1 /*
2 * Copyright (c) 2011-2013, The Linux Foundation. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions are
6 * met:
7 * * Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer.
9 * * Redistributions in binary form must reproduce the above
10 * copyright notice, this list of conditions and the following
11 * disclaimer in the documentation and/or other materials provided
12 * with the distribution.
13 * * Neither the name of The Linux Foundation nor the names of its
14 * contributors may be used to endorse or promote products derived
15 * from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS
21 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
24 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
25 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
26 * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
27 * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30 #include <dlfcn.h>
31 #include "overlay.h"
32 #include "pipes/overlayGenPipe.h"
33 #include "mdp_version.h"
34 #include "qdMetaData.h"
35
36 #define PIPE_DEBUG 0
37
38 namespace overlay {
39 using namespace utils;
40 using namespace qdutils;
41
Overlay()42 Overlay::Overlay() {
43 int numPipes = qdutils::MDPVersion::getInstance().getTotalPipes();
44 PipeBook::NUM_PIPES = (numPipes <= utils::OV_MAX)? numPipes : utils::OV_MAX;
45 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
46 mPipeBook[i].init();
47 }
48
49 mDumpStr[0] = '\0';
50 initScalar();
51 setDMAMultiplexingSupported();
52 }
53
~Overlay()54 Overlay::~Overlay() {
55 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
56 mPipeBook[i].destroy();
57 }
58 destroyScalar();
59 }
60
configBegin()61 void Overlay::configBegin() {
62 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
63 //Mark as available for this round.
64 PipeBook::resetUse(i);
65 PipeBook::resetAllocation(i);
66 }
67 mDumpStr[0] = '\0';
68 }
69
configDone()70 void Overlay::configDone() {
71 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
72 if((PipeBook::isNotUsed(i) && !sessionInProgress((eDest)i)) ||
73 isSessionEnded((eDest)i)) {
74 //Forces UNSET on pipes, flushes rotator memory and session, closes
75 //fds
76 if(mPipeBook[i].valid()) {
77 char str[32];
78 snprintf(str, 32, "Unset=%s dpy=%d mix=%d; ",
79 PipeBook::getDestStr((eDest)i),
80 mPipeBook[i].mDisplay, mPipeBook[i].mMixer);
81 #if PIPE_DEBUG
82 strlcat(mDumpStr, str, sizeof(mDumpStr));
83 #endif
84 }
85 mPipeBook[i].destroy();
86 }
87 }
88 dump();
89 PipeBook::save();
90 }
91
getPipeId(utils::eDest dest)92 int Overlay::getPipeId(utils::eDest dest) {
93 return mPipeBook[(int)dest].mPipe->getPipeId();
94 }
95
getDest(int pipeid)96 eDest Overlay::getDest(int pipeid) {
97 eDest dest = OV_INVALID;
98 // finding the dest corresponding to the given pipe
99 for(int i=0; i < PipeBook::NUM_PIPES; ++i) {
100 if(mPipeBook[i].valid() && mPipeBook[i].mPipe->getPipeId() == pipeid) {
101 return (eDest)i;
102 }
103 }
104 return dest;
105 }
106
reservePipe(int pipeid)107 eDest Overlay::reservePipe(int pipeid) {
108 eDest dest = getDest(pipeid);
109 PipeBook::setAllocation((int)dest);
110 return dest;
111 }
112
