d896657bf9
Device migrations: - cyd-4848S040c - guition-jc1060p470ciwy - guition-jc2432w328c - guition-jc3248w535c (known issue with display and touch, Shadowtrance will look into it) - guition-jc8048w550c - heltec-wifi-lora-32-v3 - lilygo-tdeck-max (excluding graphics) - lilygo-tdisplay - lilygo-tdisplay-s3 - lilygo-tdongle-s3 - lilygo-tlora-pager Driver migrations: - Implemented haptic driver interface in kernel - AXS15231b - BQ25896 - BQ27220 - CST328 - CST6xx - DRV2605 - JD9165 - Custom LilyGO driver for T-Lora Pager - SSD1306 - ST7701 - ST7735 - SY6970 - TCA8418 Fixes/improvements: - Boot app: support for multiple power devices, improved UI - lvgl_devices and related code: fixes for mapping - Support for arrays in dts parser
544 lines
23 KiB
C++
544 lines
23 KiB
C++
// SPDX-License-Identifier: Apache-2.0
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#include <soc/soc_caps.h>
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#if SOC_LCD_RGB_SUPPORTED
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#include <drivers/st7701.h>
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#include <st7701_module.h>
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#include <tactility/device.h>
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#include <tactility/driver.h>
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#include <tactility/drivers/display.h>
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#include <tactility/error.h>
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#include <tactility/log.h>
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#include <esp_err.h>
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#include <esp_lcd_panel_io.h>
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#include <esp_lcd_panel_io_additions.h>
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#include <esp_lcd_panel_ops.h>
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#include <esp_lcd_panel_rgb.h>
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#include <esp_lcd_st7701.h>
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#include <freertos/FreeRTOS.h>
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#include <freertos/semphr.h>
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#include <cstdlib>
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#define TAG "St7701"
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#define GET_CONFIG(device) (static_cast<const St7701Config*>((device)->config))
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// Generic lvgl-module display glue (Modules/lvgl-module/source/lvgl_display.c) only ever asks
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// for frame buffer index 0 and 1, so caching more than that would be dead weight.
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constexpr size_t MAX_CACHED_FRAME_BUFFERS = 2;
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struct St7701Internal {
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esp_lcd_panel_io_handle_t io_handle;
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esp_lcd_panel_handle_t panel_handle;
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void* frame_buffers[MAX_CACHED_FRAME_BUFFERS];
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uint8_t frame_buffer_count;
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// Size of each buffer in frame_buffers, in bytes - used to range-check whether a given
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// draw_bitmap() color_data pointer is actually one of them (see draw_bitmap() below).
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size_t frame_buffer_size_bytes;
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// Signaled by on_frame_buf_complete once per real DMA scan-out of a whole frame. Only
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// waited on in draw_bitmap() when color_data is one of frame_buffers - see the comment there.
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SemaphoreHandle_t frame_complete_semaphore;
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// Heap-allocated only when the devicetree supplies a custom init_sequence (see
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// parse_init_sequence()) - nullptr otherwise, since the vendor's built-in default sequence
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// needs no parsing. Its .data pointers alias directly into the devicetree's static const
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// byte buffer, so only this struct array itself needs freeing in stop().
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st7701_lcd_init_cmd_t* parsed_init_cmds;
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};
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// esp_lcd_rgb_panel's draw_bitmap() has a zero-copy path when color_data is one of the panel's
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// own frame buffers (as returned by esp_lcd_rgb_panel_get_frame_buffer()): it just repoints which
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// buffer is scanned out and returns almost instantly - well before the RGB peripheral's DMA has
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// actually finished scanning out the *previous* buffer, let alone started on this one. Callers in
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// full/direct LVGL render mode render straight into these real frame buffers, so if draw_bitmap()
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// returned that quickly, LVGL would be free to start overwriting the *other* buffer - which may
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// still be mid-scanout - producing visible tearing/flashing. on_frame_buf_complete fires once per
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// actual whole-frame DMA completion (continuously, at the panel's refresh rate, independent of
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// draw_bitmap calls), so waiting for the next occurrence after each draw_bitmap() genuinely
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// blocks until it's safe to start writing into the frame buffers again.
