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#ifndef JPEG_ENCODER_H |
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#define JPEG_ENCODER_H |
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#include <stdint.h> |
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namespace jpge |
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{ |
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typedef unsigned char uint8; |
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typedef signed short int16; |
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typedef signed int int32; |
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typedef unsigned short uint16; |
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typedef unsigned int uint32; |
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typedef unsigned int uint; |
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enum subsampling_t { Y_ONLY = 0, H1V1 = 1, H2V1 = 2, H2V2 = 3 }; |
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struct params |
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{ |
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inline params() : m_quality(85), m_subsampling(H2V2), m_no_chroma_discrim_flag(false), m_two_pass_flag(false) { } |
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inline bool check_valid() const |
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{ |
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if ((m_quality < 1) || (m_quality > 100)) return false; |
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if ((uint)m_subsampling > (uint)H2V2) return false; |
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return true; |
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} |
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int m_quality; |
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subsampling_t m_subsampling; |
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bool m_no_chroma_discrim_flag; |
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bool m_two_pass_flag; |
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}; |
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bool compress_image_to_jpeg_file(const char *pFilename, int64_t width, int64_t height, int64_t num_channels, const uint8 *pImage_data, const params &comp_params = params()); |
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bool compress_image_to_jpeg_file_in_memory(void *pBuf, int64_t &buf_size, int64_t width, int64_t height, int64_t num_channels, const uint8 *pImage_data, const params &comp_params = params()); |
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class output_stream |
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{ |
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public: |
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virtual ~output_stream() { }; |
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virtual bool put_buf(const void* Pbuf, int64_t len) = 0; |
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template<class T> inline bool put_obj(const T& obj) { return put_buf(&obj, sizeof(T)); } |
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}; |
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class jpeg_encoder |
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{ |
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public: |
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jpeg_encoder(); |
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~jpeg_encoder(); |
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bool init(output_stream *pStream, int64_t width, int64_t height, int64_t src_channels, const params &comp_params = params()); |
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const params &get_params() const { return m_params; } |
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void deinit(); |
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uint get_total_passes() const { return m_params.m_two_pass_flag ? 2 : 1; } |
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inline uint get_cur_pass() { return m_pass_num; } |
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bool process_scanline(const void* pScanline); |
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private: |
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jpeg_encoder(const jpeg_encoder &); |
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jpeg_encoder &operator =(const jpeg_encoder &); |
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typedef int32 sample_array_t; |
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output_stream *m_pStream; |
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params m_params; |
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uint8 m_num_components; |
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uint8 m_comp_h_samp[3], m_comp_v_samp[3]; |
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int m_image_x, m_image_y, m_image_bpp, m_image_bpl; |
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int m_image_x_mcu, m_image_y_mcu; |
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int m_image_bpl_xlt, m_image_bpl_mcu; |
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int m_mcus_per_row; |
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int m_mcu_x, m_mcu_y; |
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uint8 *m_mcu_lines[16]; |
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uint8 m_mcu_y_ofs; |
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sample_array_t m_sample_array[64]; |
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int16 m_coefficient_array[64]; |
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int32 m_quantization_tables[2][64]; |
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uint m_huff_codes[4][256]; |
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uint8 m_huff_code_sizes[4][256]; |
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uint8 m_huff_bits[4][17]; |
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uint8 m_huff_val[4][256]; |
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uint32 m_huff_count[4][256]; |
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int m_last_dc_val[3]; |
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enum { JPGE_OUT_BUF_SIZE = 2048 }; |
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uint8 m_out_buf[JPGE_OUT_BUF_SIZE]; |
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uint8 *m_pOut_buf; |
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uint m_out_buf_left; |
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uint32 m_bit_buffer; |
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uint m_bits_in; |
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uint8 m_pass_num; |
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bool m_all_stream_writes_succeeded; |
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void optimize_huffman_table(int table_num, int table_len); |
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void emit_byte(uint8 i); |
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void emit_word(uint i); |
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void emit_marker(int marker); |
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void emit_jfif_app0(); |
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void emit_dqt(); |
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void emit_sof(); |
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void emit_dht(uint8 *bits, uint8 *val, int index, bool ac_flag); |
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void emit_dhts(); |
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void emit_sos(); |
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void emit_markers(); |
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void compute_huffman_table(uint *codes, uint8 *code_sizes, uint8 *bits, uint8 *val); |
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void compute_quant_table(int32 *dst, int16 *src); |
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void adjust_quant_table(int32 *dst, int32 *src); |
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void first_pass_init(); |
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bool second_pass_init(); |
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bool jpg_open(int p_x_res, int p_y_res, int src_channels); |
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void load_block_8_8_grey(int x); |
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void load_block_8_8(int x, int y, int c); |
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void load_block_16_8(int x, int c); |
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void load_block_16_8_8(int x, int c); |
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void load_quantized_coefficients(int component_num); |
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void flush_output_buffer(); |
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void put_bits(uint bits, uint len); |
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void code_coefficients_pass_one(int component_num); |
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void code_coefficients_pass_two(int component_num); |
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void code_block(int component_num); |
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void process_mcu_row(); |
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bool terminate_pass_one(); |
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bool terminate_pass_two(); |
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bool process_end_of_image(); |
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void load_mcu(const void* src); |
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void clear(); |
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void init(); |
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}; |
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} |
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#endif |