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The Android Open Source Project7c1b96a2008-10-21 07:00:00 -07001/*
2**
3** Copyright 2008, The Android Open Source Project
4**
5** Licensed under the Apache License, Version 2.0 (the "License");
6** you may not use this file except in compliance with the License.
7** You may obtain a copy of the License at
8**
9** http://www.apache.org/licenses/LICENSE-2.0
10**
11** Unless required by applicable law or agreed to in writing, software
12** distributed under the License is distributed on an "AS IS" BASIS,
13** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14** See the License for the specific language governing permissions and
15** limitations under the License.
16*/
17
18#define LOG_TAG "CameraHardwareStub"
19#include <utils/Log.h>
20
21#include "CameraHardwareStub.h"
22#include <utils/threads.h>
23#include <fcntl.h>
24#include <sys/mman.h>
25
26#include "CannedJpeg.h"
27
28namespace android {
29
30CameraHardwareStub::CameraHardwareStub()
31 : mParameters(),
32 mHeap(0),
33 mFakeCamera(0),
34 mPreviewFrameSize(0),
35 mRawPictureCallback(0),
36 mJpegPictureCallback(0),
37 mPictureCallbackCookie(0),
38 mPreviewCallback(0),
39 mPreviewCallbackCookie(0),
40 mAutoFocusCallback(0),
41 mAutoFocusCallbackCookie(0),
42 mCurrentPreviewFrame(0)
43{
44 initDefaultParameters();
45}
46
47void CameraHardwareStub::initDefaultParameters()
48{
49 CameraParameters p;
50
51 p.setPreviewSize(176, 144);
52 p.setPreviewFrameRate(15);
53 p.setPreviewFormat("yuv422sp");
54
55 p.setPictureSize(kCannedJpegWidth, kCannedJpegHeight);
56 p.setPictureFormat("jpeg");
57
58 if (setParameters(p) != NO_ERROR) {
59 LOGE("Failed to set default parameters?!");
60 }
61}
62
63void CameraHardwareStub::initHeapLocked()
64{
65 int width, height;
66 mParameters.getPreviewSize(&width, &height);
67
68 LOGD("initHeapLocked: preview size=%dx%d", width, height);
69
70 // Note that we enforce yuv422 in setParameters().
71 int how_big = width * height * 2;
72
73 // If we are being reinitialized to the same size as before, no
74 // work needs to be done.
75 if (how_big == mPreviewFrameSize)
76 return;
77
78 mPreviewFrameSize = how_big;
79
80 // Make a new mmap'ed heap that can be shared across processes.
81 // use code below to test with pmem
82 mHeap = new MemoryHeapBase(mPreviewFrameSize * kBufferCount);
83 // Make an IMemory for each frame so that we can reuse them in callbacks.
84 for (int i = 0; i < kBufferCount; i++) {
85 mBuffers[i] = new MemoryBase(mHeap, i * mPreviewFrameSize, mPreviewFrameSize);
86 }
87
88 // Recreate the fake camera to reflect the current size.
89 delete mFakeCamera;
90 mFakeCamera = new FakeCamera(width, height);
91}
92
93CameraHardwareStub::~CameraHardwareStub()
94{
95 delete mFakeCamera;
96 mFakeCamera = 0; // paranoia
97 singleton.clear();
98}
99
100sp<IMemoryHeap> CameraHardwareStub::getPreviewHeap() const
101{
102 return mHeap;
103}
104
105// ---------------------------------------------------------------------------
106
107int CameraHardwareStub::previewThread()
108{
109 mLock.lock();
110 // the attributes below can change under our feet...
111
112 int previewFrameRate = mParameters.getPreviewFrameRate();
113
114 // Find the offset within the heap of the current buffer.
115 ssize_t offset = mCurrentPreviewFrame * mPreviewFrameSize;
116
117 sp<MemoryHeapBase> heap = mHeap;
118
119 // this assumes the internal state of fake camera doesn't change
120 // (or is thread safe)
121 FakeCamera* fakeCamera = mFakeCamera;
122
123 sp<MemoryBase> buffer = mBuffers[mCurrentPreviewFrame];
124
125 mLock.unlock();
126
127 // TODO: here check all the conditions that could go wrong
128 if (buffer != 0) {
129 // Calculate how long to wait between frames.
