blob: 2c09bc3bcbcf485589b3abdb1a693f98633e204e [file] [log] [blame]
epoger@google.comec3ed6a2011-07-28 14:26:00 +00001
2/*
3 * Copyright 2006 The Android Open Source Project
4 *
5 * Use of this source code is governed by a BSD-style license that can be
6 * found in the LICENSE file.
7 */
8
reed@android.com8a1c16f2008-12-17 15:59:43 +00009
10#include "SkEvent.h"
11
12void SkEvent::initialize(const char* type, size_t typeLen) {
13 fType = NULL;
14 setType(type, typeLen);
15 f32 = 0;
16#ifdef SK_DEBUG
17 fTargetID = 0;
18 fTime = 0;
19 fNextEvent = NULL;
20#endif
21 SkDEBUGCODE(fDebugTrace = false;)
22}
23
24SkEvent::SkEvent()
25{
26 initialize("", 0);
27}
28
29SkEvent::SkEvent(const SkEvent& src)
30{
31 *this = src;
32 if (((size_t) fType & 1) == 0)
33 setType(src.fType);
34}
35
36SkEvent::SkEvent(const SkString& type)
37{
38 initialize(type.c_str(), type.size());
39}
40
41SkEvent::SkEvent(const char type[])
42{
43 SkASSERT(type);
44 initialize(type, strlen(type));
45}
46
47SkEvent::~SkEvent()
48{
49 if (((size_t) fType & 1) == 0)
50 sk_free((void*) fType);
51}
52
53static size_t makeCharArray(char* buffer, size_t compact)
54{
55 size_t bits = (size_t) compact >> 1;
56 memcpy(buffer, &bits, sizeof(compact));
57 buffer[sizeof(compact)] = 0;
58 return strlen(buffer);
59}
60
61#if 0
62const char* SkEvent::getType() const
63{
64 if ((size_t) fType & 1) { // not a pointer
65 char chars[sizeof(size_t) + 1];
66 size_t len = makeCharArray(chars, (size_t) fType);
67 fType = (char*) sk_malloc_throw(len);
68 SkASSERT(((size_t) fType & 1) == 0);
69 memcpy(fType, chars, len);
70 }
71 return fType;
72}
73#endif
74
75void SkEvent::getType(SkString* str) const
76{
77 if (str)
78 {
79 if ((size_t) fType & 1) // not a pointer
80 {
81 char chars[sizeof(size_t) + 1];
82 size_t len = makeCharArray(chars, (size_t) fType);
83 str->set(chars, len);
84 }
85 else
86 str->set(fType);
87 }
88}
89
90bool SkEvent::isType(const SkString& str) const
91{
92 return this->isType(str.c_str(), str.size());
93}
94
95bool SkEvent::isType(const char type[], size_t typeLen) const
96{
97 if (typeLen == 0)
98 typeLen = strlen(type);
99 if ((size_t) fType & 1) { // not a pointer
100 char chars[sizeof(size_t) + 1];
101 size_t len = makeCharArray(chars, (size_t) fType);
102 return len == typeLen && strncmp(chars, type, typeLen) == 0;
103 }
104 return strncmp(fType, type, typeLen) == 0 && fType[typeLen] == 0;
105}
106
107void SkEvent::setType(const char type[], size_t typeLen)
108{
109 if (typeLen == 0)
110 typeLen = strlen(type);
111 if (typeLen <= sizeof(fType)) {
112 size_t slot = 0;
113 memcpy(&slot, type, typeLen);
114 if (slot << 1 >> 1 != slot)
115 goto useCharStar;
116 slot <<= 1;
117 slot |= 1;
118 fType = (char*) slot;
119 } else {
120useCharStar:
121 fType = (char*) sk_malloc_throw(typeLen + 1);
122 SkASSERT(((size_t) fType & 1) == 0);
123 memcpy(fType, type, typeLen);
124 fType[typeLen] = 0;
125 }
126}
127
128void SkEvent::setType(const SkString& type)
