1 /*
2 * Copyright (c) 2014 The WebM project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
11 #include <assert.h>
12 #include <limits.h>
13 #include <math.h>
14 #include <stdio.h>
15 #include <stdlib.h>
16 #include <string.h>
17
18 #include "./vpx_config.h"
19 #if CONFIG_VP9_HIGHBITDEPTH
20 #include "vpx_dsp/vpx_dsp_common.h"
21 #endif // CONFIG_VP9_HIGHBITDEPTH
22 #include "vpx_ports/mem.h"
23 #include "vp9/common/vp9_common.h"
24 #include "vp9/encoder/vp9_resize.h"
25
26 #define FILTER_BITS 7
27
28 #define INTERP_TAPS 8
29 #define SUBPEL_BITS 5
30 #define SUBPEL_MASK ((1 << SUBPEL_BITS) - 1)
31 #define INTERP_PRECISION_BITS 32
32
33 typedef int16_t interp_kernel[INTERP_TAPS];
34
35 // Filters for interpolation (0.5-band) - note this also filters integer pels.
36 static const interp_kernel filteredinterp_filters500[(1 << SUBPEL_BITS)] = {
37 { -3, 0, 35, 64, 35, 0, -3, 0 }, { -3, -1, 34, 64, 36, 1, -3, 0 },
38 { -3, -1, 32, 64, 38, 1, -3, 0 }, { -2, -2, 31, 63, 39, 2, -3, 0 },
39 { -2, -2, 29, 63, 41, 2, -3, 0 }, { -2, -2, 28, 63, 42, 3, -4, 0 },
40 { -2, -3, 27, 63, 43, 4, -4, 0 }, { -2, -3, 25, 62, 45, 5, -4, 0 },
41 { -2, -3, 24, 62, 46, 5, -4, 0 }, { -2, -3, 23, 61, 47, 6, -4, 0 },
42 { -2, -3, 21, 60, 49, 7, -4, 0 }, { -1, -4, 20, 60, 50, 8, -4, -1 },
43 { -1, -4, 19, 59, 51, 9, -4, -1 }, { -1, -4, 17, 58, 52, 10, -4, 0 },
44 { -1, -4, 16, 57, 53, 12, -4, -1 }, { -1, -4, 15, 56, 54, 13, -4, -1 },
45 { -1, -4, 14, 55, 55, 14, -4, -1 }, { -1, -4, 13, 54, 56, 15, -4, -1 },
46 { -1, -4, 12, 53, 57, 16, -4, -1 }, { 0, -4, 10, 52, 58, 17, -4, -1 },
47 { -1, -4, 9, 51, 59, 19, -4, -1 }, { -1, -4, 8, 50, 60, 20, -4, -1 },
48 { 0, -4, 7, 49, 60, 21, -3, -2 }, { 0, -4, 6, 47, 61, 23, -3, -2 },
49 { 0, -4, 5, 46, 62, 24, -3, -2 }, { 0, -4, 5, 45, 62, 25, -3, -2 },
50 { 0, -4, 4, 43, 63, 27, -3, -2 }, { 0, -4, 3, 42, 63, 28, -2, -2 },
51 { 0, -3, 2, 41, 63, 29, -2, -2 }, { 0, -3, 2, 39, 63, 31, -2, -2 },
52 { 0, -3, 1, 38, 64, 32, -1, -3 }, { 0, -3, 1, 36, 64, 34, -1, -3 }
53 };
54
55 // Filters for interpolation (0.625-band) - note this also filters integer pels.
56 static const interp_kernel filteredinterp_filters625[(1 << SUBPEL_BITS)] = {
57 { -1, -8, 33, 80, 33, -8, -1, 0 }, { -1, -8, 30, 80, 35, -8, -1, 1 },
58 { -1, -8, 28, 80, 37, -7, -2, 1 }, { 0, -8, 26, 79, 39, -7, -2, 1 },
59 { 0, -8, 24, 79, 41, -7, -2, 1 }, { 0, -8, 22, 78, 43, -6, -2, 1 },
60 { 0, -8, 20, 78, 45, -5, -3, 1 }, { 0, -8, 18, 77, 48, -5, -3, 1 },
61 { 0, -8, 16, 76, 50, -4, -3, 1 }, { 0, -8, 15, 75, 52, -3, -4, 1 },
62 { 0, -7, 13, 74, 54, -3, -4, 1 }, { 0, -7, 11, 73, 56, -2, -4, 1 },
63 { 0, -7, 10, 71, 58, -1, -4, 1 }, { 1, -7, 8, 70, 60, 0, -5, 1 },
64 { 1, -6, 6, 68, 62, 1, -5, 1 }, { 1, -6, 5, 67, 63, 2, -5, 1 },
65 { 1, -6, 4, 65, 65, 4, -6, 1 }, { 1, -5, 2, 63, 67, 5, -6, 1 },
66 { 1, -5, 1, 62, 68, 6, -6, 1 }, { 1, -5, 0, 60, 70, 8, -7, 1 },
67 { 1, -4, -1, 58, 71, 10, -7, 0 }, { 1, -4, -2, 56, 73, 11, -7, 0 },
68 { 1, -4, -3, 54, 74, 13, -7, 0 }, { 1, -4, -3, 52, 75, 15, -8, 0 },
69 { 1, -3, -4, 50, 76, 16, -8, 0 }, { 1, -3, -5, 48, 77, 18, -8, 0 },
70 { 1, -3, -5, 45, 78, 20, -8, 0 }, { 1, -2, -6, 43, 78, 22, -8, 0 },
71 { 1, -2, -7, 41, 79, 24, -8, 0 }, { 1, -2, -7, 39, 79, 26, -8, 0 },
72 { 1, -2, -7, 37, 80, 28, -8, -1 }, { 1, -1, -8, 35, 80, 30, -8, -1 },
73 };
74
75 // Filters for interpolation (0.75-band) - note this also filters integer pels.
