Wed, 31 Dec 2014 06:09:35 +0100
Cloned upstream origin tor-browser at tor-browser-31.3.0esr-4.5-1-build1
revision ID fc1c9ff7c1b2defdbc039f12214767608f46423f for hacking purpose.
michael@0 | 1 | /* |
michael@0 | 2 | * jdsample.c |
michael@0 | 3 | * |
michael@0 | 4 | * This file was part of the Independent JPEG Group's software: |
michael@0 | 5 | * Copyright (C) 1991-1996, Thomas G. Lane. |
michael@0 | 6 | * libjpeg-turbo Modifications: |
michael@0 | 7 | * Copyright 2009 Pierre Ossman <ossman@cendio.se> for Cendio AB |
michael@0 | 8 | * Copyright (C) 2010, D. R. Commander. |
michael@0 | 9 | * For conditions of distribution and use, see the accompanying README file. |
michael@0 | 10 | * |
michael@0 | 11 | * This file contains upsampling routines. |
michael@0 | 12 | * |
michael@0 | 13 | * Upsampling input data is counted in "row groups". A row group |
michael@0 | 14 | * is defined to be (v_samp_factor * DCT_scaled_size / min_DCT_scaled_size) |
michael@0 | 15 | * sample rows of each component. Upsampling will normally produce |
michael@0 | 16 | * max_v_samp_factor pixel rows from each row group (but this could vary |
michael@0 | 17 | * if the upsampler is applying a scale factor of its own). |
michael@0 | 18 | * |
michael@0 | 19 | * An excellent reference for image resampling is |
michael@0 | 20 | * Digital Image Warping, George Wolberg, 1990. |
michael@0 | 21 | * Pub. by IEEE Computer Society Press, Los Alamitos, CA. ISBN 0-8186-8944-7. |
michael@0 | 22 | */ |
michael@0 | 23 | |
michael@0 | 24 | #define JPEG_INTERNALS |
michael@0 | 25 | #include "jinclude.h" |
michael@0 | 26 | #include "jpeglib.h" |
michael@0 | 27 | #include "jsimd.h" |
michael@0 | 28 | #include "jpegcomp.h" |
michael@0 | 29 | |
michael@0 | 30 | |
michael@0 | 31 | /* Pointer to routine to upsample a single component */ |
michael@0 | 32 | typedef JMETHOD(void, upsample1_ptr, |
michael@0 | 33 | (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 34 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr)); |
michael@0 | 35 | |
michael@0 | 36 | /* Private subobject */ |
michael@0 | 37 | |
michael@0 | 38 | typedef struct { |
michael@0 | 39 | struct jpeg_upsampler pub; /* public fields */ |
michael@0 | 40 | |
michael@0 | 41 | /* Color conversion buffer. When using separate upsampling and color |
michael@0 | 42 | * conversion steps, this buffer holds one upsampled row group until it |
michael@0 | 43 | * has been color converted and output. |
michael@0 | 44 | * Note: we do not allocate any storage for component(s) which are full-size, |
michael@0 | 45 | * ie do not need rescaling. The corresponding entry of color_buf[] is |
michael@0 | 46 | * simply set to point to the input data array, thereby avoiding copying. |
michael@0 | 47 | */ |
michael@0 | 48 | JSAMPARRAY color_buf[MAX_COMPONENTS]; |
michael@0 | 49 | |
michael@0 | 50 | /* Per-component upsampling method pointers */ |
michael@0 | 51 | upsample1_ptr methods[MAX_COMPONENTS]; |
michael@0 | 52 | |
michael@0 | 53 | int next_row_out; /* counts rows emitted from color_buf */ |
michael@0 | 54 | JDIMENSION rows_to_go; /* counts rows remaining in image */ |
michael@0 | 55 | |
michael@0 | 56 | /* Height of an input row group for each component. */ |
