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🎨 Replace some infrequently-used macros
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@ -26,39 +26,22 @@
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#include "tft_spi.h"
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//TFT_SPI tft;
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SPIClass TFT_SPI::SPIx(1);
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#define TFT_CS_H WRITE(TFT_CS_PIN, HIGH)
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#define TFT_CS_L WRITE(TFT_CS_PIN, LOW)
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#define TFT_DC_H WRITE(TFT_DC_PIN, HIGH)
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#define TFT_DC_L WRITE(TFT_DC_PIN, LOW)
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#define TFT_RST_H WRITE(TFT_RESET_PIN, HIGH)
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#define TFT_RST_L WRITE(TFT_RESET_PIN, LOW)
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#define TFT_BLK_H WRITE(TFT_BACKLIGHT_PIN, HIGH)
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#define TFT_BLK_L WRITE(TFT_BACKLIGHT_PIN, LOW)
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void TFT_SPI::Init() {
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#if PIN_EXISTS(TFT_RESET)
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SET_OUTPUT(TFT_RESET_PIN);
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TFT_RST_H;
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OUT_WRITE(TFT_RESET_PIN, HIGH);
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delay(100);
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#endif
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#if PIN_EXISTS(TFT_BACKLIGHT)
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SET_OUTPUT(TFT_BACKLIGHT_PIN);
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TFT_BLK_H;
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OUT_WRITE(TFT_BACKLIGHT_PIN, HIGH);
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#endif
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SET_OUTPUT(TFT_DC_PIN);
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SET_OUTPUT(TFT_CS_PIN);
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TFT_DC_H;
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TFT_CS_H;
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WRITE(TFT_DC_PIN, HIGH);
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WRITE(TFT_CS_PIN, HIGH);
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/**
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* STM32F1 APB2 = 72MHz, APB1 = 36MHz, max SPI speed of this MCU if 18Mhz
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@ -97,7 +80,7 @@ void TFT_SPI::Init() {
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void TFT_SPI::DataTransferBegin(uint16_t DataSize) {
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SPIx.setDataSize(DataSize);
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SPIx.begin();
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TFT_CS_L;
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WRITE(TFT_CS_PIN, LOW);
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}
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uint32_t TFT_SPI::GetID() {
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@ -116,7 +99,7 @@ uint32_t TFT_SPI::ReadID(uint16_t Reg) {
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SPIx.setDataSize(DATASIZE_8BIT);
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SPIx.setClock(SPI_CLOCK_DIV64);
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SPIx.begin();
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TFT_CS_L;
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WRITE(TFT_CS_PIN, LOW);
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WriteReg(Reg);
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LOOP_L_N(i, 4) {
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@ -131,21 +114,15 @@ uint32_t TFT_SPI::ReadID(uint16_t Reg) {
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return data >> 7;
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}
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bool TFT_SPI::isBusy() {
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return false;
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}
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bool TFT_SPI::isBusy() { return false; }
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void TFT_SPI::Abort() {
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DataTransferEnd();
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}
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void TFT_SPI::Abort() { DataTransferEnd(); }
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void TFT_SPI::Transmit(uint16_t Data) {
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SPIx.transfer(Data);
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}
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void TFT_SPI::Transmit(uint16_t Data) { SPIx.transfer(Data); }
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void TFT_SPI::TransmitDMA(uint32_t MemoryIncrease, uint16_t *Data, uint16_t Count) {
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DataTransferBegin(DATASIZE_16BIT); //16
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TFT_DC_H;
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DataTransferBegin(DATASIZE_16BIT);
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WRITE(TFT_DC_PIN, HIGH);
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SPIx.dmaSend(Data, Count, MemoryIncrease);
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DataTransferEnd();
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}
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@ -26,36 +26,20 @@
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#include "tft_spi.h"
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// TFT_SPI tft;
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SPIClass TFT_SPI::SPIx(1);
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#define TFT_CS_H OUT_WRITE(TFT_CS_PIN, HIGH)
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#define TFT_CS_L OUT_WRITE(TFT_CS_PIN, LOW)
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#define TFT_DC_H OUT_WRITE(TFT_DC_PIN, HIGH)
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#define TFT_DC_L OUT_WRITE(TFT_DC_PIN, LOW)
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#define TFT_RST_H OUT_WRITE(TFT_RST_PIN, HIGH)
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#define TFT_RST_L OUT_WRITE(TFT_RST_PIN, LOW)
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#define TFT_BLK_H OUT_WRITE(TFT_BACKLIGHT_PIN, HIGH)
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#define TFT_BLK_L OUT_WRITE(TFT_BACKLIGHT_PIN, LOW)
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void TFT_SPI::Init() {
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#if PIN_EXISTS(TFT_RESET)
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// OUT_WRITE(TFT_RESET_PIN, HIGH);
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TFT_RST_H;
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OUT_WRITE(TFT_RST_PIN, HIGH);
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delay(100);
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#endif
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#if PIN_EXISTS(TFT_BACKLIGHT)
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// OUT_WRITE(TFT_BACKLIGHT_PIN, HIGH);
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TFT_BLK_H;
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OUT_WRITE(TFT_BACKLIGHT_PIN, HIGH);
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#endif
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TFT_DC_H;
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TFT_CS_H;
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OUT_WRITE(TFT_DC_PIN, HIGH);
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OUT_WRITE(TFT_CS_PIN, HIGH);
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/**
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* STM32F1 APB2 = 72MHz, APB1 = 36MHz, max SPI speed of this MCU if 18Mhz
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@ -87,7 +71,7 @@ void TFT_SPI::Init() {
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void TFT_SPI::DataTransferBegin(uint16_t DataSize) {
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SPIx.setDataSize(DataSize);
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SPIx.begin();
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TFT_CS_L;
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OUT_WRITE(TFT_CS_PIN, LOW);
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}
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#ifdef TFT_DEFAULT_DRIVER
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@ -129,28 +113,16 @@ uint32_t TFT_SPI::ReadID(uint16_t Reg) {
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#endif
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}
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bool TFT_SPI::isBusy() {
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return false;
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}
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bool TFT_SPI::isBusy() { return false; }
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void TFT_SPI::Abort() {
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DataTransferEnd();
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}
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void TFT_SPI::Abort() { DataTransferEnd(); }
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void TFT_SPI::Transmit(uint16_t Data) {
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SPIx.send(Data);
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}
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void TFT_SPI::Transmit(uint16_t Data) { SPIx.send(Data); }
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void TFT_SPI::TransmitDMA(uint32_t MemoryIncrease, uint16_t *Data, uint16_t Count) {
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DataTransferBegin();
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TFT_DC_H;
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if (MemoryIncrease == DMA_MINC_ENABLE) {
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SPIx.dmaSend(Data, Count, true);
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}
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else {
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SPIx.dmaSend(Data, Count, false);
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}
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OUT_WRITE(TFT_DC_PIN, HIGH);
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SPIx.dmaSend(Data, Count, MemoryIncrease == DMA_MINC_ENABLE);
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DataTransferEnd();
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}
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