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static bool IRAM_ATTR on_frame_buf_complete(esp_lcd_panel_handle_t, const esp_lcd_rgb_panel_event_data_t*, void* user_ctx) {
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auto* internal = static_cast<St7701Internal*>(user_ctx);
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BaseType_t high_task_woken = pdFALSE;
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xSemaphoreGiveFromISR(internal->frame_complete_semaphore, &high_task_woken);
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return high_task_woken == pdTRUE;
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}
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static int pin_or_unused(const GpioPinSpec& pin) {
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return pin.gpio_controller == nullptr ? -1 : static_cast<int>(pin.pin);
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}
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// Unpacks the devicetree's flat [cmd, data_len, delay_ms, data_len bytes...] encoding (produced
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// by the devicetree compiler's "array" property type - see init-sequence in
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// bindings/sitronix,st7701.yaml) into a heap-allocated st7701_lcd_init_cmd_t array. Each entry's
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// .data points directly into `bytes`, which is the devicetree's static const buffer and outlives
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// the device, so no per-entry copy is needed.
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static bool parse_init_sequence(const uint8_t* bytes, uint32_t length, st7701_lcd_init_cmd_t** out_cmds, uint16_t* out_count) {
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uint32_t count = 0;
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for (uint32_t offset = 0; offset < length; count++) {
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if (offset + 3 > length) {
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LOG_E(TAG, "init-sequence truncated: entry header runs past the end of the array");
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return false;
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}
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offset += 3 + bytes[offset + 1];
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if (offset > length) {
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LOG_E(TAG, "init-sequence truncated: entry data runs past the end of the array");
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return false;
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}
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}
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auto* cmds = static_cast<st7701_lcd_init_cmd_t*>(malloc(count * sizeof(st7701_lcd_init_cmd_t)));
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if (cmds == nullptr) {
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return false;
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}
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uint32_t offset = 0;
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for (uint32_t i = 0; i < count; i++) {
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uint8_t data_len = bytes[offset + 1];
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cmds[i] = {
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.cmd = bytes[offset],
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.data = data_len > 0 ? &bytes[offset + 3] : nullptr,
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.data_bytes = data_len,
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.delay_ms = bytes[offset + 2],
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};
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offset += 3 + data_len;
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}
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*out_cmds = cmds;
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*out_count = (uint16_t)count;
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return true;
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}
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// region Driver lifecycle
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static error_t start(Device* device) {
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const auto* config = GET_CONFIG(device);
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auto* internal = static_cast<St7701Internal*>(malloc(sizeof(St7701Internal)));
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if (internal == nullptr) {
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return ERROR_OUT_OF_MEMORY;
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}
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internal->parsed_init_cmds = nullptr;
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const st7701_lcd_init_cmd_t* init_cmds = nullptr;
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uint16_t init_cmds_size = 0;
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if (config->init_sequence != nullptr && config->init_sequence_length > 0) {
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if (!parse_init_sequence(config->init_sequence, config->init_sequence_length, &internal->parsed_init_cmds, &init_cmds_size)) {
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LOG_E(TAG, "Failed to parse init-sequence property");
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free(internal);
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return ERROR_INVALID_ARGUMENT;
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}
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init_cmds = internal->parsed_init_cmds;
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}
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spi_line_config_t line_config = {
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.cs_io_type = IO_TYPE_GPIO,
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.cs_gpio_num = pin_or_unused(config->pin_cs),
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.scl_io_type = IO_TYPE_GPIO,
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.scl_gpio_num = pin_or_unused(config->pin_scl),
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.sda_io_type = IO_TYPE_GPIO,
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.sda_gpio_num = pin_or_unused(config->pin_sda),
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.io_expander = nullptr,
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};
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// scl_active_edge is a runtime bool, not a compile-time constant, so it can't be passed
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// through the macro's brace-init `.spi_mode = scl_active_edge ? 1 : 0` directly - that trips
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// -Werror=narrowing on the bitfield (only literal 0/1 args avoid it). Assign it afterward
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// instead, as a plain (non-narrowing) assignment.