76 static const interp_kernel filteredinterp_filters750[(1 << SUBPEL_BITS)] = {
77 { 2, -11, 25, 96, 25, -11, 2, 0 }, { 2, -11, 22, 96, 28, -11, 2, 0 },
78 { 2, -10, 19, 95, 31, -11, 2, 0 }, { 2, -10, 17, 95, 34, -12, 2, 0 },
79 { 2, -9, 14, 94, 37, -12, 2, 0 }, { 2, -8, 12, 93, 40, -12, 1, 0 },
80 { 2, -8, 9, 92, 43, -12, 1, 1 }, { 2, -7, 7, 91, 46, -12, 1, 0 },
81 { 2, -7, 5, 90, 49, -12, 1, 0 }, { 2, -6, 3, 88, 52, -12, 0, 1 },
82 { 2, -5, 1, 86, 55, -12, 0, 1 }, { 2, -5, -1, 84, 58, -11, 0, 1 },
83 { 2, -4, -2, 82, 61, -11, -1, 1 }, { 2, -4, -4, 80, 64, -10, -1, 1 },
84 { 1, -3, -5, 77, 67, -9, -1, 1 }, { 1, -3, -6, 75, 70, -8, -2, 1 },
85 { 1, -2, -7, 72, 72, -7, -2, 1 }, { 1, -2, -8, 70, 75, -6, -3, 1 },
86 { 1, -1, -9, 67, 77, -5, -3, 1 }, { 1, -1, -10, 64, 80, -4, -4, 2 },
87 { 1, -1, -11, 61, 82, -2, -4, 2 }, { 1, 0, -11, 58, 84, -1, -5, 2 },
88 { 1, 0, -12, 55, 86, 1, -5, 2 }, { 1, 0, -12, 52, 88, 3, -6, 2 },
89 { 0, 1, -12, 49, 90, 5, -7, 2 }, { 0, 1, -12, 46, 91, 7, -7, 2 },
90 { 1, 1, -12, 43, 92, 9, -8, 2 }, { 0, 1, -12, 40, 93, 12, -8, 2 },
91 { 0, 2, -12, 37, 94, 14, -9, 2 }, { 0, 2, -12, 34, 95, 17, -10, 2 },
92 { 0, 2, -11, 31, 95, 19, -10, 2 }, { 0, 2, -11, 28, 96, 22, -11, 2 }
93 };
94
95 // Filters for interpolation (0.875-band) - note this also filters integer pels.
96 static const interp_kernel filteredinterp_filters875[(1 << SUBPEL_BITS)] = {
97 { 3, -8, 13, 112, 13, -8, 3, 0 }, { 3, -7, 10, 112, 17, -9, 3, -1 },
98 { 2, -6, 7, 111, 21, -9, 3, -1 }, { 2, -5, 4, 111, 24, -10, 3, -1 },
99 { 2, -4, 1, 110, 28, -11, 3, -1 }, { 1, -3, -1, 108, 32, -12, 4, -1 },
100 { 1, -2, -3, 106, 36, -13, 4, -1 }, { 1, -1, -6, 105, 40, -14, 4, -1 },
101 { 1, -1, -7, 102, 44, -14, 4, -1 }, { 1, 0, -9, 100, 48, -15, 4, -1 },
102 { 1, 1, -11, 97, 53, -16, 4, -1 }, { 0, 1, -12, 95, 57, -16, 4, -1 },
103 { 0, 2, -13, 91, 61, -16, 4, -1 }, { 0, 2, -14, 88, 65, -16, 4, -1 },
104 { 0, 3, -15, 84, 69, -17, 4, 0 }, { 0, 3, -16, 81, 73, -16, 3, 0 },
105 { 0, 3, -16, 77, 77, -16, 3, 0 }, { 0, 3, -16, 73, 81, -16, 3, 0 },
106 { 0, 4, -17, 69, 84, -15, 3, 0 }, { -1, 4, -16, 65, 88, -14, 2, 0 },
107 { -1, 4, -16, 61, 91, -13, 2, 0 }, { -1, 4, -16, 57, 95, -12, 1, 0 },
108 { -1, 4, -16, 53, 97, -11, 1, 1 }, { -1, 4, -15, 48, 100, -9, 0, 1 },
109 { -1, 4, -14, 44, 102, -7, -1, 1 }, { -1, 4, -14, 40, 105, -6, -1, 1 },
110 { -1, 4, -13, 36, 106, -3, -2, 1 }, { -1, 4, -12, 32, 108, -1, -3, 1 },
111 { -1, 3, -11, 28, 110, 1, -4, 2 }, { -1, 3, -10, 24, 111, 4, -5, 2 },
112 { -1, 3, -9, 21, 111, 7, -6, 2 }, { -1, 3, -9, 17, 112, 10, -7, 3 }
113 };
114
115 // Filters for interpolation (full-band) - no filtering for integer pixels
116 static const interp_kernel filteredinterp_filters1000[(1 << SUBPEL_BITS)] = {
117 { 0, 0, 0, 128, 0, 0, 0, 0 }, { 0, 1, -3, 128, 3, -1, 0, 0 },
118 { -1, 2, -6, 127, 7, -2, 1, 0 }, { -1, 3, -9, 126, 12, -4, 1, 0 },
119 { -1, 4, -12, 125, 16, -5, 1, 0 }, { -1, 4, -14, 123, 20, -6, 2, 0 },
120 { -1, 5, -15, 120, 25, -8, 2, 0 }, { -1, 5, -17, 118, 30, -9, 3, -1 },
121 { -1, 6, -18, 114, 35, -10, 3, -1 }, { -1, 6, -19, 111, 41, -12, 3, -1 },
122 { -1, 6, -20, 107, 46, -13, 4, -1 }, { -1, 6, -21, 103, 52, -14, 4, -1 },
123 { -1, 6, -21, 99, 57, -16, 5, -1 }, { -1, 6, -21, 94, 63, -17, 5, -1 },
124 { -1, 6, -20, 89, 68, -18, 5, -1 }, { -1, 6, -20, 84, 73, -19, 6, -1 },
125 { -1, 6, -20, 79, 79, -20, 6, -1 }, { -1, 6, -19, 73, 84, -20, 6, -1 },
126 { -1, 5, -18, 68, 89, -20, 6, -1 }, { -1, 5, -17, 63, 94, -21, 6, -1 },
127 { -1, 5, -16, 57, 99, -21, 6, -1 }, { -1, 4, -14, 52, 103, -21, 6, -1 },
128 { -1, 4, -13, 46, 107, -20, 6, -1 }, { -1, 3, -12, 41, 111, -19, 6, -1 },
129 { -1, 3, -10, 35, 114, -18, 6, -1 }, { -1, 3, -9, 30, 118, -17, 5, -1 },
130 { 0, 2, -8, 25, 120, -15, 5, -1 }, { 0, 2, -6, 20, 123, -14, 4, -1 },
131 { 0, 1, -5, 16, 125, -12, 4, -1 }, { 0, 1, -4, 12, 126, -9, 3, -1 },
132 { 0, 1, -2, 7, 127, -6, 2, -1 }, { 0, 0, -1, 3, 128, -3, 1, 0 }
133 };
134
135 // Filters for factor of 2 downsampling.
