Merge develop into main (#392)

- Refactor `Ili934xDisplay` to use `EspLcdSpiDisplay` as base class
- Update `St7789Display` for changes to `EspLcdDisplayV2` related to ILI934x driver
- Updated all board driver implementations for ILI934x driver changes
- Simplified board configurations:
  - All boards now have a `Configuration.cpp`
  - All board config's headers are removed
  - Removed `Boards.h`
- Fix for untar-ing large files
- Increase main task stack size to avoid stackoverflow when downloading apps in App Hub
- Reduce SPI frequency for ST7789 displays (according to spec)
This commit is contained in:
Ken Van Hoeylandt
2025-10-26 23:26:28 +01:00
committed by GitHub
parent db6d3b4acb
commit 8115ca4fd9
126 changed files with 562 additions and 905 deletions
+28 -137
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@@ -1,152 +1,43 @@
#include "Ili934xDisplay.h"
#include <Tactility/Log.h>
#include <esp_lcd_ili9341.h>
#include <esp_lcd_panel_commands.h>
#include <esp_lvgl_port.h>
constexpr const char* TAG = "ILI934x";
bool Ili934xDisplay::createIoHandle(esp_lcd_panel_io_handle_t& outHandle) {
const esp_lcd_panel_io_spi_config_t panel_io_config = {
.cs_gpio_num = configuration->csPin,
.dc_gpio_num = configuration->dcPin,
.spi_mode = 0,
.pclk_hz = configuration->pixelClockFrequency,
.trans_queue_depth = configuration->transactionQueueDepth,
.on_color_trans_done = nullptr,
.user_ctx = nullptr,
.lcd_cmd_bits = 8,
.lcd_param_bits = 8,
.cs_ena_pretrans = 0,
.cs_ena_posttrans = 0,
.flags = {
.dc_high_on_cmd = 0,
.dc_low_on_data = 0,
.dc_low_on_param = 0,
.octal_mode = 0,
.quad_mode = 0,
.sio_mode = 0,
.lsb_first = 0,
.cs_high_active = 0
}
};
return esp_lcd_new_panel_io_spi(configuration->spiHostDevice, &panel_io_config, &outHandle) == ESP_OK;
std::shared_ptr<EspLcdConfiguration> Ili934xDisplay::createEspLcdConfiguration(const Configuration& configuration) {
return std::make_shared<EspLcdConfiguration>(EspLcdConfiguration {
.horizontalResolution = configuration.horizontalResolution,
.verticalResolution = configuration.verticalResolution,
.gapX = configuration.gapX,
.gapY = configuration.gapY,
.monochrome = false,
.swapXY = configuration.swapXY,
.mirrorX = configuration.mirrorX,
.mirrorY = configuration.mirrorY,
.invertColor = configuration.invertColor,
.bufferSize = configuration.bufferSize,
.touch = configuration.touch,
.backlightDutyFunction = configuration.backlightDutyFunction,
.resetPin = configuration.resetPin,
.lvglColorFormat = LV_COLOR_FORMAT_RGB565,
.lvglSwapBytes = configuration.swapBytes,
.rgbElementOrder = configuration.rgbElementOrder,
.bitsPerPixel = 16
});
}
bool Ili934xDisplay::createPanelHandle(esp_lcd_panel_io_handle_t ioHandle, esp_lcd_panel_handle_t& panelHandle) {
const esp_lcd_panel_dev_config_t panel_config = {
.reset_gpio_num = configuration->resetPin,
.rgb_ele_order = configuration->rgbElementOrder,
esp_lcd_panel_dev_config_t Ili934xDisplay::createPanelConfig(std::shared_ptr<EspLcdConfiguration> espLcdConfiguration, gpio_num_t resetPin) {
return {
.reset_gpio_num = resetPin,
.rgb_ele_order = espLcdConfiguration->rgbElementOrder,
.data_endian = LCD_RGB_DATA_ENDIAN_LITTLE,
.bits_per_pixel = 16,
.bits_per_pixel = espLcdConfiguration->bitsPerPixel,
.flags = {
.reset_active_high = false
.reset_active_high = 0
},
.vendor_config = nullptr
};
if (esp_lcd_new_panel_ili9341(ioHandle, &panel_config, &panelHandle) != ESP_OK) {
TT_LOG_E(TAG, "Failed to create panel");