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esp_lcd_panel_io_3wire_spi_config_t io_config = ST7701_PANEL_IO_3WIRE_SPI_CONFIG(line_config, 0);
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io_config.spi_mode = config->scl_active_edge ? 1 : 0;
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esp_err_t ret = esp_lcd_new_panel_io_3wire_spi(&io_config, &internal->io_handle);
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if (ret != ESP_OK) {
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LOG_E(TAG, "Failed to create panel IO: %s", esp_err_to_name(ret));
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free(internal->parsed_init_cmds);
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free(internal);
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return ERROR_RESOURCE;
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}
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esp_lcd_rgb_panel_config_t rgb_config = {
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.clk_src = LCD_CLK_SRC_DEFAULT,
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.timings = {
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.pclk_hz = config->pixel_clock_hz,
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.h_res = config->horizontal_resolution,
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.v_res = config->vertical_resolution,
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.hsync_pulse_width = config->hsync_pulse_width,
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.hsync_back_porch = config->hsync_back_porch,
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.hsync_front_porch = config->hsync_front_porch,
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.vsync_pulse_width = config->vsync_pulse_width,
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.vsync_back_porch = config->vsync_back_porch,
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.vsync_front_porch = config->vsync_front_porch,
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.flags = {
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.hsync_idle_low = config->hsync_idle_low,
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.vsync_idle_low = config->vsync_idle_low,
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.de_idle_high = config->de_idle_high,
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.pclk_active_neg = config->pclk_active_neg,
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.pclk_idle_high = config->pclk_idle_high,
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}
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},
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.data_width = config->data_width,
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.bits_per_pixel = config->bits_per_pixel,
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.num_fbs = config->num_fbs,
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.bounce_buffer_size_px = config->bounce_buffer_size_px,
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.sram_trans_align = config->sram_trans_align,
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.psram_trans_align = config->psram_trans_align,
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.hsync_gpio_num = pin_or_unused(config->pin_hsync),
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.vsync_gpio_num = pin_or_unused(config->pin_vsync),
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.de_gpio_num = pin_or_unused(config->pin_de),
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.pclk_gpio_num = pin_or_unused(config->pin_pclk),
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.disp_gpio_num = pin_or_unused(config->pin_disp),
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.data_gpio_nums = {
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pin_or_unused(config->pin_data0),
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pin_or_unused(config->pin_data1),
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pin_or_unused(config->pin_data2),
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pin_or_unused(config->pin_data3),
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pin_or_unused(config->pin_data4),
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pin_or_unused(config->pin_data5),
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pin_or_unused(config->pin_data6),
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pin_or_unused(config->pin_data7),
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pin_or_unused(config->pin_data8),
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pin_or_unused(config->pin_data9),
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pin_or_unused(config->pin_data10),
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pin_or_unused(config->pin_data11),
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pin_or_unused(config->pin_data12),
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pin_or_unused(config->pin_data13),
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pin_or_unused(config->pin_data14),
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pin_or_unused(config->pin_data15),
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},
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.flags = {
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.disp_active_low = config->disp_active_low,
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.refresh_on_demand = config->refresh_on_demand,
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.fb_in_psram = config->fb_in_psram,
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.double_fb = config->double_fb,
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.no_fb = config->no_fb,
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.bb_invalidate_cache = config->bb_invalidate_cache,
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}
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};
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// This Config struct only exposes 16 named data pins, so on chips whose RGB peripheral has
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// more data lines than that, the tail of the array must be explicitly marked unused rather
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// than left as the aggregate-init default of 0 (which would look like "GPIO0 is wired here").
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for (size_t i = 16; i < sizeof(rgb_config.data_gpio_nums) / sizeof(rgb_config.data_gpio_nums[0]); i++) {
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rgb_config.data_gpio_nums[i] = -1;
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}
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st7701_vendor_config_t vendor_config = {
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.init_cmds = init_cmds,
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.init_cmds_size = init_cmds_size,
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.rgb_config = &rgb_config,
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.flags = {
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.use_mipi_interface = 0,
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.mirror_by_cmd = config->mirror_by_cmd,
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.auto_del_panel_io = config->auto_del_panel_io,
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},
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};
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esp_lcd_panel_dev_config_t panel_config = {
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.reset_gpio_num = pin_or_unused(config->pin_reset),
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.rgb_ele_order = LCD_RGB_ELEMENT_ORDER_RGB,
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.data_endian = LCD_RGB_DATA_ENDIAN_LITTLE,
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.bits_per_pixel = config->bits_per_pixel,
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.flags = { .reset_active_high = config->reset_active_high },
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.vendor_config = &vendor_config,
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};
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ret = esp_lcd_new_panel_st7701(internal->io_handle, &panel_config, &internal->panel_handle);
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if (ret != ESP_OK) {
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LOG_E(TAG, "Failed to create panel: %s", esp_err_to_name(ret));
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esp_lcd_panel_io_del(internal->io_handle);
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free(internal->parsed_init_cmds);
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free(internal);
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return ERROR_RESOURCE;
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}
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// Bring-up sequence: reset() pulses (or software-resets) the panel and init() pushes
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// init_cmds over the 3-wire bus before bringing up the underlying RGB peripheral. Every
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// failure path below must clean up fully: unlike stop_device, this is never retried by the
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// kernel if start_device fails (see device_start() in TactilityKernel), so a partial failure
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// here would leak.