michael@0 | 57 | int rowgroup_height[MAX_COMPONENTS]; |
michael@0 | 58 | |
michael@0 | 59 | /* These arrays save pixel expansion factors so that int_expand need not |
michael@0 | 60 | * recompute them each time. They are unused for other upsampling methods. |
michael@0 | 61 | */ |
michael@0 | 62 | UINT8 h_expand[MAX_COMPONENTS]; |
michael@0 | 63 | UINT8 v_expand[MAX_COMPONENTS]; |
michael@0 | 64 | } my_upsampler; |
michael@0 | 65 | |
michael@0 | 66 | typedef my_upsampler * my_upsample_ptr; |
michael@0 | 67 | |
michael@0 | 68 | |
michael@0 | 69 | /* |
michael@0 | 70 | * Initialize for an upsampling pass. |
michael@0 | 71 | */ |
michael@0 | 72 | |
michael@0 | 73 | METHODDEF(void) |
michael@0 | 74 | start_pass_upsample (j_decompress_ptr cinfo) |
michael@0 | 75 | { |
michael@0 | 76 | my_upsample_ptr upsample = (my_upsample_ptr) cinfo->upsample; |
michael@0 | 77 | |
michael@0 | 78 | /* Mark the conversion buffer empty */ |
michael@0 | 79 | upsample->next_row_out = cinfo->max_v_samp_factor; |
michael@0 | 80 | /* Initialize total-height counter for detecting bottom of image */ |
michael@0 | 81 | upsample->rows_to_go = cinfo->output_height; |
michael@0 | 82 | } |
michael@0 | 83 | |
michael@0 | 84 | |
michael@0 | 85 | /* |
michael@0 | 86 | * Control routine to do upsampling (and color conversion). |
michael@0 | 87 | * |
michael@0 | 88 | * In this version we upsample each component independently. |
michael@0 | 89 | * We upsample one row group into the conversion buffer, then apply |
michael@0 | 90 | * color conversion a row at a time. |
michael@0 | 91 | */ |
michael@0 | 92 | |
michael@0 | 93 | METHODDEF(void) |
michael@0 | 94 | sep_upsample (j_decompress_ptr cinfo, |
michael@0 | 95 | JSAMPIMAGE input_buf, JDIMENSION *in_row_group_ctr, |
michael@0 | 96 | JDIMENSION in_row_groups_avail, |
michael@0 | 97 | JSAMPARRAY output_buf, JDIMENSION *out_row_ctr, |
michael@0 | 98 | JDIMENSION out_rows_avail) |
michael@0 | 99 | { |
michael@0 | 100 | my_upsample_ptr upsample = (my_upsample_ptr) cinfo->upsample; |
michael@0 | 101 | int ci; |
michael@0 | 102 | jpeg_component_info * compptr; |
michael@0 | 103 | JDIMENSION num_rows; |
michael@0 | 104 | |
michael@0 | 105 | /* Fill the conversion buffer, if it's empty */ |
michael@0 | 106 | if (upsample->next_row_out >= cinfo->max_v_samp_factor) { |
michael@0 | 107 | for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components; |
michael@0 | 108 | ci++, compptr++) { |
michael@0 | 109 | /* Invoke per-component upsample method. Notice we pass a POINTER |
michael@0 | 110 | * to color_buf[ci], so that fullsize_upsample can change it. |
michael@0 | 111 | */ |
michael@0 | 112 | (*upsample->methods[ci]) (cinfo, compptr, |
michael@0 | 113 | input_buf[ci] + (*in_row_group_ctr * upsample->rowgroup_height[ci]), |
michael@0 | 114 | upsample->color_buf + ci); |
michael@0 | 115 | } |
michael@0 | 116 | upsample->next_row_out = 0; |
michael@0 | 117 | } |
michael@0 | 118 | |
michael@0 | 119 | /* Color-convert and emit rows */ |
michael@0 | 120 | |
michael@0 | 121 | /* How many we have in the buffer: */ |
michael@0 | 122 | num_rows = (JDIMENSION) (cinfo->max_v_samp_factor - upsample->next_row_out); |