nextPipe(eMdpPipeType type,int dpy,int mixer)113 eDest Overlay::nextPipe(eMdpPipeType type, int dpy, int mixer) {
114 eDest dest = OV_INVALID;
115
116 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
117 if( (type == OV_MDP_PIPE_ANY || //Pipe type match
118 type == PipeBook::getPipeType((eDest)i)) &&
119 (mPipeBook[i].mDisplay == DPY_UNUSED || //Free or same display
120 mPipeBook[i].mDisplay == dpy) &&
121 (mPipeBook[i].mMixer == MIXER_UNUSED || //Free or same mixer
122 mPipeBook[i].mMixer == mixer) &&
123 PipeBook::isNotAllocated(i) && //Free pipe
124 ( (sDMAMultiplexingSupported && dpy) ||
125 !(sDMAMode == DMA_BLOCK_MODE && //DMA pipe in Line mode
126 PipeBook::getPipeType((eDest)i) == OV_MDP_PIPE_DMA)) ){
127 //DMA-Multiplexing is only supported for WB on 8x26
128 dest = (eDest)i;
129 PipeBook::setAllocation(i);
130 break;
131 }
132 }
133
134 if(dest != OV_INVALID) {
135 int index = (int)dest;
136 mPipeBook[index].mDisplay = dpy;
137 mPipeBook[index].mMixer = mixer;
138 if(not mPipeBook[index].valid()) {
139 mPipeBook[index].mPipe = new GenericPipe(dpy);
140 mPipeBook[index].mSession = PipeBook::NONE;
141 char str[32];
142 snprintf(str, 32, "Set=%s dpy=%d mix=%d; ",
143 PipeBook::getDestStr(dest), dpy, mixer);
144 #if PIPE_DEBUG
145 strlcat(mDumpStr, str, sizeof(mDumpStr));
146 #endif
147 }
148 } else {
149 ALOGD_IF(PIPE_DEBUG, "Pipe unavailable type=%d display=%d mixer=%d",
150 (int)type, dpy, mixer);
151 }
152
153 return dest;
154 }
155
getPipe(const PipeSpecs & pipeSpecs)156 utils::eDest Overlay::getPipe(const PipeSpecs& pipeSpecs) {
157 if(MDPVersion::getInstance().is8x26()) {
158 return getPipe_8x26(pipeSpecs);
159 } else if(MDPVersion::getInstance().is8x16()) {
160 return getPipe_8x16(pipeSpecs);
161 }
162
163 eDest dest = OV_INVALID;
164
165 //The default behavior is to assume RGB and VG pipes have scalars
166 if(pipeSpecs.formatClass == FORMAT_YUV) {
167 return nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
168 } else if(pipeSpecs.fb == false) { //RGB App layers
169 if(not pipeSpecs.needsScaling) {
170 dest = nextPipe(OV_MDP_PIPE_DMA, pipeSpecs.dpy, pipeSpecs.mixer);
171 }
172 if(dest == OV_INVALID) {
173 dest = nextPipe(OV_MDP_PIPE_RGB, pipeSpecs.dpy, pipeSpecs.mixer);
174 }
175 if(dest == OV_INVALID) {
176 dest = nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
177 }
178 } else { //FB layer
179 dest = nextPipe(OV_MDP_PIPE_RGB, pipeSpecs.dpy, pipeSpecs.mixer);
180 if(dest == OV_INVALID) {
181 dest = nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
182 }
183 //Some features can cause FB to have scaling as well.
184 //If we ever come to this block with FB needing scaling,
185 //the screen will be black for a frame, since the FB won't get a pipe
186 //but atleast this will prevent a hang
187 if(dest == OV_INVALID and (not pipeSpecs.needsScaling)) {
188 dest = nextPipe(OV_MDP_PIPE_DMA, pipeSpecs.dpy, pipeSpecs.mixer);
189 }
190 }
191 return dest;
192 }
193
getPipe_8x26(const PipeSpecs & pipeSpecs)194 utils::eDest Overlay::getPipe_8x26(const PipeSpecs& pipeSpecs) {
195 //Use this to hide all the 8x26 requirements that cannot be humanly
