jpgd.h 13 KB

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  1. // jpgd.h - C++ class for JPEG decompression.
  2. // Public domain, Rich Geldreich <richgel99@gmail.com>
  3. #ifndef JPEG_DECODER_H
  4. #define JPEG_DECODER_H
  5. #include <stdlib.h>
  6. #include <stdio.h>
  7. #include <setjmp.h>
  8. #ifdef _MSC_VER
  9. #define JPGD_NORETURN __declspec(noreturn)
  10. #elif defined(__GNUC__)
  11. #define JPGD_NORETURN __attribute__ ((noreturn))
  12. #else
  13. #define JPGD_NORETURN
  14. #endif
  15. namespace jpgd
  16. {
  17. typedef unsigned char uint8;
  18. typedef signed short int16;
  19. typedef unsigned short uint16;
  20. typedef unsigned int uint;
  21. typedef signed int int32;
  22. // Loads a JPEG image from a memory buffer or a file.
  23. // req_comps can be 1 (grayscale), 3 (RGB), or 4 (RGBA).
  24. // On return, width/height will be set to the image's dimensions, and actual_comps will be set to the either 1 (grayscale) or 3 (RGB).
  25. // Notes: For more control over where and how the source data is read, see the decompress_jpeg_image_from_stream() function below, or call the jpeg_decoder class directly.
  26. // Requesting a 8 or 32bpp image is currently a little faster than 24bpp because the jpeg_decoder class itself currently always unpacks to either 8 or 32bpp.
  27. unsigned char *decompress_jpeg_image_from_memory(const unsigned char *pSrc_data, int src_data_size, int *width, int *height, int *actual_comps, int req_comps);
  28. unsigned char *decompress_jpeg_image_from_file(const char *pSrc_filename, int *width, int *height, int *actual_comps, int req_comps);
  29. // Success/failure error codes.
  30. enum jpgd_status
  31. {
  32. JPGD_SUCCESS = 0, JPGD_FAILED = -1, JPGD_DONE = 1,
  33. JPGD_BAD_DHT_COUNTS = -256, JPGD_BAD_DHT_INDEX, JPGD_BAD_DHT_MARKER, JPGD_BAD_DQT_MARKER, JPGD_BAD_DQT_TABLE,
  34. JPGD_BAD_PRECISION, JPGD_BAD_HEIGHT, JPGD_BAD_WIDTH, JPGD_TOO_MANY_COMPONENTS,
  35. JPGD_BAD_SOF_LENGTH, JPGD_BAD_VARIABLE_MARKER, JPGD_BAD_DRI_LENGTH, JPGD_BAD_SOS_LENGTH,
  36. JPGD_BAD_SOS_COMP_ID, JPGD_W_EXTRA_BYTES_BEFORE_MARKER, JPGD_NO_ARITHMITIC_SUPPORT, JPGD_UNEXPECTED_MARKER,
  37. JPGD_NOT_JPEG, JPGD_UNSUPPORTED_MARKER, JPGD_BAD_DQT_LENGTH, JPGD_TOO_MANY_BLOCKS,
  38. JPGD_UNDEFINED_QUANT_TABLE, JPGD_UNDEFINED_HUFF_TABLE, JPGD_NOT_SINGLE_SCAN, JPGD_UNSUPPORTED_COLORSPACE,
  39. JPGD_UNSUPPORTED_SAMP_FACTORS, JPGD_DECODE_ERROR, JPGD_BAD_RESTART_MARKER, JPGD_ASSERTION_ERROR,
  40. JPGD_BAD_SOS_SPECTRAL, JPGD_BAD_SOS_SUCCESSIVE, JPGD_STREAM_READ, JPGD_NOTENOUGHMEM
  41. };
  42. // Input stream interface.
  43. // Derive from this class to read input data from sources other than files or memory. Set m_eof_flag to true when no more data is available.
  44. // The decoder is rather greedy: it will keep on calling this method until its internal input buffer is full, or until the EOF flag is set.
  45. // It the input stream contains data after the JPEG stream's EOI (end of image) marker it will probably be pulled into the internal buffer.
  46. // Call the get_total_bytes_read() method to determine the actual size of the JPEG stream after successful decoding.
  47. class jpeg_decoder_stream
  48. {
  49. public:
  50. jpeg_decoder_stream() { }
  51. virtual ~jpeg_decoder_stream() { }
  52. // The read() method is called when the internal input buffer is empty.
