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  1. // Copyright 2021 Nick Brassel (@tzarc)
  2. // SPDX-License-Identifier: GPL-2.0-or-later
  3. #include "qp_internal.h"
  4. #include "qp_draw.h"
  5. #include "qp_comms.h"
  6. ////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
  7. // Palette / Monochrome-format decoder
  8. static const qp_pixel_t qp_pixel_white = {.hsv888 = {.h = 0, .s = 0, .v = 255}};
  9. static const qp_pixel_t qp_pixel_black = {.hsv888 = {.h = 0, .s = 0, .v = 0}};
  10. bool qp_internal_bpp_capable(uint8_t bits_per_pixel) {
  11. #if !(QUANTUM_PAINTER_SUPPORTS_NATIVE_COLORS)
  12. # if !(QUANTUM_PAINTER_SUPPORTS_256_PALETTE)
  13. if (bits_per_pixel > 4) {
  14. qp_dprintf("qp_internal_decode_palette: image bpp greater than 4\n");
  15. return false;
  16. }
  17. # endif
  18. if (bits_per_pixel > 8) {
  19. qp_dprintf("qp_internal_decode_palette: image bpp greater than 8\n");
  20. return false;
  21. }
  22. #endif
  23. return true;
  24. }
  25. bool qp_internal_decode_palette(painter_device_t device, uint32_t pixel_count, uint8_t bits_per_pixel, qp_internal_byte_input_callback input_callback, void* input_arg, qp_pixel_t* palette, qp_internal_pixel_output_callback output_callback, void* output_arg) {
  26. const uint8_t pixel_bitmask = (1 << bits_per_pixel) - 1;
  27. const uint8_t pixels_per_byte = 8 / bits_per_pixel;
  28. uint32_t remaining_pixels = pixel_count; // don't try to derive from byte_count, we may not use an entire byte
  29. while (remaining_pixels > 0) {
  30. int16_t byteval = input_callback(input_arg);
  31. if (byteval < 0) {
  32. return false;
  33. }
  34. uint8_t loop_pixels = remaining_pixels < pixels_per_byte ? remaining_pixels : pixels_per_byte;
  35. for (uint8_t q = 0; q < loop_pixels; ++q) {
  36. if (!output_callback(palette, byteval & pixel_bitmask, output_arg)) {
  37. return false;
  38. }
  39. byteval >>= bits_per_pixel;
  40. }
  41. remaining_pixels -= loop_pixels;
  42. }
  43. return true;
  44. }
  45. bool qp_internal_decode_grayscale(painter_device_t device, uint32_t pixel_count, uint8_t bits_per_pixel, qp_internal_byte_input_callback input_callback, void* input_arg, qp_internal_pixel_output_callback output_callback, void* output_arg) {
  46. return qp_internal_decode_recolor(device, pixel_count, bits_per_pixel, input_callback, input_arg, qp_pixel_white, qp_pixel_black, output_callback, output_arg);
  47. }
  48. bool qp_internal_decode_recolor(painter_device_t device, uint32_t pixel_count, uint8_t bits_per_pixel, qp_internal_byte_input_callback input_callback, void* input_arg, qp_pixel_t fg_hsv888, qp_pixel_t bg_hsv888, qp_internal_pixel_output_callback output_callback, void* output_arg) {
  49. painter_driver_t* driver = (painter_driver_t*)device;
  50. int16_t steps = 1 << bits_per_pixel; // number of items we need to interpolate
  51. if (qp_internal_interpolate_palette(fg_hsv888, bg_hsv888, steps)) {
  52. if (!driver->driver_vtable->palette_convert(device, steps, qp_internal_global_pixel_lookup_table)) {
  53. return false;
  54. }
  55. }
  56. return qp_internal_decode_palette(device, pixel_count, bits_per_pixel, input_callback, input_arg, qp_internal_global_pixel_lookup_table, output_callback, output_arg);
  57. }
  58. bool qp_internal_send_bytes(painter_device_t device, uint32_t byte_count, qp_internal_byte_input_callback input_callback, void* input_arg, qp_internal_byte_output_callback output_callback, void* output_arg) {
  59. uint32_t remaining_bytes = byte_count;
  60. while (remaining_bytes > 0) {
  61. int16_t byteval = input_callback(input_arg);
  62. if (byteval < 0) {
  63. return false;
  64. }
  65. if (!output_callback(byteval, output_arg)) {
  66. return false;
