1 /* 2 * Copyright 2011 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 "SampleApp.h" 9 10 #include "OverView.h" 11 #include "Resources.h" 12 #include "SampleCode.h" 13 #include "SkAnimTimer.h" 14 #include "SkCanvas.h" 15 #include "SkCommandLineFlags.h" 16 #include "SkData.h" 17 #include "SkDevice.h" 18 #include "SkDocument.h" 19 #include "SkGraphics.h" 20 #include "SkImageEncoder.h" 21 #include "SkOSFile.h" 22 #include "SkPaint.h" 23 #include "SkPaintFilterCanvas.h" 24 #include "SkPicture.h" 25 #include "SkPictureRecorder.h" 26 #include "SkStream.h" 27 #include "SkSurface.h" 28 #include "SkTemplates.h" 29 #include "SkTSort.h" 30 #include "SkTime.h" 31 #include "SkTypeface.h" 32 #include "SkWindow.h" 33 #include "sk_tool_utils.h" 34 35 #if SK_SUPPORT_GPU 36 #include "gl/GrGLInterface.h" 37 #include "gl/GrGLUtil.h" 38 #include "GrRenderTarget.h" 39 #include "GrContext.h" 40 #include "SkGpuDevice.h" 41 #else 42 class GrContext; 43 #endif 44 45 const struct { 46 SkColorType fColorType; 47 SkColorProfileType fProfileType; 48 const char* fName; 49 } gConfig[] = { 50 { kN32_SkColorType, kLinear_SkColorProfileType, "L32" }, 51 { kN32_SkColorType, kSRGB_SkColorProfileType, "S32" }, 52 { kRGBA_F16_SkColorType, kLinear_SkColorProfileType, "F16" }, 53 }; 54 55 static const char* find_config_name(const SkImageInfo& info) { 56 for (const auto& config : gConfig) { 57 if (config.fColorType == info.colorType() && config.fProfileType == info.profileType()) { 58 return config.fName; 59 } 60 } 61 return "???"; 62 } 63 64 // Should be 3x + 1 65 #define kMaxFatBitsScale 28 66 67 extern SampleView* CreateSamplePictFileView(const char filename[]); 68 69 class PictFileFactory : public SkViewFactory { 70 SkString fFilename; 71 public: 72 PictFileFactory(const SkString& filename) : fFilename(filename) {} 73 SkView* operator() () const override { 74 return CreateSamplePictFileView(fFilename.c_str()); 75 } 76 }; 77 78 #ifdef SAMPLE_PDF_FILE_VIEWER 79 extern SampleView* CreateSamplePdfFileViewer(const char filename[]); 80 81 class PdfFileViewerFactory : public SkViewFactory { 82 SkString fFilename; 83 public: 84 PdfFileViewerFactory(const SkString& filename) : fFilename(filename) {} 85 SkView* operator() () const override { 86 return CreateSamplePdfFileViewer(fFilename.c_str()); 87 } 88 }; 89 #endif // SAMPLE_PDF_FILE_VIEWER 90 91 #if SK_COMMAND_BUFFER 92 #define DEFAULT_TO_COMMAND_BUFFER 1 93 #elif SK_ANGLE 94 //#define DEFAULT_TO_ANGLE 1 95 #else 96 #define DEFAULT_TO_GPU 0 // if 1 default rendering is on GPU 97 #endif 98 99 #define ANIMATING_EVENTTYPE "nextSample" 100 #define ANIMATING_DELAY 250 101 102 #ifdef SK_DEBUG 103 #define FPS_REPEAT_MULTIPLIER 1 104 #else 105 #define FPS_REPEAT_MULTIPLIER 10 106 #endif 107 #define FPS_REPEAT_COUNT (10 * FPS_REPEAT_MULTIPLIER) 108 109 static SampleWindow* gSampleWindow; 110 111 static bool gShowGMBounds; 112 113 static void post_event_to_sink(SkEvent* evt, SkEventSink* sink) { 114 evt->setTargetID(sink->getSinkID())->post(); 115 } 116 117 static SkAnimTimer gAnimTimer; 118 119 /////////////////////////////////////////////////////////////////////////////// 120 121 static const char* skip_until(const char* str, const char* skip) { 122 if (!str) { 123 return nullptr; 124 } 125 return strstr(str, skip); 126 } 127 128 static const char* skip_past(const char* str, const char* skip) { 129 const char* found = skip_until(str, skip); 130 if (!found) { 131 return nullptr; 132 } 133 return found + strlen(skip); 134 } 135 136 static const char* gPrefFileName = "sampleapp_prefs.txt"; 137 138 static bool readTitleFromPrefs(SkString* title) { 139 SkFILEStream stream(gPrefFileName); 140 if (!stream.isValid()) { 141 return false; 142 } 143 144 size_t len = stream.getLength(); 145 SkString data(len); 146 stream.read(data.writable_str(), len); 147 const char* s = data.c_str(); 148 149 s = skip_past(s, "curr-slide-title"); 150 s = skip_past(s, "="); 151 s = skip_past(s, "\""); 152 const char* stop = skip_until(s, "\""); 153 if (stop > s) { 154 title->set(s, stop - s); 155 return true; 156 } 157 return false; 158 } 159 160 static void writeTitleToPrefs(const char* title) { 161 SkFILEWStream stream(gPrefFileName); 162 SkString data; 163 data.printf("curr-slide-title = \"%s\"\n", title); 164 stream.write(data.c_str(), data.size()); 165 } 166 167 /////////////////////////////////////////////////////////////////////////////// 168 169 class SampleWindow::DefaultDeviceManager : public SampleWindow::DeviceManager { 170 public: 171 172 DefaultDeviceManager() { 173 #if SK_SUPPORT_GPU 174 fCurContext = nullptr; 175 fCurIntf = nullptr; 176 fCurRenderTarget = nullptr; 177 fMSAASampleCount = 0; 178 #endif 179 fBackend = kNone_BackEndType; 180 } 181 182 virtual ~DefaultDeviceManager() { 183 #if SK_SUPPORT_GPU 184 SkSafeUnref(fCurContext); 185 SkSafeUnref(fCurIntf); 186 SkSafeUnref(fCurRenderTarget); 187 #endif 188 } 189 190 void setUpBackend(SampleWindow* win, int msaaSampleCount) override { 191 SkASSERT(kNone_BackEndType == fBackend); 192 193 fBackend = kNone_BackEndType; 194 195 #if SK_SUPPORT_GPU 196 switch (win->getDeviceType()) { 197 case kRaster_DeviceType: // fallthrough 198 case kGPU_DeviceType: 199 // all these guys use the native backend 200 fBackend = kNativeGL_BackEndType; 201 break; 202 #if SK_ANGLE 203 case kANGLE_DeviceType: 204 // ANGLE is really the only odd man out 205 fBackend = kANGLE_BackEndType; 206 break; 207 #endif // SK_ANGLE 208 #if SK_COMMAND_BUFFER 209 case kCommandBufferES2_DeviceType: 210 // Command buffer is really the only other odd man out :D 211 fBackend = kCommandBufferES2_BackEndType; 212 break; 213 #endif // SK_COMMAND_BUFFER 214 default: 215 SkASSERT(false); 216 break; 217 } 218 AttachmentInfo attachmentInfo; 219 bool result = win->attach(fBackend, msaaSampleCount, &attachmentInfo); 220 if (!result) { 221 SkDebugf("Failed to initialize GL"); 222 return; 223 } 224 fMSAASampleCount = msaaSampleCount; 225 226 SkASSERT(nullptr == fCurIntf); 227 SkAutoTUnref<const GrGLInterface> glInterface; 228 switch (win->getDeviceType()) { 229 case kRaster_DeviceType: // fallthrough 230 case kGPU_DeviceType: 231 // all these guys use the native interface 232 glInterface.reset(GrGLCreateNativeInterface()); 233 break; 234 #if SK_ANGLE 235 case kANGLE_DeviceType: 236 glInterface.reset(GrGLCreateANGLEInterface()); 237 break; 238 #endif // SK_ANGLE 239 #if SK_COMMAND_BUFFER 240 case kCommandBufferES2_DeviceType: 241 glInterface.reset(GrGLCreateCommandBufferInterface()); 242 break; 243 #endif // SK_COMMAND_BUFFER 244 default: 245 SkASSERT(false); 246 break; 247 } 248 249 // Currently SampleApp does not use NVPR. TODO: Provide an NVPR device type that is skipped 250 // when the driver doesn't support NVPR. 251 fCurIntf = GrGLInterfaceRemoveNVPR(glInterface.get()); 252 253 SkASSERT(nullptr == fCurContext); 254 fCurContext = GrContext::Create(kOpenGL_GrBackend, (GrBackendContext) fCurIntf); 255 256 if (nullptr == fCurContext || nullptr == fCurIntf) { 257 // We need some context and interface to see results 258 SkSafeUnref(fCurContext); 259 SkSafeUnref(fCurIntf); 260 fCurContext = nullptr; 261 fCurIntf = nullptr; 262 SkDebugf("Failed to setup 3D"); 263 264 win->detach(); 265 } 266 #endif // SK_SUPPORT_GPU 267 // call windowSizeChanged to create the render target 268 this->windowSizeChanged(win); 269 } 270 271 void tearDownBackend(SampleWindow *win) override { 272 #if SK_SUPPORT_GPU 273 if (fCurContext) { 274 // in case we have outstanding refs to this guy (lua?) 275 fCurContext->abandonContext(); 276 fCurContext->unref(); 277 fCurContext = nullptr; 278 } 279 280 SkSafeUnref(fCurIntf); 281 fCurIntf = nullptr; 282 283 SkSafeUnref(fCurRenderTarget); 284 fCurRenderTarget = nullptr; 285 #endif 286 win->detach(); 287 fBackend = kNone_BackEndType; 288 } 289 290 SkSurface* createSurface(SampleWindow::DeviceType dType, SampleWindow* win) override { 291 #if SK_SUPPORT_GPU 292 if (IsGpuDeviceType(dType) && fCurContext) { 293 SkSurfaceProps props(win->getSurfaceProps()); 294 return SkSurface::NewRenderTargetDirect(fCurRenderTarget, &props); 295 } 296 #endif 297 return nullptr; 298 } 299 300 void publishCanvas(SampleWindow::DeviceType dType, 301 SkCanvas* canvas, SampleWindow* win) override { 302 #if SK_SUPPORT_GPU 303 if (fCurContext) { 304 // in case we have queued drawing calls 305 fCurContext->flush(); 306 307 if (!IsGpuDeviceType(dType)) { 308 // need to send the raster bits