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| 1 /* |
| 2 * Copyright 2016 Google Inc. |
| 3 * |
| 4 * Use of this source code is governed by a BSD-style license that can be |
| 5 * found in the LICENSE file. |
| 6 */ |
| 7 |
| 8 #include "gm.h" |
| 9 #include "SkCanvas.h" |
| 10 #include "SkColor.h" |
| 11 #include "SkImage.h" |
| 12 #include "SkImageInfo.h" |
| 13 #include "SkLinearBitmapPipeline.h" |
| 14 #include "SkXfermode.h" |
| 15 #include "SkPM4fPriv.h" |
| 16 #include "SkShader.h" |
| 17 |
| 18 static void fill_in_bits(SkBitmap& bm, SkIRect ir, SkColor c, bool premul) { |
| 19 bm.allocN32Pixels(ir.width(), ir.height()); |
| 20 SkPixmap pm; |
| 21 bm.peekPixels(&pm); |
| 22 |
| 23 SkPMColor b = SkColorSetARGBMacro(255, 0, 0, 0); |
| 24 SkPMColor w; |
| 25 if (premul) { |
| 26 w = SkPreMultiplyColor(c); |
| 27 } else { |
| 28 w = SkPackARGB32NoCheck(SkColorGetA(c), SkColorGetR(c), SkColorGetG(c),
SkColorGetB(c)); |
| 29 } |
| 30 |
| 31 for (int y = 0; y < ir.height(); y++) { |
| 32 for (int x = 0; x < ir.width(); x++) { |
| 33 if ((x ^ y) & 16) { |
| 34 *pm.writable_addr32(x, y) = b; |
| 35 } else { |
| 36 *pm.writable_addr32(x, y) = w; |
| 37 } |
| 38 } |
| 39 } |
| 40 } |
| 41 |
| 42 static void draw_rect_orig(SkCanvas* canvas, const SkRect& r, SkColor c, const S
kMatrix* mat, bool useBilerp) { |
| 43 const SkIRect ir = r.round(); |
| 44 |
| 45 SkBitmap bmsrc; |
| 46 fill_in_bits(bmsrc, ir, c, true); |
| 47 |
| 48 SkPixmap pmsrc; |
| 49 bmsrc.peekPixels(&pmsrc); |
| 50 |
| 51 SkBitmap bmdst; |
| 52 bmdst.allocN32Pixels(ir.width(), ir.height()); |
| 53 bmdst.eraseColor(0xFFFFFFFF); |
| 54 SkPixmap pmdst; |
| 55 bmdst.peekPixels(&pmdst); |
| 56 |
| 57 SkImageInfo info = SkImageInfo::MakeN32Premul(ir.width(), ir.height(), kLine
ar_SkColorProfileType); |
| 58 |
| 59 SkAutoTUnref<SkImage> image{SkImage::NewRasterCopy( |
| 60 info, pmsrc.addr32(), pmsrc.rowBytes())}; |
| 61 SkPaint paint; |
| 62 int32_t storage[200]; |
| 63 SkShader* shader = image->newShader(SkShader::kClamp_TileMode, SkShader::kCl
amp_TileMode); |
| 64 if (useBilerp) { |
| 65 paint.setFilterQuality(SkFilterQuality::kLow_SkFilterQuality); |
| 66 } else { |
| 67 paint.setFilterQuality(SkFilterQuality::kNone_SkFilterQuality); |
| 68 } |
| 69 paint.setShader(shader)->unref(); |
| 70 SkASSERT(paint.getShader()->contextSize() <= sizeof(storage)); |
| 71 |
| 72 SkShader::Context* ctx = paint.getShader()->createContext( |
| 73 {paint, *mat, nullptr}, |
| 74 storage); |
| 75 |
| 76 for (int y = 0; y < ir.height(); y++) { |
| 77 ctx->shadeSpan(0, y, pmdst.writable_addr32(0, y), ir.width()); |
| 78 } |
| 79 |
| 80 canvas->drawBitmap(bmdst, r.left(), r.top(), nullptr); |
| 81 |
| 82 ctx->~Context(); |
| 83 |
| 84 } |
| 85 |
| 86 static void draw_rect_fp(SkCanvas* canvas, const SkRect& r, SkColor c, const SkM
atrix* mat, bool useBilerp) { |
| 87 const SkIRect ir = r.round(); |
| 88 |
| 89 SkBitmap bmsrc; |
| 90 fill_in_bits(bmsrc, ir, c, true); |
| 91 SkPixmap pmsrc; |
| 92 bmsrc.peekPixels(&pmsrc); |
| 93 |
| 94 SkBitmap bmdst; |
| 95 bmdst.allocN32Pixels(ir.width(), ir.height()); |
