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Side by Side Diff: src/opts/SkBlurImage_opts_neon.cpp

Issue 105893003: NEON fast path for box blur (Closed) Base URL: https://skia.googlecode.com/svn/trunk
Patch Set: fix a typo Created 7 years ago
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1 /* 1 /*
2 * Copyright 2013 The Android Open Source Project 2 * Copyright 2013 The Android Open Source Project
3 * 3 *
4 * Use of this source code is governed by a BSD-style license that can be 4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file. 5 * found in the LICENSE file.
6 */ 6 */
7 7
8 8
9 #include "SkBitmap.h" 9 #include "SkBitmap.h"
10 #include "SkColorPriv.h" 10 #include "SkColorPriv.h"
11 #include "SkBlurImage_opts.h" 11 #include "SkBlurImage_opts.h"
12 #include "SkRect.h" 12 #include "SkRect.h"
13 13
14 #include <arm_neon.h> 14 #include <arm_neon.h>
15 15
16 namespace { 16 namespace {
17 17
18 enum BlurDirection { 18 enum BlurDirection {
19 kX, kY 19 kX, kY
20 }; 20 };
21 21
22 /** 22 /**
23 * Helper function to load 2 pixels from diffent rows to a 8x8 NEON register
24 * and also pre-load pixels for future read
25 */
26 template<BlurDirection srcDirection>
27 inline uint8x8_t load_2_pixels(const SkPMColor* src, int srcStride) {
28 if (srcDirection == kX) {
29 uint32x2_t temp = vdup_n_u32(0);
30 // 10% faster by add these 2 prefetches
31 SK_PREFETCH(src + 16);
32 SK_PREFETCH(src + srcStride + 16);
33 return vreinterpret_u8_u32(vld1_lane_u32(src + srcStride, vld1_lane_u32( src, temp, 0), 1));
34 } else {
35 // this prefetch doesn't impact the performance
36 SK_PREFETCH(src + srcStride);
37 return vld1_u8((uint8_t*)src);
Stephen White 2013/12/19 15:27:03 Looks like you removed the actual fetch along with
zheng.xu 2013/12/20 04:29:54 Sorry for this stupid mistake. It should result a
38 }
39 }
40
41 /**
42 * Helper function to store the low 8-bits from a 16x8 NEON register to 2 rows
43 */
44 template<BlurDirection dstDirection>
45 inline void store_2_pixels(uint16x8_t result16x8, SkPMColor* dst, int dstStride) {
46 if (dstDirection == kX) {
47 uint32x2_t temp = vreinterpret_u32_u8(vmovn_u16(result16x8));
48 vst1_lane_u32(dst, temp, 0);
49 vst1_lane_u32(dst + dstStride, temp, 1);
50 } else {
51 uint8x8_t temp = vmovn_u16(result16x8);
52 vst1_u8((uint8_t*)dst, temp);
53 }
54 }
55
56 /**
57 * fast path for kernel size less than 128
58 */
59 template<BlurDirection srcDirection, BlurDirection dstDirection>
60 void SkDoubleRowBoxBlur_NEON(const SkPMColor** src, int srcStride, SkPMColor** d st, int kernelSize,
61 int leftOffset, int rightOffset, int width, int* height)
62 {
63 const int rightBorder = SkMin32(rightOffset + 1, width);
64 const int srcStrideX = srcDirection == kX ? 1 : srcStride;
65 const int dstStrideX = dstDirection == kX ? 1 : *height;
66 const int srcStrideY = srcDirection == kX ? srcStride : 1;
67 const int dstStrideY = dstDirection == kX ? width : 1;