130 int delay = (int)(1000000.0f / float(previewFrameRate));
131
132 // This is always valid, even if the client died -- the memory
133 // is still mapped in our process.
134 void *base = heap->base();
135
136 // Fill the current frame with the fake camera.
137 uint8_t *frame = ((uint8_t *)base) + offset;
138 fakeCamera->getNextFrameAsYuv422(frame);
139
140 //LOGV("previewThread: generated frame to buffer %d", mCurrentPreviewFrame);
141
142 // Notify the client of a new frame.
143 mPreviewCallback(buffer, mPreviewCallbackCookie);
144
145 // Advance the buffer pointer.
146 mCurrentPreviewFrame = (mCurrentPreviewFrame + 1) % kBufferCount;
147
148 // Wait for it...
149 usleep(delay);
150 }
151
152 return NO_ERROR;
153}
154
155status_t CameraHardwareStub::startPreview(preview_callback cb, void* user)
156{
157 Mutex::Autolock lock(mLock);
158 if (mPreviewThread != 0) {
159 // already running
160 return INVALID_OPERATION;
161 }
162 mPreviewCallback = cb;
163 mPreviewCallbackCookie = user;
164 mPreviewThread = new PreviewThread(this);
165 return NO_ERROR;
166}
167
168void CameraHardwareStub::stopPreview()
169{
170 sp<PreviewThread> previewThread;
171
172 { // scope for the lock
173 Mutex::Autolock lock(mLock);
174 previewThread = mPreviewThread;
175 }
176
177 // don't hold the lock while waiting for the thread to quit
178 if (previewThread != 0) {
179 previewThread->requestExitAndWait();
180 }
181
182 Mutex::Autolock lock(mLock);
183 mPreviewThread.clear();
184}
185
The Android Open Source Project27629322009-01-09 17:51:23 -0800186bool CameraHardwareStub::previewEnabled() {
187 return mPreviewThread != 0;
188}
189
The Android Open Source Projecta6938ba2009-02-10 15:44:00 -0800190status_t CameraHardwareStub::startRecording(recording_callback cb, void* user)
191{
192 return UNKNOWN_ERROR;
193}
194
195void CameraHardwareStub::stopRecording()
196{
197}
198
199bool CameraHardwareStub::recordingEnabled()
200{
201 return false;
202}
203
204void CameraHardwareStub::releaseRecordingFrame(const sp<IMemory>& mem)
205{
206}
207
The Android Open Source Project7c1b96a2008-10-21 07:00:00 -0700208// ---------------------------------------------------------------------------
209
210int CameraHardwareStub::beginAutoFocusThread(void *cookie)
211{
212 CameraHardwareStub *c = (CameraHardwareStub *)cookie;
213 return c->autoFocusThread();
214}
215
216int CameraHardwareStub::autoFocusThread()
217{
218 if (mAutoFocusCallback != NULL) {
219 mAutoFocusCallback(true, mAutoFocusCallbackCookie);
220 mAutoFocusCallback = NULL;
221 return NO_ERROR;
222 }
223 return UNKNOWN_ERROR;
224}
225
226status_t CameraHardwareStub::autoFocus(autofocus_callback af_cb,
227 void *user)
228{
229 Mutex::Autolock lock(mLock);
230
231 if (mAutoFocusCallback != NULL) {
232 return mAutoFocusCallback == af_cb ? NO_ERROR : INVALID_OPERATION;
233 }
234
235 mAutoFocusCallback = af_cb;
236 mAutoFocusCallbackCookie = user;
237 if (createThread(beginAutoFocusThread, this) == false)
238 return UNKNOWN_ERROR;
239 return NO_ERROR;
240}
241
242/*static*/ int CameraHardwareStub::beginPictureThread(void *cookie)
243{
244 CameraHardwareStub *c = (CameraHardwareStub *)cookie;
245 return c->pictureThread();
246}
247
248int CameraHardwareStub::pictureThread()
249{
250 if (mShutterCallback)
251 mShutterCallback(mPictureCallbackCookie);
252
253 if (mRawPictureCallback) {
254 //FIXME: use a canned YUV image!
255 // In the meantime just make another fake camera picture.
