mirror of
https://github.com/espressif/esp-idf.git
synced 2025-08-03 12:44:33 +02:00
Merge branch 'feature/multiple_spi_lcd_backport_v5.0' into 'release/v5.0'
spi_lcd: inherit more IO flags from SPI master driver (5.0) See merge request espressif/esp-idf!21119
This commit is contained in:
@@ -23,7 +23,7 @@ typedef struct esp_lcd_i80_bus_t *esp_lcd_i80_bus_handle_t; /*!< Type of LCD i
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* @brief Transmit LCD command and receive corresponding parameters
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*
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* @note Commands sent by this function are short, so they are sent using polling transactions.
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* The function does not return before the command tranfer is completed.
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* The function does not return before the command transfer is completed.
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* If any queued transactions sent by `esp_lcd_panel_io_tx_color()` are still pending when this function is called,
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* this function will wait until they are finished and the queue is empty before sending the command(s).
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*
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@@ -42,7 +42,7 @@ esp_err_t esp_lcd_panel_io_rx_param(esp_lcd_panel_io_handle_t io, int lcd_cmd, v
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* @brief Transmit LCD command and corresponding parameters
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*
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* @note Commands sent by this function are short, so they are sent using polling transactions.
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* The function does not return before the command tranfer is completed.
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* The function does not return before the command transfer is completed.
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* If any queued transactions sent by `esp_lcd_panel_io_tx_color()` are still pending when this function is called,
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* this function will wait until they are finished and the queue is empty before sending the command(s).
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*
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@@ -65,7 +65,7 @@ esp_err_t esp_lcd_panel_io_tx_param(esp_lcd_panel_io_handle_t io, int lcd_cmd, c
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* Recycling of color buffer should be done in the callback `on_color_trans_done()`.
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*
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* @param[in] io LCD panel IO handle, which is created by factory API like `esp_lcd_new_panel_io_spi()`
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* @param[in] lcd_cmd The specific LCD command
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* @param[in] lcd_cmd The specific LCD command, set to -1 if no command needed
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* @param[in] color Buffer that holds the RGB color data
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* @param[in] color_size Size of `color` in memory, in bytes
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* @return
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@@ -75,7 +75,7 @@ esp_err_t esp_lcd_panel_io_tx_param(esp_lcd_panel_io_handle_t io, int lcd_cmd, c
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esp_err_t esp_lcd_panel_io_tx_color(esp_lcd_panel_io_handle_t io, int lcd_cmd, const void *color, size_t color_size);
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/**
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* @brief Destory LCD panel IO handle (deinitialize panel and free all corresponding resource)
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* @brief Destroy LCD panel IO handle (deinitialize panel and free all corresponding resource)
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*
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* @param[in] io LCD panel IO handle, which is created by factory API like `esp_lcd_new_panel_io_spi()`
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* @return
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@@ -105,7 +105,7 @@ typedef bool (*esp_lcd_panel_io_color_trans_done_cb_t)(esp_lcd_panel_io_handle_t
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*/
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typedef struct {
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int cs_gpio_num; /*!< GPIO used for CS line */
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int dc_gpio_num; /*!< GPIO used to select the D/C line, set this to -1 if the D/C line not controlled by manually pulling high/low GPIO */
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int dc_gpio_num; /*!< GPIO used to select the D/C line, set this to -1 if the D/C line is not used */
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int spi_mode; /*!< Traditional SPI mode (0~3) */