return false;
}
if (esp_lcd_panel_reset(panelHandle) != ESP_OK) {
TT_LOG_E(TAG, "Failed to reset panel");
return false;
}
if (esp_lcd_panel_init(panelHandle) != ESP_OK) {
TT_LOG_E(TAG, "Failed to init panel");
return false;
}
if (esp_lcd_panel_swap_xy(panelHandle, configuration->swapXY) != ESP_OK) {
TT_LOG_E(TAG, "Failed to swap XY ");
return false;
}
if (esp_lcd_panel_mirror(panelHandle, configuration->mirrorX, configuration->mirrorY) != ESP_OK) {
TT_LOG_E(TAG, "Failed to set panel to mirror");
return false;
}
if (esp_lcd_panel_invert_color(panelHandle, configuration->invertColor) != ESP_OK) {
TT_LOG_E(TAG, "Failed to set panel to invert");
return false;
}
if (esp_lcd_panel_disp_on_off(panelHandle, true) != ESP_OK) {
TT_LOG_E(TAG, "Failed to turn display on");
return false;
}
return true;
}
lvgl_port_display_cfg_t Ili934xDisplay::getLvglPortDisplayConfig(esp_lcd_panel_io_handle_t ioHandle, esp_lcd_panel_handle_t panelHandle) {
return {
.io_handle = ioHandle,
.panel_handle = panelHandle,
.control_handle = nullptr,
.buffer_size = configuration->bufferSize,
.double_buffer = false,
.trans_size = 0,
.hres = configuration->horizontalResolution,
.vres = configuration->verticalResolution,
.monochrome = false,
.rotation = {
.swap_xy = configuration->swapXY,
.mirror_x = configuration->mirrorX,
.mirror_y = configuration->mirrorY,
},
.color_format = LV_COLOR_FORMAT_RGB565,
.flags = {
.buff_dma = true,
.buff_spiram = false,
.sw_rotate = false,
.swap_bytes = true,
.full_refresh = false,
.direct_mode = false
}
};
}
/**
* Note:
* The datasheet implies this should work, but it doesn't:
* https://www.digikey.com/htmldatasheets/production/1640716/0/0/1/ILI9341-Datasheet.pdf
*
* This repo claims it only has 1 curve:
* https://github.com/brucemack/hello-ili9341
*
* I'm leaving it in as I'm not sure if it's just my hardware that's problematic.
*/
void Ili934xDisplay::setGammaCurve(uint8_t index) {
uint8_t gamma_curve;
switch (index) {
case 0:
gamma_curve = 0x01;
break;
case 1:
gamma_curve = 0x04;
break;
case 2:
gamma_curve = 0x02;
break;
case 3:
gamma_curve = 0x08;
break;
default:
return;
}
const uint8_t param[] = {
gamma_curve
};
if (esp_lcd_panel_io_tx_param(getIoHandle() , LCD_CMD_GAMSET, param, 1) != ESP_OK) {
TT_LOG_E(TAG, "Failed to set gamma");
}
bool Ili934xDisplay::createPanelHandle(esp_lcd_panel_io_handle_t ioHandle, const esp_lcd_panel_dev_config_t& panelConfig, esp_lcd_panel_handle_t& panelHandle) {
return esp_lcd_new_panel_ili9341(ioHandle, &panelConfig, &panelHandle) == ESP_OK;
}
+27 -79
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@@ -1,107 +1,55 @@
#pragma once
#include <Tactility/hal/display/DisplayDevice.h>
#include <Tactility/hal/spi/Spi.h>
#include <EspLcdDisplay.h>
#include <EspLcdSpiDisplay.h>
#include <driver/gpio.h>
#include <esp_lcd_panel_io.h>
#include <esp_lcd_types.h>
#include <functional>
#include <lvgl.h>
class Ili934xDisplay final : public EspLcdDisplay {
class Ili934xDisplay final : public EspLcdSpiDisplay {
std::shared_ptr<tt::Lock> lock;
public:
class Configuration {
public:
Configuration(
spi_host_device_t spiHostDevice,
gpio_num_t csPin,
gpio_num_t dcPin,
unsigned int horizontalResolution,
unsigned int verticalResolution,
std::shared_ptr<tt::hal::touch::TouchDevice> touch,
bool swapXY = false,
bool mirrorX = false,
bool mirrorY = false,
bool invertColor = false,
uint32_t bufferSize = 0, // Size in pixel count. 0 means default, which is 1/10 of the screen size,
