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65 Commits

Author SHA1 Message Date
aa69aa78ef chore(config): disable devices and enable quic by default 2026-08-24 17:18:55 +08:00
45c97e4503 fix(quic): match task interface after stop gate removal 2026-08-24 16:10:24 +08:00
c6617b89cd fix(quic): align media hub targets with linbo branch 2026-08-24 16:00:51 +08:00
ab27c97e87 fix(ethercat): offset motor positions for junction 2026-08-24 15:24:04 +08:00
005edee91d feat(ethercat): configure dual Eyou robot arms 2026-08-24 15:24:04 +08:00
b9dffb66df fix(ethercat): log CiA402 device state transitions 2026-08-24 15:24:03 +08:00
9d12f5d1d1 fix(media): set bundled iHD driver runtime path 2026-08-24 15:23:46 +08:00
c4001d57ab revert xtkuang integration before linbo hardware changes 2026-08-24 15:23:27 +08:00
3214a6a3a6 fix(ethercat): offset motor positions for junction 2026-08-21 10:32:08 +08:00
5595db7c81 feat(ethercat): configure dual Eyou robot arms 2026-08-20 10:00:17 +08:00
b2529089f4 fix(ethercat): log CiA402 device state transitions 2026-08-19 10:53:29 +08:00
3dcb272cec fix(media): set bundled iHD driver runtime path 2026-08-18 11:15:14 +08:00
a9aeefd106 Merge remote-tracking branch 'origin/xtkuang_dev' into linbo_dev
# Conflicts:
#	cmvr-es/devices/arm/motor_robot_arm/src/motor_robot_arm.cpp
#	cmvr-es/devices/camera/realsense_camera/src/realsense_camera.cpp
#	cmvr-es/devices/camera/uvc_camera/include/uvc_camera.h
#	cmvr-es/devices/camera/uvc_camera/src/uvc_camera.cpp
#	cmvr-es/devices/motor/manager/src/motor_manager.cpp
#	cmvr-es/service/grpc/server/src/grpc_arm_service.cpp
#	cmvr-es/service/grpc/server/src/grpc_camera_service.cpp
2026-08-18 09:54:20 +08:00
1b3cd55505 feat(aubo): auto recover after hardware estop release 2026-08-17 12:16:20 +08:00
cb5f46c598 refactor: reorganize service and manager modules 2026-08-17 09:48:42 +08:00
f4be2ffaaa feat(safety): unify device admission and recovery
Add the DeviceManager-owned safety coordinator, shared sensor/control policies, command ledger, service guards, generalized StopAll, and RecoverSafetyState. Preserve device-side hardware checks and AUBO hardware E-stop release reconciliation while keeping software E-stop independently latched.
2026-08-17 08:34:44 +08:00
b2b0b63fe0 chore: remove legacy toppra gitlink 2026-08-17 08:34:10 +08:00
4f36cf4957 feat(quic): support multi-platform heartbeats 2026-08-14 12:40:53 +08:00
55912abad0 fix(stop-all): cancel blocked arm startup safely 2026-08-14 11:58:17 +08:00
de764de607 feat(grpc): persist RPC failures in edge logs 2026-08-14 08:38:00 +08:00
4c8b320b4b fix(system): stop operational activities without shutdown 2026-08-14 01:24:17 +08:00
b30e6a5c73 fix(arm): reconcile protective recovery interface 2026-08-13 14:59:00 +08:00
4405c210de Merge remote-tracking branch 'origin/xtkuang_dev' into linbo_dev
# Conflicts:
#	CMakeLists.txt
#	cmvr-es/config/tasks/quic_edge_task/quic_edge_task.pb.txt
#	cmvr-es/devices/arm/aubo_arm/aubo_arm.h
#	cmvr-es/devices/arm/huayan_arm/huayan_arm.h
#	cmvr-es/devices/arm/motor_robot_arm/src/motor_robot_arm.cpp
#	cmvr-es/main.cpp
2026-08-13 14:56:40 +08:00
1672bb5a60 Merge remote-tracking branch 'origin/dev' into linbo_dev 2026-08-13 14:51:07 +08:00
86452582f5 perf(camera): draw timestamps on NV12 luma plane 2026-08-13 09:23:37 +08:00
400327269a perf(camera): avoid unnecessary UVC BGR conversion 2026-08-12 17:40:43 +08:00
69b96cb60b fix(camera): set QSV decoder packet timebase 2026-08-12 16:58:08 +08:00
41d8482faf feat(camera): decode UVC MJPEG with QSV 2026-08-12 16:51:29 +08:00
2596a82c2c fix(camera): keep streaming active during recording 2026-08-12 15:46:55 +08:00
ffd89c27c4 fix(camera): recover from incomplete UVC frames 2026-08-12 15:32:40 +08:00
a325dc2c9a fix(camera): register FFmpeg input devices 2026-08-12 15:16:36 +08:00
8850df3983 refactor(camera): capture UVC frames with FFmpeg 2026-08-12 15:08:04 +08:00
912d8689f7 feat(system): add serial arm and AGV action queue 2026-08-12 11:15:46 +08:00
bb6c627fad fix(camera): preserve UVC recording timing 2026-08-12 10:37:18 +08:00
5f4e3897ac fix(camera): prevent double free in UVC recording 2026-08-12 10:21:57 +08:00
e94db8b66c fix(camera): flush UVC frames before snapshot 2026-08-12 10:02:36 +08:00
2c5855a497 fix(camera): read UVC snapshots directly 2026-08-12 09:48:37 +08:00
8c2ed13f80 fix(camera): capture a fresh UVC snapshot 2026-08-12 09:25:27 +08:00
b0efc341a9 fix(camera): handle UVC snapshots in video mode 2026-08-11 17:19:01 +08:00
9095fbf68c fix(huayan): harden motion and safety lifecycle 2026-08-07 15:11:26 +08:00
3b87f681cf fix(aubo): prevent resume after hardware e-stop 2026-08-07 13:35:30 +08:00
e3726e5a98 Add QSV hardware encoding support to FFmpeg and upgrade to v6.1 2026-08-06 15:21:01 +08:00
e77c2cfea8 fix(aubo): make stop release control safely 2026-08-05 15:36:49 +08:00
ab4bbfac50 fix(aubo): handle duplicate motion targets 2026-08-05 11:11:40 +08:00
459b76db1d translate 2026-08-04 16:30:42 +08:00
187e8042b8 fix(quic): deploy dedicated Qt test CA 2026-08-04 16:02:07 +08:00
ebadec8fe1 fix(quic): align edge client TLS test endpoint 2026-08-04 15:41:29 +08:00
08d58b2ccf feat(quic): add robot ID to registration and heartbeat 2026-08-04 15:20:29 +08:00
60098ee01e refactor: remove PLC motor control backend 2026-08-04 10:36:23 +08:00
ba8f1e1821 feat(quic): add robot ID to registration and heartbeat 2026-08-04 09:58:07 +08:00
b4ec07c851 feat: add device inventory and move arm JSON RPC 2026-08-04 09:52:51 +08:00
490c141ca8 refactor(proto): move AGV messages under API 2026-08-03 15:56:30 +08:00
52d30ee412 feat: extend and refactor SEER Robokit AGV backend 2026-08-03 15:05:04 +08:00
f57807372d feat(grpc): expose arm robot state 2026-08-03 14:43:12 +08:00
7fb7c4dcbe Merge branch 'dev' into linbo_dev
# Conflicts:
#	cmvr-es/config/devices/motor/ethercat_motors.pb.txt
#	cmvr-es/devices/motor/drivers/ethercat_motor/src/vendor/eyou/eyou_motor.cpp
#	cmvr-es/devices/motor/drivers/ethercat_motor/src/vendor/eyou/eyou_motor_device_manager_real_test.cpp
#	cmvr-es/devices/motor/drivers/ethercat_motor/src/vendor/eyou/eyou_motor_real_test.cpp
#	dependency/x86/third_party/ethercat/v1.7.0/bin/ethercat
#	dependency/x86/third_party/ethercat/v1.7.0/lib/libethercat.a
#	dependency/x86/third_party/ethercat/v1.7.0/lib/libethercat.so.1.2.0
2026-08-03 13:39:58 +08:00
a35cbb08ff feat: add EYOU motor actual current PDO 2026-08-03 11:17:16 +08:00
26a7ad5d4b fix: harden SRC1100 free navigation handling 2026-07-31 17:50:49 +08:00
b5c6d50022 fix: restore SRC1100 free navigation protocol 2026-07-31 14:27:20 +08:00
f092e2539d fix: correct SRC1100 navigation and velocity commands 2026-07-31 12:21:19 +08:00
31b2d98625 fix: acquire SRC1100 control authority before commands 2026-07-31 11:12:35 +08:00
dcb95e3ccb Add QSV hardware encoding support to FFmpeg and upgrade to v6.1 2026-07-31 10:11:09 +08:00
edb01463ff docs: move hardware guides into component directories
Keep the root README concise while documenting MotorService, the Modbus TCP PLC runtime, the motor stack, and AUBO cabinet IO next to their owning code.
2026-07-31 09:39:44 +08:00
b54c2936be refactor: restore single root configuration
Remove redundant UME and robot root profiles, keep the canonical cmvr_es configuration tree, and document per-host external deployment configuration.
2026-07-31 09:39:21 +08:00
af67751937 feat: add safe UME teleoperation framework
Add the UME RobotArm and Damiao CAN-FD path, migrate the legacy UME controller, and introduce guarded cross-machine gRPC teleoperation with lifecycle, authority, configuration, and test coverage.
2026-07-31 08:48:04 +08:00
28f1dd1bf8 feat: add gRPC motor control over Modbus TCP
Add synchronous and streaming MotorService APIs backed by the PLC Modbus TCP runtime and protocol driver. Extend AUBO JSON commands and isolate vendor libstdc++ paths while keeping build-tree tests runnable.
2026-07-30 15:09:07 +08:00
565 changed files with 311408 additions and 444 deletions

View File

@ -28,6 +28,38 @@ list(APPEND CMAKE_MODULE_PATH "${CMAKE_SOURCE_DIR}/cmake")
include(FindExternalLib) include(FindExternalLib)
set(ARCH "x86") set(ARCH "x86")
setup_external_libs(${ARCH}) setup_external_libs(${ARCH})
# Intel oneVPL / VA-API runtime. The shared libraries in lib/ are installed
# by setup_external_libs(); the VA-API driver plugin directory is installed
# separately because it must retain its dri layout.
set(INTEL_MEDIA_STACK_ROOT
"${PROJECT_SOURCE_DIR}/dependency/${ARCH}/third_party/intel-media-stack/vpl-2.17"
)
set(INTEL_MEDIA_DRIVER_DIR "${INTEL_MEDIA_STACK_ROOT}/lib/dri")
set(INTEL_IHD_DRIVER "${INTEL_MEDIA_DRIVER_DIR}/iHD_drv_video.so")
if(NOT EXISTS "${INTEL_IHD_DRIVER}")
message(FATAL_ERROR "Intel iHD VA-API driver not found: ${INTEL_IHD_DRIVER}")
endif()
message(STATUS "Intel media stack: ${INTEL_MEDIA_STACK_ROOT}")
install(
DIRECTORY "${INTEL_MEDIA_DRIVER_DIR}/"
DESTINATION lib/dri
)
install(CODE [=[
find_program(CMVR_PATCHELF_EXECUTABLE patchelf REQUIRED)
set(_cmvr_ihd_driver
"${CMAKE_INSTALL_PREFIX}/lib/dri/iHD_drv_video.so"
)
execute_process(
COMMAND "${CMVR_PATCHELF_EXECUTABLE}"
--set-rpath "$ORIGIN/.."
"${_cmvr_ihd_driver}"
COMMAND_ERROR_IS_FATAL ANY
)
]=])
# 在调用 setup_external_libs 之后 # 在调用 setup_external_libs 之后
message(STATUS "CMAKE_EXE_LINKER_FLAGS: ${CMAKE_EXE_LINKER_FLAGS}") message(STATUS "CMAKE_EXE_LINKER_FLAGS: ${CMAKE_EXE_LINKER_FLAGS}")
message(STATUS "CMAKE_SHARED_LINKER_FLAGS: ${CMAKE_SHARED_LINKER_FLAGS}") message(STATUS "CMAKE_SHARED_LINKER_FLAGS: ${CMAKE_SHARED_LINKER_FLAGS}")

View File

@ -62,14 +62,14 @@ int CameraCapture::initialize(const Config& config) {
} }
int CameraCapture::init_device() { int CameraCapture::init_device() {
AVInputFormat* input_fmt = nullptr; // AVInputFormat* input_fmt = nullptr;
std::string device_path; std::string device_path;
#ifdef _WIN32 #ifdef _WIN32
input_fmt = av_find_input_format("dshow"); auto input_fmt = av_find_input_format("dshow");
device_path = "video=" + config_.device_name; device_path = "video=" + config_.device_name;
#else #else
input_fmt = av_find_input_format("v4l2"); auto input_fmt = av_find_input_format("v4l2");
device_path = config_.device_name; device_path = config_.device_name;
#endif #endif

View File

@ -0,0 +1,25 @@
-----BEGIN CERTIFICATE-----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-----END CERTIFICATE-----

View File

@ -149,4 +149,156 @@ arm {
} }
} }
} }
robot_arms {
id: "eyou_arm"
motor {
motor_system_id: "ethercat_motors"
motor_group_ids: "dual_arm_ethercat"
dof: 7
joint_names: "R_SHOULDER_P"
joint_names: "R_SHOULDER_R"
joint_names: "R_SHOULDER_Y"
joint_names: "R_ELBOW_R"
joint_names: "R_WRIST_P"
joint_names: "R_WRIST_Y"
joint_names: "R_WRIST_R"
upd_freq: 1000
buffer_size: 50
default_vel: 1.0
default_acc: 2.0
}
kinematics {
pinocchio_dls_ik_solver {
urdf_path: "model/xiaoyan_description/dual_arm.urdf"
base_frame_name: "PELVIS_S"
flange_frame_name: "R_WRIST_R_S"
tcp_frame_name: "R_FINGER_TIP_FIXED"
max_iters: 100
pos_eps: 1e-6
rot_eps: 1e-6
damping: 1e-6
joint_limit_policy {
limits {
enable: true
source: JOINT_LIMIT_SOURCE_CUSTOM
joints { joint_name: "R_SHOULDER_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_SHOULDER_R" q_lb: -0.78 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_SHOULDER_Y" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_ELBOW_R" q_lb: 0 q_ub: 2.05 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_WRIST_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_WRIST_Y" q_lb: -0.78 q_ub: 0.78 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_WRIST_R" q_lb: -0.57 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
}
soft_limit {
enable: true
margin_ratio: 0.01
min_margin_rad: 0.01
}
avoidance {
enable: false
gain: 0.2
margin_ratio: 0.15
max_push: 0.25
weight: 0.05
}
}
}
}
motion {
move_j {
toppra_joint_motion_planner {
path_type: TOPPRA_PATH_TYPE_QUINTIC
sample_period_s: 0.001
grid_size: 150
high_grid_size: 300
}
}
move_l {
pinocchio_cartesian_motion_planner {
sample_period_s: 0.001
position_gain: 4.0
rotation_gain: 4.0
line_deviation_check {
enable: true
line_deviation_warn_m: 0.01
line_deviation_stop_m: 0.03
line_direction_warn_deg: 20.0
line_direction_stop_deg: 45.0
line_direction_reset_deg: 10.0
line_check_min_distance_m: 0.01
}
joint_continuity_check {
enable: true
max_joint_delta_rad: 0.05
max_joint_velocity_rad_s: 10.0
max_joint_acceleration_rad_s2: 5000.0
}
cartesian_step_feasibility_check {
enable: true
min_linear_speed_ratio: 0.2
max_linear_direction_deviation_deg: 45.0
min_angular_speed_ratio: 0.2
max_angular_direction_deviation_deg: 45.0
min_desired_linear_speed: 1e-4
min_desired_angular_speed: 1e-4
}
}
}
speed_l {
pinocchio_cartesian_motion_planner {
linear_velocity_max: 0.55
linear_acceleration_max: 5.0
linear_jerk_max: 10.0
angular_velocity_max: 1.0
angular_acceleration_max: 5.0
angular_jerk_max: 12.0
linear_target_replan_threshold: 1e-4
angular_target_replan_threshold: 1e-4
linear_reverse_cos_threshold: -0.8660254037844386
linear_reverse_switch_speed_threshold: 1e-3
enforce_joint_acceleration_limits: true
line_deviation_check {
enable: true
line_deviation_warn_m: 0.01
line_deviation_stop_m: 0.03
line_direction_warn_deg: 20.0
line_direction_stop_deg: 45.0
line_direction_reset_deg: 10.0
line_check_min_distance_m: 0.01
}
joint_velocity_check {
enable: true
max_joint_velocity_rad_s: 30.0
max_joint_acceleration_rad_s2: 10000.0
}
cartesian_velocity_feasibility_check {
enable: true
min_linear_speed_ratio: 0.2
max_linear_direction_deviation_deg: 5.0
min_angular_speed_ratio: 0.2
max_angular_direction_deviation_deg: 5.0
min_desired_linear_speed: 1e-4
min_desired_angular_speed: 1e-4
}
}
speed_l_controller {
cartesian_velocity_controller {
control_period_s: 0.001
stop_twist_norm: 1e-9
stop_command_velocity_norm: 1e-3
stop_measured_velocity_norm: 1e-2
stop_acceleration: 10
}
}
}
}
}
} }

View File

@ -0,0 +1,152 @@
arm {
robot_arms {
id: "eyou_left_arm"
motor {
motor_system_id: "ethercat_motors"
motor_group_ids: "dual_arm_ethercat"
dof: 7
joint_names: "L_SHOULDER_P"
joint_names: "L_SHOULDER_R"
joint_names: "L_SHOULDER_Y"
joint_names: "L_ELBOW_R"
joint_names: "L_WRIST_P"
joint_names: "L_WRIST_Y"
joint_names: "L_WRIST_R"
upd_freq: 1000
buffer_size: 50
default_vel: 1.0
default_acc: 2.0
}
kinematics {
pinocchio_dls_ik_solver {
urdf_path: "model/xiaoyan_description/dual_arm.urdf"
base_frame_name: "PELVIS_S"
flange_frame_name: "L_WRIST_R_S"
tcp_frame_name: "L_FINGER_TIP_FIXED"
max_iters: 100
pos_eps: 1e-6
rot_eps: 1e-6
damping: 1e-6
joint_limit_policy {
limits {
enable: true
source: JOINT_LIMIT_SOURCE_CUSTOM
joints { joint_name: "L_SHOULDER_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_SHOULDER_R" q_lb: -0.78 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_SHOULDER_Y" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_ELBOW_R" q_lb: 0 q_ub: 2.05 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_WRIST_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_WRIST_Y" q_lb: -0.78 q_ub: 0.78 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_WRIST_R" q_lb: -0.57 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
}
soft_limit {
enable: true
margin_ratio: 0.01
min_margin_rad: 0.01
}
avoidance {
enable: false
gain: 0.2
margin_ratio: 0.15
max_push: 0.25
weight: 0.05
}
}
}
}
motion {
move_j {
toppra_joint_motion_planner {
path_type: TOPPRA_PATH_TYPE_QUINTIC
sample_period_s: 0.001
grid_size: 150
high_grid_size: 300
}
}
move_l {
pinocchio_cartesian_motion_planner {
sample_period_s: 0.001
position_gain: 4.0
rotation_gain: 4.0
line_deviation_check {
enable: true
line_deviation_warn_m: 0.01
line_deviation_stop_m: 0.03
line_direction_warn_deg: 20.0
line_direction_stop_deg: 45.0
line_direction_reset_deg: 10.0
line_check_min_distance_m: 0.01
}
joint_continuity_check {
enable: true
max_joint_delta_rad: 0.05
max_joint_velocity_rad_s: 10.0
max_joint_acceleration_rad_s2: 5000.0
}
cartesian_step_feasibility_check {
enable: true
min_linear_speed_ratio: 0.2
max_linear_direction_deviation_deg: 45.0
min_angular_speed_ratio: 0.2
max_angular_direction_deviation_deg: 45.0
min_desired_linear_speed: 1e-4
min_desired_angular_speed: 1e-4
}
}
}
speed_l {
pinocchio_cartesian_motion_planner {
linear_velocity_max: 0.55
linear_acceleration_max: 5.0
linear_jerk_max: 10.0
angular_velocity_max: 1.0
angular_acceleration_max: 5.0
angular_jerk_max: 12.0
linear_target_replan_threshold: 1e-4
angular_target_replan_threshold: 1e-4
linear_reverse_cos_threshold: -0.8660254037844386
linear_reverse_switch_speed_threshold: 1e-3
enforce_joint_acceleration_limits: true
line_deviation_check {
enable: true
line_deviation_warn_m: 0.01
line_deviation_stop_m: 0.03
line_direction_warn_deg: 20.0
line_direction_stop_deg: 45.0
line_direction_reset_deg: 10.0
line_check_min_distance_m: 0.01
}
joint_velocity_check {
enable: true
max_joint_velocity_rad_s: 30.0
max_joint_acceleration_rad_s2: 10000.0
}
cartesian_velocity_feasibility_check {
enable: true
min_linear_speed_ratio: 0.2
max_linear_direction_deviation_deg: 5.0
min_angular_speed_ratio: 0.2
max_angular_direction_deviation_deg: 5.0
min_desired_linear_speed: 1e-4
min_desired_angular_speed: 1e-4
}
}
speed_l_controller {
cartesian_velocity_controller {
control_period_s: 0.001
stop_twist_norm: 1e-9
stop_command_velocity_norm: 1e-3
stop_measured_velocity_norm: 1e-2
stop_acceleration: 10
}
}
}
}
}
}

View File

@ -101,27 +101,7 @@ camera {
} }
} }
cameras {
id: "left_eye_cam"
uvc {
usb: "/dev/uvc_left_camera"
camera_mode: CAMERA_MODE_VIDEO
capture {
width: 640
height: 480
fps: 30
stream_mode: STREAM_MODE_RGB
}
encoder {
width: 640
height: 480
fps: 30
codec: "H265"
enable_stream_timestamp: true
buffer_size: 30
}
}
}
cameras { cameras {
id: "cam5" id: "cam5"
@ -185,4 +165,50 @@ camera {
buffer_size: 30 buffer_size: 30
} }
} }
cameras {
id: "real_cam1"
realsense {
serialNumber: "332522076896"
camera_mode: CAMERA_MODE_VIDEO
capture {
width: 640
height: 480
fps: 30
stream_mode: STREAM_MODE_RGBD
}
encoder {
width: 640
height: 480
fps: 30
codec: "h265_qsv"
enable_stream_timestamp: true
buffer_size: 30
}
align_mode: ALIGN_MODE_COLOR
sync: false
}
}
cameras {
id: "usb_cam1"
uvc {
usb: "/dev/video0"
camera_mode: CAMERA_MODE_VIDEO
capture {
width: 640
height: 480
fps: 30
stream_mode: STREAM_MODE_RGB
}
encoder {
width: 640
height: 480
fps: 30
codec: "h265_qsv"
enable_stream_timestamp: true
buffer_size: 30
}
}
}
} }

View File

@ -5,7 +5,7 @@ microphone {
channels: 2 channels: 2
sampleRate: 48000 sampleRate: 48000
volume: 100 volume: 100
input_device: "default" input_device: "plughw:CARD=XFMDPV0018,DEV=0"
} }
} }
} }

View File

@ -2,7 +2,7 @@ motor {
id: "ethercat_motors" id: "ethercat_motors"
motor_groups { motor_groups {
id: "right_arm_ethercat" id: "dual_arm_ethercat"
bus_type: MOTOR_BUS_ETHERCAT bus_type: MOTOR_BUS_ETHERCAT
vendor: MOTOR_VENDOR_EYOU vendor: MOTOR_VENDOR_EYOU
protocol: MOTOR_PROTOCOL_ETHERCAT_CIA402 protocol: MOTOR_PROTOCOL_ETHERCAT_CIA402
@ -38,13 +38,20 @@ motor {
sync_monitor_period_ms: 1000 sync_monitor_period_ms: 1000
} }
slaves { motor_id: 1 alias: 0 position: 0 } slaves { motor_id: 1 alias: 0 position: 1 }
slaves { motor_id: 2 alias: 0 position: 1 } slaves { motor_id: 2 alias: 0 position: 2 }
slaves { motor_id: 3 alias: 0 position: 2 } slaves { motor_id: 3 alias: 0 position: 3 }
slaves { motor_id: 4 alias: 0 position: 3 } slaves { motor_id: 4 alias: 0 position: 4 }
slaves { motor_id: 5 alias: 0 position: 4 } slaves { motor_id: 5 alias: 0 position: 5 }
slaves { motor_id: 6 alias: 0 position: 5 } slaves { motor_id: 6 alias: 0 position: 6 }
slaves { motor_id: 7 alias: 0 position: 6 } slaves { motor_id: 7 alias: 0 position: 7 }
slaves { motor_id: 8 alias: 0 position: 8 }
slaves { motor_id: 9 alias: 0 position: 9 }
slaves { motor_id: 10 alias: 0 position: 10 }
slaves { motor_id: 11 alias: 0 position: 11 }
slaves { motor_id: 12 alias: 0 position: 12 }
slaves { motor_id: 13 alias: 0 position: 13 }
slaves { motor_id: 14 alias: 0 position: 14 }
} }
joint_limits { joint_limits {
@ -57,6 +64,13 @@ motor {
joints { joint_name: "R_WRIST_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_WRIST_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_WRIST_Y" q_lb: -0.78 q_ub: 0.78 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_WRIST_Y" q_lb: -0.78 q_ub: 0.78 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_WRIST_R" q_lb: -0.57 q_ub: 1.57 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_WRIST_R" q_lb: -0.57 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_SHOULDER_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_SHOULDER_R" q_lb: -0.78 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_SHOULDER_Y" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_ELBOW_R" q_lb: 0 q_ub: 2.05 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_WRIST_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_WRIST_Y" q_lb: -0.78 q_ub: 0.78 qd: 5.0 qdd: 10.0 }
joints { joint_name: "L_WRIST_R" q_lb: -0.57 q_ub: 1.57 qd: 5.0 qdd: 10.0 }
} }
motors { motors {
@ -67,6 +81,13 @@ motor {
motors { id: 5 joint_name: "R_WRIST_P" encoder_counts_per_rev: 65536 gear_ratio: 101.0 } motors { id: 5 joint_name: "R_WRIST_P" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 6 joint_name: "R_WRIST_Y" encoder_counts_per_rev: 65536 gear_ratio: 101.0 } motors { id: 6 joint_name: "R_WRIST_Y" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 7 joint_name: "R_WRIST_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 } motors { id: 7 joint_name: "R_WRIST_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 8 joint_name: "L_SHOULDER_P" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 9 joint_name: "L_SHOULDER_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 10 joint_name: "L_SHOULDER_Y" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 11 joint_name: "L_ELBOW_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 12 joint_name: "L_WRIST_P" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 13 joint_name: "L_WRIST_Y" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 14 joint_name: "L_WRIST_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
} }
} }
} }

View File

@ -10,7 +10,7 @@ motor {
ethercat { ethercat {
master_index: 0 master_index: 0
cycle_us: 1000 cycle_us: 1000
slave_op_timeout_ms: 15000 slave_op_timeout_ms: 20000
slave_state_poll_period_ms: 10 slave_state_poll_period_ms: 10
cia402 { cia402 {
@ -42,15 +42,17 @@ motor {
slaves { motor_id: 2 alias: 0 position: 1 } slaves { motor_id: 2 alias: 0 position: 1 }
slaves { motor_id: 3 alias: 0 position: 2 } slaves { motor_id: 3 alias: 0 position: 2 }
slaves { motor_id: 4 alias: 0 position: 3 } slaves { motor_id: 4 alias: 0 position: 3 }
slaves { motor_id: 5 alias: 0 position: 4 }
} }
joint_limits { joint_limits {
enable: true enable: true
source: JOINT_LIMIT_SOURCE_CUSTOM source: JOINT_LIMIT_SOURCE_CUSTOM
joints { joint_name: "R_SHOULDER_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_SHOULDER_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_SHOULDER_R" q_lb: -0.78 q_ub: 1.57 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_SHOULDER_R" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_SHOULDER_Y" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_SHOULDER_Y" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_ELBOW_R" q_lb: 0 q_ub: 2.05 qd: 5.0 qdd: 10.0 } joints { joint_name: "R_ELBOW_R" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
joints { joint_name: "R_WRIST_P" q_lb: -3.14 q_ub: 3.14 qd: 5.0 qdd: 10.0 }
} }
motors { motors {
@ -58,6 +60,7 @@ motor {
motors { id: 2 joint_name: "R_SHOULDER_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 } motors { id: 2 joint_name: "R_SHOULDER_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 3 joint_name: "R_SHOULDER_Y" encoder_counts_per_rev: 65536 gear_ratio: 101.0 } motors { id: 3 joint_name: "R_SHOULDER_Y" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 4 joint_name: "R_ELBOW_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 } motors { id: 4 joint_name: "R_ELBOW_R" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
motors { id: 5 joint_name: "R_WRIST_P" encoder_counts_per_rev: 65536 gear_ratio: 101.0 }
} }
} }
} }

View File

@ -89,6 +89,20 @@ device_manager {
enable: false enable: false
} }
devices {
id: "eyou_arm"
type: DEVICE_TYPE_ROBOT_ARM
config_file: "devices/arm/arm.pb.txt"
enable: false
}
devices {
id: "eyou_left_arm"
type: DEVICE_TYPE_ROBOT_ARM
config_file: "devices/arm/arm_eyou_left.pb.txt"
enable: false
}
devices { devices {
id: "aubo_arm" id: "aubo_arm"
type: DEVICE_TYPE_ROBOT_ARM type: DEVICE_TYPE_ROBOT_ARM
@ -147,4 +161,20 @@ device_manager {
# Host-development default: keep physical audio devices disabled. # Host-development default: keep physical audio devices disabled.
enable: false enable: false
} }
devices {
id: "real_cam1"
type: DEVICE_TYPE_CAMERA
config_file: "devices/camera/camera.pb.txt"
# Host-development default: keep physical cameras disabled.
enable: false
}
devices {
id: "usb_cam1"
type: DEVICE_TYPE_CAMERA
config_file: "devices/camera/camera.pb.txt"
# Host-development default: keep physical cameras disabled.
enable: false
}
} }

View File

@ -27,7 +27,6 @@ task_manager {
type: TASK_TYPE_QUIC_EDGE type: TASK_TYPE_QUIC_EDGE
run_mode: TASK_RUN_MODE_BLOCKING_SERVICE run_mode: TASK_RUN_MODE_BLOCKING_SERVICE
config_file: "tasks/quic_edge_task/quic_edge_task.pb.txt" config_file: "tasks/quic_edge_task/quic_edge_task.pb.txt"
# Host-development default: no QUIC Gateway or physical media devices.
enable: true enable: true
} }
} }

View File

@ -3,10 +3,11 @@ quic_edge {
# Task enablement is controlled by manager/task_manager.pb.txt. Configure a # Task enablement is controlled by manager/task_manager.pb.txt. Configure a
# reachable QUIC Gateway and TLS policy before enabling the task there. # reachable QUIC Gateway and TLS policy before enabling the task there.
server_host: "quic-gateway.example.com" server_host: "192.168.0.222"
server_port: 4433 server_port: 4433
alpn: "cmvr-quic-edge/1" alpn: "cmvr-quic-edge/1"
node_id: "cmvr-edge" node_id: "cmvr-edge"
robot_id: "CN-CMVR-MBLRV1-AIMA-20260806-001"
software_version: "0.1" software_version: "0.1"
# The existing cmvr-es gRPC server remains the robot-control endpoint. "auto" # The existing cmvr-es gRPC server remains the robot-control endpoint. "auto"
@ -23,13 +24,26 @@ quic_edge {
control_response_timeout_ms: 1000 control_response_timeout_ms: 1000
tls { tls {
ca_file: "certs/quic_gateway_ca.pem" ca_file: "certs/cmvr-quic-ca.crt"
certificate_file: "certs/cmvr_edge_cert.pem" server_name: "192.168.0.222"
private_key_file: "certs/cmvr_edge_key.pem"
server_name: "quic-gateway.example.com"
allow_insecure: false allow_insecure: false
} }
# Additional platforms run concurrently with the primary endpoint above.
# Each one has an independent connection, registration, heartbeat ACK state
# and reconnect loop. Media forwarding is opt-in for additional platforms.
# platforms {
# id: "operations_backup"
# server_host: "192.168.0.223"
# server_port: 4433
# enable_media: false
# tls {
# ca_file: "certs/cmvr-quic-ca.crt"
# server_name: "192.168.0.223"
# allow_insecure: false
# }
# }
reconnect { reconnect {
initial_delay_ms: 500 initial_delay_ms: 500
maximum_delay_ms: 30000 maximum_delay_ms: 30000

View File

@ -19,6 +19,7 @@ struct FfmpegEncoderInfo {
bool bRunning = false; bool bRunning = false;
AVCodecContext* codec_context = nullptr; AVCodecContext* codec_context = nullptr;
AVFrame* frame = nullptr; AVFrame* frame = nullptr;
AVFrame* transfer_frame = nullptr;
AVPacket* packet = nullptr; AVPacket* packet = nullptr;
SwsContext* sws_context = nullptr; SwsContext* sws_context = nullptr;
@ -42,6 +43,12 @@ public:
std::vector<uint8_t>& encoded_frame, std::vector<uint8_t>& encoded_frame,
bool& is_key, bool& is_key,
const CameraStreamEncodeOptions& options = {}); const CameraStreamEncodeOptions& options = {});
static bool encode(std::shared_ptr<FfmpegEncoderInfo>& encoder,
const AVFrame* frame,
std::vector<uint8_t>& encoded_frame,
bool& is_key,
const CameraStreamEncodeOptions& options = {});
}; };
} // namespace cmvr::device } // namespace cmvr::device