michael@0 | 123 | /* Not more than the distance to the end of the image. Need this test |
michael@0 | 124 | * in case the image height is not a multiple of max_v_samp_factor: |
michael@0 | 125 | */ |
michael@0 | 126 | if (num_rows > upsample->rows_to_go) |
michael@0 | 127 | num_rows = upsample->rows_to_go; |
michael@0 | 128 | /* And not more than what the client can accept: */ |
michael@0 | 129 | out_rows_avail -= *out_row_ctr; |
michael@0 | 130 | if (num_rows > out_rows_avail) |
michael@0 | 131 | num_rows = out_rows_avail; |
michael@0 | 132 | |
michael@0 | 133 | (*cinfo->cconvert->color_convert) (cinfo, upsample->color_buf, |
michael@0 | 134 | (JDIMENSION) upsample->next_row_out, |
michael@0 | 135 | output_buf + *out_row_ctr, |
michael@0 | 136 | (int) num_rows); |
michael@0 | 137 | |
michael@0 | 138 | /* Adjust counts */ |
michael@0 | 139 | *out_row_ctr += num_rows; |
michael@0 | 140 | upsample->rows_to_go -= num_rows; |
michael@0 | 141 | upsample->next_row_out += num_rows; |
michael@0 | 142 | /* When the buffer is emptied, declare this input row group consumed */ |
michael@0 | 143 | if (upsample->next_row_out >= cinfo->max_v_samp_factor) |
michael@0 | 144 | (*in_row_group_ctr)++; |
michael@0 | 145 | } |
michael@0 | 146 | |
michael@0 | 147 | |
michael@0 | 148 | /* |
michael@0 | 149 | * These are the routines invoked by sep_upsample to upsample pixel values |
michael@0 | 150 | * of a single component. One row group is processed per call. |
michael@0 | 151 | */ |
michael@0 | 152 | |
michael@0 | 153 | |
michael@0 | 154 | /* |
michael@0 | 155 | * For full-size components, we just make color_buf[ci] point at the |
michael@0 | 156 | * input buffer, and thus avoid copying any data. Note that this is |
michael@0 | 157 | * safe only because sep_upsample doesn't declare the input row group |
michael@0 | 158 | * "consumed" until we are done color converting and emitting it. |
michael@0 | 159 | */ |
michael@0 | 160 | |
michael@0 | 161 | METHODDEF(void) |
michael@0 | 162 | fullsize_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 163 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 164 | { |
michael@0 | 165 | *output_data_ptr = input_data; |
michael@0 | 166 | } |
michael@0 | 167 | |
michael@0 | 168 | |
michael@0 | 169 | /* |
michael@0 | 170 | * This is a no-op version used for "uninteresting" components. |
michael@0 | 171 | * These components will not be referenced by color conversion. |
michael@0 | 172 | */ |
michael@0 | 173 | |
michael@0 | 174 | METHODDEF(void) |
michael@0 | 175 | noop_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 176 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 177 | { |
michael@0 | 178 | *output_data_ptr = NULL; /* safety check */ |
michael@0 | 179 | } |
michael@0 | 180 | |
michael@0 | 181 | |
michael@0 | 182 | /* |
michael@0 | 183 | * This version handles any integral sampling ratios. |
michael@0 | 184 | * This is not used for typical JPEG files, so it need not be fast. |
michael@0 | 185 | * Nor, for that matter, is it particularly accurate: the algorithm is |
michael@0 | 186 | * simple replication of the input pixel onto the corresponding output |
michael@0 | 187 | * pixels. The hi-falutin sampling literature refers to this as a |