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unsigned int pclk_hz; /*!< Frequency of pixel clock */
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size_t trans_queue_depth; /*!< Size of internal transaction queue */
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@@ -116,7 +116,9 @@ typedef struct {
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struct {
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unsigned int dc_low_on_data: 1; /*!< If this flag is enabled, DC line = 0 means transfer data, DC line = 1 means transfer command; vice versa */
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unsigned int octal_mode: 1; /*!< transmit with octal mode (8 data lines), this mode is used to simulate Intel 8080 timing */
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unsigned int sio_mode: 1; /*!< Read and write through a single data line (MOSI) */
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unsigned int lsb_first: 1; /*!< transmit LSB bit first */
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unsigned int cs_high_active: 1; /*!< CS line is high active */
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} flags; /*!< Extra flags to fine-tune the SPI device */
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} esp_lcd_panel_io_spi_config_t;
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@@ -141,7 +143,7 @@ typedef struct {
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uint32_t dev_addr; /*!< I2C device address */
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esp_lcd_panel_io_color_trans_done_cb_t on_color_trans_done; /*!< Callback invoked when color data transfer has finished */
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void *user_ctx; /*!< User private data, passed directly to on_color_trans_done's user_ctx */
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size_t control_phase_bytes; /*!< I2C LCD panel will encode control information (e.g. D/C seclection) into control phase, in several bytes */
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size_t control_phase_bytes; /*!< I2C LCD panel will encode control information (e.g. D/C selection) into control phase, in several bytes */
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unsigned int dc_bit_offset; /*!< Offset of the D/C selection bit in control phase */
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int lcd_cmd_bits; /*!< Bit-width of LCD command */
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int lcd_param_bits; /*!< Bit-width of LCD parameter */
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@@ -193,7 +195,7 @@ typedef struct {
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esp_err_t esp_lcd_new_i80_bus(const esp_lcd_i80_bus_config_t *bus_config, esp_lcd_i80_bus_handle_t *ret_bus);
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/**
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* @brief Destory Intel 8080 bus handle
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* @brief Destroy Intel 8080 bus handle
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*
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* @param[in] bus Intel 8080 bus handle, created by `esp_lcd_new_i80_bus()`
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* @return
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@@ -210,7 +212,7 @@ typedef struct {
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int cs_gpio_num; /*!< GPIO used for CS line, set to -1 will declaim exclusively use of I80 bus */
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uint32_t pclk_hz; /*!< Frequency of pixel clock */
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size_t trans_queue_depth; /*!< Transaction queue size, larger queue, higher throughput */
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esp_lcd_panel_io_color_trans_done_cb_t on_color_trans_done; /*!< Callback invoked when color data was tranferred done */
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esp_lcd_panel_io_color_trans_done_cb_t on_color_trans_done; /*!< Callback invoked when color data was transferred done */
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void *user_ctx; /*!< User private data, passed directly to on_color_trans_done's user_ctx */
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int lcd_cmd_bits; /*!< Bit-width of LCD command */
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int lcd_param_bits; /*!< Bit-width of LCD parameter */
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@@ -66,14 +66,14 @@ esp_err_t esp_lcd_new_panel_io_spi(esp_lcd_spi_bus_handle_t bus, const esp_lcd_p
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esp_err_t ret = ESP_OK;
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esp_lcd_panel_io_spi_t *spi_panel_io = NULL;
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ESP_GOTO_ON_FALSE(bus && io_config && ret_io, ESP_ERR_INVALID_ARG, err, TAG, "invalid argument");
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// at the moment, the hardware doesn't support 9-bit SPI LCD, but in the future, there will be such a feature
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// so for now, we will force the user to use the GPIO to control the LCD's D/C line.
