Restore STM32F1 series to working order. (#10229)
The `_O2` attribute is no longer needed on the malyanlcd function, and the macros have broken timer numbers - reset this to a function to return the right device. Also fix the bit order cast in SPI.
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@ -55,6 +55,7 @@
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// --------------------------------------------------------------------------
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// Public Variables
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// --------------------------------------------------------------------------
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USBSerial SerialUSB;
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uint16_t HAL_adc_result;
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@ -69,6 +69,7 @@
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#error "SERIAL_PORT must be from -1 to 3"
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#endif
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#if SERIAL_PORT == -1
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extern USBSerial SerialUSB;
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#define MYSERIAL0 SerialUSB
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#elif SERIAL_PORT == 0
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#define MYSERIAL0 Serial
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@ -88,6 +89,7 @@
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#endif
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#define NUM_SERIAL 2
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#if SERIAL_PORT_2 == -1
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extern USBSerial SerialUSB;
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#define MYSERIAL1 SerialUSB
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#elif SERIAL_PORT_2 == 0
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#define MYSERIAL1 Serial
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@ -41,6 +41,7 @@
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#include "pins_arduino.h"
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#include "spi_pins.h"
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#include "../../core/macros.h"
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#include <spi.h>
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// --------------------------------------------------------------------------
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// Public Variables
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@ -166,7 +167,7 @@ void spiSendBlock(uint8_t token, const uint8_t* buf) {
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/** Begin SPI transaction, set clock, bit order, data mode */
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void spiBeginTransaction(uint32_t spiClock, uint8_t bitOrder, uint8_t dataMode) {
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spiConfig = SPISettings(spiClock, bitOrder, dataMode);
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spiConfig = SPISettings(spiClock, (BitOrder)bitOrder, dataMode);
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SPI.beginTransaction(spiConfig);
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}
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@ -163,4 +163,51 @@ bool HAL_timer_interrupt_enabled(const uint8_t timer_num) {
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return false;
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}
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timer_dev* get_timer_dev(int number) {
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switch (number) {
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#if STM32_HAVE_TIMER(1)
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case 1: return &timer1;
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#endif
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#if STM32_HAVE_TIMER(2)
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case 2: return &timer2;
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#endif
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#if STM32_HAVE_TIMER(3)
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case 3: return &timer3;
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#endif
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#if STM32_HAVE_TIMER(4)
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case 4: return &timer4;
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#endif
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#if STM32_HAVE_TIMER(5)
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case 5: return &timer5;
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#endif
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#if STM32_HAVE_TIMER(6)
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case 6: return &timer6;
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#endif
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#if STM32_HAVE_TIMER(7)
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case 7: return &timer7;
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#endif
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#if STM32_HAVE_TIMER(8)
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case 8: return &timer8;
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#endif
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#if STM32_HAVE_TIMER(9)
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case 9: return &timer9;
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#endif
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#if STM32_HAVE_TIMER(10)
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case 10: return &timer10;
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#endif
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#if STM32_HAVE_TIMER(11)
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case 11: return &timer11;
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#endif
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#if STM32_HAVE_TIMER(12)
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case 12: return &timer12;
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#endif
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#if STM32_HAVE_TIMER(13)
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case 13: return &timer14;
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#endif
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#if STM32_HAVE_TIMER(14)
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case 14: return &timer14;
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#endif
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}
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}
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#endif // __STM32F1__
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@ -32,6 +32,7 @@
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// --------------------------------------------------------------------------
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#include <stdint.h>
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#include <libmaple/timer.h>
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// --------------------------------------------------------------------------
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// Defines
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@ -56,8 +57,9 @@ typedef uint16_t hal_timer_t;
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#define TEMP_TIMER_NUM 2 // index of timer to use for temperature
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#define TEMP_TIMER_CHAN 1 // Channel of the timer to use for compare and interrupts
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#define CAT(a, ...) a ## __VA_ARGS__
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#define TIMER_DEV(num) CAT (&timer, num)
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timer_dev* get_timer_dev(int number);
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#define TIMER_DEV(num) get_timer_dev(num)
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#define STEP_TIMER_DEV TIMER_DEV(STEP_TIMER_NUM)
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#define TEMP_TIMER_DEV TIMER_DEV(TEMP_TIMER_NUM)
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@ -86,7 +88,6 @@ typedef uint16_t hal_timer_t;
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#define HAL_timer_get_count(timer_num) timer_get_count(TIMER_DEV(timer_num))
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#define HAL_ENABLE_ISRs() do { if (thermalManager.in_temp_isr)DISABLE_TEMPERATURE_INTERRUPT(); else ENABLE_TEMPERATURE_INTERRUPT(); ENABLE_STEPPER_DRIVER_INTERRUPT(); } while(0)
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// TODO change this
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@ -393,7 +393,7 @@ void update_usb_status(const bool forceUpdate) {
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* The optimize attribute fixes a register Compile
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* error for amtel.
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*/
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void lcd_update() _O2 {
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void lcd_update() {
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static char inbound_buffer[MAX_CURLY_COMMAND];
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// First report USB status.
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