Format with uncrustify

Signed-off-by: Tim Crawford <tcrawford@system76.com>
This commit is contained in:
Tim Crawford
2024-07-01 23:24:44 -06:00
committed by Tim Crawford
parent d3894392d5
commit 1e02be1cbe
10 changed files with 34 additions and 30 deletions

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@ -22,20 +22,20 @@
} }
#if defined(__AVR_ATmega328P__) #if defined(__AVR_ATmega328P__)
static struct Uart UARTS[] = { static struct Uart UARTS[] = {
UART(0) UART(0)
}; };
#elif defined(__AVR_ATmega32U4__) #elif defined(__AVR_ATmega32U4__)
static struct Uart UARTS[] = { static struct Uart UARTS[] = {
UART(1) UART(1)
}; };
#elif defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__) #elif defined(__AVR_ATmega1280__) || defined(__AVR_ATmega2560__)
static struct Uart UARTS[] = { static struct Uart UARTS[] = {
UART(0), UART(0),
UART(1), UART(1),
UART(2), UART(2),
UART(3) UART(3)
}; };
#else #else
#error "Could not find UART definitions" #error "Could not find UART definitions"
#endif #endif

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@ -46,7 +46,8 @@ void flash_write_enable(void);
* NOTE: __critical to ensure interrupts are disabled. This does mean that interrupt * NOTE: __critical to ensure interrupts are disabled. This does mean that interrupt
* such as the timer will be block until flash acccess is complete * such as the timer will be block until flash acccess is complete
*/ */
void flash_entry(uint32_t addr, uint8_t *data, uint32_t length, uint8_t command) __reentrant __critical { void flash_entry(uint32_t addr, uint8_t *data, uint32_t length,
uint8_t command) __reentrant __critical {
// Only allow access from 64KB to 128KB. // Only allow access from 64KB to 128KB.
if ((addr < 0x10000) || (length > 0x10000) || ((addr + length) > 0x20000)) if ((addr < 0x10000) || (length > 0x10000) || ((addr + length) > 0x20000))
return; return;

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@ -31,26 +31,26 @@ void kbled_reset(void) {
// Keep the following functions for compatibility - they are set via USB HID // Keep the following functions for compatibility - they are set via USB HID
uint8_t kbled_get(void) { uint8_t kbled_get(void) {
/* Always off */ // Always off
return 0; return 0;
} }
uint8_t kbled_max(void) { uint8_t kbled_max(void) {
/* Always off */ // Always off
return 0; return 0;
} }
void kbled_set(uint8_t level) { void kbled_set(uint8_t level) {
/* Fix unused variable */ // Fix unused variable
level = level; level = level;
} }
uint32_t kbled_get_color(void) { uint32_t kbled_get_color(void) {
/* Always black */ // Always black
return 0; return 0;
} }
void kbled_set_color(uint32_t color) { void kbled_set_color(uint32_t color) {
/* Fix unused variable */ // Fix unused variable
color = color; color = color;
} }

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@ -35,11 +35,11 @@ void kbled_set(uint8_t level) {
} }
uint32_t kbled_get_color(void) { uint32_t kbled_get_color(void) {
/* Always white */ // Always white
return 0xFFFFFF; return 0xFFFFFF;
} }
void kbled_set_color(uint32_t color) { void kbled_set_color(uint32_t color) {
/* Fix unused variable */ // Fix unused variable
color = color; color = color;
} }

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@ -382,7 +382,7 @@ void kbscan_event(void) {
} }
kbscan_matrix[i] = new; kbscan_matrix[i] = new;
} else if (new &&repeat_key != 0 && key_should_repeat(repeat_key)) { } else if (new && repeat_key != 0 && key_should_repeat(repeat_key)) {
// A key is being pressed // A key is being pressed
uint32_t time = time_get(); uint32_t time = time_get();
static uint32_t repeat_start = 0; static uint32_t repeat_start = 0;

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@ -82,7 +82,7 @@ bool peci_available(void) {
// If VW_HOST_C10 virtual wire is VWS_HIGH, PECI will wake the CPU // If VW_HOST_C10 virtual wire is VWS_HIGH, PECI will wake the CPU
//TODO: wake CPU every 8 seconds following Intel recommendation? //TODO: wake CPU every 8 seconds following Intel recommendation?
return (vw_get(&VW_HOST_C10) != VWS_HIGH); return vw_get(&VW_HOST_C10) != VWS_HIGH;
#else #else
// PECI is available if PLTRST# is high // PECI is available if PLTRST# is high
return gpio_get(&BUF_PLT_RST_N); return gpio_get(&BUF_PLT_RST_N);
@ -415,7 +415,8 @@ int16_t peci_wr_pkg_config(uint8_t index, uint16_t param, uint32_t data) {
#endif // CONFIG_PECI_OVER_ESPI #endif // CONFIG_PECI_OVER_ESPI
// PECI information can be found here: https://www.intel.com/content/dam/www/public/us/en/documents/design-guides/core-i7-lga-2011-guide.pdf // PECI information can be found here:
// https://www.intel.com/content/dam/www/public/us/en/documents/design-guides/core-i7-lga-2011-guide.pdf
uint8_t peci_get_fan_duty(void) { uint8_t peci_get_fan_duty(void) {
uint8_t duty; uint8_t duty;

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@ -69,7 +69,7 @@ static int16_t usbpd_current_limit(void) {
} }
static void usbpd_dump(void) { static void usbpd_dump(void) {
/* Dump all registers for debugging */ // Dump all registers for debugging
for (uint8_t reg = 0x00; reg < 0x40; reg += 1) { for (uint8_t reg = 0x00; reg < 0x40; reg += 1) {
uint8_t value[65] = { 0 }; uint8_t value[65] = { 0 };
int16_t res = i2c_get(&I2C_USBPD, USBPD_ADDRESS, reg, value, sizeof(value)); int16_t res = i2c_get(&I2C_USBPD, USBPD_ADDRESS, reg, value, sizeof(value));

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@ -19,7 +19,7 @@ void board_init(void) {
} }
void board_on_ac(bool ac) { void board_on_ac(bool ac) {
/* Fix unused variable */ // Fix unused variable
ac = ac; ac = ac;
} }

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@ -2,7 +2,8 @@
#include <common/i2c.h> #include <common/i2c.h>
int16_t i2c_recv(struct I2C *const i2c, uint8_t addr, uint8_t *const data, uint16_t length) __reentrant { int16_t i2c_recv(struct I2C *const i2c, uint8_t addr, uint8_t *const data,
uint16_t length) __reentrant {
int16_t res = 0; int16_t res = 0;
res = i2c_start(i2c, addr, true); res = i2c_start(i2c, addr, true);
@ -18,7 +19,8 @@ int16_t i2c_recv(struct I2C *const i2c, uint8_t addr, uint8_t *const data, uint1
return res; return res;
} }
int16_t i2c_send(struct I2C *const i2c, uint8_t addr, uint8_t *const data, uint16_t length) __reentrant { int16_t i2c_send(struct I2C *const i2c, uint8_t addr, uint8_t *const data,
uint16_t length) __reentrant {
int16_t res = 0; int16_t res = 0;
res = i2c_start(i2c, addr, false); res = i2c_start(i2c, addr, false);