  53. // Parameters:
  54. // pBuf - input buffer
  55. // max_bytes_to_read - maximum bytes that can be written to pBuf
  56. // pEOF_flag - set this to true if at end of stream (no more bytes remaining)
  57. // Returns -1 on error, otherwise return the number of bytes actually written to the buffer (which may be 0).
  58. // Notes: This method will be called in a loop until you set *pEOF_flag to true or the internal buffer is full.
  59. virtual int read(uint8 *pBuf, int max_bytes_to_read, bool *pEOF_flag) = 0;
  60. };
  61. // stdio FILE stream class.
  62. class jpeg_decoder_file_stream : public jpeg_decoder_stream
  63. {
  64. jpeg_decoder_file_stream(const jpeg_decoder_file_stream &);
  65. jpeg_decoder_file_stream &operator =(const jpeg_decoder_file_stream &);
  66. FILE *m_pFile;
  67. bool m_eof_flag, m_error_flag;
  68. public:
  69. jpeg_decoder_file_stream();
  70. virtual ~jpeg_decoder_file_stream();
  71. bool open(const char *Pfilename);
  72. void close();
  73. virtual int read(uint8 *pBuf, int max_bytes_to_read, bool *pEOF_flag);
  74. };
  75. // Memory stream class.
  76. class jpeg_decoder_mem_stream : public jpeg_decoder_stream
  77. {
  78. const uint8 *m_pSrc_data;
  79. uint m_ofs, m_size;
  80. public:
  81. jpeg_decoder_mem_stream() : m_pSrc_data(NULL), m_ofs(0), m_size(0) { }
  82. jpeg_decoder_mem_stream(const uint8 *pSrc_data, uint size) : m_pSrc_data(pSrc_data), m_ofs(0), m_size(size) { }
  83. virtual ~jpeg_decoder_mem_stream() { }
  84. bool open(const uint8 *pSrc_data, uint size);
  85. void close() { m_pSrc_data = NULL; m_ofs = 0; m_size = 0; }
  86. virtual int read(uint8 *pBuf, int max_bytes_to_read, bool *pEOF_flag);
  87. };
  88. // Loads JPEG file from a jpeg_decoder_stream.
  89. unsigned char *decompress_jpeg_image_from_stream(jpeg_decoder_stream *pStream, int *width, int *height, int *actual_comps, int req_comps);
  90. enum
  91. {
  92. JPGD_IN_BUF_SIZE = 8192, JPGD_MAX_BLOCKS_PER_MCU = 10, JPGD_MAX_HUFF_TABLES = 8, JPGD_MAX_QUANT_TABLES = 4,
  93. JPGD_MAX_COMPONENTS = 4, JPGD_MAX_COMPS_IN_SCAN = 4, JPGD_MAX_BLOCKS_PER_ROW = 8192, JPGD_MAX_HEIGHT = 16384, JPGD_MAX_WIDTH = 16384
  94. };
  95. typedef int16 jpgd_quant_t;
  96. typedef int16 jpgd_block_t;
  97. class jpeg_decoder
  98. {
  99. public:
  100. // Call get_error_code() after constructing to determine if the stream is valid or not. You may call the get_width(), get_height(), etc.
  101. // methods after the constructor is called. You may then either destruct the object, or begin decoding the image by calling begin_decoding(), then decode() on each scanline.
  102. jpeg_decoder(jpeg_decoder_stream *pStream);
  103. ~jpeg_decoder();
  104. // Call this method after constructing the object to begin decompression.
  105. // If JPGD_SUCCESS is returned you may then call decode() on each scanline.
  106. int begin_decoding();
  107. // Returns the next scan line.
  108. // For grayscale images, pScan_line will point to a buffer containing 8-bit pixels (get_bytes_per_pixel() will return 1).
  109. // Otherwise, it will always point to a buffer containing 32-bit RGBA pixels (A will always be 255, and get_bytes_per_pixel() will return 4).
  110. // Returns JPGD_SUCCESS if a scan line has been returned.
  111. // Returns JPGD_DONE if all scan lines have been returned.
  112. // Returns JPGD_FAILED if an error occurred. Call get_error_code() for a more info.
