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| 1 // Copyright 2017 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. |
| 4 |
| 5 #include "cc/paint/record_paint_canvas.h" |
| 6 |
| 7 #include "base/memory/ptr_util.h" |
| 8 #include "cc/paint/display_item_list.h" |
| 9 #include "cc/paint/paint_op_buffer.h" |
| 10 #include "cc/paint/paint_record.h" |
| 11 #include "cc/paint/paint_recorder.h" |
| 12 #include "third_party/skia/include/core/SkAnnotation.h" |
| 13 #include "third_party/skia/include/core/SkMetaData.h" |
| 14 #include "third_party/skia/include/utils/SkNWayCanvas.h" |
| 15 |
| 16 namespace cc { |
| 17 |
| 18 RecordPaintCanvas::RecordPaintCanvas(PaintOpBuffer* buffer, |
| 19 const SkRect& cull_rect) |
| 20 : buffer_(buffer), |
| 21 canvas_(static_cast<int>(std::ceil(cull_rect.right())), |
| 22 static_cast<int>(std::ceil(cull_rect.bottom()))) { |
| 23 DCHECK(buffer_); |
| 24 |
| 25 // This is part of the "recording canvases have a size, but why" dance. |
| 26 // By creating a canvas of size (right x bottom) and then clipping it, |
| 27 // It makes getDeviceClipBounds return the original cull rect, which code |
| 28 // in GraphicsContextCanvas on Mac expects. (Just creating an SkNoDrawCanvas |
| 29 // with the cull_rect makes a canvas of size (width x height) instead |
| 30 // which is incorrect. SkRecorder cheats with private resetForNextCanvas. |
| 31 canvas_.clipRect(SkRect::Make(cull_rect.roundOut()), SkClipOp::kIntersect, |
| 32 false); |
| 33 } |
| 34 |
| 35 RecordPaintCanvas::~RecordPaintCanvas() = default; |
| 36 |
| 37 SkMetaData& RecordPaintCanvas::getMetaData() { |
| 38 // This could just be SkMetaData owned by RecordPaintCanvas, but since |
| 39 // SkCanvas already has one, we might as well use it directly. |
| 40 return canvas_.getMetaData(); |
| 41 } |
| 42 |
| 43 SkImageInfo RecordPaintCanvas::imageInfo() const { |
| 44 return canvas_.imageInfo(); |
| 45 } |
| 46 |
| 47 void RecordPaintCanvas::flush() { |
| 48 // This is a noop when recording. |
| 49 } |
| 50 |
| 51 int RecordPaintCanvas::save() { |
| 52 buffer_->push<SaveOp>(); |
| 53 return canvas_.save(); |
| 54 } |
| 55 |
| 56 int RecordPaintCanvas::saveLayer(const SkRect* bounds, |
| 57 const PaintFlags* flags) { |
| 58 if (flags) { |
| 59 if (flags->IsSimpleOpacity()) { |
| 60 // TODO(enne): maybe more callers should know this and call |
| 61 // saveLayerAlpha instead of needing to check here. |
| 62 uint8_t alpha = SkColorGetA(flags->getColor()); |
| 63 return saveLayerAlpha(bounds, alpha); |
| 64 } |
| 65 |
| 66 // TODO(enne): it appears that image filters affect matrices and color |
| 67 // matrices affect transparent flags on SkCanvas layers, but it's not clear |
| 68 // whether those are actually needed and we could just skip ToSkPaint here. |
| 69 buffer_->push<SaveLayerOp>(bounds, flags); |
| 70 const SkPaint& paint = ToSkPaint(*flags); |
| 71 return canvas_.saveLayer(bounds, &paint); |
| 72 } |
| 73 buffer_->push<SaveLayerOp>(bounds, flags); |
| 74 return canvas_.saveLayer(bounds, nullptr); |
| 75 } |
| 76 |
