mirror of
https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-08 08:49:52 +03:00
merged Michael's latest UART code for ESP8266
This commit is contained in:
@@ -114,7 +114,11 @@ void ICACHE_FLASH_ATTR EMSuart::emsuart_flush_fifos() {
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* init UART0 driver
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* init UART0 driver
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*/
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*/
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void ICACHE_FLASH_ATTR EMSuart::start(uint8_t tx_mode) {
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void ICACHE_FLASH_ATTR EMSuart::start(uint8_t tx_mode) {
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emsTxWait = 5 * EMSUART_TX_BIT_TIME * (tx_mode + 10); // bittimes wait between bytes
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if (tx_mode_ > 100) {
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emsTxWait = 5 * EMSUART_TX_BIT_TIME * (tx_mode - 90);
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} else {
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emsTxWait = 5 * EMSUART_TX_BIT_TIME * (tx_mode + 10); // bittimes wait to next bytes
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}
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if (tx_mode_ != 0xFF) { // it's a restart no need to configure uart
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if (tx_mode_ != 0xFF) { // it's a restart no need to configure uart
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tx_mode_ = tx_mode;
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tx_mode_ = tx_mode;
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restart();
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restart();
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@@ -175,12 +179,12 @@ void ICACHE_FLASH_ATTR EMSuart::start(uint8_t tx_mode) {
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system_uart_swap();
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system_uart_swap();
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ETS_UART_INTR_ATTACH(emsuart_rx_intr_handler, nullptr);
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ETS_UART_INTR_ATTACH(emsuart_rx_intr_handler, nullptr);
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// ETS_UART_INTR_ENABLE();
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drop_next_rx = true;
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drop_next_rx = true;
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// for sending with large delay in EMS+ mode we use a timer interrupt
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// for sending with large delay in EMS+ mode we use a timer interrupt
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timer1_attachInterrupt(emsuart_tx_timer_intr_handler); // Add ISR Function
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timer1_attachInterrupt(emsuart_tx_timer_intr_handler); // Add ISR Function
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timer1_enable(TIM_DIV16, TIM_EDGE, TIM_SINGLE); // 5 MHz timer
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timer1_enable(TIM_DIV16, TIM_EDGE, TIM_SINGLE); // 5 MHz timer
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ETS_UART_INTR_ENABLE();
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USIE(EMSUART_UART) = (1 << UIBD);
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USIE(EMSUART_UART) = (1 << UIBD);
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}
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}
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@@ -190,7 +194,9 @@ void ICACHE_FLASH_ATTR EMSuart::start(uint8_t tx_mode) {
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*/
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*/
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void ICACHE_FLASH_ATTR EMSuart::stop() {
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void ICACHE_FLASH_ATTR EMSuart::stop() {
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USIE(EMSUART_UART) = 0;
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USIE(EMSUART_UART) = 0;
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// timer1_disable();
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USC0(EMSUART_UART) &= ~(1 << UCBRK); // clear BRK bit
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timer1_disable();
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sending_ = false;
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}
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}
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/*
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/*
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@@ -203,7 +209,7 @@ void ICACHE_FLASH_ATTR EMSuart::restart() {
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}
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}
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emsTxBufIdx = 0;
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emsTxBufIdx = 0;
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emsTxBufLen = 0;
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emsTxBufLen = 0;
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// timer1_enable(TIM_DIV16, TIM_EDGE, TIM_SINGLE);
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timer1_enable(TIM_DIV16, TIM_EDGE, TIM_SINGLE);
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USIE(EMSUART_UART) = (1 << UIBD);
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USIE(EMSUART_UART) = (1 << UIBD);
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}
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}
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@@ -282,7 +288,11 @@ uint16_t ICACHE_FLASH_ATTR EMSuart::transmit(uint8_t * buf, uint8_t len) {
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USF(EMSUART_UART) = buf[0]; // send first byte
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USF(EMSUART_UART) = buf[0]; // send first byte
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emsTxBufIdx = 0;
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emsTxBufIdx = 0;
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emsTxBufLen = len;
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emsTxBufLen = len;
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if (tx_mode_ > 100) {
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timer1_write(EMSUART_TX_WAIT_REPLY);
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} else {
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timer1_write(emsTxWait);
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timer1_write(emsTxWait);
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}
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return EMS_TX_STATUS_OK;
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return EMS_TX_STATUS_OK;
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}
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}
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@@ -41,12 +41,14 @@
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// LEGACY
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// LEGACY
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#define EMSUART_TX_BIT_TIME 104 // bit time @9600 baud
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#define EMSUART_TX_BIT_TIME 104 // bit time @9600 baud
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#define EMSUART_TX_WAIT_BRK (EMSUART_TX_BIT_TIME * 11) // 1144
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#define EMSUART_TX_WAIT_BRK (EMSUART_TX_BIT_TIME * 10)
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#define EMSUART_TX_WAIT_REPLY 500000 // delay 100ms after first byte
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// EMS 1.0
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// EMS 1.0
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#define EMSUART_TX_BUSY_WAIT (EMSUART_TX_BIT_TIME / 8) // 13
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#define EMSUART_TX_BUSY_WAIT (EMSUART_TX_BIT_TIME / 8) // 13
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// #define EMSUART_TX_TIMEOUT (22 * EMSUART_TX_BIT_TIME / EMSUART_TX_BUSY_WAIT) // 176
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// #define EMSUART_TX_TIMEOUT (22 * EMSUART_TX_BIT_TIME / EMSUART_TX_BUSY_WAIT) // 176
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#define EMSUART_TX_TIMEOUT (32 * 8) // 256 for tx_mode 1 - see https://github.com/proddy/EMS-ESP/issues/398#issuecomment-645886277
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// #define EMSUART_TX_TIMEOUT (32 * 8) // 256 for tx_mode 1 - see https://github.com/proddy/EMS-ESP/issues/398#issuecomment-645886277
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#define EMSUART_TX_TIMEOUT (220 * 8) // 1760 as in v1.9 (180 ms)
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// HT3/Junkers - Time to send one Byte (8 Bits, 1 Start Bit, 1 Stop Bit) plus 7 bit delay. The -8 is for lag compensation.
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// HT3/Junkers - Time to send one Byte (8 Bits, 1 Start Bit, 1 Stop Bit) plus 7 bit delay. The -8 is for lag compensation.
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// since we use a faster processor the lag is negligible
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// since we use a faster processor the lag is negligible
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