michael@0 | 188 | * "box filter". A box filter tends to introduce visible artifacts, |
michael@0 | 189 | * so if you are actually going to use 3:1 or 4:1 sampling ratios |
michael@0 | 190 | * you would be well advised to improve this code. |
michael@0 | 191 | */ |
michael@0 | 192 | |
michael@0 | 193 | METHODDEF(void) |
michael@0 | 194 | int_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 195 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 196 | { |
michael@0 | 197 | my_upsample_ptr upsample = (my_upsample_ptr) cinfo->upsample; |
michael@0 | 198 | JSAMPARRAY output_data = *output_data_ptr; |
michael@0 | 199 | register JSAMPROW inptr, outptr; |
michael@0 | 200 | register JSAMPLE invalue; |
michael@0 | 201 | register int h; |
michael@0 | 202 | JSAMPROW outend; |
michael@0 | 203 | int h_expand, v_expand; |
michael@0 | 204 | int inrow, outrow; |
michael@0 | 205 | |
michael@0 | 206 | h_expand = upsample->h_expand[compptr->component_index]; |
michael@0 | 207 | v_expand = upsample->v_expand[compptr->component_index]; |
michael@0 | 208 | |
michael@0 | 209 | inrow = outrow = 0; |
michael@0 | 210 | while (outrow < cinfo->max_v_samp_factor) { |
michael@0 | 211 | /* Generate one output row with proper horizontal expansion */ |
michael@0 | 212 | inptr = input_data[inrow]; |
michael@0 | 213 | outptr = output_data[outrow]; |
michael@0 | 214 | outend = outptr + cinfo->output_width; |
michael@0 | 215 | while (outptr < outend) { |
michael@0 | 216 | invalue = *inptr++; /* don't need GETJSAMPLE() here */ |
michael@0 | 217 | for (h = h_expand; h > 0; h--) { |
michael@0 | 218 | *outptr++ = invalue; |
michael@0 | 219 | } |
michael@0 | 220 | } |
michael@0 | 221 | /* Generate any additional output rows by duplicating the first one */ |
michael@0 | 222 | if (v_expand > 1) { |
michael@0 | 223 | jcopy_sample_rows(output_data, outrow, output_data, outrow+1, |
michael@0 | 224 | v_expand-1, cinfo->output_width); |
michael@0 | 225 | } |
michael@0 | 226 | inrow++; |
michael@0 | 227 | outrow += v_expand; |
michael@0 | 228 | } |
michael@0 | 229 | } |
michael@0 | 230 | |
michael@0 | 231 | |
michael@0 | 232 | /* |
michael@0 | 233 | * Fast processing for the common case of 2:1 horizontal and 1:1 vertical. |
michael@0 | 234 | * It's still a box filter. |
michael@0 | 235 | */ |
michael@0 | 236 | |
michael@0 | 237 | METHODDEF(void) |
michael@0 | 238 | h2v1_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 239 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 240 | { |
michael@0 | 241 | JSAMPARRAY output_data = *output_data_ptr; |
michael@0 | 242 | register JSAMPROW inptr, outptr; |
michael@0 | 243 | register JSAMPLE invalue; |
michael@0 | 244 | JSAMPROW outend; |
michael@0 | 245 | int inrow; |
michael@0 | 246 | |
michael@0 | 247 | for (inrow = 0; inrow < cinfo->max_v_samp_factor; inrow++) { |
michael@0 | 248 | inptr = input_data[inrow]; |
michael@0 | 249 | outptr = output_data[inrow]; |
michael@0 | 250 | outend = outptr + cinfo->output_width; |
michael@0 | 251 | while (outptr < outend) { |
michael@0 | 252 | invalue = *inptr++; /* don't need GETJSAMPLE() here */ |
michael@0 | 253 | *outptr++ = invalue; |