View File

@ -6,6 +6,8 @@
#include <sstream> #include <sstream>
#include <libavutil/opt.h> #include <libavutil/opt.h>
#include <libavutil/pixdesc.h>
#include <libavutil/hwcontext.h>
#include <opencv2/imgproc.hpp> #include <opencv2/imgproc.hpp>
#include "common/base/logging/logger.h" #include "common/base/logging/logger.h"
@ -48,6 +50,13 @@ void drawTimeStamp(cv::Mat& image)
const AVCodec* findEncoder(const std::string& codec_name) const AVCodec* findEncoder(const std::string& codec_name)
{ {
if (codec_name == "h264_qsv" || codec_name == "H264_QSV") {
return avcodec_find_encoder_by_name("h264_qsv");
}
if (codec_name == "hevc_qsv" || codec_name == "h265_qsv" ||
codec_name == "HEVC_QSV" || codec_name == "H265_QSV") {
return avcodec_find_encoder_by_name("hevc_qsv");
}
if (codec_name == "h264" || codec_name == "H264") { if (codec_name == "h264" || codec_name == "H264") {
const AVCodec* codec = avcodec_find_encoder_by_name("libx264"); const AVCodec* codec = avcodec_find_encoder_by_name("libx264");
return codec ? codec : avcodec_find_encoder(AV_CODEC_ID_H264); return codec ? codec : avcodec_find_encoder(AV_CODEC_ID_H264);
@ -73,6 +82,55 @@ AVPixelFormat sourcePixelFormat(const cv::Mat& frame)
return AV_PIX_FMT_NONE; return AV_PIX_FMT_NONE;
} }
bool encodePreparedFrame(FfmpegEncoderInfo& encoder,
std::vector<uint8_t>& encoded_frame,
bool& is_key)
{
encoder.frame->pts = encoder.frame_pts++;
int ret = avcodec_send_frame(encoder.codec_context, encoder.frame);
if (ret < 0) {
char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
av_strerror(ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] error sending frame to encoder: " << errbuf;
return false;
}
while (true) {
ret = avcodec_receive_packet(encoder.codec_context, encoder.packet);
if (ret == AVERROR(EAGAIN) || ret == AVERROR_EOF) {
break;
}
if (ret < 0) {
char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
av_strerror(ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] error receiving packet from encoder: " << errbuf;
return false;
}
if (encoder.packet->flags & AV_PKT_FLAG_KEY) {
is_key = true;
}
encoded_frame.reserve(encoded_frame.size() + encoder.packet->size);
encoded_frame.insert(encoded_frame.end(),
encoder.packet->data,
encoder.packet->data + encoder.packet->size);
av_packet_unref(encoder.packet);
}
if (encoded_frame.size() < 4) {
return false;
}
const bool has_start_code =
(encoded_frame[0] == 0 && encoded_frame[1] == 0 && encoded_frame[2] == 1) ||
(encoded_frame[0] == 0 && encoded_frame[1] == 0 && encoded_frame[2] == 0 && encoded_frame[3] == 1);
if (!has_start_code) {
CMVR_LOG(ERROR) << "[CameraStreamEncoder] invalid frame: no NALU start code";
return false;
}
return true;
}
} // namespace } // namespace
FfmpegEncoderInfo::~FfmpegEncoderInfo() FfmpegEncoderInfo::~FfmpegEncoderInfo()
@ -81,6 +139,10 @@ FfmpegEncoderInfo::~FfmpegEncoderInfo()
av_frame_free(&frame); av_frame_free(&frame);
frame = nullptr; frame = nullptr;
} }
if (transfer_frame) {
av_frame_free(&transfer_frame);
transfer_frame = nullptr;
}
if (packet) { if (packet) {
av_packet_free(&packet); av_packet_free(&packet);
packet = nullptr; packet = nullptr;
@ -129,7 +191,17 @@ bool CameraStreamEncoder::init(std::shared_ptr<FfmpegEncoderInfo>& encoder,
ctx->max_b_frames = 0; ctx->max_b_frames = 0;
ctx->gop_size = 10; ctx->gop_size = 10;
if (codec->id == AV_CODEC_ID_H264) { const bool is_qsv = codec->name &&
(std::string(codec->name) == "h264_qsv" || std::string(codec->name) == "hevc_qsv");
if (is_qsv) {
// Feed system-memory NV12 frames to oneVPL/QSV. The QSV encoder
// performs the upload and hardware encoding internally.
ctx->pix_fmt = AV_PIX_FMT_NV12;
ctx->bit_rate = 4'000'000;
av_opt_set_int(ctx->priv_data, "async_depth", 1, 0);
av_opt_set_int(ctx->priv_data, "repeat_pps", 1, 0);
} else if (codec->id == AV_CODEC_ID_H264) {
av_opt_set(ctx->priv_data, "preset", "ultrafast", 0); av_opt_set(ctx->priv_data, "preset", "ultrafast", 0);
av_opt_set(ctx->priv_data, "tune", "zerolatency", 0); av_opt_set(ctx->priv_data, "tune", "zerolatency", 0);
av_opt_set(ctx->priv_data, "profile", "baseline", 0); av_opt_set(ctx->priv_data, "profile", "baseline", 0);
@ -144,11 +216,13 @@ bool CameraStreamEncoder::init(std::shared_ptr<FfmpegEncoderInfo>& encoder,
av_opt_set(ctx->priv_data, "no-open-gop", "1", 0); av_opt_set(ctx->priv_data, "no-open-gop", "1", 0);
} }
const AVPixelFormat* pix_fmts = codec->pix_fmts; if (!is_qsv) {
if (!pix_fmts) { const AVPixelFormat* pix_fmts = codec->pix_fmts;
ctx->pix_fmt = AV_PIX_FMT_YUV420P; if (!pix_fmts) {
} else { ctx->pix_fmt = AV_PIX_FMT_YUV420P;
ctx->pix_fmt = pix_fmts[0]; } else {
ctx->pix_fmt = pix_fmts[0];
}
} }
const int open_ret = avcodec_open2(ctx, codec, nullptr); const int open_ret = avcodec_open2(ctx, codec, nullptr);
@ -179,9 +253,11 @@ bool CameraStreamEncoder::init(std::shared_ptr<FfmpegEncoderInfo>& encoder,
return false; return false;
} }
CMVR_LOG(INFO) << "[CameraStreamEncoder] initialized " << codec_name const char* pixel_format_name = av_get_pix_fmt_name(ctx->pix_fmt);
CMVR_LOG(INFO) << "[CameraStreamEncoder] initialized " << codec->name
<< " encoder, size=" << width << "x" << height << " encoder, size=" << width << "x" << height
<< ", fps=" << fps; << ", fps=" << fps
<< ", pixel_format=" << (pixel_format_name ? pixel_format_name : "unknown");
return true; return true;
} }
@ -216,24 +292,30 @@ bool CameraStreamEncoder::encode(std::shared_ptr<FfmpegEncoderInfo>& encoder,
return false; return false;
} }
if (encoder->sws_context) { encoder->sws_context = sws_getCachedContext(encoder->sws_context,
sws_freeContext(encoder->sws_context); frame_to_encode.cols,
} frame_to_encode.rows,
encoder->sws_context = sws_getContext(frame_to_encode.cols, src_pix_fmt,
frame_to_encode.rows, encoder->codec_context->width,
src_pix_fmt, encoder->codec_context->height,
encoder->codec_context->width, encoder->codec_context->pix_fmt,
encoder->codec_context->height, SWS_BILINEAR,
encoder->codec_context->pix_fmt, nullptr,
SWS_BILINEAR, nullptr,
nullptr, nullptr);
nullptr,
nullptr);
if (!encoder->sws_context) { if (!encoder->sws_context) {
CMVR_LOG(ERROR) << "[CameraStreamEncoder] failed to create SwsContext"; CMVR_LOG(ERROR) << "[CameraStreamEncoder] failed to create SwsContext";
return false; return false;
} }
const int writable_ret = av_frame_make_writable(encoder->frame);
if (writable_ret < 0) {
char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
av_strerror(writable_ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] frame is not writable: " << errbuf;
return false;
}
const uint8_t* src_data[AV_NUM_DATA_POINTERS] = {frame_to_encode.data}; const uint8_t* src_data[AV_NUM_DATA_POINTERS] = {frame_to_encode.data};
int src_linesize[AV_NUM_DATA_POINTERS] = {static_cast<int>(frame_to_encode.step)}; int src_linesize[AV_NUM_DATA_POINTERS] = {static_cast<int>(frame_to_encode.step)};
@ -249,49 +331,125 @@ bool CameraStreamEncoder::encode(std::shared_ptr<FfmpegEncoderInfo>& encoder,
return false; return false;
} }
encoder->frame->pts = encoder->frame_pts++; return encodePreparedFrame(*encoder, encoded_frame, is_key);
int ret = avcodec_send_frame(encoder->codec_context, encoder->frame); }
if (ret < 0) {
char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0}; bool CameraStreamEncoder::encode(std::shared_ptr<FfmpegEncoderInfo>& encoder,
av_strerror(ret, errbuf, sizeof(errbuf)); const AVFrame* frame,
CMVR_LOG(ERROR) << "[CameraStreamEncoder] error sending frame to encoder: " << errbuf; std::vector<uint8_t>& encoded_frame,
bool& is_key,
const CameraStreamEncodeOptions& options)
{
encoded_frame.clear();
is_key = false;
if (!encoder || !encoder->codec_context || !encoder->frame || !encoder->packet || !frame) {
return false; return false;
} }
while (true) { const AVFrame* source_frame = frame;
ret = avcodec_receive_packet(encoder->codec_context, encoder->packet); if (frame->hw_frames_ctx) {
if (ret == AVERROR(EAGAIN) || ret == AVERROR_EOF) { if (!encoder->transfer_frame) {
break; encoder->transfer_frame = av_frame_alloc();
} }
if (ret < 0) { if (!encoder->transfer_frame) {
return false;
}
av_frame_unref(encoder->transfer_frame);
const int transfer_ret = av_hwframe_transfer_data(encoder->transfer_frame, frame, 0);
if (transfer_ret < 0) {
char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0}; char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
av_strerror(ret, errbuf, sizeof(errbuf)); av_strerror(transfer_ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] error receiving packet from encoder: " << errbuf; CMVR_LOG(ERROR) << "[CameraStreamEncoder] failed to download hardware frame: " << errbuf;
break; return false;
} }
const int props_ret = av_frame_copy_props(encoder->transfer_frame, frame);
if (encoder->packet->flags & AV_PKT_FLAG_KEY) { if (props_ret < 0) {
is_key = true; char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
av_strerror(props_ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] failed to copy hardware frame properties: " << errbuf;
return false;
} }
encoded_frame.reserve(encoded_frame.size() + encoder->packet->size); source_frame = encoder->transfer_frame;
encoded_frame.insert(encoded_frame.end(),
encoder->packet->data,
encoder->packet->data + encoder->packet->size);
av_packet_unref(encoder->packet);
} }
if (encoded_frame.size() < 4) { const auto source_format = static_cast<AVPixelFormat>(source_frame->format);
if (source_format == AV_PIX_FMT_NONE) {
CMVR_LOG(ERROR) << "[CameraStreamEncoder] source frame has no pixel format";
return false; return false;
} }
const bool has_start_code = const int writable_ret = av_frame_make_writable(encoder->frame);
(encoded_frame[0] == 0 && encoded_frame[1] == 0 && encoded_frame[2] == 1) || if (writable_ret < 0) {
(encoded_frame[0] == 0 && encoded_frame[1] == 0 && encoded_frame[2] == 0 && encoded_frame[3] == 1); char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
if (!has_start_code) { av_strerror(writable_ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] invalid frame: no NALU start code"; CMVR_LOG(ERROR) << "[CameraStreamEncoder] frame is not writable: " << errbuf;
return false; return false;
} }
return true;
int copy_ret = 0;
if (source_frame->width == encoder->codec_context->width
&& source_frame->height == encoder->codec_context->height
&& source_format == encoder->codec_context->pix_fmt) {
copy_ret = av_frame_copy(encoder->frame, source_frame);
} else {
encoder->sws_context = sws_getCachedContext(
encoder->sws_context,
source_frame->width,
source_frame->height,
source_format,
encoder->codec_context->width,
encoder->codec_context->height,
encoder->codec_context->pix_fmt,
SWS_BILINEAR,
nullptr,
nullptr,
nullptr);
if (!encoder->sws_context) {
CMVR_LOG(ERROR) << "[CameraStreamEncoder] failed to create native frame conversion context";
return false;
}
const int scaled_rows = sws_scale(
encoder->sws_context,
source_frame->data,
source_frame->linesize,
0,
source_frame->height,
encoder->frame->data,
encoder->frame->linesize);
copy_ret = scaled_rows == encoder->codec_context->height
? 0
: scaled_rows < 0 ? scaled_rows : AVERROR_INVALIDDATA;
}
if (copy_ret < 0) {
char errbuf[AV_ERROR_MAX_STRING_SIZE] = {0};
av_strerror(copy_ret, errbuf, sizeof(errbuf));
CMVR_LOG(ERROR) << "[CameraStreamEncoder] failed to copy native frame: " << errbuf;
return false;
}
if (options.draw_timestamp) {
const auto output_format = static_cast<AVPixelFormat>(encoder->frame->format);
if (output_format != AV_PIX_FMT_NV12 && output_format != AV_PIX_FMT_YUV420P) {
const char* format_name = av_get_pix_fmt_name(output_format);
CMVR_LOG(ERROR) << "[CameraStreamEncoder] cannot draw timestamp on pixel format "
<< (format_name ? format_name : "unknown");
return false;
}
if (!encoder->frame->data[0]
|| encoder->frame->linesize[0] < encoder->frame->width) {
CMVR_LOG(ERROR) << "[CameraStreamEncoder] invalid luma plane for timestamp";
return false;
}
cv::Mat luma_plane(
encoder->frame->height,
encoder->frame->width,
CV_8UC1,
encoder->frame->data[0],
static_cast<size_t>(encoder->frame->linesize[0]));
drawTimeStamp(luma_plane);
}
return encodePreparedFrame(*encoder, encoded_frame, is_key);
} }
} // namespace cmvr::device } // namespace cmvr::device

View File

@ -314,8 +314,20 @@ bool RealsenseCamera::stop() {
CMVR_LOG(WARNING) << "[RealsenseCamera] (stop): stopRecording failed: " << e.what(); CMVR_LOG(WARNING) << "[RealsenseCamera] (stop): stopRecording failed: " << e.what();
} }
} }
std::shared_ptr<std::thread> stream_thread_to_join;
{
std::lock_guard lock(ctrl_mtx_);
clear_error_();
stream_count_ = 0;
state_.is_streaming = false;
state_.is_recording = false;
stream_thread_to_join = stream_thread_;
stream_thread_.reset();
}
if (stream_thread_to_join && stream_thread_to_join->joinable()) {
stream_thread_to_join->join();
}
std::lock_guard lock(ctrl_mtx_); std::lock_guard lock(ctrl_mtx_);
clear_error_();
if (!state_.is_opened || !state_.is_initialized) { if (!state_.is_opened || !state_.is_initialized) {
state_.is_opened = false; state_.is_opened = false;
return true; return true;
@ -524,9 +536,12 @@ void RealsenseCamera::startRecording(const std::string &video_path) {
// 1. 确定编码格式对应的AVCodecID(H.264/H.265) // 1. 确定编码格式对应的AVCodecID(H.264/H.265)
AVCodecID codec_id; AVCodecID codec_id;
if (codec_ == "H264" || codec_ == "h264") { if (codec_ == "H264" || codec_ == "h264" ||
codec_ == "H264_QSV" || codec_ == "h264_qsv") {
codec_id = AV_CODEC_ID_H264; codec_id = AV_CODEC_ID_H264;
} else if (codec_ == "H265" || codec_ == "hevc") { } else if (codec_ == "H265" || codec_ == "h265" || codec_ == "HEVC" || codec_ == "hevc" ||
codec_ == "H265_QSV" || codec_ == "h265_qsv" ||
codec_ == "HEVC_QSV" || codec_ == "hevc_qsv") {
codec_id = AV_CODEC_ID_HEVC; codec_id = AV_CODEC_ID_HEVC;
} else { } else {
state_.is_error = true; state_.is_error = true;
@ -534,7 +549,8 @@ void RealsenseCamera::startRecording(const std::string &video_path) {
CMVR_LOG(ERROR) << "[RealsenseCamera] (startRecording): " << state_.error_message; CMVR_LOG(ERROR) << "[RealsenseCamera] (startRecording): " << state_.error_message;
return; return;
} }
const char* format_name = (codec_ == "H265" || codec_ == "h265" || codec_ == "HEVC" || codec_ == "hevc") ? "mp4" : "avi"; const bool is_hevc = codec_id == AV_CODEC_ID_HEVC;
const char* format_name = is_hevc ? "mp4" : "avi";
auto ret = avformat_alloc_output_context2(&format_context_, nullptr, format_name, output_path_.c_str()); auto ret = avformat_alloc_output_context2(&format_context_, nullptr, format_name, output_path_.c_str());
// 2. 创建输出格式上下文(封装器核心) // 2. 创建输出格式上下文(封装器核心)
if (ret < 0) { if (ret < 0) {
@ -719,11 +735,15 @@ void RealsenseCamera::streaming_worker_() {
bool success = false; bool success = false;
is_streaming_running = true; is_streaming_running = true;
uint64_t frame_sequence = 0;
const uint64_t stream_epoch = static_cast<uint64_t>(
std::chrono::duration_cast<std::chrono::nanoseconds>(
std::chrono::steady_clock::now().time_since_epoch()).count());
// 处于流传输或者录像状态时就不退出线程 // 处于流传输或者录像状态时就不退出线程
while (state_.is_streaming || state_.is_recording) { while (state_.is_streaming || state_.is_recording) {
// 记录当前帧处理开始时间 // 记录当前帧处理开始时间
auto frame_start_time = std::chrono::high_resolution_clock::now(); const auto frame_start_time = std::chrono::steady_clock::now();
rs2::frameset frames; rs2::frameset frames;
frames = get_frameset(true); frames = get_frameset(true);
@ -786,6 +806,20 @@ void RealsenseCamera::streaming_worker_() {
// 深度图编码 // 深度图编码
// success = encodeFrameWithEncoder(depthEncoder_, frame_data.depthImage, frame_data.depthFrame, frame_data.depthKey); // success = encodeFrameWithEncoder(depthEncoder_, frame_data.depthImage, frame_data.depthFrame, frame_data.depthKey);
if (success) { if (success) {
const uint64_t sequence = frame_sequence++;
frame_data.stream_epoch = stream_epoch;
frame_data.sequence = sequence;
frame_data.source_timestamp = static_cast<uint64_t>(color_frame.get_timestamp());
frame_data.source_frame_number = color_frame.get_frame_number();
frame_data.capture_monotonic_ns = std::chrono::duration_cast<std::chrono::nanoseconds>(
frame_start_time.time_since_epoch()).count();
frame_data.capture_utc_ns = std::chrono::duration_cast<std::chrono::nanoseconds>(
std::chrono::system_clock::now().time_since_epoch()).count();
frame_data.pts = static_cast<int64_t>(sequence);
frame_data.dts = frame_data.pts;
frame_data.time_base_num = 1;
frame_data.time_base_den = fps_;
frame_data.duration = 1;
frame_data.fps = fps_; frame_data.fps = fps_;
frame_data.width = encode_width_; frame_data.width = encode_width_;
frame_data.height = encode_height_; frame_data.height = encode_height_;
@ -794,7 +828,7 @@ void RealsenseCamera::streaming_worker_() {
} }
// 计算从帧开始到现在的总耗时 // 计算从帧开始到现在的总耗时
auto total_duration = std::chrono::duration_cast<std::chrono::milliseconds>( auto total_duration = std::chrono::duration_cast<std::chrono::milliseconds>(
std::chrono::high_resolution_clock::now() - frame_start_time std::chrono::steady_clock::now() - frame_start_time
).count(); ).count();
// 计算需要休眠的时间(确保总耗时达到frame_interval) // 计算需要休眠的时间(确保总耗时达到frame_interval)
@ -961,12 +995,24 @@ bool RealsenseCamera::startStreaming()
void RealsenseCamera::stopStreaming() void RealsenseCamera::stopStreaming()
{ {
std::lock_guard lock(ctrl_mtx_); std::shared_ptr<std::thread> stream_thread_to_join;
stream_count_--;
if (stream_count_ == 0)
{ {
std::lock_guard lock(ctrl_mtx_);
if (stream_count_ > 0) {
stream_count_--;
}
if (stream_count_ == 0)
{
// 当前已经没有正在使用的流了,编码采集线程状态修改 // 当前已经没有正在使用的流了,编码采集线程状态修改
state_.is_streaming = false; state_.is_streaming = false;
if (!state_.is_recording) {
stream_thread_to_join = stream_thread_;
stream_thread_.reset();
}
}
}
if (stream_thread_to_join && stream_thread_to_join->joinable()) {
stream_thread_to_join->join();
} }
} }

View File

@ -2,7 +2,18 @@ add_library(uvc_camera SHARED src/uvc_camera.cpp)
target_include_directories(uvc_camera PUBLIC ${CMAKE_CURRENT_SOURCE_DIR}) target_include_directories(uvc_camera PUBLIC ${CMAKE_CURRENT_SOURCE_DIR})
target_link_libraries(uvc_camera PUBLIC glog opencv_core opencv_imgproc cmvr_es::proto cmvr_es::device::camera_stream_encoder) target_link_libraries(uvc_camera PUBLIC
glog
opencv_core
opencv_imgproc
avcodec
avdevice
avformat
avutil
swscale
cmvr_es::proto
cmvr_es::device::camera_stream_encoder
)
add_library(cmvr_es::device::uvc_camera ALIAS uvc_camera) add_library(cmvr_es::device::uvc_camera ALIAS uvc_camera)
install(TARGETS uvc_camera LIBRARY DESTINATION lib) install(TARGETS uvc_camera LIBRARY DESTINATION lib)

View File

@ -5,6 +5,9 @@
#ifndef CMVR_ES_UVC_CAMERA_H #ifndef CMVR_ES_UVC_CAMERA_H
#define CMVR_ES_UVC_CAMERA_H #define CMVR_ES_UVC_CAMERA_H
#include <atomic>
#include <condition_variable>
#include "common/base/ring_buffer.h" #include "common/base/ring_buffer.h"
#include "camera/abstract_camera.h" #include "camera/abstract_camera.h"
#include "devices/camera/common/include/camera_stream_encoder.h" #include "devices/camera/common/include/camera_stream_encoder.h"
@ -45,6 +48,16 @@ namespace cmvr::device {
private: private:
void streaming_worker_(); void streaming_worker_();
void recording_worker_(); void recording_worker_();
void cleanup_recording_resources_();
bool open_capture_();
void close_capture_();
void capture_worker_();
bool wait_for_capture_frame_(AVFrame* frame,
uint64_t& last_sequence,
int64_t& capture_monotonic_ns,
int64_t& capture_utc_ns);
bool convert_capture_frame_to_bgr_(const AVFrame* frame, cv::Mat& bgr_frame);
static int interrupt_capture_(void* opaque);
int fps_; int fps_;
int width_; int width_;
@ -52,7 +65,6 @@ namespace cmvr::device {
int encode_width_; int encode_width_;
int encode_height_; int encode_height_;
std::string serial_; std::string serial_;
cv::VideoCapture cap_;
size_t buffer_size_; size_t buffer_size_;
std::string codec_; std::string codec_;
bool enable_stream_timestamp_{false}; bool enable_stream_timestamp_{false};
@ -63,13 +75,24 @@ namespace cmvr::device {
std::string current_video_path_; std::string current_video_path_;
std::mutex ctrl_mtx_{}; std::mutex ctrl_mtx_{};
std::unique_ptr<cv::VideoWriter> video_writer_;
std::shared_ptr<std::thread> stream_thread_; std::shared_ptr<std::thread> stream_thread_;
std::shared_ptr<std::thread> recording_thread_; std::shared_ptr<std::thread> recording_thread_;
std::shared_ptr<std::thread> capture_thread_;
AVFormatContext* capture_format_context_ = nullptr;
cv::Mat latest_frame_; // 存储最新帧 AVCodecContext* capture_decoder_context_ = nullptr;
std::mutex frame_mutex_; // 保护最新帧的访问 AVBufferRef* capture_hw_device_context_ = nullptr;
SwsContext* capture_sws_context_ = nullptr;
int capture_video_stream_index_ = -1;
std::atomic<bool> capture_running_{false};
std::mutex capture_frame_mutex_;
std::mutex capture_conversion_mutex_;
std::condition_variable capture_frame_cv_;
AVFrame* latest_capture_frame_ = nullptr;
uint64_t latest_capture_sequence_ = 0;
int64_t latest_capture_monotonic_ns_ = 0;
int64_t latest_capture_utc_ns_ = 0;
std::string capture_error_;
std::string output_path_; std::string output_path_;
bool is_recording_ = false; bool is_recording_ = false;

File diff suppressed because it is too large Load Diff

View File

@ -452,8 +452,8 @@ bool ffmpegMicroPhone::initFFmpeg()
avdevice_register_all(); avdevice_register_all();
logSupportedAudioInputFormats(); logSupportedAudioInputFormats();
const char* input_format_name = "pulse"; const char* input_format_name = "alsa";
AVInputFormat* input_fmt = av_find_input_format(input_format_name); const AVInputFormat* input_fmt = av_find_input_format(input_format_name);
if (!input_fmt) { if (!input_fmt) {
input_format_name = "alsa"; input_format_name = "alsa";
input_fmt = av_find_input_format(input_format_name); input_fmt = av_find_input_format(input_format_name);

View File

@ -7,10 +7,12 @@
#pragma once #pragma once
#include <cstdint>
#include <mutex>
#include "devices/abstract_device.h" #include "devices/abstract_device.h"
#include "common/base/logging/logger.h" #include "common/base/logging/logger.h"
#include "motor/motor_protocol_interface.h" #include "motor/motor_protocol_interface.h"
#include <mutex>
namespace cmvr::device{ namespace cmvr::device{
@ -212,6 +214,11 @@ namespace cmvr::device{
return protocol_->getQd(node_id_); return protocol_->getQd(node_id_);
} }
// Returns the actual motor current in mA when supported by the driver.
virtual std::int16_t getCurrent() {
return 0;
}
// 使用的通讯协议 // 使用的通讯协议
virtual void setProtocol(std::shared_ptr<MotorProtocolInterface> protocol) { virtual void setProtocol(std::shared_ptr<MotorProtocolInterface> protocol) {

View File

@ -121,6 +121,12 @@ public:
return true; return true;
} }
bool readSdoString(int motor_id,
std::uint16_t index,
std::uint8_t subindex,
std::string& value,
std::size_t max_size = 128);
private: private:
struct PdoEntryRuntime { struct PdoEntryRuntime {
EthercatPdoEntryConfig cfg; EthercatPdoEntryConfig cfg;

View File

@ -1025,6 +1025,68 @@ bool EthercatMotorBusRuntime::readSdoRaw_(const int motor_id,
return true; return true;
} }
bool EthercatMotorBusRuntime::readSdoString(const int motor_id,
const std::uint16_t index,
const std::uint8_t subindex,
std::string& value,
const std::size_t max_size)
{
value.clear();
if (max_size == 0) {
CMVR_LOG(ERROR) << "[EthercatMotorBusRuntime] invalid SDO string buffer size: "
<< max_size << ", object=" << hexIndex_(index)
<< ":" << static_cast<int>(subindex)
<< ", motor_id=" << motor_id;
return false;
}
const auto slave_it = slaves_by_motor_id_.find(motor_id);
if (slave_it == slaves_by_motor_id_.end()) {
CMVR_LOG(ERROR) << "[EthercatMotorBusRuntime] missing motor for SDO string read: "
<< motor_id << ", object=" << hexIndex_(index)
<< ":" << static_cast<int>(subindex);
return false;
}
if (!master_) {
CMVR_LOG(ERROR) << "[EthercatMotorBusRuntime] runtime is not initialized for SDO string read: "
<< id_ << ", motor_id=" << motor_id
<< ", object=" << hexIndex_(index)
<< ":" << static_cast<int>(subindex);
return false;
}
std::vector<std::uint8_t> data(max_size);
std::size_t result_size = 0;
std::uint32_t abort_code = 0;
const auto& slave = slave_it->second;
const int result = ecrt_master_sdo_upload(
master_,
static_cast<std::uint16_t>(slave.cfg.position()),
index,
subindex,
data.data(),
data.size(),
&result_size,
&abort_code);
if (result != 0 || result_size > data.size()) {
CMVR_LOG(ERROR) << "[EthercatMotorBusRuntime] failed to read SDO string: "
<< "group=" << id_ << ", motor_id=" << motor_id
<< ", slave_position=" << slave.cfg.position()
<< ", object=" << hexIndex_(index)
<< ":" << static_cast<int>(subindex)
<< ", max_size=" << max_size
<< ", result=" << result
<< ", result_size=" << result_size
<< ", abort_code=" << hexIndex_(abort_code);
return false;
}
const auto string_end = std::find(data.begin(), data.begin() + result_size, 0);
value.assign(reinterpret_cast<const char*>(data.data()),
static_cast<std::size_t>(string_end - data.begin()));
return true;
}
std::uint32_t EthercatMotorBusRuntime::pdoEntryKey_(const std::uint16_t index, std::uint32_t EthercatMotorBusRuntime::pdoEntryKey_(const std::uint16_t index,
const std::uint8_t subindex) const std::uint8_t subindex)
{ {

View File

@ -66,6 +66,7 @@ TEST(EthercatMotorBusRuntimeRealTest, InitStartAndReadStatusword)
EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_STATUS_WORD_6041, 0x00)); EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_STATUS_WORD_6041, 0x00));
EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_OPERATION_MODE_6060, 0x00)); EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_OPERATION_MODE_6060, 0x00));
EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_MODE_DISPLAY_6061, 0x00)); EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_MODE_DISPLAY_6061, 0x00));
EXPECT_TRUE(runtime.hasPdoEntry(1, msgs::CIA402_ACTUAL_CURRENT_6078, 0x00));
const bool started = runtime.start(); const bool started = runtime.start();
EXPECT_TRUE(started); EXPECT_TRUE(started);
@ -111,8 +112,13 @@ TEST(EthercatMotorBusRuntimeRealTest, InitStartAndReadStatusword)
const auto mode_display = const auto mode_display =
EthercatMotorBusRuntime::pdoReadValue<std::int8_t>(feedback_reads[1]); EthercatMotorBusRuntime::pdoReadValue<std::int8_t>(feedback_reads[1]);
std::int16_t actual_current = 0;
EXPECT_TRUE(runtime.readPdo<std::int16_t>(
1, msgs::CIA402_ACTUAL_CURRENT_6078, 0x00, actual_current));
std::cout << "CIA402 statusword: 0x" << std::hex << statusword std::cout << "CIA402 statusword: 0x" << std::hex << statusword
<< ", mode display: " << std::dec << static_cast<int>(mode_display) << ", mode display: " << std::dec << static_cast<int>(mode_display)
<< ", actual current raw: " << actual_current
<< std::endl; << std::endl;
const int hold_ms = 10000; const int hold_ms = 10000;

View File

@ -62,6 +62,7 @@ inline EthercatPdoMapping createEyouCia402PdoMapping()
entry(msgs::CIA402_ACTUAL_POSITION_6064, 0x00, 32, "Actual Position"), entry(msgs::CIA402_ACTUAL_POSITION_6064, 0x00, 32, "Actual Position"),
entry(msgs::CIA402_ACTUAL_VELOCITY_606C, 0x00, 32, "Actual Velocity"), entry(msgs::CIA402_ACTUAL_VELOCITY_606C, 0x00, 32, "Actual Velocity"),
entry(msgs::CIA402_ACTUAL_TORQUE_6077, 0x00, 16, "Actual Torque"), entry(msgs::CIA402_ACTUAL_TORQUE_6077, 0x00, 16, "Actual Torque"),
entry(msgs::CIA402_ACTUAL_CURRENT_6078, 0x00, 16, "Actual Current"),
entry(msgs::CIA402_MODE_DISPLAY_6061, 0x00, 8, "Mode Of Operation Display"), entry(msgs::CIA402_MODE_DISPLAY_6061, 0x00, 8, "Mode Of Operation Display"),
entry(msgs::CIA402_ERROR_CODE_603F, 0x00, 16, "Error Code"), entry(msgs::CIA402_ERROR_CODE_603F, 0x00, 16, "Error Code"),
entry(0x0000, 0x00, 8, "Padding"), entry(0x0000, 0x00, 8, "Padding"),

View File

@ -24,6 +24,7 @@ public:
void setLimitQd(double qd) override; void setLimitQd(double qd) override;
bool calibrateZeroQ() override; bool calibrateZeroQ() override;
bool brakeRelease() override; bool brakeRelease() override;
std::int16_t getCurrent() override;
static bool commandCyclicPositionsAtomic( static bool commandCyclicPositionsAtomic(
const std::vector<std::shared_ptr<AbstractMotor>>& motors, const std::vector<std::shared_ptr<AbstractMotor>>& motors,
@ -39,6 +40,7 @@ private:
bool hasValidConversion_() const; bool hasValidConversion_() const;
bool writeVendorPositionLimits_() const; bool writeVendorPositionLimits_() const;
bool writeVendorVelocityLimit_() const; bool writeVendorVelocityLimit_() const;
void configureCurrentConversion_();
std::int32_t radToCounts_(double angle_rad) const; std::int32_t radToCounts_(double angle_rad) const;
std::uint32_t radPerSecToCounts_(double velocity_rad_s) const; std::uint32_t radPerSecToCounts_(double velocity_rad_s) const;
@ -46,6 +48,7 @@ private:
std::unique_ptr<EyouMotorAdapter> vendor_adapter_; std::unique_ptr<EyouMotorAdapter> vendor_adapter_;
double encoder_counts_per_rev_{0.0}; double encoder_counts_per_rev_{0.0};
double gear_ratio_{0.0}; double gear_ratio_{0.0};
double current_scale_ma_per_count_{1.0};
}; };
} // namespace cmvr::device } // namespace cmvr::device