136 static const int16_t vp9_down2_symeven_half_filter[] = { 56, 12, -3, -1 };
137 static const int16_t vp9_down2_symodd_half_filter[] = { 64, 35, 0, -3 };
138
choose_interp_filter(int inlength,int outlength)139 static const interp_kernel *choose_interp_filter(int inlength, int outlength) {
140 int outlength16 = outlength * 16;
141 if (outlength16 >= inlength * 16)
142 return filteredinterp_filters1000;
143 else if (outlength16 >= inlength * 13)
144 return filteredinterp_filters875;
145 else if (outlength16 >= inlength * 11)
146 return filteredinterp_filters750;
147 else if (outlength16 >= inlength * 9)
148 return filteredinterp_filters625;
149 else
150 return filteredinterp_filters500;
151 }
152
interpolate(const uint8_t * const input,int inlength,uint8_t * output,int outlength)153 static void interpolate(const uint8_t *const input, int inlength,
154 uint8_t *output, int outlength) {
155 const int64_t delta =
156 (((uint64_t)inlength << 32) + outlength / 2) / outlength;
157 const int64_t offset =
158 inlength > outlength
159 ? (((int64_t)(inlength - outlength) << 31) + outlength / 2) /
160 outlength
161 : -(((int64_t)(outlength - inlength) << 31) + outlength / 2) /
162 outlength;
163 uint8_t *optr = output;
164 int x, x1, x2, sum, k, int_pel, sub_pel;
165 int64_t y;
166
167 const interp_kernel *interp_filters =
168 choose_interp_filter(inlength, outlength);
169
170 x = 0;
171 y = offset;
172 while ((y >> INTERP_PRECISION_BITS) < (INTERP_TAPS / 2 - 1)) {
173 x++;
174 y += delta;
175 }
176 x1 = x;
177 x = outlength - 1;
178 y = delta * x + offset;
179 while ((y >> INTERP_PRECISION_BITS) + (int64_t)(INTERP_TAPS / 2) >=
180 inlength) {
181 x--;
182 y -= delta;
183 }
184 x2 = x;
185 if (x1 > x2) {
186 for (x = 0, y = offset; x < outlength; ++x, y += delta) {
187 const int16_t *filter;
188 int_pel = y >> INTERP_PRECISION_BITS;
189 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
190 filter = interp_filters[sub_pel];
191 sum = 0;
192 for (k = 0; k < INTERP_TAPS; ++k) {
193 const int pk = int_pel - INTERP_TAPS / 2 + 1 + k;
194 sum += filter[k] *
195 input[(pk < 0 ? 0 : (pk >= inlength ? inlength - 1 : pk))];
196 }
197 *optr++ = clip_pixel(ROUND_POWER_OF_TWO(sum, FILTER_BITS));
198 }
199 } else {
200 // Initial part.
201 for (x = 0, y = offset; x < x1; ++x, y += delta) {
202 const int16_t *filter;
203 int_pel = y >> INTERP_PRECISION_BITS;
204 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
205 filter = interp_filters[sub_pel];
206 sum = 0;
207 for (k = 0; k < INTERP_TAPS; ++k)
208 sum += filter[k] * input[(int_pel - INTERP_TAPS / 2 + 1 + k < 0
209 ? 0
210 : int_pel - INTERP_TAPS / 2 + 1 + k)];
211 *optr++ = clip_pixel(ROUND_POWER_OF_TWO(sum, FILTER_BITS));
212 }
213 // Middle part.
214 for (; x <= x2; ++x, y += delta) {
215 const int16_t *filter;
216 int_pel = y >> INTERP_PRECISION_BITS;
217 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
218 filter = interp_filters[sub_pel];
219 sum = 0;
220 for (k = 0; k < INTERP_TAPS; ++k)
221 sum += filter[k] * input[int_pel - INTERP_TAPS / 2 + 1 + k];
222 *optr++ = clip_pixel(ROUND_POWER_OF_TWO(sum, FILTER_BITS));
223 }
224 // End part.