68 const uint16x8_t scale = vdupq_n_u16((1 << 15) / kernelSize);
69
70 for (; *height >= 2; *height -= 2) {
71 uint16x8_t sum = vdupq_n_u16(0);
72 const SkPMColor* p = *src;
73 for (int i = 0; i < rightBorder; i++) {
74 sum = vaddw_u8(sum,
75 load_2_pixels<srcDirection>(p, srcStride));
76 p += srcStrideX;
77 }
78
79 const SkPMColor* sptr = *src;
80 SkPMColor* dptr = *dst;
81 for (int x = 0; x < width; x++) {
82 // val = (sum * scale * 2 + 0x8000) >> 16
83 uint16x8_t resultPixels = vreinterpretq_u16_s16(vqrdmulhq_s16(
84 vreinterpretq_s16_u16(sum), vreinterpretq_s16_u16(scale)));
85 store_2_pixels<dstDirection>(resultPixels, dptr, width);
86
87 if (x >= leftOffset) {
88 sum = vsubw_u8(sum,
89 load_2_pixels<srcDirection>(sptr - leftOffset * srcStrideX, srcStride));
90 }
91 if (x + rightOffset + 1 < width) {
92 sum = vaddw_u8(sum,
93 load_2_pixels<srcDirection>(sptr + (rightOffset + 1) * srcSt rideX, srcStride));
94 }
95 sptr += srcStrideX;
96 dptr += dstStrideX;
97 }
98 *src += srcStrideY * 2;
99 *dst += dstStrideY * 2;
100 }
101 }
102
103
104 /**
23 * Helper function to spread the components of a 32-bit integer into the 105 * Helper function to spread the components of a 32-bit integer into the
24 * lower 8 bits of each 16-bit element of a NEON register. 106 * lower 8 bits of each 16-bit element of a NEON register.
25 */ 107 */
26 108
27 static inline uint16x4_t expand(uint32_t a) { 109 static inline uint16x4_t expand(uint32_t a) {
28 // ( ARGB ) -> ( ARGB ARGB ) -> ( A R G B A R G B ) 110 // ( ARGB ) -> ( ARGB ARGB ) -> ( A R G B A R G B )
29 uint8x8_t v8 = vreinterpret_u8_u32(vdup_n_u32(a)); 111 uint8x8_t v8 = vreinterpret_u8_u32(vdup_n_u32(a));
30 // ( A R G B A R G B ) -> ( 0A 0R 0G 0B 0A 0R 0G 0B ) -> ( 0A 0R 0G 0B ) 112 // ( A R G B A R G B ) -> ( 0A 0R 0G 0B 0A 0R 0G 0B ) -> ( 0A 0R 0G 0B )
31 return vget_low_u16(vmovl_u8(v8)); 113 return vget_low_u16(vmovl_u8(v8));
32 } 114 }
33 115
34 template<BlurDirection srcDirection, BlurDirection dstDirection> 116 template<BlurDirection srcDirection, BlurDirection dstDirection>
35 void SkBoxBlur_NEON(const SkPMColor* src, int srcStride, SkPMColor* dst, int ker nelSize, 117 void SkBoxBlur_NEON(const SkPMColor* src, int srcStride, SkPMColor* dst, int ker nelSize,
36 int leftOffset, int rightOffset, int width, int height) 118 int leftOffset, int rightOffset, int width, int height)
37 { 119 {
38 const int rightBorder = SkMin32(rightOffset + 1, width); 120 const int rightBorder = SkMin32(rightOffset + 1, width);
39 const int srcStrideX = srcDirection == kX ? 1 : srcStride; 121 const int srcStrideX = srcDirection == kX ? 1 : srcStride;
40 const int dstStrideX = dstDirection == kX ? 1 : height; 122 const int dstStrideX = dstDirection == kX ? 1 : height;
41 const int srcStrideY = srcDirection == kX ? srcStride : 1; 123 const int srcStrideY = srcDirection == kX ? srcStride : 1;
42 const int dstStrideY = dstDirection == kX ? width : 1; 124 const int dstStrideY = dstDirection == kX ? width : 1;