View File

@ -3,6 +3,7 @@
#include <cstdint> #include <cstdint>
#include <memory> #include <memory>
#include <string>
#include "devices/motor/bus_runtime/ethercat/include/ethercat_motor_bus_runtime.h" #include "devices/motor/bus_runtime/ethercat/include/ethercat_motor_bus_runtime.h"
#include "devices/motor/drivers/ethercat_motor/include/vendor/motor_vendor_adapter.h" #include "devices/motor/drivers/ethercat_motor/include/vendor/motor_vendor_adapter.h"
@ -24,6 +25,11 @@ public:
std::int64_t counts_per_joint_revolution, std::int64_t counts_per_joint_revolution,
std::int32_t& zeroed_position) override; std::int32_t& zeroed_position) override;
bool brakeRelease(std::uint8_t node_id) override; bool brakeRelease(std::uint8_t node_id) override;
bool readActualCurrent(std::uint8_t node_id,
std::int16_t& current_value) const;
bool readMotorIdentity(std::uint8_t node_id,
std::string& motor_model,
std::string& motor_version) const;
private: private:
std::shared_ptr<EthercatMotorBusRuntime> bus_runtime_; std::shared_ptr<EthercatMotorBusRuntime> bus_runtime_;

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@ -5,6 +5,9 @@
namespace cmvr::device::eyou { namespace cmvr::device::eyou {
inline constexpr std::uint16_t EYOU_DEVICE_NAME_1008 = 0x1008;
inline constexpr std::uint16_t EYOU_SOFTWARE_VERSION_100A = 0x100A;
inline constexpr std::uint16_t EYOU_SOFT_LIMIT_STATE_2003 = 0x2003; inline constexpr std::uint16_t EYOU_SOFT_LIMIT_STATE_2003 = 0x2003;
inline constexpr std::uint16_t EYOU_BRAKE_CONTROL_2014 = 0x2014; inline constexpr std::uint16_t EYOU_BRAKE_CONTROL_2014 = 0x2014;

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@ -153,8 +153,11 @@ void Cia402StatusMonitor::reportStatuswordTransition_(
const StatusSample& previous, const StatusSample& previous,
const StatusSample& current) const const StatusSample& current) const
{ {
const bool status_changed = const bool device_state_changed =
!had_previous || !previous.read_ok || !had_previous || !previous.read_ok ||
(previous.statusword & 0x006F) != (current.statusword & 0x006F);
const bool status_changed =
device_state_changed ||
previous.status_problem != current.status_problem || previous.status_problem != current.status_problem ||
(previous.statusword & 0x0888) != (current.statusword & 0x0888); (previous.statusword & 0x0888) != (current.statusword & 0x0888);
if (current.status_problem && status_changed) { if (current.status_problem && status_changed) {
@ -178,9 +181,20 @@ void Cia402StatusMonitor::reportStatuswordTransition_(
previous.status_problem) { previous.status_problem) {
CMVR_LOG(INFO) << "[Cia402StatusMonitor] [statusword] recovered" CMVR_LOG(INFO) << "[Cia402StatusMonitor] [statusword] recovered"
<< ", node=" << static_cast<int>(node_id) << ", node=" << static_cast<int>(node_id)
<< ", current_statusword=0x" << std::hex << std::uppercase
<< std::setw(4) << std::setfill('0') << current.statusword
<< std::dec << std::nouppercase << std::setfill(' ')
<< ' ' << deviceStateName_(current.statusword)
<< ", previous_statusword=0x" << std::hex << std::uppercase << ", previous_statusword=0x" << std::hex << std::uppercase
<< std::setw(4) << std::setfill('0') << previous.statusword << std::setw(4) << std::setfill('0') << previous.statusword
<< std::dec << std::nouppercase << std::setfill(' '); << std::dec << std::nouppercase << std::setfill(' ');
} else if (device_state_changed) {
CMVR_LOG(INFO) << "[Cia402StatusMonitor] [statusword] 0x"
<< std::hex << std::uppercase << std::setw(4)
<< std::setfill('0') << current.statusword
<< std::dec << std::nouppercase << std::setfill(' ')
<< ' ' << deviceStateName_(current.statusword)
<< ", node=" << static_cast<int>(node_id);
} }
} }

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@ -6,12 +6,31 @@
#include <cstdint> #include <cstdint>
#include <functional> #include <functional>
#include <mutex> #include <mutex>
#include <limits>
#include <map>
#include <string>
#include <utility> #include <utility>
#include "common/base/logging/logger.h" #include "common/base/logging/logger.h"
namespace cmvr::device { namespace cmvr::device {
namespace {
struct MotorCurrentInfo {
double adc_amperes_per_count;
double rated_current_amperes;
};
const std::map<std::string, MotorCurrentInfo> kMotorCurrentMap = {
{"EuPH11", {0.005371094, 3.8}},
{"EuPH14", {0.007672991, 3.9}},
{"EuPH17", {0.007672991, 3.9}},
{"EuPH20", {0.013427734, 6.9}},
};
} // namespace
EyouMotor::EyouMotor(const config::MotorConfigItem& config, EyouMotor::EyouMotor(const config::MotorConfigItem& config,
std::shared_ptr<Cia402Protocol> cia402_protocol, std::shared_ptr<Cia402Protocol> cia402_protocol,
std::unique_ptr<EyouMotorAdapter> vendor_adapter) std::unique_ptr<EyouMotorAdapter> vendor_adapter)
@ -46,6 +65,7 @@ bool EyouMotor::init()
CMVR_LOG(ERROR) << "[EyouMotor] failed to init vendor adapter: " << info_.joint_name; CMVR_LOG(ERROR) << "[EyouMotor] failed to init vendor adapter: " << info_.joint_name;
return false; return false;
} }
configureCurrentConversion_();
cia402_protocol_->setMotorConversion(node_id_, encoder_counts_per_rev_, gear_ratio_); cia402_protocol_->setMotorConversion(node_id_, encoder_counts_per_rev_, gear_ratio_);
cia402_protocol_->setLimitQd(node_id_, info_.limit_qd); cia402_protocol_->setLimitQd(node_id_, info_.limit_qd);
@ -212,6 +232,29 @@ bool EyouMotor::brakeRelease()
return vendor_adapter_->brakeRelease(node_id_); return vendor_adapter_->brakeRelease(node_id_);
} }
std::int16_t EyouMotor::getCurrent()
{
std::scoped_lock lock(mtx_);
if (!hasDependencies_()) {
return 0;
}
std::int16_t raw_current = 0;
if (!vendor_adapter_->readActualCurrent(node_id_, raw_current)) {
CMVR_LOG(ERROR) << "[EyouMotor] failed to read actual current: "
<< info_.joint_name;
return 0;
}
const double current_ma = static_cast<double>(raw_current) *
current_scale_ma_per_count_;
const double clamped_current_ma = std::clamp(
current_ma,
static_cast<double>(std::numeric_limits<std::int16_t>::min()),
static_cast<double>(std::numeric_limits<std::int16_t>::max()));
return static_cast<std::int16_t>(clamped_current_ma);
}
bool EyouMotor::hasDependencies_() const bool EyouMotor::hasDependencies_() const
{ {
if (!cia402_protocol_ || !vendor_adapter_) { if (!cia402_protocol_ || !vendor_adapter_) {
@ -260,6 +303,37 @@ bool EyouMotor::writeVendorVelocityLimit_() const
return vendor_adapter_->writeVelocityLimit(node_id_, radPerSecToCounts_(info_.limit_qd)); return vendor_adapter_->writeVelocityLimit(node_id_, radPerSecToCounts_(info_.limit_qd));
} }
void EyouMotor::configureCurrentConversion_()
{
std::string motor_model;
std::string motor_version;
if (!vendor_adapter_->readMotorIdentity(node_id_, motor_model, motor_version)) {
CMVR_LOG(WARNING) << "[EyouMotor] failed to read motor identity; actual current "
<< "will use the raw PDO value: " << info_.joint_name;
return;
}
std::string model_prefix = motor_model;
const auto dash_pos = motor_model.find('-');
if (dash_pos != std::string::npos) {
model_prefix = motor_model.substr(0, dash_pos);
} else if (motor_model.rfind("EuPH", 0) == 0 && motor_model.size() >= 6) {
model_prefix = motor_model.substr(0, 6);
}
const auto current_info = kMotorCurrentMap.find(model_prefix);
if (current_info == kMotorCurrentMap.end()) {
CMVR_LOG(WARNING) << "[EyouMotor] unsupported motor model for current conversion: "
<< motor_model << ", actual current will use the raw PDO value";
return;
}
const bool is_v145 = motor_version.find("V145") != std::string::npos;
current_scale_ma_per_count_ = is_v145
? current_info->second.rated_current_amperes
: current_info->second.adc_amperes_per_count * 1000.0;
}
std::int32_t EyouMotor::radToCounts_(const double angle_rad) const std::int32_t EyouMotor::radToCounts_(const double angle_rad) const
{ {
const double rev = angle_rad / (2.0 * M_PI); const double rev = angle_rad / (2.0 * M_PI);

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@ -373,4 +373,25 @@ bool EyouMotorAdapter::brakeRelease(const std::uint8_t node_id)
return false; return false;
} }
bool EyouMotorAdapter::readActualCurrent(const std::uint8_t node_id,
std::int16_t& current_value) const
{
return bus_runtime_ &&
bus_runtime_->readPdo<std::int16_t>(
node_id, msgs::CIA402_ACTUAL_CURRENT_6078, 0x00, current_value);
}
bool EyouMotorAdapter::readMotorIdentity(const std::uint8_t node_id,
std::string& motor_model,
std::string& motor_version) const
{
if (!bus_runtime_) {
return false;
}
return bus_runtime_->readSdoString(
node_id, eyou::EYOU_DEVICE_NAME_1008, 0x00, motor_model) &&
bus_runtime_->readSdoString(
node_id, eyou::EYOU_SOFTWARE_VERSION_100A, 0x00, motor_version);
}
} // namespace cmvr::device } // namespace cmvr::device

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@ -145,6 +145,7 @@ void printMotorState(const char* label, AbstractMotor& motor)
std::cout << label std::cout << label
<< ": motor_q=" << motor.getQ() << " rad" << ": motor_q=" << motor.getQ() << " rad"
<< ", motor_qd=" << motor.getQd() << " rad/s" << ", motor_qd=" << motor.getQd() << " rad/s"
<< ", motor_current=" << motor.getCurrent() << " mA"
<< std::endl; << std::endl;
} }

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@ -304,7 +304,7 @@ void ffmpegSpeaker::decode_audio_() {
return; return;
} }
AVCodec* decoder = nullptr; const AVCodec* decoder = nullptr;
const int stream_index = av_find_best_stream(fmt_ctx.get(), AVMEDIA_TYPE_AUDIO, -1, -1, &decoder, 0); const int stream_index = av_find_best_stream(fmt_ctx.get(), AVMEDIA_TYPE_AUDIO, -1, -1, &decoder, 0);
if (stream_index < 0) { if (stream_index < 0) {
{ {

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@ -4,6 +4,7 @@
#include "common/base/logging/logger.h" #include "common/base/logging/logger.h"
#include "runtime/include/cmvr_runtime.h" #include "runtime/include/cmvr_runtime.h"
namespace { namespace {
bool blockShutdownSignals(sigset_t& shutdown_signals) bool blockShutdownSignals(sigset_t& shutdown_signals)
@ -16,8 +17,57 @@ bool blockShutdownSignals(sigset_t& shutdown_signals)
} // namespace } // namespace
namespace fs = std::filesystem;
static bool setupIntelMediaEnvironment()
{
char exe_path_buffer[PATH_MAX] = {};
const ssize_t length = readlink(
"/proc/self/exe",
exe_path_buffer,
sizeof(exe_path_buffer) - 1);
if (length <= 0) {
std::cerr << "Failed to resolve /proc/self/exe\n";
return false;
}
exe_path_buffer[length] = '\0';
const fs::path executable_path(exe_path_buffer);
const fs::path bin_directory = executable_path.parent_path();
const fs::path install_directory = bin_directory.parent_path();
const fs::path library_directory = install_directory / "lib";
const fs::path va_driver_directory = library_directory / "dri";
const fs::path ihd_driver = va_driver_directory / "iHD_drv_video.so";
if (!fs::exists(ihd_driver)) {
std::cerr << "Intel media driver not found: "
<< ihd_driver << '\n';
return false;
}
// overwrite=1:强制 cmvr-es 使用随项目发布的媒体运行时。
setenv("LIBVA_DRIVER_NAME", "iHD", 1);
setenv(
"LIBVA_DRIVERS_PATH",
va_driver_directory.c_str(),
1);
setenv(
"ONEVPL_SEARCH_PATH",
library_directory.c_str(),
1);
return true;
}
int main() int main()
{ {
if (!setupIntelMediaEnvironment()) {
return EXIT_FAILURE;
}
sigset_t shutdown_signals; sigset_t shutdown_signals;
if (!blockShutdownSignals(shutdown_signals)) { if (!blockShutdownSignals(shutdown_signals)) {
return 1; return 1;

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@ -123,6 +123,10 @@ private:
std::shared_ptr<Impl> impl_; std::shared_ptr<Impl> impl_;
}; };
// Compatibility alias for older protocol tests and integrations. New code should
// use MediaSourceHub directly.
using MediaSourceManager = MediaSourceHub;
} // namespace cmvr::media } // namespace cmvr::media
#endif // CMVR_ES_MANAGER_MEDIA_SOURCE_HUB_H #endif // CMVR_ES_MANAGER_MEDIA_SOURCE_HUB_H

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@ -32,10 +32,12 @@ std::string normalizedCodec(std::string codec) {
Codec videoCodec(const std::string& value) { Codec videoCodec(const std::string& value) {
const std::string codec = normalizedCodec(value); const std::string codec = normalizedCodec(value);
if (codec == "h264" || codec == "avc" || codec == "avc1" || codec == "libx264") { if (codec == "h264" || codec == "avc" || codec == "avc1" ||
codec == "libx264" || codec == "h264qsv") {
return Codec::H264; return Codec::H264;
} }
if (codec == "h265" || codec == "hevc" || codec == "hvc1" || codec == "libx265") { if (codec == "h265" || codec == "hevc" || codec == "hvc1" ||
codec == "libx265" || codec == "h265qsv" || codec == "hevcqsv") {
return Codec::H265; return Codec::H265;
} }
return Codec::UNKNOWN; return Codec::UNKNOWN;

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@ -38,6 +38,9 @@ public:
grpc::Status getJointState(grpc::ServerContext* context, grpc::Status getJointState(grpc::ServerContext* context,
const api::JointRequest* request, const api::JointRequest* request,
api::JointResponse* response) override; api::JointResponse* response) override;
grpc::Status getRobotState(grpc::ServerContext* context,
const api::GetRobotState_Request* request,
api::GetRobotState_Response* response) override;
grpc::Status getPose(grpc::ServerContext* context, grpc::Status getPose(grpc::ServerContext* context,
const api::GetPose_Request* request, const api::GetPose_Request* request,
api::GetPose_Response* response) override; api::GetPose_Response* response) override;

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@ -82,3 +82,28 @@ TEST(GrpcArmClientTest, GetJointState)
CMVR_LOG(ERROR) << "RPC failed: " << status.error_message(); CMVR_LOG(ERROR) << "RPC failed: " << status.error_message();
} }
} }
TEST(GrpcArmClientTest, GetRobotState)
{
auto stub = makeStub();
cmvr::api::GetRobotState_Request request;
fillHeader(request.mutable_header());
cmvr::api::GetRobotState_Response response;
grpc::ClientContext context;
const grpc::Status status = stub->getRobotState(&context, request, &response);
if (status.ok()) {
const auto& state = response.state();
CMVR_LOG(INFO) << "Robot state: connected=" << state.connected()
<< ", powered_on=" << state.powered_on()
<< ", moving=" << state.moving()
<< ", fault=" << state.fault()
<< ", robot_mode=" << state.robot_mode()
<< ", safety_mode=" << state.safety_mode()
<< ", control_mode=" << state.control_mode()
<< ", joints=" << state.actual_joint_state().name_size();
} else {
CMVR_LOG(ERROR) << "RPC failed: " << status.error_message();
}
}

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@ -92,6 +92,131 @@ api::CartesianPose toApiCartesianPose(const device::CartesianPose& src)
return dst; return dst;
} }
api::CartesianVelocity toApiCartesianVelocity(const device::CartesianVelocity& src)
{
api::CartesianVelocity dst;
dst.set_vx(src.vx);
dst.set_vy(src.vy);
dst.set_vz(src.vz);
dst.set_wx(src.wx);
dst.set_wy(src.wy);
dst.set_wz(src.wz);
return dst;
}
api::CartesianWrench toApiCartesianWrench(const device::CartesianWrench& src)
{
api::CartesianWrench dst;
dst.set_fx(src.fx);
dst.set_fy(src.fy);
dst.set_fz(src.fz);
dst.set_tx(src.tx);
dst.set_ty(src.ty);
dst.set_tz(src.tz);
return dst;
}
api::ArmRobotMode toApiRobotMode(const device::RobotMode mode)
{
switch (mode) {
case device::RobotMode::Disconnected:
return api::ARM_ROBOT_MODE_DISCONNECTED;
case device::RobotMode::PowerOff:
return api::ARM_ROBOT_MODE_POWER_OFF;
case device::RobotMode::Idle:
return api::ARM_ROBOT_MODE_IDLE;
case device::RobotMode::Running:
return api::ARM_ROBOT_MODE_RUNNING;
case device::RobotMode::Paused:
return api::ARM_ROBOT_MODE_PAUSED;
case device::RobotMode::Stopped:
return api::ARM_ROBOT_MODE_STOPPED;
case device::RobotMode::Fault:
return api::ARM_ROBOT_MODE_FAULT;
case device::RobotMode::Unknown:
default:
return api::ARM_ROBOT_MODE_UNKNOWN;
}
}
api::ArmSafetyMode toApiSafetyMode(const device::SafetyMode mode)
{
switch (mode) {
case device::SafetyMode::Normal:
return api::ARM_SAFETY_MODE_NORMAL;
case device::SafetyMode::Reduced:
return api::ARM_SAFETY_MODE_REDUCED;
case device::SafetyMode::ProtectiveStop:
return api::ARM_SAFETY_MODE_PROTECTIVE_STOP;
case device::SafetyMode::EmergencyStop:
return api::ARM_SAFETY_MODE_EMERGENCY_STOP;
case device::SafetyMode::SafeguardStop:
return api::ARM_SAFETY_MODE_SAFEGUARD_STOP;
case device::SafetyMode::SystemEmergencyStop:
return api::ARM_SAFETY_MODE_SYSTEM_EMERGENCY_STOP;
case device::SafetyMode::Fault:
return api::ARM_SAFETY_MODE_FAULT;
case device::SafetyMode::Unknown:
default:
return api::ARM_SAFETY_MODE_UNKNOWN;
}
}
api::ArmControlMode toApiControlMode(const device::ControlMode mode)
{
switch (mode) {
case device::ControlMode::Manual:
return api::ARM_CONTROL_MODE_MANUAL;
case device::ControlMode::Position:
return api::ARM_CONTROL_MODE_POSITION;
case device::ControlMode::Velocity:
return api::ARM_CONTROL_MODE_VELOCITY;
case device::ControlMode::Torque:
return api::ARM_CONTROL_MODE_TORQUE;
case device::ControlMode::Servo:
return api::ARM_CONTROL_MODE_SERVO;
case device::ControlMode::Freedrive:
return api::ARM_CONTROL_MODE_FREEDRIVE;
case device::ControlMode::None:
default:
return api::ARM_CONTROL_MODE_NONE;
}
}
void fillJointState(const device::RobotModel& model,
const device::JointGroupState& state,
api::JointState* msg)
{
for (const auto& name : model.joint_names) msg->add_name(name);
for (const double value : state.position) msg->add_position(value);
for (const double value : state.velocity) msg->add_velocity(value);
for (const double value : state.effort) msg->add_effort(value);
}
void fillRobotState(const device::RobotModel& model,
const device::ArmState& state,
api::RobotState* msg)
{
msg->set_timestamp(state.timestamp);
msg->set_robot_mode(toApiRobotMode(state.robot_mode));
msg->set_safety_mode(toApiSafetyMode(state.safety_mode));
msg->set_control_mode(toApiControlMode(state.control_mode));
msg->set_connected(state.connected);
msg->set_powered_on(state.powered_on);
msg->set_brake_released(state.brake_released);
msg->set_moving(state.moving);
msg->set_program_running(state.program_running);
msg->set_protective_stopped(state.protective_stopped);
msg->set_emergency_stopped(state.emergency_stopped);
msg->set_fault(state.fault);
msg->set_speed_scaling(state.speed_scaling);
fillJointState(model, state.actual_joint_state, msg->mutable_actual_joint_state());
fillJointState(model, state.target_joint_state, msg->mutable_target_joint_state());
*msg->mutable_actual_tcp_pose() = toApiCartesianPose(state.actual_tcp_pose);
*msg->mutable_actual_tcp_velocity() = toApiCartesianVelocity(state.actual_tcp_velocity);
*msg->mutable_actual_tcp_wrench() = toApiCartesianWrench(state.actual_tcp_wrench);
}
device::CartesianVelocity toCartesianVelocity(const api::CartesianVelocity& src) device::CartesianVelocity toCartesianVelocity(const api::CartesianVelocity& src)
{ {
return {src.vx(), src.vy(), src.vz(), src.wx(), src.wy(), src.wz()}; return {src.vx(), src.vy(), src.vz(), src.wx(), src.wy(), src.wz()};
@ -327,12 +452,7 @@ grpc::Status gRPCArmServiceImpl::getJointState(grpc::ServerContext*,
const auto model = arm->getRobotModel(); const auto model = arm->getRobotModel();
const auto state = arm->getJointState(); const auto state = arm->getJointState();
auto* msg = response->mutable_state(); auto* msg = response->mutable_state();
for (const auto& name : model.joint_names) { fillJointState(model, state, msg);
msg->add_name(name);
}
for (double v : state.position) msg->add_position(v);
for (double v : state.velocity) msg->add_velocity(v);
for (double v : state.effort) msg->add_effort(v);
fillFeedback(response->mutable_header(), true); fillFeedback(response->mutable_header(), true);
// CMVR_LOG(DEBUG) << "[gRPCArmServiceImpl] (getJointState): success, id=" << device_id // CMVR_LOG(DEBUG) << "[gRPCArmServiceImpl] (getJointState): success, id=" << device_id
// << ", joints=" << msg->name_size() // << ", joints=" << msg->name_size()
@ -344,6 +464,30 @@ grpc::Status gRPCArmServiceImpl::getJointState(grpc::ServerContext*,
} }
} }
grpc::Status gRPCArmServiceImpl::getRobotState(
grpc::ServerContext*,
const api::GetRobotState_Request* request,
api::GetRobotState_Response* response)
{
try {
const std::string device_id = request->header().device_id();
auto arm = dmgr_.getDevice<device::RobotArm>(device_id);
if (!arm) {
return setDeviceNotFound(response, device_id);
}
const auto model = arm->getRobotModel();
const auto state = arm->getRobotState();
fillRobotState(model, state, response->mutable_state());
fillFeedback(response->mutable_header(), true);
logRpcSuccess("getRobotState", device_id);
return grpc::Status::OK;
} catch (const std::exception& e) {
fillFeedback(response->mutable_header(), false, e.what());
return grpc::Status(grpc::StatusCode::INTERNAL, e.what());
}
}
grpc::Status gRPCArmServiceImpl::getPose(grpc::ServerContext*, grpc::Status gRPCArmServiceImpl::getPose(grpc::ServerContext*,
const api::GetPose_Request* request, const api::GetPose_Request* request,
api::GetPose_Response* response) api::GetPose_Response* response)

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@ -7,9 +7,11 @@
#include "../include/grpc_camera_service.h" #include "../include/grpc_camera_service.h"
#include <algorithm> #include <algorithm>
#include <atomic>
#include <chrono> #include <chrono>
#include <cstdint> #include <cstdint>
#include <limits> #include <limits>
#include <thread>
using namespace std; using namespace std;
using namespace cmvr::service; using namespace cmvr::service;
@ -203,7 +205,9 @@ grpc::Status gRPCCameraServiceImpl::GetRGBImage(grpc::ServerContext* context,
} }
Rs2Intrinsics intrinsics = {0}; Rs2Intrinsics intrinsics = {0};
dev->getRGBImage(image,intrinsics); dev->getRGBImage(image,intrinsics);
response->mutable_header()->set_success(true); if (image.empty()) {
return failResponse(response, "Camera returned an empty RGB image: " + dev_id);
}
response->mutable_intrinsics()->set_fx(intrinsics.fx); response->mutable_intrinsics()->set_fx(intrinsics.fx);
response->mutable_intrinsics()->set_fy(intrinsics.fy); response->mutable_intrinsics()->set_fy(intrinsics.fy);
@ -256,6 +260,9 @@ grpc::Status gRPCCameraServiceImpl::GetDepthImage(grpc::ServerContext* context,
} }
Rs2Intrinsics intrinsics = {0}; Rs2Intrinsics intrinsics = {0};
dev->getDepthImage(image,intrinsics); dev->getDepthImage(image,intrinsics);
if (image.empty()) {
return failResponse(response, "Camera returned an empty depth image: " + dev_id);
}
response->mutable_header()->set_success(true); response->mutable_header()->set_success(true);
response->mutable_intrinsics()->set_fx(intrinsics.fx); response->mutable_intrinsics()->set_fx(intrinsics.fx);
@ -312,6 +319,12 @@ grpc::Status gRPCCameraServiceImpl::GetRGBDImages(grpc::ServerContext* context,
} }
Rs2Intrinsics intrinsics = {0}; Rs2Intrinsics intrinsics = {0};
dev->getRGBDImages(color_image,depth_image, intrinsics); dev->getRGBDImages(color_image,depth_image, intrinsics);
if (color_image.empty()) {
return failResponse(response, "Camera returned an empty RGB image: " + dev_id);
}
if (depth_image.empty()) {
return failResponse(response, "Camera returned an empty depth image: " + dev_id);
}
response->mutable_header()->set_success(true); response->mutable_header()->set_success(true);
response->mutable_intrinsics()->set_fx(intrinsics.fx); response->mutable_intrinsics()->set_fx(intrinsics.fx);
@ -353,6 +366,9 @@ grpc::Status gRPCCameraServiceImpl::GetRGBDImages(grpc::ServerContext* context,
else if (depth_image.type() == CV_32FC1) { else if (depth_image.type() == CV_32FC1) {
response->mutable_depth_frame()->set_type(api::FrameData::F32C1); response->mutable_depth_frame()->set_type(api::FrameData::F32C1);
} }
else {
return failResponse(response, "unsupported depth image type");
}
response->mutable_depth_frame()->set_data( response->mutable_depth_frame()->set_data(
reinterpret_cast<const char*>(depth_image.data), depth_image.total() * depth_image.elemSize()); reinterpret_cast<const char*>(depth_image.data), depth_image.total() * depth_image.elemSize());
response->mutable_depth_frame()->set_height(depth_image.rows); response->mutable_depth_frame()->set_height(depth_image.rows);
@ -667,7 +683,40 @@ grpc::Status gRPCCameraServiceImpl::GetRGBImageStream(grpc::ServerContext* conte
return grpc::Status::OK; return grpc::Status::OK;
} }
std::atomic<bool> client_eof_requested{false};
std::atomic<bool> request_stream_closed{false};
std::atomic<uint64_t> control_requests_read{1};
std::thread request_reader([&] {
api::GetRGBImageStreamCommand_Request control_request;
while (stream->Read(&control_request)) {
++control_requests_read;
if (control_request.eof()) {
client_eof_requested.store(true, std::memory_order_release);
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl] client requested RGB stream EOF"
<< ", id=" << dev_id
<< ", peer=" << context->peer()
<< ", control_requests=" << control_requests_read.load();
break;
}
}
request_stream_closed.store(true, std::memory_order_release);
});
struct RequestReaderJoiner {
std::thread& thread;
~RequestReaderJoiner() {
if (thread.joinable()) {
thread.join();
}
}
} request_reader_joiner{request_reader};
const auto join_request_reader = [&] {
if (request_reader.joinable()) {
request_reader.join();
}
};
bool waiting_for_key_frame = true; bool waiting_for_key_frame = true;
const char* exit_reason = "unknown";
auto last_key_frame_request = std::chrono::steady_clock::now(); auto last_key_frame_request = std::chrono::steady_clock::now();
auto last_latency_log = std::chrono::steady_clock::time_point{}; auto last_latency_log = std::chrono::steady_clock::time_point{};
uint64_t discarded_since_log = 0; uint64_t discarded_since_log = 0;
@ -713,15 +762,25 @@ grpc::Status gRPCCameraServiceImpl::GetRGBImageStream(grpc::ServerContext* conte
}; };
while (true) while (true)
{ {
if (client_eof_requested.load(std::memory_order_acquire)) {
exit_reason = "client_eof";
break;
}
if (context->IsCancelled()) if (context->IsCancelled())
{ {
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl](GetRGBImageStream) context is cancelled,id=" << dev_id; exit_reason = "context_cancelled";
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl](GetRGBImageStream) context is cancelled"
<< ", id=" << dev_id
<< ", peer=" << context->peer()
<< ", client_eof=" << client_eof_requested.load()
<< ", request_stream_closed=" << request_stream_closed.load();
break; break;
} }
const auto read = subscription.waitRead(std::chrono::milliseconds(100)); const auto read = subscription.waitRead(std::chrono::milliseconds(100));
if (!read || !read->value || read->value->empty()) { if (!read || !read->value || read->value->empty()) {
if (!subscription.valid()) { if (!subscription.valid()) {
exit_reason = "subscription_invalid";
break; break;
} }
if (waiting_for_key_frame) { if (waiting_for_key_frame) {
@ -765,6 +824,7 @@ grpc::Status gRPCCameraServiceImpl::GetRGBImageStream(grpc::ServerContext* conte
"Unsupported camera stream codec or payload format: " + dev_id); "Unsupported camera stream codec or payload format: " + dev_id);
setCurrentTimestamp(response.mutable_header()->mutable_timestamp()); setCurrentTimestamp(response.mutable_header()->mutable_timestamp());
stream->Write(response); stream->Write(response);
exit_reason = "unsupported_stream";
break; break;
} }
if (read->dropped_since_last_read > 0 || read->generation_changed || frame.discontinuity) { if (read->dropped_since_last_read > 0 || read->generation_changed || frame.discontinuity) {
@ -808,7 +868,17 @@ grpc::Status gRPCCameraServiceImpl::GetRGBImageStream(grpc::ServerContext* conte
const auto write_started = std::chrono::steady_clock::now(); const auto write_started = std::chrono::steady_clock::now();
if (!stream->Write(response)) { if (!stream->Write(response)) {
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl] (stream->Write) failed,id=" << dev_id; exit_reason = "write_failed";
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl] (stream->Write) failed"
<< ", id=" << dev_id
<< ", peer=" << context->peer()
<< ", context_cancelled=" << context->IsCancelled()
<< ", client_eof=" << client_eof_requested.load()
<< ", request_stream_closed=" << request_stream_closed.load()
<< ", control_requests=" << control_requests_read.load()
<< ", write_ms="
<< std::chrono::duration_cast<std::chrono::microseconds>(
std::chrono::steady_clock::now() - write_started).count() / 1000.0;
break; break;
} }
last_write_duration = std::chrono::duration_cast<std::chrono::microseconds>( last_write_duration = std::chrono::duration_cast<std::chrono::microseconds>(
@ -829,7 +899,15 @@ grpc::Status gRPCCameraServiceImpl::GetRGBImageStream(grpc::ServerContext* conte
last_write_duration); last_write_duration);
} }
} }
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl] (GetRGBImageStream): end,id=" << dev_id; join_request_reader();
CMVR_LOG(INFO) << "[gRPCCameraServiceImpl] (GetRGBImageStream): end"
<< ", id=" << dev_id
<< ", reason=" << exit_reason
<< ", peer=" << context->peer()
<< ", context_cancelled=" << context->IsCancelled()
<< ", client_eof=" << client_eof_requested.load()
<< ", request_stream_closed=" << request_stream_closed.load()
<< ", control_requests=" << control_requests_read.load();
return grpc::Status::OK; return grpc::Status::OK;
} }
catch (const exception &e) { catch (const exception &e) {