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ESP_GOTO_ON_FALSE(io_config->dc_gpio_num >= 0, ESP_ERR_INVALID_ARG, err, TAG, "invalid DC mode");
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spi_panel_io = calloc(1, sizeof(esp_lcd_panel_io_spi_t) + sizeof(lcd_spi_trans_descriptor_t) * io_config->trans_queue_depth);
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ESP_GOTO_ON_FALSE(spi_panel_io, ESP_ERR_NO_MEM, err, TAG, "no mem for spi panel io");
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spi_device_interface_config_t devcfg = {
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.flags = SPI_DEVICE_HALFDUPLEX | (io_config->flags.lsb_first ? SPI_DEVICE_TXBIT_LSBFIRST : 0),
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.flags = SPI_DEVICE_HALFDUPLEX |
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(io_config->flags.lsb_first ? SPI_DEVICE_TXBIT_LSBFIRST : 0) |
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(io_config->flags.sio_mode ? SPI_DEVICE_3WIRE : 0) |
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(io_config->flags.cs_high_active ? SPI_DEVICE_POSITIVE_CS : 0),
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.clock_speed_hz = io_config->pclk_hz,
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.mode = io_config->spi_mode,
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.spics_io_num = io_config->cs_gpio_num,
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@@ -191,15 +191,18 @@ static esp_err_t panel_io_spi_tx_param(esp_lcd_panel_io_t *io, int lcd_cmd, cons
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}
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lcd_trans = &spi_panel_io->trans_pool[0];
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memset(lcd_trans, 0, sizeof(lcd_spi_trans_descriptor_t));
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spi_lcd_prepare_cmd_buffer(spi_panel_io, &lcd_cmd);
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lcd_trans->base.user = spi_panel_io;
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lcd_trans->base.flags |= SPI_TRANS_CS_KEEP_ACTIVE;
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if (param && param_size) {
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lcd_trans->base.flags |= SPI_TRANS_CS_KEEP_ACTIVE;
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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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if (send_cmd) {
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spi_lcd_prepare_cmd_buffer(spi_panel_io, &lcd_cmd);
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lcd_trans->flags.dc_gpio_level = !spi_panel_io->flags.dc_data_level; // set D/C line to command mode
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lcd_trans->base.length = spi_panel_io->lcd_cmd_bits;
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lcd_trans->base.tx_buffer = &lcd_cmd;
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@@ -244,7 +247,7 @@ static esp_err_t panel_io_spi_rx_param(esp_lcd_panel_io_t *io, int lcd_cmd, void
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}
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lcd_trans = &spi_panel_io->trans_pool[0];
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memset(lcd_trans, 0, sizeof(lcd_spi_trans_descriptor_t));
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spi_lcd_prepare_cmd_buffer(spi_panel_io, &lcd_cmd);
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lcd_trans->base.user = spi_panel_io;
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lcd_trans->base.flags |= SPI_TRANS_CS_KEEP_ACTIVE;
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if (spi_panel_io->flags.octal_mode) {
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@@ -253,6 +256,7 @@ static esp_err_t panel_io_spi_rx_param(esp_lcd_panel_io_t *io, int lcd_cmd, void
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}
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if (send_cmd) {
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spi_lcd_prepare_cmd_buffer(spi_panel_io, &lcd_cmd);
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lcd_trans->flags.dc_gpio_level = !spi_panel_io->flags.dc_data_level; // set D/C line to command mode
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lcd_trans->base.length = spi_panel_io->lcd_cmd_bits;
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lcd_trans->base.tx_buffer = &lcd_cmd;
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@@ -285,6 +289,7 @@ 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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bool send_cmd = (lcd_cmd >= 0);
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// before issue a polling transaction, need to wait queued transactions finished
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size_t num_trans_inflight = spi_panel_io->num_trans_inflight;
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@@ -295,18 +300,21 @@ static esp_err_t panel_io_spi_tx_color(esp_lcd_panel_io_t *io, int lcd_cmd, cons
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}
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lcd_trans = &spi_panel_io->trans_pool[0];
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memset(lcd_trans, 0, sizeof(lcd_spi_trans_descriptor_t));
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spi_lcd_prepare_cmd_buffer(spi_panel_io, &lcd_cmd);
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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 command mode
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lcd_trans->base.length = spi_panel_io->lcd_cmd_bits;
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lcd_trans->base.tx_buffer = &lcd_cmd;
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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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if (send_cmd) {
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spi_lcd_prepare_cmd_buffer(spi_panel_io, &lcd_cmd);
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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 command mode
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lcd_trans->base.length = spi_panel_io->lcd_cmd_bits;
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lcd_trans->base.tx_buffer = &lcd_cmd;
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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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// command is short, using polling mode
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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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}
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// command is short, using polling mode
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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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// split to chunks if required:
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// the SPI bus has a maximum transaction size determined by SPI_LL_DATA_MAX_BIT_LEN
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