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droidmediacamera.cpp
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droidmediacamera.cpp
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/*
* Copyright (C) 2014-2015 Jolla Ltd.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* Authored by: Mohammed Hassan <[email protected]>
*/
#include "droidmediacamera.h"
#if ANDROID_MAJOR < 8
#include "allocator.h"
#endif
#include <camera/Camera.h>
#include <camera/CameraParameters.h>
#include <android/log.h>
#include <utils/String8.h>
#include <utils/Condition.h>
#if ANDROID_MAJOR >= 8
#include <media/hardware/MetadataBufferType.h>
#endif
#include <media/stagefright/CameraSource.h>
#include <media/openmax/OMX_IVCommon.h>
#include "droidmediabuffer.h"
#include "private.h"
#undef LOG_TAG
#define LOG_TAG "DroidMediaCamera"
namespace android {
int32_t getColorFormat(const char* colorFormat) {
if (!strcmp(colorFormat, CameraParameters::PIXEL_FORMAT_YUV420P)) {
return OMX_COLOR_FormatYUV420Planar;
}
if (!strcmp(colorFormat, CameraParameters::PIXEL_FORMAT_YUV422SP)) {
return OMX_COLOR_FormatYUV422SemiPlanar;
}
if (!strcmp(colorFormat, CameraParameters::PIXEL_FORMAT_YUV420SP)) {
return OMX_COLOR_FormatYUV420SemiPlanar;
}
if (!strcmp(colorFormat, CameraParameters::PIXEL_FORMAT_YUV422I)) {
return OMX_COLOR_FormatYCbYCr;
}
if (!strcmp(colorFormat, CameraParameters::PIXEL_FORMAT_RGB565)) {
return OMX_COLOR_Format16bitRGB565;
}
if (!strcmp(colorFormat, "OMX_TI_COLOR_FormatYUV420PackedSemiPlanar")) {
return OMX_TI_COLOR_FormatYUV420PackedSemiPlanar;
}
#if (ANDROID_MAJOR == 4 && ANDROID_MINOR >= 2) || ANDROID_MAJOR >= 5
if (!strcmp(colorFormat, CameraParameters::PIXEL_FORMAT_ANDROID_OPAQUE)) {
return OMX_COLOR_FormatAndroidOpaque;
}
#endif
return -1;
}
}
extern "C" {
struct _DroidMediaCameraRecordingData
{
android::sp<android::IMemory> mem;
nsecs_t ts;
};
struct _DroidMediaCamera
{
_DroidMediaCamera() :
m_cb_data(0) {
memset(&m_cb, 0x0, sizeof(m_cb));
}
android::sp<android::Camera> m_camera;
android::sp<DroidMediaBufferQueue> m_queue;
DroidMediaCameraCallbacks m_cb;
void *m_cb_data;
};
class CameraListener : public android::CameraListener {
public:
CameraListener(DroidMediaCamera *cam) :
m_cam(cam) {
}
void notify(int32_t msgType, int32_t ext1, int32_t ext2)
{
switch (msgType) {
case CAMERA_MSG_SHUTTER:
if (m_cam->m_cb.shutter_cb) {
m_cam->m_cb.shutter_cb(m_cam->m_cb_data);
}
break;
case CAMERA_MSG_FOCUS:
if (m_cam->m_cb.focus_cb) {
m_cam->m_cb.focus_cb(m_cam->m_cb_data, ext1);
}
break;
case CAMERA_MSG_FOCUS_MOVE:
if (m_cam->m_cb.focus_move_cb) {
m_cam->m_cb.focus_move_cb(m_cam->m_cb_data, ext1);
}
break;
case CAMERA_MSG_ERROR:
if (m_cam->m_cb.error_cb) {
m_cam->m_cb.error_cb(m_cam->m_cb_data, ext1);
}
break;
case CAMERA_MSG_ZOOM:
if (m_cam->m_cb.zoom_cb) {
m_cam->m_cb.zoom_cb(m_cam->m_cb_data, ext1, ext2);
}
break;
default:
ALOGW("unknown notify message 0x%x", msgType);
break;
}
}
void postData(int32_t msgType, const android::sp<android::IMemory>& dataPtr,
camera_frame_metadata_t *metadata)
{
int32_t dataMsgType = msgType & ~CAMERA_MSG_PREVIEW_METADATA;
DroidMediaData mem;
switch (dataMsgType) {
case CAMERA_MSG_RAW_IMAGE:
mem.size = dataPtr->size();
mem.data = dataPtr->pointer();
if (m_cam->m_cb.raw_image_cb) {