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bool ok =
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esp_lcd_panel_reset(internal->panel_handle) == ESP_OK &&
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esp_lcd_panel_init(internal->panel_handle) == ESP_OK &&
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esp_lcd_panel_swap_xy(internal->panel_handle, config->swap_xy) == ESP_OK &&
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esp_lcd_panel_mirror(internal->panel_handle, config->mirror_x, config->mirror_y) == ESP_OK &&
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esp_lcd_panel_invert_color(internal->panel_handle, config->invert_color) == ESP_OK &&
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esp_lcd_panel_disp_on_off(internal->panel_handle, true) == ESP_OK;
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if (!ok) {
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LOG_E(TAG, "Failed to bring up panel");
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esp_lcd_panel_del(internal->panel_handle);
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if (!config->auto_del_panel_io) {
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esp_lcd_panel_io_del(internal->io_handle);
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}
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free(internal->parsed_init_cmds);
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free(internal);
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return ERROR_RESOURCE;
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}
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internal->frame_buffer_count = 0;
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internal->frame_buffer_size_bytes = (size_t)config->horizontal_resolution * config->vertical_resolution *
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((config->bits_per_pixel + 7) / 8);
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if (config->num_fbs > 0) {
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// esp_lcd_rgb_panel_get_frame_buffer() is variadic: the number of out-pointer arguments
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// passed must match fb_num exactly, so this can't be a loop.
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size_t fb_num = config->num_fbs < MAX_CACHED_FRAME_BUFFERS ? config->num_fbs : MAX_CACHED_FRAME_BUFFERS;
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switch (fb_num) {
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case 1:
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ret = esp_lcd_rgb_panel_get_frame_buffer(internal->panel_handle, 1, &internal->frame_buffers[0]);
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break;
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case 2:
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ret = esp_lcd_rgb_panel_get_frame_buffer(internal->panel_handle, 2, &internal->frame_buffers[0], &internal->frame_buffers[1]);
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break;
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default:
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ret = ESP_OK;
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break;
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}
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if (ret != ESP_OK) {
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LOG_E(TAG, "Failed to get frame buffer(s): %s", esp_err_to_name(ret));
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esp_lcd_panel_del(internal->panel_handle);
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if (!config->auto_del_panel_io) {
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esp_lcd_panel_io_del(internal->io_handle);
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}
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free(internal->parsed_init_cmds);
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free(internal);
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return ERROR_RESOURCE;
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}
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internal->frame_buffer_count = (uint8_t)fb_num;
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}
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internal->frame_complete_semaphore = xSemaphoreCreateBinary();
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if (internal->frame_complete_semaphore == nullptr) {
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esp_lcd_panel_del(internal->panel_handle);
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if (!config->auto_del_panel_io) {
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esp_lcd_panel_io_del(internal->io_handle);
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}
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free(internal->parsed_init_cmds);
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free(internal);
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return ERROR_OUT_OF_MEMORY;
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}
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esp_lcd_rgb_panel_event_callbacks_t callbacks = {};
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callbacks.on_frame_buf_complete = on_frame_buf_complete;
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if (esp_lcd_rgb_panel_register_event_callbacks(internal->panel_handle, &callbacks, internal) != ESP_OK) {
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LOG_E(TAG, "Failed to register panel event callbacks");
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vSemaphoreDelete(internal->frame_complete_semaphore);
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esp_lcd_panel_del(internal->panel_handle);
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if (!config->auto_del_panel_io) {
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esp_lcd_panel_io_del(internal->io_handle);
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}
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free(internal->parsed_init_cmds);
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free(internal);
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return ERROR_RESOURCE;
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}
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device_set_driver_data(device, internal);
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return ERROR_NONE;
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}
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static error_t stop(Device* device) {
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const auto* config = GET_CONFIG(device);
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auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
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if (internal->panel_handle != nullptr) {
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if (esp_lcd_panel_del(internal->panel_handle) != ESP_OK) {
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LOG_E(TAG, "Failed to delete panel");
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return ERROR_RESOURCE;
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}
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internal->panel_handle = nullptr;
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}
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// If auto_del_panel_io was set, esp_lcd_new_panel_st7701() already deleted the IO handle
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// itself right after bring-up (to free pins shared with the RGB bus) - deleting it again
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// here would double-free.