View File

@ -23,6 +23,27 @@ target_link_libraries(quic_edge_service
) )
add_library(cmvr_es::quic_edge_service ALIAS quic_edge_service) add_library(cmvr_es::quic_edge_service ALIAS quic_edge_service)
if(BUILD_TESTING)
add_executable(quic_edge_protocol_test tests/quic_edge_protocol_test.cpp)
target_compile_features(quic_edge_protocol_test PRIVATE cxx_std_17)
target_link_libraries(quic_edge_protocol_test PRIVATE
cmvr_es::quic_edge_service
cmvr_es::media_source_hub
Threads::Threads
)
add_test(NAME quic_edge_protocol_test COMMAND quic_edge_protocol_test)
set(_quic_edge_test_environment
"LD_LIBRARY_PATH=${CMVR_TEST_EXTERNAL_LIBRARY_PATH}")
if(CMVR_TEST_SYSTEM_LIBSTDCXX)
list(APPEND _quic_edge_test_environment
"LD_PRELOAD=${CMVR_TEST_SYSTEM_LIBSTDCXX}")
endif()
set_tests_properties(quic_edge_protocol_test PROPERTIES
TIMEOUT 15
ENVIRONMENT "${_quic_edge_test_environment}")
endif()
install(TARGETS quic_edge_service install(TARGETS quic_edge_service
ARCHIVE DESTINATION lib ARCHIVE DESTINATION lib
LIBRARY DESTINATION lib) LIBRARY DESTINATION lib)

View File

@ -88,6 +88,10 @@ public:
bool initialize(std::string* error); bool initialize(std::string* error);
bool start(std::string* error); bool start(std::string* error);
// Releases the current media subscriptions without stopping the QUIC
// transport, node registration, heartbeat loop, or service worker. The
// media worker automatically subscribes again when admission permits it.
bool interruptMediaActivities();
void stop(); void stop();
QuicEdgeServiceState state() const; QuicEdgeServiceState state() const;
@ -124,8 +128,10 @@ private:
bool dispatchControlFrame(const std::vector<std::uint8_t>& frame, bool dispatchControlFrame(const std::vector<std::uint8_t>& frame,
std::string* error); std::string* error);
bool openMediaSession(std::vector<ActiveTrack>* tracks, bool openMediaSession(std::vector<ActiveTrack>* tracks,
std::uint64_t activity_generation,
std::string* error); std::string* error);
void refreshMediaTracks(std::vector<ActiveTrack>* tracks); void refreshMediaTracks(std::vector<ActiveTrack>* tracks,
std::uint64_t activity_generation);
bool hasEnabledMediaTracks() const; bool hasEnabledMediaTracks() const;
bool ensureSourceRegistered(const config::QuicEdgeTrackConfig& track, bool ensureSourceRegistered(const config::QuicEdgeTrackConfig& track,
const std::string& source_track_id, const std::string& source_track_id,
@ -161,6 +167,7 @@ private:
mutable std::mutex mutex_; mutable std::mutex mutex_;
std::condition_variable stop_cv_; std::condition_variable stop_cv_;
std::condition_variable media_stop_cv_; std::condition_variable media_stop_cv_;
std::condition_variable media_activity_cv_;
QuicEdgeServiceState state_{QuicEdgeServiceState::UNINITIALIZED}; QuicEdgeServiceState state_{QuicEdgeServiceState::UNINITIALIZED};
std::string last_error_; std::string last_error_;
std::string last_media_error_; std::string last_media_error_;
@ -174,6 +181,9 @@ private:
std::size_t active_media_tracks_{0}; std::size_t active_media_tracks_{0};
bool stop_requested_{false}; bool stop_requested_{false};
bool media_stop_requested_{false}; bool media_stop_requested_{false};
bool media_worker_running_{false};
std::uint64_t media_activity_generation_{1U};
std::uint64_t media_activity_quiesced_generation_{1U};
bool media_connection_failed_{false}; bool media_connection_failed_{false};
std::string media_connection_error_; std::string media_connection_error_;
std::thread worker_; std::thread worker_;

View File

@ -24,6 +24,8 @@
#include "cmvr/quic_edge/v1/quic_edge.pb.h" #include "cmvr/quic_edge/v1/quic_edge.pb.h"
#include "common/base/logging/logger.h" #include "common/base/logging/logger.h"
#include "manager/device_manager/include/device_manager.h"
#include "manager/media_source_hub/include/device_media_source_adapter.h"
namespace cmvr::quic_edge { namespace cmvr::quic_edge {
namespace { namespace {
@ -217,6 +219,7 @@ void populateDescriptor(const config::QuicEdgeConfig& config,
{ {
if (!descriptor) return; if (!descriptor) return;
descriptor->set_node_id(node_id); descriptor->set_node_id(node_id);
descriptor->set_robot_id(config.robot_id());
descriptor->set_boot_id(boot_id); descriptor->set_boot_id(boot_id);
descriptor->set_software_version(software_version); descriptor->set_software_version(software_version);
const auto interfaces = const auto interfaces =
@ -442,6 +445,10 @@ bool QuicEdgeService::validateConfig(const config::QuicEdgeConfig& config,
setError(error, "QUIC edge task id is empty"); setError(error, "QUIC edge task id is empty");
return false; return false;
} }
if (config.robot_id().empty()) {
setError(error, "QUIC edge robot_id is empty");
return false;
}
if (config.server_host().empty()) { if (config.server_host().empty()) {
setError(error, "QUIC edge server_host is empty"); setError(error, "QUIC edge server_host is empty");
return false; return false;
@ -630,6 +637,31 @@ bool QuicEdgeService::start(std::string* error)
return true; return true;
} }
bool QuicEdgeService::interruptMediaActivities()
{
std::unique_lock lock(mutex_);
if (state_ == QuicEdgeServiceState::FAILED) {
return false;
}
if (media_activity_generation_ ==
std::numeric_limits<std::uint64_t>::max()) {
media_activity_generation_ = 1U;
media_activity_quiesced_generation_ = 0U;
} else {
++media_activity_generation_;
}
const std::uint64_t requested_generation = media_activity_generation_;
media_stop_cv_.notify_all();
media_activity_cv_.wait(lock, [this, requested_generation] {
return !media_worker_running_ || stop_requested_ ||
media_activity_quiesced_generation_ >= requested_generation;
});
return state_ != QuicEdgeServiceState::FAILED &&
(!media_worker_running_ ||
media_activity_quiesced_generation_ >= requested_generation);
}
void QuicEdgeService::stop() void QuicEdgeService::stop()
{ {
std::lock_guard lifecycle_lock(lifecycle_mutex_); std::lock_guard lifecycle_lock(lifecycle_mutex_);
@ -926,10 +958,18 @@ bool QuicEdgeService::startMediaWorker(std::string* error)
media_connection_failed_ = false; media_connection_failed_ = false;
media_connection_error_.clear(); media_connection_error_.clear();
active_media_tracks_ = 0U; active_media_tracks_ = 0U;
media_worker_running_ = true;
} }
try { try {
media_worker_ = std::thread(&QuicEdgeService::runMedia, this); media_worker_ = std::thread(&QuicEdgeService::runMedia, this);
} catch (const std::exception& exception) { } catch (const std::exception& exception) {
{
std::lock_guard lock(mutex_);
media_worker_running_ = false;
media_activity_quiesced_generation_ =
media_activity_generation_;
}
media_activity_cv_.notify_all();
const std::string message = const std::string message =
std::string("failed to start QUIC media worker: ") + exception.what(); std::string("failed to start QUIC media worker: ") + exception.what();
recordMediaConnectionFailure(message); recordMediaConnectionFailure(message);
@ -947,8 +987,13 @@ void QuicEdgeService::stopMediaWorker()
} }
media_stop_cv_.notify_all(); media_stop_cv_.notify_all();
if (media_worker_.joinable()) media_worker_.join(); if (media_worker_.joinable()) media_worker_.join();
std::lock_guard lock(mutex_); {
active_media_tracks_ = 0U; std::lock_guard lock(mutex_);
active_media_tracks_ = 0U;
media_worker_running_ = false;
media_activity_quiesced_generation_ = media_activity_generation_;
}
media_activity_cv_.notify_all();
} }
void QuicEdgeService::recordMediaConnectionFailure(const std::string& error) void QuicEdgeService::recordMediaConnectionFailure(const std::string& error)
@ -969,12 +1014,36 @@ void QuicEdgeService::recordMediaConnectionFailure(const std::string& error)
void QuicEdgeService::runMedia() void QuicEdgeService::runMedia()
{ {
std::vector<ActiveTrack> tracks; std::vector<ActiveTrack> tracks;
std::uint64_t activity_generation = 0U;
{
std::lock_guard lock(mutex_);
activity_generation = media_activity_generation_;
media_activity_quiesced_generation_ = activity_generation;
}
media_activity_cv_.notify_all();
try { try {
next_media_source_retry_ = std::chrono::steady_clock::now(); next_media_source_retry_ = std::chrono::steady_clock::now();
while (true) { while (true) {
std::uint64_t requested_generation = 0U;
{ {
std::lock_guard lock(mutex_); std::lock_guard lock(mutex_);
if (stop_requested_ || media_stop_requested_) break; if (stop_requested_ || media_stop_requested_) break;
requested_generation = media_activity_generation_;
}
if (requested_generation != activity_generation) {
// Clearing the tracks is the publication barrier for this
// generation: subscriptions are released before StopAll is
// told that old QUIC media activity has quiesced.
tracks.clear();
{
std::lock_guard lock(mutex_);
active_media_tracks_ = 0U;
activity_generation = requested_generation;
media_activity_quiesced_generation_ =
requested_generation;
}
media_activity_cv_.notify_all();
continue;
} }
if (!transport_->isConnected()) break; if (!transport_->isConnected()) break;
@ -987,7 +1056,8 @@ void QuicEdgeService::runMedia()
return !track.subscription.valid(); return !track.subscription.valid();
}), }),
tracks.end()); tracks.end());
if (!openMediaSession(&tracks, &error)) { if (!openMediaSession(
&tracks, activity_generation, &error)) {
recordMediaConnectionFailure(error); recordMediaConnectionFailure(error);
break; break;
} }
@ -1034,8 +1104,13 @@ void QuicEdgeService::runMedia()
recordMediaConnectionFailure("unknown QUIC media worker exception"); recordMediaConnectionFailure("unknown QUIC media worker exception");
} }
tracks.clear(); tracks.clear();
std::lock_guard lock(mutex_); {
active_media_tracks_ = 0U; std::lock_guard lock(mutex_);
active_media_tracks_ = 0U;
media_worker_running_ = false;
media_activity_quiesced_generation_ = media_activity_generation_;
}
media_activity_cv_.notify_all();
} }
bool QuicEdgeService::performRegistration(ControlFrameDecoder* decoder, bool QuicEdgeService::performRegistration(ControlFrameDecoder* decoder,
@ -1097,6 +1172,7 @@ bool QuicEdgeService::sendNodeRegistration(std::string* error)
<< ", message_sequence=" << envelope.message_sequence() << ", message_sequence=" << envelope.message_sequence()
<< ", payload_bytes=" << serialized.size() << ", payload_bytes=" << serialized.size()
<< ", node_id=" << node.node_id() << ", node_id=" << node.node_id()
<< ", robot_id=" << node.robot_id()
<< ", boot_id=" << node.boot_id() << ", boot_id=" << node.boot_id()
<< ", grpc_endpoint=" << node.grpc_endpoint().host() << ", grpc_endpoint=" << node.grpc_endpoint().host()
<< ':' << node.grpc_endpoint().port() << ':' << node.grpc_endpoint().port()
@ -1145,6 +1221,7 @@ bool QuicEdgeService::sendHeartbeat(const std::uint64_t sequence,
envelope.set_message_sequence(control_message_sequence_++); envelope.set_message_sequence(control_message_sequence_++);
auto* heartbeat = envelope.mutable_node_heartbeat(); auto* heartbeat = envelope.mutable_node_heartbeat();
heartbeat->set_node_id(node_id_); heartbeat->set_node_id(node_id_);
heartbeat->set_robot_id(config_.robot_id());
heartbeat->set_boot_id(boot_id_); heartbeat->set_boot_id(boot_id_);
heartbeat->set_session_id(session_id); heartbeat->set_session_id(session_id);
heartbeat->set_sequence(sequence); heartbeat->set_sequence(sequence);
@ -1163,16 +1240,17 @@ bool QuicEdgeService::sendHeartbeat(const std::uint64_t sequence,
return false; return false;
} }
if (!sendControlEnvelope(serialized, error)) return false; if (!sendControlEnvelope(serialized, error)) return false;
// CMVR_LOG(INFO) << "[QuicEdgeService] sent NodeHeartbeat" CMVR_LOG(INFO) << "[QuicEdgeService] sent NodeHeartbeat"
// << ", message_sequence=" << envelope.message_sequence() << ", message_sequence=" << envelope.message_sequence()
// << ", payload_bytes=" << serialized.size() << ", payload_bytes=" << serialized.size()
// << ", session=" << session_id << ", robot_id=" << heartbeat->robot_id()
// << ", heartbeat_sequence=" << sequence << ", session=" << session_id
// << ", grpc_endpoint=" << heartbeat->grpc_endpoint().host() << ", heartbeat_sequence=" << sequence
// << ':' << heartbeat->grpc_endpoint().port() << ", grpc_endpoint=" << heartbeat->grpc_endpoint().host()
// << ", interfaces=" << heartbeat->local_interfaces_size() << ':' << heartbeat->grpc_endpoint().port()
// << ", devices=" << heartbeat->device_manager().devices_size() << ", interfaces=" << heartbeat->local_interfaces_size()
// << ", sent_at_unix_ms=" << sent_at_unix_ms; << ", devices=" << heartbeat->device_manager().devices_size()
<< ", sent_at_unix_ms=" << sent_at_unix_ms;
return true; return true;
} }
@ -1318,7 +1396,9 @@ bool QuicEdgeService::dispatchControlFrame(
return false; return false;
} }
bool QuicEdgeService::openMediaSession(std::vector<ActiveTrack>* tracks, bool QuicEdgeService::openMediaSession(
std::vector<ActiveTrack>* tracks,
const std::uint64_t activity_generation,
std::string* error) std::string* error)
{ {
if (!tracks) { if (!tracks) {
@ -1343,11 +1423,13 @@ bool QuicEdgeService::openMediaSession(std::vector<ActiveTrack>* tracks,
++stats_.media_sessions_opened; ++stats_.media_sessions_opened;
} }
} }
refreshMediaTracks(tracks); refreshMediaTracks(tracks, activity_generation);
return true; return true;
} }
void QuicEdgeService::refreshMediaTracks(std::vector<ActiveTrack>* tracks) void QuicEdgeService::refreshMediaTracks(
std::vector<ActiveTrack>* tracks,
const std::uint64_t activity_generation)
{ {
if (!tracks) return; if (!tracks) return;
for (const auto& track_config : config_.tracks()) { for (const auto& track_config : config_.tracks()) {
@ -1371,9 +1453,10 @@ void QuicEdgeService::refreshMediaTracks(std::vector<ActiveTrack>* tracks)
track.subscription = media_hub_->subscribe( track.subscription = media_hub_->subscribe(
track.source_track_id, track.source_track_id,
media::MediaSourceHub::StartPosition::LATEST_AVAILABLE, media::MediaSourceHub::StartPosition::LATEST_AVAILABLE,
[this] { [this, activity_generation] {
std::lock_guard lock(mutex_); std::lock_guard lock(mutex_);
return stop_requested_ || media_stop_requested_; return stop_requested_ || media_stop_requested_ ||
media_activity_generation_ != activity_generation;
}); });
if (!track.subscription.valid()) { if (!track.subscription.valid()) {
recordMediaError( recordMediaError(

View File

@ -105,6 +105,7 @@ public:
if (envelope.has_node_register_request()) { if (envelope.has_node_register_request()) {
const auto& request = envelope.node_register_request(); const auto& request = envelope.node_register_request();
last_registered_node_id_ = request.node().node_id(); last_registered_node_id_ = request.node().node_id();
last_registered_robot_id_ = request.node().robot_id();
last_grpc_endpoint_port_ = request.node().grpc_endpoint().port(); last_grpc_endpoint_port_ = request.node().grpc_endpoint().port();
last_interface_count_ = request.node().local_interfaces_size(); last_interface_count_ = request.node().local_interfaces_size();
cmvr::quic_edge::v1::EdgeControlEnvelope response; cmvr::quic_edge::v1::EdgeControlEnvelope response;
@ -253,6 +254,12 @@ public:
return last_registered_node_id_; return last_registered_node_id_;
} }
std::string lastRegisteredRobotId() const
{
std::lock_guard lock(mutex_);
return last_registered_robot_id_;
}
std::uint32_t lastGrpcEndpointPort() const std::uint32_t lastGrpcEndpointPort() const
{ {
std::lock_guard lock(mutex_); std::lock_guard lock(mutex_);
@ -335,6 +342,7 @@ private:
std::uint32_t heartbeat_ack_delay_ms_{0U}; std::uint32_t heartbeat_ack_delay_ms_{0U};
std::uint64_t server_message_sequence_{0}; std::uint64_t server_message_sequence_{0};
std::string last_registered_node_id_; std::string last_registered_node_id_;
std::string last_registered_robot_id_;
std::uint32_t last_grpc_endpoint_port_{0}; std::uint32_t last_grpc_endpoint_port_{0};
int last_interface_count_{0}; int last_interface_count_{0};
std::vector<std::vector<std::uint8_t>> controls_; std::vector<std::vector<std::uint8_t>> controls_;
@ -359,6 +367,7 @@ config::QuicEdgeConfig validConfig(const std::string& source_track_id)
config.set_server_port(4433); config.set_server_port(4433);
config.set_alpn("cmvr-quic-edge/1"); config.set_alpn("cmvr-quic-edge/1");
config.set_node_id("test-node"); config.set_node_id("test-node");
config.set_robot_id("CN-CMVR-MBLRV1-CHAGAN-20260731-001");
config.set_software_version("test-version"); config.set_software_version("test-version");
config.set_grpc_endpoint_host("auto"); config.set_grpc_endpoint_host("auto");
config.set_grpc_endpoint_port(50052U); config.set_grpc_endpoint_port(50052U);
@ -473,14 +482,14 @@ bool testPacketizer()
bool testServiceWithSharedHub() bool testServiceWithSharedHub()
{ {
const std::string track_id = "camera-test/video/color"; const std::string track_id = "camera-test/video/color";
media::MediaSourceHub hub; media::MediaSourceManager hub;
media::MediaSourceHub::FrameSink sink; media::MediaSourceManager::FrameSink sink;
std::mutex sink_mutex; std::mutex sink_mutex;
std::atomic<bool> source_started{false}; std::atomic<bool> source_started{false};
std::atomic<std::uint64_t> keyframe_requests{0}; std::atomic<std::uint64_t> keyframe_requests{0};
media::MediaSourceHub::SourceCallbacks callbacks; media::MediaSourceManager::SourceCallbacks callbacks;
callbacks.start = [&](const media::MediaSourceHub::FrameSink& value, callbacks.start = [&](const media::MediaSourceManager::FrameSink& value,
const media::MediaSourceHub::CancelPredicate&) { const media::MediaSourceManager::CancelPredicate&) {
std::lock_guard lock(sink_mutex); std::lock_guard lock(sink_mutex);
sink = value; sink = value;
source_started.store(true); source_started.store(true);
@ -507,6 +516,8 @@ bool testServiceWithSharedHub()
service.stats().heartbeats_acknowledged >= 1U; service.stats().heartbeats_acknowledged >= 1U;
})); }));
CHECK_TRUE(transport_view->lastRegisteredNodeId() == "test-node"); CHECK_TRUE(transport_view->lastRegisteredNodeId() == "test-node");
CHECK_TRUE(transport_view->lastRegisteredRobotId() ==
"CN-CMVR-MBLRV1-CHAGAN-20260731-001");
CHECK_TRUE(transport_view->lastGrpcEndpointPort() == 50052U); CHECK_TRUE(transport_view->lastGrpcEndpointPort() == 50052U);
CHECK_TRUE(transport_view->connectCount() == 1U); CHECK_TRUE(transport_view->connectCount() == 1U);
@ -516,7 +527,7 @@ bool testServiceWithSharedHub()
frame_config.sequence = 1; frame_config.sequence = 1;
frame_config.capture_time_ns = 1000000; frame_config.capture_time_ns = 1000000;
frame_config.key_frame = true; frame_config.key_frame = true;
media::MediaSourceHub::FrameSink publisher; media::MediaSourceManager::FrameSink publisher;
{ {
std::lock_guard lock(sink_mutex); std::lock_guard lock(sink_mutex);
publisher = sink; publisher = sink;
@ -565,9 +576,150 @@ bool testServiceWithSharedHub()
return true; return true;
} }
bool testMediaActivityInterruptPreservesPresenceAndResumes()
{
const std::string track_id = "camera-stop-all/video/color";
media::MediaSourceHub hub;
media::MediaSourceManager::FrameSink sink;
std::mutex sink_mutex;
std::atomic<bool> source_started{false};
std::atomic<std::uint64_t> source_starts{0U};
std::atomic<std::uint64_t> source_stops{0U};
media::MediaSourceManager::SourceCallbacks callbacks;
callbacks.start = [&](const media::MediaSourceManager::FrameSink& value,
const media::MediaSourceManager::CancelPredicate&) {
{
std::lock_guard lock(sink_mutex);
sink = value;
}
source_started.store(true);
++source_starts;
return true;
};
callbacks.stop = [&]() {
source_started.store(false);
++source_stops;
};
callbacks.request_key_frame = [] { return true; };
const auto descriptor = videoDescriptor(track_id);
CHECK_TRUE(hub.registerSource(descriptor, std::move(callbacks), 8U));
auto transport = std::make_unique<FakeTransport>();
FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService edge_service(
validConfig(track_id), std::move(transport), hub);
std::string error;
CHECK_TRUE(edge_service.initialize(&error));
CHECK_TRUE(edge_service.start(&error));
CHECK_TRUE(waitUntil([&] {
return edge_service.state() == quic_edge::QuicEdgeServiceState::ONLINE &&
edge_service.status().registered && source_started.load() &&
hub.subscriberCount(track_id) == 1U;
}));
auto publish = [&](const std::uint64_t sequence) {
media::MediaSourceManager::FrameSink publisher;
{
std::lock_guard lock(sink_mutex);
publisher = sink;
}
if (!publisher) return false;
media::MediaFrame::Config frame;
frame.descriptor = descriptor;
frame.payload.resize(256U, 0x5aU);
frame.sequence = sequence;
frame.capture_time_ns = sequence * 1000000U;
frame.key_frame = true;
publisher(media::makeMediaFrame(std::move(frame)));
return true;
};
CHECK_TRUE(publish(1U));
CHECK_TRUE(waitUntil([&] {
return transport_view->datagramBatchCount() == 1U;
}));
const auto heartbeat_before_stop = transport_view->heartbeatCount();
CHECK_TRUE(edge_service.interruptMediaActivities());
CHECK_TRUE(hub.subscriberCount(track_id) == 0U);
CHECK_TRUE(!source_started.load());
CHECK_TRUE(source_stops.load() == 1U);
CHECK_TRUE(edge_service.state() == quic_edge::QuicEdgeServiceState::ONLINE);
CHECK_TRUE(edge_service.status().registered);
CHECK_TRUE(transport_view->connectCount() == 1U);
// A publisher retained by the stopped generation must no longer enqueue
// frames while StopAll admission is closed.
CHECK_TRUE(publish(2U));
std::this_thread::sleep_for(std::chrono::milliseconds(30));
CHECK_TRUE(transport_view->datagramBatchCount() == 1U);
CHECK_TRUE(waitUntil([&] {
return source_starts.load() == 2U && source_started.load() &&
hub.subscriberCount(track_id) == 1U;
}));
CHECK_TRUE(publish(3U));
CHECK_TRUE(waitUntil([&] {
return transport_view->datagramBatchCount() == 2U;
}));
CHECK_TRUE(waitUntil([&] {
return transport_view->heartbeatCount() > heartbeat_before_stop;
}));
CHECK_TRUE(edge_service.stats().registrations_accepted == 1U);
CHECK_TRUE(transport_view->connectCount() == 1U);
CHECK_TRUE(edge_service.state() == quic_edge::QuicEdgeServiceState::ONLINE);
edge_service.stop();
return true;
}
bool testMediaActivityInterruptCancelsStartingSubscription()
{
const std::string track_id = "slow-stop-all/video/color";
media::MediaSourceHub hub;
std::atomic<bool> start_entered{false};
std::atomic<bool> start_cancelled{false};
media::MediaSourceManager::SourceCallbacks callbacks;
callbacks.start = [&](const media::MediaSourceManager::FrameSink&,
const media::MediaSourceManager::CancelPredicate& cancelled) {
start_entered.store(true);
while (!cancelled()) {
std::this_thread::sleep_for(std::chrono::milliseconds(2));
}
start_cancelled.store(true);
return false;
};
callbacks.stop = [] {};
CHECK_TRUE(hub.registerSource(
videoDescriptor(track_id), std::move(callbacks), 8U));
auto transport = std::make_unique<FakeTransport>();
FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService edge_service(
validConfig(track_id), std::move(transport), hub);
std::string error;
CHECK_TRUE(edge_service.initialize(&error));
CHECK_TRUE(edge_service.start(&error));
CHECK_TRUE(waitUntil([&] {
return start_entered.load() && edge_service.status().registered;
}));
auto interrupt = std::async(std::launch::async, [&edge_service] {
return edge_service.interruptMediaActivities();
});
CHECK_TRUE(interrupt.wait_for(std::chrono::milliseconds(500)) ==
std::future_status::ready);
CHECK_TRUE(interrupt.get());
CHECK_TRUE(start_cancelled.load());
CHECK_TRUE(hub.subscriberCount(track_id) == 0U);
CHECK_TRUE(edge_service.state() == quic_edge::QuicEdgeServiceState::ONLINE);
CHECK_TRUE(edge_service.status().registered);
CHECK_TRUE(transport_view->connectCount() == 1U);
edge_service.stop();
return true;
}
bool testMissingInjectedSourceRetriesSafely() bool testMissingInjectedSourceRetriesSafely()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(); auto transport = std::make_unique<FakeTransport>();
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService service( quic_edge::QuicEdgeService service(
@ -586,7 +738,7 @@ bool testMissingInjectedSourceRetriesSafely()
bool testPresenceOnlyWithoutMedia() bool testPresenceOnlyWithoutMedia()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(); auto transport = std::make_unique<FakeTransport>();
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService service( quic_edge::QuicEdgeService service(
@ -630,7 +782,7 @@ bool testDeviceManagerSnapshotInHeartbeat()
device::ManagedDeviceSnapshot running; device::ManagedDeviceSnapshot running;
running.id = "src1100"; running.id = "src1100";
running.kind = device::DeviceKind::AGV; running.kind = device::DeviceKind::AGV;
running.type_name = "Src1100Agv"; running.type_name = "SeerRobokitAgv";
running.enabled = true; running.enabled = true;
running.state = device::ManagedDeviceState::Running; running.state = device::ManagedDeviceState::Running;
running.health.state = device::DeviceHealthState::Healthy; running.health.state = device::DeviceHealthState::Healthy;
@ -649,7 +801,7 @@ bool testDeviceManagerSnapshotInHeartbeat()
failed.status_updated_at_unix_ms = 303U; failed.status_updated_at_unix_ms = 303U;
snapshot.devices.push_back(failed); snapshot.devices.push_back(failed);
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(); auto transport = std::make_unique<FakeTransport>();
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService service( quic_edge::QuicEdgeService service(
@ -664,6 +816,8 @@ bool testDeviceManagerSnapshotInHeartbeat()
const auto heartbeat = transport_view->lastHeartbeat(); const auto heartbeat = transport_view->lastHeartbeat();
service.stop(); service.stop();
CHECK_TRUE(heartbeat.robot_id() ==
"CN-CMVR-MBLRV1-CHAGAN-20260731-001");
CHECK_TRUE(heartbeat.has_device_manager()); CHECK_TRUE(heartbeat.has_device_manager());
CHECK_TRUE(heartbeat.device_manager().manager_name() == CHECK_TRUE(heartbeat.device_manager().manager_name() ==
"edge-device-manager"); "edge-device-manager");
@ -781,7 +935,7 @@ bool testAllDeviceKindAndStateMappings()
snapshot.devices.push_back(std::move(row)); snapshot.devices.push_back(std::move(row));
} }
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(); auto transport = std::make_unique<FakeTransport>();
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService service( quic_edge::QuicEdgeService service(
@ -812,7 +966,7 @@ bool testAllDeviceKindAndStateMappings()
bool testConfiguredHeartbeatIntervalWithoutGatewayOverride() bool testConfiguredHeartbeatIntervalWithoutGatewayOverride()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>( auto transport = std::make_unique<FakeTransport>(
true, true, true, 0U, 0U); true, true, true, 0U, 0U);
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
@ -839,7 +993,7 @@ bool testConfiguredHeartbeatIntervalWithoutGatewayOverride()
bool testSnapshotLatencyDoesNotConsumeAckDeadline() bool testSnapshotLatencyDoesNotConsumeAckDeadline()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>( auto transport = std::make_unique<FakeTransport>(
true, true, true, 0U, 250U, 70U); true, true, true, 0U, 250U, 70U);
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
@ -864,7 +1018,7 @@ bool testSnapshotLatencyDoesNotConsumeAckDeadline()
bool testHeartbeatTimeoutReconnectsWithoutTaskFailure() bool testHeartbeatTimeoutReconnectsWithoutTaskFailure()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(true, false); auto transport = std::make_unique<FakeTransport>(true, false);
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
auto config = validPresenceOnlyConfig(); auto config = validPresenceOnlyConfig();
@ -884,7 +1038,7 @@ bool testHeartbeatTimeoutReconnectsWithoutTaskFailure()
bool testRegistrationRejectionBacksOff() bool testRegistrationRejectionBacksOff()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(false, true); auto transport = std::make_unique<FakeTransport>(false, true);
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
auto config = validPresenceOnlyConfig(); auto config = validPresenceOnlyConfig();
@ -912,7 +1066,7 @@ bool testRegistrationRejectionBacksOff()
bool testHeartbeatAckRequiresSessionId() bool testHeartbeatAckRequiresSessionId()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
auto transport = std::make_unique<FakeTransport>(true, true, false); auto transport = std::make_unique<FakeTransport>(true, true, false);
FakeTransport* transport_view = transport.get(); FakeTransport* transport_view = transport.get();
quic_edge::QuicEdgeService service( quic_edge::QuicEdgeService service(
@ -933,13 +1087,13 @@ bool testHeartbeatAckRequiresSessionId()
bool testSlowMediaStartDoesNotBlockHeartbeat() bool testSlowMediaStartDoesNotBlockHeartbeat()
{ {
const std::string track_id = "slow-camera/video/color"; const std::string track_id = "slow-camera/video/color";
media::MediaSourceHub hub; media::MediaSourceManager hub;
std::atomic<bool> start_entered{false}; std::atomic<bool> start_entered{false};
std::atomic<bool> start_exited{false}; std::atomic<bool> start_exited{false};
std::atomic<bool> release_start{false}; std::atomic<bool> release_start{false};
media::MediaSourceHub::SourceCallbacks callbacks; media::MediaSourceManager::SourceCallbacks callbacks;
callbacks.start = [&](const media::MediaSourceHub::FrameSink&, callbacks.start = [&](const media::MediaSourceManager::FrameSink&,
const media::MediaSourceHub::CancelPredicate& cancelled) { const media::MediaSourceManager::CancelPredicate& cancelled) {
start_entered.store(true); start_entered.store(true);
while (!release_start.load() && !cancelled()) { while (!release_start.load() && !cancelled()) {
std::this_thread::sleep_for(std::chrono::milliseconds(2)); std::this_thread::sleep_for(std::chrono::milliseconds(2));
@ -986,7 +1140,7 @@ bool testSlowMediaStartDoesNotBlockHeartbeat()
bool testLifecycleStateGuards() bool testLifecycleStateGuards()
{ {
media::MediaSourceHub hub; media::MediaSourceManager hub;
{ {
auto transport = std::make_unique<FakeTransport>(); auto transport = std::make_unique<FakeTransport>();
quic_edge::QuicEdgeService service( quic_edge::QuicEdgeService service(
@ -1016,12 +1170,29 @@ bool testLifecycleStateGuards()
return true; return true;
} }
bool testRobotIdIsRequired()
{
media::MediaSourceManager hub;
auto config = validPresenceOnlyConfig();
config.clear_robot_id();
auto transport = std::make_unique<FakeTransport>();
quic_edge::QuicEdgeService service(
std::move(config), std::move(transport), hub);
std::string error;
CHECK_TRUE(!service.initialize(&error));
CHECK_TRUE(error.find("robot_id") != std::string::npos);
return true;
}
} // namespace } // namespace
int main() int main()
{ {
if (!testControlFraming() || !testPacketizer() || if (!testControlFraming() || !testPacketizer() ||
!testServiceWithSharedHub() || !testMissingInjectedSourceRetriesSafely() || !testServiceWithSharedHub() ||
!testMediaActivityInterruptPreservesPresenceAndResumes() ||
!testMediaActivityInterruptCancelsStartingSubscription() ||
!testMissingInjectedSourceRetriesSafely() ||
!testPresenceOnlyWithoutMedia() || !testPresenceOnlyWithoutMedia() ||
!testDeviceManagerSnapshotInHeartbeat() || !testDeviceManagerSnapshotInHeartbeat() ||
!testAllDeviceKindAndStateMappings() || !testAllDeviceKindAndStateMappings() ||
@ -1031,7 +1202,7 @@ int main()
!testRegistrationRejectionBacksOff() || !testRegistrationRejectionBacksOff() ||
!testHeartbeatAckRequiresSessionId() || !testHeartbeatAckRequiresSessionId() ||
!testSlowMediaStartDoesNotBlockHeartbeat() || !testSlowMediaStartDoesNotBlockHeartbeat() ||
!testLifecycleStateGuards()) { !testLifecycleStateGuards() || !testRobotIdIsRequired()) {
return 1; return 1;
} }
std::cout << "quic_edge_protocol_test: PASS\n"; std::cout << "quic_edge_protocol_test: PASS\n";