to the (gpu) window 309 const SkBitmap& bm = win->getBitmap(); 310 fCurRenderTarget->writePixels(0, 0, bm.width(), bm.height(), 311 SkImageInfo2GrPixelConfig(bm.colorType(), 312 bm.alphaType(), 313 bm.profileType()), 314 bm.getPixels(), 315 bm.rowBytes(), 316 GrContext::kFlushWrites_PixelOp); 317 } 318 } 319 #endif 320 321 win->present(); 322 } 323 324 void windowSizeChanged(SampleWindow* win) override { 325 #if SK_SUPPORT_GPU 326 if (fCurContext) { 327 AttachmentInfo attachmentInfo; 328 win->attach(fBackend, fMSAASampleCount, &attachmentInfo); 329 SkSafeUnref(fCurRenderTarget); 330 fCurRenderTarget = win->renderTarget(attachmentInfo, fCurIntf, fCurContext); 331 } 332 #endif 333 } 334 335 GrContext* getGrContext() override { 336 #if SK_SUPPORT_GPU 337 return fCurContext; 338 #else 339 return nullptr; 340 #endif 341 } 342 343 GrRenderTarget* getGrRenderTarget() override { 344 #if SK_SUPPORT_GPU 345 return fCurRenderTarget; 346 #else 347 return nullptr; 348 #endif 349 } 350 351 private: 352 353 #if SK_SUPPORT_GPU 354 GrContext* fCurContext; 355 const GrGLInterface* fCurIntf; 356 GrRenderTarget* fCurRenderTarget; 357 int fMSAASampleCount; 358 #endif 359 360 SkOSWindow::SkBackEndTypes fBackend; 361 362 typedef SampleWindow::DeviceManager INHERITED; 363 }; 364 365 /////////////// 366 static const char view_inval_msg[] = "view-inval-msg"; 367 368 void SampleWindow::postInvalDelay() { 369 (new SkEvent(view_inval_msg, this->getSinkID()))->postDelay(1); 370 } 371 372 static bool isInvalEvent(const SkEvent& evt) { 373 return evt.isType(view_inval_msg); 374 } 375 ////////////////// 376 377 SkFuncViewFactory::SkFuncViewFactory(SkViewCreateFunc func) 378 : fCreateFunc(func) { 379 } 380 381 SkView* SkFuncViewFactory::operator() () const { 382 return (*fCreateFunc)(); 383 } 384 385 #include "GMSampleView.h" 386 387 SkGMSampleViewFactory::SkGMSampleViewFactory(GMFactoryFunc func) 388 : fFunc(func) { 389 } 390 391 SkView* SkGMSampleViewFactory::operator() () const { 392 skiagm::GM* gm = fFunc(nullptr); 393 gm->setMode(skiagm::GM::kSample_Mode); 394 return new GMSampleView(gm); 395 } 396 397 SkViewRegister* SkViewRegister::gHead; 398 SkViewRegister::SkViewRegister(SkViewFactory* fact) : fFact(fact) { 399 fFact->ref(); 400 fChain = gHead; 401 gHead = this; 402 } 403 404 SkViewRegister::SkViewRegister(SkViewCreateFunc func) { 405 fFact = new SkFuncViewFactory(func); 406 fChain = gHead; 407 gHead = this; 408 } 409 410 SkViewRegister::SkViewRegister(GMFactoryFunc func) { 411 fFact = new SkGMSampleViewFactory(func); 412 fChain = gHead; 413 gHead = this; 414 } 415 416 class AutoUnrefArray { 417 public: 418 AutoUnrefArray() {} 419 ~AutoUnrefArray() { 420 int count = fObjs.count(); 421 for (int i = 0; i < count; ++i) { 422 fObjs[i]->unref(); 423 } 424 } 425 SkRefCnt*& push_back() { return *fObjs.append(); } 426 427 private: 428 SkTDArray<SkRefCnt*> fObjs; 429 }; 430 431 // registers GMs as Samples 432 // This can't be performed during static initialization because it could be 433 // run before GMRegistry has been fully built. 434 static void SkGMRegistyToSampleRegistry() { 435 static bool gOnce; 436 static AutoUnrefArray fRegisters; 437 438 if (!gOnce) { 439 const skiagm::GMRegistry* gmreg = skiagm::GMRegistry::Head(); 440 while (gmreg) { 441 fRegisters.push_back() = new SkViewRegister(gmreg->factory()); 442 gmreg = gmreg->next(); 443 } 444 gOnce = true; 445 } 446 } 447 448 ////////////////////////////////////////////////////////////////////////////// 449 450 enum FlipAxisEnum { 451 kFlipAxis_X = (1 << 0), 452 kFlipAxis_Y = (1 << 1) 453 }; 454 455 #include "SkDrawFilter.h" 456 457 struct HintingState { 458 SkPaint::Hinting hinting; 459 const char* name; 460 const char* label; 461 }; 462 static HintingState gHintingStates[] = { 463 {SkPaint::kNo_Hinting, "Mixed", nullptr }, 464 {SkPaint::kNo_Hinting, "None", "H0 " }, 465 {SkPaint::kSlight_Hinting, "Slight", "Hs " }, 466 {SkPaint::kNormal_Hinting, "Normal", "Hn " }, 467 {SkPaint::kFull_Hinting, "Full", "Hf " }, 468 }; 469 470 struct FilterQualityState { 471 SkFilterQuality fQuality; 472 const char* fName; 473 const char* fLabel; 474 }; 475 static FilterQualityState gFilterQualityStates[] = { 476 { kNone_SkFilterQuality, "Mixed", nullptr }, 477 { kNone_SkFilterQuality, "None", "F0 " }, 478 { kLow_SkFilterQuality, "Low", "F1 " }, 479 { kMedium_SkFilterQuality, "Medium", "F2 " }, 480 { kHigh_SkFilterQuality, "High", "F3 " }, 481 }; 482 483 class FlagsFilterCanvas : public SkPaintFilterCanvas { 484 public: 485 FlagsFilterCanvas(SkCanvas* canvas, SkOSMenu::TriState lcd, SkOSMenu::TriState aa, 486 SkOSMenu::TriState subpixel, int hinting, int filterQuality) 487 : INHERITED(canvas) 488 , fLCDState(lcd) 489 , fAAState(aa) 490 , fSubpixelState(subpixel) 491 , fHintingState(hinting) 492 , fFilterQualityIndex(filterQuality) { 493 SkASSERT((unsigned)filterQuality < SK_ARRAY_COUNT(gFilterQualityStates)); 494 } 495 496 protected: 497 bool onFilter(SkTCopyOnFirstWrite<SkPaint>* paint, Type t) const override { 498 if (!*paint) { 499 return true; 500 } 501 502 if (kText_Type == t && SkOSMenu::kMixedState != fLCDState) { 503 paint->writable()->setLCDRenderText(SkOSMenu::kOnState == fLCDState); 504 } 505 if (SkOSMenu::kMixedState != fAAState) { 506 paint->writable()->setAntiAlias(SkOSMenu::kOnState == fAAState); 507 } 508 if (0 != fFilterQualityIndex) { 509 paint->writable()->setFilterQuality(gFilterQualityStates[fFilterQualityIndex].fQuality); 510 } 511 if (SkOSMenu::kMixedState != fSubpixelState) { 512 paint->writable()->setSubpixelText(SkOSMenu::kOnState == fSubpixelState); 513 } 514 if (0 != fHintingState && fHintingState < (int)SK_ARRAY_COUNT(gHintingStates)) { 515 paint->writable()->setHinting(gHintingStates[fHintingState].hinting); 516 } 517 return true; 518 } 519 520 private: 521 SkOSMenu::TriState fLCDState; 522 SkOSMenu::TriState fAAState; 523 SkOSMenu::TriState fSubpixelState; 524 int fHintingState; 525 int fFilterQualityIndex; 526 527 typedef SkPaintFilterCanvas INHERITED; 528 }; 529 530 ////////////////////////////////////////////////////////////////////////////// 531 532 #define MAX_ZOOM_LEVEL 8 533 #define MIN_ZOOM_LEVEL -8 534 535 static const char gCharEvtName[] = "SampleCode_Char_Event"; 536 static const char gKeyEvtName[] = "SampleCode_Key_Event"; 537 static const char gTitleEvtName[] = "SampleCode_Title_Event"; 538 static const char gPrefSizeEvtName[] = "SampleCode_PrefSize_Event"; 539 static const char gFastTextEvtName[] = "SampleCode_FastText_Event"; 540 static const char gUpdateWindowTitleEvtName[] = "SampleCode_UpdateWindowTitle"; 541 542 bool SampleCode::CharQ(const SkEvent& evt, SkUnichar* outUni) { 543 if (evt.isType(gCharEvtName, sizeof(gCharEvtName) - 1)) { 544 if (outUni) { 545 *outUni = evt.getFast32(); 546 } 547 return true; 548 } 549 return false; 550 } 551 552 bool SampleCode::KeyQ(const SkEvent& evt, SkKey* outKey) { 553 if (evt.isType(gKeyEvtName, sizeof(gKeyEvtName) - 1)) { 554 if (outKey) { 555 *outKey = (SkKey)evt.getFast32(); 556 } 557 return true; 558 } 559 return false; 560 } 561 562 bool SampleCode::TitleQ(const SkEvent& evt) { 563 return evt.isType(gTitleEvtName, sizeof(gTitleEvtName) - 1); 564 } 565 566 void SampleCode::TitleR(SkEvent* evt, const char title[]) { 567 SkASSERT(evt && TitleQ(*evt)); 568 evt->setString(gTitleEvtName, title); 569 } 570 571 bool SampleCode::RequestTitle(SkView* view, SkString* title) { 572 SkEvent evt(gTitleEvtName); 573 if (view->doQuery(&evt)) { 574 title->set(evt.findString(gTitleEvtName)); 575 return true; 576 } 577 return false; 578 } 579 580 bool SampleCode::PrefSizeQ(const SkEvent& evt) { 581 return evt.isType(gPrefSizeEvtName, sizeof(gPrefSizeEvtName) - 1); 582 } 583 584 void SampleCode::PrefSizeR(SkEvent* evt, SkScalar width, SkScalar height) { 585 SkASSERT(evt && PrefSizeQ(*evt)); 586 SkScalar size[2]; 587 size[0] = width; 588 size[1] = height; 589 evt->setScalars(gPrefSizeEvtName, 2, size); 590 } 591 592 bool SampleCode::FastTextQ(const SkEvent& evt) { 593 return evt.isType(gFastTextEvtName, sizeof(gFastTextEvtName) - 1); 594 } 595 596 /////////////////////////////////////////////////////////////////////////////// 597 598 enum TilingMode { 599 kNo_Tiling, 600 kAbs_128x128_Tiling, 601 kAbs_256x256_Tiling, 602 kRel_4x4_Tiling, 603 kRel_1x16_Tiling, 604 kRel_16x1_Tiling, 605 606 kLast_TilingMode_Enum 607 }; 608 609 struct TilingInfo { 610 const char* label; 611 SkScalar w, h; 