michael@0 | 254 | *outptr++ = invalue; |
michael@0 | 255 | } |
michael@0 | 256 | } |
michael@0 | 257 | } |
michael@0 | 258 | |
michael@0 | 259 | |
michael@0 | 260 | /* |
michael@0 | 261 | * Fast processing for the common case of 2:1 horizontal and 2:1 vertical. |
michael@0 | 262 | * It's still a box filter. |
michael@0 | 263 | */ |
michael@0 | 264 | |
michael@0 | 265 | METHODDEF(void) |
michael@0 | 266 | h2v2_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 267 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 268 | { |
michael@0 | 269 | JSAMPARRAY output_data = *output_data_ptr; |
michael@0 | 270 | register JSAMPROW inptr, outptr; |
michael@0 | 271 | register JSAMPLE invalue; |
michael@0 | 272 | JSAMPROW outend; |
michael@0 | 273 | int inrow, outrow; |
michael@0 | 274 | |
michael@0 | 275 | inrow = outrow = 0; |
michael@0 | 276 | while (outrow < cinfo->max_v_samp_factor) { |
michael@0 | 277 | inptr = input_data[inrow]; |
michael@0 | 278 | outptr = output_data[outrow]; |
michael@0 | 279 | outend = outptr + cinfo->output_width; |
michael@0 | 280 | while (outptr < outend) { |
michael@0 | 281 | invalue = *inptr++; /* don't need GETJSAMPLE() here */ |
michael@0 | 282 | *outptr++ = invalue; |
michael@0 | 283 | *outptr++ = invalue; |
michael@0 | 284 | } |
michael@0 | 285 | jcopy_sample_rows(output_data, outrow, output_data, outrow+1, |
michael@0 | 286 | 1, cinfo->output_width); |
michael@0 | 287 | inrow++; |
michael@0 | 288 | outrow += 2; |
michael@0 | 289 | } |
michael@0 | 290 | } |
michael@0 | 291 | |
michael@0 | 292 | |
michael@0 | 293 | /* |
michael@0 | 294 | * Fancy processing for the common case of 2:1 horizontal and 1:1 vertical. |
michael@0 | 295 | * |
michael@0 | 296 | * The upsampling algorithm is linear interpolation between pixel centers, |
michael@0 | 297 | * also known as a "triangle filter". This is a good compromise between |
michael@0 | 298 | * speed and visual quality. The centers of the output pixels are 1/4 and 3/4 |
michael@0 | 299 | * of the way between input pixel centers. |
michael@0 | 300 | * |
michael@0 | 301 | * A note about the "bias" calculations: when rounding fractional values to |
michael@0 | 302 | * integer, we do not want to always round 0.5 up to the next integer. |
michael@0 | 303 | * If we did that, we'd introduce a noticeable bias towards larger values. |
michael@0 | 304 | * Instead, this code is arranged so that 0.5 will be rounded up or down at |
michael@0 | 305 | * alternate pixel locations (a simple ordered dither pattern). |
michael@0 | 306 | */ |
michael@0 | 307 | |
michael@0 | 308 | METHODDEF(void) |
michael@0 | 309 | h2v1_fancy_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 310 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 311 | { |
michael@0 | 312 | JSAMPARRAY output_data = *output_data_ptr; |
michael@0 | 313 | register JSAMPROW inptr, outptr; |
michael@0 | 314 | register int invalue; |
michael@0 | 315 | register JDIMENSION colctr; |
michael@0 | 316 | int inrow; |
michael@0 | 317 | |
michael@0 | 318 | for (inrow = 0; inrow < cinfo->max_v_samp_factor; inrow++) { |
michael@0 | 319 | inptr = input_data[inrow]; |
michael@0 | 320 | outptr = output_data[inrow]; |