129{
130 setType(type.c_str());
131}
132
133////////////////////////////////////////////////////////////////////////////
134
135#include "SkParse.h"
136
137void SkEvent::inflate(const SkDOM& dom, const SkDOM::Node* node)
138{
139 const char* name = dom.findAttr(node, "type");
140 if (name)
141 this->setType(name);
142
143 const char* value;
144 if ((value = dom.findAttr(node, "fast32")) != NULL)
145 {
146 int32_t n;
147 if (SkParse::FindS32(value, &n))
148 this->setFast32(n);
149 }
150
151 for (node = dom.getFirstChild(node); node; node = dom.getNextSibling(node))
152 {
153 if (strcmp(dom.getName(node), "data"))
154 {
155 SkDEBUGCODE(SkDebugf("SkEvent::inflate unrecognized subelement <%s>\n", dom.getName(node));)
156 continue;
157 }
158
159 name = dom.findAttr(node, "name");
160 if (name == NULL)
161 {
162 SkDEBUGCODE(SkDebugf("SkEvent::inflate missing required \"name\" attribute in <data> subelement\n");)
163 continue;
164 }
165
166 if ((value = dom.findAttr(node, "s32")) != NULL)
167 {
168 int32_t n;
169 if (SkParse::FindS32(value, &n))
170 this->setS32(name, n);
171 }
172 else if ((value = dom.findAttr(node, "scalar")) != NULL)
173 {
174 SkScalar x;
175 if (SkParse::FindScalar(value, &x))
176 this->setScalar(name, x);
177 }
178 else if ((value = dom.findAttr(node, "string")) != NULL)
179 this->setString(name, value);
180#ifdef SK_DEBUG
181 else
182 {
183 SkDebugf("SkEvent::inflate <data name=\"%s\"> subelement missing required type attribute [S32 | scalar | string]\n", name);
184 }
185#endif
186 }
187}
188
189#ifdef SK_DEBUG
190
191 #ifndef SkScalarToFloat
192 #define SkScalarToFloat(x) ((x) / 65536.f)
193 #endif
194
195 void SkEvent::dump(const char title[])
196 {
197 if (title)
198 SkDebugf("%s ", title);
199
200 SkString etype;
201 this->getType(&etype);
202 SkDebugf("event<%s> fast32=%d", etype.c_str(), this->getFast32());
203
204 const SkMetaData& md = this->getMetaData();
205 SkMetaData::Iter iter(md);
206 SkMetaData::Type mtype;
207 int count;
208 const char* name;
209
210 while ((name = iter.next(&mtype, &count)) != NULL)
211 {
212 SkASSERT(count > 0);
213
214 SkDebugf(" <%s>=", name);
215 switch (mtype) {
216 case SkMetaData::kS32_Type: // vector version???
217 {
218 int32_t value;
219 md.findS32(name, &value);
220 SkDebugf("%d ", value);
221 }
222 break;
223 case SkMetaData::kScalar_Type:
224 {
225 const SkScalar* values = md.findScalars(name, &count, NULL);
226 SkDebugf("%f", SkScalarToFloat(values[0]));
227 for (int i = 1; i < count; i++)
228 SkDebugf(", %f", SkScalarToFloat(values[i]));
229 SkDebugf(" ");
230 }
231 break;
232 case SkMetaData::kString_Type:
233 {
234 const char* value = md.findString(name);
235 SkASSERT(value);
236 SkDebugf("<%s> ", value);
237 }
238 break;
239 case SkMetaData::kPtr_Type: // vector version???
240 {
241 void* value;
242 md.findPtr(name, &value);
243 SkDebugf("%p ", value);
244 }
245 break;
246 case SkMetaData::kBool_Type: // vector version???