  113. int decode(const void** pScan_line, uint* pScan_line_len);
  114. inline jpgd_status get_error_code() const { return m_error_code; }
  115. inline int get_width() const { return m_image_x_size; }
  116. inline int get_height() const { return m_image_y_size; }
  117. inline int get_num_components() const { return m_comps_in_frame; }
  118. inline int get_bytes_per_pixel() const { return m_dest_bytes_per_pixel; }
  119. inline int get_bytes_per_scan_line() const { return m_image_x_size * get_bytes_per_pixel(); }
  120. // Returns the total number of bytes actually consumed by the decoder (which should equal the actual size of the JPEG file).
  121. inline int get_total_bytes_read() const { return m_total_bytes_read; }
  122. private:
  123. jpeg_decoder(const jpeg_decoder &);
  124. jpeg_decoder &operator =(const jpeg_decoder &);
  125. typedef void (*pDecode_block_func)(jpeg_decoder *, int, int, int);
  126. struct huff_tables
  127. {
  128. bool ac_table;
  129. uint look_up[256];
  130. uint look_up2[256];
  131. uint8 code_size[256];
  132. uint tree[512];
  133. };
  134. struct coeff_buf
  135. {
  136. uint8 *pData;
  137. int block_num_x, block_num_y;
  138. int block_len_x, block_len_y;
  139. int block_size;
  140. };
  141. struct mem_block
  142. {
  143. mem_block *m_pNext;
  144. size_t m_used_count;
  145. size_t m_size;
  146. char m_data[1];
  147. };
  148. jmp_buf m_jmp_state;
  149. mem_block *m_pMem_blocks;
  150. int m_image_x_size;
  151. int m_image_y_size;
  152. jpeg_decoder_stream *m_pStream;
  153. int m_progressive_flag;
  154. uint8 m_huff_ac[JPGD_MAX_HUFF_TABLES];
  155. uint8* m_huff_num[JPGD_MAX_HUFF_TABLES]; // pointer to number of Huffman codes per bit size
  156. uint8* m_huff_val[JPGD_MAX_HUFF_TABLES]; // pointer to Huffman codes per bit size
  157. jpgd_quant_t* m_quant[JPGD_MAX_QUANT_TABLES]; // pointer to quantization tables
  158. int m_scan_type; // Gray, Yh1v1, Yh1v2, Yh2v1, Yh2v2 (CMYK111, CMYK4114 no longer supported)
  159. int m_comps_in_frame; // # of components in frame
  160. int m_comp_h_samp[JPGD_MAX_COMPONENTS]; // component's horizontal sampling factor
  161. int m_comp_v_samp[JPGD_MAX_COMPONENTS]; // component's vertical sampling factor
  162. int m_comp_quant[JPGD_MAX_COMPONENTS]; // component's quantization table selector
  163. int m_comp_ident[JPGD_MAX_COMPONENTS]; // component's ID
  164. int m_comp_h_blocks[JPGD_MAX_COMPONENTS];
  165. int m_comp_v_blocks[JPGD_MAX_COMPONENTS];
  166. int m_comps_in_scan; // # of components in scan
  167. int m_comp_list[JPGD_MAX_COMPS_IN_SCAN]; // components in this scan
  168. int m_comp_dc_tab[JPGD_MAX_COMPONENTS]; // component's DC Huffman coding table selector
  169. int m_comp_ac_tab[JPGD_MAX_COMPONENTS]; // component's AC Huffman coding table selector
  170. int m_spectral_start; // spectral selection start
  171. int m_spectral_end; // spectral selection end
  172. int m_successive_low; // successive approximation low
  173. int m_successive_high; // successive approximation high
  174. int m_max_mcu_x_size; // MCU's max. X size in pixels
  175. int m_max_mcu_y_size; // MCU's max. Y size in pixels
  176. int m_blocks_per_mcu;
  177. int m_max_blocks_per_row;
  178. int m_mcus_per_row, m_mcus_per_col;
  179. int m_mcu_org[JPGD_MAX_BLOCKS_PER_MCU];
  180. int m_total_lines_left; // total # lines left in image
  181. int m_mcu_lines_left; // total # lines left in this MCU
  182. int m_real_dest_bytes_per_scan_line;
  183. int m_dest_bytes_per_scan_line; // rounded up
  184. int m_dest_bytes_per_pixel; // 4 (RGB) or 1 (Y)
  185. huff_tables* m_pHuff_tabs[JPGD_MAX_HUFF_TABLES];
  186. coeff_buf* m_dc_coeffs[JPGD_MAX_COMPONENTS];
