blob: fda848835f37bc5fc5e2a7de99d4c0487ef76989 [file] [log] [blame]
commit-bot@chromium.orgc4b21e62014-04-11 18:33:31 +00001/*
2 * Copyright 2014 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
commit-bot@chromium.org506db0b2014-04-08 23:31:35 +00008#include "SkRecordDraw.h"
mtklein5ad6ee12014-08-11 08:08:43 -07009#include "SkTSort.h"
commit-bot@chromium.org506db0b2014-04-08 23:31:35 +000010
mtklein5ad6ee12014-08-11 08:08:43 -070011void SkRecordDraw(const SkRecord& record,
12 SkCanvas* canvas,
13 const SkBBoxHierarchy* bbh,
14 SkDrawPictureCallback* callback) {
Mike Kleinc11530e2014-06-24 11:29:06 -040015 SkAutoCanvasRestore saveRestore(canvas, true /*save now, restore at exit*/);
mtklein5ad6ee12014-08-11 08:08:43 -070016
17 if (NULL != bbh) {
mtklein5ad6ee12014-08-11 08:08:43 -070018 // Draw only ops that affect pixels in the canvas's current clip.
mtkleina723b572014-08-15 11:49:49 -070019 SkIRect query;
mtklein3e8232b2014-08-18 13:39:11 -070020
21 // The SkRecord and BBH were recorded in identity space. This canvas
22 // is not necessarily in that same space. getClipBounds() returns us
23 // this canvas' clip bounds transformed back into identity space, which
24 // lets us query the BBH.
25 SkRect clipBounds = { 0, 0, 0, 0 };
26 (void)canvas->getClipBounds(&clipBounds);
mtkleina723b572014-08-15 11:49:49 -070027 clipBounds.roundOut(&query);
mtklein3e8232b2014-08-18 13:39:11 -070028
mtklein5ad6ee12014-08-11 08:08:43 -070029 SkTDArray<void*> ops;
mtkleina723b572014-08-15 11:49:49 -070030 bbh->search(query, &ops);
mtklein5ad6ee12014-08-11 08:08:43 -070031
mtklein5ad6ee12014-08-11 08:08:43 -070032 SkRecords::Draw draw(canvas);
33 for (int i = 0; i < ops.count(); i++) {
34 if (NULL != callback && callback->abortDrawing()) {
35 return;
36 }
37 record.visit<void>((uintptr_t)ops[i], draw); // See FillBounds below.
38 }
39 } else {
40 // Draw all ops.
41 for (SkRecords::Draw draw(canvas); draw.index() < record.count(); draw.next()) {
42 if (NULL != callback && callback->abortDrawing()) {
43 return;
44 }
45 record.visit<void>(draw.index(), draw);
46 }
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000047 }
commit-bot@chromium.org27f6b0d2014-05-09 14:59:29 +000048}
commit-bot@chromium.orgd9ce2be2014-04-09 23:30:28 +000049
commit-bot@chromium.org27f6b0d2014-05-09 14:59:29 +000050namespace SkRecords {
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000051
mtklein7cdc1ee2014-07-07 10:41:04 -070052// FIXME: SkBitmaps are stateful, so we need to copy them to play back in multiple threads.
53static SkBitmap shallow_copy(const SkBitmap& bitmap) {
54 return bitmap;
55}
56
commit-bot@chromium.org2e0c32a2014-04-28 16:19:45 +000057// NoOps draw nothing.