247 {
248 bool value;
249 md.findBool(name, &value);
250 SkDebugf("%s ", value ? "true" : "false");
251 }
252 break;
253 default:
254 SkASSERT(!"unknown metadata type returned from iterator");
255 break;
256 }
257 }
258 SkDebugf("\n");
259 }
260#endif
261
262///////////////////////////////////////////////////////////////////////////////////////
263
264#ifdef SK_DEBUG
265// #define SK_TRACE_EVENTSx
266#endif
267
268#ifdef SK_TRACE_EVENTS
269 static void event_log(const char s[])
270 {
271 SkDEBUGF(("%s\n", s));
272 }
273
274 #define EVENT_LOG(s) event_log(s)
275 #define EVENT_LOGN(s, n) do { SkString str(s); str.append(" "); str.appendS32(n); event_log(str.c_str()); } while (0)
276#else
277 #define EVENT_LOG(s)
278 #define EVENT_LOGN(s, n)
279#endif
280
281#include "SkGlobals.h"
282#include "SkThread.h"
283#include "SkTime.h"
284
285#define SK_Event_GlobalsTag SkSetFourByteTag('e', 'v', 'n', 't')
286
287class SkEvent_Globals : public SkGlobals::Rec {
288public:
289 SkMutex fEventMutex;
290 SkEvent* fEventQHead, *fEventQTail;
291 SkEvent* fDelayQHead;
292 SkDEBUGCODE(int fEventCounter;)
293};
294
295static SkGlobals::Rec* create_globals()
296{
297 SkEvent_Globals* rec = new SkEvent_Globals;
298 rec->fEventQHead = NULL;
299 rec->fEventQTail = NULL;
300 rec->fDelayQHead = NULL;
301 SkDEBUGCODE(rec->fEventCounter = 0;)
302 return rec;
303}
304
305bool SkEvent::Post(SkEvent* evt, SkEventSinkID sinkID, SkMSec delay)
306{
307 if (delay)
308 return SkEvent::PostTime(evt, sinkID, SkTime::GetMSecs() + delay);
309
310 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
311
312 evt->fTargetID = sinkID;
313
314#ifdef SK_TRACE_EVENTS
315 {
316 SkString str("SkEvent::Post(");
317 str.append(evt->getType());
318 str.append(", 0x");
319 str.appendHex(sinkID);
320 str.append(", ");
321 str.appendS32(delay);
322 str.append(")");
323 event_log(str.c_str());
324 }
325#endif
326
327 globals.fEventMutex.acquire();
328 bool wasEmpty = SkEvent::Enqueue(evt);
329 globals.fEventMutex.release();
330
331 // call outside of us holding the mutex
332 if (wasEmpty)
333 SkEvent::SignalNonEmptyQueue();
334 return true;
335}
336
337#if defined(SK_SIMULATE_FAILED_MALLOC) && defined(SK_FIND_MEMORY_LEAKS)
338SkMSec gMaxDrawTime;
339#endif
340
341bool SkEvent::PostTime(SkEvent* evt, SkEventSinkID sinkID, SkMSec time)
342{
343#if defined(SK_SIMULATE_FAILED_MALLOC) && defined(SK_FIND_MEMORY_LEAKS)
344 gMaxDrawTime = time;
345#endif
346 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
347
348 evt->fTargetID = sinkID;
349
350#ifdef SK_TRACE_EVENTS
351 {
352 SkString str("SkEvent::Post(");
353 str.append(evt->getType());
354 str.append(", 0x");
355 str.appendHex(sinkID);
356 str.append(", ");
357 str.appendS32(time);
358 str.append(")");
359 event_log(str.c_str());
360 }
361#endif
362
363 globals.fEventMutex.acquire();
364 SkMSec queueDelay = SkEvent::EnqueueTime(evt, time);
365 globals.fEventMutex.release();
366
367 // call outside of us holding the mutex
368 if ((int32_t)queueDelay != ~0)
369 SkEvent::SignalQueueTimer(queueDelay);
370 return true;
371}
372
373bool SkEvent::Enqueue(SkEvent* evt)
374{
375 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
376 // gEventMutex acquired by caller
377
378 SkASSERT(evt);
379
380 bool wasEmpty = globals.fEventQHead == NULL;
381
382 if (globals.fEventQTail)
383 globals.fEventQTail->fNextEvent = evt;
384 globals.fEventQTail = evt;
385 if (globals.fEventQHead == NULL)
386 globals.fEventQHead = evt;
387 evt->fNextEvent = NULL;
388
389 SkDEBUGCODE(++globals.fEventCounter);
390// SkDebugf("Enqueue: count=%d\n", gEventCounter);
391
392 return wasEmpty;
393}
394
395SkEvent* SkEvent::Dequeue(SkEventSinkID* sinkID)
396{
397 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
398 globals.fEventMutex.acquire();
399
400 SkEvent* evt = globals.fEventQHead;
401 if (evt)
402 {
