02:59:29 +02:00
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case TS_CHIP_MAX6675:
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thermocouple_handle_max6675(spi, next_begin_time, oid);
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break;
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2018-05-04 20:16:21 +02:00
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}
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}
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}
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DECL_TASK(thermocouple_task);
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