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Bugfix: LCD component support for large SPI color transfers
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@@ -1,5 +1,5 @@
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/*
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* SPDX-FileCopyrightText: 2021 Espressif Systems (Shanghai) CO LTD
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* SPDX-FileCopyrightText: 2021-2022 Espressif Systems (Shanghai) CO LTD
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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@@ -214,6 +214,7 @@ static esp_err_t panel_io_spi_tx_color(esp_lcd_panel_io_t *io, int lcd_cmd, cons
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spi_transaction_t *spi_trans = NULL;
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lcd_spi_trans_descriptor_t *lcd_trans = NULL;
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esp_lcd_panel_io_spi_t *spi_panel_io = __containerof(io, esp_lcd_panel_io_spi_t, base);
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size_t next_trans = 0;
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// before issue a polling transaction, need to wait queued transactions finished
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for (size_t i = 0; i < spi_panel_io->num_trans_inflight; i++) {
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@@ -239,18 +240,55 @@ static esp_err_t panel_io_spi_tx_color(esp_lcd_panel_io_t *io, int lcd_cmd, cons
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ret = spi_device_polling_transmit(spi_panel_io->spi_dev, &lcd_trans->base);
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ESP_GOTO_ON_ERROR(ret, err, TAG, "spi transmit (polling) command failed");
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// sending LCD color data
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lcd_trans->flags.trans_is_color = 1;
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lcd_trans->flags.dc_gpio_level = spi_panel_io->flags.dc_data_level; // set D/C line to data mode
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lcd_trans->base.length = color_size * 8; // transaction length is in bits
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lcd_trans->base.tx_buffer = color;
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if (spi_panel_io->flags.dc_as_cmd_phase) { // encoding DC value to SPI command phase when necessary
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lcd_trans->base.cmd = spi_panel_io->flags.dc_data_level;
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// split to chunks if required:
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// the SPI bus has a maximum transaction size determined by SPI_USR_MOSI_DBITLEN's bit width
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do {
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size_t chunk_size = color_size;
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if (spi_panel_io->num_trans_inflight >= spi_panel_io->queue_size) {
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// transaction pool has used up, recycle one transaction
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ret = spi_device_get_trans_result(spi_panel_io->spi_dev, &spi_trans, portMAX_DELAY);
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ESP_GOTO_ON_ERROR(ret, err, TAG, "recycle spi transactions failed");
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spi_panel_io->num_trans_inflight--;
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}
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// get the next available transaction
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lcd_trans = &spi_panel_io->trans_pool[next_trans];
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next_trans = (next_trans + 1) % spi_panel_io->queue_size;
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memset(lcd_trans, 0, sizeof(lcd_spi_trans_descriptor_t));
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// MOSI_DBITLEN holds the size minus 1, so we can actually fit 1 additional byte,
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// hence each chunk can have up to (SPI_MS_DATA_BITLEN_V + 1) bytes
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if (chunk_size > (SPI_MS_DATA_BITLEN_V + 1) / 8) {
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// cap the transfer size to the maximum supported by the bus
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chunk_size = (SPI_MS_DATA_BITLEN_V + 1) / 8;
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} else {
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// mark as sending LCD color data only at the last round to avoid premature completion callback
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lcd_trans->flags.trans_is_color = 1;
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}
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lcd_trans->base.user = spi_panel_io;
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lcd_trans->flags.dc_gpio_level = spi_panel_io->flags.dc_data_level; // set D/C line to data mode
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lcd_trans->base.length = chunk_size * 8; // transaction length is in bits
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lcd_trans->base.tx_buffer = color;
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if (spi_panel_io->flags.dc_as_cmd_phase) { // encoding DC value to SPI command phase when necessary
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lcd_trans->base.cmd = spi_panel_io->flags.dc_data_level;
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}
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if (spi_panel_io->flags.octal_mode) {
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// use 8 lines for transmitting command, address and data
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lcd_trans->base.flags |= (SPI_TRANS_MULTILINE_CMD | SPI_TRANS_MULTILINE_ADDR | SPI_TRANS_MODE_OCT);
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}
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// color data is usually large, using queue+blocking mode
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ret = spi_device_queue_trans(spi_panel_io->spi_dev, &lcd_trans->base, portMAX_DELAY);
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ESP_GOTO_ON_ERROR(ret, err, TAG, "spi transmit (queue) color failed");
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spi_panel_io->num_trans_inflight++;
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// move on to the next chunk
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color = (const uint8_t *)color + chunk_size;
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color_size -= chunk_size;
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}
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// color data is usually large, using queue+blocking mode
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ret = spi_device_queue_trans(spi_panel_io->spi_dev, &lcd_trans->base, portMAX_DELAY);
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ESP_GOTO_ON_ERROR(ret, err, TAG, "spi transmit (queue) color failed");
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spi_panel_io->num_trans_inflight++;
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while (color_size > 0); // continue while we have remaining data to transmit
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err:
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return ret;
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