403 SkDEBUGCODE(--globals.fEventCounter);
404
405 if (sinkID)
406 *sinkID = evt->fTargetID;
407
408 globals.fEventQHead = evt->fNextEvent;
409 if (globals.fEventQHead == NULL)
410 globals.fEventQTail = NULL;
411 }
412 globals.fEventMutex.release();
413
414// SkDebugf("Dequeue: count=%d\n", gEventCounter);
415
416 return evt;
417}
418
419bool SkEvent::QHasEvents()
420{
421 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
422
423 // this is not thread accurate, need a semaphore for that
424 return globals.fEventQHead != NULL;
425}
426
427#ifdef SK_TRACE_EVENTS
428 static int gDelayDepth;
429#endif
430
431SkMSec SkEvent::EnqueueTime(SkEvent* evt, SkMSec time)
432{
433#ifdef SK_TRACE_EVENTS
434 SkDebugf("enqueue-delay %s %d (%d)", evt->getType(), time, gDelayDepth);
435 const char* idStr = evt->findString("id");
436 if (idStr)
437 SkDebugf(" (%s)", idStr);
438 SkDebugf("\n");
439 ++gDelayDepth;
440#endif
441
442 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
443 // gEventMutex acquired by caller
444
445 SkEvent* curr = globals.fDelayQHead;
446 SkEvent* prev = NULL;
447
448 while (curr)
449 {
450 if (SkMSec_LT(time, curr->fTime))
451 break;
452 prev = curr;
453 curr = curr->fNextEvent;
454 }
455
456 evt->fTime = time;
457 evt->fNextEvent = curr;
458 if (prev == NULL)
459 globals.fDelayQHead = evt;
460 else
461 prev->fNextEvent = evt;
462
463 SkMSec delay = globals.fDelayQHead->fTime - SkTime::GetMSecs();
464 if ((int32_t)delay <= 0)
465 delay = 1;
466 return delay;
467}
468
469//////////////////////////////////////////////////////////////////////////////
470
471#include "SkEventSink.h"
472
473bool SkEvent::ProcessEvent()
474{
475 SkEventSinkID sinkID;
476 SkEvent* evt = SkEvent::Dequeue(&sinkID);
477 SkAutoTDelete<SkEvent> autoDelete(evt);
478 bool again = false;
479
480 EVENT_LOGN("ProcessEvent", (int32_t)evt);
481
482 if (evt)
483 {
484 (void)SkEventSink::DoEvent(*evt, sinkID);
485 again = SkEvent::QHasEvents();
486 }
487 return again;
488}
489
490void SkEvent::ServiceQueueTimer()
491{
492 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
493
494 globals.fEventMutex.acquire();
495
496 bool wasEmpty = false;
497 SkMSec now = SkTime::GetMSecs();
498 SkEvent* evt = globals.fDelayQHead;
499
500 while (evt)
501 {
502 if (SkMSec_LT(now, evt->fTime))
503 break;
504
505#ifdef SK_TRACE_EVENTS
506 --gDelayDepth;
507 SkDebugf("dequeue-delay %s (%d)", evt->getType(), gDelayDepth);
508 const char* idStr = evt->findString("id");
509 if (idStr)
510 SkDebugf(" (%s)", idStr);
511 SkDebugf("\n");
512#endif
513
514 SkEvent* next = evt->fNextEvent;
515 if (SkEvent::Enqueue(evt))
516 wasEmpty = true;
517 evt = next;
518 }
519 globals.fDelayQHead = evt;
520
521 SkMSec time = evt ? evt->fTime - now : 0;
522
523 globals.fEventMutex.release();
524
525 if (wasEmpty)
526 SkEvent::SignalNonEmptyQueue();
527
528 SkEvent::SignalQueueTimer(time);
529}
530
reed@android.comf2b98d62010-12-20 18:26:13 +0000531int SkEvent::CountEventsOnQueue() {
532 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
533 globals.fEventMutex.acquire();
534
535 int count = 0;
536 const SkEvent* evt = globals.fEventQHead;
537 while (evt) {
538 count += 1;
539 evt = evt->fNextEvent;
540 }
541 globals.fEventMutex.release();
542
543 return count;
544}
545
reed@android.com8a1c16f2008-12-17 15:59:43 +0000546////////////////////////////////////////////////////////////////
547
548void SkEvent::Init()
549{
550}
551
552void SkEvent::Term()
553{
554 SkEvent_Globals& globals = *(SkEvent_Globals*)SkGlobals::Find(SK_Event_GlobalsTag, create_globals);
555
556 SkEvent* evt = globals.fEventQHead;
557 while (evt)
558 {
559 SkEvent* next = evt->fNextEvent;
560 delete evt;
561 evt = next;
562 }
563
564 evt = globals.fDelayQHead;
565 while (evt)
566 {
567 SkEvent* next = evt->fNextEvent;
568 delete evt;
569 evt = next;
570 }
571}
572