196 //described in a generic way
197 eDest dest = OV_INVALID;
198 if(pipeSpecs.formatClass == FORMAT_YUV) { //video
199 return nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
200 } else if(pipeSpecs.fb == false) { //RGB app layers
201 if(not pipeSpecs.needsScaling) {
202 dest = nextPipe(OV_MDP_PIPE_DMA, pipeSpecs.dpy, pipeSpecs.mixer);
203 }
204 if(dest == OV_INVALID) {
205 dest = nextPipe(OV_MDP_PIPE_RGB, pipeSpecs.dpy, pipeSpecs.mixer);
206 }
207 if(dest == OV_INVALID) {
208 dest = nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
209 }
210 } else { //FB layer
211 //For 8x26 Secondary we use DMA always for FB for inline rotation
212 if(pipeSpecs.dpy == DPY_PRIMARY) {
213 dest = nextPipe(OV_MDP_PIPE_RGB, pipeSpecs.dpy, pipeSpecs.mixer);
214 if(dest == OV_INVALID) {
215 dest = nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
216 }
217 }
218 if(dest == OV_INVALID and (not pipeSpecs.needsScaling)) {
219 dest = nextPipe(OV_MDP_PIPE_DMA, pipeSpecs.dpy, pipeSpecs.mixer);
220 }
221 }
222 return dest;
223 }
224
getPipe_8x16(const PipeSpecs & pipeSpecs)225 utils::eDest Overlay::getPipe_8x16(const PipeSpecs& pipeSpecs) {
226 //Having such functions help keeping the interface generic but code specific
227 //and rife with assumptions
228 eDest dest = OV_INVALID;
229 if(pipeSpecs.formatClass == FORMAT_YUV or pipeSpecs.needsScaling) {
230 return nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
231 } else if(pipeSpecs.fb == false) { //RGB app layers
232 //Since this is a specific func, we can assume stuff like RGB pipe not
233 //having scalar blocks
234 dest = nextPipe(OV_MDP_PIPE_RGB, pipeSpecs.dpy, pipeSpecs.mixer);
235 if(dest == OV_INVALID) {
236 dest = nextPipe(OV_MDP_PIPE_DMA, pipeSpecs.dpy, pipeSpecs.mixer);
237 }
238 } else {
239 //For 8x16 Secondary we use DMA always for FB for inline rotation
240 if(pipeSpecs.dpy == DPY_PRIMARY) {
241 dest = nextPipe(OV_MDP_PIPE_RGB, pipeSpecs.dpy, pipeSpecs.mixer);
242 if(dest == OV_INVALID) {
243 dest = nextPipe(OV_MDP_PIPE_VG, pipeSpecs.dpy, pipeSpecs.mixer);
244 }
245 }
246 if(dest == OV_INVALID) {
247 dest = nextPipe(OV_MDP_PIPE_DMA, pipeSpecs.dpy, pipeSpecs.mixer);
248 }
249 }
250 return dest;
251 }
252
endAllSessions()253 void Overlay::endAllSessions() {
254 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
255 if(mPipeBook[i].valid() && mPipeBook[i].mSession==PipeBook::START)
256 mPipeBook[i].mSession = PipeBook::END;
257 }
258 }
259
isPipeTypeAttached(eMdpPipeType type)260 bool Overlay::isPipeTypeAttached(eMdpPipeType type) {
261 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
262 if(type == PipeBook::getPipeType((eDest)i) &&
263 mPipeBook[i].mDisplay != DPY_UNUSED) {
264 return true;
265 }
266 }
267 return false;
268 }
269
comparePipePriority(utils::eDest pipe1Index,utils::eDest pipe2Index)270 int Overlay::comparePipePriority(utils::eDest pipe1Index,
271 utils::eDest pipe2Index) {
272 validate((int)pipe1Index);
273 validate((int)pipe2Index);
274 uint8_t pipe1Prio = mPipeBook[(int)pipe1Index].mPipe->getPriority();
275 uint8_t pipe2Prio = mPipeBook[(int)pipe2Index].mPipe->getPriority();
276 if(pipe1Prio > pipe2Prio)