  67. }
  68. remaining_bytes -= 1;
  69. }
  70. return true;
  71. }
  72. ////////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
  73. // Progressive pull of bytes, push of pixels
  74. static inline int16_t qp_drawimage_byte_uncompressed_decoder(void* cb_arg) {
  75. qp_internal_byte_input_state_t* state = (qp_internal_byte_input_state_t*)cb_arg;
  76. state->curr = qp_stream_get(state->src_stream);
  77. return state->curr;
  78. }
  79. static inline int16_t qp_drawimage_byte_rle_decoder(void* cb_arg) {
  80. qp_internal_byte_input_state_t* state = (qp_internal_byte_input_state_t*)cb_arg;
  81. // Work out if we're parsing the initial marker byte
  82. if (state->rle.mode == MARKER_BYTE) {
  83. uint8_t c = qp_stream_get(state->src_stream);
  84. if (c >= 128) {
  85. state->rle.mode = NON_REPEATING_RUN; // non-repeated run
  86. state->rle.remain = c - 127;
  87. } else {
  88. state->rle.mode = REPEATING_RUN; // repeated run
  89. state->rle.remain = c;
  90. }
  91. state->curr = qp_stream_get(state->src_stream);
  92. }
  93. // Work out which byte we're returning
  94. uint8_t c = state->curr;
  95. // Decrement the counter of the bytes remaining
  96. state->rle.remain--;
  97. if (state->rle.remain > 0) {
  98. // If we're in a non-repeating run, queue up the next byte
  99. if (state->rle.mode == NON_REPEATING_RUN) {
  100. state->curr = qp_stream_get(state->src_stream);
  101. }
  102. } else {
  103. // Swap back to querying the marker byte mode
  104. state->rle.mode = MARKER_BYTE;
  105. }
  106. return c;
  107. }
  108. bool qp_internal_pixel_appender(qp_pixel_t* palette, uint8_t index, void* cb_arg) {
  109. qp_internal_pixel_output_state_t* state = (qp_internal_pixel_output_state_t*)cb_arg;
  110. painter_driver_t* driver = (painter_driver_t*)state->device;
  111. if (!driver->driver_vtable->append_pixels(state->device, qp_internal_global_pixdata_buffer, palette, state->pixel_write_pos++, 1, &index)) {
  112. return false;
  113. }
  114. // If we've hit the transmit limit, send out the entire buffer and reset the write position
  115. if (state->pixel_write_pos == state->max_pixels) {
  116. if (!driver->driver_vtable->pixdata(state->device, qp_internal_global_pixdata_buffer, state->pixel_write_pos)) {
  117. return false;
  118. }
  119. state->pixel_write_pos = 0;
  120. }
  121. return true;
  122. }
  123. bool qp_internal_byte_appender(uint8_t byteval, void* cb_arg) {
  124. qp_internal_byte_output_state_t* state = (qp_internal_byte_output_state_t*)cb_arg;
  125. painter_driver_t* driver = (painter_driver_t*)state->device;
  126. if (!driver->driver_vtable->append_pixdata(state->device, qp_internal_global_pixdata_buffer, state->byte_write_pos++, byteval)) {
  127. return false;
  128. }
  129. // If we've hit the transmit limit, send out the entire buffer and reset the write position
  130. if (state->byte_write_pos == state->max_bytes) {
  131. painter_driver_t* driver = (painter_driver_t*)state->device;
  132. if (!driver->driver_vtable->pixdata(state->device, qp_internal_global_pixdata_buffer, state->byte_write_pos * 8 / driver->native_bits_per_pixel)) {
  133. return false;
  134. }
  135. state->byte_write_pos = 0;
  136. }
  137. return true;
  138. }
  139. qp_internal_byte_input_callback qp_internal_prepare_input_state(qp_internal_byte_input_state_t* input_state, painter_compression_t compression) {
  140. switch (compression) {
  141. case IMAGE_UNCOMPRESSED:
  142. return qp_drawimage_byte_uncompressed_decoder;
  143. case IMAGE_COMPRESSED_RLE:
  144. input_state->rle.mode = MARKER_BYTE;
  145. input_state->rle.remain = 0;
  146. return qp_drawimage_byte_rle_decoder;
  147. default:
  148. return NULL;
  149. }
  150. }