612 }; 613 614 static const struct TilingInfo gTilingInfo[] = { 615 { "No tiling", SK_Scalar1 , SK_Scalar1 }, // kNo_Tiling 616 { "128x128" , SkIntToScalar(128), SkIntToScalar(128) }, // kAbs_128x128_Tiling 617 { "256x256" , SkIntToScalar(256), SkIntToScalar(256) }, // kAbs_256x256_Tiling 618 { "1/4x1/4" , SK_Scalar1 / 4 , SK_Scalar1 / 4 }, // kRel_4x4_Tiling 619 { "1/1x1/16" , SK_Scalar1 , SK_Scalar1 / 16 }, // kRel_1x16_Tiling 620 { "1/16x1/1" , SK_Scalar1 / 16 , SK_Scalar1 }, // kRel_16x1_Tiling 621 }; 622 static_assert((SK_ARRAY_COUNT(gTilingInfo) == kLast_TilingMode_Enum), 623 "Incomplete_tiling_labels"); 624 625 SkSize SampleWindow::tileSize() const { 626 SkASSERT((TilingMode)fTilingMode < kLast_TilingMode_Enum); 627 const struct TilingInfo* info = gTilingInfo + fTilingMode; 628 return SkSize::Make(info->w > SK_Scalar1 ? info->w : this->width() * info->w, 629 info->h > SK_Scalar1 ? info->h : this->height() * info->h); 630 } 631 ////////////////////////////////////////////////////////////////////////////// 632 633 static SkView* curr_view(SkWindow* wind) { 634 SkView::F2BIter iter(wind); 635 return iter.next(); 636 } 637 638 static bool curr_title(SkWindow* wind, SkString* title) { 639 SkView* view = curr_view(wind); 640 if (view) { 641 SkEvent evt(gTitleEvtName); 642 if (view->doQuery(&evt)) { 643 title->set(evt.findString(gTitleEvtName)); 644 return true; 645 } 646 } 647 return false; 648 } 649 650 bool SampleWindow::sendAnimatePulse() { 651 SkView* view = curr_view(this); 652 if (SampleView::IsSampleView(view)) { 653 return ((SampleView*)view)->animate(gAnimTimer); 654 } 655 return false; 656 } 657 658 void SampleWindow::setZoomCenter(float x, float y) { 659 fZoomCenterX = x; 660 fZoomCenterY = y; 661 } 662 663 bool SampleWindow::zoomIn() { 664 // Arbitrarily decided 665 if (fFatBitsScale == kMaxFatBitsScale) return false; 666 fFatBitsScale++; 667 this->inval(nullptr); 668 return true; 669 } 670 671 bool SampleWindow::zoomOut() { 672 if (fFatBitsScale == 1) return false; 673 fFatBitsScale--; 674 this->inval(nullptr); 675 return true; 676 } 677 678 void SampleWindow::updatePointer(int x, int y) { 679 fMouseX = x; 680 fMouseY = y; 681 if (fShowZoomer) { 682 this->inval(nullptr); 683 } 684 } 685 686 static inline SampleWindow::DeviceType cycle_devicetype(SampleWindow::DeviceType ct) { 687 static const SampleWindow::DeviceType gCT[] = { 688 SampleWindow::kRaster_DeviceType 689 #if SK_SUPPORT_GPU 690 , SampleWindow::kGPU_DeviceType 691 #if SK_ANGLE 692 , SampleWindow::kANGLE_DeviceType 693 #endif // SK_ANGLE 694 #if SK_COMMAND_BUFFER 695 , SampleWindow::kCommandBufferES2_DeviceType 696 #endif // SK_COMMAND_BUFFER 697 #endif // SK_SUPPORT_GPU 698 }; 699 static_assert(SK_ARRAY_COUNT(gCT) == SampleWindow::kDeviceTypeCnt, "array_size_mismatch"); 700 return gCT[ct]; 701 } 702 703 static SkString getSampleTitle(const SkViewFactory* sampleFactory) { 704 SkView* view = (*sampleFactory)(); 705 SkString title; 706 SampleCode::RequestTitle(view, &title); 707 view->unref(); 708 return title; 709 } 710 711 static bool compareSampleTitle(const SkViewFactory* first, const SkViewFactory* second) { 712 return strcmp(getSampleTitle(first).c_str(), getSampleTitle(second).c_str()) < 0; 713 } 714 715 static int find_by_title(const SkViewFactory* const* factories, int count, const char title[]) { 716 for (int i = 0; i < count; i++) { 717 if (getSampleTitle(factories[i]).equals(title)) { 718 return i; 719 } 720 } 721 return -1; 722 } 723 724 static void restrict_samples(SkTDArray<const SkViewFactory*>& factories, const SkString titles[], 725 int count) { 726 int newCount = 0; 727 for (int i = 0; i < count; ++i) { 728 int index = find_by_title(factories.begin(), factories.count(), titles[i].c_str()); 729 if (index >= 0) { 730 SkTSwap(factories.begin()[newCount], factories.begin()[index]); 731 newCount += 1; 732 } 733 } 734 if (newCount) { 735 factories.setCount(newCount); 736 } 737 } 738 739 DEFINE_string(slide, "", "Start on this sample."); 740 DEFINE_int32(msaa, 0, "Request multisampling with this count."); 741 DEFINE_string(pictureDir, "", "Read pictures from here."); 742 DEFINE_string(picture, "", "Path to single picture."); 743 DEFINE_string(sequence, "", "Path to file containing the desired samples/gms to show."); 744 DEFINE_bool(sort, false, "Sort samples by title."); 745 DEFINE_bool(list, false, "List samples?"); 746 DEFINE_bool(gpu, false, "Start up with gpu?"); 747 DEFINE_bool(redraw, false, "Force continuous redrawing, for profiling or debugging tools."); 748 DEFINE_string(key, "", ""); // dummy to enable gm tests that have platform-specific names 749 #ifdef SAMPLE_PDF_FILE_VIEWER 750 DEFINE_string(pdfPath, "", "Path to direcotry of pdf files."); 751 #endif 752 753 #include "SkTaskGroup.h" 754 755 SampleWindow::SampleWindow(void* hwnd, int argc, char** argv, DeviceManager* devManager) 756 : INHERITED(hwnd) 757 , fDevManager(nullptr) { 758 759 SkCommandLineFlags::Parse(argc, argv); 760 761 fCurrIndex = -1; 762 763 if (!FLAGS_pictureDir.isEmpty()) { 764 SkOSFile::Iter iter(FLAGS_pictureDir[0], "skp"); 765 SkString filename; 766 while (iter.next(&filename)) { 767 *fSamples.append() = new PictFileFactory( 768 SkOSPath::Join(FLAGS_pictureDir[0], filename.c_str())); 769 } 770 } 771 if (!FLAGS_picture.isEmpty()) { 772 SkString path(FLAGS_picture[0]); 773 fCurrIndex = fSamples.count(); 774 *fSamples.append() = new PictFileFactory(path); 775 } 776 #ifdef SAMPLE_PDF_FILE_VIEWER 777 if (!FLAGS_pdfPath.isEmpty()) { 778 SkOSFile::Iter iter(FLAGS_pdfPath[0], "pdf"); 779 SkString filename; 780 while (iter.next(&filename)) { 781 *fSamples.append() = new PdfFileViewerFactory( 782 SkOSPath::Join(FLAGS_pictureDir[0], filename.c_str())); 783 } 784 } 785 #endif 786 SkGMRegistyToSampleRegistry(); 787 { 788 const SkViewRegister* reg = SkViewRegister::Head(); 789 while (reg) { 790 *fSamples.append() = reg->factory(); 791 reg = reg->next(); 792 } 793 } 794 795 if (!FLAGS_sequence.isEmpty()) { 796 // The sequence file just contains a list (separated by CRs) of the samples or GM:gms 797 // you want to restrict to. Only these will appear when you cycle through. 798 // If none are found, or the file is empty, then it will be ignored, and all samples 799 // will be available. 800 SkFILEStream stream(FLAGS_sequence[0]); 801 if (stream.isValid()) { 802 size_t len = stream.getLength(); 803 SkAutoTMalloc<char> storage(len + 1); 804 char* buffer = storage.get(); 805 stream.read(buffer, len); 806 buffer[len] = 0; 807 808 SkTArray<SkString> titles; 809 SkStrSplit(buffer, "\n\r", &titles); 810 restrict_samples(fSamples, titles.begin(), titles.count()); 811 } 812 } 813 814 if (FLAGS_sort) { 815 // Sort samples, so foo.skp and foo.pdf are consecutive and we can quickly spot where 816 // skp -> pdf -> png fails. 817 SkTQSort(fSamples.begin(), fSamples.end() ? fSamples.end() - 1 : nullptr, compareSampleTitle); 818 } 819 820 if (!FLAGS_slide.isEmpty()) { 821 fCurrIndex = findByTitle(FLAGS_slide[0]); 822 if (fCurrIndex < 0) { 823 fprintf(stderr, "Unknown sample \"%s\"\n", FLAGS_slide[0]); 824 listTitles(); 825 } 826 } 827 828 fMSAASampleCount = FLAGS_msaa; 829 830 if (FLAGS_list) { 831 listTitles(); 832 } 833 834 if (fCurrIndex < 0) { 835 SkString title; 836 if (readTitleFromPrefs(&title)) { 837 fCurrIndex = findByTitle(title.c_str()); 838 } 839 } 840 841 if (fCurrIndex < 0) { 842 fCurrIndex = 0; 843 } 844 845 static SkTaskGroup::Enabler enabled(-1); 846 gSampleWindow = this; 847 848 fDeviceType = kRaster_DeviceType; 849 #if SK_SUPPORT_GPU 850 if (FLAGS_gpu) { 851 fDeviceType = kGPU_DeviceType; 852 } 853 #endif 854 855 #if DEFAULT_TO_GPU 856 fDeviceType = kGPU_DeviceType; 857 #endif 858 #if SK_ANGLE && DEFAULT_TO_ANGLE 859 fDeviceType = kANGLE_DeviceType; 860 #endif 861 #if SK_COMMAND_BUFFER && DEFAULT_TO_COMMAND_BUFFER 862 fDeviceType = kCommandBufferES2_DeviceType; 863 #endif 864 865 fUseClip = false; 866 fUsePicture = false; 867 fAnimating = false; 868 fRotate = false; 869 fPerspAnim = false; 870 fRequestGrabImage = false; 871 fTilingMode = kNo_Tiling; 872 fMeasureFPS = false; 873 fLCDState = SkOSMenu::kMixedState; 874 fAAState = SkOSMenu::kMixedState; 875 fSubpixelState = SkOSMenu::kMixedState; 876 fHintingState = 0; 877 fFilterQualityIndex = 0; 878 fFlipAxis = 0; 879 fScrollTestX = fScrollTestY = 0; 880 881 fMouseX = fMouseY = 0; 882 fFatBitsScale = 8; 883 fTypeface = SkTypeface::CreateFromTypeface(nullptr, SkTypeface::kBold); 