View File

@ -15,13 +15,22 @@ add_library(cmvr_es::quic_edge_task ALIAS quic_edge_task)
if(BUILD_TESTING) if(BUILD_TESTING)
add_executable(quic_edge_task_test tests/quic_edge_task_test.cpp) add_executable(quic_edge_task_test tests/quic_edge_task_test.cpp)
target_compile_features(quic_edge_task_test PRIVATE cxx_std_17) target_compile_features(quic_edge_task_test PRIVATE cxx_std_17)
target_link_libraries(quic_edge_task_test PRIVATE cmvr_es::quic_edge_task) target_link_libraries(quic_edge_task_test PRIVATE
cmvr_es::quic_edge_task
)
add_test(NAME quic_edge_task_test COMMAND quic_edge_task_test) add_test(NAME quic_edge_task_test COMMAND quic_edge_task_test)
if(UNIX AND NOT APPLE) if(UNIX AND NOT APPLE)
get_property(_quic_task_test_library_dirs DIRECTORY PROPERTY LINK_DIRECTORIES) get_property(_quic_task_test_library_dirs DIRECTORY PROPERTY LINK_DIRECTORIES)
list(PREPEND _quic_task_test_library_dirs "${CMAKE_BINARY_DIR}/cmvr_compiler_runtime") list(PREPEND _quic_task_test_library_dirs "${CMAKE_BINARY_DIR}/cmvr_compiler_runtime")
list(JOIN _quic_task_test_library_dirs ":" _quic_task_test_library_path) list(JOIN _quic_task_test_library_dirs ":" _quic_task_test_library_path)
set(_quic_task_test_environment
"LD_LIBRARY_PATH=${_quic_task_test_library_path}")
if(CMVR_TEST_SYSTEM_LIBSTDCXX)
list(APPEND _quic_task_test_environment
"LD_PRELOAD=${CMVR_TEST_SYSTEM_LIBSTDCXX}")
endif()
set_tests_properties(quic_edge_task_test PROPERTIES set_tests_properties(quic_edge_task_test PROPERTIES
ENVIRONMENT "LD_LIBRARY_PATH=${_quic_task_test_library_path}") TIMEOUT 10
ENVIRONMENT "${_quic_task_test_environment}")
endif() endif()
endif() endif()

View File

@ -1,9 +1,11 @@
#ifndef CMVR_ES_QUIC_EDGE_TASK_H #ifndef CMVR_ES_QUIC_EDGE_TASK_H
#define CMVR_ES_QUIC_EDGE_TASK_H #define CMVR_ES_QUIC_EDGE_TASK_H
#include <functional>
#include <memory> #include <memory>
#include <mutex> #include <mutex>
#include <string> #include <string>
#include <vector>
#include "cmvr/config/quic_edge_config/quic_edge_config.pb.h" #include "cmvr/config/quic_edge_config/quic_edge_config.pb.h"
#include "service/quic_edge/include/quic_edge_service.h" #include "service/quic_edge/include/quic_edge_service.h"
@ -13,7 +15,12 @@ namespace cmvr::task {
class QuicEdgeTask final : public Task { class QuicEdgeTask final : public Task {
public: public:
using ServiceFactory = std::function<std::unique_ptr<quic_edge::QuicEdgeService>(
config::QuicEdgeConfig)>;
explicit QuicEdgeTask(const config::QuicEdgeConfig& config); explicit QuicEdgeTask(const config::QuicEdgeConfig& config);
QuicEdgeTask(const config::QuicEdgeConfig& config,
ServiceFactory service_factory);
~QuicEdgeTask() override; ~QuicEdgeTask() override;
const std::string& id() const override { return id_; } const std::string& id() const override { return id_; }
@ -22,6 +29,7 @@ public:
bool start() override; bool start() override;
bool step(double dt) override; bool step(double dt) override;
void stop() override; void stop() override;
bool stopActivity();
TaskState state() const override; TaskState state() const override;
bool isBusy() const override; bool isBusy() const override;
@ -31,11 +39,19 @@ public:
std::string detailStatusString() const override; std::string detailStatusString() const override;
private: private:
struct PlatformService {
std::string id;
bool media_enabled{false};
config::QuicEdgeConfig config;
std::unique_ptr<quic_edge::QuicEdgeService> service;
};
TaskState mappedState() const; TaskState mappedState() const;
config::QuicEdgeConfig config_; config::QuicEdgeConfig config_;
std::string id_; std::string id_;
std::unique_ptr<quic_edge::QuicEdgeService> service_; ServiceFactory service_factory_;
std::vector<PlatformService> services_;
mutable std::mutex mutex_; mutable std::mutex mutex_;
TaskState state_{TaskState::UNINITIALIZED}; TaskState state_{TaskState::UNINITIALIZED};

View File

@ -1,7 +1,10 @@
#include "task/quic_edge_task/include/quic_edge_task.h" #include "task/quic_edge_task/include/quic_edge_task.h"
#include <set>
#include <sstream> #include <sstream>
#include <unordered_set>
#include <utility> #include <utility>
#include <vector>
#include "cmvr/config/task_manager_config/task_manager_config.pb.h" #include "cmvr/config/task_manager_config/task_manager_config.pb.h"
#include "common/base/logging/logger.h" #include "common/base/logging/logger.h"
@ -12,6 +15,107 @@
namespace cmvr::task { namespace cmvr::task {
namespace { namespace {
struct PlatformConfig {
std::string id;
bool media_enabled{false};
config::QuicEdgeConfig config;
};
void resolveTlsFiles(config::QuicEdgeTlsConfig* tls)
{
if (!tls) return;
if (!tls->ca_file().empty()) {
tls->set_ca_file(ConfigHelper::resolveConfigFile(tls->ca_file()));
}
if (!tls->certificate_file().empty()) {
tls->set_certificate_file(
ConfigHelper::resolveConfigFile(tls->certificate_file()));
}
if (!tls->private_key_file().empty()) {
tls->set_private_key_file(
ConfigHelper::resolveConfigFile(tls->private_key_file()));
}
}
bool appendPlatformConfig(
const config::QuicEdgeConfig& root_config,
const std::string& platform_id,
const std::string& server_host,
const std::uint32_t server_port,
const config::QuicEdgeTlsConfig& tls,
const bool media_enabled,
std::unordered_set<std::string>* platform_ids,
std::set<std::pair<std::string, std::uint32_t>>* endpoints,
std::vector<PlatformConfig>* platforms,
std::string* error)
{
if (platform_id.empty()) {
if (error) *error = "QUIC edge platform id is empty";
return false;
}
if (!platform_ids->insert(platform_id).second) {
if (error) *error = "duplicate QUIC edge platform id: " + platform_id;
return false;
}
if (!endpoints->emplace(server_host, server_port).second) {
if (error) {
*error = "duplicate QUIC edge platform endpoint: " + server_host +
':' + std::to_string(server_port);
}
return false;
}
PlatformConfig platform;
platform.id = platform_id;
platform.media_enabled = media_enabled;
platform.config = root_config;
platform.config.set_server_host(server_host);
platform.config.set_server_port(server_port);
*platform.config.mutable_tls() = tls;
platform.config.clear_platforms();
if (!media_enabled) platform.config.clear_tracks();
platforms->push_back(std::move(platform));
return true;
}
bool expandPlatformConfigs(const config::QuicEdgeConfig& config,
std::vector<PlatformConfig>* platforms,
std::string* error)
{
if (!platforms) {
if (error) *error = "QUIC edge platform output is null";
return false;
}
platforms->clear();
std::unordered_set<std::string> platform_ids;
std::set<std::pair<std::string, std::uint32_t>> endpoints;
const bool has_primary_endpoint = !config.server_host().empty() ||
config.server_port() != 0U || config.has_tls();
if (has_primary_endpoint &&
!appendPlatformConfig(
config, config.id(), config.server_host(), config.server_port(),
config.tls(), true, &platform_ids, &endpoints, platforms, error)) {
return false;
}
for (const auto& configured_platform : config.platforms()) {
if (!appendPlatformConfig(
config, configured_platform.id(),
configured_platform.server_host(),
configured_platform.server_port(), configured_platform.tls(),
configured_platform.enable_media(), &platform_ids, &endpoints,
platforms, error)) {
return false;
}
}
if (platforms->empty()) {
if (error) *error = "QUIC edge has no platform endpoint";
return false;
}
return true;
}
std::shared_ptr<Task> createQuicEdgeTask(const config::TaskConfigEntry& entry) std::shared_ptr<Task> createQuicEdgeTask(const config::TaskConfigEntry& entry)
{ {
if (entry.id().empty() || entry.config_file().empty()) { if (entry.id().empty() || entry.config_file().empty()) {
@ -30,17 +134,9 @@ std::shared_ptr<Task> createQuicEdgeTask(const config::TaskConfigEntry& entry)
<< ", config=" << config.id(); << ", config=" << config.id();
return nullptr; return nullptr;
} }
if (!config.tls().ca_file().empty()) { if (config.has_tls()) resolveTlsFiles(config.mutable_tls());
config.mutable_tls()->set_ca_file( for (auto& platform : *config.mutable_platforms()) {
ConfigHelper::resolveConfigFile(config.tls().ca_file())); if (platform.has_tls()) resolveTlsFiles(platform.mutable_tls());
}
if (!config.tls().certificate_file().empty()) {
config.mutable_tls()->set_certificate_file(
ConfigHelper::resolveConfigFile(config.tls().certificate_file()));
}
if (!config.tls().private_key_file().empty()) {
config.mutable_tls()->set_private_key_file(
ConfigHelper::resolveConfigFile(config.tls().private_key_file()));
} }
if (config.software_version().empty()) { if (config.software_version().empty()) {
config.set_software_version(device::DeviceManager::getInstance().version()); config.set_software_version(device::DeviceManager::getInstance().version());
@ -51,7 +147,19 @@ std::shared_ptr<Task> createQuicEdgeTask(const config::TaskConfigEntry& entry)
} // namespace } // namespace
QuicEdgeTask::QuicEdgeTask(const config::QuicEdgeConfig& config) QuicEdgeTask::QuicEdgeTask(const config::QuicEdgeConfig& config)
: config_(config), id_(config.id()) : QuicEdgeTask(
config,
[](config::QuicEdgeConfig platform_config) {
return std::make_unique<quic_edge::QuicEdgeService>(
std::move(platform_config));
})
{
}
QuicEdgeTask::QuicEdgeTask(const config::QuicEdgeConfig& config,
ServiceFactory service_factory)
: config_(config), id_(config.id()),
service_factory_(std::move(service_factory))
{ {
} }
@ -68,13 +176,40 @@ bool QuicEdgeTask::init()
state_ = TaskState::FAILED; state_ = TaskState::FAILED;
return false; return false;
} }
service_ = std::make_unique<quic_edge::QuicEdgeService>(config_);
std::vector<PlatformConfig> platform_configs;
std::string error; std::string error;
if (!service_->initialize(&error)) { if (!service_factory_) {
last_error_ = "QUIC edge service factory is empty";
state_ = TaskState::FAILED;
return false;
}
if (!expandPlatformConfigs(config_, &platform_configs, &error)) {
last_error_ = std::move(error); last_error_ = std::move(error);
state_ = TaskState::FAILED; state_ = TaskState::FAILED;
return false; return false;
} }
std::vector<PlatformService> initialized_services;
initialized_services.reserve(platform_configs.size());
for (auto& platform_config : platform_configs) {
auto service = service_factory_(platform_config.config);
if (!service) {
last_error_ = "failed to create QUIC edge service for platform " +
platform_config.id;
state_ = TaskState::FAILED;
return false;
}
if (!service->initialize(&error)) {
last_error_ = "platform " + platform_config.id + ": " + error;
state_ = TaskState::FAILED;
return false;
}
initialized_services.push_back(PlatformService{
std::move(platform_config.id), platform_config.media_enabled,
std::move(platform_config.config), std::move(service)});
}
services_ = std::move(initialized_services);
last_error_.clear(); last_error_.clear();
state_ = TaskState::IDLE; state_ = TaskState::IDLE;
return true; return true;
@ -83,21 +218,34 @@ bool QuicEdgeTask::init()
bool QuicEdgeTask::start() bool QuicEdgeTask::start()
{ {
std::lock_guard lock(mutex_); std::lock_guard lock(mutex_);
if (state_ == TaskState::RUNNING) return true; if (state_ == TaskState::RUNNING) {
if ((state_ != TaskState::IDLE && state_ != TaskState::STOPPED) || !service_) { return true;
}
if ((state_ != TaskState::IDLE && state_ != TaskState::STOPPED) ||
services_.empty()) {
last_error_ = "QUIC edge task is not initialized"; last_error_ = "QUIC edge task is not initialized";
state_ = TaskState::FAILED; state_ = TaskState::FAILED;
return false; return false;
} }
std::string error;
if (!service_->start(&error)) { std::size_t started_services = 0U;
last_error_ = std::move(error); for (auto& platform : services_) {
state_ = TaskState::FAILED; std::string error;
return false; if (!platform.service->start(&error)) {
for (std::size_t index = 0U;
index < started_services; ++index) {
services_[index].service->stop();
}
last_error_ = "platform " + platform.id + ": " + error;
state_ = TaskState::FAILED;
return false;
}
++started_services;
} }
last_error_.clear(); last_error_.clear();
state_ = TaskState::RUNNING; state_ = TaskState::RUNNING;
CMVR_LOG(INFO) << "[QuicEdgeTask] Started, id=" << id_; CMVR_LOG(INFO) << "[QuicEdgeTask] Started, id=" << id_
<< ", platforms=" << services_.size();
return true; return true;
} }
@ -110,17 +258,39 @@ bool QuicEdgeTask::step(const double dt)
void QuicEdgeTask::stop() void QuicEdgeTask::stop()
{ {
std::lock_guard lock(mutex_); std::lock_guard lock(mutex_);
// Keep ownership stable for the complete stop. init() may replace the // stop() is the task lifecycle terminator used by TaskManager shutdown.
// unique service instance and therefore must not race a raw pointer here. // Unlike StopAll's stopActivity(), it intentionally tears down transport.
if (service_) service_->stop(); for (auto& platform : services_) platform.service->stop();
if (state_ != TaskState::FAILED) state_ = TaskState::STOPPED; if (state_ != TaskState::FAILED) state_ = TaskState::STOPPED;
} }
bool QuicEdgeTask::stopActivity()
{
std::lock_guard lock(mutex_);
if (services_.empty() || state_ == TaskState::FAILED) {
return false;
}
// System StopAll must preserve the QUIC presence channel. Only old media
// subscriptions are fenced; registration and heartbeat stay online.
bool all_stopped = true;
for (auto& platform : services_) {
if (!platform.service->interruptMediaActivities()) {
all_stopped = false;
}
}
return all_stopped;
}
TaskState QuicEdgeTask::mappedState() const TaskState QuicEdgeTask::mappedState() const
{ {
if (!service_ || state_ != TaskState::RUNNING) return state_; if (services_.empty() || state_ != TaskState::RUNNING) return state_;
return service_->state() == quic_edge::QuicEdgeServiceState::FAILED for (const auto& platform : services_) {
? TaskState::FAILED : state_; if (platform.service->state() ==
quic_edge::QuicEdgeServiceState::FAILED) {
return TaskState::FAILED;
}
}
return state_;
} }
TaskState QuicEdgeTask::state() const TaskState QuicEdgeTask::state() const
@ -154,31 +324,38 @@ std::string QuicEdgeTask::detailStatusString() const
std::lock_guard lock(mutex_); std::lock_guard lock(mutex_);
std::ostringstream output; std::ostringstream output;
output << taskStateToString(mappedState()); output << taskStateToString(mappedState());
if (service_) { if (!services_.empty()) {
const auto stats = service_->stats(); output << " platforms=" << services_.size();
const auto service_status = service_->status(); for (const auto& platform : services_) {
output << " service=" << quic_edge::toString(service_->state()) const auto stats = platform.service->stats();
<< " target=" << config_.server_host() << ':' << config_.server_port() const auto service_status = platform.service->status();
<< " node_id=" << service_status.node_id output << " platform[" << platform.id << "]={"
<< " registered=" << service_status.registered << "service=" << quic_edge::toString(platform.service->state())
<< " connections=" << stats.successful_connections << ",target=" << platform.config.server_host() << ':'
<< " registrations=" << stats.registrations_accepted << platform.config.server_port()
<< " heartbeat_sequence=" << service_status.heartbeat_sequence << ",media_enabled=" << platform.media_enabled
<< " heartbeat_acks=" << stats.heartbeats_acknowledged << ",node_id=" << service_status.node_id
<< " media_tracks=" << service_status.active_media_tracks << ",registered=" << service_status.registered
<< " frames=" << stats.frames_queued << ",connections=" << stats.successful_connections
<< " datagrams=" << stats.datagrams_queued; << ",registrations=" << stats.registrations_accepted
if (!service_status.session_id.empty()) { << ",heartbeat_sequence=" << service_status.heartbeat_sequence
output << " session=" << service_status.session_id; << ",heartbeat_acks=" << stats.heartbeats_acknowledged
<< ",media_tracks=" << service_status.active_media_tracks
<< ",frames=" << stats.frames_queued
<< ",datagrams=" << stats.datagrams_queued;
if (!service_status.session_id.empty()) {
output << ",session=" << service_status.session_id;
}
if (!service_status.observed_source_ip.empty()) {
output << ",observed_ip=" << service_status.observed_source_ip;
}
if (!service_status.last_media_error.empty()) {
output << ",media_error=" << service_status.last_media_error;
}
const std::string service_error = platform.service->lastError();
if (!service_error.empty()) output << ",error=" << service_error;
output << '}';
} }
if (!service_status.observed_source_ip.empty()) {
output << " observed_ip=" << service_status.observed_source_ip;
}
if (!service_status.last_media_error.empty()) {
output << " media_error=" << service_status.last_media_error;
}
const std::string service_error = service_->lastError();
if (!service_error.empty()) output << " error=" << service_error;
} else if (!last_error_.empty()) { } else if (!last_error_.empty()) {
output << " error=" << last_error_; output << " error=" << last_error_;
} }

View File

@ -1,7 +1,237 @@
#include <atomic>
#include <chrono>
#include <condition_variable>
#include <cstdint>
#include <deque>
#include <iostream> #include <iostream>
#include <memory>
#include <mutex>
#include <string>
#include <thread>
#include <utility>
#include <vector>
#include "cmvr/quic_edge/v1/quic_edge.pb.h"
#include "manager/media_source_hub/include/media_source_hub.h"
#include "service/quic_edge/include/control_framing.h"
#include "task/quic_edge_task/include/quic_edge_task.h" #include "task/quic_edge_task/include/quic_edge_task.h"
namespace {
using Clock = std::chrono::steady_clock;
using QuicEdgeService = cmvr::quic_edge::QuicEdgeService;
class HeartbeatTransport final : public cmvr::quic_edge::QuicTransport {
public:
explicit HeartbeatTransport(std::string platform_id)
: platform_id_(std::move(platform_id))
{
}
bool connect(const cmvr::config::QuicEdgeConfig&,
std::chrono::milliseconds,
std::string*) override
{
connected_.store(true);
return true;
}
void disconnect() override
{
connected_.store(false);
condition_.notify_all();
}
bool isConnected() const override { return connected_.load(); }
std::size_t maximumDatagramBytes() const override { return 1200U; }
std::size_t maximumDatagramBatchPackets() const override { return 32U; }
cmvr::quic_edge::TransportSendResult sendControl(
std::vector<std::uint8_t> framed_message,
std::string*) override
{
if (!connected_.load()) {
return cmvr::quic_edge::TransportSendResult::DISCONNECTED;
}
std::vector<std::vector<std::uint8_t>> frames;
std::string error;
cmvr::quic_edge::ControlFrameDecoder decoder(1024U * 1024U);
if (!decoder.push(framed_message, &frames, &error) ||
frames.size() != 1U) {
return cmvr::quic_edge::TransportSendResult::ERROR;
}
cmvr::quic_edge::v1::EdgeControlEnvelope request;
if (!request.ParseFromArray(
frames.front().data(),
static_cast<int>(frames.front().size()))) {
return cmvr::quic_edge::TransportSendResult::ERROR;
}
cmvr::quic_edge::v1::EdgeControlEnvelope response;
response.set_protocol_version(cmvr::quic_edge::kProtocolVersion);
{
std::lock_guard lock(mutex_);
response.set_message_sequence(server_message_sequence_++);
if (request.has_node_register_request()) {
++registrations_;
auto* registration = response.mutable_node_register_response();
registration->set_accepted(true);
registration->set_session_id("session-" + platform_id_);
registration->set_heartbeat_interval_ms(250U);
} else if (request.has_node_heartbeat()) {
const auto& heartbeat = request.node_heartbeat();
++heartbeats_;
last_heartbeat_sequence_.store(heartbeat.sequence());
auto* ack = response.mutable_node_heartbeat_ack();
ack->set_accepted(true);
ack->set_session_id(heartbeat.session_id());
ack->set_acknowledged_sequence(heartbeat.sequence());
} else {
return cmvr::quic_edge::TransportSendResult::ERROR;
}
if (!enqueueResponse(response)) {
return cmvr::quic_edge::TransportSendResult::ERROR;
}
}
condition_.notify_all();
return cmvr::quic_edge::TransportSendResult::QUEUED;
}
cmvr::quic_edge::TransportReceiveResult receiveControl(
std::vector<std::uint8_t>* chunk,
const std::chrono::milliseconds timeout,
std::string*) override
{
if (!chunk) return cmvr::quic_edge::TransportReceiveResult::ERROR;
std::unique_lock lock(mutex_);
condition_.wait_for(lock, timeout, [this] {
return !responses_.empty() || !connected_.load();
});
if (!responses_.empty()) {
*chunk = std::move(responses_.front());
responses_.pop_front();
return cmvr::quic_edge::TransportReceiveResult::DATA;
}
return connected_.load()
? cmvr::quic_edge::TransportReceiveResult::TIMEOUT
: cmvr::quic_edge::TransportReceiveResult::DISCONNECTED;
}
cmvr::quic_edge::TransportSendResult sendDatagramBatch(
std::vector<cmvr::quic_edge::DatagramPacket>,
std::string*) override
{
return connected_.load()
? cmvr::quic_edge::TransportSendResult::QUEUED
: cmvr::quic_edge::TransportSendResult::DISCONNECTED;
}
std::uint64_t registrations() const { return registrations_.load(); }
std::uint64_t heartbeats() const { return heartbeats_.load(); }
std::uint64_t lastHeartbeatSequence() const
{
return last_heartbeat_sequence_.load();
}
private:
bool enqueueResponse(
const cmvr::quic_edge::v1::EdgeControlEnvelope& response)
{
std::string serialized;
if (!response.SerializeToString(&serialized)) return false;
std::vector<std::uint8_t> framed;
std::string error;
if (!cmvr::quic_edge::ControlFrameEncoder::encode(
reinterpret_cast<const std::uint8_t*>(serialized.data()),
serialized.size(), 1024U * 1024U, &framed, &error)) {
return false;
}
responses_.push_back(std::move(framed));
return true;
}
std::string platform_id_;
std::atomic<bool> connected_{false};
std::atomic<std::uint64_t> registrations_{0U};
std::atomic<std::uint64_t> heartbeats_{0U};
std::atomic<std::uint64_t> last_heartbeat_sequence_{0U};
mutable std::mutex mutex_;
std::condition_variable condition_;
std::deque<std::vector<std::uint8_t>> responses_;
std::uint64_t server_message_sequence_{0U};
};
template <typename Predicate>
bool waitUntil(const std::chrono::milliseconds timeout, Predicate predicate)
{
const auto deadline = Clock::now() + timeout;
while (Clock::now() < deadline) {
if (predicate()) return true;
std::this_thread::sleep_for(std::chrono::milliseconds(5));
}
return predicate();
}
cmvr::config::QuicEdgeConfig validConfig()
{
cmvr::config::QuicEdgeConfig config;
config.set_id("quic-admission-test");
config.set_server_host("127.0.0.1");
config.set_server_port(4433U);
config.set_alpn("cmvr-quic-edge/1");
config.set_node_id("test-node");
config.set_robot_id("test-robot");
config.set_software_version("test-version");
config.set_grpc_endpoint_host("127.0.0.1");
config.set_grpc_endpoint_port(50052U);
config.set_heartbeat_interval_ms(250U);
config.set_control_response_timeout_ms(100U);
config.mutable_tls()->set_allow_insecure(true);
config.mutable_reconnect()->set_initial_delay_ms(5U);
config.mutable_reconnect()->set_maximum_delay_ms(20U);
config.mutable_reconnect()->set_multiplier(2.0);
config.mutable_reconnect()->set_connect_timeout_ms(20U);
config.set_maximum_datagram_bytes(1200U);
config.set_maximum_control_frame_bytes(4096U);
config.set_maximum_frame_bytes(32U * 1024U);
config.set_datagram_send_queue_depth(32U);
config.set_media_poll_interval_ms(1U);
return config;
}
cmvr::config::QuicEdgeConfig multiPlatformConfig()
{
auto config = validConfig();
config.set_id("quic-multi-platform-test");
config.clear_server_host();
config.clear_server_port();
config.clear_tls();
auto* platform_a = config.add_platforms();
platform_a->set_id("platform-a");
platform_a->set_server_host("192.0.2.10");
platform_a->set_server_port(4433U);
platform_a->mutable_tls()->set_allow_insecure(true);
auto* platform_b = config.add_platforms();
platform_b->set_id("platform-b");
platform_b->set_server_host("198.51.100.20");
platform_b->set_server_port(4434U);
platform_b->mutable_tls()->set_allow_insecure(true);
platform_b->set_enable_media(true);
auto* disabled_track = config.add_tracks();
disabled_track->set_track_id(1U);
disabled_track->set_source_kind(
cmvr::config::QuicEdgeTrackConfig::SOURCE_KIND_CAMERA);
disabled_track->set_device_id("disabled-test-camera");
disabled_track->set_enable(false);
return config;
}
} // namespace
int main() int main()
{ {
cmvr::config::QuicEdgeConfig config; cmvr::config::QuicEdgeConfig config;
@ -17,6 +247,95 @@ int main()
std::cerr << "failed QUIC task did not preserve its failure state\n"; std::cerr << "failed QUIC task did not preserve its failure state\n";
return 1; return 1;
} }
if (task.stopActivity()) {
std::cerr << "failed QUIC task reported a confirmed activity stop\n";
return 1;
}
cmvr::media::MediaSourceHub media_hub;
std::vector<HeartbeatTransport*> transports;
std::vector<QuicEdgeService*> services;
std::vector<cmvr::config::QuicEdgeConfig> expanded_configs;
cmvr::task::QuicEdgeTask multi_platform_task(
multiPlatformConfig(),
[&](cmvr::config::QuicEdgeConfig platform_config) {
expanded_configs.push_back(platform_config);
auto transport = std::make_unique<HeartbeatTransport>(
platform_config.server_host());
transports.push_back(transport.get());
auto service = std::make_unique<QuicEdgeService>(
std::move(platform_config), std::move(transport), media_hub,
[] { return cmvr::device::DeviceManagerSnapshot{}; });
services.push_back(service.get());
return service;
});
if (!multi_platform_task.init() || expanded_configs.size() != 2U ||
transports.size() != 2U || services.size() != 2U) {
std::cerr << "multi-platform QUIC task did not create two services: "
<< multi_platform_task.detailStatusString() << '\n';
return 1;
}
if (expanded_configs[0].platforms_size() != 0 ||
expanded_configs[1].platforms_size() != 0 ||
expanded_configs[0].server_host() != "192.0.2.10" ||
expanded_configs[1].server_host() != "198.51.100.20" ||
expanded_configs[0].tracks_size() != 0 ||
expanded_configs[1].tracks_size() != 1) {
std::cerr << "multi-platform QUIC task expanded invalid service configs\n";
return 1;
}
if (!multi_platform_task.start()) {
std::cerr << "multi-platform QUIC task did not start: "
<< multi_platform_task.detailStatusString() << '\n';
return 1;
}
const bool both_platforms_online = waitUntil(
std::chrono::seconds(2), [&] {
return transports[0]->registrations() >= 1U &&
transports[1]->registrations() >= 1U &&
transports[0]->heartbeats() >= 1U &&
transports[1]->heartbeats() >= 1U &&
services[0]->stats().heartbeats_acknowledged >= 1U &&
services[1]->stats().heartbeats_acknowledged >= 1U;
});
if (!both_platforms_online ||
transports[0]->lastHeartbeatSequence() != 1U ||
transports[1]->lastHeartbeatSequence() != 1U) {
std::cerr << "both platforms did not independently ACK a heartbeat: "
<< multi_platform_task.detailStatusString() << '\n';
return 1;
}
const std::string multi_status = multi_platform_task.detailStatusString();
if (multi_status.find("platforms=2") == std::string::npos ||
multi_status.find("platform[platform-a]") == std::string::npos ||
multi_status.find("platform[platform-b]") == std::string::npos) {
std::cerr << "multi-platform QUIC status is incomplete: "
<< multi_status << '\n';
return 1;
}
multi_platform_task.stop();
if (multi_platform_task.state() != cmvr::task::TaskState::STOPPED) {
std::cerr << "multi-platform QUIC task did not stop cleanly\n";
return 1;
}
auto duplicate_endpoint_config = validConfig();
auto* duplicate_platform = duplicate_endpoint_config.add_platforms();
duplicate_platform->set_id("duplicate-primary");
duplicate_platform->set_server_host(
duplicate_endpoint_config.server_host());
duplicate_platform->set_server_port(
duplicate_endpoint_config.server_port());
duplicate_platform->mutable_tls()->set_allow_insecure(true);
cmvr::task::QuicEdgeTask duplicate_endpoint_task(
duplicate_endpoint_config);
if (duplicate_endpoint_task.init() ||
duplicate_endpoint_task.detailStatusString().find(
"duplicate QUIC edge platform endpoint") == std::string::npos) {
std::cerr << "duplicate QUIC platform endpoint was not rejected\n";
return 1;
}
std::cout << "quic_edge_task_test: PASS\n"; std::cout << "quic_edge_task_test: PASS\n";
return 0; return 0;
} }

View File

@ -1 +0,0 @@
libstdc++.so.6.0.25

View File

@ -1,3 +1,3 @@
MASTER0_DEVICE="a0:ad:9f:c4:c2:2c" MASTER0_DEVICE="00:e0:4c:93:b3:11"
DEVICE_MODULES="generic" DEVICE_MODULES="igc"
UPDOWN_INTERFACES="eno1" UPDOWN_INTERFACES="enp1s0"

View File

@ -40,7 +40,7 @@
#------------------------------------------------------------------------------ #------------------------------------------------------------------------------
ETHERCATCTL="/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/sbin/ethercatctl -c /home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/etc/sysconfig/ethercat" ETHERCATCTL="/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/sbin/ethercatctl -c /mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/etc/sysconfig/ethercat"
#------------------------------------------------------------------------------ #------------------------------------------------------------------------------

View File

@ -24,12 +24,12 @@
find_library(EtherCAT_LIBRARY find_library(EtherCAT_LIBRARY
NAMES ethercat NAMES ethercat
PATHS /home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/lib PATHS /mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/lib
) )
find_path(EtherCAT_INCLUDE_DIR find_path(EtherCAT_INCLUDE_DIR
NAMES ecrt.h NAMES ecrt.h
PATHS /home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/include PATHS /mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/include
) )
mark_as_advanced(EtherCAT_LIBRARY EtherCAT_INCLUDE_DIR) mark_as_advanced(EtherCAT_LIBRARY EtherCAT_INCLUDE_DIR)

View File

@ -38,4 +38,4 @@ dlopen=''
dlpreopen='' dlpreopen=''
# Directory that this library needs to be installed in: # Directory that this library needs to be installed in:
libdir='/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/lib' libdir='/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/lib'

View File

@ -21,10 +21,10 @@
# vim: tw=78 noexpandtab # vim: tw=78 noexpandtab
# #
prefix=/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0 prefix=/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0
exec_prefix=${prefix} exec_prefix=${prefix}
libdir=/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/lib libdir=/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/lib
includedir=/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/include includedir=/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/include
Name: libethercat Name: libethercat
Description: Client support library for the EtherCAT Master Description: Client support library for the EtherCAT Master

View File

@ -31,8 +31,8 @@ Description=EtherCAT Master Kernel Modules
[Service] [Service]
Type=oneshot Type=oneshot
RemainAfterExit=yes RemainAfterExit=yes
ExecStart=/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/sbin/ethercatctl start ExecStart=/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/sbin/ethercatctl start
ExecStop=/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/sbin/ethercatctl stop ExecStop=/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/sbin/ethercatctl stop
[Install] [Install]
WantedBy=multi-user.target WantedBy=multi-user.target

View File

@ -31,7 +31,7 @@ RMMOD="/sbin/rmmod"
MODINFO="/sbin/modinfo" MODINFO="/sbin/modinfo"
IP="/sbin/ip" IP="/sbin/ip"
ETHERCAT="/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/bin/ethercat" ETHERCAT="/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/bin/ethercat"
#------------------------------------------------------------------------------ #------------------------------------------------------------------------------
@ -39,7 +39,7 @@ if [ "$1" = "-c" ]; then
ETHERCAT_CONFIG="$2" ETHERCAT_CONFIG="$2"
COMMAND="$3" COMMAND="$3"
else else
ETHERCAT_CONFIG="/home/lgv/cmvr/0-workspace/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/etc/ethercat.conf" ETHERCAT_CONFIG="/mnt/data/cmvr/cmvr-es/dependency/x86/third_party/ethercat/v1.7.0/etc/ethercat.conf"
COMMAND="$1" COMMAND="$1"
fi fi

Binary file not shown.

