Use millis_t where needed (#12152)
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b641571098
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44369d536a
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@ -37,7 +37,7 @@ void HAL_init();
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#include <stdarg.h>
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#include <algorithm>
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extern "C" volatile uint32_t _millis;
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extern "C" volatile millis_t _millis;
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#include <Arduino.h>
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#include <pinmapping.h>
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@ -71,7 +71,7 @@ void HAL_init() {
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#ifndef USB_SD_DISABLED
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MSC_SD_Init(0); // Enable USB SD card access
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#endif
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const uint32_t usb_timeout = millis() + 2000;
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const millis_t usb_timeout = millis() + 2000;
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while (!USB_Configuration && PENDING(millis(), usb_timeout)) {
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delay(50);
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HAL_idletask();
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@ -33,6 +33,8 @@
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#include <lpc17xx_pinsel.h>
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#include <lpc17xx_libcfg_default.h>
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#include "../../../core/millis_t.h"
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//////////////////////////////////////////////////////////////////////////////////////
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// These two routines are exact copies of the lpc17xx_i2c.c routines. Couldn't link to
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@ -149,13 +151,13 @@ void u8g_i2c_init(uint8_t clock_option) {
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u8g_i2c_start(0); // send slave address and write bit
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}
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volatile extern uint32_t _millis;
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volatile extern millis_t _millis;
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uint8_t u8g_i2c_send_byte(uint8_t data) {
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#define I2C_TIMEOUT 3
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LPC_I2C1->I2DAT = data & I2C_I2DAT_BITMASK; // transmit data
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LPC_I2C1->I2CONSET = I2C_I2CONSET_AA;
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LPC_I2C1->I2CONCLR = I2C_I2CONCLR_SIC;
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uint32_t timeout = _millis + I2C_TIMEOUT;
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millis_t timeout = _millis + I2C_TIMEOUT;
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while ((I2C_status != I2C_I2STAT_M_TX_DAT_ACK) && (I2C_status != I2C_I2STAT_M_TX_DAT_NACK) && (timeout > _millis)); // wait for xmit to finish
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// had hangs with SH1106 so added time out - have seen temporary screen corruption when this happens
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return 1;
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@ -240,7 +240,7 @@ bool Sd2Card::init(uint8_t sckRateID, pin_t chipSelectPin) {
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errorCode_ = type_ = 0;
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chipSelectPin_ = chipSelectPin;
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// 16-bit init start time allows over a minute
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uint16_t t0 = (uint16_t)millis();
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const millis_t init_timeout = millis() + SD_INIT_TIMEOUT;
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uint32_t arg;
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// If init takes more than 4s it could trigger
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@ -268,7 +268,7 @@ bool Sd2Card::init(uint8_t sckRateID, pin_t chipSelectPin) {
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// Command to go idle in SPI mode
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while ((status_ = cardCommand(CMD0, 0)) != R1_IDLE_STATE) {
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if (((uint16_t)millis() - t0) > SD_INIT_TIMEOUT) {
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if (ELAPSED(millis(), init_timeout)) {
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error(SD_CARD_ERROR_CMD0);
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goto FAIL;
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}
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@ -297,7 +297,7 @@ bool Sd2Card::init(uint8_t sckRateID, pin_t chipSelectPin) {
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break;
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}
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if (((uint16_t)millis() - t0) > SD_INIT_TIMEOUT) {
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if (ELAPSED(millis(), init_timeout)) {
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error(SD_CARD_ERROR_CMD8);
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goto FAIL;
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}
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@ -312,7 +312,7 @@ bool Sd2Card::init(uint8_t sckRateID, pin_t chipSelectPin) {
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arg = type() == SD_CARD_TYPE_SD2 ? 0x40000000 : 0;
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while ((status_ = cardAcmd(ACMD41, arg)) != R1_READY_STATE) {
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// check for timeout
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if (((uint16_t)millis() - t0) > SD_INIT_TIMEOUT) {
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if (ELAPSED(millis(), init_timeout)) {
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error(SD_CARD_ERROR_ACMD41);
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goto FAIL;
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}
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@ -449,9 +449,9 @@ bool Sd2Card::readData(uint8_t* dst) {
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bool Sd2Card::readData(uint8_t* dst, uint16_t count) {
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// wait for start block token
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uint16_t t0 = millis();
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const millis_t read_timeout = millis() + SD_READ_TIMEOUT;
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while ((status_ = spiRec()) == 0xFF) {
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if (((uint16_t)millis() - t0) > SD_READ_TIMEOUT) {
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if (ELAPSED(millis(), read_timeout)) {
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error(SD_CARD_ERROR_READ_TIMEOUT);
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goto FAIL;
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}
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@ -553,10 +553,10 @@ bool Sd2Card::setSckRate(uint8_t sckRateID) {
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}
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// wait for card to go not busy
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bool Sd2Card::waitNotBusy(uint16_t timeoutMillis) {
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uint16_t t0 = millis();
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bool Sd2Card::waitNotBusy(const millis_t timeout_ms) {
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const millis_t wait_timeout = millis() + timeout_ms;
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while (spiRec() != 0xFF)
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if (((uint16_t)millis() - t0) >= timeoutMillis) return false;
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if (ELAPSED(millis(), wait_timeout)) return false;
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return true;
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}
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@ -199,7 +199,7 @@ class Sd2Card {
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void chipDeselect();
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void chipSelect();
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void type(uint8_t value) { type_ = value; }
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bool waitNotBusy(uint16_t timeoutMillis);
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bool waitNotBusy(const millis_t timeout_ms);
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bool writeData(uint8_t token, const uint8_t* src);
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};
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@ -50,7 +50,7 @@ void Sd2Card::idle() {
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state = USB_HOST_WAITING;
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break;
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case USB_HOST_WAITING:
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if (millis() > next_retry) {
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if (ELAPSED(millis(), next_retry)) {
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next_retry = millis() + 10000;
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state = USB_HOST_UNINITIALIZED;
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}
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