277 return -1;
278 if(pipe1Prio < pipe2Prio)
279 return 1;
280 return 0;
281 }
282
commit(utils::eDest dest)283 bool Overlay::commit(utils::eDest dest) {
284 bool ret = false;
285 int index = (int)dest;
286 validate(index);
287
288 if(mPipeBook[index].mPipe->commit()) {
289 ret = true;
290 PipeBook::setUse((int)dest);
291 } else {
292 int dpy = mPipeBook[index].mDisplay;
293 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
294 if (mPipeBook[i].mDisplay == dpy) {
295 PipeBook::resetAllocation(i);
296 PipeBook::resetUse(i);
297 }
298 }
299 }
300 return ret;
301 }
302
queueBuffer(int fd,uint32_t offset,utils::eDest dest)303 bool Overlay::queueBuffer(int fd, uint32_t offset,
304 utils::eDest dest) {
305 int index = (int)dest;
306 bool ret = false;
307 validate(index);
308 //Queue only if commit() has succeeded (and the bit set)
309 if(PipeBook::isUsed((int)dest)) {
310 ret = mPipeBook[index].mPipe->queueBuffer(fd, offset);
311 }
312 return ret;
313 }
314
setCrop(const utils::Dim & d,utils::eDest dest)315 void Overlay::setCrop(const utils::Dim& d,
316 utils::eDest dest) {
317 int index = (int)dest;
318 validate(index);
319 mPipeBook[index].mPipe->setCrop(d);
320 }
321
setColor(const uint32_t color,utils::eDest dest)322 void Overlay::setColor(const uint32_t color,
323 utils::eDest dest) {
324 int index = (int)dest;
325 validate(index);
326 mPipeBook[index].mPipe->setColor(color);
327 }
328
setPosition(const utils::Dim & d,utils::eDest dest)329 void Overlay::setPosition(const utils::Dim& d,
330 utils::eDest dest) {
331 int index = (int)dest;
332 validate(index);
333 mPipeBook[index].mPipe->setPosition(d);
334 }
335
setTransform(const int orient,utils::eDest dest)336 void Overlay::setTransform(const int orient,
337 utils::eDest dest) {
338 int index = (int)dest;
339 validate(index);
340
341 utils::eTransform transform =
342 static_cast<utils::eTransform>(orient);
343 mPipeBook[index].mPipe->setTransform(transform);
344
345 }
346
setSource(const utils::PipeArgs args,utils::eDest dest)347 void Overlay::setSource(const utils::PipeArgs args,
348 utils::eDest dest) {
349 int index = (int)dest;
350 validate(index);
351
352 PipeArgs newArgs(args);
353 if(PipeBook::getPipeType(dest) == OV_MDP_PIPE_VG) {
354 setMdpFlags(newArgs.mdpFlags, OV_MDP_PIPE_SHARE);
355 } else {
356 clearMdpFlags(newArgs.mdpFlags, OV_MDP_PIPE_SHARE);
357 }
358
359 if(PipeBook::getPipeType(dest) == OV_MDP_PIPE_DMA) {
360 setMdpFlags(newArgs.mdpFlags, OV_MDP_PIPE_FORCE_DMA);
361 } else {
362 clearMdpFlags(newArgs.mdpFlags, OV_MDP_PIPE_FORCE_DMA);
363 }
364
365 mPipeBook[index].mPipe->setSource(newArgs);
366 }
367
setVisualParams(const MetaData_t & metadata,utils::eDest dest)368 void Overlay::setVisualParams(const MetaData_t& metadata, utils::eDest dest) {
369 int index = (int)dest;
370 validate(index);
371 mPipeBook[index].mPipe->setVisualParams(metadata);
372 }
373
getInstance()374 Overlay* Overlay::getInstance() {
375 if(sInstance == NULL) {
376 sInstance = new Overlay();
377 }
378 return sInstance;
379 }
380
381 // Clears any VG pipes allocated to the fb devices
382 // Generates a LUT for pipe types.