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@ -0,0 +1,36 @@
/*
* AC-3 parser prototypes
* Copyright (c) 2003 Fabrice Bellard
* Copyright (c) 2003 Michael Niedermayer
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_AC3_PARSER_H
#define AVCODEC_AC3_PARSER_H
#include <stddef.h>
#include <stdint.h>
/**
* Extract the bitstream ID and the frame size from AC-3 data.
*/
int av_ac3_parse_header(const uint8_t *buf, size_t size,
uint8_t *bitstream_id, uint16_t *frame_size);
#endif /* AVCODEC_AC3_PARSER_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_ADTS_PARSER_H
#define AVCODEC_ADTS_PARSER_H
#include <stddef.h>
#include <stdint.h>
#define AV_AAC_ADTS_HEADER_SIZE 7
/**
* Extract the number of samples and frames from AAC data.
* @param[in] buf pointer to AAC data buffer
* @param[out] samples Pointer to where number of samples is written
* @param[out] frames Pointer to where number of frames is written
* @return Returns 0 on success, error code on failure.
*/
int av_adts_header_parse(const uint8_t *buf, uint32_t *samples,
uint8_t *frames);
#endif /* AVCODEC_ADTS_PARSER_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_AVDCT_H
#define AVCODEC_AVDCT_H
#include "libavutil/opt.h"
/**
* AVDCT context.
* @note function pointers can be NULL if the specific features have been
* disabled at build time.
*/
typedef struct AVDCT {
const AVClass *av_class;
void (*idct)(int16_t *block /* align 16 */);
/**
* IDCT input permutation.
* Several optimized IDCTs need a permutated input (relative to the
* normal order of the reference IDCT).
* This permutation must be performed before the idct_put/add.
* Note, normally this can be merged with the zigzag/alternate scan<br>
* An example to avoid confusion:
* - (->decode coeffs -> zigzag reorder -> dequant -> reference IDCT -> ...)
* - (x -> reference DCT -> reference IDCT -> x)
* - (x -> reference DCT -> simple_mmx_perm = idct_permutation
* -> simple_idct_mmx -> x)
* - (-> decode coeffs -> zigzag reorder -> simple_mmx_perm -> dequant
* -> simple_idct_mmx -> ...)
*/
uint8_t idct_permutation[64];
void (*fdct)(int16_t *block /* align 16 */);
/**
* DCT algorithm.
* must use AVOptions to set this field.
*/
int dct_algo;
/**
* IDCT algorithm.
* must use AVOptions to set this field.
*/
int idct_algo;
void (*get_pixels)(int16_t *block /* align 16 */,
const uint8_t *pixels /* align 8 */,
ptrdiff_t line_size);
int bits_per_sample;
void (*get_pixels_unaligned)(int16_t *block /* align 16 */,
const uint8_t *pixels,
ptrdiff_t line_size);
} AVDCT;
/**
* Allocates a AVDCT context.
* This needs to be initialized with avcodec_dct_init() after optionally
* configuring it with AVOptions.
*
* To free it use av_free()
*/
AVDCT *avcodec_dct_alloc(void);
int avcodec_dct_init(AVDCT *);
const AVClass *avcodec_dct_get_class(void);
#endif /* AVCODEC_AVDCT_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_AVFFT_H
#define AVCODEC_AVFFT_H
#include "libavutil/attributes.h"
#include "version_major.h"
#if FF_API_AVFFT
/**
* @file
* @ingroup lavc_fft
* FFT functions
*/
/**
* @defgroup lavc_fft FFT functions
* @ingroup lavc_misc
*
* @{
*/
typedef float FFTSample;
typedef struct FFTComplex {
FFTSample re, im;
} FFTComplex;
typedef struct FFTContext FFTContext;
/**
* Set up a complex FFT.
* @param nbits log2 of the length of the input array
* @param inverse if 0 perform the forward transform, if 1 perform the inverse
* @deprecated use av_tx_init from libavutil/tx.h with a type of AV_TX_FLOAT_FFT
*/
attribute_deprecated
FFTContext *av_fft_init(int nbits, int inverse);
/**
* Do the permutation needed BEFORE calling ff_fft_calc().
* @deprecated without replacement
*/
attribute_deprecated
void av_fft_permute(FFTContext *s, FFTComplex *z);
/**
* Do a complex FFT with the parameters defined in av_fft_init(). The
* input data must be permuted before. No 1.0/sqrt(n) normalization is done.
* @deprecated use the av_tx_fn value returned by av_tx_init, which also does permutation
*/
attribute_deprecated
void av_fft_calc(FFTContext *s, FFTComplex *z);
attribute_deprecated
void av_fft_end(FFTContext *s);
/**
* @deprecated use av_tx_init from libavutil/tx.h with a type of AV_TX_FLOAT_MDCT,
* with a flag of AV_TX_FULL_IMDCT for a replacement to av_imdct_calc.
*/
attribute_deprecated
FFTContext *av_mdct_init(int nbits, int inverse, double scale);
attribute_deprecated
void av_imdct_calc(FFTContext *s, FFTSample *output, const FFTSample *input);
attribute_deprecated
void av_imdct_half(FFTContext *s, FFTSample *output, const FFTSample *input);
attribute_deprecated
void av_mdct_calc(FFTContext *s, FFTSample *output, const FFTSample *input);
attribute_deprecated
void av_mdct_end(FFTContext *s);
/* Real Discrete Fourier Transform */
enum RDFTransformType {
DFT_R2C,
IDFT_C2R,
IDFT_R2C,
DFT_C2R,
};
typedef struct RDFTContext RDFTContext;
/**
* Set up a real FFT.
* @param nbits log2 of the length of the input array
* @param trans the type of transform
*
* @deprecated use av_tx_init from libavutil/tx.h with a type of AV_TX_FLOAT_RDFT
*/
attribute_deprecated
RDFTContext *av_rdft_init(int nbits, enum RDFTransformType trans);
attribute_deprecated
void av_rdft_calc(RDFTContext *s, FFTSample *data);
attribute_deprecated
void av_rdft_end(RDFTContext *s);
/* Discrete Cosine Transform */
typedef struct DCTContext DCTContext;
enum DCTTransformType {
DCT_II = 0,
DCT_III,
DCT_I,
DST_I,
};
/**
* Set up DCT.
*
* @param nbits size of the input array:
* (1 << nbits) for DCT-II, DCT-III and DST-I
* (1 << nbits) + 1 for DCT-I
* @param type the type of transform
*
* @note the first element of the input of DST-I is ignored
*
* @deprecated use av_tx_init from libavutil/tx.h with an appropriate type of AV_TX_FLOAT_DCT
*/
attribute_deprecated
DCTContext *av_dct_init(int nbits, enum DCTTransformType type);
attribute_deprecated
void av_dct_calc(DCTContext *s, FFTSample *data);
attribute_deprecated
void av_dct_end (DCTContext *s);
/**
* @}
*/
#endif /* FF_API_AVFFT */
#endif /* AVCODEC_AVFFT_H */

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/*
* Bitstream filters public API
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_BSF_H
#define AVCODEC_BSF_H
#include "libavutil/dict.h"
#include "libavutil/log.h"
#include "libavutil/rational.h"
#include "codec_id.h"
#include "codec_par.h"
#include "packet.h"
/**
* @defgroup lavc_bsf Bitstream filters
* @ingroup libavc
*
* Bitstream filters transform encoded media data without decoding it. This
* allows e.g. manipulating various header values. Bitstream filters operate on
* @ref AVPacket "AVPackets".
*
* The bitstream filtering API is centered around two structures:
* AVBitStreamFilter and AVBSFContext. The former represents a bitstream filter
* in abstract, the latter a specific filtering process. Obtain an
* AVBitStreamFilter using av_bsf_get_by_name() or av_bsf_iterate(), then pass
* it to av_bsf_alloc() to create an AVBSFContext. Fill in the user-settable
* AVBSFContext fields, as described in its documentation, then call
* av_bsf_init() to prepare the filter context for use.
*
* Submit packets for filtering using av_bsf_send_packet(), obtain filtered
* results with av_bsf_receive_packet(). When no more input packets will be
* sent, submit a NULL AVPacket to signal the end of the stream to the filter.
* av_bsf_receive_packet() will then return trailing packets, if any are
* produced by the filter.
*
* Finally, free the filter context with av_bsf_free().
* @{
*/
/**
* The bitstream filter state.
*
* This struct must be allocated with av_bsf_alloc() and freed with
* av_bsf_free().
*
* The fields in the struct will only be changed (by the caller or by the
* filter) as described in their documentation, and are to be considered
* immutable otherwise.
*/
typedef struct AVBSFContext {
/**
* A class for logging and AVOptions
*/
const AVClass *av_class;
/**
* The bitstream filter this context is an instance of.
*/
const struct AVBitStreamFilter *filter;
/**
* Opaque filter-specific private data. If filter->priv_class is non-NULL,
* this is an AVOptions-enabled struct.
*/
void *priv_data;
/**
* Parameters of the input stream. This field is allocated in
* av_bsf_alloc(), it needs to be filled by the caller before
* av_bsf_init().
*/
AVCodecParameters *par_in;
/**
* Parameters of the output stream. This field is allocated in
* av_bsf_alloc(), it is set by the filter in av_bsf_init().
*/
AVCodecParameters *par_out;
/**
* The timebase used for the timestamps of the input packets. Set by the
* caller before av_bsf_init().
*/
AVRational time_base_in;
/**
* The timebase used for the timestamps of the output packets. Set by the
* filter in av_bsf_init().
*/
AVRational time_base_out;
} AVBSFContext;
typedef struct AVBitStreamFilter {
const char *name;
/**
* A list of codec ids supported by the filter, terminated by
* AV_CODEC_ID_NONE.
* May be NULL, in that case the bitstream filter works with any codec id.
*/
const enum AVCodecID *codec_ids;
/**
* A class for the private data, used to declare bitstream filter private
* AVOptions. This field is NULL for bitstream filters that do not declare
* any options.
*
* If this field is non-NULL, the first member of the filter private data
* must be a pointer to AVClass, which will be set by libavcodec generic
* code to this class.
*/
const AVClass *priv_class;
} AVBitStreamFilter;
/**
* @return a bitstream filter with the specified name or NULL if no such
* bitstream filter exists.
*/
const AVBitStreamFilter *av_bsf_get_by_name(const char *name);
/**
* Iterate over all registered bitstream filters.
*
* @param opaque a pointer where libavcodec will store the iteration state. Must
* point to NULL to start the iteration.
*
* @return the next registered bitstream filter or NULL when the iteration is
* finished
*/
const AVBitStreamFilter *av_bsf_iterate(void **opaque);
/**
* Allocate a context for a given bitstream filter. The caller must fill in the
* context parameters as described in the documentation and then call
* av_bsf_init() before sending any data to the filter.
*
* @param filter the filter for which to allocate an instance.
* @param[out] ctx a pointer into which the pointer to the newly-allocated context
* will be written. It must be freed with av_bsf_free() after the
* filtering is done.
*
* @return 0 on success, a negative AVERROR code on failure
*/
int av_bsf_alloc(const AVBitStreamFilter *filter, AVBSFContext **ctx);
/**
* Prepare the filter for use, after all the parameters and options have been
* set.
*
* @param ctx a AVBSFContext previously allocated with av_bsf_alloc()
*/
int av_bsf_init(AVBSFContext *ctx);
/**
* Submit a packet for filtering.
*
* After sending each packet, the filter must be completely drained by calling
* av_bsf_receive_packet() repeatedly until it returns AVERROR(EAGAIN) or
* AVERROR_EOF.
*
* @param ctx an initialized AVBSFContext
* @param pkt the packet to filter. The bitstream filter will take ownership of
* the packet and reset the contents of pkt. pkt is not touched if an error occurs.
* If pkt is empty (i.e. NULL, or pkt->data is NULL and pkt->side_data_elems zero),
* it signals the end of the stream (i.e. no more non-empty packets will be sent;
* sending more empty packets does nothing) and will cause the filter to output
* any packets it may have buffered internally.
*
* @return
* - 0 on success.
* - AVERROR(EAGAIN) if packets need to be retrieved from the filter (using
* av_bsf_receive_packet()) before new input can be consumed.
* - Another negative AVERROR value if an error occurs.
*/
int av_bsf_send_packet(AVBSFContext *ctx, AVPacket *pkt);
/**
* Retrieve a filtered packet.
*
* @param ctx an initialized AVBSFContext
* @param[out] pkt this struct will be filled with the contents of the filtered
* packet. It is owned by the caller and must be freed using
* av_packet_unref() when it is no longer needed.
* This parameter should be "clean" (i.e. freshly allocated
* with av_packet_alloc() or unreffed with av_packet_unref())
* when this function is called. If this function returns
* successfully, the contents of pkt will be completely
* overwritten by the returned data. On failure, pkt is not
* touched.
*
* @return
* - 0 on success.
* - AVERROR(EAGAIN) if more packets need to be sent to the filter (using
* av_bsf_send_packet()) to get more output.
* - AVERROR_EOF if there will be no further output from the filter.
* - Another negative AVERROR value if an error occurs.
*
* @note one input packet may result in several output packets, so after sending
* a packet with av_bsf_send_packet(), this function needs to be called
* repeatedly until it stops returning 0. It is also possible for a filter to
* output fewer packets than were sent to it, so this function may return
* AVERROR(EAGAIN) immediately after a successful av_bsf_send_packet() call.
*/
int av_bsf_receive_packet(AVBSFContext *ctx, AVPacket *pkt);
/**
* Reset the internal bitstream filter state. Should be called e.g. when seeking.
*/
void av_bsf_flush(AVBSFContext *ctx);
/**
* Free a bitstream filter context and everything associated with it; write NULL
* into the supplied pointer.
*/
void av_bsf_free(AVBSFContext **ctx);
/**
* Get the AVClass for AVBSFContext. It can be used in combination with
* AV_OPT_SEARCH_FAKE_OBJ for examining options.
*
* @see av_opt_find().
*/
const AVClass *av_bsf_get_class(void);
/**
* Structure for chain/list of bitstream filters.
* Empty list can be allocated by av_bsf_list_alloc().
*/
typedef struct AVBSFList AVBSFList;
/**
* Allocate empty list of bitstream filters.
* The list must be later freed by av_bsf_list_free()
* or finalized by av_bsf_list_finalize().
*
* @return Pointer to @ref AVBSFList on success, NULL in case of failure
*/
AVBSFList *av_bsf_list_alloc(void);
/**
* Free list of bitstream filters.
*
* @param lst Pointer to pointer returned by av_bsf_list_alloc()
*/
void av_bsf_list_free(AVBSFList **lst);
/**
* Append bitstream filter to the list of bitstream filters.
*
* @param lst List to append to
* @param bsf Filter context to be appended
*
* @return >=0 on success, negative AVERROR in case of failure
*/
int av_bsf_list_append(AVBSFList *lst, AVBSFContext *bsf);
/**
* Construct new bitstream filter context given it's name and options
* and append it to the list of bitstream filters.
*
* @param lst List to append to
* @param bsf_name Name of the bitstream filter
* @param options Options for the bitstream filter, can be set to NULL
*
* @return >=0 on success, negative AVERROR in case of failure
*/
int av_bsf_list_append2(AVBSFList *lst, const char * bsf_name, AVDictionary **options);
/**
* Finalize list of bitstream filters.
*
* This function will transform @ref AVBSFList to single @ref AVBSFContext,
* so the whole chain of bitstream filters can be treated as single filter
* freshly allocated by av_bsf_alloc().
* If the call is successful, @ref AVBSFList structure is freed and lst
* will be set to NULL. In case of failure, caller is responsible for
* freeing the structure by av_bsf_list_free()
*
* @param lst Filter list structure to be transformed
* @param[out] bsf Pointer to be set to newly created @ref AVBSFContext structure
* representing the chain of bitstream filters
*
* @return >=0 on success, negative AVERROR in case of failure
*/
int av_bsf_list_finalize(AVBSFList **lst, AVBSFContext **bsf);
/**
* Parse string describing list of bitstream filters and create single
* @ref AVBSFContext describing the whole chain of bitstream filters.
* Resulting @ref AVBSFContext can be treated as any other @ref AVBSFContext freshly
* allocated by av_bsf_alloc().
*
* @param str String describing chain of bitstream filters in format
* `bsf1[=opt1=val1:opt2=val2][,bsf2]`
* @param[out] bsf Pointer to be set to newly created @ref AVBSFContext structure
* representing the chain of bitstream filters
*
* @return >=0 on success, negative AVERROR in case of failure
*/
int av_bsf_list_parse_str(const char *str, AVBSFContext **bsf);
/**
* Get null/pass-through bitstream filter.
*
* @param[out] bsf Pointer to be set to new instance of pass-through bitstream filter
*
* @return
*/
int av_bsf_get_null_filter(AVBSFContext **bsf);
/**
* @}
*/
#endif // AVCODEC_BSF_H

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/*
* AVCodec public API
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_CODEC_H
#define AVCODEC_CODEC_H
#include <stdint.h>
#include "libavutil/avutil.h"
#include "libavutil/hwcontext.h"
#include "libavutil/log.h"
#include "libavutil/pixfmt.h"
#include "libavutil/rational.h"
#include "libavutil/samplefmt.h"
#include "libavcodec/codec_id.h"
#include "libavcodec/version_major.h"
/**
* @addtogroup lavc_core
* @{
*/
/**
* Decoder can use draw_horiz_band callback.
*/
#define AV_CODEC_CAP_DRAW_HORIZ_BAND (1 << 0)
/**
* Codec uses get_buffer() or get_encode_buffer() for allocating buffers and
* supports custom allocators.
* If not set, it might not use get_buffer() or get_encode_buffer() at all, or
* use operations that assume the buffer was allocated by
* avcodec_default_get_buffer2 or avcodec_default_get_encode_buffer.
*/
#define AV_CODEC_CAP_DR1 (1 << 1)
/**
* Encoder or decoder requires flushing with NULL input at the end in order to
* give the complete and correct output.
*
* NOTE: If this flag is not set, the codec is guaranteed to never be fed with
* with NULL data. The user can still send NULL data to the public encode
* or decode function, but libavcodec will not pass it along to the codec
* unless this flag is set.
*
* Decoders:
* The decoder has a non-zero delay and needs to be fed with avpkt->data=NULL,
* avpkt->size=0 at the end to get the delayed data until the decoder no longer
* returns frames.
*
* Encoders:
* The encoder needs to be fed with NULL data at the end of encoding until the
* encoder no longer returns data.
*
* NOTE: For encoders implementing the AVCodec.encode2() function, setting this
* flag also means that the encoder must set the pts and duration for
* each output packet. If this flag is not set, the pts and duration will
* be determined by libavcodec from the input frame.
*/
#define AV_CODEC_CAP_DELAY (1 << 5)
/**
* Codec can be fed a final frame with a smaller size.
* This can be used to prevent truncation of the last audio samples.
*/
#define AV_CODEC_CAP_SMALL_LAST_FRAME (1 << 6)
#if FF_API_SUBFRAMES
/**
* Codec can output multiple frames per AVPacket
* Normally demuxers return one frame at a time, demuxers which do not do
* are connected to a parser to split what they return into proper frames.
* This flag is reserved to the very rare category of codecs which have a
* bitstream that cannot be split into frames without timeconsuming
* operations like full decoding. Demuxers carrying such bitstreams thus
* may return multiple frames in a packet. This has many disadvantages like
* prohibiting stream copy in many cases thus it should only be considered
* as a last resort.
*/
#define AV_CODEC_CAP_SUBFRAMES (1 << 8)
#endif
/**
* Codec is experimental and is thus avoided in favor of non experimental
* encoders
*/
#define AV_CODEC_CAP_EXPERIMENTAL (1 << 9)
/**
* Codec should fill in channel configuration and samplerate instead of container
*/
#define AV_CODEC_CAP_CHANNEL_CONF (1 << 10)
/**
* Codec supports frame-level multithreading.
*/
#define AV_CODEC_CAP_FRAME_THREADS (1 << 12)
/**
* Codec supports slice-based (or partition-based) multithreading.
*/
#define AV_CODEC_CAP_SLICE_THREADS (1 << 13)
/**
* Codec supports changed parameters at any point.
*/
#define AV_CODEC_CAP_PARAM_CHANGE (1 << 14)
/**
* Codec supports multithreading through a method other than slice- or
* frame-level multithreading. Typically this marks wrappers around
* multithreading-capable external libraries.
*/
#define AV_CODEC_CAP_OTHER_THREADS (1 << 15)
/**
* Audio encoder supports receiving a different number of samples in each call.
*/
#define AV_CODEC_CAP_VARIABLE_FRAME_SIZE (1 << 16)
/**
* Decoder is not a preferred choice for probing.
* This indicates that the decoder is not a good choice for probing.
* It could for example be an expensive to spin up hardware decoder,
* or it could simply not provide a lot of useful information about
* the stream.
* A decoder marked with this flag should only be used as last resort
* choice for probing.
*/
#define AV_CODEC_CAP_AVOID_PROBING (1 << 17)
/**
* Codec is backed by a hardware implementation. Typically used to
* identify a non-hwaccel hardware decoder. For information about hwaccels, use
* avcodec_get_hw_config() instead.
*/
#define AV_CODEC_CAP_HARDWARE (1 << 18)
/**
* Codec is potentially backed by a hardware implementation, but not
* necessarily. This is used instead of AV_CODEC_CAP_HARDWARE, if the
* implementation provides some sort of internal fallback.
*/
#define AV_CODEC_CAP_HYBRID (1 << 19)
/**
* This encoder can reorder user opaque values from input AVFrames and return
* them with corresponding output packets.
* @see AV_CODEC_FLAG_COPY_OPAQUE
*/
#define AV_CODEC_CAP_ENCODER_REORDERED_OPAQUE (1 << 20)
/**
* This encoder can be flushed using avcodec_flush_buffers(). If this flag is
* not set, the encoder must be closed and reopened to ensure that no frames
* remain pending.
*/
#define AV_CODEC_CAP_ENCODER_FLUSH (1 << 21)
/**
* The encoder is able to output reconstructed frame data, i.e. raw frames that
* would be produced by decoding the encoded bitstream.
*
* Reconstructed frame output is enabled by the AV_CODEC_FLAG_RECON_FRAME flag.
*/
#define AV_CODEC_CAP_ENCODER_RECON_FRAME (1 << 22)
/**
* AVProfile.
*/
typedef struct AVProfile {
int profile;
const char *name; ///< short name for the profile
} AVProfile;
/**
* AVCodec.
*/
typedef struct AVCodec {
/**
* Name of the codec implementation.
* The name is globally unique among encoders and among decoders (but an
* encoder and a decoder can share the same name).
* This is the primary way to find a codec from the user perspective.
*/
const char *name;
/**
* Descriptive name for the codec, meant to be more human readable than name.
* You should use the NULL_IF_CONFIG_SMALL() macro to define it.
*/
const char *long_name;
enum AVMediaType type;
enum AVCodecID id;
/**
* Codec capabilities.
* see AV_CODEC_CAP_*
*/
int capabilities;
uint8_t max_lowres; ///< maximum value for lowres supported by the decoder
const AVRational *supported_framerates; ///< array of supported framerates, or NULL if any, array is terminated by {0,0}
const enum AVPixelFormat *pix_fmts; ///< array of supported pixel formats, or NULL if unknown, array is terminated by -1
const int *supported_samplerates; ///< array of supported audio samplerates, or NULL if unknown, array is terminated by 0
const enum AVSampleFormat *sample_fmts; ///< array of supported sample formats, or NULL if unknown, array is terminated by -1
#if FF_API_OLD_CHANNEL_LAYOUT
/**
* @deprecated use ch_layouts instead
*/
attribute_deprecated
const uint64_t *channel_layouts; ///< array of support channel layouts, or NULL if unknown. array is terminated by 0
#endif
const AVClass *priv_class; ///< AVClass for the private context
const AVProfile *profiles; ///< array of recognized profiles, or NULL if unknown, array is terminated by {AV_PROFILE_UNKNOWN}
/**
* Group name of the codec implementation.
* This is a short symbolic name of the wrapper backing this codec. A
* wrapper uses some kind of external implementation for the codec, such
* as an external library, or a codec implementation provided by the OS or
* the hardware.
* If this field is NULL, this is a builtin, libavcodec native codec.
* If non-NULL, this will be the suffix in AVCodec.name in most cases
* (usually AVCodec.name will be of the form "<codec_name>_<wrapper_name>").
*/
const char *wrapper_name;
/**
* Array of supported channel layouts, terminated with a zeroed layout.
*/
const AVChannelLayout *ch_layouts;
} AVCodec;
/**
* Iterate over all registered codecs.
*
* @param opaque a pointer where libavcodec will store the iteration state. Must
* point to NULL to start the iteration.
*
* @return the next registered codec or NULL when the iteration is
* finished
*/
const AVCodec *av_codec_iterate(void **opaque);
/**
* Find a registered decoder with a matching codec ID.
*
* @param id AVCodecID of the requested decoder
* @return A decoder if one was found, NULL otherwise.
*/
const AVCodec *avcodec_find_decoder(enum AVCodecID id);
/**
* Find a registered decoder with the specified name.
*
* @param name name of the requested decoder
* @return A decoder if one was found, NULL otherwise.
*/
const AVCodec *avcodec_find_decoder_by_name(const char *name);
/**
* Find a registered encoder with a matching codec ID.
*
* @param id AVCodecID of the requested encoder
* @return An encoder if one was found, NULL otherwise.
*/
const AVCodec *avcodec_find_encoder(enum AVCodecID id);
/**
* Find a registered encoder with the specified name.
*
* @param name name of the requested encoder
* @return An encoder if one was found, NULL otherwise.
*/
const AVCodec *avcodec_find_encoder_by_name(const char *name);
/**
* @return a non-zero number if codec is an encoder, zero otherwise
*/
int av_codec_is_encoder(const AVCodec *codec);
/**
* @return a non-zero number if codec is a decoder, zero otherwise
*/
int av_codec_is_decoder(const AVCodec *codec);
/**
* Return a name for the specified profile, if available.
*
* @param codec the codec that is searched for the given profile
* @param profile the profile value for which a name is requested
* @return A name for the profile if found, NULL otherwise.
*/
const char *av_get_profile_name(const AVCodec *codec, int profile);
enum {
/**
* The codec supports this format via the hw_device_ctx interface.
*
* When selecting this format, AVCodecContext.hw_device_ctx should
* have been set to a device of the specified type before calling
* avcodec_open2().
*/
AV_CODEC_HW_CONFIG_METHOD_HW_DEVICE_CTX = 0x01,
/**
* The codec supports this format via the hw_frames_ctx interface.
*
* When selecting this format for a decoder,
* AVCodecContext.hw_frames_ctx should be set to a suitable frames
* context inside the get_format() callback. The frames context
* must have been created on a device of the specified type.
*
* When selecting this format for an encoder,
* AVCodecContext.hw_frames_ctx should be set to the context which
* will be used for the input frames before calling avcodec_open2().
*/
AV_CODEC_HW_CONFIG_METHOD_HW_FRAMES_CTX = 0x02,
/**
* The codec supports this format by some internal method.
*
* This format can be selected without any additional configuration -
* no device or frames context is required.
*/
AV_CODEC_HW_CONFIG_METHOD_INTERNAL = 0x04,
/**
* The codec supports this format by some ad-hoc method.
*
* Additional settings and/or function calls are required. See the
* codec-specific documentation for details. (Methods requiring
* this sort of configuration are deprecated and others should be
* used in preference.)
*/
AV_CODEC_HW_CONFIG_METHOD_AD_HOC = 0x08,
};
typedef struct AVCodecHWConfig {
/**
* For decoders, a hardware pixel format which that decoder may be
* able to decode to if suitable hardware is available.
*
* For encoders, a pixel format which the encoder may be able to
* accept. If set to AV_PIX_FMT_NONE, this applies to all pixel
* formats supported by the codec.
*/
enum AVPixelFormat pix_fmt;
/**
* Bit set of AV_CODEC_HW_CONFIG_METHOD_* flags, describing the possible
* setup methods which can be used with this configuration.
*/
int methods;
/**
* The device type associated with the configuration.
*
* Must be set for AV_CODEC_HW_CONFIG_METHOD_HW_DEVICE_CTX and
* AV_CODEC_HW_CONFIG_METHOD_HW_FRAMES_CTX, otherwise unused.
*/
enum AVHWDeviceType device_type;
} AVCodecHWConfig;
/**
* Retrieve supported hardware configurations for a codec.
*
* Values of index from zero to some maximum return the indexed configuration
* descriptor; all other values return NULL. If the codec does not support
* any hardware configurations then it will always return NULL.
*/
const AVCodecHWConfig *avcodec_get_hw_config(const AVCodec *codec, int index);
/**
* @}
*/
#endif /* AVCODEC_CODEC_H */

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/*
* Codec descriptors public API
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_CODEC_DESC_H
#define AVCODEC_CODEC_DESC_H
#include "libavutil/avutil.h"
#include "codec_id.h"
/**
* @addtogroup lavc_core
* @{
*/
/**
* This struct describes the properties of a single codec described by an
* AVCodecID.
* @see avcodec_descriptor_get()
*/
typedef struct AVCodecDescriptor {
enum AVCodecID id;
enum AVMediaType type;
/**
* Name of the codec described by this descriptor. It is non-empty and
* unique for each codec descriptor. It should contain alphanumeric
* characters and '_' only.
*/
const char *name;
/**
* A more descriptive name for this codec. May be NULL.
*/
const char *long_name;
/**
* Codec properties, a combination of AV_CODEC_PROP_* flags.
*/
int props;
/**
* MIME type(s) associated with the codec.
* May be NULL; if not, a NULL-terminated array of MIME types.
* The first item is always non-NULL and is the preferred MIME type.
*/
const char *const *mime_types;
/**
* If non-NULL, an array of profiles recognized for this codec.
* Terminated with AV_PROFILE_UNKNOWN.
*/
const struct AVProfile *profiles;
} AVCodecDescriptor;
/**
* Codec uses only intra compression.
* Video and audio codecs only.
*/
#define AV_CODEC_PROP_INTRA_ONLY (1 << 0)
/**
* Codec supports lossy compression. Audio and video codecs only.
* @note a codec may support both lossy and lossless
* compression modes
*/
#define AV_CODEC_PROP_LOSSY (1 << 1)
/**
* Codec supports lossless compression. Audio and video codecs only.
*/
#define AV_CODEC_PROP_LOSSLESS (1 << 2)
/**
* Codec supports frame reordering. That is, the coded order (the order in which
* the encoded packets are output by the encoders / stored / input to the
* decoders) may be different from the presentation order of the corresponding
* frames.
*
* For codecs that do not have this property set, PTS and DTS should always be
* equal.
*/
#define AV_CODEC_PROP_REORDER (1 << 3)
/**
* Video codec supports separate coding of fields in interlaced frames.
*/
#define AV_CODEC_PROP_FIELDS (1 << 4)
/**
* Subtitle codec is bitmap based
* Decoded AVSubtitle data can be read from the AVSubtitleRect->pict field.
*/
#define AV_CODEC_PROP_BITMAP_SUB (1 << 16)
/**
* Subtitle codec is text based.
* Decoded AVSubtitle data can be read from the AVSubtitleRect->ass field.
*/
#define AV_CODEC_PROP_TEXT_SUB (1 << 17)
/**
* @return descriptor for given codec ID or NULL if no descriptor exists.
*/
const AVCodecDescriptor *avcodec_descriptor_get(enum AVCodecID id);
/**
* Iterate over all codec descriptors known to libavcodec.
*
* @param prev previous descriptor. NULL to get the first descriptor.
*
* @return next descriptor or NULL after the last descriptor
*/
const AVCodecDescriptor *avcodec_descriptor_next(const AVCodecDescriptor *prev);
/**
* @return codec descriptor with the given name or NULL if no such descriptor
* exists.
*/
const AVCodecDescriptor *avcodec_descriptor_get_by_name(const char *name);
/**
* @}
*/
#endif // AVCODEC_CODEC_DESC_H