| 77 int RecordPaintCanvas::saveLayerAlpha(const SkRect* bounds, uint8_t alpha) { |
| 78 buffer_->push<SaveLayerAlphaOp>(bounds, alpha); |
| 79 return canvas_.saveLayerAlpha(bounds, alpha); |
| 80 } |
| 81 |
| 82 void RecordPaintCanvas::restore() { |
| 83 buffer_->push<RestoreOp>(); |
| 84 canvas_.restore(); |
| 85 } |
| 86 |
| 87 int RecordPaintCanvas::getSaveCount() const { |
| 88 return canvas_.getSaveCount(); |
| 89 } |
| 90 |
| 91 void RecordPaintCanvas::restoreToCount(int save_count) { |
| 92 DCHECK_GE(save_count, 1); |
| 93 int diff = canvas_.getSaveCount() - save_count; |
| 94 DCHECK_GE(diff, 0); |
| 95 for (int i = 0; i < diff; ++i) |
| 96 restore(); |
| 97 } |
| 98 |
| 99 void RecordPaintCanvas::translate(SkScalar dx, SkScalar dy) { |
| 100 buffer_->push<TranslateOp>(dx, dy); |
| 101 canvas_.translate(dx, dy); |
| 102 } |
| 103 |
| 104 void RecordPaintCanvas::scale(SkScalar sx, SkScalar sy) { |
| 105 buffer_->push<ScaleOp>(sx, sy); |
| 106 canvas_.scale(sx, sy); |
| 107 } |
| 108 |
| 109 void RecordPaintCanvas::rotate(SkScalar degrees) { |
| 110 buffer_->push<RotateOp>(degrees); |
| 111 canvas_.rotate(degrees); |
| 112 } |
| 113 |
| 114 void RecordPaintCanvas::concat(const SkMatrix& matrix) { |
| 115 buffer_->push<ConcatOp>(matrix); |
| 116 canvas_.concat(matrix); |
| 117 } |
| 118 |
| 119 void RecordPaintCanvas::setMatrix(const SkMatrix& matrix) { |
| 120 buffer_->push<SetMatrixOp>(matrix); |
| 121 canvas_.setMatrix(matrix); |
| 122 } |
| 123 |
| 124 void RecordPaintCanvas::clipRect(const SkRect& rect, |
| 125 SkClipOp op, |
| 126 bool antialias) { |
| 127 buffer_->push<ClipRectOp>(rect, op, antialias); |
| 128 canvas_.clipRect(rect, op, antialias); |
| 129 } |
| 130 |
| 131 void RecordPaintCanvas::clipRRect(const SkRRect& rrect, |
| 132 SkClipOp op, |
| 133 bool antialias) { |
| 134 // TODO(enne): does this happen? Should the caller know this? |
| 135 if (rrect.isRect()) { |
| 136 clipRect(rrect.getBounds(), op, antialias); |
| 137 return; |
| 138 } |
| 139 buffer_->push<ClipRRectOp>(rrect, op, antialias); |
| 140 canvas_.clipRRect(rrect, op, antialias); |
| 141 } |
| 142 |
| 143 void RecordPaintCanvas::clipPath(const SkPath& path, |
| 144 SkClipOp op, |
| 145 bool antialias) { |
| 146 if (!path.isInverseFillType() && canvas_.getTotalMatrix().rectStaysRect()) { |
| 147 // TODO(enne): do these cases happen? should the caller know that this isn't |
| 148 // a path? |
| 149 SkRect rect; |
| 150 if (path.isRect(&rect)) { |
| 151 clipRect(rect, op, antialias); |
| 152 return; |
| 153 } |
| 154 SkRRect rrect; |
| 155 if (path.isOval(&rect)) { |
| 156 rrect.setOval(rect); |
| 157 clipRRect(rrect, op, antialias); |
| 158 return; |
| 159 } |
| 160 if (path.isRRect(&rrect)) { |
| 161 clipRRect(rrect, op, antialias); |
| 162 return; |
| 163 } |
| 164 } |
| 165 |
| 166 buffer_->push<ClipPathOp>(path, op, antialias); |
| 167 canvas_.clipPath(path, op, antialias); |
| 168 return; |
| 169 } |
| 170 |
| 171 bool RecordPaintCanvas::quickReject(const SkRect& rect) const { |
| 172 return canvas_.quickReject(rect); |