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if (!config->auto_del_panel_io && internal->io_handle != nullptr) {
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if (esp_lcd_panel_io_del(internal->io_handle) != ESP_OK) {
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LOG_E(TAG, "Failed to delete panel IO");
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return ERROR_RESOURCE;
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}
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internal->io_handle = nullptr;
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}
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vSemaphoreDelete(internal->frame_complete_semaphore);
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free(internal->parsed_init_cmds);
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free(internal);
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device_set_driver_data(device, nullptr);
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return ERROR_NONE;
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}
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// endregion
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// region DisplayApi
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static error_t st7701_reset(Device* device) {
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auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
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return esp_lcd_panel_reset(internal->panel_handle) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
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}
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static error_t st7701_init(Device* device) {
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auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
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return esp_lcd_panel_init(internal->panel_handle) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
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}
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// Only block for scan-out completion when color_data is actually one of the panel's own frame
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// buffers (see on_frame_buf_complete's comment above for why that matters) - i.e. this specific
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// call is a zero-copy flip, not a plain CPU copy into the panel's buffer from a caller-owned one
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// (e.g. LVGL bound in owned-buffer mode), which has no reuse race to guard against and shouldn't
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// pay the up-to-one-frame latency cost for every partial update.
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static bool st7701_color_data_is_frame_buffer(const St7701Internal* internal, const void* color_data) {
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const auto* ptr = static_cast<const uint8_t*>(color_data);
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for (uint8_t i = 0; i < internal->frame_buffer_count; i++) {
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const auto* base = static_cast<const uint8_t*>(internal->frame_buffers[i]);
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if (ptr >= base && ptr < base + internal->frame_buffer_size_bytes) {
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return true;
|
|
}
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|
}
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return false;
|
|
}
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|
|
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static error_t st7701_draw_bitmap(Device* device, int32_t x_start, int32_t y_start, int32_t x_end, int32_t y_end, const void* color_data) {
|
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auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
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|
|
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bool wait_for_scanout = st7701_color_data_is_frame_buffer(internal, color_data);
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if (wait_for_scanout) {
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|
xSemaphoreTake(internal->frame_complete_semaphore, 0); // clear any already-pending signal
|
|
}
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|
|
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if (esp_lcd_panel_draw_bitmap(internal->panel_handle, x_start, y_start, x_end, y_end, color_data) != ESP_OK) {
|
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return ERROR_RESOURCE;
|
|
}
|
|
|
|
if (wait_for_scanout) {
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|
xSemaphoreTake(internal->frame_complete_semaphore, portMAX_DELAY);
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|
}
|
|
|
|
return ERROR_NONE;
|
|
}
|
|
|
|
static error_t st7701_mirror(Device* device, bool x_axis, bool y_axis) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
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return esp_lcd_panel_mirror(internal->panel_handle, x_axis, y_axis) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
|
|
}
|
|
|
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static error_t st7701_swap_xy(Device* device, bool swap_axes) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
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return esp_lcd_panel_swap_xy(internal->panel_handle, swap_axes) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
|
|
}
|
|
|
|
static bool st7701_get_swap_xy(Device* device) {
|
|
return GET_CONFIG(device)->swap_xy;
|
|
}
|
|
|
|
static bool st7701_get_mirror_x(Device* device) {
|
|
return GET_CONFIG(device)->mirror_x;
|
|
}
|
|
|
|
static bool st7701_get_mirror_y(Device* device) {
|
|
return GET_CONFIG(device)->mirror_y;
|
|
}
|
|
|
|
// set_gap is not exposed: like plain RGB panels, the ST7701's RGB interface is a raw scan-out
|
|
// framebuffer with no addressable-window concept, so there's no gap to set.
|
|
|
|
static error_t st7701_invert_color(Device* device, bool invert_color_data) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
|
return esp_lcd_panel_invert_color(internal->panel_handle, invert_color_data) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
|
|
}
|
|
|
|
static error_t st7701_disp_on_off(Device* device, bool on_off) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
|
return esp_lcd_panel_disp_on_off(internal->panel_handle, on_off) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
|
|
}
|
|
|
|
// disp_sleep is not exposed: esp_lcd_st7701's RGB variant has no sleep-mode entry point of its
|
|
// own (only init/del/reset/mirror/disp_on_off are overridden - see esp_lcd_st7701_rgb.c).