225 for (; x < outlength; ++x, y += delta) {
226 const int16_t *filter;
227 int_pel = y >> INTERP_PRECISION_BITS;
228 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
229 filter = interp_filters[sub_pel];
230 sum = 0;
231 for (k = 0; k < INTERP_TAPS; ++k)
232 sum += filter[k] * input[(int_pel - INTERP_TAPS / 2 + 1 + k >= inlength
233 ? inlength - 1
234 : int_pel - INTERP_TAPS / 2 + 1 + k)];
235 *optr++ = clip_pixel(ROUND_POWER_OF_TWO(sum, FILTER_BITS));
236 }
237 }
238 }
239
down2_symeven(const uint8_t * const input,int length,uint8_t * output)240 static void down2_symeven(const uint8_t *const input, int length,
241 uint8_t *output) {
242 // Actual filter len = 2 * filter_len_half.
243 const int16_t *filter = vp9_down2_symeven_half_filter;
244 const int filter_len_half = sizeof(vp9_down2_symeven_half_filter) / 2;
245 int i, j;
246 uint8_t *optr = output;
247 int l1 = filter_len_half;
248 int l2 = (length - filter_len_half);
249 l1 += (l1 & 1);
250 l2 += (l2 & 1);
251 if (l1 > l2) {
252 // Short input length.
253 for (i = 0; i < length; i += 2) {
254 int sum = (1 << (FILTER_BITS - 1));
255 for (j = 0; j < filter_len_half; ++j) {
256 sum += (input[(i - j < 0 ? 0 : i - j)] +
257 input[(i + 1 + j >= length ? length - 1 : i + 1 + j)]) *
258 filter[j];
259 }
260 sum >>= FILTER_BITS;
261 *optr++ = clip_pixel(sum);
262 }
263 } else {
264 // Initial part.
265 for (i = 0; i < l1; i += 2) {
266 int sum = (1 << (FILTER_BITS - 1));
267 for (j = 0; j < filter_len_half; ++j) {
268 sum += (input[(i - j < 0 ? 0 : i - j)] + input[i + 1 + j]) * filter[j];
269 }
270 sum >>= FILTER_BITS;
271 *optr++ = clip_pixel(sum);
272 }
273 // Middle part.
274 for (; i < l2; i += 2) {
275 int sum = (1 << (FILTER_BITS - 1));
276 for (j = 0; j < filter_len_half; ++j) {
277 sum += (input[i - j] + input[i + 1 + j]) * filter[j];
278 }
279 sum >>= FILTER_BITS;
280 *optr++ = clip_pixel(sum);
281 }
282 // End part.
283 for (; i < length; i += 2) {
284 int sum = (1 << (FILTER_BITS - 1));
285 for (j = 0; j < filter_len_half; ++j) {
286 sum += (input[i - j] +
287 input[(i + 1 + j >= length ? length - 1 : i + 1 + j)]) *
288 filter[j];
289 }
290 sum >>= FILTER_BITS;
291 *optr++ = clip_pixel(sum);
292 }
293 }
294 }
295
down2_symodd(const uint8_t * const input,int length,uint8_t * output)296 static void down2_symodd(const uint8_t *const input, int length,
297 uint8_t *output) {
298 // Actual filter len = 2 * filter_len_half - 1.
299 const int16_t *filter = vp9_down2_symodd_half_filter;
300 const int filter_len_half = sizeof(vp9_down2_symodd_half_filter) / 2;
301 int i, j;
302 uint8_t *optr = output;
303 int l1 = filter_len_half - 1;
304 int l2 = (length - filter_len_half + 1);
305 l1 += (l1 & 1);
306 l2 += (l2 & 1);
307 if (l1 > l2) {
308 // Short input length.
309 for (i = 0; i < length; i += 2) {
310 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
311 for (j = 1; j < filter_len_half; ++j) {
312 sum += (input[(i - j < 0 ? 0 : i - j)] +
313 input[(i + j >= length ? length - 1 : i + j)]) *
314 filter[j];
315 }
316 sum >>= FILTER_BITS;
317 *optr++ = clip_pixel(sum);
318 }
319 } else {
320 // Initial part.
321 for (i = 0; i < l1; i += 2) {
322 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
323 for (j = 1; j < filter_len_half; ++j) {
324 sum += (input[(i - j < 0 ? 0 : i - j)] + input[i + j]) * filter[j];
325 }
326 sum >>= FILTER_BITS;
327 *optr++ = clip_pixel(sum);
328 }
329 // Middle part.
330 for (; i < l2; i += 2) {
331 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
332 for (j = 1; j < filter_len_half; ++j) {
333 sum += (input[i - j] + input[i + j]) * filter[j];
334 }
335 sum >>= FILTER_BITS;
336 *optr++ = clip_pixel(sum);
337 }
338 // End part.