michael@0 | 321 | /* Special case for first column */ |
michael@0 | 322 | invalue = GETJSAMPLE(*inptr++); |
michael@0 | 323 | *outptr++ = (JSAMPLE) invalue; |
michael@0 | 324 | *outptr++ = (JSAMPLE) ((invalue * 3 + GETJSAMPLE(*inptr) + 2) >> 2); |
michael@0 | 325 | |
michael@0 | 326 | for (colctr = compptr->downsampled_width - 2; colctr > 0; colctr--) { |
michael@0 | 327 | /* General case: 3/4 * nearer pixel + 1/4 * further pixel */ |
michael@0 | 328 | invalue = GETJSAMPLE(*inptr++) * 3; |
michael@0 | 329 | *outptr++ = (JSAMPLE) ((invalue + GETJSAMPLE(inptr[-2]) + 1) >> 2); |
michael@0 | 330 | *outptr++ = (JSAMPLE) ((invalue + GETJSAMPLE(*inptr) + 2) >> 2); |
michael@0 | 331 | } |
michael@0 | 332 | |
michael@0 | 333 | /* Special case for last column */ |
michael@0 | 334 | invalue = GETJSAMPLE(*inptr); |
michael@0 | 335 | *outptr++ = (JSAMPLE) ((invalue * 3 + GETJSAMPLE(inptr[-1]) + 1) >> 2); |
michael@0 | 336 | *outptr++ = (JSAMPLE) invalue; |
michael@0 | 337 | } |
michael@0 | 338 | } |
michael@0 | 339 | |
michael@0 | 340 | |
michael@0 | 341 | /* |
michael@0 | 342 | * Fancy processing for the common case of 2:1 horizontal and 2:1 vertical. |
michael@0 | 343 | * Again a triangle filter; see comments for h2v1 case, above. |
michael@0 | 344 | * |
michael@0 | 345 | * It is OK for us to reference the adjacent input rows because we demanded |
michael@0 | 346 | * context from the main buffer controller (see initialization code). |
michael@0 | 347 | */ |
michael@0 | 348 | |
michael@0 | 349 | METHODDEF(void) |
michael@0 | 350 | h2v2_fancy_upsample (j_decompress_ptr cinfo, jpeg_component_info * compptr, |
michael@0 | 351 | JSAMPARRAY input_data, JSAMPARRAY * output_data_ptr) |
michael@0 | 352 | { |
michael@0 | 353 | JSAMPARRAY output_data = *output_data_ptr; |
michael@0 | 354 | register JSAMPROW inptr0, inptr1, outptr; |
michael@0 | 355 | #if BITS_IN_JSAMPLE == 8 |
michael@0 | 356 | register int thiscolsum, lastcolsum, nextcolsum; |
michael@0 | 357 | #else |
michael@0 | 358 | register INT32 thiscolsum, lastcolsum, nextcolsum; |
michael@0 | 359 | #endif |
michael@0 | 360 | register JDIMENSION colctr; |
michael@0 | 361 | int inrow, outrow, v; |
michael@0 | 362 | |
michael@0 | 363 | inrow = outrow = 0; |
michael@0 | 364 | while (outrow < cinfo->max_v_samp_factor) { |
michael@0 | 365 | for (v = 0; v < 2; v++) { |
michael@0 | 366 | /* inptr0 points to nearest input row, inptr1 points to next nearest */ |
michael@0 | 367 | inptr0 = input_data[inrow]; |
michael@0 | 368 | if (v == 0) /* next nearest is row above */ |
michael@0 | 369 | inptr1 = input_data[inrow-1]; |
michael@0 | 370 | else /* next nearest is row below */ |
michael@0 | 371 | inptr1 = input_data[inrow+1]; |
michael@0 | 372 | outptr = output_data[outrow++]; |
michael@0 | 373 | |
michael@0 | 374 | /* Special case for first column */ |
michael@0 | 375 | thiscolsum = GETJSAMPLE(*inptr0++) * 3 + GETJSAMPLE(*inptr1++); |
michael@0 | 376 | nextcolsum = GETJSAMPLE(*inptr0++) * 3 + GETJSAMPLE(*inptr1++); |
michael@0 | 377 | *outptr++ = (JSAMPLE) ((thiscolsum * 4 + 8) >> 4); |
michael@0 | 378 | *outptr++ = (JSAMPLE) ((thiscolsum * 3 + nextcolsum + 7) >> 4); |
michael@0 | 379 | lastcolsum = thiscolsum; thiscolsum = nextcolsum; |