commit-bot@chromium.org27f6b0d2014-05-09 14:59:29 +000058template <> void Draw::draw(const NoOp&) {}
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000059
commit-bot@chromium.org27f6b0d2014-05-09 14:59:29 +000060#define DRAW(T, call) template <> void Draw::draw(const T& r) { fCanvas->call; }
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000061DRAW(Restore, restore());
Florin Malita5f6102d2014-06-30 10:13:28 -040062DRAW(Save, save());
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000063DRAW(SaveLayer, saveLayer(r.bounds, r.paint, r.flags));
64DRAW(PopCull, popCull());
commit-bot@chromium.org88c3e272014-04-22 16:57:20 +000065DRAW(PushCull, pushCull(r.rect));
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000066DRAW(Clear, clear(r.color));
67DRAW(Concat, concat(r.matrix));
commit-bot@chromium.org99bd7d82014-05-19 15:51:12 +000068DRAW(SetMatrix, setMatrix(SkMatrix::Concat(fInitialCTM, r.matrix)));
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000069
70DRAW(ClipPath, clipPath(r.path, r.op, r.doAA));
71DRAW(ClipRRect, clipRRect(r.rrect, r.op, r.doAA));
72DRAW(ClipRect, clipRect(r.rect, r.op, r.doAA));
73DRAW(ClipRegion, clipRegion(r.region, r.op));
74
mtklein7cdc1ee2014-07-07 10:41:04 -070075DRAW(DrawBitmap, drawBitmap(shallow_copy(r.bitmap), r.left, r.top, r.paint));
76DRAW(DrawBitmapMatrix, drawBitmapMatrix(shallow_copy(r.bitmap), r.matrix, r.paint));
77DRAW(DrawBitmapNine, drawBitmapNine(shallow_copy(r.bitmap), r.center, r.dst, r.paint));
78DRAW(DrawBitmapRectToRect,
79 drawBitmapRectToRect(shallow_copy(r.bitmap), r.src, r.dst, r.paint, r.flags));
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000080DRAW(DrawDRRect, drawDRRect(r.outer, r.inner, r.paint));
81DRAW(DrawOval, drawOval(r.oval, r.paint));
82DRAW(DrawPaint, drawPaint(r.paint));
83DRAW(DrawPath, drawPath(r.path, r.paint));
dandovb3c9d1c2014-08-12 08:34:29 -070084DRAW(DrawPatch, drawPatch(r.cubics, r.colors, r.texCoords, r.xmode.get(), r.paint));
reedd5fa1a42014-08-09 11:08:05 -070085DRAW(DrawPicture, drawPicture(r.picture, r.matrix, r.paint));
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000086DRAW(DrawPoints, drawPoints(r.mode, r.count, r.pts, r.paint));
87DRAW(DrawPosText, drawPosText(r.text, r.byteLength, r.pos, r.paint));
88DRAW(DrawPosTextH, drawPosTextH(r.text, r.byteLength, r.xpos, r.y, r.paint));
89DRAW(DrawRRect, drawRRect(r.rrect, r.paint));
90DRAW(DrawRect, drawRect(r.rect, r.paint));
mtklein7cdc1ee2014-07-07 10:41:04 -070091DRAW(DrawSprite, drawSprite(shallow_copy(r.bitmap), r.left, r.top, r.paint));
commit-bot@chromium.org73b55eb2014-04-14 20:35:12 +000092DRAW(DrawText, drawText(r.text, r.byteLength, r.x, r.y, r.paint));
93DRAW(DrawTextOnPath, drawTextOnPath(r.text, r.byteLength, r.path, r.matrix, r.paint));
94DRAW(DrawVertices, drawVertices(r.vmode, r.vertexCount, r.vertices, r.texs, r.colors,
95 r.xmode.get(), r.indices, r.indexCount, r.paint));
96#undef DRAW
97
mtklein5ad6ee12014-08-11 08:08:43 -070098
99// This is an SkRecord visitor that fills an SkBBoxHierarchy.
mtklein828ce1f2014-08-13 12:58:45 -0700100//
101// The interesting part here is how to calculate bounds for ops which don't
102// have intrinsic bounds. What is the bounds of a Save or a Translate?
103//
104// We answer this by thinking about a particular definition of bounds: if I
105// don't execute this op, pixels in this rectangle might draw incorrectly. So
106// the bounds of a Save, a Translate, a Restore, etc. are the union of the
107// bounds of Draw* ops that they might have an effect on. For any given
108// Save/Restore block, the bounds of the Save, the Restore, and any other
109// non-drawing ("control") ops inside are exactly the union of the bounds of
110// the drawing ops inside that block.