339 for (; i < length; i += 2) {
340 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
341 for (j = 1; j < filter_len_half; ++j) {
342 sum += (input[i - j] + input[(i + j >= length ? length - 1 : i + j)]) *
343 filter[j];
344 }
345 sum >>= FILTER_BITS;
346 *optr++ = clip_pixel(sum);
347 }
348 }
349 }
350
get_down2_length(int length,int steps)351 static int get_down2_length(int length, int steps) {
352 int s;
353 for (s = 0; s < steps; ++s) length = (length + 1) >> 1;
354 return length;
355 }
356
get_down2_steps(int in_length,int out_length)357 static int get_down2_steps(int in_length, int out_length) {
358 int steps = 0;
359 int proj_in_length;
360 while ((proj_in_length = get_down2_length(in_length, 1)) >= out_length) {
361 ++steps;
362 in_length = proj_in_length;
363 }
364 return steps;
365 }
366
resize_multistep(const uint8_t * const input,int length,uint8_t * output,int olength,uint8_t * otmp)367 static void resize_multistep(const uint8_t *const input, int length,
368 uint8_t *output, int olength, uint8_t *otmp) {
369 int steps;
370 if (length == olength) {
371 memcpy(output, input, sizeof(output[0]) * length);
372 return;
373 }
374 steps = get_down2_steps(length, olength);
375
376 if (steps > 0) {
377 int s;
378 uint8_t *out = NULL;
379 uint8_t *otmp2;
380 int filteredlength = length;
381
382 assert(otmp != NULL);
383 otmp2 = otmp + get_down2_length(length, 1);
384 for (s = 0; s < steps; ++s) {
385 const int proj_filteredlength = get_down2_length(filteredlength, 1);
386 const uint8_t *const in = (s == 0 ? input : out);
387 if (s == steps - 1 && proj_filteredlength == olength)
388 out = output;
389 else
390 out = (s & 1 ? otmp2 : otmp);
391 if (filteredlength & 1)
392 down2_symodd(in, filteredlength, out);
393 else
394 down2_symeven(in, filteredlength, out);
395 filteredlength = proj_filteredlength;
396 }
397 if (filteredlength != olength) {
398 interpolate(out, filteredlength, output, olength);
399 }
400 } else {
401 interpolate(input, length, output, olength);
402 }
403 }
404
fill_col_to_arr(uint8_t * img,int stride,int len,uint8_t * arr)405 static void fill_col_to_arr(uint8_t *img, int stride, int len, uint8_t *arr) {
406 int i;
407 uint8_t *iptr = img;
408 uint8_t *aptr = arr;
409 for (i = 0; i < len; ++i, iptr += stride) {
410 *aptr++ = *iptr;
411 }
412 }
413
fill_arr_to_col(uint8_t * img,int stride,int len,uint8_t * arr)414 static void fill_arr_to_col(uint8_t *img, int stride, int len, uint8_t *arr) {
415 int i;
416 uint8_t *iptr = img;
417 uint8_t *aptr = arr;
418 for (i = 0; i < len; ++i, iptr += stride) {
419 *iptr = *aptr++;
420 }
421 }
422
vp9_resize_plane(const uint8_t * const input,int height,int width,int in_stride,uint8_t * output,int height2,int width2,int out_stride)423 void vp9_resize_plane(const uint8_t *const input, int height, int width,
424 int in_stride, uint8_t *output, int height2, int width2,
425 int out_stride) {
426 int i;
427 uint8_t *intbuf = (uint8_t *)calloc(width2 * height, sizeof(*intbuf));
428 uint8_t *tmpbuf =
429 (uint8_t *)calloc(width < height ? height : width, sizeof(*tmpbuf));
430 uint8_t *arrbuf = (uint8_t *)calloc(height, sizeof(*arrbuf));
431 uint8_t *arrbuf2 = (uint8_t *)calloc(height2, sizeof(*arrbuf2));
432 if (intbuf == NULL || tmpbuf == NULL || arrbuf == NULL || arrbuf2 == NULL)
433 goto Error;
434 assert(width > 0);
435 assert(height > 0);
436 assert(width2 > 0);
437 assert(height2 > 0);
438 for (i = 0; i < height; ++i)
439 resize_multistep(input + in_stride * i, width, intbuf + width2 * i, width2,
440 tmpbuf);
441 for (i = 0; i < width2; ++i) {
442 fill_col_to_arr(intbuf + i, width2, height, arrbuf);
443 resize_multistep(arrbuf, height, arrbuf2, height2, tmpbuf);
444 fill_arr_to_col(output + i, out_stride, height2, arrbuf2);
445 }
446
447 Error:
448 free(intbuf);
449 free(tmpbuf);
450 free(arrbuf);
451 free(arrbuf2);
452 }
453
454 #if CONFIG_VP9_HIGHBITDEPTH
highbd_interpolate(const uint16_t * const input,int inlength,uint16_t * output,int outlength,int bd)455 static void highbd_interpolate(const uint16_t *const input, int inlength,
456 uint16_t *output, int outlength, int bd) {
457 const int64_t delta =
458 (((uint64_t)inlength << 32) + outlength / 2) / outlength;
459 const int64_t offset =
460 inlength > outlength
461 ? (((int64_t)(inlength - outlength) << 31) + outlength / 2) /
462 outlength
463 : -(((int64_t)(outlength - inlength) << 31) + outlength / 2) /
464 outlength;
465 uint16_t *optr = output;
466 int x, x1, x2, sum, k, int_pel, sub_pel;
467 int64_t y;
468
469 const interp_kernel *interp_filters =
470 choose_interp_filter(inlength, outlength);
471
472 x = 0;
473 y = offset;
474 while ((y >> INTERP_PRECISION_BITS) < (INTERP_TAPS / 2 - 1)) {
475 x++;
476 y += delta;
477 }
478 x1 = x;
479 x = outlength - 1;
480 y = delta * x + offset;
481 while ((y >> INTERP_PRECISION_BITS) + (int64_t)(INTERP_TAPS / 2) >=
482 inlength) {
483 x--;
484 y -= delta;
485 }
486 x2 = x;
487 if (x1 > x2) {
488 for (x = 0, y = offset; x < outlength; ++x, y += delta) {
489 const int16_t *filter;
490 int_pel = y >> INTERP_PRECISION_BITS;
491 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
492 filter = interp_filters[sub_pel];
493 sum = 0;
494 for (k = 0; k < INTERP_TAPS; ++k) {
495 const int pk = int_pel - INTERP_TAPS / 2 + 1 + k;
496 sum += filter[k] *
497 input[(pk < 0 ? 0 : (pk >= inlength ? inlength - 1 : pk))];
498 }
499 *optr++ = clip_pixel_highbd(ROUND_POWER_OF_TWO(sum, FILTER_BITS), bd);
500 }
501 } else {
502 // Initial part.