initOverlay()383 int Overlay::initOverlay() {
384 int mdpVersion = qdutils::MDPVersion::getInstance().getMDPVersion();
385 int numPipesXType[OV_MDP_PIPE_ANY] = {0};
386 numPipesXType[OV_MDP_PIPE_RGB] =
387 qdutils::MDPVersion::getInstance().getRGBPipes();
388 numPipesXType[OV_MDP_PIPE_VG] =
389 qdutils::MDPVersion::getInstance().getVGPipes();
390 numPipesXType[OV_MDP_PIPE_DMA] =
391 qdutils::MDPVersion::getInstance().getDMAPipes();
392
393 int index = 0;
394 for(int X = 0; X < (int)OV_MDP_PIPE_ANY; X++) { //iterate over types
395 for(int j = 0; j < numPipesXType[X]; j++) { //iterate over num
396 PipeBook::pipeTypeLUT[index] = (utils::eMdpPipeType)X;
397 index++;
398 }
399 }
400
401 if (mdpVersion < qdutils::MDSS_V5 && mdpVersion != qdutils::MDP_V3_0_4) {
402 msmfb_mixer_info_req req;
403 mdp_mixer_info *minfo = NULL;
404 char name[64];
405 int fd = -1;
406 for(int i = 0; i < MAX_FB_DEVICES; i++) {
407 snprintf(name, 64, FB_DEVICE_TEMPLATE, i);
408 ALOGD("initoverlay:: opening the device:: %s", name);
409 fd = ::open(name, O_RDWR, 0);
410 if(fd < 0) {
411 ALOGE("cannot open framebuffer(%d)", i);
412 return -1;
413 }
414 //Get the mixer configuration */
415 req.mixer_num = i;
416 if (ioctl(fd, MSMFB_MIXER_INFO, &req) == -1) {
417 ALOGE("ERROR: MSMFB_MIXER_INFO ioctl failed");
418 close(fd);
419 return -1;
420 }
421 minfo = req.info;
422 for (int j = 0; j < req.cnt; j++) {
423 ALOGD("ndx=%d num=%d z_order=%d", minfo->pndx, minfo->pnum,
424 minfo->z_order);
425 // except the RGB base layer with z_order of -1, clear any
426 // other pipes connected to mixer.
427 if((minfo->z_order) != -1) {
428 int index = minfo->pndx;
429 ALOGD("Unset overlay with index: %d at mixer %d", index, i);
430 if(ioctl(fd, MSMFB_OVERLAY_UNSET, &index) == -1) {
431 ALOGE("ERROR: MSMFB_OVERLAY_UNSET failed");
432 close(fd);
433 return -1;
434 }
435 }
436 minfo++;
437 }
438 close(fd);
439 fd = -1;
440 }
441 }
442
443 FILE *displayDeviceFP = NULL;
444 const int MAX_FRAME_BUFFER_NAME_SIZE = 128;
445 char fbType[MAX_FRAME_BUFFER_NAME_SIZE];
446 char msmFbTypePath[MAX_FRAME_BUFFER_NAME_SIZE];
447 const char *strDtvPanel = "dtv panel";
448 const char *strWbPanel = "writeback panel";
449
450 for(int num = 1; num < MAX_FB_DEVICES; num++) {
451 snprintf (msmFbTypePath, sizeof(msmFbTypePath),
452 "/sys/class/graphics/fb%d/msm_fb_type", num);
453 displayDeviceFP = fopen(msmFbTypePath, "r");
454
455 if(displayDeviceFP){
456 fread(fbType, sizeof(char), MAX_FRAME_BUFFER_NAME_SIZE,
457 displayDeviceFP);
458
459 if(strncmp(fbType, strDtvPanel, strlen(strDtvPanel)) == 0) {
460 sDpyFbMap[DPY_EXTERNAL] = num;
461 } else if(strncmp(fbType, strWbPanel, strlen(strWbPanel)) == 0) {
462 sDpyFbMap[DPY_WRITEBACK] = num;
463 }
464
465 fclose(displayDeviceFP);
466 }
467 }
468
469 return 0;
470 }
471
displayCommit(const int & fd)472 bool Overlay::displayCommit(const int& fd) {
473 utils::Dim lRoi, rRoi;
474 return displayCommit(fd, lRoi, rRoi);
475 }
476
displayCommit(const int & fd,const utils::Dim & lRoi,const utils::Dim & rRoi)477 bool Overlay::displayCommit(const int& fd, const utils::Dim& lRoi,
478 const utils::Dim& rRoi) {
479 //Commit
480 struct mdp_display_commit info;
481 memset(&info, 0, sizeof(struct mdp_display_commit));
482 info.flags = MDP_DISPLAY_COMMIT_OVERLAY;
483 info.l_roi.x = lRoi.x;
