Files
qmk_firmware/drivers/chibios/spi_master.c
James Young 4d8d69237d 2020 November 28 Breaking Changes Update (#11053)
* Branch point for 2020 November 28 Breaking Change

* Remove matrix_col_t to allow MATRIX_ROWS > 32 (#10183)

* Add support for soft serial to ATmega32U2 (#10204)

* Change MIDI velocity implementation to allow direct control of velocity value (#9940)

* Add ability to build a subset of all keyboards based on platform.

* Actually use eeprom_driver_init().

* Make bootloader_jump weak for ChibiOS. (#10417)

* Joystick 16-bit support (#10439)

* Per-encoder resolutions (#10259)

* Share button state from mousekey to pointing_device (#10179)

* Add hotfix for chibios keyboards not wake (#10088)

* Add advanced/efficient RGB Matrix Indicators (#8564)

* Naming change.

* Support for STM32 GPIOF,G,H,I,J,K (#10206)

* Add milc as a dependency and remove the installed milc (#10563)

* ChibiOS upgrade: early init conversions (#10214)

* ChibiOS upgrade: configuration file migrator (#9952)

* Haptic and solenoid cleanup (#9700)

* XD75 cleanup (#10524)

* OLED display update interval support (#10388)

* Add definition based on currently-selected serial driver. (#10716)

* New feature: Retro Tapping per key (#10622)

* Allow for modification of output RGB values when using rgblight/rgb_matrix. (#10638)

* Add housekeeping task callbacks so that keyboards/keymaps are capable of executing code for each main loop iteration. (#10530)

* Rescale both ChibiOS and AVR backlighting.

* Reduce Helix keyboard build variation (#8669)

* Minor change to behavior allowing display updates to continue between task ticks (#10750)

* Some GPIO manipulations in matrix.c change to atomic. (#10491)

* qmk cformat (#10767)

* [Keyboard] Update the Speedo firmware for v3.0 (#10657)

* Maartenwut/Maarten namechange to evyd13/Evy (#10274)

* [quantum] combine repeated lines of code (#10837)

* Add step sequencer feature (#9703)

* aeboards/ext65 refactor (#10820)

* Refactor xelus/dawn60 for Rev2 later (#10584)

* add DEBUG_MATRIX_SCAN_RATE_ENABLE to common_features.mk (#10824)

* [Core] Added `add_oneshot_mods` & `del_oneshot_mods` (#10549)

* update chibios os usb for the otg driver (#8893)

* Remove HD44780 References, Part 4 (#10735)

* [Keyboard] Add Valor FRL TKL (+refactor) (#10512)

* Fix cursor position bug in oled_write_raw functions (#10800)

* Fixup version.h writing when using SKIP_VERSION=yes (#10972)

* Allow for certain code in the codebase assuming length of string. (#10974)

* Add AT90USB support for serial.c (#10706)

* Auto shift: support repeats and early registration (#9826)

* Rename ledmatrix.h to match .c file (#7949)

* Split RGB_MATRIX_ENABLE into _ENABLE and _DRIVER (#10231)

* Split LED_MATRIX_ENABLE into _ENABLE and _DRIVER (#10840)