503 for (x = 0, y = offset; x < x1; ++x, y += delta) {
504 const int16_t *filter;
505 int_pel = y >> INTERP_PRECISION_BITS;
506 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
507 filter = interp_filters[sub_pel];
508 sum = 0;
509 for (k = 0; k < INTERP_TAPS; ++k) {
510 assert(int_pel - INTERP_TAPS / 2 + 1 + k < inlength);
511 sum += filter[k] * input[(int_pel - INTERP_TAPS / 2 + 1 + k < 0
512 ? 0
513 : int_pel - INTERP_TAPS / 2 + 1 + k)];
514 }
515 *optr++ = clip_pixel_highbd(ROUND_POWER_OF_TWO(sum, FILTER_BITS), bd);
516 }
517 // Middle part.
518 for (; x <= x2; ++x, y += delta) {
519 const int16_t *filter;
520 int_pel = y >> INTERP_PRECISION_BITS;
521 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
522 filter = interp_filters[sub_pel];
523 sum = 0;
524 for (k = 0; k < INTERP_TAPS; ++k)
525 sum += filter[k] * input[int_pel - INTERP_TAPS / 2 + 1 + k];
526 *optr++ = clip_pixel_highbd(ROUND_POWER_OF_TWO(sum, FILTER_BITS), bd);
527 }
528 // End part.
529 for (; x < outlength; ++x, y += delta) {
530 const int16_t *filter;
531 int_pel = y >> INTERP_PRECISION_BITS;
532 sub_pel = (y >> (INTERP_PRECISION_BITS - SUBPEL_BITS)) & SUBPEL_MASK;
533 filter = interp_filters[sub_pel];
534 sum = 0;
535 for (k = 0; k < INTERP_TAPS; ++k)
536 sum += filter[k] * input[(int_pel - INTERP_TAPS / 2 + 1 + k >= inlength
537 ? inlength - 1
538 : int_pel - INTERP_TAPS / 2 + 1 + k)];
539 *optr++ = clip_pixel_highbd(ROUND_POWER_OF_TWO(sum, FILTER_BITS), bd);
540 }
541 }
542 }
543
highbd_down2_symeven(const uint16_t * const input,int length,uint16_t * output,int bd)544 static void highbd_down2_symeven(const uint16_t *const input, int length,
545 uint16_t *output, int bd) {
546 // Actual filter len = 2 * filter_len_half.
547 static const int16_t *filter = vp9_down2_symeven_half_filter;
548 const int filter_len_half = sizeof(vp9_down2_symeven_half_filter) / 2;
549 int i, j;
550 uint16_t *optr = output;
551 int l1 = filter_len_half;
552 int l2 = (length - filter_len_half);
553 l1 += (l1 & 1);
554 l2 += (l2 & 1);
555 if (l1 > l2) {
556 // Short input length.
557 for (i = 0; i < length; i += 2) {
558 int sum = (1 << (FILTER_BITS - 1));
559 for (j = 0; j < filter_len_half; ++j) {
560 sum += (input[(i - j < 0 ? 0 : i - j)] +
561 input[(i + 1 + j >= length ? length - 1 : i + 1 + j)]) *
562 filter[j];
563 }
564 sum >>= FILTER_BITS;
565 *optr++ = clip_pixel_highbd(sum, bd);
566 }
567 } else {
568 // Initial part.
569 for (i = 0; i < l1; i += 2) {
570 int sum = (1 << (FILTER_BITS - 1));
571 for (j = 0; j < filter_len_half; ++j) {
572 sum += (input[(i - j < 0 ? 0 : i - j)] + input[i + 1 + j]) * filter[j];
573 }
574 sum >>= FILTER_BITS;
575 *optr++ = clip_pixel_highbd(sum, bd);
576 }
577 // Middle part.
578 for (; i < l2; i += 2) {
579 int sum = (1 << (FILTER_BITS - 1));
580 for (j = 0; j < filter_len_half; ++j) {
581 sum += (input[i - j] + input[i + 1 + j]) * filter[j];
582 }
583 sum >>= FILTER_BITS;
584 *optr++ = clip_pixel_highbd(sum, bd);
585 }
586 // End part.
587 for (; i < length; i += 2) {
588 int sum = (1 << (FILTER_BITS - 1));
589 for (j = 0; j < filter_len_half; ++j) {
590 sum += (input[i - j] +
591 input[(i + 1 + j >= length ? length - 1 : i + 1 + j)]) *
592 filter[j];
593 }
594 sum >>= FILTER_BITS;
595 *optr++ = clip_pixel_highbd(sum, bd);
596 }
597 }
598 }
599
highbd_down2_symodd(const uint16_t * const input,int length,uint16_t * output,int bd)600 static void highbd_down2_symodd(const uint16_t *const input, int length,
601 uint16_t *output, int bd) {
602 // Actual filter len = 2 * filter_len_half - 1.
603 static const int16_t *filter = vp9_down2_symodd_half_filter;
604 const int filter_len_half = sizeof(vp9_down2_symodd_half_filter) / 2;
605 int i, j;
606 uint16_t *optr = output;
607 int l1 = filter_len_half - 1;
608 int l2 = (length - filter_len_half + 1);
609 l1 += (l1 & 1);
610 l2 += (l2 & 1);
611 if (l1 > l2) {
612 // Short input length.
613 for (i = 0; i < length; i += 2) {
614 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
615 for (j = 1; j < filter_len_half; ++j) {
616 sum += (input[(i - j < 0 ? 0 : i - j)] +
617 input[(i + j >= length ? length - 1 : i + j)]) *
618 filter[j];
619 }
620 sum >>= FILTER_BITS;
621 *optr++ = clip_pixel_highbd(sum, bd);
622 }
623 } else {
624 // Initial part.
625 for (i = 0; i < l1; i += 2) {
626 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
627 for (j = 1; j < filter_len_half; ++j) {
628 sum += (input[(i - j < 0 ? 0 : i - j)] + input[i + j]) * filter[j];
629 }
630 sum >>= FILTER_BITS;
631 *optr++ = clip_pixel_highbd(sum, bd);
632 }
633 // Middle part.