884 fShowZoomer = false; 885 886 fZoomLevel = 0; 887 fZoomScale = SK_Scalar1; 888 889 fMagnify = false; 890 891 fSaveToPdf = false; 892 fSaveToSKP = false; 893 894 int sinkID = this->getSinkID(); 895 fAppMenu = new SkOSMenu; 896 fAppMenu->setTitle("Global Settings"); 897 int itemID; 898 899 itemID = fAppMenu->appendList("ColorType", "ColorType", sinkID, 0, 900 gConfig[0].fName, gConfig[1].fName, gConfig[2].fName, nullptr); 901 fAppMenu->assignKeyEquivalentToItem(itemID, 'C'); 902 903 itemID = fAppMenu->appendList("Device Type", "Device Type", sinkID, 0, 904 "Raster", 905 "OpenGL", 906 #if SK_ANGLE 907 "ANGLE", 908 #endif 909 #if SK_COMMAND_BUFFER 910 "Command Buffer", 911 #endif 912 nullptr); 913 fAppMenu->assignKeyEquivalentToItem(itemID, 'd'); 914 itemID = fAppMenu->appendTriState("AA", "AA", sinkID, fAAState); 915 fAppMenu->assignKeyEquivalentToItem(itemID, 'b'); 916 itemID = fAppMenu->appendTriState("LCD", "LCD", sinkID, fLCDState); 917 fAppMenu->assignKeyEquivalentToItem(itemID, 'l'); 918 itemID = fAppMenu->appendList("FilterQuality", "FilterQuality", sinkID, fFilterQualityIndex, 919 gFilterQualityStates[0].fName, 920 gFilterQualityStates[1].fName, 921 gFilterQualityStates[2].fName, 922 gFilterQualityStates[3].fName, 923 gFilterQualityStates[4].fName, 924 nullptr); 925 fAppMenu->assignKeyEquivalentToItem(itemID, 'n'); 926 itemID = fAppMenu->appendTriState("Subpixel", "Subpixel", sinkID, fSubpixelState); 927 fAppMenu->assignKeyEquivalentToItem(itemID, 's'); 928 itemID = fAppMenu->appendList("Hinting", "Hinting", sinkID, fHintingState, 929 gHintingStates[0].name, 930 gHintingStates[1].name, 931 gHintingStates[2].name, 932 gHintingStates[3].name, 933 gHintingStates[4].name, 934 nullptr); 935 fAppMenu->assignKeyEquivalentToItem(itemID, 'h'); 936 937 itemID =fAppMenu->appendList("Tiling", "Tiling", sinkID, fTilingMode, 938 gTilingInfo[kNo_Tiling].label, 939 gTilingInfo[kAbs_128x128_Tiling].label, 940 gTilingInfo[kAbs_256x256_Tiling].label, 941 gTilingInfo[kRel_4x4_Tiling].label, 942 gTilingInfo[kRel_1x16_Tiling].label, 943 gTilingInfo[kRel_16x1_Tiling].label, 944 nullptr); 945 fAppMenu->assignKeyEquivalentToItem(itemID, 't'); 946 947 itemID = fAppMenu->appendSwitch("Slide Show", "Slide Show" , sinkID, false); 948 fAppMenu->assignKeyEquivalentToItem(itemID, 'a'); 949 itemID = fAppMenu->appendSwitch("Clip", "Clip" , sinkID, fUseClip); 950 fAppMenu->assignKeyEquivalentToItem(itemID, 'c'); 951 itemID = fAppMenu->appendSwitch("Flip X", "Flip X" , sinkID, false); 952 fAppMenu->assignKeyEquivalentToItem(itemID, 'x'); 953 itemID = fAppMenu->appendSwitch("Flip Y", "Flip Y" , sinkID, false); 954 fAppMenu->assignKeyEquivalentToItem(itemID, 'y'); 955 itemID = fAppMenu->appendSwitch("Zoomer", "Zoomer" , sinkID, fShowZoomer); 956 fAppMenu->assignKeyEquivalentToItem(itemID, 'z'); 957 itemID = fAppMenu->appendSwitch("Magnify", "Magnify" , sinkID, fMagnify); 958 fAppMenu->assignKeyEquivalentToItem(itemID, 'm'); 959 960 itemID = fAppMenu->appendAction("Save to PDF", sinkID); 961 fAppMenu->assignKeyEquivalentToItem(itemID, 'e'); 962 963 this->addMenu(fAppMenu); 964 fSlideMenu = new SkOSMenu; 965 this->addMenu(fSlideMenu); 966 967 this->setVisibleP(true); 968 this->setClipToBounds(false); 969 970 this->loadView((*fSamples[fCurrIndex])()); 971 972 if (nullptr == devManager) { 973 fDevManager = new DefaultDeviceManager(); 974 } else { 975 devManager->ref(); 976 fDevManager = devManager; 977 } 978 fDevManager->setUpBackend(this, fMSAASampleCount); 979 980 // If another constructor set our dimensions, ensure that our 981 // onSizeChange gets called. 982 if (this->height() && this->width()) { 983 this->onSizeChange(); 984 } 985 986 // can't call this synchronously, since it may require a subclass to 987 // to implement, or the caller may need us to have returned from the 988 // constructor first. Hence we post an event to ourselves. 989 // this->updateTitle(); 990 post_event_to_sink(new SkEvent(gUpdateWindowTitleEvtName), this); 991 992 gAnimTimer.run(); 993 } 994 995 SampleWindow::~SampleWindow() { 996 SkSafeUnref(fTypeface); 997 SkSafeUnref(fDevManager); 998 } 999 1000 1001 int SampleWindow::findByTitle(const char title[]) { 1002 int i, count = fSamples.count(); 1003 for (i = 0; i < count; i++) { 1004 if (getSampleTitle(i).equals(title)) { 1005 return i; 1006 } 1007 } 1008 return -1; 1009 } 1010 1011 void SampleWindow::listTitles() { 1012 int count = fSamples.count(); 1013 SkDebugf("All Slides:\n"); 1014 for (int i = 0; i < count; i++) { 1015 SkDebugf(" %s\n", getSampleTitle(i).c_str()); 1016 } 1017 } 1018 1019 static SkBitmap capture_bitmap(SkCanvas* canvas) { 1020 SkBitmap bm; 1021 if (bm.tryAllocPixels(canvas->imageInfo())) { 1022 canvas->readPixels(&bm, 0, 0); 1023 } 1024 return bm; 1025 } 1026 1027 static void drawText(SkCanvas* canvas, SkString str, SkScalar left, SkScalar top, SkPaint& paint) { 1028 SkColor desiredColor = paint.getColor(); 1029 paint.setColor(SK_ColorWHITE); 1030 const char* c_str = str.c_str(); 1031 size_t size = str.size(); 1032 SkRect bounds; 1033 paint.measureText(c_str, size, &bounds); 1034 bounds.offset(left, top); 1035 SkScalar inset = SkIntToScalar(-2); 1036 bounds.inset(inset, inset); 1037 canvas->drawRect(bounds, paint); 1038 if (desiredColor != SK_ColorBLACK) { 1039 paint.setColor(SK_ColorBLACK); 1040 canvas->drawText(c_str, size, left + SK_Scalar1, top + SK_Scalar1, paint); 1041 } 1042 paint.setColor(desiredColor); 1043 canvas->drawText(c_str, size, left, top, paint); 1044 } 1045 1046 #define XCLIP_N 8 1047 #define YCLIP_N 8 1048 1049 void SampleWindow::draw(SkCanvas* canvas) { 1050 gAnimTimer.updateTime(); 1051 1052 if (fGesture.isActive()) { 1053 this->updateMatrix(); 1054 } 1055 1056 if (fMeasureFPS) { 1057 fMeasureFPS_Time = 0; 1058 } 1059 1060 SkSize tile = this->tileSize(); 1061 1062 if (kNo_Tiling == fTilingMode) { 1063 this->INHERITED::draw(canvas); // no looping or surfaces needed 1064 } else { 1065 const int w = SkScalarRoundToInt(tile.width()); 1066 const int h = SkScalarRoundToInt(tile.height()); 1067 SkImageInfo info = SkImageInfo::MakeN32Premul(w, h); 1068 SkAutoTUnref<SkSurface> surface(canvas->newSurface(info)); 1069 SkCanvas* tileCanvas = surface->getCanvas(); 1070 1071 for (SkScalar y = 0; y < height(); y += tile.height()) { 1072 for (SkScalar x = 0; x < width(); x += tile.width()) { 1073 SkAutoCanvasRestore acr(tileCanvas, true); 1074 tileCanvas->translate(-x, -y); 1075 tileCanvas->clear(0); 1076 this->INHERITED::draw(tileCanvas); 1077 surface->draw(canvas, x, y, nullptr); 1078 } 1079 } 1080 1081 // for drawing the borders between tiles 1082 SkPaint paint; 1083 paint.setColor(0x60FF00FF); 1084 paint.setStyle(SkPaint::kStroke_Style); 1085 1086 for (SkScalar y = 0; y < height(); y += tile.height()) { 1087 for (SkScalar x = 0; x < width(); x += tile.width()) { 1088 canvas->drawRect(SkRect::MakeXYWH(x, y, tile.width(), tile.height()), paint); 1089 } 1090 } 1091 } 1092 1093 if (fShowZoomer && !fSaveToPdf) { 1094 showZoomer(canvas); 1095 } 1096 if (fMagnify && !fSaveToPdf) { 1097 magnify(canvas); 1098 } 1099 1100 if (fMeasureFPS && fMeasureFPS_Time) { 1101 this->updateTitle(); 1102 this->postInvalDelay(); 1103 } 1104 1105 if (this->sendAnimatePulse() || FLAGS_redraw) { 1106 this->inval(nullptr); 1107 } 1108 1109 // do this last 1110 fDevManager->publishCanvas(fDeviceType, canvas, this); 1111 } 1112 1113 static float clipW = 200; 1114 static float clipH = 200; 1115 void SampleWindow::magnify(SkCanvas* canvas) { 1116 SkRect r; 1117 int count = canvas->save(); 1118 1119 SkMatrix m = canvas->getTotalMatrix(); 1120 if (!m.invert(&m)) { 1121 return; 1122 } 1123 SkPoint offset, center; 1124 SkScalar mouseX = fMouseX * SK_Scalar1; 1125 SkScalar mouseY = fMouseY * SK_Scalar1; 1126 m.mapXY(mouseX - clipW/2, mouseY - clipH/2, &offset); 1127 m.mapXY(mouseX, mouseY, ¢er); 1128 1129 r.set(0, 0, clipW * m.getScaleX(), clipH * m.getScaleX()); 1130 r.offset(offset.fX, offset.fY); 1131 1132 SkPaint paint; 1133 paint.setColor(0xFF66AAEE); 1134 paint.setStyle(SkPaint::kStroke_Style); 1135 paint.setStrokeWidth(10.f * m.getScaleX()); 1136 //lense offset 1137 //canvas->translate(0, -250); 1138 canvas->drawRect(r, paint); 1139 canvas->clipRect(r); 1140 1141 m = canvas->getTotalMatrix(); 1142 m.setTranslate(-center.fX, -center.fY); 1143 m.postScale(0.5f * fFatBitsScale, 0.5f * fFatBitsScale); 1144 m.postTranslate(center.fX, center.fY); 1145 