michael@0 | 380 | |
michael@0 | 381 | for (colctr = compptr->downsampled_width - 2; colctr > 0; colctr--) { |
michael@0 | 382 | /* General case: 3/4 * nearer pixel + 1/4 * further pixel in each */ |
michael@0 | 383 | /* dimension, thus 9/16, 3/16, 3/16, 1/16 overall */ |
michael@0 | 384 | nextcolsum = GETJSAMPLE(*inptr0++) * 3 + GETJSAMPLE(*inptr1++); |
michael@0 | 385 | *outptr++ = (JSAMPLE) ((thiscolsum * 3 + lastcolsum + 8) >> 4); |
michael@0 | 386 | *outptr++ = (JSAMPLE) ((thiscolsum * 3 + nextcolsum + 7) >> 4); |
michael@0 | 387 | lastcolsum = thiscolsum; thiscolsum = nextcolsum; |
michael@0 | 388 | } |
michael@0 | 389 | |
michael@0 | 390 | /* Special case for last column */ |
michael@0 | 391 | *outptr++ = (JSAMPLE) ((thiscolsum * 3 + lastcolsum + 8) >> 4); |
michael@0 | 392 | *outptr++ = (JSAMPLE) ((thiscolsum * 4 + 7) >> 4); |
michael@0 | 393 | } |
michael@0 | 394 | inrow++; |
michael@0 | 395 | } |
michael@0 | 396 | } |
michael@0 | 397 | |
michael@0 | 398 | |
michael@0 | 399 | /* |
michael@0 | 400 | * Module initialization routine for upsampling. |
michael@0 | 401 | */ |
michael@0 | 402 | |
michael@0 | 403 | GLOBAL(void) |
michael@0 | 404 | jinit_upsampler (j_decompress_ptr cinfo) |
michael@0 | 405 | { |
michael@0 | 406 | my_upsample_ptr upsample; |
michael@0 | 407 | int ci; |
michael@0 | 408 | jpeg_component_info * compptr; |
michael@0 | 409 | boolean need_buffer, do_fancy; |
michael@0 | 410 | int h_in_group, v_in_group, h_out_group, v_out_group; |
michael@0 | 411 | |
michael@0 | 412 | upsample = (my_upsample_ptr) |
michael@0 | 413 | (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE, |
michael@0 | 414 | SIZEOF(my_upsampler)); |
michael@0 | 415 | cinfo->upsample = (struct jpeg_upsampler *) upsample; |
michael@0 | 416 | upsample->pub.start_pass = start_pass_upsample; |
michael@0 | 417 | upsample->pub.upsample = sep_upsample; |
michael@0 | 418 | upsample->pub.need_context_rows = FALSE; /* until we find out differently */ |
michael@0 | 419 | |
michael@0 | 420 | if (cinfo->CCIR601_sampling) /* this isn't supported */ |
michael@0 | 421 | ERREXIT(cinfo, JERR_CCIR601_NOTIMPL); |
michael@0 | 422 | |
michael@0 | 423 | /* jdmainct.c doesn't support context rows when min_DCT_scaled_size = 1, |
michael@0 | 424 | * so don't ask for it. |
michael@0 | 425 | */ |
michael@0 | 426 | do_fancy = cinfo->do_fancy_upsampling && cinfo->_min_DCT_scaled_size > 1; |
michael@0 | 427 | |
michael@0 | 428 | /* Verify we can handle the sampling factors, select per-component methods, |
michael@0 | 429 | * and create storage as needed. |
michael@0 | 430 | */ |
michael@0 | 431 | for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components; |
michael@0 | 432 | ci++, compptr++) { |
michael@0 | 433 | /* Compute size of an "input group" after IDCT scaling. This many samples |
michael@0 | 434 | * are to be converted to max_h_samp_factor * max_v_samp_factor pixels. |
michael@0 | 435 | */ |
michael@0 | 436 | h_in_group = (compptr->h_samp_factor * compptr->_DCT_scaled_size) / |
michael@0 | 437 | cinfo->_min_DCT_scaled_size; |
michael@0 | 438 | v_in_group = (compptr->v_samp_factor * compptr->_DCT_scaled_size) / |
michael@0 | 439 | cinfo->_min_DCT_scaled_size; |