111//
112// To implement this, we keep a stack of active Save blocks. As we consume ops
113// inside the Save/Restore block, drawing ops are unioned with the bounds of
114// the block, and control ops are stashed away for later. When we finish the
115// block with a Restore, our bounds are complete, and we go back and fill them
116// in for all the control ops we stashed away.
mtklein5ad6ee12014-08-11 08:08:43 -0700117class FillBounds : SkNoncopyable {
118public:
mtklein828ce1f2014-08-13 12:58:45 -0700119 FillBounds(const SkRecord& record, SkBBoxHierarchy* bbh) : fBounds(record.count()) {
120 // Calculate bounds for all ops. This won't go quite in order, so we'll need
121 // to store the bounds separately then feed them in to the BBH later in order.
mtkleina723b572014-08-15 11:49:49 -0700122 const SkIRect largest = SkIRect::MakeLargest();
mtklein6cfa73a2014-08-13 13:33:49 -0700123 fCTM.setIdentity();
mtkleina723b572014-08-15 11:49:49 -0700124 fCurrentClipBounds = largest;
mtklein828ce1f2014-08-13 12:58:45 -0700125 for (fCurrentOp = 0; fCurrentOp < record.count(); fCurrentOp++) {
126 record.visit<void>(fCurrentOp, *this);
127 }
mtklein5ad6ee12014-08-11 08:08:43 -0700128
mtklein828ce1f2014-08-13 12:58:45 -0700129 // If we have any lingering unpaired Saves, simulate restores to make
130 // sure all ops in those Save blocks have their bounds calculated.
131 while (!fSaveStack.isEmpty()) {
132 this->popSaveBlock();
133 }
134
135 // Any control ops not part of any Save/Restore block draw everywhere.
136 while (!fControlIndices.isEmpty()) {
mtkleina723b572014-08-15 11:49:49 -0700137 this->popControl(largest);
mtklein828ce1f2014-08-13 12:58:45 -0700138 }
139
140 // Finally feed all stored bounds into the BBH. They'll be returned in this order.
141 SkASSERT(NULL != bbh);
142 for (uintptr_t i = 0; i < record.count(); i++) {
143 if (!fBounds[i].isEmpty()) {
144 bbh->insert((void*)i, fBounds[i], true/*ok to defer*/);
145 }
146 }
147 bbh->flushDeferredInserts();
148 }
mtklein5ad6ee12014-08-11 08:08:43 -0700149
mtkleina723b572014-08-15 11:49:49 -0700150 template <typename T> void operator()(const T& op) {
151 this->updateCTM(op);
152 this->updateClipBounds(op);
153 this->trackBounds(op);
mtklein5ad6ee12014-08-11 08:08:43 -0700154 }
155
156private:
mtklein828ce1f2014-08-13 12:58:45 -0700157 struct SaveBounds {
mtkleina723b572014-08-15 11:49:49 -0700158 int controlOps; // Number of control ops in this Save block, including the Save.
159 SkIRect bounds; // Bounds of everything in the block.
160 const SkPaint* paint; // Unowned. If set, adjusts the bounds of all ops in this block.
mtklein828ce1f2014-08-13 12:58:45 -0700161 };
162
mtklein6cfa73a2014-08-13 13:33:49 -0700163 template <typename T> void updateCTM(const T&) { /* most ops don't change the CTM */ }
mtkleina723b572014-08-15 11:49:49 -0700164 void updateCTM(const Restore& op) { fCTM = op.matrix; }
165 void updateCTM(const SetMatrix& op) { fCTM = op.matrix; }
166 void updateCTM(const Concat& op) { fCTM.preConcat(op.matrix); }
167
168 template <typename T> void updateClipBounds(const T&) { /* most ops don't change the clip */ }
169 // Each of these devBounds fields is the state of the device bounds after the op.
170 // So Restore's devBounds are those bounds saved by its paired Save or SaveLayer.