256 int w, h;
257 mParameters.getPictureSize(&w, &h);
258 sp<MemoryHeapBase> heap = new MemoryHeapBase(w * 2 * h);
259 sp<MemoryBase> mem = new MemoryBase(heap, 0, w * 2 * h);
260 FakeCamera cam(w, h);
261 cam.getNextFrameAsYuv422((uint8_t *)heap->base());
262 if (mRawPictureCallback)
263 mRawPictureCallback(mem, mPictureCallbackCookie);
264 }
265
266 if (mJpegPictureCallback) {
267 sp<MemoryHeapBase> heap = new MemoryHeapBase(kCannedJpegSize);
268 sp<MemoryBase> mem = new MemoryBase(heap, 0, kCannedJpegSize);
269 memcpy(heap->base(), kCannedJpeg, kCannedJpegSize);
270 if (mJpegPictureCallback)
271 mJpegPictureCallback(mem, mPictureCallbackCookie);
272 }
273 return NO_ERROR;
274}
275
276status_t CameraHardwareStub::takePicture(shutter_callback shutter_cb,
277 raw_callback raw_cb,
278 jpeg_callback jpeg_cb,
279 void* user)
280{
281 stopPreview();
282 mShutterCallback = shutter_cb;
283 mRawPictureCallback = raw_cb;
284 mJpegPictureCallback = jpeg_cb;
285 mPictureCallbackCookie = user;
286 if (createThread(beginPictureThread, this) == false)
287 return -1;
288 return NO_ERROR;
289}
290
291status_t CameraHardwareStub::cancelPicture(bool cancel_shutter,
292 bool cancel_raw,
293 bool cancel_jpeg)
294{
295 if (cancel_shutter) mShutterCallback = NULL;
296 if (cancel_raw) mRawPictureCallback = NULL;
297 if (cancel_jpeg) mJpegPictureCallback = NULL;
298 return NO_ERROR;
299}
300
301status_t CameraHardwareStub::dump(int fd, const Vector<String16>& args) const
302{
303 const size_t SIZE = 256;
304 char buffer[SIZE];
305 String8 result;
306 AutoMutex lock(&mLock);
307 if (mFakeCamera != 0) {
308 mFakeCamera->dump(fd, args);
309 mParameters.dump(fd, args);
310 snprintf(buffer, 255, " preview frame(%d), size (%d), running(%s)\n", mCurrentPreviewFrame, mPreviewFrameSize, mPreviewRunning?"true": "false");
311 result.append(buffer);
312 } else {
313 result.append("No camera client yet.\n");
314 }
315 write(fd, result.string(), result.size());
316 return NO_ERROR;
317}
318
319status_t CameraHardwareStub::setParameters(const CameraParameters& params)
320{
321 Mutex::Autolock lock(mLock);
322 // XXX verify params
323
324 if (strcmp(params.getPreviewFormat(), "yuv422sp") != 0) {
325 LOGE("Only yuv422sp preview is supported");
326 return -1;
327 }
328
329 if (strcmp(params.getPictureFormat(), "jpeg") != 0) {
330 LOGE("Only jpeg still pictures are supported");
331 return -1;
332 }
333
334 int w, h;
335 params.getPictureSize(&w, &h);
336 if (w != kCannedJpegWidth && h != kCannedJpegHeight) {
337 LOGE("Still picture size must be size of canned JPEG (%dx%d)",
338 kCannedJpegWidth, kCannedJpegHeight);
339 return -1;
340 }
341
342 mParameters = params;
343
344 initHeapLocked();
345
346 return NO_ERROR;
347}
348
349CameraParameters CameraHardwareStub::getParameters() const
350{
351 Mutex::Autolock lock(mLock);
352 return mParameters;
353}
354
355void CameraHardwareStub::release()
356{
357}
358
359wp<CameraHardwareInterface> CameraHardwareStub::singleton;
360
361sp<CameraHardwareInterface> CameraHardwareStub::createInstance()
362{
363 if (singleton != 0) {
364 sp<CameraHardwareInterface> hardware = singleton.promote();
365 if (hardware != 0) {
366 return hardware;
367 }
368 }
369 sp<CameraHardwareInterface> hardware(new CameraHardwareStub());
370 singleton = hardware;
371 return hardware;
372}
373
374extern "C" sp<CameraHardwareInterface> openCameraHardware()
375{
376 return CameraHardwareStub::createInstance();
377}
378
379}; // namespace android