|
|
|
|
static enum DisplayColorFormat st7701_get_color_format(Device*) {
|
|
return DISPLAY_COLOR_FORMAT_RGB565;
|
|
}
|
|
|
|
static uint16_t st7701_get_resolution_x(Device* device) {
|
|
return GET_CONFIG(device)->horizontal_resolution;
|
|
}
|
|
|
|
static uint16_t st7701_get_resolution_y(Device* device) {
|
|
return GET_CONFIG(device)->vertical_resolution;
|
|
}
|
|
|
|
static void st7701_get_frame_buffer(Device* device, uint8_t index, void** out_buffer) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
|
*out_buffer = index < internal->frame_buffer_count ? internal->frame_buffers[index] : nullptr;
|
|
}
|
|
|
|
static uint8_t st7701_get_frame_buffer_count(Device* device) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
|
return internal->frame_buffer_count;
|
|
}
|
|
|
|
static error_t st7701_get_backlight(Device* device, Device** backlight) {
|
|
auto* configured_backlight = GET_CONFIG(device)->backlight;
|
|
if (configured_backlight == nullptr) {
|
|
return ERROR_NOT_SUPPORTED;
|
|
}
|
|
*backlight = configured_backlight;
|
|
return ERROR_NONE;
|
|
}
|
|
|
|
constexpr uint32_t ST7701_CAPABILITIES = DISPLAY_CAPABILITY_CAP_MIRROR | DISPLAY_CAPABILITY_CAP_SWAP_XY |
|
|
DISPLAY_CAPABILITY_INVERT_COLOR | DISPLAY_CAPABILITY_ON_OFF | DISPLAY_CAPABILITY_BACKLIGHT;
|
|
|
|
// Same reasoning as rgb_display's has_capability(): mirror()/swap_xy()'s rotate_mask is only
|
|
// applied when draw_bitmap()'s color_data is copied into the frame buffer by CPU. When
|
|
// frame_buffer_count > 0, LVGL is bound directly onto the panel's own frame buffers, so that copy
|
|
// - and with it the rotation - never happens for CAP_SWAP_XY. CAP_MIRROR is unaffected here
|
|
// because mirror_by_cmd (if set) still takes effect regardless of the frame-buffer-bound path.
|
|
static bool st7701_has_capability(Device* device, uint32_t capability) {
|
|
auto* internal = static_cast<St7701Internal*>(device_get_driver_data(device));
|
|
uint32_t capabilities = ST7701_CAPABILITIES;
|
|
if (internal->frame_buffer_count > 0 && !GET_CONFIG(device)->mirror_by_cmd) {
|
|
capabilities &= ~DISPLAY_CAPABILITY_CAP_MIRROR;
|
|
}
|
|
if (internal->frame_buffer_count > 0) {
|
|
capabilities &= ~DISPLAY_CAPABILITY_CAP_SWAP_XY;
|
|
}
|
|
return (capabilities & capability) == capability;
|
|
}
|
|
|
|
// endregion
|
|
|
|
static const DisplayApi st7701_display_api = {
|
|
.capabilities = ST7701_CAPABILITIES,
|
|
.reset = st7701_reset,
|
|
.init = st7701_init,
|
|
.draw_bitmap = st7701_draw_bitmap,
|
|
.mirror = st7701_mirror,
|
|
.swap_xy = st7701_swap_xy,
|
|
.get_swap_xy = st7701_get_swap_xy,
|
|
.get_mirror_x = st7701_get_mirror_x,
|
|
.get_mirror_y = st7701_get_mirror_y,
|
|
.set_gap = nullptr,
|
|
.invert_color = st7701_invert_color,
|
|
.disp_on_off = st7701_disp_on_off,
|
|
.disp_sleep = nullptr,
|
|
.get_color_format = st7701_get_color_format,
|
|
.get_resolution_x = st7701_get_resolution_x,
|
|
.get_resolution_y = st7701_get_resolution_y,
|
|
.get_frame_buffer = st7701_get_frame_buffer,
|
|
.get_frame_buffer_count = st7701_get_frame_buffer_count,
|
|
.get_backlight = st7701_get_backlight,
|
|
.has_capability = st7701_has_capability,
|
|
};
|
|
|
|
Driver st7701_driver = {
|
|
.name = "st7701",
|
|
.compatible = (const char*[]) { "sitronix,st7701", nullptr },
|
|
.start_device = start,
|
|
.stop_device = stop,
|
|
.api = &st7701_display_api,
|
|
.device_type = &DISPLAY_TYPE,
|
|
.owner = &st7701_module,
|
|
.internal = nullptr
|
|
};
|
|
|
|
#endif // SOC_LCD_RGB_SUPPORTED
|