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/*
* Codec IDs
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_CODEC_ID_H
#define AVCODEC_CODEC_ID_H
#include "libavutil/avutil.h"
#include "libavutil/samplefmt.h"
#include "version_major.h"
/**
* @addtogroup lavc_core
* @{
*/
/**
* Identify the syntax and semantics of the bitstream.
* The principle is roughly:
* Two decoders with the same ID can decode the same streams.
* Two encoders with the same ID can encode compatible streams.
* There may be slight deviations from the principle due to implementation
* details.
*
* If you add a codec ID to this list, add it so that
* 1. no value of an existing codec ID changes (that would break ABI),
* 2. it is as close as possible to similar codecs
*
* After adding new codec IDs, do not forget to add an entry to the codec
* descriptor list and bump libavcodec minor version.
*/
enum AVCodecID {
AV_CODEC_ID_NONE,
/* video codecs */
AV_CODEC_ID_MPEG1VIDEO,
AV_CODEC_ID_MPEG2VIDEO, ///< preferred ID for MPEG-1/2 video decoding
AV_CODEC_ID_H261,
AV_CODEC_ID_H263,
AV_CODEC_ID_RV10,
AV_CODEC_ID_RV20,
AV_CODEC_ID_MJPEG,
AV_CODEC_ID_MJPEGB,
AV_CODEC_ID_LJPEG,
AV_CODEC_ID_SP5X,
AV_CODEC_ID_JPEGLS,
AV_CODEC_ID_MPEG4,
AV_CODEC_ID_RAWVIDEO,
AV_CODEC_ID_MSMPEG4V1,
AV_CODEC_ID_MSMPEG4V2,
AV_CODEC_ID_MSMPEG4V3,
AV_CODEC_ID_WMV1,
AV_CODEC_ID_WMV2,
AV_CODEC_ID_H263P,
AV_CODEC_ID_H263I,
AV_CODEC_ID_FLV1,
AV_CODEC_ID_SVQ1,
AV_CODEC_ID_SVQ3,
AV_CODEC_ID_DVVIDEO,
AV_CODEC_ID_HUFFYUV,
AV_CODEC_ID_CYUV,
AV_CODEC_ID_H264,
AV_CODEC_ID_INDEO3,
AV_CODEC_ID_VP3,
AV_CODEC_ID_THEORA,
AV_CODEC_ID_ASV1,
AV_CODEC_ID_ASV2,
AV_CODEC_ID_FFV1,
AV_CODEC_ID_4XM,
AV_CODEC_ID_VCR1,
AV_CODEC_ID_CLJR,
AV_CODEC_ID_MDEC,
AV_CODEC_ID_ROQ,
AV_CODEC_ID_INTERPLAY_VIDEO,
AV_CODEC_ID_XAN_WC3,
AV_CODEC_ID_XAN_WC4,
AV_CODEC_ID_RPZA,
AV_CODEC_ID_CINEPAK,
AV_CODEC_ID_WS_VQA,
AV_CODEC_ID_MSRLE,
AV_CODEC_ID_MSVIDEO1,
AV_CODEC_ID_IDCIN,
AV_CODEC_ID_8BPS,
AV_CODEC_ID_SMC,
AV_CODEC_ID_FLIC,
AV_CODEC_ID_TRUEMOTION1,
AV_CODEC_ID_VMDVIDEO,
AV_CODEC_ID_MSZH,
AV_CODEC_ID_ZLIB,
AV_CODEC_ID_QTRLE,
AV_CODEC_ID_TSCC,
AV_CODEC_ID_ULTI,
AV_CODEC_ID_QDRAW,
AV_CODEC_ID_VIXL,
AV_CODEC_ID_QPEG,
AV_CODEC_ID_PNG,
AV_CODEC_ID_PPM,
AV_CODEC_ID_PBM,
AV_CODEC_ID_PGM,
AV_CODEC_ID_PGMYUV,
AV_CODEC_ID_PAM,
AV_CODEC_ID_FFVHUFF,
AV_CODEC_ID_RV30,
AV_CODEC_ID_RV40,
AV_CODEC_ID_VC1,
AV_CODEC_ID_WMV3,
AV_CODEC_ID_LOCO,
AV_CODEC_ID_WNV1,
AV_CODEC_ID_AASC,
AV_CODEC_ID_INDEO2,
AV_CODEC_ID_FRAPS,
AV_CODEC_ID_TRUEMOTION2,
AV_CODEC_ID_BMP,
AV_CODEC_ID_CSCD,
AV_CODEC_ID_MMVIDEO,
AV_CODEC_ID_ZMBV,
AV_CODEC_ID_AVS,
AV_CODEC_ID_SMACKVIDEO,
AV_CODEC_ID_NUV,
AV_CODEC_ID_KMVC,
AV_CODEC_ID_FLASHSV,
AV_CODEC_ID_CAVS,
AV_CODEC_ID_JPEG2000,
AV_CODEC_ID_VMNC,
AV_CODEC_ID_VP5,
AV_CODEC_ID_VP6,
AV_CODEC_ID_VP6F,
AV_CODEC_ID_TARGA,
AV_CODEC_ID_DSICINVIDEO,
AV_CODEC_ID_TIERTEXSEQVIDEO,
AV_CODEC_ID_TIFF,
AV_CODEC_ID_GIF,
AV_CODEC_ID_DXA,
AV_CODEC_ID_DNXHD,
AV_CODEC_ID_THP,
AV_CODEC_ID_SGI,
AV_CODEC_ID_C93,
AV_CODEC_ID_BETHSOFTVID,
AV_CODEC_ID_PTX,
AV_CODEC_ID_TXD,
AV_CODEC_ID_VP6A,
AV_CODEC_ID_AMV,
AV_CODEC_ID_VB,
AV_CODEC_ID_PCX,
AV_CODEC_ID_SUNRAST,
AV_CODEC_ID_INDEO4,
AV_CODEC_ID_INDEO5,
AV_CODEC_ID_MIMIC,
AV_CODEC_ID_RL2,
AV_CODEC_ID_ESCAPE124,
AV_CODEC_ID_DIRAC,
AV_CODEC_ID_BFI,
AV_CODEC_ID_CMV,
AV_CODEC_ID_MOTIONPIXELS,
AV_CODEC_ID_TGV,
AV_CODEC_ID_TGQ,
AV_CODEC_ID_TQI,
AV_CODEC_ID_AURA,
AV_CODEC_ID_AURA2,
AV_CODEC_ID_V210X,
AV_CODEC_ID_TMV,
AV_CODEC_ID_V210,
AV_CODEC_ID_DPX,
AV_CODEC_ID_MAD,
AV_CODEC_ID_FRWU,
AV_CODEC_ID_FLASHSV2,
AV_CODEC_ID_CDGRAPHICS,
AV_CODEC_ID_R210,
AV_CODEC_ID_ANM,
AV_CODEC_ID_BINKVIDEO,
AV_CODEC_ID_IFF_ILBM,
#define AV_CODEC_ID_IFF_BYTERUN1 AV_CODEC_ID_IFF_ILBM
AV_CODEC_ID_KGV1,
AV_CODEC_ID_YOP,
AV_CODEC_ID_VP8,
AV_CODEC_ID_PICTOR,
AV_CODEC_ID_ANSI,
AV_CODEC_ID_A64_MULTI,
AV_CODEC_ID_A64_MULTI5,
AV_CODEC_ID_R10K,
AV_CODEC_ID_MXPEG,
AV_CODEC_ID_LAGARITH,
AV_CODEC_ID_PRORES,
AV_CODEC_ID_JV,
AV_CODEC_ID_DFA,
AV_CODEC_ID_WMV3IMAGE,
AV_CODEC_ID_VC1IMAGE,
AV_CODEC_ID_UTVIDEO,
AV_CODEC_ID_BMV_VIDEO,
AV_CODEC_ID_VBLE,
AV_CODEC_ID_DXTORY,
AV_CODEC_ID_V410,
AV_CODEC_ID_XWD,
AV_CODEC_ID_CDXL,
AV_CODEC_ID_XBM,
AV_CODEC_ID_ZEROCODEC,
AV_CODEC_ID_MSS1,
AV_CODEC_ID_MSA1,
AV_CODEC_ID_TSCC2,
AV_CODEC_ID_MTS2,
AV_CODEC_ID_CLLC,
AV_CODEC_ID_MSS2,
AV_CODEC_ID_VP9,
AV_CODEC_ID_AIC,
AV_CODEC_ID_ESCAPE130,
AV_CODEC_ID_G2M,
AV_CODEC_ID_WEBP,
AV_CODEC_ID_HNM4_VIDEO,
AV_CODEC_ID_HEVC,
#define AV_CODEC_ID_H265 AV_CODEC_ID_HEVC
AV_CODEC_ID_FIC,
AV_CODEC_ID_ALIAS_PIX,
AV_CODEC_ID_BRENDER_PIX,
AV_CODEC_ID_PAF_VIDEO,
AV_CODEC_ID_EXR,
AV_CODEC_ID_VP7,
AV_CODEC_ID_SANM,
AV_CODEC_ID_SGIRLE,
AV_CODEC_ID_MVC1,
AV_CODEC_ID_MVC2,
AV_CODEC_ID_HQX,
AV_CODEC_ID_TDSC,
AV_CODEC_ID_HQ_HQA,
AV_CODEC_ID_HAP,
AV_CODEC_ID_DDS,
AV_CODEC_ID_DXV,
AV_CODEC_ID_SCREENPRESSO,
AV_CODEC_ID_RSCC,
AV_CODEC_ID_AVS2,
AV_CODEC_ID_PGX,
AV_CODEC_ID_AVS3,
AV_CODEC_ID_MSP2,
AV_CODEC_ID_VVC,
#define AV_CODEC_ID_H266 AV_CODEC_ID_VVC
AV_CODEC_ID_Y41P,
AV_CODEC_ID_AVRP,
AV_CODEC_ID_012V,
AV_CODEC_ID_AVUI,
#if FF_API_AYUV_CODECID
AV_CODEC_ID_AYUV,
#endif
AV_CODEC_ID_TARGA_Y216,
AV_CODEC_ID_V308,
AV_CODEC_ID_V408,
AV_CODEC_ID_YUV4,
AV_CODEC_ID_AVRN,
AV_CODEC_ID_CPIA,
AV_CODEC_ID_XFACE,
AV_CODEC_ID_SNOW,
AV_CODEC_ID_SMVJPEG,
AV_CODEC_ID_APNG,
AV_CODEC_ID_DAALA,
AV_CODEC_ID_CFHD,
AV_CODEC_ID_TRUEMOTION2RT,
AV_CODEC_ID_M101,
AV_CODEC_ID_MAGICYUV,
AV_CODEC_ID_SHEERVIDEO,
AV_CODEC_ID_YLC,
AV_CODEC_ID_PSD,
AV_CODEC_ID_PIXLET,
AV_CODEC_ID_SPEEDHQ,
AV_CODEC_ID_FMVC,
AV_CODEC_ID_SCPR,
AV_CODEC_ID_CLEARVIDEO,
AV_CODEC_ID_XPM,
AV_CODEC_ID_AV1,
AV_CODEC_ID_BITPACKED,
AV_CODEC_ID_MSCC,
AV_CODEC_ID_SRGC,
AV_CODEC_ID_SVG,
AV_CODEC_ID_GDV,
AV_CODEC_ID_FITS,
AV_CODEC_ID_IMM4,
AV_CODEC_ID_PROSUMER,
AV_CODEC_ID_MWSC,
AV_CODEC_ID_WCMV,
AV_CODEC_ID_RASC,
AV_CODEC_ID_HYMT,
AV_CODEC_ID_ARBC,
AV_CODEC_ID_AGM,
AV_CODEC_ID_LSCR,
AV_CODEC_ID_VP4,
AV_CODEC_ID_IMM5,
AV_CODEC_ID_MVDV,
AV_CODEC_ID_MVHA,
AV_CODEC_ID_CDTOONS,
AV_CODEC_ID_MV30,
AV_CODEC_ID_NOTCHLC,
AV_CODEC_ID_PFM,
AV_CODEC_ID_MOBICLIP,
AV_CODEC_ID_PHOTOCD,
AV_CODEC_ID_IPU,
AV_CODEC_ID_ARGO,
AV_CODEC_ID_CRI,
AV_CODEC_ID_SIMBIOSIS_IMX,
AV_CODEC_ID_SGA_VIDEO,
AV_CODEC_ID_GEM,
AV_CODEC_ID_VBN,
AV_CODEC_ID_JPEGXL,
AV_CODEC_ID_QOI,
AV_CODEC_ID_PHM,
AV_CODEC_ID_RADIANCE_HDR,
AV_CODEC_ID_WBMP,
AV_CODEC_ID_MEDIA100,
AV_CODEC_ID_VQC,
AV_CODEC_ID_PDV,
AV_CODEC_ID_EVC,
AV_CODEC_ID_RTV1,
AV_CODEC_ID_VMIX,
/* various PCM "codecs" */
AV_CODEC_ID_FIRST_AUDIO = 0x10000, ///< A dummy id pointing at the start of audio codecs
AV_CODEC_ID_PCM_S16LE = 0x10000,
AV_CODEC_ID_PCM_S16BE,
AV_CODEC_ID_PCM_U16LE,
AV_CODEC_ID_PCM_U16BE,
AV_CODEC_ID_PCM_S8,
AV_CODEC_ID_PCM_U8,
AV_CODEC_ID_PCM_MULAW,
AV_CODEC_ID_PCM_ALAW,
AV_CODEC_ID_PCM_S32LE,
AV_CODEC_ID_PCM_S32BE,
AV_CODEC_ID_PCM_U32LE,
AV_CODEC_ID_PCM_U32BE,
AV_CODEC_ID_PCM_S24LE,
AV_CODEC_ID_PCM_S24BE,
AV_CODEC_ID_PCM_U24LE,
AV_CODEC_ID_PCM_U24BE,
AV_CODEC_ID_PCM_S24DAUD,
AV_CODEC_ID_PCM_ZORK,
AV_CODEC_ID_PCM_S16LE_PLANAR,
AV_CODEC_ID_PCM_DVD,
AV_CODEC_ID_PCM_F32BE,
AV_CODEC_ID_PCM_F32LE,
AV_CODEC_ID_PCM_F64BE,
AV_CODEC_ID_PCM_F64LE,
AV_CODEC_ID_PCM_BLURAY,
AV_CODEC_ID_PCM_LXF,
AV_CODEC_ID_S302M,
AV_CODEC_ID_PCM_S8_PLANAR,
AV_CODEC_ID_PCM_S24LE_PLANAR,
AV_CODEC_ID_PCM_S32LE_PLANAR,
AV_CODEC_ID_PCM_S16BE_PLANAR,
AV_CODEC_ID_PCM_S64LE,
AV_CODEC_ID_PCM_S64BE,
AV_CODEC_ID_PCM_F16LE,
AV_CODEC_ID_PCM_F24LE,
AV_CODEC_ID_PCM_VIDC,
AV_CODEC_ID_PCM_SGA,
/* various ADPCM codecs */
AV_CODEC_ID_ADPCM_IMA_QT = 0x11000,
AV_CODEC_ID_ADPCM_IMA_WAV,
AV_CODEC_ID_ADPCM_IMA_DK3,
AV_CODEC_ID_ADPCM_IMA_DK4,
AV_CODEC_ID_ADPCM_IMA_WS,
AV_CODEC_ID_ADPCM_IMA_SMJPEG,
AV_CODEC_ID_ADPCM_MS,
AV_CODEC_ID_ADPCM_4XM,
AV_CODEC_ID_ADPCM_XA,
AV_CODEC_ID_ADPCM_ADX,
AV_CODEC_ID_ADPCM_EA,
AV_CODEC_ID_ADPCM_G726,
AV_CODEC_ID_ADPCM_CT,
AV_CODEC_ID_ADPCM_SWF,
AV_CODEC_ID_ADPCM_YAMAHA,
AV_CODEC_ID_ADPCM_SBPRO_4,
AV_CODEC_ID_ADPCM_SBPRO_3,
AV_CODEC_ID_ADPCM_SBPRO_2,
AV_CODEC_ID_ADPCM_THP,
AV_CODEC_ID_ADPCM_IMA_AMV,
AV_CODEC_ID_ADPCM_EA_R1,
AV_CODEC_ID_ADPCM_EA_R3,
AV_CODEC_ID_ADPCM_EA_R2,
AV_CODEC_ID_ADPCM_IMA_EA_SEAD,
AV_CODEC_ID_ADPCM_IMA_EA_EACS,
AV_CODEC_ID_ADPCM_EA_XAS,
AV_CODEC_ID_ADPCM_EA_MAXIS_XA,
AV_CODEC_ID_ADPCM_IMA_ISS,
AV_CODEC_ID_ADPCM_G722,
AV_CODEC_ID_ADPCM_IMA_APC,
AV_CODEC_ID_ADPCM_VIMA,
AV_CODEC_ID_ADPCM_AFC,
AV_CODEC_ID_ADPCM_IMA_OKI,
AV_CODEC_ID_ADPCM_DTK,
AV_CODEC_ID_ADPCM_IMA_RAD,
AV_CODEC_ID_ADPCM_G726LE,
AV_CODEC_ID_ADPCM_THP_LE,
AV_CODEC_ID_ADPCM_PSX,
AV_CODEC_ID_ADPCM_AICA,
AV_CODEC_ID_ADPCM_IMA_DAT4,
AV_CODEC_ID_ADPCM_MTAF,
AV_CODEC_ID_ADPCM_AGM,
AV_CODEC_ID_ADPCM_ARGO,
AV_CODEC_ID_ADPCM_IMA_SSI,
AV_CODEC_ID_ADPCM_ZORK,
AV_CODEC_ID_ADPCM_IMA_APM,
AV_CODEC_ID_ADPCM_IMA_ALP,
AV_CODEC_ID_ADPCM_IMA_MTF,
AV_CODEC_ID_ADPCM_IMA_CUNNING,
AV_CODEC_ID_ADPCM_IMA_MOFLEX,
AV_CODEC_ID_ADPCM_IMA_ACORN,
AV_CODEC_ID_ADPCM_XMD,
/* AMR */
AV_CODEC_ID_AMR_NB = 0x12000,
AV_CODEC_ID_AMR_WB,
/* RealAudio codecs*/
AV_CODEC_ID_RA_144 = 0x13000,
AV_CODEC_ID_RA_288,
/* various DPCM codecs */
AV_CODEC_ID_ROQ_DPCM = 0x14000,
AV_CODEC_ID_INTERPLAY_DPCM,
AV_CODEC_ID_XAN_DPCM,
AV_CODEC_ID_SOL_DPCM,
AV_CODEC_ID_SDX2_DPCM,
AV_CODEC_ID_GREMLIN_DPCM,
AV_CODEC_ID_DERF_DPCM,
AV_CODEC_ID_WADY_DPCM,
AV_CODEC_ID_CBD2_DPCM,
/* audio codecs */
AV_CODEC_ID_MP2 = 0x15000,
AV_CODEC_ID_MP3, ///< preferred ID for decoding MPEG audio layer 1, 2 or 3
AV_CODEC_ID_AAC,
AV_CODEC_ID_AC3,
AV_CODEC_ID_DTS,
AV_CODEC_ID_VORBIS,
AV_CODEC_ID_DVAUDIO,
AV_CODEC_ID_WMAV1,
AV_CODEC_ID_WMAV2,
AV_CODEC_ID_MACE3,
AV_CODEC_ID_MACE6,
AV_CODEC_ID_VMDAUDIO,
AV_CODEC_ID_FLAC,
AV_CODEC_ID_MP3ADU,
AV_CODEC_ID_MP3ON4,
AV_CODEC_ID_SHORTEN,
AV_CODEC_ID_ALAC,
AV_CODEC_ID_WESTWOOD_SND1,
AV_CODEC_ID_GSM, ///< as in Berlin toast format
AV_CODEC_ID_QDM2,
AV_CODEC_ID_COOK,
AV_CODEC_ID_TRUESPEECH,
AV_CODEC_ID_TTA,
AV_CODEC_ID_SMACKAUDIO,
AV_CODEC_ID_QCELP,
AV_CODEC_ID_WAVPACK,
AV_CODEC_ID_DSICINAUDIO,
AV_CODEC_ID_IMC,
AV_CODEC_ID_MUSEPACK7,
AV_CODEC_ID_MLP,
AV_CODEC_ID_GSM_MS, /* as found in WAV */
AV_CODEC_ID_ATRAC3,
AV_CODEC_ID_APE,
AV_CODEC_ID_NELLYMOSER,
AV_CODEC_ID_MUSEPACK8,
AV_CODEC_ID_SPEEX,
AV_CODEC_ID_WMAVOICE,
AV_CODEC_ID_WMAPRO,
AV_CODEC_ID_WMALOSSLESS,
AV_CODEC_ID_ATRAC3P,
AV_CODEC_ID_EAC3,
AV_CODEC_ID_SIPR,
AV_CODEC_ID_MP1,
AV_CODEC_ID_TWINVQ,
AV_CODEC_ID_TRUEHD,
AV_CODEC_ID_MP4ALS,
AV_CODEC_ID_ATRAC1,
AV_CODEC_ID_BINKAUDIO_RDFT,
AV_CODEC_ID_BINKAUDIO_DCT,
AV_CODEC_ID_AAC_LATM,
AV_CODEC_ID_QDMC,
AV_CODEC_ID_CELT,
AV_CODEC_ID_G723_1,
AV_CODEC_ID_G729,
AV_CODEC_ID_8SVX_EXP,
AV_CODEC_ID_8SVX_FIB,
AV_CODEC_ID_BMV_AUDIO,
AV_CODEC_ID_RALF,
AV_CODEC_ID_IAC,
AV_CODEC_ID_ILBC,
AV_CODEC_ID_OPUS,
AV_CODEC_ID_COMFORT_NOISE,
AV_CODEC_ID_TAK,
AV_CODEC_ID_METASOUND,
AV_CODEC_ID_PAF_AUDIO,
AV_CODEC_ID_ON2AVC,
AV_CODEC_ID_DSS_SP,
AV_CODEC_ID_CODEC2,
AV_CODEC_ID_FFWAVESYNTH,
AV_CODEC_ID_SONIC,
AV_CODEC_ID_SONIC_LS,
AV_CODEC_ID_EVRC,
AV_CODEC_ID_SMV,
AV_CODEC_ID_DSD_LSBF,
AV_CODEC_ID_DSD_MSBF,
AV_CODEC_ID_DSD_LSBF_PLANAR,
AV_CODEC_ID_DSD_MSBF_PLANAR,
AV_CODEC_ID_4GV,
AV_CODEC_ID_INTERPLAY_ACM,
AV_CODEC_ID_XMA1,
AV_CODEC_ID_XMA2,
AV_CODEC_ID_DST,
AV_CODEC_ID_ATRAC3AL,
AV_CODEC_ID_ATRAC3PAL,
AV_CODEC_ID_DOLBY_E,
AV_CODEC_ID_APTX,
AV_CODEC_ID_APTX_HD,
AV_CODEC_ID_SBC,
AV_CODEC_ID_ATRAC9,
AV_CODEC_ID_HCOM,
AV_CODEC_ID_ACELP_KELVIN,
AV_CODEC_ID_MPEGH_3D_AUDIO,
AV_CODEC_ID_SIREN,
AV_CODEC_ID_HCA,
AV_CODEC_ID_FASTAUDIO,
AV_CODEC_ID_MSNSIREN,
AV_CODEC_ID_DFPWM,
AV_CODEC_ID_BONK,
AV_CODEC_ID_MISC4,
AV_CODEC_ID_APAC,
AV_CODEC_ID_FTR,
AV_CODEC_ID_WAVARC,
AV_CODEC_ID_RKA,
AV_CODEC_ID_AC4,
AV_CODEC_ID_OSQ,
/* subtitle codecs */
AV_CODEC_ID_FIRST_SUBTITLE = 0x17000, ///< A dummy ID pointing at the start of subtitle codecs.
AV_CODEC_ID_DVD_SUBTITLE = 0x17000,
AV_CODEC_ID_DVB_SUBTITLE,
AV_CODEC_ID_TEXT, ///< raw UTF-8 text
AV_CODEC_ID_XSUB,
AV_CODEC_ID_SSA,
AV_CODEC_ID_MOV_TEXT,
AV_CODEC_ID_HDMV_PGS_SUBTITLE,
AV_CODEC_ID_DVB_TELETEXT,
AV_CODEC_ID_SRT,
AV_CODEC_ID_MICRODVD,
AV_CODEC_ID_EIA_608,
AV_CODEC_ID_JACOSUB,
AV_CODEC_ID_SAMI,
AV_CODEC_ID_REALTEXT,
AV_CODEC_ID_STL,
AV_CODEC_ID_SUBVIEWER1,
AV_CODEC_ID_SUBVIEWER,
AV_CODEC_ID_SUBRIP,
AV_CODEC_ID_WEBVTT,
AV_CODEC_ID_MPL2,
AV_CODEC_ID_VPLAYER,
AV_CODEC_ID_PJS,
AV_CODEC_ID_ASS,
AV_CODEC_ID_HDMV_TEXT_SUBTITLE,
AV_CODEC_ID_TTML,
AV_CODEC_ID_ARIB_CAPTION,
/* other specific kind of codecs (generally used for attachments) */
AV_CODEC_ID_FIRST_UNKNOWN = 0x18000, ///< A dummy ID pointing at the start of various fake codecs.
AV_CODEC_ID_TTF = 0x18000,
AV_CODEC_ID_SCTE_35, ///< Contain timestamp estimated through PCR of program stream.
AV_CODEC_ID_EPG,
AV_CODEC_ID_BINTEXT,
AV_CODEC_ID_XBIN,
AV_CODEC_ID_IDF,
AV_CODEC_ID_OTF,
AV_CODEC_ID_SMPTE_KLV,
AV_CODEC_ID_DVD_NAV,
AV_CODEC_ID_TIMED_ID3,
AV_CODEC_ID_BIN_DATA,
AV_CODEC_ID_SMPTE_2038,
AV_CODEC_ID_PROBE = 0x19000, ///< codec_id is not known (like AV_CODEC_ID_NONE) but lavf should attempt to identify it
AV_CODEC_ID_MPEG2TS = 0x20000, /**< _FAKE_ codec to indicate a raw MPEG-2 TS
* stream (only used by libavformat) */
AV_CODEC_ID_MPEG4SYSTEMS = 0x20001, /**< _FAKE_ codec to indicate a MPEG-4 Systems
* stream (only used by libavformat) */
AV_CODEC_ID_FFMETADATA = 0x21000, ///< Dummy codec for streams containing only metadata information.
AV_CODEC_ID_WRAPPED_AVFRAME = 0x21001, ///< Passthrough codec, AVFrames wrapped in AVPacket
/**
* Dummy null video codec, useful mainly for development and debugging.
* Null encoder/decoder discard all input and never return any output.
*/
AV_CODEC_ID_VNULL,
/**
* Dummy null audio codec, useful mainly for development and debugging.
* Null encoder/decoder discard all input and never return any output.
*/
AV_CODEC_ID_ANULL,
};
/**
* Get the type of the given codec.
*/
enum AVMediaType avcodec_get_type(enum AVCodecID codec_id);
/**
* Get the name of a codec.
* @return a static string identifying the codec; never NULL
*/
const char *avcodec_get_name(enum AVCodecID id);
/**
* Return codec bits per sample.
*
* @param[in] codec_id the codec
* @return Number of bits per sample or zero if unknown for the given codec.
*/
int av_get_bits_per_sample(enum AVCodecID codec_id);
/**
* Return codec bits per sample.
* Only return non-zero if the bits per sample is exactly correct, not an
* approximation.
*
* @param[in] codec_id the codec
* @return Number of bits per sample or zero if unknown for the given codec.
*/
int av_get_exact_bits_per_sample(enum AVCodecID codec_id);
/**
* Return a name for the specified profile, if available.
*
* @param codec_id the ID of the codec to which the requested profile belongs
* @param profile the profile value for which a name is requested
* @return A name for the profile if found, NULL otherwise.
*
* @note unlike av_get_profile_name(), which searches a list of profiles
* supported by a specific decoder or encoder implementation, this
* function searches the list of profiles from the AVCodecDescriptor
*/
const char *avcodec_profile_name(enum AVCodecID codec_id, int profile);
/**
* Return the PCM codec associated with a sample format.
* @param be endianness, 0 for little, 1 for big,
* -1 (or anything else) for native
* @return AV_CODEC_ID_PCM_* or AV_CODEC_ID_NONE
*/
enum AVCodecID av_get_pcm_codec(enum AVSampleFormat fmt, int be);
/**
* @}
*/
#endif // AVCODEC_CODEC_ID_H

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/*
* Codec parameters public API
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_CODEC_PAR_H
#define AVCODEC_CODEC_PAR_H
#include <stdint.h>
#include "libavutil/avutil.h"
#include "libavutil/channel_layout.h"
#include "libavutil/rational.h"
#include "libavutil/pixfmt.h"
#include "codec_id.h"
#include "defs.h"
#include "packet.h"
/**
* @addtogroup lavc_core
* @{
*/
/**
* This struct describes the properties of an encoded stream.
*
* sizeof(AVCodecParameters) is not a part of the public ABI, this struct must
* be allocated with avcodec_parameters_alloc() and freed with
* avcodec_parameters_free().
*/
typedef struct AVCodecParameters {
/**
* General type of the encoded data.
*/
enum AVMediaType codec_type;
/**
* Specific type of the encoded data (the codec used).
*/
enum AVCodecID codec_id;
/**
* Additional information about the codec (corresponds to the AVI FOURCC).
*/
uint32_t codec_tag;
/**
* Extra binary data needed for initializing the decoder, codec-dependent.
*
* Must be allocated with av_malloc() and will be freed by
* avcodec_parameters_free(). The allocated size of extradata must be at
* least extradata_size + AV_INPUT_BUFFER_PADDING_SIZE, with the padding
* bytes zeroed.
*/
uint8_t *extradata;
/**
* Size of the extradata content in bytes.
*/
int extradata_size;
/**
* - video: the pixel format, the value corresponds to enum AVPixelFormat.
* - audio: the sample format, the value corresponds to enum AVSampleFormat.
*/
int format;
/**
* The average bitrate of the encoded data (in bits per second).
*/
int64_t bit_rate;
/**
* The number of bits per sample in the codedwords.
*
* This is basically the bitrate per sample. It is mandatory for a bunch of
* formats to actually decode them. It's the number of bits for one sample in
* the actual coded bitstream.
*
* This could be for example 4 for ADPCM
* For PCM formats this matches bits_per_raw_sample
* Can be 0
*/
int bits_per_coded_sample;
/**
* This is the number of valid bits in each output sample. If the
* sample format has more bits, the least significant bits are additional
* padding bits, which are always 0. Use right shifts to reduce the sample
* to its actual size. For example, audio formats with 24 bit samples will
* have bits_per_raw_sample set to 24, and format set to AV_SAMPLE_FMT_S32.
* To get the original sample use "(int32_t)sample >> 8"."
*
* For ADPCM this might be 12 or 16 or similar
* Can be 0
*/
int bits_per_raw_sample;
/**
* Codec-specific bitstream restrictions that the stream conforms to.
*/
int profile;
int level;
/**
* Video only. The dimensions of the video frame in pixels.
*/
int width;
int height;
/**
* Video only. The aspect ratio (width / height) which a single pixel
* should have when displayed.
*
* When the aspect ratio is unknown / undefined, the numerator should be
* set to 0 (the denominator may have any value).
*/
AVRational sample_aspect_ratio;
/**
* Video only. The order of the fields in interlaced video.
*/
enum AVFieldOrder field_order;
/**
* Video only. Additional colorspace characteristics.
*/
enum AVColorRange color_range;
enum AVColorPrimaries color_primaries;
enum AVColorTransferCharacteristic color_trc;
enum AVColorSpace color_space;
enum AVChromaLocation chroma_location;
/**
* Video only. Number of delayed frames.
*/
int video_delay;
#if FF_API_OLD_CHANNEL_LAYOUT
/**
* Audio only. The channel layout bitmask. May be 0 if the channel layout is
* unknown or unspecified, otherwise the number of bits set must be equal to
* the channels field.
* @deprecated use ch_layout
*/
attribute_deprecated
uint64_t channel_layout;
/**
* Audio only. The number of audio channels.
* @deprecated use ch_layout.nb_channels
*/
attribute_deprecated
int channels;
#endif
/**
* Audio only. The number of audio samples per second.
*/
int sample_rate;
/**
* Audio only. The number of bytes per coded audio frame, required by some
* formats.
*
* Corresponds to nBlockAlign in WAVEFORMATEX.
*/
int block_align;
/**
* Audio only. Audio frame size, if known. Required by some formats to be static.
*/
int frame_size;
/**
* Audio only. The amount of padding (in samples) inserted by the encoder at
* the beginning of the audio. I.e. this number of leading decoded samples
* must be discarded by the caller to get the original audio without leading
* padding.
*/
int initial_padding;
/**
* Audio only. The amount of padding (in samples) appended by the encoder to
* the end of the audio. I.e. this number of decoded samples must be
* discarded by the caller from the end of the stream to get the original
* audio without any trailing padding.
*/
int trailing_padding;
/**
* Audio only. Number of samples to skip after a discontinuity.
*/
int seek_preroll;
/**
* Audio only. The channel layout and number of channels.
*/
AVChannelLayout ch_layout;
/**
* Video only. Number of frames per second, for streams with constant frame
* durations. Should be set to { 0, 1 } when some frames have differing
* durations or if the value is not known.
*
* @note This field correponds to values that are stored in codec-level
* headers and is typically overridden by container/transport-layer
* timestamps, when available. It should thus be used only as a last resort,
* when no higher-level timing information is available.
*/
AVRational framerate;
/**
* Additional data associated with the entire stream.
*/
AVPacketSideData *coded_side_data;
/**
* Amount of entries in @ref coded_side_data.
*/
int nb_coded_side_data;
} AVCodecParameters;
/**
* Allocate a new AVCodecParameters and set its fields to default values
* (unknown/invalid/0). The returned struct must be freed with
* avcodec_parameters_free().
*/
AVCodecParameters *avcodec_parameters_alloc(void);
/**
* Free an AVCodecParameters instance and everything associated with it and
* write NULL to the supplied pointer.
*/
void avcodec_parameters_free(AVCodecParameters **par);
/**
* Copy the contents of src to dst. Any allocated fields in dst are freed and
* replaced with newly allocated duplicates of the corresponding fields in src.
*
* @return >= 0 on success, a negative AVERROR code on failure.
*/
int avcodec_parameters_copy(AVCodecParameters *dst, const AVCodecParameters *src);
/**
* This function is the same as av_get_audio_frame_duration(), except it works
* with AVCodecParameters instead of an AVCodecContext.
*/
int av_get_audio_frame_duration2(AVCodecParameters *par, int frame_bytes);
/**
* @}
*/
#endif // AVCODEC_CODEC_PAR_H