43 const uint32x4_t scale = vdupq_n_u32((1 << 24) / kernelSize); 125 const uint32x4_t scale = vdupq_n_u32((1 << 24) / kernelSize);
44 const uint32x4_t half = vdupq_n_u32(1 << 23); 126 const uint32x4_t half = vdupq_n_u32(1 << 23);
45 for (int y = 0; y < height; ++y) { 127
128 if (kernelSize < 128)
129 {
130 SkDoubleRowBoxBlur_NEON<srcDirection, dstDirection>(&src, srcStride, &ds t, kernelSize,
131 leftOffset, rightOffset, width, &height);
132 }
133
134 for (; height > 0; height--) {
46 uint32x4_t sum = vdupq_n_u32(0); 135 uint32x4_t sum = vdupq_n_u32(0);
47 const SkPMColor* p = src; 136 const SkPMColor* p = src;
48 for (int i = 0; i < rightBorder; ++i) { 137 for (int i = 0; i < rightBorder; ++i) {
49 sum = vaddw_u16(sum, expand(*p)); 138 sum = vaddw_u16(sum, expand(*p));
50 p += srcStrideX; 139 p += srcStrideX;
51 } 140 }
52 141
53 const SkPMColor* sptr = src; 142 const SkPMColor* sptr = src;
54 SkPMColor* dptr = dst; 143 SkPMColor* dptr = dst;
55 for (int x = 0; x < width; ++x) { 144 for (int x = 0; x < width; ++x) {
(...skipping 14 matching lines...) Expand all
70 159
71 if (x >= leftOffset) { 160 if (x >= leftOffset) {
72 const SkPMColor* l = sptr - leftOffset * srcStrideX; 161 const SkPMColor* l = sptr - leftOffset * srcStrideX;
73 sum = vsubw_u16(sum, expand(*l)); 162 sum = vsubw_u16(sum, expand(*l));
74 } 163 }
75 if (x + rightOffset + 1 < width) { 164 if (x + rightOffset + 1 < width) {
76 const SkPMColor* r = sptr + (rightOffset + 1) * srcStrideX; 165 const SkPMColor* r = sptr + (rightOffset + 1) * srcStrideX;
77 sum = vaddw_u16(sum, expand(*r)); 166 sum = vaddw_u16(sum, expand(*r));
78 } 167 }
79 sptr += srcStrideX; 168 sptr += srcStrideX;
80 if (srcDirection == kY) { 169 if (srcDirection == kX) {
170 SK_PREFETCH(sptr + (rightOffset + 16) * srcStrideX);
171 } else {
81 SK_PREFETCH(sptr + (rightOffset + 1) * srcStrideX); 172 SK_PREFETCH(sptr + (rightOffset + 1) * srcStrideX);
82 } 173 }
83 dptr += dstStrideX; 174 dptr += dstStrideX;
84 } 175 }
85 src += srcStrideY; 176 src += srcStrideY;
86 dst += dstStrideY; 177 dst += dstStrideY;
87 } 178 }
88 } 179 }
89 180
90 } // namespace 181 } // namespace
91 182
92 bool SkBoxBlurGetPlatformProcs_NEON(SkBoxBlurProc* boxBlurX, 183 bool SkBoxBlurGetPlatformProcs_NEON(SkBoxBlurProc* boxBlurX,
93 SkBoxBlurProc* boxBlurY, 184 SkBoxBlurProc* boxBlurY,
94 SkBoxBlurProc* boxBlurXY, 185 SkBoxBlurProc* boxBlurXY,
95 SkBoxBlurProc* boxBlurYX) { 186 SkBoxBlurProc* boxBlurYX) {
96 *boxBlurX = SkBoxBlur_NEON<kX, kX>; 187 *boxBlurX = SkBoxBlur_NEON<kX, kX>;
97 *boxBlurY = SkBoxBlur_NEON<kY, kY>; 188 *boxBlurY = SkBoxBlur_NEON<kY, kY>;
98 *boxBlurXY = SkBoxBlur_NEON<kX, kY>; 189 *boxBlurXY = SkBoxBlur_NEON<kX, kY>;
99 *boxBlurYX = SkBoxBlur_NEON<kY, kX>; 190 *boxBlurYX = SkBoxBlur_NEON<kY, kX>;
100 return true; 191 return true;
101 } 192 }
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