forked from mirrors/qmk_firmware
Fix oled_render to render all dirty blocks. (#18887)
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81bf60a636
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4c1d8a0eb3
1 changed files with 49 additions and 51 deletions
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@ -291,65 +291,63 @@ static void rotate_90(const uint8_t *src, uint8_t *dest) {
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}
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void oled_render(void) {
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if (!oled_initialized) {
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return;
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}
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// Do we have work to do?
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oled_dirty &= OLED_ALL_BLOCKS_MASK;
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if (!oled_dirty || oled_scrolling) {
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if (!oled_dirty || !oled_initialized || oled_scrolling) {
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return;
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}
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// Find first dirty block
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uint8_t update_start = 0;
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while (!(oled_dirty & ((OLED_BLOCK_TYPE)1 << update_start))) {
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++update_start;
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}
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// Set column & page position
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static uint8_t display_start[] = {I2C_CMD, COLUMN_ADDR, 0, OLED_DISPLAY_WIDTH - 1, PAGE_ADDR, 0, OLED_DISPLAY_HEIGHT / 8 - 1};
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if (!HAS_FLAGS(oled_rotation, OLED_ROTATION_90)) {
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calc_bounds(update_start, &display_start[1]); // Offset from I2C_CMD byte at the start
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} else {
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calc_bounds_90(update_start, &display_start[1]); // Offset from I2C_CMD byte at the start
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}
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// Send column & page position
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if (I2C_TRANSMIT(display_start) != I2C_STATUS_SUCCESS) {
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print("oled_render offset command failed\n");
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return;
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}
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if (!HAS_FLAGS(oled_rotation, OLED_ROTATION_90)) {
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// Send render data chunk as is
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if (I2C_WRITE_REG(I2C_DATA, &oled_buffer[OLED_BLOCK_SIZE * update_start], OLED_BLOCK_SIZE) != I2C_STATUS_SUCCESS) {
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print("oled_render data failed\n");
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return;
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}
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} else {
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// Rotate the render chunks
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const static uint8_t source_map[] = OLED_SOURCE_MAP;
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const static uint8_t target_map[] = OLED_TARGET_MAP;
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static uint8_t temp_buffer[OLED_BLOCK_SIZE];
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memset(temp_buffer, 0, sizeof(temp_buffer));
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for (uint8_t i = 0; i < sizeof(source_map); ++i) {
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rotate_90(&oled_buffer[OLED_BLOCK_SIZE * update_start + source_map[i]], &temp_buffer[target_map[i]]);
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}
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// Send render data chunk after rotating
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if (I2C_WRITE_REG(I2C_DATA, &temp_buffer[0], OLED_BLOCK_SIZE) != I2C_STATUS_SUCCESS) {
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print("oled_render90 data failed\n");
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return;
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}
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}
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// Turn on display if it is off
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oled_on();
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// Clear dirty flag
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oled_dirty &= ~((OLED_BLOCK_TYPE)1 << update_start);
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uint8_t update_start = 0;
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while (oled_dirty) { // render all dirty blocks
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// Find next dirty block
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while (!(oled_dirty & ((OLED_BLOCK_TYPE)1 << update_start))) {
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++update_start;
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}
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// Set column & page position
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static uint8_t display_start[] = {I2C_CMD, COLUMN_ADDR, 0, OLED_DISPLAY_WIDTH - 1, PAGE_ADDR, 0, OLED_DISPLAY_HEIGHT / 8 - 1};
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if (!HAS_FLAGS(oled_rotation, OLED_ROTATION_90)) {
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calc_bounds(update_start, &display_start[1]); // Offset from I2C_CMD byte at the start
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} else {
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calc_bounds_90(update_start, &display_start[1]); // Offset from I2C_CMD byte at the start
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}
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// Send column & page position
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if (I2C_TRANSMIT(display_start) != I2C_STATUS_SUCCESS) {
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print("oled_render offset command failed\n");
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return;
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}
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if (!HAS_FLAGS(oled_rotation, OLED_ROTATION_90)) {
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// Send render data chunk as is
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if (I2C_WRITE_REG(I2C_DATA, &oled_buffer[OLED_BLOCK_SIZE * update_start], OLED_BLOCK_SIZE) != I2C_STATUS_SUCCESS) {
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print("oled_render data failed\n");
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return;
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}
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} else {
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// Rotate the render chunks
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const static uint8_t source_map[] = OLED_SOURCE_MAP;
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const static uint8_t target_map[] = OLED_TARGET_MAP;
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static uint8_t temp_buffer[OLED_BLOCK_SIZE];
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memset(temp_buffer, 0, sizeof(temp_buffer));
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for (uint8_t i = 0; i < sizeof(source_map); ++i) {
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rotate_90(&oled_buffer[OLED_BLOCK_SIZE * update_start + source_map[i]], &temp_buffer[target_map[i]]);
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}
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// Send render data chunk after rotating
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if (I2C_WRITE_REG(I2C_DATA, &temp_buffer[0], OLED_BLOCK_SIZE) != I2C_STATUS_SUCCESS) {
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print("oled_render90 data failed\n");
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return;
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}
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}
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// Clear dirty flag of just rendered block
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oled_dirty &= ~((OLED_BLOCK_TYPE)1 << update_start);
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}
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}
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void oled_set_cursor(uint8_t col, uint8_t line) {
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