171 void updateClipBounds(const Restore& op) { fCurrentClipBounds = op.devBounds; }
172 void updateClipBounds(const ClipPath& op) { fCurrentClipBounds = op.devBounds; }
173 void updateClipBounds(const ClipRRect& op) { fCurrentClipBounds = op.devBounds; }
174 void updateClipBounds(const ClipRect& op) { fCurrentClipBounds = op.devBounds; }
175 void updateClipBounds(const ClipRegion& op) { fCurrentClipBounds = op.devBounds; }
176 void updateClipBounds(const SaveLayer& op) {
177 if (op.bounds) {
178 fCurrentClipBounds.intersect(this->adjustAndMap(*op.bounds, op.paint));
179 }
180 }
mtklein6cfa73a2014-08-13 13:33:49 -0700181
mtklein828ce1f2014-08-13 12:58:45 -0700182 // The bounds of these ops must be calculated when we hit the Restore
183 // from the bounds of the ops in the same Save block.
mtkleina723b572014-08-15 11:49:49 -0700184 void trackBounds(const Save&) { this->pushSaveBlock(NULL); }
mtklein828ce1f2014-08-13 12:58:45 -0700185 // TODO: bounds of SaveLayer may be more complicated?
mtkleina723b572014-08-15 11:49:49 -0700186 void trackBounds(const SaveLayer& op) { this->pushSaveBlock(op.paint); }
187 void trackBounds(const Restore&) { fBounds[fCurrentOp] = this->popSaveBlock(); }
mtklein828ce1f2014-08-13 12:58:45 -0700188
189 void trackBounds(const Concat&) { this->pushControl(); }
190 void trackBounds(const SetMatrix&) { this->pushControl(); }
191 void trackBounds(const ClipRect&) { this->pushControl(); }
192 void trackBounds(const ClipRRect&) { this->pushControl(); }
193 void trackBounds(const ClipPath&) { this->pushControl(); }
194 void trackBounds(const ClipRegion&) { this->pushControl(); }
195
196 // For all other ops, we can calculate and store the bounds directly now.
197 template <typename T> void trackBounds(const T& op) {
198 fBounds[fCurrentOp] = this->bounds(op);
199 this->updateSaveBounds(fBounds[fCurrentOp]);
mtklein5ad6ee12014-08-11 08:08:43 -0700200 }
201
mtkleina723b572014-08-15 11:49:49 -0700202 void pushSaveBlock(const SkPaint* paint) {
mtklein828ce1f2014-08-13 12:58:45 -0700203 // Starting a new Save block. Push a new entry to represent that.
mtkleina723b572014-08-15 11:49:49 -0700204 SaveBounds sb = { 0, SkIRect::MakeEmpty(), paint };
mtklein828ce1f2014-08-13 12:58:45 -0700205 fSaveStack.push(sb);
206 this->pushControl();
207 }
208
209 SkIRect popSaveBlock() {
210 // We're done the Save block. Apply the block's bounds to all control ops inside it.
211 SaveBounds sb;
212 fSaveStack.pop(&sb);
213 while (sb.controlOps --> 0) {
214 this->popControl(sb.bounds);
215 }
216
217 // This whole Save block may be part another Save block.
218 this->updateSaveBounds(sb.bounds);
219
220 // If called from a real Restore (not a phony one for balance), it'll need the bounds.
221 return sb.bounds;
222 }
223
224 void pushControl() {
225 fControlIndices.push(fCurrentOp);
226 if (!fSaveStack.isEmpty()) {
227 fSaveStack.top().controlOps++;
228 }
229 }
230
231 void popControl(const SkIRect& bounds) {
232 fBounds[fControlIndices.top()] = bounds;
233 fControlIndices.pop();
234 }
235
236 void updateSaveBounds(const SkIRect& bounds) {
237 // If we're in a Save block, expand its bounds to cover these bounds too.