634 for (; i < l2; i += 2) {
635 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
636 for (j = 1; j < filter_len_half; ++j) {
637 sum += (input[i - j] + input[i + j]) * filter[j];
638 }
639 sum >>= FILTER_BITS;
640 *optr++ = clip_pixel_highbd(sum, bd);
641 }
642 // End part.
643 for (; i < length; i += 2) {
644 int sum = (1 << (FILTER_BITS - 1)) + input[i] * filter[0];
645 for (j = 1; j < filter_len_half; ++j) {
646 sum += (input[i - j] + input[(i + j >= length ? length - 1 : i + j)]) *
647 filter[j];
648 }
649 sum >>= FILTER_BITS;
650 *optr++ = clip_pixel_highbd(sum, bd);
651 }
652 }
653 }
654
highbd_resize_multistep(const uint16_t * const input,int length,uint16_t * output,int olength,uint16_t * otmp,int bd)655 static void highbd_resize_multistep(const uint16_t *const input, int length,
656 uint16_t *output, int olength,
657 uint16_t *otmp, int bd) {
658 int steps;
659 if (length == olength) {
660 memcpy(output, input, sizeof(output[0]) * length);
661 return;
662 }
663 steps = get_down2_steps(length, olength);
664
665 if (steps > 0) {
666 int s;
667 uint16_t *out = NULL;
668 uint16_t *otmp2;
669 int filteredlength = length;
670
671 assert(otmp != NULL);
672 otmp2 = otmp + get_down2_length(length, 1);
673 for (s = 0; s < steps; ++s) {
674 const int proj_filteredlength = get_down2_length(filteredlength, 1);
675 const uint16_t *const in = (s == 0 ? input : out);
676 if (s == steps - 1 && proj_filteredlength == olength)
677 out = output;
678 else
679 out = (s & 1 ? otmp2 : otmp);
680 if (filteredlength & 1)
681 highbd_down2_symodd(in, filteredlength, out, bd);
682 else
683 highbd_down2_symeven(in, filteredlength, out, bd);
684 filteredlength = proj_filteredlength;
685 }
686 if (filteredlength != olength) {
687 highbd_interpolate(out, filteredlength, output, olength, bd);
688 }
689 } else {
690 highbd_interpolate(input, length, output, olength, bd);
691 }
692 }
693
highbd_fill_col_to_arr(uint16_t * img,int stride,int len,uint16_t * arr)694 static void highbd_fill_col_to_arr(uint16_t *img, int stride, int len,
695 uint16_t *arr) {
696 int i;
697 uint16_t *iptr = img;
698 uint16_t *aptr = arr;
699 for (i = 0; i < len; ++i, iptr += stride) {
700 *aptr++ = *iptr;
701 }
702 }
703
highbd_fill_arr_to_col(uint16_t * img,int stride,int len,uint16_t * arr)704 static void highbd_fill_arr_to_col(uint16_t *img, int stride, int len,
705 uint16_t *arr) {
706 int i;
707 uint16_t *iptr = img;
708 uint16_t *aptr = arr;
709 for (i = 0; i < len; ++i, iptr += stride) {
710 *iptr = *aptr++;
711 }
712 }
713
vp9_highbd_resize_plane(const uint8_t * const input,int height,int width,int in_stride,uint8_t * output,int height2,int width2,int out_stride,int bd)714 void vp9_highbd_resize_plane(const uint8_t *const input, int height, int width,
715 int in_stride, uint8_t *output, int height2,
716 int width2, int out_stride, int bd) {
717 int i;
718 uint16_t *intbuf = (uint16_t *)malloc(sizeof(uint16_t) * width2 * height);
719 uint16_t *tmpbuf =
720 (uint16_t *)malloc(sizeof(uint16_t) * (width < height ? height : width));
721 uint16_t *arrbuf = (uint16_t *)malloc(sizeof(uint16_t) * height);
722 uint16_t *arrbuf2 = (uint16_t *)malloc(sizeof(uint16_t) * height2);
723 if (intbuf == NULL || tmpbuf == NULL || arrbuf == NULL || arrbuf2 == NULL)
724 goto Error;
725 assert(width > 0);
726 assert(height > 0);
727 assert(width2 > 0);
728 assert(height2 > 0);
729 for (i = 0; i < height; ++i) {
730 highbd_resize_multistep(CONVERT_TO_SHORTPTR(input + in_stride * i), width,
731 intbuf + width2 * i, width2, tmpbuf, bd);
732 }
733 for (i = 0; i < width2; ++i) {
734 highbd_fill_col_to_arr(intbuf + i, width2, height, arrbuf);
735 highbd_resize_multistep(arrbuf, height, arrbuf2, height2, tmpbuf, bd);
736 highbd_fill_arr_to_col(CONVERT_TO_SHORTPTR(output + i), out_stride, height2,
737 arrbuf2);
738 }
739
740 Error:
741 free(intbuf);
742 free(tmpbuf);
743 free(arrbuf);
744 free(arrbuf2);
745 }
746 #endif // CONFIG_VP9_HIGHBITDEPTH
747
vp9_resize_frame420(const uint8_t * const y,int y_stride,const uint8_t * const u,const uint8_t * const v,int uv_stride,int height,int width,uint8_t * oy,int oy_stride,uint8_t * ou,uint8_t * ov,int ouv_stride,int oheight,int owidth)748 void vp9_resize_frame420(const uint8_t *const y, int y_stride,
749 const uint8_t *const u, const uint8_t *const v,
750 int uv_stride, int height, int width, uint8_t *oy,
751 int oy_stride, uint8_t *ou, uint8_t *ov,
752 int ouv_stride, int oheight, int owidth) {