* Merge point for 2020 Nov 28 Breaking Change
2021-01-12 22:46:05 -08:00

143 lines
4.4 KiB
C

/* Copyright 2020 Nick Brassel (tzarc)
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <https://www.gnu.org/licenses/>.
*/
#include "spi_master.h"
#include "quantum.h"
#include "timer.h"
static pin_t currentSlavePin = NO_PIN;
static SPIConfig spiConfig = {false, NULL, 0, 0, 0, 0};
__attribute__((weak)) void spi_init(void) {
static bool is_initialised = false;
if (!is_initialised) {
is_initialised = true;
// Try releasing special pins for a short time
palSetPadMode(PAL_PORT(SPI_SCK_PIN), PAL_PAD(SPI_SCK_PIN), PAL_MODE_INPUT);
palSetPadMode(PAL_PORT(SPI_MOSI_PIN), PAL_PAD(SPI_MOSI_PIN), PAL_MODE_INPUT);
palSetPadMode(PAL_PORT(SPI_MISO_PIN), PAL_PAD(SPI_MISO_PIN), PAL_MODE_INPUT);
chThdSleepMilliseconds(10);
#if defined(USE_GPIOV1)
palSetPadMode(PAL_PORT(SPI_SCK_PIN), PAL_PAD(SPI_SCK_PIN), PAL_MODE_STM32_ALTERNATE_PUSHPULL);
palSetPadMode(PAL_PORT(SPI_MOSI_PIN), PAL_PAD(SPI_MOSI_PIN), PAL_MODE_STM32_ALTERNATE_PUSHPULL);
palSetPadMode(PAL_PORT(SPI_MISO_PIN), PAL_PAD(SPI_MISO_PIN), PAL_MODE_STM32_ALTERNATE_PUSHPULL);
#else
palSetPadMode(PAL_PORT(SPI_SCK_PIN), PAL_PAD(SPI_SCK_PIN), PAL_MODE_ALTERNATE(SPI_SCK_PAL_MODE) | PAL_STM32_OTYPE_PUSHPULL | PAL_STM32_OSPEED_HIGHEST);
palSetPadMode(PAL_PORT(SPI_MOSI_PIN), PAL_PAD(SPI_MOSI_PIN), PAL_MODE_ALTERNATE(SPI_MOSI_PAL_MODE) | PAL_STM32_OTYPE_PUSHPULL | PAL_STM32_OSPEED_HIGHEST);
palSetPadMode(PAL_PORT(SPI_MISO_PIN), PAL_PAD(SPI_MISO_PIN), PAL_MODE_ALTERNATE(SPI_MISO_PAL_MODE) | PAL_STM32_OTYPE_PUSHPULL | PAL_STM32_OSPEED_HIGHEST);
#endif
}
}
bool spi_start(pin_t slavePin, bool lsbFirst, uint8_t mode, uint16_t divisor) {
if (currentSlavePin != NO_PIN || slavePin == NO_PIN) {
return false;
}
uint16_t roundedDivisor = 2;
while (roundedDivisor < divisor) {
roundedDivisor <<= 1;
}
if (roundedDivisor < 2 || roundedDivisor > 256) {
return false;
}
spiConfig.cr1 = 0;
if (lsbFirst) {
spiConfig.cr1 |= SPI_CR1_LSBFIRST;
}
switch (mode) {
case 0:
break;
case 1:
spiConfig.cr1 |= SPI_CR1_CPHA;
break;
case 2:
spiConfig.cr1 |= SPI_CR1_CPOL;
break;
case 3:
spiConfig.cr1 |= SPI_CR1_CPHA | SPI_CR1_CPOL;
break;
}
switch (roundedDivisor) {
case 2:
break;
case 4:
spiConfig.cr1 |= SPI_CR1_BR_0;
break;
case 8:
spiConfig.cr1 |= SPI_CR1_BR_1;
break;
case 16:
spiConfig.cr1 |= SPI_CR1_BR_1 | SPI_CR1_BR_0;
break;
case 32:
spiConfig.cr1 |= SPI_CR1_BR_2;
break;
case 64:
spiConfig.cr1 |= SPI_CR1_BR_2 | SPI_CR1_BR_0;
break;
case 128:
spiConfig.cr1 |= SPI_CR1_BR_2 | SPI_CR1_BR_1;
break;
case 256:
spiConfig.cr1 |= SPI_CR1_BR_2 | SPI_CR1_BR_1 | SPI_CR1_BR_0;
break;
}
currentSlavePin = slavePin;
spiConfig.ssport = PAL_PORT(slavePin);
spiConfig.sspad = PAL_PAD(slavePin);
setPinOutput(slavePin);
spiStart(&SPI_DRIVER, &spiConfig);
spiSelect(&SPI_DRIVER);
return true;
}
spi_status_t spi_write(uint8_t data) { return spi_transmit(&data, 1); }
spi_status_t spi_read(void) {
uint8_t data = 0;
spi_receive(&data, 1);
return data;
}
spi_status_t spi_transmit(const uint8_t *data, uint16_t length) {
spiSend(&SPI_DRIVER, length, data);
return SPI_STATUS_SUCCESS;
}
spi_status_t spi_receive(uint8_t *data, uint16_t length) {
spiReceive(&SPI_DRIVER, length, data);
return SPI_STATUS_SUCCESS;
}
void spi_stop(void) {
if (currentSlavePin != NO_PIN) {
spiUnselect(&SPI_DRIVER);
spiStop(&SPI_DRIVER);
currentSlavePin = NO_PIN;
}
}