  187. coeff_buf* m_ac_coeffs[JPGD_MAX_COMPONENTS];
  188. int m_eob_run;
  189. int m_block_y_mcu[JPGD_MAX_COMPONENTS];
  190. uint8* m_pIn_buf_ofs;
  191. int m_in_buf_left;
  192. int m_tem_flag;
  193. bool m_eof_flag;
  194. uint8 m_in_buf_pad_start[128];
  195. uint8 m_in_buf[JPGD_IN_BUF_SIZE + 128];
  196. uint8 m_in_buf_pad_end[128];
  197. int m_bits_left;
  198. uint m_bit_buf;
  199. int m_restart_interval;
  200. int m_restarts_left;
  201. int m_next_restart_num;
  202. int m_max_mcus_per_row;
  203. int m_max_blocks_per_mcu;
  204. int m_expanded_blocks_per_mcu;
  205. int m_expanded_blocks_per_row;
  206. int m_expanded_blocks_per_component;
  207. bool m_freq_domain_chroma_upsample;
  208. int m_max_mcus_per_col;
  209. uint m_last_dc_val[JPGD_MAX_COMPONENTS];
  210. jpgd_block_t* m_pMCU_coefficients;
  211. int m_mcu_block_max_zag[JPGD_MAX_BLOCKS_PER_MCU];
  212. uint8* m_pSample_buf;
  213. int m_crr[256];
  214. int m_cbb[256];
  215. int m_crg[256];
  216. int m_cbg[256];
  217. uint8* m_pScan_line_0;
  218. uint8* m_pScan_line_1;
  219. jpgd_status m_error_code;
  220. bool m_ready_flag;
  221. int m_total_bytes_read;
  222. void free_all_blocks();
  223. JPGD_NORETURN void stop_decoding(jpgd_status status);
  224. void *alloc(size_t n, bool zero = false);
  225. void word_clear(void *p, uint16 c, uint n);
  226. void prep_in_buffer();
  227. void read_dht_marker();
  228. void read_dqt_marker();
  229. void read_sof_marker();
  230. void skip_variable_marker();
  231. void read_dri_marker();
  232. void read_sos_marker();
  233. int next_marker();
  234. int process_markers();
  235. void locate_soi_marker();
  236. void locate_sof_marker();
  237. int locate_sos_marker();
  238. void init(jpeg_decoder_stream * pStream);
  239. void create_look_ups();
  240. void fix_in_buffer();
  241. void transform_mcu(int mcu_row);
  242. void transform_mcu_expand(int mcu_row);
  243. coeff_buf* coeff_buf_open(int block_num_x, int block_num_y, int block_len_x, int block_len_y);
  244. inline jpgd_block_t *coeff_buf_getp(coeff_buf *cb, int block_x, int block_y);
  245. void load_next_row();
  246. void decode_next_row();
  247. void make_huff_table(int index, huff_tables *pH);
  248. void check_quant_tables();
  249. void check_huff_tables();
  250. void calc_mcu_block_order();
  251. int init_scan();
  252. void init_frame();
  253. void process_restart();
  254. void decode_scan(pDecode_block_func decode_block_func);
  255. void init_progressive();
  256. void init_sequential();
  257. void decode_start();
  258. void decode_init(jpeg_decoder_stream * pStream);
  259. void H2V2Convert();
  260. void H2V1Convert();
  261. void H1V2Convert();
  262. void H1V1Convert();
  263. void gray_convert();
  264. void expanded_convert();
  265. void find_eoi();
  266. inline uint get_char();
  267. inline uint get_char(bool *pPadding_flag);
  268. inline void stuff_char(uint8 q);
  269. inline uint8 get_octet();
  270. inline uint get_bits(int num_bits);
  271. inline uint get_bits_no_markers(int numbits);
  272. inline int huff_decode(huff_tables *pH);
  273. inline int huff_decode(huff_tables *pH, int& extrabits);
  274. static inline uint8 clamp(int i);
  275. static void decode_block_dc_first(jpeg_decoder *pD, int component_id, int block_x, int block_y);
  276. static void decode_block_dc_refine(jpeg_decoder *pD, int component_id, int block_x, int block_y);
  277. static void decode_block_ac_first(jpeg_decoder *pD, int component_id, int block_x, int block_y);
  278. static void decode_block_ac_refine(jpeg_decoder *pD, int component_id, int block_x, int block_y);
  279. };
  280. } // namespace jpgd
  281. #endif // JPEG_DECODER_H