m_cam->m_cb.raw_image_cb(m_cam->m_cb_data, &mem);
}
break;
case CAMERA_MSG_COMPRESSED_IMAGE:
mem.size = dataPtr->size();
mem.data = dataPtr->pointer();
if (m_cam->m_cb.compressed_image_cb) {
m_cam->m_cb.compressed_image_cb(m_cam->m_cb_data, &mem);
}
break;
case CAMERA_MSG_POSTVIEW_FRAME:
mem.size = dataPtr->size();
mem.data = dataPtr->pointer();
if (m_cam->m_cb.postview_frame_cb) {
m_cam->m_cb.postview_frame_cb(m_cam->m_cb_data, &mem);
}
break;
case CAMERA_MSG_RAW_IMAGE_NOTIFY:
if (m_cam->m_cb.raw_image_notify_cb) {
m_cam->m_cb.raw_image_notify_cb(m_cam->m_cb_data);
}
break;
case CAMERA_MSG_PREVIEW_FRAME:
mem.size = dataPtr->size();
mem.data = dataPtr->pointer();
if (m_cam->m_cb.preview_frame_cb) {
m_cam->m_cb.preview_frame_cb(m_cam->m_cb_data, &mem);
}
break;
case 0:
// Nothing
break;
default:
ALOGW("unknown postData message 0x%x", dataMsgType);
break;
}
if (metadata && (msgType & CAMERA_MSG_PREVIEW_METADATA)
&& m_cam->m_cb.preview_metadata_cb) {
sendPreviewMetadata(metadata);
}
}
void postDataTimestamp(nsecs_t timestamp, int32_t msgType, const android::sp<android::IMemory>& dataPtr)
{
switch (msgType) {
case CAMERA_MSG_VIDEO_FRAME:
if (m_cam->m_cb.video_frame_cb) {
// TODO: revisit this data structure
DroidMediaCameraRecordingData *data = new DroidMediaCameraRecordingData;
data->mem = dataPtr;
data->ts = timestamp;
m_cam->m_cb.video_frame_cb(m_cam->m_cb_data, data);
} else {
m_cam->m_camera->releaseRecordingFrame(dataPtr);
}
break;
default:
ALOGW("unknown postDataTimestamp message 0x%x", msgType);
break;
}
}
#if ANDROID_MAJOR >= 7
void postRecordingFrameHandleTimestamp(nsecs_t timestamp, native_handle_t* handle)
{
ALOGW("postRecordingFrameHandleTimestamp - not sure what to do");
}
#endif
#if ANDROID_MAJOR >= 8
void postRecordingFrameHandleTimestampBatch(const std::vector<nsecs_t>& timestamps,
const std::vector<native_handle_t*>& handles)
{
ALOGW("postRecordingFrameHandleTimestampBatch - not sure what to do");
}
#endif
void sendPreviewMetadata(camera_frame_metadata_t *metadata)
{
android::Vector<DroidMediaCameraFace> faces;
for (int x = 0; x < metadata->number_of_faces; x++) {
DroidMediaCameraFace face;
face.left = metadata->faces[x].rect[0];
face.top = metadata->faces[x].rect[1];
face.right = metadata->faces[x].rect[2];
face.bottom = metadata->faces[x].rect[3];
face.score = metadata->faces[x].score;
face.id = metadata->faces[x].id;
face.left_eye[0] = metadata->faces[x].left_eye[0];
face.left_eye[1] = metadata->faces[x].left_eye[1];
face.right_eye[0] = metadata->faces[x].right_eye[0];
face.right_eye[1] = metadata->faces[x].right_eye[1];
face.mouth[0] = metadata->faces[x].mouth[0];
face.mouth[1] = metadata->faces[x].mouth[1];
faces.push_back(face);
}
m_cam->m_cb.preview_metadata_cb(m_cam->m_cb_data, faces.array(), faces.size());
}
private:
DroidMediaCamera *m_cam;
};
DroidMediaBufferQueue *droid_media_camera_get_buffer_queue (DroidMediaCamera *camera)
{
return camera->m_queue.get();
}
int droid_media_camera_get_number_of_cameras()
{
return android::Camera::getNumberOfCameras();
}
bool droid_media_camera_get_info(DroidMediaCameraInfo *info, int camera_number)
{
android::CameraInfo inf;
if (android::Camera::getCameraInfo(camera_number, &inf) != 0) {
return false;
}
info->orientation = inf.orientation;