238 if (!fSaveStack.isEmpty()) {
239 fSaveStack.top().bounds.join(bounds);
240 }
241 }
242
mtklein62b67ae2014-08-18 11:10:37 -0700243 // TODO(mtklein): Remove this default when done bounding all ops.
mtklein479601b2014-08-18 08:45:33 -0700244 template <typename T> SkIRect bounds(const T&) const { return fCurrentClipBounds; }
245 SkIRect bounds(const Clear&) const { return SkIRect::MakeLargest(); } // Ignores the clip
246 SkIRect bounds(const NoOp&) const { return SkIRect::MakeEmpty(); } // NoOps don't draw.
mtklein828ce1f2014-08-13 12:58:45 -0700247
mtklein62b67ae2014-08-18 11:10:37 -0700248 SkIRect bounds(const DrawRect& op) const { return this->adjustAndMap(op.rect, &op.paint); }
249 SkIRect bounds(const DrawOval& op) const { return this->adjustAndMap(op.oval, &op.paint); }
250 SkIRect bounds(const DrawRRect& op) const {
251 return this->adjustAndMap(op.rrect.rect(), &op.paint);
252 }
253 SkIRect bounds(const DrawDRRect& op) const {
254 return this->adjustAndMap(op.outer.rect(), &op.paint);
255 }
256
257 SkIRect bounds(const DrawBitmapRectToRect& op) const {
258 return this->adjustAndMap(op.dst, op.paint);
259 }
260 SkIRect bounds(const DrawBitmapNine& op) const {
261 return this->adjustAndMap(op.dst, op.paint);
262 }
263 SkIRect bounds(const DrawBitmap& op) const {
264 const SkBitmap& bm = op.bitmap;
265 return this->adjustAndMap(SkRect::MakeXYWH(op.left, op.top, bm.width(), bm.height()),
266 op.paint);
267 }
268 SkIRect bounds(const DrawBitmapMatrix& op) const {
269 const SkBitmap& bm = op.bitmap;
270 SkRect dst = SkRect::MakeWH(bm.width(), bm.height());
271 op.matrix.mapRect(&dst);
272 return this->adjustAndMap(dst, op.paint);
273 }
274
275 SkIRect bounds(const DrawPath& op) const {
276 return op.path.isInverseFillType() ? fCurrentClipBounds
277 : this->adjustAndMap(op.path.getBounds(), &op.paint);
278 }
279 SkIRect bounds(const DrawPoints& op) const {
280 SkRect dst;
281 dst.set(op.pts, op.count);
282
283 // Pad the bounding box a little to make sure hairline points' bounds aren't empty.
284 SkScalar stroke = SkMaxScalar(op.paint.getStrokeWidth(), 0.01f);
285 dst.outset(stroke/2, stroke/2);
286
287 return this->adjustAndMap(dst, &op.paint);
288 }
289
290 SkIRect bounds(const DrawPosText& op) const {
291 const int N = op.paint.countText(op.text, op.byteLength);
292 if (N == 0) {
293 return SkIRect::MakeEmpty();
294 }
295
296 SkRect dst;
297 dst.set(op.pos, op.paint.countText(op.text, N));
298 AdjustTextForFontMetrics(&dst, op.paint);
299 return this->adjustAndMap(dst, &op.paint);
300 }
301 SkIRect bounds(const DrawPosTextH& op) const {
302 const int N = op.paint.countText(op.text, op.byteLength);
303 if (N == 0) {
304 return SkIRect::MakeEmpty();
305 }
306
307 SkScalar left = op.xpos[0], right = op.xpos[0];
308 for (int i = 1; i < N; i++) {
309 left = SkMinScalar(left, op.xpos[i]);
310 right = SkMaxScalar(right, op.xpos[i]);
311 }
312 SkRect dst = { left, op.y, right, op.y };
313 AdjustTextForFontMetrics(&dst, op.paint);
314 return this->adjustAndMap(dst, &op.paint);
315 }
316
317 static void AdjustTextForFontMetrics(SkRect* rect, const SkPaint& paint) {
318 // FIXME: These bounds should be tight (and correct), but reading SkFontMetrics is likely
319 // a performance bottleneck. It's safe to overapproximate these metrics for speed. E.g.