canvas->concat(m); 1146 1147 this->INHERITED::draw(canvas); 1148 1149 canvas->restoreToCount(count); 1150 } 1151 1152 static SkPaint& set_color_ref(SkPaint& paint, SkColor c) { 1153 paint.setColor(c); 1154 return paint; 1155 } 1156 1157 static void show_lcd_box(SkCanvas* canvas, SkScalar x, SkScalar y, SkColor c, 1158 SkScalar sx, SkScalar sy) { 1159 const SkScalar w = (1 - 1/sx) / 3; 1160 SkPaint paint; 1161 SkRect r = SkRect::MakeXYWH(x, y, w, 1 - 1/sy); 1162 canvas->drawRect(r, set_color_ref(paint, SkColorSetRGB(SkColorGetR(c), 0, 0))); 1163 r.offset(w, 0); 1164 canvas->drawRect(r, set_color_ref(paint, SkColorSetRGB(0, SkColorGetG(c), 0))); 1165 r.offset(w, 0); 1166 canvas->drawRect(r, set_color_ref(paint, SkColorSetRGB(0, 0, SkColorGetB(c)))); 1167 } 1168 1169 static void show_lcd_circle(SkCanvas* canvas, SkScalar x, SkScalar y, SkColor c, 1170 SkScalar, SkScalar) { 1171 const SkRect r = SkRect::MakeXYWH(x, y, 1, 1); 1172 const SkScalar cx = x + 0.5f; 1173 const SkScalar cy = y + 0.5f; 1174 1175 SkPaint paint; 1176 paint.setAntiAlias(true); 1177 1178 SkPath path; 1179 path.addArc(r, 0, 120); path.lineTo(cx, cy); 1180 canvas->drawPath(path, set_color_ref(paint, SkColorSetRGB(SkColorGetR(c), 0, 0))); 1181 1182 path.reset(); path.addArc(r, 120, 120); path.lineTo(cx, cy); 1183 canvas->drawPath(path, set_color_ref(paint, SkColorSetRGB(0, SkColorGetG(c), 0))); 1184 1185 path.reset(); path.addArc(r, 240, 120); path.lineTo(cx, cy); 1186 canvas->drawPath(path, set_color_ref(paint, SkColorSetRGB(0, 0, SkColorGetB(c)))); 1187 } 1188 1189 typedef void (*ShowLCDProc)(SkCanvas*, SkScalar, SkScalar, SkColor, SkScalar, SkScalar); 1190 1191 /* 1192 * Like drawBitmapRect but we manually draw each pixels in RGB 1193 */ 1194 static void show_lcd_grid(SkCanvas* canvas, const SkBitmap& bitmap, 1195 const SkIRect& origSrc, const SkRect& dst, ShowLCDProc proc) { 1196 SkIRect src; 1197 if (!src.intersect(origSrc, bitmap.bounds())) { 1198 return; 1199 } 1200 const SkScalar sx = dst.width() / src.width(); 1201 const SkScalar sy = dst.height() / src.height(); 1202 1203 SkAutoCanvasRestore acr(canvas, true); 1204 canvas->translate(dst.left(), dst.top()); 1205 canvas->scale(sx, sy); 1206 1207 for (int y = 0; y < src.height(); ++y) { 1208 for (int x = 0; x < src.width(); ++x) { 1209 proc(canvas, SkIntToScalar(x), SkIntToScalar(y), 1210 bitmap.getColor(src.left() + x, src.top() + y), sx, sy); 1211 } 1212 } 1213 } 1214 1215 void SampleWindow::showZoomer(SkCanvas* canvas) { 1216 int count = canvas->save(); 1217 canvas->resetMatrix(); 1218 // Ensure the mouse position is on screen. 1219 int width = SkScalarRoundToInt(this->width()); 1220 int height = SkScalarRoundToInt(this->height()); 1221 if (fMouseX >= width) fMouseX = width - 1; 1222 else if (fMouseX < 0) fMouseX = 0; 1223 if (fMouseY >= height) fMouseY = height - 1; 1224 else if (fMouseY < 0) fMouseY = 0; 1225 1226 SkBitmap bitmap = capture_bitmap(canvas); 1227 bitmap.lockPixels(); 1228 1229 // Find the size of the zoomed in view, forced to be odd, so the examined pixel is in the middle. 1230 int zoomedWidth = (width >> 1) | 1; 1231 int zoomedHeight = (height >> 1) | 1; 1232 SkIRect src; 1233 src.set(0, 0, zoomedWidth / fFatBitsScale, zoomedHeight / fFatBitsScale); 1234 src.offset(fMouseX - (src.width()>>1), fMouseY - (src.height()>>1)); 1235 SkRect dest; 1236 dest.set(0, 0, SkIntToScalar(zoomedWidth), SkIntToScalar(zoomedHeight)); 1237 dest.offset(SkIntToScalar(width - zoomedWidth), SkIntToScalar(height - zoomedHeight)); 1238 SkPaint paint; 1239 // Clear the background behind our zoomed in view 1240 paint.setColor(SK_ColorWHITE); 1241 canvas->drawRect(dest, paint); 1242 switch (fFatBitsScale) { 1243 case kMaxFatBitsScale: 1244 show_lcd_grid(canvas, bitmap, src, dest, show_lcd_box); 1245 break; 1246 case kMaxFatBitsScale - 1: 1247 show_lcd_grid(canvas, bitmap, src, dest, show_lcd_circle); 1248 break; 1249 default: 1250 canvas->drawBitmapRect(bitmap, src, dest, nullptr); 1251 break; 1252 } 1253 1254 paint.setColor(SK_ColorBLACK); 1255 paint.setStyle(SkPaint::kStroke_Style); 1256 // Draw a border around the pixel in the middle 1257 SkRect originalPixel; 1258 originalPixel.set(SkIntToScalar(fMouseX), SkIntToScalar(fMouseY), SkIntToScalar(fMouseX + 1), SkIntToScalar(fMouseY + 1)); 1259 SkMatrix matrix; 1260 SkRect scalarSrc; 1261 scalarSrc.set(src); 1262 SkColor color = bitmap.getColor(fMouseX, fMouseY); 1263 if (matrix.setRectToRect(scalarSrc, dest, SkMatrix::kFill_ScaleToFit)) { 1264 SkRect pixel; 1265 matrix.mapRect(&pixel, originalPixel); 1266 // TODO Perhaps measure the values and make the outline white if it's "dark" 1267 if (color == SK_ColorBLACK) { 1268 paint.setColor(SK_ColorWHITE); 1269 } 1270 canvas->drawRect(pixel, paint); 1271 } 1272 paint.setColor(SK_ColorBLACK); 1273 // Draw a border around the destination rectangle 1274 canvas->drawRect(dest, paint); 1275 paint.setStyle(SkPaint::kStrokeAndFill_Style); 1276 // Identify the pixel and its color on screen 1277 paint.setTypeface(fTypeface); 1278 paint.setAntiAlias(true); 1279 SkScalar lineHeight = paint.getFontMetrics(nullptr); 1280 SkString string; 1281 string.appendf("(%i, %i)", fMouseX, fMouseY); 1282 SkScalar left = dest.fLeft + SkIntToScalar(3); 1283 SkScalar i = SK_Scalar1; 1284 drawText(canvas, string, left, SkScalarMulAdd(lineHeight, i, dest.fTop), paint); 1285 // Alpha 1286 i += SK_Scalar1; 1287 string.reset(); 1288 string.appendf("A: %X", SkColorGetA(color)); 1289 drawText(canvas, string, left, SkScalarMulAdd(lineHeight, i, dest.fTop), paint); 1290 // Red 1291 i += SK_Scalar1; 1292 string.reset(); 1293 string.appendf("R: %X", SkColorGetR(color)); 1294 paint.setColor(SK_ColorRED); 1295 drawText(canvas, string, left, SkScalarMulAdd(lineHeight, i, dest.fTop), paint); 1296 // Green 1297 i += SK_Scalar1; 1298 string.reset(); 1299 string.appendf("G: %X", SkColorGetG(color)); 1300 paint.setColor(SK_ColorGREEN); 1301 drawText(canvas, string, left, SkScalarMulAdd(lineHeight, i, dest.fTop), paint); 1302 // Blue 1303 i += SK_Scalar1; 1304 string.reset(); 1305 string.appendf("B: %X", SkColorGetB(color)); 1306 paint.setColor(SK_ColorBLUE); 1307 drawText(canvas, string, left, SkScalarMulAdd(lineHeight, i, dest.fTop), paint); 1308 canvas->restoreToCount(count); 1309 } 1310 1311 void SampleWindow::onDraw(SkCanvas* canvas) { 1312 } 1313 1314 #include "SkColorPriv.h" 1315 1316 void SampleWindow::saveToPdf() 1317 { 1318 #if SK_SUPPORT_PDF 1319 fSaveToPdf = true; 1320 this->inval(nullptr); 1321 #endif // SK_SUPPORT_PDF 1322 } 1323 1324 SkCanvas* SampleWindow::beforeChildren(SkCanvas* canvas) { 1325 if (fSaveToPdf) { 1326 SkString name; 1327 if (!this->getRawTitle(&name)) { 1328 name.set("unknown_sample"); 1329 } 1330 name.append(".pdf"); 1331 #ifdef SK_BUILD_FOR_ANDROID 1332 name.prepend("/sdcard/"); 1333 #endif 1334 fPDFDocument.reset(SkDocument::CreatePDF(name.c_str())); 1335 canvas = fPDFDocument->beginPage(this->width(), this->height()); 1336 } else if (fSaveToSKP) { 1337 canvas = fRecorder.beginRecording(9999, 9999, nullptr, 0); 1338 } else if (fUsePicture) { 1339 canvas = fRecorder.beginRecording(9999, 9999, nullptr, 0); 1340 } else { 1341 canvas = this->INHERITED::beforeChildren(canvas); 1342 } 1343 1344 if (fUseClip) { 1345 canvas->drawColor(0xFFFF88FF); 1346 canvas->clipPath(fClipPath, SkRegion::kIntersect_Op, true); 1347 } 1348 1349 // Install a flags filter proxy canvas if needed 1350 if (fLCDState != SkOSMenu::kMixedState || 1351 fAAState != SkOSMenu::kMixedState || 1352 fSubpixelState != SkOSMenu::kMixedState || 1353 fHintingState > 0 || 1354 fFilterQualityIndex > 0) { 1355 canvas = new FlagsFilterCanvas(canvas, fLCDState, fAAState, fSubpixelState, fHintingState, 1356 fFilterQualityIndex); 1357 fFlagsFilterCanvas.reset(canvas); 1358 } 1359 1360 return canvas; 1361 } 1362 #include "SkMultiPictureDraw.h" 1363 void SampleWindow::afterChildren(SkCanvas* orig) { 1364 fFlagsFilterCanvas.reset(nullptr); 1365 1366 if (fSaveToPdf) { 1367 fSaveToPdf = false; 1368 fPDFDocument->endPage(); 1369 fPDFDocument.reset(nullptr); 1370 // We took over the draw calls in order to create the PDF, so we need 1371 // to redraw. 