michael@0 | 440 | h_out_group = cinfo->max_h_samp_factor; |
michael@0 | 441 | v_out_group = cinfo->max_v_samp_factor; |
michael@0 | 442 | upsample->rowgroup_height[ci] = v_in_group; /* save for use later */ |
michael@0 | 443 | need_buffer = TRUE; |
michael@0 | 444 | if (! compptr->component_needed) { |
michael@0 | 445 | /* Don't bother to upsample an uninteresting component. */ |
michael@0 | 446 | upsample->methods[ci] = noop_upsample; |
michael@0 | 447 | need_buffer = FALSE; |
michael@0 | 448 | } else if (h_in_group == h_out_group && v_in_group == v_out_group) { |
michael@0 | 449 | /* Fullsize components can be processed without any work. */ |
michael@0 | 450 | upsample->methods[ci] = fullsize_upsample; |
michael@0 | 451 | need_buffer = FALSE; |
michael@0 | 452 | } else if (h_in_group * 2 == h_out_group && |
michael@0 | 453 | v_in_group == v_out_group) { |
michael@0 | 454 | /* Special cases for 2h1v upsampling */ |
michael@0 | 455 | if (do_fancy && compptr->downsampled_width > 2) { |
michael@0 | 456 | if (jsimd_can_h2v1_fancy_upsample()) |
michael@0 | 457 | upsample->methods[ci] = jsimd_h2v1_fancy_upsample; |
michael@0 | 458 | else |
michael@0 | 459 | upsample->methods[ci] = h2v1_fancy_upsample; |
michael@0 | 460 | } else { |
michael@0 | 461 | if (jsimd_can_h2v1_upsample()) |
michael@0 | 462 | upsample->methods[ci] = jsimd_h2v1_upsample; |
michael@0 | 463 | else |
michael@0 | 464 | upsample->methods[ci] = h2v1_upsample; |
michael@0 | 465 | } |
michael@0 | 466 | } else if (h_in_group * 2 == h_out_group && |
michael@0 | 467 | v_in_group * 2 == v_out_group) { |
michael@0 | 468 | /* Special cases for 2h2v upsampling */ |
michael@0 | 469 | if (do_fancy && compptr->downsampled_width > 2) { |
michael@0 | 470 | if (jsimd_can_h2v2_fancy_upsample()) |
michael@0 | 471 | upsample->methods[ci] = jsimd_h2v2_fancy_upsample; |
michael@0 | 472 | else |
michael@0 | 473 | upsample->methods[ci] = h2v2_fancy_upsample; |
michael@0 | 474 | upsample->pub.need_context_rows = TRUE; |
michael@0 | 475 | } else { |
michael@0 | 476 | if (jsimd_can_h2v2_upsample()) |
michael@0 | 477 | upsample->methods[ci] = jsimd_h2v2_upsample; |
michael@0 | 478 | else |
michael@0 | 479 | upsample->methods[ci] = h2v2_upsample; |
michael@0 | 480 | } |
michael@0 | 481 | } else if ((h_out_group % h_in_group) == 0 && |
michael@0 | 482 | (v_out_group % v_in_group) == 0) { |
michael@0 | 483 | /* Generic integral-factors upsampling method */ |
michael@0 | 484 | upsample->methods[ci] = int_upsample; |
michael@0 | 485 | upsample->h_expand[ci] = (UINT8) (h_out_group / h_in_group); |
michael@0 | 486 | upsample->v_expand[ci] = (UINT8) (v_out_group / v_in_group); |
michael@0 | 487 | } else |
michael@0 | 488 | ERREXIT(cinfo, JERR_FRACT_SAMPLE_NOTIMPL); |
michael@0 | 489 | if (need_buffer) { |
michael@0 | 490 | upsample->color_buf[ci] = (*cinfo->mem->alloc_sarray) |
michael@0 | 491 | ((j_common_ptr) cinfo, JPOOL_IMAGE, |
michael@0 | 492 | (JDIMENSION) jround_up((long) cinfo->output_width, |
michael@0 | 493 | (long) cinfo->max_h_samp_factor), |
michael@0 | 494 | (JDIMENSION) cinfo->max_v_samp_factor); |
michael@0 | 495 | } |
michael@0 | 496 | } |
michael@0 | 497 | } |