320 // fTop <= 1.5 * paint.getTextSize(), fXMax <= 8 * fTop, etc.
321 SkPaint::FontMetrics metrics;
322 paint.getFontMetrics(&metrics);
323 rect->fLeft += metrics.fXMin;
324 rect->fTop += metrics.fTop;
325 rect->fRight += metrics.fXMax;
326 rect->fBottom += metrics.fBottom;
327 }
328
mtklein479601b2014-08-18 08:45:33 -0700329 // Returns true if rect was meaningfully adjusted for the effects of paint,
330 // false if the paint could affect the rect in unknown ways.
331 static bool AdjustForPaint(const SkPaint* paint, SkRect* rect) {
mtkleina723b572014-08-15 11:49:49 -0700332 if (paint) {
333 if (paint->canComputeFastBounds()) {
mtklein479601b2014-08-18 08:45:33 -0700334 *rect = paint->computeFastBounds(*rect, rect);
335 return true;
mtkleina723b572014-08-15 11:49:49 -0700336 }
mtklein479601b2014-08-18 08:45:33 -0700337 return false;
338 }
339 return true;
340 }
341
342 // Adjust rect for all paints that may affect its geometry, then map it to device space.
343 SkIRect adjustAndMap(SkRect rect, const SkPaint* paint) const {
344 // Inverted rectangles really confuse our BBHs.
345 rect.sort();
346
347 // Adjust the rect for its own paint.
348 if (!AdjustForPaint(paint, &rect)) {
349 // The paint could do anything to our bounds. The only safe answer is the current clip.
350 return fCurrentClipBounds;
mtkleina723b572014-08-15 11:49:49 -0700351 }
352
353 // Adjust rect for all the paints from the SaveLayers we're inside.
mtkleina723b572014-08-15 11:49:49 -0700354 for (int i = fSaveStack.count() - 1; i >= 0; i--) {
mtklein479601b2014-08-18 08:45:33 -0700355 if (!AdjustForPaint(fSaveStack[i].paint, &rect)) {
356 // Same deal as above.
357 return fCurrentClipBounds;
mtkleina723b572014-08-15 11:49:49 -0700358 }
359 }
360
361 // Map the rect back to device space.
362 fCTM.mapRect(&rect);
363 SkIRect devRect;
364 rect.roundOut(&devRect);
mtklein479601b2014-08-18 08:45:33 -0700365
366 // Nothing can draw outside the current clip.
367 // (Only bounded ops call into this method, so oddballs like Clear don't matter here.)
368 devRect.intersect(fCurrentClipBounds);
mtkleina723b572014-08-15 11:49:49 -0700369 return devRect;
370 }
371
372 // Conservative device bounds for each op in the SkRecord.
373 SkAutoTMalloc<SkIRect> fBounds;
374
375 // We walk fCurrentOp through the SkRecord, as we go using updateCTM()
376 // and updateClipBounds() to maintain the exact CTM (fCTM) and conservative
377 // device bounds of the current clip (fCurrentClipBounds).
mtklein828ce1f2014-08-13 12:58:45 -0700378 unsigned fCurrentOp;
mtkleina723b572014-08-15 11:49:49 -0700379 SkMatrix fCTM;
380 SkIRect fCurrentClipBounds;
381
382 // Used to track the bounds of Save/Restore blocks and the control ops inside them.
mtklein828ce1f2014-08-13 12:58:45 -0700383 SkTDArray<SaveBounds> fSaveStack;
384 SkTDArray<unsigned> fControlIndices;
mtklein5ad6ee12014-08-11 08:08:43 -0700385};
386
commit-bot@chromium.org27f6b0d2014-05-09 14:59:29 +0000387} // namespace SkRecords
mtklein5ad6ee12014-08-11 08:08:43 -0700388
389void SkRecordFillBounds(const SkRecord& record, SkBBoxHierarchy* bbh) {
mtklein828ce1f2014-08-13 12:58:45 -0700390 SkRecords::FillBounds(record, bbh);
mtklein5ad6ee12014-08-11 08:08:43 -0700391}