1372 this->inval(nullptr); 1373 return; 1374 } 1375 1376 if (fRequestGrabImage) { 1377 fRequestGrabImage = false; 1378 1379 SkBitmap bmp = capture_bitmap(orig); 1380 if (!bmp.isNull()) { 1381 static int gSampleGrabCounter; 1382 SkString name; 1383 name.printf("sample_grab_%d.png", gSampleGrabCounter++); 1384 SkImageEncoder::EncodeFile(name.c_str(), bmp, 1385 SkImageEncoder::kPNG_Type, 100); 1386 } 1387 this->inval(nullptr); 1388 return; 1389 } 1390 1391 if (fSaveToSKP) { 1392 SkAutoTUnref<const SkPicture> picture(fRecorder.endRecording()); 1393 SkFILEWStream stream("sample_app.skp"); 1394 picture->serialize(&stream); 1395 fSaveToSKP = false; 1396 this->inval(nullptr); 1397 return; 1398 } 1399 1400 if (fUsePicture) { 1401 SkAutoTUnref<const SkPicture> picture(fRecorder.endRecording()); 1402 1403 // serialize/deserialize? 1404 if (false) { 1405 SkDynamicMemoryWStream wstream; 1406 picture->serialize(&wstream); 1407 1408 SkAutoTDelete<SkStream> rstream(wstream.detachAsStream()); 1409 picture.reset(SkPicture::CreateFromStream(rstream)); 1410 } 1411 orig->drawPicture(picture); 1412 } 1413 1414 // Do this after presentGL and other finishing, rather than in afterChild 1415 if (fMeasureFPS) { 1416 orig->flush(); 1417 fTimer.end(); 1418 fMeasureFPS_Time += fTimer.fWall; 1419 } 1420 } 1421 1422 void SampleWindow::beforeChild(SkView* child, SkCanvas* canvas) { 1423 if (fRotate) { 1424 SkScalar cx = this->width() / 2; 1425 SkScalar cy = this->height() / 2; 1426 canvas->translate(cx, cy); 1427 canvas->rotate(gAnimTimer.scaled(10)); 1428 canvas->translate(-cx, -cy); 1429 } 1430 1431 if (fPerspAnim) { 1432 SkScalar secs = gAnimTimer.scaled(1); 1433 1434 static const SkScalar gAnimPeriod = 10 * SK_Scalar1; 1435 static const SkScalar gAnimMag = SK_Scalar1 / 1000; 1436 SkScalar t = SkScalarMod(secs, gAnimPeriod); 1437 if (SkScalarFloorToInt(secs / gAnimPeriod) & 0x1) { 1438 t = gAnimPeriod - t; 1439 } 1440 t = 2 * t - gAnimPeriod; 1441 t *= gAnimMag / gAnimPeriod; 1442 SkMatrix m; 1443 m.reset(); 1444 #if 1 1445 m.setPerspY(t); 1446 #else 1447 m.setPerspY(SK_Scalar1 / 1000); 1448 m.setSkewX(8.0f / 25); 1449 m.dump(); 1450 #endif 1451 canvas->concat(m); 1452 } 1453 1454 if (fMeasureFPS) { 1455 (void)SampleView::SetRepeatDraw(child, FPS_REPEAT_COUNT); 1456 fTimer.start(); 1457 } else { 1458 (void)SampleView::SetRepeatDraw(child, 1); 1459 } 1460 if (fPerspAnim || fRotate) { 1461 this->inval(nullptr); 1462 } 1463 } 1464 1465 void SampleWindow::changeZoomLevel(float delta) { 1466 fZoomLevel += delta; 1467 if (fZoomLevel > 0) { 1468 fZoomLevel = SkMinScalar(fZoomLevel, MAX_ZOOM_LEVEL); 1469 fZoomScale = fZoomLevel + SK_Scalar1; 1470 } else if (fZoomLevel < 0) { 1471 fZoomLevel = SkMaxScalar(fZoomLevel, MIN_ZOOM_LEVEL); 1472 fZoomScale = SK_Scalar1 / (SK_Scalar1 - fZoomLevel); 1473 } else { 1474 fZoomScale = SK_Scalar1; 1475 } 1476 this->updateMatrix(); 1477 } 1478 1479 void SampleWindow::updateMatrix(){ 1480 SkMatrix m; 1481 m.reset(); 1482 if (fZoomLevel) { 1483 SkPoint center; 1484 //m = this->getLocalMatrix();//.invert(&m); 1485 m.mapXY(fZoomCenterX, fZoomCenterY, ¢er); 1486 SkScalar cx = center.fX; 1487 SkScalar cy = center.fY; 1488 1489 m.setTranslate(-cx, -cy); 1490 m.postScale(fZoomScale, fZoomScale); 1491 m.postTranslate(cx, cy); 1492 } 1493 1494 if (fFlipAxis) { 1495 m.preTranslate(fZoomCenterX, fZoomCenterY); 1496 if (fFlipAxis & kFlipAxis_X) { 1497 m.preScale(-SK_Scalar1, SK_Scalar1); 1498 } 1499 if (fFlipAxis & kFlipAxis_Y) { 1500 m.preScale(SK_Scalar1, -SK_Scalar1); 1501 } 1502 m.preTranslate(-fZoomCenterX, -fZoomCenterY); 1503 //canvas->concat(m); 1504 } 1505 // Apply any gesture matrix 1506 m.preConcat(fGesture.localM()); 1507 m.preConcat(fGesture.globalM()); 1508 1509 this->setLocalMatrix(m); 1510 1511 this->updateTitle(); 1512 this->inval(nullptr); 1513 } 1514 bool SampleWindow::previousSample() { 1515 fCurrIndex = (fCurrIndex - 1 + fSamples.count()) % fSamples.count(); 1516 this->loadView((*fSamples[fCurrIndex])()); 1517 return true; 1518 } 1519 1520 #include "SkResourceCache.h" 1521 #include "SkGlyphCache.h" 1522 bool SampleWindow::nextSample() { 1523 fCurrIndex = (fCurrIndex + 1) % fSamples.count(); 1524 this->loadView((*fSamples[fCurrIndex])()); 1525 1526 if (false) { 1527 SkResourceCache::TestDumpMemoryStatistics(); 1528 SkGlyphCache::Dump(); 1529 SkDebugf("\n"); 1530 } 1531 1532 return true; 1533 } 1534 1535 bool SampleWindow::goToSample(int i) { 1536 fCurrIndex = (i) % fSamples.count(); 1537 this->loadView((*fSamples[fCurrIndex])()); 1538 return true; 1539 } 1540 1541 SkString SampleWindow::getSampleTitle(int i) { 1542 return ::getSampleTitle(fSamples[i]); 1543 } 1544 1545 int SampleWindow::sampleCount() { 1546 return fSamples.count(); 1547 } 1548 1549 void SampleWindow::showOverview() { 1550 this->loadView(create_overview(fSamples.count(), fSamples.begin())); 1551 } 1552 1553 void SampleWindow::postAnimatingEvent() { 1554 if (fAnimating) { 1555 (new SkEvent(ANIMATING_EVENTTYPE, this->getSinkID()))->postDelay(ANIMATING_DELAY); 1556 } 1557 } 1558 1559 bool SampleWindow::onEvent(const SkEvent& evt) { 1560 if (evt.isType(gUpdateWindowTitleEvtName)) { 1561 this->updateTitle(); 1562 return true; 1563 } 1564 if (evt.isType(ANIMATING_EVENTTYPE)) { 1565 if (fAnimating) { 1566 this->nextSample(); 1567 this->postAnimatingEvent(); 1568 } 1569 return true; 1570 } 1571 if (evt.isType("set-curr-index")) { 1572 this->goToSample(evt.getFast32()); 1573 return true; 1574 } 1575 if (isInvalEvent(evt)) { 1576 this->inval(nullptr); 1577 return true; 1578 } 1579 int selected = -1; 1580 if (SkOSMenu::FindListIndex(evt, "Device Type", &selected)) { 1581 this->setDeviceType((DeviceType)selected); 1582 return true; 1583 } 1584 if (SkOSMenu::FindListIndex(evt, "ColorType", &selected)) { 1585 this->setDeviceColorType(gConfig[selected].fColorType, gConfig[selected].fProfileType); 1586 return true; 1587 } 1588 if (SkOSMenu::FindSwitchState(evt, "Slide Show", nullptr)) { 1589 this->toggleSlideshow(); 1590 return true; 1591 } 1592 if (SkOSMenu::FindTriState(evt, "AA", &fAAState) || 1593 SkOSMenu::FindTriState(evt, "LCD", &fLCDState) || 1594 SkOSMenu::FindListIndex(evt, "FilterQuality", &fFilterQualityIndex) || 1595 SkOSMenu::FindTriState(evt, "Subpixel", &fSubpixelState) || 1596 SkOSMenu::FindListIndex(evt, "Hinting", &fHintingState) || 1597 SkOSMenu::FindSwitchState(evt, "Clip", &fUseClip) || 1598 SkOSMenu::FindSwitchState(evt, "Zoomer", &fShowZoomer) || 1599 SkOSMenu::FindSwitchState(evt, "Magnify", &fMagnify)) 1600 { 1601 this->inval(nullptr); 1602 this->updateTitle(); 1603 return true; 1604 } 1605 if (SkOSMenu::FindListIndex(evt, "Tiling", &fTilingMode)) { 1606 if (SampleView::IsSampleView(curr_view(this))) { 1607 ((SampleView*)curr_view(this))->onTileSizeChanged(this->tileSize()); 1608 } 1609 this->inval(nullptr); 1610 this->updateTitle(); 1611 return true; 1612 } 1613 if (SkOSMenu::FindSwitchState(evt, "Flip X", nullptr)) { 1614 fFlipAxis ^= kFlipAxis_X; 1615 this->updateMatrix(); 1616 return true; 1617 } 1618 if (SkOSMenu::FindSwitchState(evt, "Flip Y", nullptr)) { 1619 fFlipAxis ^= kFlipAxis_Y; 1620 this->updateMatrix(); 1621 return true; 1622 } 1623 if (SkOSMenu::FindAction(evt,"Save to PDF")) { 1624 this->saveToPdf(); 1625 return true; 1626 } 1627 return this->INHERITED::onEvent(evt); 1628 } 1629 1630 bool SampleWindow::onQuery(SkEvent* query) { 1631 if (query->isType("get-slide-count")) { 1632 query->setFast32(fSamples.count()); 1633 return true; 1634 } 1635 if (query->isType("get-slide-title")) { 1636 SkView* view = (*fSamples[query->getFast32()])(); 1637 SkEvent evt(gTitleEvtName); 1638 if (view->doQuery(&evt)) { 1639 query->setString("title", evt.findString(gTitleEvtName)); 1640 } 1641 SkSafeUnref(view); 1642 return true; 1643 } 1644 if (query->isType("use-fast-text")) { 1645 SkEvent evt(gFastTextEvtName); 1646 return curr_view(this)->doQuery(&evt); 1647 } 1648 if (query->isType("ignore-window-bitmap")) { 1649 query->setFast32(this->getGrContext() != nullptr); 1650 return true; 1651 } 1652 return this->INHERITED::onQuery(query); 1653 } 1654 1655 DECLARE_bool(portableFonts); 1656 1657 bool SampleWindow::onHandleChar(SkUnichar uni) { 1658 { 1659 SkView* view = curr_view(this); 1660 if (view) { 1661 SkEvent evt(gCharEvtName); 1662 evt.setFast32(uni); 1663 if (view->doQuery(&evt)) { 1664 return true; 1665 } 1666 } 1667 } 1668 1669 int dx = 0xFF; 1670 int dy = 0xFF; 1671 1672 switch (uni) { 1673 case '5': dx = 0; dy = 0; break; 1674 case '8': dx = 0; dy = -1; break; 1675 case '6': dx = 1; dy = 0; break; 1676 case '2': dx = 0; dy = 1; break; 1677 case '4': dx = -1; dy = 0; break; 1678 case '7': dx = -1; dy = -1; break; 1679 case '9': dx = 1; dy = -1; break; 1680 case '3': dx = 1; dy = 1; break; 1681 case '1': dx = -1; dy = 1; break; 1682 1683 default: 1684 break; 1685 } 1686 1687 if (0xFF != dx && 0xFF != dy) { 1688 if ((dx | dy) == 0) { 1689 fScrollTestX = fScrollTestY = 0; 1690 } else { 1691 fScrollTestX += dx; 1692 fScrollTestY += dy; 1693 } 1694 this->inval(nullptr); 1695 return true; 1696 } 1697 1698 switch (uni) { 1699 case 27: // ESC 1700 gAnimTimer.stop(); 1701 if (this->sendAnimatePulse()) { 1702 this->inval(nullptr); 1703 } 1704 break; 1705 case ' ': 1706 gAnimTimer.togglePauseResume(); 1707 if (this->sendAnimatePulse()) { 1708 this->inval(nullptr); 1709 } 1710 break; 1711 case 'B': 1712 post_event_to_sink(new SkEvent("PictFileView::toggleBBox"), curr_view(this)); 1713 // Cannot call updateTitle() synchronously, because the toggleBBox event is still in 1714 // the queue. 