lcd_rgb_element_order_t rgbElementOrder = LCD_RGB_ELEMENT_ORDER_BGR
) : spiHostDevice(spiHostDevice),
csPin(csPin),
dcPin(dcPin),
horizontalResolution(horizontalResolution),
verticalResolution(verticalResolution),
swapXY(swapXY),
mirrorX(mirrorX),
mirrorY(mirrorY),
invertColor(invertColor),
bufferSize(bufferSize),
rgbElementOrder(rgbElementOrder),
touch(std::move(touch)
) {
if (this->bufferSize == 0) {
this->bufferSize = horizontalResolution * verticalResolution / 10;
}
}
spi_host_device_t spiHostDevice;
gpio_num_t csPin;
gpio_num_t dcPin;
gpio_num_t resetPin = GPIO_NUM_NC;
unsigned int pixelClockFrequency = 40'000'000; // Hertz
size_t transactionQueueDepth = 10;
/** Minimal set of overrides for EspLcdConfiguration */
struct Configuration {
unsigned int horizontalResolution;
unsigned int verticalResolution;
bool swapXY = false;
bool mirrorX = false;
bool mirrorY = false;
bool invertColor = false;
uint32_t bufferSize = 0; // Size in pixel count. 0 means default, which is 1/10 of the screen size
lcd_rgb_element_order_t rgbElementOrder = LCD_RGB_ELEMENT_ORDER_BGR;
int gapX;
int gapY;
bool swapXY;
bool mirrorX;
bool mirrorY;
bool invertColor;
bool swapBytes;
uint32_t bufferSize; // Pixel count, not byte count. Set to 0 for default (1/10th of display size)
std::shared_ptr<tt::hal::touch::TouchDevice> touch;
std::function<void(uint8_t)> _Nullable backlightDutyFunction = nullptr;
std::function<void(uint8_t)> _Nullable backlightDutyFunction;
gpio_num_t resetPin;
lcd_rgb_element_order_t rgbElementOrder;
};
private:
std::unique_ptr<Configuration> configuration;
static std::shared_ptr<EspLcdConfiguration> createEspLcdConfiguration(const Configuration& configuration);
bool createIoHandle(esp_lcd_panel_io_handle_t& outHandle) override;
esp_lcd_panel_dev_config_t createPanelConfig(std::shared_ptr<EspLcdConfiguration> espLcdConfiguration, gpio_num_t resetPin) override;
bool createPanelHandle(esp_lcd_panel_io_handle_t ioHandle, esp_lcd_panel_handle_t& panelHandle) override;
lvgl_port_display_cfg_t getLvglPortDisplayConfig(esp_lcd_panel_io_handle_t ioHandle, esp_lcd_panel_handle_t panelHandle) override;
bool createPanelHandle(esp_lcd_panel_io_handle_t ioHandle, const esp_lcd_panel_dev_config_t& panelConfig, esp_lcd_panel_handle_t& panelHandle) override;
public:
explicit Ili934xDisplay(std::unique_ptr<Configuration> inConfiguration) :
EspLcdDisplay(tt::hal::spi::getLock(inConfiguration->spiHostDevice)),
configuration(std::move(inConfiguration)
) {
assert(configuration != nullptr);
explicit Ili934xDisplay(const Configuration& configuration, const std::shared_ptr<SpiConfiguration>& spiConfiguration, bool hasGammaCurves) :
EspLcdSpiDisplay(
createEspLcdConfiguration(configuration),
spiConfiguration,
(hasGammaCurves ? 4 : 0)
)
{
}
std::string getName() const override { return "ILI934x"; }
std::string getDescription() const override { return "ILI934x display"; }
std::shared_ptr<tt::hal::touch::TouchDevice> _Nullable getTouchDevice() override { return configuration->touch; }
void setBacklightDuty(uint8_t backlightDuty) override {
if (configuration->backlightDutyFunction != nullptr) {
configuration->backlightDutyFunction(backlightDuty);
}
}
bool supportsBacklightDuty() const override { return configuration->backlightDutyFunction != nullptr; }
void setGammaCurve(uint8_t index) override;
uint8_t getGammaCurveCount() const override { return 4; };
};