Méthode | Description | |
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GetCoefArrays ( ) : jvirt_array |
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consume_data ( ) : ReadResult |
Consume input data and store it in the full-image coefficient buffer. We read as much as one fully interleaved MCU row ("iMCU" row) per call, ie, v_samp_factor block rows for each component in the scan.
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decompress_data ( |
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jpeg_d_coef_controller ( jpeg_decompress_struct cinfo, bool need_full_buffer ) : System | ||
start_input_pass ( ) : void |
Initialize for an input processing pass.
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start_output_pass ( ) : void |
Initialize for an output processing pass.
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Méthode | Description | |
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decompress_data_ordinary ( |
Decompress and return some data in the multi-pass case. Always attempts to emit one fully interleaved MCU row ("iMCU" row). Return value is JPEG_ROW_COMPLETED, JPEG_SCAN_COMPLETED, or JPEG_SUSPENDED. NB: output_buf contains a plane for each component in image.
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decompress_onepass ( |
Decompress and return some data in the single-pass case. Always attempts to emit one fully interleaved MCU row ("iMCU" row). Input and output must run in lockstep since we have only a one-MCU buffer. Return value is JPEG_ROW_COMPLETED, JPEG_SCAN_COMPLETED, or JPEG_SUSPENDED. NB: output_buf contains a plane for each component in image, which we index according to the component's SOF position.
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decompress_smooth_data ( |
Variant of decompress_data for use when doing block smoothing.
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smoothing_ok ( ) : bool |
Determine whether block smoothing is applicable and safe. We also latch the current states of the coef_bits[] entries for the AC coefficients; otherwise, if the input side of the decompressor advances into a new scan, we might think the coefficients are known more accurately than they really are.
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start_iMCU_row ( ) : void |
Reset within-iMCU-row counters for a new row (input side)
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public decompress_data ( |
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output_buf | ||
Résultat | ReadResult |
public jpeg_d_coef_controller ( jpeg_decompress_struct cinfo, bool need_full_buffer ) : System | ||
cinfo | jpeg_decompress_struct | |
need_full_buffer | bool | |
Résultat | System |