753 vp9_resize_plane(y, height, width, y_stride, oy, oheight, owidth, oy_stride);
754 vp9_resize_plane(u, height / 2, width / 2, uv_stride, ou, oheight / 2,
755 owidth / 2, ouv_stride);
756 vp9_resize_plane(v, height / 2, width / 2, uv_stride, ov, oheight / 2,
757 owidth / 2, ouv_stride);
758 }
759
vp9_resize_frame422(const uint8_t * const y,int y_stride,const uint8_t * const u,const uint8_t * const v,int uv_stride,int height,int width,uint8_t * oy,int oy_stride,uint8_t * ou,uint8_t * ov,int ouv_stride,int oheight,int owidth)760 void vp9_resize_frame422(const uint8_t *const y, int y_stride,
761 const uint8_t *const u, const uint8_t *const v,
762 int uv_stride, int height, int width, uint8_t *oy,
763 int oy_stride, uint8_t *ou, uint8_t *ov,
764 int ouv_stride, int oheight, int owidth) {
765 vp9_resize_plane(y, height, width, y_stride, oy, oheight, owidth, oy_stride);
766 vp9_resize_plane(u, height, width / 2, uv_stride, ou, oheight, owidth / 2,
767 ouv_stride);
768 vp9_resize_plane(v, height, width / 2, uv_stride, ov, oheight, owidth / 2,
769 ouv_stride);
770 }
771
vp9_resize_frame444(const uint8_t * const y,int y_stride,const uint8_t * const u,const uint8_t * const v,int uv_stride,int height,int width,uint8_t * oy,int oy_stride,uint8_t * ou,uint8_t * ov,int ouv_stride,int oheight,int owidth)772 void vp9_resize_frame444(const uint8_t *const y, int y_stride,
773 const uint8_t *const u, const uint8_t *const v,
774 int uv_stride, int height, int width, uint8_t *oy,
775 int oy_stride, uint8_t *ou, uint8_t *ov,
776 int ouv_stride, int oheight, int owidth) {
777 vp9_resize_plane(y, height, width, y_stride, oy, oheight, owidth, oy_stride);
778 vp9_resize_plane(u, height, width, uv_stride, ou, oheight, owidth,
779 ouv_stride);
780 vp9_resize_plane(v, height, width, uv_stride, ov, oheight, owidth,
781 ouv_stride);
782 }
783
784 #if CONFIG_VP9_HIGHBITDEPTH
vp9_highbd_resize_frame420(const uint8_t * const y,int y_stride,const uint8_t * const u,const uint8_t * const v,int uv_stride,int height,int width,uint8_t * oy,int oy_stride,uint8_t * ou,uint8_t * ov,int ouv_stride,int oheight,int owidth,int bd)785 void vp9_highbd_resize_frame420(const uint8_t *const y, int y_stride,
786 const uint8_t *const u, const uint8_t *const v,
787 int uv_stride, int height, int width,
788 uint8_t *oy, int oy_stride, uint8_t *ou,
789 uint8_t *ov, int ouv_stride, int oheight,
790 int owidth, int bd) {
791 vp9_highbd_resize_plane(y, height, width, y_stride, oy, oheight, owidth,
792 oy_stride, bd);
793 vp9_highbd_resize_plane(u, height / 2, width / 2, uv_stride, ou, oheight / 2,
794 owidth / 2, ouv_stride, bd);
795 vp9_highbd_resize_plane(v, height / 2, width / 2, uv_stride, ov, oheight / 2,
796 owidth / 2, ouv_stride, bd);
797 }
798
vp9_highbd_resize_frame422(const uint8_t * const y,int y_stride,const uint8_t * const u,const uint8_t * const v,int uv_stride,int height,int width,uint8_t * oy,int oy_stride,uint8_t * ou,uint8_t * ov,int ouv_stride,int oheight,int owidth,int bd)799 void vp9_highbd_resize_frame422(const uint8_t *const y, int y_stride,
800 const uint8_t *const u, const uint8_t *const v,
801 int uv_stride, int height, int width,
802 uint8_t *oy, int oy_stride, uint8_t *ou,
803 uint8_t *ov, int ouv_stride, int oheight,
804 int owidth, int bd) {
805 vp9_highbd_resize_plane(y, height, width, y_stride, oy, oheight, owidth,
806 oy_stride, bd);
807 vp9_highbd_resize_plane(u, height, width / 2, uv_stride, ou, oheight,
808 owidth / 2, ouv_stride, bd);
809 vp9_highbd_resize_plane(v, height, width / 2, uv_stride, ov, oheight,
810 owidth / 2, ouv_stride, bd);
811 }
812
vp9_highbd_resize_frame444(const uint8_t * const y,int y_stride,const uint8_t * const u,const uint8_t * const v,int uv_stride,int height,int width,uint8_t * oy,int oy_stride,uint8_t * ou,uint8_t * ov,int ouv_stride,int oheight,int owidth,int bd)813 void vp9_highbd_resize_frame444(const uint8_t *const y, int y_stride,
814 const uint8_t *const u, const uint8_t *const v,
815 int uv_stride, int height, int width,
816 uint8_t *oy, int oy_stride, uint8_t *ou,
817 uint8_t *ov, int ouv_stride, int oheight,
818 int owidth, int bd) {
819 vp9_highbd_resize_plane(y, height, width, y_stride, oy, oheight, owidth,
820 oy_stride, bd);
821 vp9_highbd_resize_plane(u, height, width, uv_stride, ou, oheight, owidth,
822 ouv_stride, bd);
823 vp9_highbd_resize_plane(v, height, width, uv_stride, ov, oheight, owidth,
824 ouv_stride, bd);
825 }
826 #endif // CONFIG_VP9_HIGHBITDEPTH
827