484 info.l_roi.y = lRoi.y;
485 info.l_roi.w = lRoi.w;
486 info.l_roi.h = lRoi.h;
487 info.r_roi.x = rRoi.x;
488 info.r_roi.y = rRoi.y;
489 info.r_roi.w = rRoi.w;
490 info.r_roi.h = rRoi.h;
491
492 if(!mdp_wrapper::displayCommit(fd, info)) {
493 ALOGE("%s: commit failed", __func__);
494 return false;
495 }
496 return true;
497 }
498
dump() const499 void Overlay::dump() const {
500 #if PIPE_DEBUG
501 if(strlen(mDumpStr)) { //dump only on state change
502 ALOGD("%s\n", mDumpStr);
503 }
504 #endif
505 }
506
getDump(char * buf,size_t len)507 void Overlay::getDump(char *buf, size_t len) {
508 int totalPipes = 0;
509 const char *str = "\nOverlay State\n\n";
510 strlcat(buf, str, len);
511 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
512 if(mPipeBook[i].valid()) {
513 mPipeBook[i].mPipe->getDump(buf, len);
514 char str[64] = {'\0'};
515 snprintf(str, 64, "Display=%d\n\n", mPipeBook[i].mDisplay);
516 strlcat(buf, str, len);
517 totalPipes++;
518 }
519 }
520 char str_pipes[64] = {'\0'};
521 snprintf(str_pipes, 64, "Pipes=%d\n\n", totalPipes);
522 strlcat(buf, str_pipes, len);
523 }
524
clear(int dpy)525 void Overlay::clear(int dpy) {
526 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
527 if (mPipeBook[i].mDisplay == dpy) {
528 // Mark as available for this round
529 PipeBook::resetUse(i);
530 PipeBook::resetAllocation(i);
531 }
532 }
533 }
534
validateAndSet(const int & dpy,const int & fbFd)535 bool Overlay::validateAndSet(const int& dpy, const int& fbFd) {
536 GenericPipe* pipeArray[PipeBook::NUM_PIPES];
537 memset(&pipeArray, 0, sizeof(pipeArray));
538
539 int num = 0;
540 for(int i = 0; i < PipeBook::NUM_PIPES; i++) {
541 if(PipeBook::isUsed(i) && mPipeBook[i].valid() &&
542 mPipeBook[i].mDisplay == dpy) {
543 pipeArray[num++] = mPipeBook[i].mPipe;
544 }
545 }
546
547 //Protect against misbehaving clients
548 return num ? GenericPipe::validateAndSet(pipeArray, num, fbFd) : true;
549 }
550
initScalar()551 void Overlay::initScalar() {
552 if(sLibScaleHandle == NULL) {
553 sLibScaleHandle = dlopen("libscale.so", RTLD_NOW);
554 if(sLibScaleHandle) {
555 *(void **) &sFnProgramScale =
556 dlsym(sLibScaleHandle, "programScale");
557 }
558 }
559 }
560
destroyScalar()561 void Overlay::destroyScalar() {
562 if(sLibScaleHandle) {
563 dlclose(sLibScaleHandle);
564 sLibScaleHandle = NULL;
565 }
566 }
567
init()568 void Overlay::PipeBook::init() {
569 mPipe = NULL;
570 mDisplay = DPY_UNUSED;
571 mMixer = MIXER_UNUSED;
572 }
573
destroy()574 void Overlay::PipeBook::destroy() {
575 if(mPipe) {
576 delete mPipe;
577 mPipe = NULL;
578 }
579 mDisplay = DPY_UNUSED;
580 mMixer = MIXER_UNUSED;
581 mSession = NONE;
582 }
583
584 Overlay* Overlay::sInstance = 0;
585 int Overlay::sDpyFbMap[DPY_MAX] = {0, -1, -1};
586 int Overlay::sDMAMode = DMA_LINE_MODE;
587 bool Overlay::sDMAMultiplexingSupported = false;
588 int Overlay::PipeBook::NUM_PIPES = 0;
589 int Overlay::PipeBook::sPipeUsageBitmap = 0;
590 int Overlay::PipeBook::sLastUsageBitmap = 0;
591 int Overlay::PipeBook::sAllocatedBitmap = 0;
592 utils::eMdpPipeType Overlay::PipeBook::pipeTypeLUT[utils::OV_MAX] =
593 {utils::OV_MDP_PIPE_ANY};
594 void *Overlay::sLibScaleHandle = NULL;
595 int (*Overlay::sFnProgramScale)(struct mdp_overlay_list *) = NULL;
596
597 }; // namespace overlay
598