1715 post_event_to_sink(new SkEvent(gUpdateWindowTitleEvtName), this); 1716 this->inval(nullptr); 1717 break; 1718 case 'D': 1719 toggleDistanceFieldFonts(); 1720 break; 1721 case 'f': 1722 // only 1723 toggleFPS(); 1724 break; 1725 case 'F': 1726 FLAGS_portableFonts ^= true; 1727 this->inval(nullptr); 1728 break; 1729 case 'g': 1730 fRequestGrabImage = true; 1731 this->inval(nullptr); 1732 break; 1733 case 'G': 1734 gShowGMBounds = !gShowGMBounds; 1735 post_event_to_sink(GMSampleView::NewShowSizeEvt(gShowGMBounds), 1736 curr_view(this)); 1737 this->inval(nullptr); 1738 break; 1739 case 'i': 1740 this->zoomIn(); 1741 break; 1742 case 'o': 1743 this->zoomOut(); 1744 break; 1745 case 'r': 1746 fRotate = !fRotate; 1747 this->inval(nullptr); 1748 this->updateTitle(); 1749 return true; 1750 case 'k': 1751 fPerspAnim = !fPerspAnim; 1752 this->inval(nullptr); 1753 this->updateTitle(); 1754 return true; 1755 case 'K': 1756 fSaveToSKP = true; 1757 this->inval(nullptr); 1758 return true; 1759 case 'M': 1760 fUsePicture = !fUsePicture; 1761 this->inval(nullptr); 1762 this->updateTitle(); 1763 return true; 1764 #if SK_SUPPORT_GPU 1765 case 'p': 1766 { 1767 GrContext* grContext = this->getGrContext(); 1768 if (grContext) { 1769 size_t cacheBytes; 1770 grContext->getResourceCacheUsage(nullptr, &cacheBytes); 1771 grContext->freeGpuResources(); 1772 SkDebugf("Purged %d bytes from the GPU resource cache.\n", cacheBytes); 1773 } 1774 } 1775 return true; 1776 #endif 1777 default: 1778 break; 1779 } 1780 1781 if (fAppMenu->handleKeyEquivalent(uni)|| fSlideMenu->handleKeyEquivalent(uni)) { 1782 this->onUpdateMenu(fAppMenu); 1783 this->onUpdateMenu(fSlideMenu); 1784 return true; 1785 } 1786 return this->INHERITED::onHandleChar(uni); 1787 } 1788 1789 void SampleWindow::setDeviceType(DeviceType type) { 1790 if (type == fDeviceType) 1791 return; 1792 1793 fDevManager->tearDownBackend(this); 1794 1795 fDeviceType = type; 1796 1797 fDevManager->setUpBackend(this, fMSAASampleCount); 1798 1799 this->updateTitle(); 1800 this->inval(nullptr); 1801 } 1802 1803 void SampleWindow::setDeviceColorType(SkColorType ct, SkColorProfileType pt) { 1804 this->setColorType(ct, pt); 1805 1806 fDevManager->tearDownBackend(this); 1807 1808 fDevManager->setUpBackend(this, fMSAASampleCount); 1809 1810 this->updateTitle(); 1811 this->inval(nullptr); 1812 } 1813 1814 void SampleWindow::toggleSlideshow() { 1815 fAnimating = !fAnimating; 1816 this->postAnimatingEvent(); 1817 this->updateTitle(); 1818 } 1819 1820 void SampleWindow::toggleRendering() { 1821 this->setDeviceType(cycle_devicetype(fDeviceType)); 1822 this->updateTitle(); 1823 this->inval(nullptr); 1824 } 1825 1826 void SampleWindow::toggleFPS() { 1827 fMeasureFPS = !fMeasureFPS; 1828 this->updateTitle(); 1829 this->inval(nullptr); 1830 } 1831 1832 void SampleWindow::toggleDistanceFieldFonts() { 1833 // reset backend 1834 fDevManager->tearDownBackend(this); 1835 fDevManager->setUpBackend(this, fMSAASampleCount); 1836 1837 SkSurfaceProps props = this->getSurfaceProps(); 1838 uint32_t flags = props.flags() ^ SkSurfaceProps::kUseDeviceIndependentFonts_Flag; 1839 this->setSurfaceProps(SkSurfaceProps(flags, props.pixelGeometry())); 1840 1841 this->updateTitle(); 1842 this->inval(nullptr); 1843 } 1844 1845 #include "SkDumpCanvas.h" 1846 1847 bool SampleWindow::onHandleKey(SkKey key) { 1848 { 1849 SkView* view = curr_view(this); 1850 if (view) { 1851 SkEvent evt(gKeyEvtName); 1852 evt.setFast32(key); 1853 if (view->doQuery(&evt)) { 1854 return true; 1855 } 1856 } 1857 } 1858 switch (key) { 1859 case kRight_SkKey: 1860 if (this->nextSample()) { 1861 return true; 1862 } 1863 break; 1864 case kLeft_SkKey: 1865 if (this->previousSample()) { 1866 return true; 1867 } 1868 return true; 1869 case kUp_SkKey: 1870 this->changeZoomLevel(1.f / 32.f); 1871 return true; 1872 case kDown_SkKey: 1873 this->changeZoomLevel(-1.f / 32.f); 1874 return true; 1875 case kOK_SkKey: { 1876 SkString title; 1877 if (curr_title(this, &title)) { 1878 writeTitleToPrefs(title.c_str()); 1879 } 1880 return true; 1881 } 1882 case kBack_SkKey: 1883 this->showOverview(); 1884 return true; 1885 default: 1886 break; 1887 } 1888 return this->INHERITED::onHandleKey(key); 1889 } 1890 1891 /////////////////////////////////////////////////////////////////////////////// 1892 1893 static const char gGestureClickType[] = "GestureClickType"; 1894 1895 bool SampleWindow::onDispatchClick(int x, int y, Click::State state, 1896 void* owner, unsigned modi) { 1897 if (Click::kMoved_State == state) { 1898 updatePointer(x, y); 1899 } 1900 int w = SkScalarRoundToInt(this->width()); 1901 int h = SkScalarRoundToInt(this->height()); 1902 1903 // check for the resize-box 1904 if (w - x < 16 && h - y < 16) { 1905 return false; // let the OS handle the click 1906 } 1907 else if (fMagnify) { 1908 //it's only necessary to update the drawing if there's a click 1909 this->inval(nullptr); 1910 return false; //prevent dragging while magnify is enabled 1911 } else { 1912 // capture control+option, and trigger debugger 1913 if ((modi & kControl_SkModifierKey) && (modi & kOption_SkModifierKey)) { 1914 if (Click::kDown_State == state) { 1915 SkEvent evt("debug-hit-test"); 1916 evt.setS32("debug-hit-test-x", x); 1917 evt.setS32("debug-hit-test-y", y); 1918 curr_view(this)->doEvent(evt); 1919 } 1920 return true; 1921 } else { 1922 return this->INHERITED::onDispatchClick(x, y, state, owner, modi); 1923 } 1924 } 1925 } 1926 1927 class GestureClick : public SkView::Click { 1928 public: 1929 GestureClick(SkView* target) : SkView::Click(target) { 1930 this->setType(gGestureClickType); 1931 } 1932 1933 static bool IsGesture(Click* click) { 1934 return click->isType(gGestureClickType); 1935 } 1936 }; 1937 1938 SkView::Click* SampleWindow::onFindClickHandler(SkScalar x, SkScalar y, 1939 unsigned modi) { 1940 return new GestureClick(this); 1941 } 1942 1943 bool SampleWindow::onClick(Click* click) { 1944 if (GestureClick::IsGesture(click)) { 1945 float x = static_cast<float>(click->fICurr.fX); 1946 float y = static_cast<float>(click->fICurr.fY); 1947 1948 switch (click->fState) { 1949 case SkView::Click::kDown_State: 1950 fGesture.touchBegin(click->fOwner, x, y); 1951 break; 1952 case SkView::Click::kMoved_State: 1953 fGesture.touchMoved(click->fOwner, x, y); 1954 this->updateMatrix(); 1955 break; 1956 case SkView::Click::kUp_State: 1957 fGesture.touchEnd(click->fOwner); 1958 this->updateMatrix(); 1959 break; 1960 } 1961 return true; 1962 } 1963 return false; 1964 } 1965 1966 /////////////////////////////////////////////////////////////////////////////// 1967 1968 void SampleWindow::loadView(SkView* view) { 1969 SkView::F2BIter iter(this); 1970 SkView* prev = iter.next(); 1971 if (prev) { 1972 prev->detachFromParent(); 1973 } 1974 1975 view->setVisibleP(true); 1976 view->setClipToBounds(false); 1977 this->attachChildToFront(view)->unref(); 1978 view->setSize(this->width(), this->height()); 1979 1980 //repopulate the slide menu when a view is loaded 1981 fSlideMenu->reset(); 1982 1983 this->onUpdateMenu(fSlideMenu); 1984 this->updateTitle(); 1985 } 1986 1987 static const char* gDeviceTypePrefix[] = { 1988 "raster: ", 1989 #if SK_SUPPORT_GPU 1990 "opengl: ", 1991 #if SK_ANGLE 1992 "angle: ", 1993 #endif // SK_ANGLE 1994 #if SK_COMMAND_BUFFER 1995 "command buffer: ", 1996 #endif // SK_COMMAND_BUFFER 1997 #endif // SK_SUPPORT_GPU 1998 }; 1999 static_assert(SK_ARRAY_COUNT(gDeviceTypePrefix) == SampleWindow::kDeviceTypeCnt, 2000 "array_size_mismatch"); 2001 2002 static const char* trystate_str(SkOSMenu::TriState state, 2003 const