| 173 } |
| 174 |
| 175 bool RecordPaintCanvas::quickReject(const SkPath& path) const { |
| 176 return canvas_.quickReject(path); |
| 177 } |
| 178 |
| 179 SkRect RecordPaintCanvas::getLocalClipBounds() const { |
| 180 return canvas_.getLocalClipBounds(); |
| 181 } |
| 182 |
| 183 bool RecordPaintCanvas::getLocalClipBounds(SkRect* bounds) const { |
| 184 return canvas_.getLocalClipBounds(bounds); |
| 185 } |
| 186 |
| 187 SkIRect RecordPaintCanvas::getDeviceClipBounds() const { |
| 188 return canvas_.getDeviceClipBounds(); |
| 189 } |
| 190 |
| 191 bool RecordPaintCanvas::getDeviceClipBounds(SkIRect* bounds) const { |
| 192 return canvas_.getDeviceClipBounds(bounds); |
| 193 } |
| 194 |
| 195 void RecordPaintCanvas::drawColor(SkColor color, SkBlendMode mode) { |
| 196 buffer_->push<DrawColorOp>(color, mode); |
| 197 } |
| 198 |
| 199 void RecordPaintCanvas::clear(SkColor color) { |
| 200 buffer_->push<DrawColorOp>(color, SkBlendMode::kSrc); |
| 201 } |
| 202 |
| 203 void RecordPaintCanvas::drawLine(SkScalar x0, |
| 204 SkScalar y0, |
| 205 SkScalar x1, |
| 206 SkScalar y1, |
| 207 const PaintFlags& flags) { |
| 208 buffer_->push<DrawLineOp>(x0, y0, x1, y1, flags); |
| 209 } |
| 210 |
| 211 void RecordPaintCanvas::drawRect(const SkRect& rect, const PaintFlags& flags) { |
| 212 buffer_->push<DrawRectOp>(rect, flags); |
| 213 } |
| 214 |
| 215 void RecordPaintCanvas::drawIRect(const SkIRect& rect, |
| 216 const PaintFlags& flags) { |
| 217 buffer_->push<DrawIRectOp>(rect, flags); |
| 218 } |
| 219 |
| 220 void RecordPaintCanvas::drawOval(const SkRect& oval, const PaintFlags& flags) { |
| 221 buffer_->push<DrawOvalOp>(oval, flags); |
| 222 } |
| 223 |
| 224 void RecordPaintCanvas::drawRRect(const SkRRect& rrect, |
| 225 const PaintFlags& flags) { |
| 226 buffer_->push<DrawRRectOp>(rrect, flags); |
| 227 } |
| 228 |
| 229 void RecordPaintCanvas::drawDRRect(const SkRRect& outer, |
| 230 const SkRRect& inner, |
| 231 const PaintFlags& flags) { |
| 232 if (outer.isEmpty()) |
| 233 return; |
| 234 if (inner.isEmpty()) { |
| 235 drawRRect(outer, flags); |
| 236 return; |
| 237 } |
| 238 buffer_->push<DrawDRRectOp>(outer, inner, flags); |
| 239 } |
| 240 |
| 241 void RecordPaintCanvas::drawCircle(SkScalar cx, |
| 242 SkScalar cy, |
| 243 SkScalar radius, |
| 244 const PaintFlags& flags) { |
| 245 buffer_->push<DrawCircleOp>(cx, cy, radius, flags); |
| 246 } |
| 247 |
| 248 void RecordPaintCanvas::drawArc(const SkRect& oval, |
| 249 SkScalar start_angle, |
| 250 SkScalar sweep_angle, |
| 251 bool use_center, |
| 252 const PaintFlags& flags) { |
| 253 buffer_->push<DrawArcOp>(oval, start_angle, sweep_angle, use_center, flags); |
| 254 } |
| 255 |
| 256 void RecordPaintCanvas::drawRoundRect(const SkRect& rect, |
| 257 SkScalar rx, |
| 258 SkScalar ry, |
| 259 const PaintFlags& flags) { |
| 260 // TODO(enne): move this into base class? |
| 261 if (rx > 0 && ry > 0) { |
| 262 SkRRect rrect; |
| 263 rrect.setRectXY(rect, rx, ry); |
| 264 drawRRect(rrect, flags); |
| 265 } else { |
| 266 drawRect(rect, flags); |
| 267 } |
| 268 } |