if (inf.facing == CAMERA_FACING_FRONT) {
info->facing = DROID_MEDIA_CAMERA_FACING_FRONT;
} else {
info->facing = DROID_MEDIA_CAMERA_FACING_BACK;
}
return true;
}
DroidMediaCamera *droid_media_camera_connect(int camera_number)
{
android::sp<DroidMediaBufferQueueListener> listener(new DroidMediaBufferQueueListener);
android::sp<DroidMediaBufferQueue>
queue(new DroidMediaBufferQueue("DroidMediaCameraBufferQueue"));
if (!queue->connectListener()) {
ALOGE("Failed to connect buffer queue listener");
queue.clear();
listener.clear();
return NULL;
}
DroidMediaCamera *cam = new DroidMediaCamera;
if (!cam) {
ALOGE("Failed to allocate DroidMediaCamera");
return NULL;
}
#if (ANDROID_MAJOR == 4 && ANDROID_MINOR < 4)
cam->m_camera = android::Camera::connect(camera_number);
#elif (ANDROID_MAJOR == 4 && ANDROID_MINOR == 4)
cam->m_camera = android::Camera::connect(camera_number, android::String16("droidmedia"),
android::Camera::USE_CALLING_UID);
#else // Force HAL version if defined
#ifdef FORCE_HAL
ALOGI("Connecting HAL version %d", FORCE_HAL);
android::OK != android::Camera::connectLegacy(camera_number, FORCE_HAL << 8, android::String16("droidmedia"),
android::Camera::USE_CALLING_UID, cam->m_camera);
#else // Default connect
cam->m_camera = android::Camera::connect(camera_number, android::String16("droidmedia"),
android::Camera::USE_CALLING_UID
#if (ANDROID_MAJOR >= 7)
, android::Camera::USE_CALLING_PID
#endif
);
#endif
#endif
if (cam->m_camera.get() == NULL) {
delete cam;
ALOGE("Failed to connect to camera service");
return NULL;
}
cam->m_queue = queue;
cam->m_queue->attachToCamera(cam->m_camera);
cam->m_camera->setListener(new CameraListener(cam));
return cam;
}
bool droid_media_camera_reconnect(DroidMediaCamera *camera) {
return camera->m_camera->reconnect() == android::NO_ERROR;
}
void droid_media_camera_disconnect(DroidMediaCamera *camera)
{
camera->m_camera->disconnect();
camera->m_queue->setCallbacks(0, 0);
delete camera;
}
bool droid_media_camera_lock(DroidMediaCamera *camera) {
return camera->m_camera->lock() == android::NO_ERROR;
}
bool droid_media_camera_unlock(DroidMediaCamera *camera) {
return camera->m_camera->unlock() == android::NO_ERROR;
}
bool droid_media_camera_start_preview(DroidMediaCamera *camera)
{
return camera->m_camera->startPreview() == android::NO_ERROR;
}
void droid_media_camera_stop_preview(DroidMediaCamera *camera)
{
camera->m_camera->stopPreview();
}
bool droid_media_camera_is_preview_enabled(DroidMediaCamera *camera)
{
return camera->m_camera->previewEnabled();
}
bool droid_media_camera_start_recording(DroidMediaCamera *camera)
{
return camera->m_camera->startRecording() == android::NO_ERROR;
}
void droid_media_camera_stop_recording(DroidMediaCamera *camera)
{
camera->m_camera->stopRecording();
}
bool droid_media_camera_is_recording_enabled(DroidMediaCamera *camera)
{
return camera->m_camera->recordingEnabled();
}
bool droid_media_camera_start_auto_focus(DroidMediaCamera *camera)
{
return camera->m_camera->autoFocus() == android::NO_ERROR;
}
bool droid_media_camera_cancel_auto_focus(DroidMediaCamera *camera)
{
return camera->m_camera->cancelAutoFocus() == android::NO_ERROR;
}
void droid_media_camera_set_callbacks(DroidMediaCamera *camera, DroidMediaCameraCallbacks *cb, void *data)
{