char trueStr[], const char falseStr[]) { 2004 if (SkOSMenu::kOnState == state) { 2005 return trueStr; 2006 } else if (SkOSMenu::kOffState == state) { 2007 return falseStr; 2008 } 2009 return nullptr; 2010 } 2011 2012 bool SampleWindow::getRawTitle(SkString* title) { 2013 return curr_title(this, title); 2014 } 2015 2016 void SampleWindow::updateTitle() { 2017 SkString title; 2018 if (!this->getRawTitle(&title)) { 2019 title.set("<unknown>"); 2020 } 2021 2022 title.prepend(gDeviceTypePrefix[fDeviceType]); 2023 2024 if (fTilingMode != kNo_Tiling) { 2025 title.prependf("<T: %s> ", gTilingInfo[fTilingMode].label); 2026 } 2027 if (fAnimating) { 2028 title.prepend("<A> "); 2029 } 2030 if (fRotate) { 2031 title.prepend("<R> "); 2032 } 2033 if (fPerspAnim) { 2034 title.prepend("<K> "); 2035 } 2036 if (this->getSurfaceProps().flags() & SkSurfaceProps::kUseDeviceIndependentFonts_Flag) { 2037 title.prepend("<DIF> "); 2038 } 2039 if (fUsePicture) { 2040 title.prepend("<P> "); 2041 } 2042 2043 title.prepend(trystate_str(fLCDState, "LCD ", "lcd ")); 2044 title.prepend(trystate_str(fAAState, "AA ", "aa ")); 2045 title.prepend(gFilterQualityStates[fFilterQualityIndex].fLabel); 2046 title.prepend(trystate_str(fSubpixelState, "S ", "s ")); 2047 title.prepend(fFlipAxis & kFlipAxis_X ? "X " : nullptr); 2048 title.prepend(fFlipAxis & kFlipAxis_Y ? "Y " : nullptr); 2049 title.prepend(gHintingStates[fHintingState].label); 2050 2051 if (fZoomLevel) { 2052 title.prependf("{%.2f} ", SkScalarToFloat(fZoomLevel)); 2053 } 2054 2055 if (fMeasureFPS) { 2056 title.appendf(" %8.4f ms", fMeasureFPS_Time / (float)FPS_REPEAT_COUNT); 2057 } 2058 2059 #if SK_SUPPORT_GPU 2060 if (IsGpuDeviceType(fDeviceType) && 2061 fDevManager && 2062 fDevManager->getGrRenderTarget() && 2063 fDevManager->getGrRenderTarget()->numColorSamples() > 0) { 2064 title.appendf(" [MSAA: %d]", 2065 fDevManager->getGrRenderTarget()->numColorSamples()); 2066 } 2067 #endif 2068 2069 title.appendf(" %s", find_config_name(this->info())); 2070 2071 this->setTitle(title.c_str()); 2072 } 2073 2074 void SampleWindow::onSizeChange() { 2075 this->INHERITED::onSizeChange(); 2076 2077 SkView::F2BIter iter(this); 2078 SkView* view = iter.next(); 2079 view->setSize(this->width(), this->height()); 2080 2081 // rebuild our clippath 2082 { 2083 const SkScalar W = this->width(); 2084 const SkScalar H = this->height(); 2085 2086 fClipPath.reset(); 2087 #if 0 2088 for (SkScalar y = SK_Scalar1; y < H; y += SkIntToScalar(32)) { 2089 SkRect r; 2090 r.set(SK_Scalar1, y, SkIntToScalar(30), y + SkIntToScalar(30)); 2091 for (; r.fLeft < W; r.offset(SkIntToScalar(32), 0)) 2092 fClipPath.addRect(r); 2093 } 2094 #else 2095 SkRect r; 2096 r.set(0, 0, W, H); 2097 fClipPath.addRect(r, SkPath::kCCW_Direction); 2098 r.set(W/4, H/4, W*3/4, H*3/4); 2099 fClipPath.addRect(r, SkPath::kCW_Direction); 2100 #endif 2101 } 2102 2103 fZoomCenterX = SkScalarHalf(this->width()); 2104 fZoomCenterY = SkScalarHalf(this->height()); 2105 2106 #ifdef SK_BUILD_FOR_ANDROID 2107 // FIXME: The first draw after a size change does not work on Android, so 2108 // we post an invalidate. 2109 this->postInvalDelay(); 2110 #endif 2111 this->updateTitle(); // to refresh our config 2112 fDevManager->windowSizeChanged(this); 2113 2114 if (fTilingMode != kNo_Tiling && SampleView::IsSampleView(view)) { 2115 ((SampleView*)view)->onTileSizeChanged(this->tileSize()); 2116 } 2117 } 2118 2119 /////////////////////////////////////////////////////////////////////////////// 2120 2121 static const char is_sample_view_tag[] = "sample-is-sample-view"; 2122 static const char repeat_count_tag[] = "sample-set-repeat-count"; 2123 2124 bool SampleView::IsSampleView(SkView* view) { 2125 SkEvent evt(is_sample_view_tag); 2126 return view->doQuery(&evt); 2127 } 2128 2129 bool SampleView::SetRepeatDraw(SkView* view, int count) { 2130 SkEvent evt(repeat_count_tag); 2131 evt.setFast32(count); 2132 return view->doEvent(evt); 2133 } 2134 2135 bool SampleView::onEvent(const SkEvent& evt) { 2136 if (evt.isType(repeat_count_tag)) { 2137 fRepeatCount = evt.getFast32(); 2138 return true; 2139 } 2140 return this->INHERITED::onEvent(evt); 2141 } 2142 2143 bool SampleView::onQuery(SkEvent* evt) { 2144 if (evt->isType(is_sample_view_tag)) { 2145 return true; 2146 } 2147 return this->INHERITED::onQuery(evt); 2148 } 2149 2150 void SampleView::onDraw(SkCanvas* canvas) { 2151 if (!fHaveCalledOnceBeforeDraw) { 2152 fHaveCalledOnceBeforeDraw = true; 2153 this->onOnceBeforeDraw(); 2154 } 2155 this->onDrawBackground(canvas); 2156 2157 for (int i = 0; i < fRepeatCount; i++) { 2158 SkAutoCanvasRestore acr(canvas, true); 2159 this->onDrawContent(canvas); 2160 #if SK_SUPPORT_GPU 2161 // Ensure the GrContext doesn't batch across draw loops. 2162 if (GrContext* context = canvas->getGrContext()) { 2163 context->flush(); 2164 } 2165 #endif 2166 } 2167 } 2168 2169 void SampleView::onDrawBackground(SkCanvas* canvas) { 2170 canvas->drawColor(fBGColor); 2171 } 2172 2173 /////////////////////////////////////////////////////////////////////////////// 2174 2175 template <typename T> void SkTBSort(T array[], int count) { 2176 for (int i = 1; i < count - 1; i++) { 2177 bool didSwap = false; 2178 for (int j = count - 1; j > i; --j) { 2179 if (array[j] < array[j-1]) { 2180 T tmp(array[j-1]); 2181 array[j-1] = array[j]; 2182 array[j] = tmp; 2183 didSwap = true; 2184 } 2185 } 2186 if (!didSwap) { 2187 break; 2188 } 2189 } 2190 2191 for (int k = 0; k < count - 1; k++) { 2192 SkASSERT(!(array[k+1] < array[k])); 2193 } 2194 } 2195 2196 #include "SkRandom.h" 2197 2198 static void rand_rect(SkIRect* rect, SkRandom& rand) { 2199 int bits = 8; 2200 int shift = 32 - bits; 2201 rect->set(rand.nextU() >> shift, rand.nextU() >> shift, 2202 rand.nextU() >> shift, rand.nextU() >> shift); 2203 rect->sort(); 2204 } 2205 2206 static void dumpRect(const SkIRect& r) { 2207 SkDebugf(" { %d, %d, %d, %d },\n", 2208 r.fLeft, r.fTop, 2209 r.fRight, r.fBottom); 2210 } 2211 2212 static void test_rects(const SkIRect rect[], int count) { 2213 SkRegion rgn0, rgn1; 2214 2215 for (int i = 0; i < count; i++) { 2216 rgn0.op(rect[i], SkRegion::kUnion_Op); 2217 // dumpRect(rect[i]); 2218 } 2219 rgn1.setRects(rect, count); 2220 2221 if (rgn0 != rgn1) { 2222 SkDebugf("\n"); 2223 for (int i = 0; i < count; i++) { 2224 dumpRect(rect[i]); 2225 } 2226 SkDebugf("\n"); 2227 } 2228 } 2229 2230 static void test() { 2231 size_t i; 2232 2233 const SkIRect r0[] = { 2234 { 0, 0, 1, 1 }, 2235 { 2, 2, 3, 3 }, 2236 }; 2237 const SkIRect r1[] = { 2238 { 0, 0, 1, 3 }, 2239 { 1, 1, 2, 2 }, 2240 { 2, 0, 3, 3 }, 2241 }; 2242 const SkIRect r2[] = { 2243 { 0, 0, 1, 2 }, 2244 { 2, 1, 3, 3 }, 2245 { 4, 0, 5, 1 }, 2246 { 6, 0, 7, 4 }, 2247 }; 2248 2249 static const struct { 2250 const SkIRect* fRects; 2251 int fCount; 2252 } gRecs[] = { 2253 { r0, SK_ARRAY_COUNT(r0) }, 2254 { r1, SK_ARRAY_COUNT(r1) }, 2255 { r2, SK_ARRAY_COUNT(r2) }, 2256 }; 2257 2258 for (i = 0; i < SK_ARRAY_COUNT(gRecs); i++) { 2259 test_rects(gRecs[i].fRects, gRecs[i].fCount); 2260 } 2261 2262 SkRandom rand; 2263 for (i = 0; i < 10000; i++) { 2264 SkRegion rgn0, rgn1; 2265 2266 const int N = 8; 2267 SkIRect rect[N]; 2268 for (int j = 0; j < N; j++) { 2269 rand_rect(&rect[j], rand); 2270 } 2271 test_rects(rect, N); 2272 } 2273 } 2274 2275 // FIXME: this should be in a header 2276 SkOSWindow* create_sk_window(void* hwnd, int argc, char** argv); 2277 SkOSWindow* create_sk_window(void* hwnd, int argc, char** argv) { 2278 if (false) { // avoid bit rot, suppress warning 2279 test(); 2280 } 2281 return new SampleWindow(hwnd, argc, argv, nullptr); 2282 } 2283 2284 // FIXME: this should be in a header 2285 void get_preferred_size(int* x, int* y, int* width, int* height); 2286 void get_preferred_size(int* x, int* y, int* width, int* height) { 2287 *x = 10; 2288 *y = 50; 2289 *width = 640; 2290 *height = 480; 2291 } 2292 2293 #ifdef SK_BUILD_FOR_IOS 2294 #include "SkApplication.h" 2295 IOS_launch_type set_cmd_line_args(int , char *[], const char* resourceDir) { 2296 SetResourcePath(resourceDir); 2297 return kApplication__iOSLaunchType; 2298 } 2299 #endif 2300 2301 void application_init() { 2302 // setenv("ANDROID_ROOT", "../../../data", 0); 2303 #ifdef SK_BUILD_FOR_MAC 2304 setenv("ANDROID_ROOT", "/android/device/data", 0); 2305 #endif 2306 SkGraphics::Init(); 2307 SkEvent::Init(); 2308 } 2309 2310 void application_term() { 2311 SkEvent::Term(); 2312 } 2313