| 269 |
| 270 void RecordPaintCanvas::drawPath(const SkPath& path, const PaintFlags& flags) { |
| 271 buffer_->push<DrawPathOp>(path, flags); |
| 272 } |
| 273 |
| 274 void RecordPaintCanvas::drawImage(const PaintImage& image, |
| 275 SkScalar left, |
| 276 SkScalar top, |
| 277 const PaintFlags* flags) { |
| 278 buffer_->push<DrawImageOp>(image, left, top, flags); |
| 279 } |
| 280 |
| 281 void RecordPaintCanvas::drawImageRect(const PaintImage& image, |
| 282 const SkRect& src, |
| 283 const SkRect& dst, |
| 284 const PaintFlags* flags, |
| 285 SrcRectConstraint constraint) { |
| 286 buffer_->push<DrawImageRectOp>(image, src, dst, flags, constraint); |
| 287 } |
| 288 |
| 289 void RecordPaintCanvas::drawBitmap(const SkBitmap& bitmap, |
| 290 SkScalar left, |
| 291 SkScalar top, |
| 292 const PaintFlags* flags) { |
| 293 // TODO(enne): Move into base class? |
| 294 if (bitmap.drawsNothing()) |
| 295 return; |
| 296 drawImage(PaintImage(SkImage::MakeFromBitmap(bitmap), |
| 297 PaintImage::AnimationType::UNKNOWN, |
| 298 PaintImage::CompletionState::UNKNOWN), |
| 299 left, top, flags); |
| 300 } |
| 301 |
| 302 void RecordPaintCanvas::drawText(const void* text, |
| 303 size_t byte_length, |
| 304 SkScalar x, |
| 305 SkScalar y, |
| 306 const PaintFlags& flags) { |
| 307 buffer_->push_with_data<DrawTextOp>(text, byte_length, x, y, flags); |
| 308 } |
| 309 |
| 310 void RecordPaintCanvas::drawPosText(const void* text, |
| 311 size_t byte_length, |
| 312 const SkPoint pos[], |
| 313 const PaintFlags& flags) { |
| 314 size_t count = ToSkPaint(flags).countText(text, byte_length); |
| 315 buffer_->push_with_data_array<DrawPosTextOp>(text, byte_length, pos, count, |
| 316 flags); |
| 317 } |
| 318 |
| 319 void RecordPaintCanvas::drawTextBlob(sk_sp<SkTextBlob> blob, |
| 320 SkScalar x, |
| 321 SkScalar y, |
| 322 const PaintFlags& flags) { |
| 323 buffer_->push<DrawTextBlobOp>(blob, x, y, flags); |
| 324 } |
| 325 |
| 326 void RecordPaintCanvas::drawDisplayItemList( |
| 327 scoped_refptr<DisplayItemList> list) { |
| 328 buffer_->push<DrawDisplayItemListOp>(list); |
| 329 } |
| 330 |
| 331 void RecordPaintCanvas::drawPicture(sk_sp<const PaintRecord> record) { |
| 332 // TODO(enne): If this is small, maybe flatten it? |
| 333 buffer_->push<DrawRecordOp>(record); |
| 334 } |
| 335 |
| 336 bool RecordPaintCanvas::isClipEmpty() const { |
| 337 return canvas_.isClipEmpty(); |
| 338 } |
| 339 |
| 340 bool RecordPaintCanvas::isClipRect() const { |
| 341 return canvas_.isClipRect(); |
| 342 } |
| 343 |
| 344 const SkMatrix& RecordPaintCanvas::getTotalMatrix() const { |
| 345 return canvas_.getTotalMatrix(); |
| 346 } |
| 347 |
| 348 void RecordPaintCanvas::Annotate(AnnotationType type, |
| 349 const SkRect& rect, |
| 350 sk_sp<SkData> data) { |
| 351 buffer_->push<AnnotateOp>(type, rect, data); |
| 352 } |
| 353 |
| 354 void RecordPaintCanvas::PlaybackPaintRecord(sk_sp<const PaintRecord> record) { |
| 355 drawPicture(record); |
| 356 } |
| 357 |
| 358 } // namespace cc |
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