memcpy(&camera->m_cb, cb, sizeof(camera->m_cb));
camera->m_cb_data = data;
}
bool droid_media_camera_send_command(DroidMediaCamera *camera, int32_t cmd, int32_t arg1, int32_t arg2)
{
return camera->m_camera->sendCommand(cmd, arg1, arg2) == android::NO_ERROR;
}
bool droid_media_camera_store_meta_data_in_buffers(DroidMediaCamera *camera, bool enabled)
{
#if ANDROID_MAJOR < 7
return camera->m_camera->storeMetaDataInBuffers(enabled) == android::NO_ERROR;
#else
if (enabled) {
if (android::OK == camera->m_camera->setVideoBufferMode(
android::hardware::ICamera::VIDEO_BUFFER_MODE_BUFFER_QUEUE)) {
ALOGI("Recording in buffer queue mode");
return true;
} else if (android::OK == camera->m_camera->setVideoBufferMode(
android::hardware::ICamera::VIDEO_BUFFER_MODE_DATA_CALLBACK_METADATA)) {
ALOGI("Recording in callback metadata mode");
return true;
}
}
camera->m_camera->setVideoBufferMode(
android::hardware::ICamera::VIDEO_BUFFER_MODE_DATA_CALLBACK_YUV);
ALOGI("Recording in callback yuv mode");
return !enabled; // false if metadata mode was requested.
#endif
}
void droid_media_camera_set_preview_callback_flags(DroidMediaCamera *camera, int preview_callback_flag)
{
camera->m_camera->setPreviewCallbackFlags(preview_callback_flag);
}
bool droid_media_camera_set_parameters(DroidMediaCamera *camera, const char *params)
{
return camera->m_camera->setParameters(android::String8(params)) == android::NO_ERROR;
}
char *droid_media_camera_get_parameters(DroidMediaCamera *camera)
{
android::String8 p = camera->m_camera->getParameters();
if (p.isEmpty()) {
ALOGE("Failed to get camera parameters");
return NULL;
}
size_t len = p.length();
char *params = (char *)malloc(len + 1);
if (!params) {
ALOGE("Failed to allocate enough memory for camera parameters");
return NULL;
}
memcpy(params, p.string(), len);
params[len] = '\0';
return params;
}
bool droid_media_camera_take_picture(DroidMediaCamera *camera, int msgType)
{
return camera->m_camera->takePicture(msgType) == android::NO_ERROR;
}
void droid_media_camera_release_recording_frame(DroidMediaCamera *camera, DroidMediaCameraRecordingData *data)
{
camera->m_camera->releaseRecordingFrame(data->mem);
delete data;
}
nsecs_t droid_media_camera_recording_frame_get_timestamp(DroidMediaCameraRecordingData *data)
{
return data->ts;
}
size_t droid_media_camera_recording_frame_get_size(DroidMediaCameraRecordingData *data)
{
return data->mem->size();
}
void *droid_media_camera_recording_frame_get_data(DroidMediaCameraRecordingData *data)
{
return data->mem->pointer();
}
bool droid_media_camera_enable_face_detection(DroidMediaCamera *camera,
DroidMediaCameraFaceDetectionType type, bool enable)
{
int detection_type = type == DROID_MEDIA_CAMERA_FACE_DETECTION_HW ? CAMERA_FACE_DETECTION_HW :
CAMERA_FACE_DETECTION_SW;
int cmd = enable ? CAMERA_CMD_START_FACE_DETECTION : CAMERA_CMD_STOP_FACE_DETECTION;
return droid_media_camera_send_command (camera, cmd, detection_type, 0);
}
int32_t droid_media_camera_get_video_color_format (DroidMediaCamera *camera)
{
android::CameraParameters p(camera->m_camera->getParameters());
return android::getColorFormat(p.get(android::CameraParameters::KEY_VIDEO_FRAME_FORMAT));
}
};
android::sp<android::Camera> droid_media_camera_get_camera (DroidMediaCamera *camera) {
return camera->m_camera;
}