sam3x8e: Add support for ADC pins
Support analog-to-digital inputs. Signed-off-by: Kevin O'Connor <kevin@koconnor.net>
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@ -89,8 +89,6 @@ Documentation
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Hardware features
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=================
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* Support ADC on Arduino Due.
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* Port firmware to more architectures:
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* Beagle Bone Black PRU
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* Smoothieboard / NXP LPC1769 (ARM cortex-M3)
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@ -18,7 +18,7 @@ struct analog_in {
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uint8_t state, sample_count;
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};
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static uint8_t
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static uint_fast8_t
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analog_in_event(struct timer *timer)
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{
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struct analog_in *a = container_of(timer, struct analog_in, timer);
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@ -2,6 +2,11 @@
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if MACH_SAM3X8E
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config SAM_SELECT
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bool
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default y
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select HAVE_GPIO_ADC
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config BOARD_DIRECTORY
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string
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default "sam3x8e"
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@ -5,6 +5,7 @@
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// This file may be distributed under the terms of the GNU GPLv3 license.
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#include <stdint.h> // uint32_t
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#include "autoconf.h" // CONFIG_CLOCK_FREQ
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#include "command.h" // shutdown
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#include "compiler.h" // ARRAY_SIZE
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#include "gpio.h" // gpio_out_setup
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@ -113,3 +114,78 @@ gpio_in_read(struct gpio_in g)
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Pio *regs = g.regs;
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return !!(regs->PIO_PDSR & g.bit);
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}
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static const uint8_t adc_pins[] = {
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GPIO('A', 2), GPIO('A', 3), GPIO('A', 4), GPIO('A', 6),
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GPIO('A', 22), GPIO('A', 23), GPIO('A', 24), GPIO('A', 16),
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GPIO('B', 12), GPIO('B', 13), GPIO('B', 17), GPIO('B', 18),
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GPIO('B', 19), GPIO('B', 20)
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};
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#define ADC_FREQ_MAX 20000000
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DECL_CONSTANT(ADC_MAX, 4096);
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struct gpio_adc
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gpio_adc_setup(uint8_t pin)
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{
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int chan;
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for (chan=0; chan<ARRAY_SIZE(adc_pins); chan++) {
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if (adc_pins[chan] != pin)
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continue;
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// Found PIN
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if (!(PMC->PMC_PCER1 & (1 << (ID_ADC-32)))) {
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// Setup ADC
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PMC->PMC_PCER1 = 1 << (ID_ADC-32);
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uint32_t prescal = SystemCoreClock / (2 * ADC_FREQ_MAX) - 1;
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ADC->ADC_MR = (ADC_MR_PRESCAL(prescal)
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| ADC_MR_STARTUP_SUT768
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| ADC_MR_TRANSFER(1));
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}
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return (struct gpio_adc){ .bit = 1 << chan };
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}
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shutdown("Not a valid ADC pin");
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}
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// Try to sample a value. Returns zero if sample ready, otherwise
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// returns the number of clock ticks the caller should wait before
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// retrying this function.
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uint32_t
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gpio_adc_sample(struct gpio_adc g)
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{
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uint32_t chsr = ADC->ADC_CHSR & 0xffff;
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if (!chsr) {
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// Start sample
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ADC->ADC_CHER = g.bit;
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ADC->ADC_CR = ADC_CR_START;
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goto need_delay;
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}
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if (chsr != g.bit)
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// Sampling in progress on another channel
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goto need_delay;
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if (!(ADC->ADC_ISR & ADC_ISR_DRDY))
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// Conversion still in progress
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goto need_delay;
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// Conversion ready
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return 0;
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need_delay:
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return ADC_FREQ_MAX * 1000ULL / CONFIG_CLOCK_FREQ;
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}
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// Read a value; use only after gpio_adc_sample() returns zero
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uint16_t
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gpio_adc_read(struct gpio_adc g)
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{
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ADC->ADC_CHDR = g.bit;
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return ADC->ADC_LCDR;
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}
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// Cancel a sample that may have been started with gpio_adc_sample()
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void
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gpio_adc_cancel_sample(struct gpio_adc g)
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{
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irqstatus_t flag = irq_save();
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if ((ADC->ADC_CHSR & 0xffff) == g.bit)
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gpio_adc_read(g);
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irq_restore(flag);
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}
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@ -20,4 +20,12 @@ struct gpio_in {
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struct gpio_in gpio_in_setup(uint8_t pin, int8_t pull_up);
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uint8_t gpio_in_read(struct gpio_in g);
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struct gpio_adc {
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uint32_t bit;
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};
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struct gpio_adc gpio_adc_setup(uint8_t pin);
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uint32_t gpio_adc_sample(struct gpio_adc g);
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uint16_t gpio_adc_read(struct gpio_adc g);
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void gpio_adc_cancel_sample(struct gpio_adc g);
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#endif // gpio.h
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