| 96 bmdst.eraseColor(0xFFFFFFFF); |
| 97 SkPixmap pmdst; |
| 98 bmdst.peekPixels(&pmdst); |
| 99 |
| 100 std::unique_ptr<SkLinearBitmapPipeline> pipeline; |
| 101 |
| 102 SkPM4f dstBits[ir.width()]; |
| 103 SkImageInfo info = SkImageInfo::MakeN32(ir.width(), ir.height(), kPremul_SkA
lphaType); |
| 104 |
| 105 SkMatrix inv; |
| 106 (void)mat->invert(&inv); |
| 107 pipeline.reset( |
| 108 new SkLinearBitmapPipeline{ |
| 109 inv, SkShader::kClamp_TileMode, SkShader::kClamp_TileMode, info, pms
rc.addr32()}); |
| 110 |
| 111 |
| 112 uint32_t flags = 0; |
| 113 //if (kSRGB_SkColorProfileType == profile) { |
| 114 //flags |= SkXfermode::kDstIsSRGB_PM4fFlag; |
| 115 //} |
| 116 const SkXfermode::PM4fState state { nullptr, flags }; |
| 117 auto procN = SkXfermode::GetPM4fProcN(SkXfermode::kSrcOver_Mode, flags); |
| 118 |
| 119 |
| 120 for (int y = 0; y < ir.height(); y++) { |
| 121 pipeline->shadeSpan4f(0, y, dstBits, ir.width()); |
| 122 procN(state, pmdst.writable_addr32(0, y), dstBits, ir.width(), nullptr); |
| 123 } |
| 124 |
| 125 canvas->drawBitmap(bmdst, r.left(), r.top(), nullptr); |
| 126 } |
| 127 |
| 128 static void draw_rect_none(SkCanvas* canvas, const SkRect& r, SkColor c) { |
| 129 const SkIRect ir = r.round(); |
| 130 |
| 131 SkBitmap bm; |
| 132 fill_in_bits(bm, ir, c, true); |
| 133 |
| 134 canvas->drawBitmap(bm, r.left(), r.top(), nullptr); |
| 135 } |
| 136 |
| 137 /* |
| 138 * Test SkXfer4fProcs directly for src-over, comparing them to current SkColor
blits. |
| 139 */ |
| 140 DEF_SIMPLE_GM(linear_pipeline, canvas, 580, 1400) { |
| 141 const int IW = 50; |
| 142 const SkScalar W = IW; |
| 143 const SkScalar H = 100; |
| 144 |
| 145 const SkColor colors[] = { |
| 146 0x880000FF, 0x8800FF00, 0x88FF0000, 0x88000000, |
| 147 SK_ColorBLUE, SK_ColorGREEN, SK_ColorRED, SK_ColorBLACK, |
| 148 }; |
| 149 |
| 150 canvas->translate(20, 20); |
| 151 |
| 152 SkMatrix mi = SkMatrix::I(); |
| 153 SkMatrix mt; |
| 154 mt.setTranslate(8, 8); |
| 155 SkMatrix ms; |
| 156 ms.setScale(2.7, 2.7); |
| 157 SkMatrix mr; |
| 158 mr.setRotate(10); |
| 159 |
| 160 const SkMatrix* mats[] = {nullptr, &mi, &mt, &ms, &mr}; |
| 161 |
| 162 const SkRect r = SkRect::MakeWH(W, H); |
| 163 bool useBilerp = false; |
| 164 while (true) { |
| 165 canvas->save(); |
| 166 for (auto mat : mats) { |
| 167 canvas->save(); |
| 168 for (SkColor c : colors) { |
| 169 if (mat == nullptr) { |
| 170 SkPaint p; |
| 171 p.setColor(c); |
| 172 draw_rect_none(canvas, r, c); |
| 173 canvas->translate(W + 20, 0); |
| 174 draw_rect_none(canvas, r, c); |
| 175 |
| 176 } else { |
| 177 draw_rect_orig(canvas, r, c, mat, useBilerp); |
| 178 canvas->translate(W + 20, 0); |
| 179 draw_rect_fp(canvas, r, c, mat, useBilerp); |
| 180 } |
| 181 canvas->translate(W + 20, 0); |
| 182 } |
| 183 canvas->restore(); |
| 184 canvas->translate(0, H + 20); |
| 185 } |
| 186 canvas->restore(); |
| 187 canvas->translate(0, (H + 20) * SK_ARRAY_COUNT(mats)); |
| 188 if (useBilerp) break; |
| 189 useBilerp = true; |
| 190 } |
| 191 } |
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