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/*
* Direct3D11 HW acceleration
*
* copyright (c) 2009 Laurent Aimar
* copyright (c) 2015 Steve Lhomme
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_D3D11VA_H
#define AVCODEC_D3D11VA_H
/**
* @file
* @ingroup lavc_codec_hwaccel_d3d11va
* Public libavcodec D3D11VA header.
*/
#if !defined(_WIN32_WINNT) || _WIN32_WINNT < 0x0602
#undef _WIN32_WINNT
#define _WIN32_WINNT 0x0602
#endif
#include <stdint.h>
#include <d3d11.h>
/**
* @defgroup lavc_codec_hwaccel_d3d11va Direct3D11
* @ingroup lavc_codec_hwaccel
*
* @{
*/
#define FF_DXVA2_WORKAROUND_SCALING_LIST_ZIGZAG 1 ///< Work around for Direct3D11 and old UVD/UVD+ ATI video cards
#define FF_DXVA2_WORKAROUND_INTEL_CLEARVIDEO 2 ///< Work around for Direct3D11 and old Intel GPUs with ClearVideo interface
/**
* This structure is used to provides the necessary configurations and data
* to the Direct3D11 FFmpeg HWAccel implementation.
*
* The application must make it available as AVCodecContext.hwaccel_context.
*
* Use av_d3d11va_alloc_context() exclusively to allocate an AVD3D11VAContext.
*/
typedef struct AVD3D11VAContext {
/**
* D3D11 decoder object
*/
ID3D11VideoDecoder *decoder;
/**
* D3D11 VideoContext
*/
ID3D11VideoContext *video_context;
/**
* D3D11 configuration used to create the decoder
*/
D3D11_VIDEO_DECODER_CONFIG *cfg;
/**
* The number of surface in the surface array
*/
unsigned surface_count;
/**
* The array of Direct3D surfaces used to create the decoder
*/
ID3D11VideoDecoderOutputView **surface;
/**
* A bit field configuring the workarounds needed for using the decoder
*/
uint64_t workaround;
/**
* Private to the FFmpeg AVHWAccel implementation
*/
unsigned report_id;
/**
* Mutex to access video_context
*/
HANDLE context_mutex;
} AVD3D11VAContext;
/**
* Allocate an AVD3D11VAContext.
*
* @return Newly-allocated AVD3D11VAContext or NULL on failure.
*/
AVD3D11VAContext *av_d3d11va_alloc_context(void);
/**
* @}
*/
#endif /* AVCODEC_D3D11VA_H */

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/*
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_DEFS_H
#define AVCODEC_DEFS_H
/**
* @file
* @ingroup libavc
* Misc types and constants that do not belong anywhere else.
*/
#include <stdint.h>
#include <stdlib.h>
/**
* @ingroup lavc_decoding
* Required number of additionally allocated bytes at the end of the input bitstream for decoding.
* This is mainly needed because some optimized bitstream readers read
* 32 or 64 bit at once and could read over the end.<br>
* Note: If the first 23 bits of the additional bytes are not 0, then damaged
* MPEG bitstreams could cause overread and segfault.
*/
#define AV_INPUT_BUFFER_PADDING_SIZE 64
/**
* Verify checksums embedded in the bitstream (could be of either encoded or
* decoded data, depending on the format) and print an error message on mismatch.
* If AV_EF_EXPLODE is also set, a mismatching checksum will result in the
* decoder/demuxer returning an error.
*/
#define AV_EF_CRCCHECK (1<<0)
#define AV_EF_BITSTREAM (1<<1) ///< detect bitstream specification deviations
#define AV_EF_BUFFER (1<<2) ///< detect improper bitstream length
#define AV_EF_EXPLODE (1<<3) ///< abort decoding on minor error detection
#define AV_EF_IGNORE_ERR (1<<15) ///< ignore errors and continue
#define AV_EF_CAREFUL (1<<16) ///< consider things that violate the spec, are fast to calculate and have not been seen in the wild as errors
#define AV_EF_COMPLIANT (1<<17) ///< consider all spec non compliances as errors
#define AV_EF_AGGRESSIVE (1<<18) ///< consider things that a sane encoder/muxer should not do as an error
#define FF_COMPLIANCE_VERY_STRICT 2 ///< Strictly conform to an older more strict version of the spec or reference software.
#define FF_COMPLIANCE_STRICT 1 ///< Strictly conform to all the things in the spec no matter what consequences.
#define FF_COMPLIANCE_NORMAL 0
#define FF_COMPLIANCE_UNOFFICIAL -1 ///< Allow unofficial extensions
#define FF_COMPLIANCE_EXPERIMENTAL -2 ///< Allow nonstandardized experimental things.
#define AV_PROFILE_UNKNOWN -99
#define AV_PROFILE_RESERVED -100
#define AV_PROFILE_AAC_MAIN 0
#define AV_PROFILE_AAC_LOW 1
#define AV_PROFILE_AAC_SSR 2
#define AV_PROFILE_AAC_LTP 3
#define AV_PROFILE_AAC_HE 4
#define AV_PROFILE_AAC_HE_V2 28
#define AV_PROFILE_AAC_LD 22
#define AV_PROFILE_AAC_ELD 38
#define AV_PROFILE_MPEG2_AAC_LOW 128
#define AV_PROFILE_MPEG2_AAC_HE 131
#define AV_PROFILE_DNXHD 0
#define AV_PROFILE_DNXHR_LB 1
#define AV_PROFILE_DNXHR_SQ 2
#define AV_PROFILE_DNXHR_HQ 3
#define AV_PROFILE_DNXHR_HQX 4
#define AV_PROFILE_DNXHR_444 5
#define AV_PROFILE_DTS 20
#define AV_PROFILE_DTS_ES 30
#define AV_PROFILE_DTS_96_24 40
#define AV_PROFILE_DTS_HD_HRA 50
#define AV_PROFILE_DTS_HD_MA 60
#define AV_PROFILE_DTS_EXPRESS 70
#define AV_PROFILE_DTS_HD_MA_X 61
#define AV_PROFILE_DTS_HD_MA_X_IMAX 62
#define AV_PROFILE_EAC3_DDP_ATMOS 30
#define AV_PROFILE_TRUEHD_ATMOS 30
#define AV_PROFILE_MPEG2_422 0
#define AV_PROFILE_MPEG2_HIGH 1
#define AV_PROFILE_MPEG2_SS 2
#define AV_PROFILE_MPEG2_SNR_SCALABLE 3
#define AV_PROFILE_MPEG2_MAIN 4
#define AV_PROFILE_MPEG2_SIMPLE 5
#define AV_PROFILE_H264_CONSTRAINED (1<<9) // 8+1; constraint_set1_flag
#define AV_PROFILE_H264_INTRA (1<<11) // 8+3; constraint_set3_flag
#define AV_PROFILE_H264_BASELINE 66
#define AV_PROFILE_H264_CONSTRAINED_BASELINE (66|AV_PROFILE_H264_CONSTRAINED)
#define AV_PROFILE_H264_MAIN 77
#define AV_PROFILE_H264_EXTENDED 88
#define AV_PROFILE_H264_HIGH 100
#define AV_PROFILE_H264_HIGH_10 110
#define AV_PROFILE_H264_HIGH_10_INTRA (110|AV_PROFILE_H264_INTRA)
#define AV_PROFILE_H264_MULTIVIEW_HIGH 118
#define AV_PROFILE_H264_HIGH_422 122
#define AV_PROFILE_H264_HIGH_422_INTRA (122|AV_PROFILE_H264_INTRA)
#define AV_PROFILE_H264_STEREO_HIGH 128
#define AV_PROFILE_H264_HIGH_444 144
#define AV_PROFILE_H264_HIGH_444_PREDICTIVE 244
#define AV_PROFILE_H264_HIGH_444_INTRA (244|AV_PROFILE_H264_INTRA)
#define AV_PROFILE_H264_CAVLC_444 44
#define AV_PROFILE_VC1_SIMPLE 0
#define AV_PROFILE_VC1_MAIN 1
#define AV_PROFILE_VC1_COMPLEX 2
#define AV_PROFILE_VC1_ADVANCED 3
#define AV_PROFILE_MPEG4_SIMPLE 0
#define AV_PROFILE_MPEG4_SIMPLE_SCALABLE 1
#define AV_PROFILE_MPEG4_CORE 2
#define AV_PROFILE_MPEG4_MAIN 3
#define AV_PROFILE_MPEG4_N_BIT 4
#define AV_PROFILE_MPEG4_SCALABLE_TEXTURE 5
#define AV_PROFILE_MPEG4_SIMPLE_FACE_ANIMATION 6
#define AV_PROFILE_MPEG4_BASIC_ANIMATED_TEXTURE 7
#define AV_PROFILE_MPEG4_HYBRID 8
#define AV_PROFILE_MPEG4_ADVANCED_REAL_TIME 9
#define AV_PROFILE_MPEG4_CORE_SCALABLE 10
#define AV_PROFILE_MPEG4_ADVANCED_CODING 11
#define AV_PROFILE_MPEG4_ADVANCED_CORE 12
#define AV_PROFILE_MPEG4_ADVANCED_SCALABLE_TEXTURE 13
#define AV_PROFILE_MPEG4_SIMPLE_STUDIO 14
#define AV_PROFILE_MPEG4_ADVANCED_SIMPLE 15
#define AV_PROFILE_JPEG2000_CSTREAM_RESTRICTION_0 1
#define AV_PROFILE_JPEG2000_CSTREAM_RESTRICTION_1 2
#define AV_PROFILE_JPEG2000_CSTREAM_NO_RESTRICTION 32768
#define AV_PROFILE_JPEG2000_DCINEMA_2K 3
#define AV_PROFILE_JPEG2000_DCINEMA_4K 4
#define AV_PROFILE_VP9_0 0
#define AV_PROFILE_VP9_1 1
#define AV_PROFILE_VP9_2 2
#define AV_PROFILE_VP9_3 3
#define AV_PROFILE_HEVC_MAIN 1
#define AV_PROFILE_HEVC_MAIN_10 2
#define AV_PROFILE_HEVC_MAIN_STILL_PICTURE 3
#define AV_PROFILE_HEVC_REXT 4
#define AV_PROFILE_HEVC_SCC 9
#define AV_PROFILE_VVC_MAIN_10 1
#define AV_PROFILE_VVC_MAIN_10_444 33
#define AV_PROFILE_AV1_MAIN 0
#define AV_PROFILE_AV1_HIGH 1
#define AV_PROFILE_AV1_PROFESSIONAL 2
#define AV_PROFILE_MJPEG_HUFFMAN_BASELINE_DCT 0xc0
#define AV_PROFILE_MJPEG_HUFFMAN_EXTENDED_SEQUENTIAL_DCT 0xc1
#define AV_PROFILE_MJPEG_HUFFMAN_PROGRESSIVE_DCT 0xc2
#define AV_PROFILE_MJPEG_HUFFMAN_LOSSLESS 0xc3
#define AV_PROFILE_MJPEG_JPEG_LS 0xf7
#define AV_PROFILE_SBC_MSBC 1
#define AV_PROFILE_PRORES_PROXY 0
#define AV_PROFILE_PRORES_LT 1
#define AV_PROFILE_PRORES_STANDARD 2
#define AV_PROFILE_PRORES_HQ 3
#define AV_PROFILE_PRORES_4444 4
#define AV_PROFILE_PRORES_XQ 5
#define AV_PROFILE_ARIB_PROFILE_A 0
#define AV_PROFILE_ARIB_PROFILE_C 1
#define AV_PROFILE_KLVA_SYNC 0
#define AV_PROFILE_KLVA_ASYNC 1
#define AV_PROFILE_EVC_BASELINE 0
#define AV_PROFILE_EVC_MAIN 1
#define AV_LEVEL_UNKNOWN -99
enum AVFieldOrder {
AV_FIELD_UNKNOWN,
AV_FIELD_PROGRESSIVE,
AV_FIELD_TT, ///< Top coded_first, top displayed first
AV_FIELD_BB, ///< Bottom coded first, bottom displayed first
AV_FIELD_TB, ///< Top coded first, bottom displayed first
AV_FIELD_BT, ///< Bottom coded first, top displayed first
};
/**
* @ingroup lavc_decoding
*/
enum AVDiscard{
/* We leave some space between them for extensions (drop some
* keyframes for intra-only or drop just some bidir frames). */
AVDISCARD_NONE =-16, ///< discard nothing
AVDISCARD_DEFAULT = 0, ///< discard useless packets like 0 size packets in avi
AVDISCARD_NONREF = 8, ///< discard all non reference
AVDISCARD_BIDIR = 16, ///< discard all bidirectional frames
AVDISCARD_NONINTRA= 24, ///< discard all non intra frames
AVDISCARD_NONKEY = 32, ///< discard all frames except keyframes
AVDISCARD_ALL = 48, ///< discard all
};
enum AVAudioServiceType {
AV_AUDIO_SERVICE_TYPE_MAIN = 0,
AV_AUDIO_SERVICE_TYPE_EFFECTS = 1,
AV_AUDIO_SERVICE_TYPE_VISUALLY_IMPAIRED = 2,
AV_AUDIO_SERVICE_TYPE_HEARING_IMPAIRED = 3,
AV_AUDIO_SERVICE_TYPE_DIALOGUE = 4,
AV_AUDIO_SERVICE_TYPE_COMMENTARY = 5,
AV_AUDIO_SERVICE_TYPE_EMERGENCY = 6,
AV_AUDIO_SERVICE_TYPE_VOICE_OVER = 7,
AV_AUDIO_SERVICE_TYPE_KARAOKE = 8,
AV_AUDIO_SERVICE_TYPE_NB , ///< Not part of ABI
};
/**
* Pan Scan area.
* This specifies the area which should be displayed.
* Note there may be multiple such areas for one frame.
*/
typedef struct AVPanScan {
/**
* id
* - encoding: Set by user.
* - decoding: Set by libavcodec.
*/
int id;
/**
* width and height in 1/16 pel
* - encoding: Set by user.
* - decoding: Set by libavcodec.
*/
int width;
int height;
/**
* position of the top left corner in 1/16 pel for up to 3 fields/frames
* - encoding: Set by user.
* - decoding: Set by libavcodec.
*/
int16_t position[3][2];
} AVPanScan;
/**
* This structure describes the bitrate properties of an encoded bitstream. It
* roughly corresponds to a subset the VBV parameters for MPEG-2 or HRD
* parameters for H.264/HEVC.
*/
typedef struct AVCPBProperties {
/**
* Maximum bitrate of the stream, in bits per second.
* Zero if unknown or unspecified.
*/
int64_t max_bitrate;
/**
* Minimum bitrate of the stream, in bits per second.
* Zero if unknown or unspecified.
*/
int64_t min_bitrate;
/**
* Average bitrate of the stream, in bits per second.
* Zero if unknown or unspecified.
*/
int64_t avg_bitrate;
/**
* The size of the buffer to which the ratecontrol is applied, in bits.
* Zero if unknown or unspecified.
*/
int64_t buffer_size;
/**
* The delay between the time the packet this structure is associated with
* is received and the time when it should be decoded, in periods of a 27MHz
* clock.
*
* UINT64_MAX when unknown or unspecified.
*/
uint64_t vbv_delay;
} AVCPBProperties;
/**
* Allocate a CPB properties structure and initialize its fields to default
* values.
*
* @param size if non-NULL, the size of the allocated struct will be written
* here. This is useful for embedding it in side data.
*
* @return the newly allocated struct or NULL on failure
*/
AVCPBProperties *av_cpb_properties_alloc(size_t *size);
/**
* This structure supplies correlation between a packet timestamp and a wall clock
* production time. The definition follows the Producer Reference Time ('prft')
* as defined in ISO/IEC 14496-12
*/
typedef struct AVProducerReferenceTime {
/**
* A UTC timestamp, in microseconds, since Unix epoch (e.g, av_gettime()).
*/
int64_t wallclock;
int flags;
} AVProducerReferenceTime;
/**
* Encode extradata length to a buffer. Used by xiph codecs.
*
* @param s buffer to write to; must be at least (v/255+1) bytes long
* @param v size of extradata in bytes
* @return number of bytes written to the buffer.
*/
unsigned int av_xiphlacing(unsigned char *s, unsigned int v);
#endif // AVCODEC_DEFS_H

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/*
* Copyright (C) 2007 Marco Gerards <marco@gnu.org>
* Copyright (C) 2009 David Conrad
* Copyright (C) 2011 Jordi Ortiz
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_DIRAC_H
#define AVCODEC_DIRAC_H
/**
* @file
* Interface to Dirac Decoder/Encoder
* @author Marco Gerards <marco@gnu.org>
* @author David Conrad
* @author Jordi Ortiz
*/
#include <stddef.h>
#include <stdint.h>
#include "libavutil/pixfmt.h"
#include "libavutil/rational.h"
/**
* The spec limits the number of wavelet decompositions to 4 for both
* level 1 (VC-2) and 128 (long-gop default).
* 5 decompositions is the maximum before >16-bit buffers are needed.
* Schroedinger allows this for DD 9,7 and 13,7 wavelets only, limiting
* the others to 4 decompositions (or 3 for the fidelity filter).
*
* We use this instead of MAX_DECOMPOSITIONS to save some memory.
*/
#define MAX_DWT_LEVELS 5
/**
* Parse code values:
*
* Dirac Specification ->
* 9.6.1 Table 9.1
*
* VC-2 Specification ->
* 10.4.1 Table 10.1
*/
enum DiracParseCodes {
DIRAC_PCODE_SEQ_HEADER = 0x00,
DIRAC_PCODE_END_SEQ = 0x10,
DIRAC_PCODE_AUX = 0x20,
DIRAC_PCODE_PAD = 0x30,
DIRAC_PCODE_PICTURE_CODED = 0x08,
DIRAC_PCODE_PICTURE_RAW = 0x48,
DIRAC_PCODE_PICTURE_LOW_DEL = 0xC8,
DIRAC_PCODE_PICTURE_HQ = 0xE8,
DIRAC_PCODE_INTER_NOREF_CO1 = 0x0A,
DIRAC_PCODE_INTER_NOREF_CO2 = 0x09,
DIRAC_PCODE_INTER_REF_CO1 = 0x0D,
DIRAC_PCODE_INTER_REF_CO2 = 0x0E,
DIRAC_PCODE_INTRA_REF_CO = 0x0C,
DIRAC_PCODE_INTRA_REF_RAW = 0x4C,
DIRAC_PCODE_INTRA_REF_PICT = 0xCC,
DIRAC_PCODE_MAGIC = 0x42424344,
};
typedef struct DiracVersionInfo {
int major;
int minor;
} DiracVersionInfo;
typedef struct AVDiracSeqHeader {
unsigned width;
unsigned height;
uint8_t chroma_format; ///< 0: 444 1: 422 2: 420
uint8_t interlaced;
uint8_t top_field_first;
uint8_t frame_rate_index; ///< index into dirac_frame_rate[]
uint8_t aspect_ratio_index; ///< index into dirac_aspect_ratio[]
uint16_t clean_width;
uint16_t clean_height;
uint16_t clean_left_offset;
uint16_t clean_right_offset;
uint8_t pixel_range_index; ///< index into dirac_pixel_range_presets[]
uint8_t color_spec_index; ///< index into dirac_color_spec_presets[]
int profile;
int level;
AVRational framerate;
AVRational sample_aspect_ratio;
enum AVPixelFormat pix_fmt;
enum AVColorRange color_range;
enum AVColorPrimaries color_primaries;
enum AVColorTransferCharacteristic color_trc;
enum AVColorSpace colorspace;
DiracVersionInfo version;
int bit_depth;
} AVDiracSeqHeader;
/**
* Parse a Dirac sequence header.
*
* @param dsh this function will allocate and fill an AVDiracSeqHeader struct
* and write it into this pointer. The caller must free it with
* av_free().
* @param buf the data buffer
* @param buf_size the size of the data buffer in bytes
* @param log_ctx if non-NULL, this function will log errors here
* @return 0 on success, a negative AVERROR code on failure
*/
int av_dirac_parse_sequence_header(AVDiracSeqHeader **dsh,
const uint8_t *buf, size_t buf_size,
void *log_ctx);
#endif /* AVCODEC_DIRAC_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_DV_PROFILE_H
#define AVCODEC_DV_PROFILE_H
#include <stdint.h>
#include "libavutil/pixfmt.h"
#include "libavutil/rational.h"
/* minimum number of bytes to read from a DV stream in order to
* determine the profile */
#define DV_PROFILE_BYTES (6 * 80) /* 6 DIF blocks */
/*
* AVDVProfile is used to express the differences between various
* DV flavors. For now it's primarily used for differentiating
* 525/60 and 625/50, but the plans are to use it for various
* DV specs as well (e.g. SMPTE314M vs. IEC 61834).
*/
typedef struct AVDVProfile {
int dsf; /* value of the dsf in the DV header */
int video_stype; /* stype for VAUX source pack */
int frame_size; /* total size of one frame in bytes */
int difseg_size; /* number of DIF segments per DIF channel */
int n_difchan; /* number of DIF channels per frame */
AVRational time_base; /* 1/framerate */
int ltc_divisor; /* FPS from the LTS standpoint */
int height; /* picture height in pixels */
int width; /* picture width in pixels */
AVRational sar[2]; /* sample aspect ratios for 4:3 and 16:9 */
enum AVPixelFormat pix_fmt; /* picture pixel format */
int bpm; /* blocks per macroblock */
const uint8_t *block_sizes; /* AC block sizes, in bits */
int audio_stride; /* size of audio_shuffle table */
int audio_min_samples[3]; /* min amount of audio samples */
/* for 48kHz, 44.1kHz and 32kHz */
int audio_samples_dist[5]; /* how many samples are supposed to be */
/* in each frame in a 5 frames window */
const uint8_t (*audio_shuffle)[9]; /* PCM shuffling table */
} AVDVProfile;
/**
* Get a DV profile for the provided compressed frame.
*
* @param sys the profile used for the previous frame, may be NULL
* @param frame the compressed data buffer
* @param buf_size size of the buffer in bytes
* @return the DV profile for the supplied data or NULL on failure
*/
const AVDVProfile *av_dv_frame_profile(const AVDVProfile *sys,
const uint8_t *frame, unsigned buf_size);
/**
* Get a DV profile for the provided stream parameters.
*/
const AVDVProfile *av_dv_codec_profile(int width, int height, enum AVPixelFormat pix_fmt);
/**
* Get a DV profile for the provided stream parameters.
* The frame rate is used as a best-effort parameter.
*/
const AVDVProfile *av_dv_codec_profile2(int width, int height, enum AVPixelFormat pix_fmt, AVRational frame_rate);
#endif /* AVCODEC_DV_PROFILE_H */

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/*
* DXVA2 HW acceleration
*
* copyright (c) 2009 Laurent Aimar
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_DXVA2_H
#define AVCODEC_DXVA2_H
/**
* @file
* @ingroup lavc_codec_hwaccel_dxva2
* Public libavcodec DXVA2 header.
*/
#if !defined(_WIN32_WINNT) || _WIN32_WINNT < 0x0602
#undef _WIN32_WINNT
#define _WIN32_WINNT 0x0602
#endif
#include <stdint.h>
#include <d3d9.h>
#include <dxva2api.h>
/**
* @defgroup lavc_codec_hwaccel_dxva2 DXVA2
* @ingroup lavc_codec_hwaccel
*
* @{
*/
#define FF_DXVA2_WORKAROUND_SCALING_LIST_ZIGZAG 1 ///< Work around for DXVA2 and old UVD/UVD+ ATI video cards
#define FF_DXVA2_WORKAROUND_INTEL_CLEARVIDEO 2 ///< Work around for DXVA2 and old Intel GPUs with ClearVideo interface
/**
* This structure is used to provides the necessary configurations and data
* to the DXVA2 FFmpeg HWAccel implementation.
*
* The application must make it available as AVCodecContext.hwaccel_context.
*/
struct dxva_context {
/**
* DXVA2 decoder object
*/
IDirectXVideoDecoder *decoder;
/**
* DXVA2 configuration used to create the decoder
*/
const DXVA2_ConfigPictureDecode *cfg;
/**
* The number of surface in the surface array
*/
unsigned surface_count;
/**
* The array of Direct3D surfaces used to create the decoder
*/
LPDIRECT3DSURFACE9 *surface;
/**
* A bit field configuring the workarounds needed for using the decoder
*/
uint64_t workaround;
/**
* Private to the FFmpeg AVHWAccel implementation
*/
unsigned report_id;
};
/**
* @}
*/
#endif /* AVCODEC_DXVA2_H */

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/*
* JNI public API functions
*
* Copyright (c) 2015-2016 Matthieu Bouron <matthieu.bouron stupeflix.com>
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_JNI_H
#define AVCODEC_JNI_H
/*
* Manually set a Java virtual machine which will be used to retrieve the JNI
* environment. Once a Java VM is set it cannot be changed afterwards, meaning
* you can call multiple times av_jni_set_java_vm with the same Java VM pointer
* however it will error out if you try to set a different Java VM.
*
* @param vm Java virtual machine
* @param log_ctx context used for logging, can be NULL
* @return 0 on success, < 0 otherwise
*/
int av_jni_set_java_vm(void *vm, void *log_ctx);
/*
* Get the Java virtual machine which has been set with av_jni_set_java_vm.
*
* @param vm Java virtual machine
* @return a pointer to the Java virtual machine
*/
void *av_jni_get_java_vm(void *log_ctx);
#endif /* AVCODEC_JNI_H */

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/*
* Android MediaCodec public API
*
* Copyright (c) 2016 Matthieu Bouron <matthieu.bouron stupeflix.com>
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_MEDIACODEC_H
#define AVCODEC_MEDIACODEC_H
#include "libavcodec/avcodec.h"
/**
* This structure holds a reference to a android/view/Surface object that will
* be used as output by the decoder.
*
*/
typedef struct AVMediaCodecContext {
/**
* android/view/Surface object reference.
*/
void *surface;
} AVMediaCodecContext;
/**
* Allocate and initialize a MediaCodec context.
*
* When decoding with MediaCodec is finished, the caller must free the
* MediaCodec context with av_mediacodec_default_free.
*
* @return a pointer to a newly allocated AVMediaCodecContext on success, NULL otherwise
*/
AVMediaCodecContext *av_mediacodec_alloc_context(void);
/**
* Convenience function that sets up the MediaCodec context.
*
* @param avctx codec context
* @param ctx MediaCodec context to initialize
* @param surface reference to an android/view/Surface
* @return 0 on success, < 0 otherwise
*/
int av_mediacodec_default_init(AVCodecContext *avctx, AVMediaCodecContext *ctx, void *surface);
/**
* This function must be called to free the MediaCodec context initialized with
* av_mediacodec_default_init().
*
* @param avctx codec context
*/
void av_mediacodec_default_free(AVCodecContext *avctx);
/**
* Opaque structure representing a MediaCodec buffer to render.
*/
typedef struct MediaCodecBuffer AVMediaCodecBuffer;
/**
* Release a MediaCodec buffer and render it to the surface that is associated
* with the decoder. This function should only be called once on a given
* buffer, once released the underlying buffer returns to the codec, thus
* subsequent calls to this function will have no effect.
*
* @param buffer the buffer to render
* @param render 1 to release and render the buffer to the surface or 0 to
* discard the buffer
* @return 0 on success, < 0 otherwise
*/
int av_mediacodec_release_buffer(AVMediaCodecBuffer *buffer, int render);
/**
* Release a MediaCodec buffer and render it at the given time to the surface
* that is associated with the decoder. The timestamp must be within one second
* of the current `java/lang/System#nanoTime()` (which is implemented using
* `CLOCK_MONOTONIC` on Android). See the Android MediaCodec documentation
* of [`android/media/MediaCodec#releaseOutputBuffer(int,long)`][0] for more details.
*
* @param buffer the buffer to render
* @param time timestamp in nanoseconds of when to render the buffer
* @return 0 on success, < 0 otherwise
*
* [0]: https://developer.android.com/reference/android/media/MediaCodec#releaseOutputBuffer(int,%20long)
*/
int av_mediacodec_render_buffer_at_time(AVMediaCodecBuffer *buffer, int64_t time);
#endif /* AVCODEC_MEDIACODEC_H */

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@ -0,0 +1,846 @@
/*
* AVPacket public API
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_PACKET_H
#define AVCODEC_PACKET_H
#include <stddef.h>
#include <stdint.h>
#include "libavutil/attributes.h"
#include "libavutil/buffer.h"
#include "libavutil/dict.h"
#include "libavutil/rational.h"
#include "libavutil/version.h"
#include "libavcodec/version_major.h"
/**
* @defgroup lavc_packet_side_data AVPacketSideData
*
* Types and functions for working with AVPacketSideData.
* @{
*/
enum AVPacketSideDataType {
/**
* An AV_PKT_DATA_PALETTE side data packet contains exactly AVPALETTE_SIZE
* bytes worth of palette. This side data signals that a new palette is
* present.
*/
AV_PKT_DATA_PALETTE,
/**
* The AV_PKT_DATA_NEW_EXTRADATA is used to notify the codec or the format
* that the extradata buffer was changed and the receiving side should
* act upon it appropriately. The new extradata is embedded in the side
* data buffer and should be immediately used for processing the current
* frame or packet.
*/
AV_PKT_DATA_NEW_EXTRADATA,
/**
* An AV_PKT_DATA_PARAM_CHANGE side data packet is laid out as follows:
* @code
* u32le param_flags
* if (param_flags & AV_SIDE_DATA_PARAM_CHANGE_CHANNEL_COUNT)
* s32le channel_count
* if (param_flags & AV_SIDE_DATA_PARAM_CHANGE_CHANNEL_LAYOUT)
* u64le channel_layout
* if (param_flags & AV_SIDE_DATA_PARAM_CHANGE_SAMPLE_RATE)
* s32le sample_rate
* if (param_flags & AV_SIDE_DATA_PARAM_CHANGE_DIMENSIONS)
* s32le width
* s32le height
* @endcode
*/
AV_PKT_DATA_PARAM_CHANGE,
/**
* An AV_PKT_DATA_H263_MB_INFO side data packet contains a number of
* structures with info about macroblocks relevant to splitting the
* packet into smaller packets on macroblock edges (e.g. as for RFC 2190).
* That is, it does not necessarily contain info about all macroblocks,
* as long as the distance between macroblocks in the info is smaller
* than the target payload size.
* Each MB info structure is 12 bytes, and is laid out as follows:
* @code
* u32le bit offset from the start of the packet
* u8 current quantizer at the start of the macroblock
* u8 GOB number
* u16le macroblock address within the GOB
* u8 horizontal MV predictor
* u8 vertical MV predictor
* u8 horizontal MV predictor for block number 3
* u8 vertical MV predictor for block number 3
* @endcode
*/
AV_PKT_DATA_H263_MB_INFO,
/**
* This side data should be associated with an audio stream and contains
* ReplayGain information in form of the AVReplayGain struct.
*/
AV_PKT_DATA_REPLAYGAIN,
/**
* This side data contains a 3x3 transformation matrix describing an affine
* transformation that needs to be applied to the decoded video frames for
* correct presentation.
*
* See libavutil/display.h for a detailed description of the data.
*/
AV_PKT_DATA_DISPLAYMATRIX,
/**
* This side data should be associated with a video stream and contains
* Stereoscopic 3D information in form of the AVStereo3D struct.
*/
AV_PKT_DATA_STEREO3D,
/**
* This side data should be associated with an audio stream and corresponds
* to enum AVAudioServiceType.
*/
AV_PKT_DATA_AUDIO_SERVICE_TYPE,
/**
* This side data contains quality related information from the encoder.
* @code
* u32le quality factor of the compressed frame. Allowed range is between 1 (good) and FF_LAMBDA_MAX (bad).
* u8 picture type
* u8 error count
* u16 reserved
* u64le[error count] sum of squared differences between encoder in and output
* @endcode
*/
AV_PKT_DATA_QUALITY_STATS,
/**
* This side data contains an integer value representing the stream index
* of a "fallback" track. A fallback track indicates an alternate
* track to use when the current track can not be decoded for some reason.
* e.g. no decoder available for codec.
*/
AV_PKT_DATA_FALLBACK_TRACK,
/**
* This side data corresponds to the AVCPBProperties struct.
*/
AV_PKT_DATA_CPB_PROPERTIES,
/**
* Recommmends skipping the specified number of samples
* @code
* u32le number of samples to skip from start of this packet
* u32le number of samples to skip from end of this packet
* u8 reason for start skip
* u8 reason for end skip (0=padding silence, 1=convergence)
* @endcode
*/
AV_PKT_DATA_SKIP_SAMPLES,
/**
* An AV_PKT_DATA_JP_DUALMONO side data packet indicates that
* the packet may contain "dual mono" audio specific to Japanese DTV
* and if it is true, recommends only the selected channel to be used.
* @code
* u8 selected channels (0=main/left, 1=sub/right, 2=both)
* @endcode
*/
AV_PKT_DATA_JP_DUALMONO,
/**
* A list of zero terminated key/value strings. There is no end marker for
* the list, so it is required to rely on the side data size to stop.
*/
AV_PKT_DATA_STRINGS_METADATA,
/**
* Subtitle event position
* @code
* u32le x1
* u32le y1
* u32le x2
* u32le y2
* @endcode
*/
AV_PKT_DATA_SUBTITLE_POSITION,
/**
* Data found in BlockAdditional element of matroska container. There is
* no end marker for the data, so it is required to rely on the side data
* size to recognize the end. 8 byte id (as found in BlockAddId) followed
* by data.
*/
AV_PKT_DATA_MATROSKA_BLOCKADDITIONAL,
/**
* The optional first identifier line of a WebVTT cue.
*/
AV_PKT_DATA_WEBVTT_IDENTIFIER,
/**
* The optional settings (rendering instructions) that immediately
* follow the timestamp specifier of a WebVTT cue.
*/
AV_PKT_DATA_WEBVTT_SETTINGS,
/**
* A list of zero terminated key/value strings. There is no end marker for
* the list, so it is required to rely on the side data size to stop. This
* side data includes updated metadata which appeared in the stream.
*/
AV_PKT_DATA_METADATA_UPDATE,
/**
* MPEGTS stream ID as uint8_t, this is required to pass the stream ID
* information from the demuxer to the corresponding muxer.
*/
AV_PKT_DATA_MPEGTS_STREAM_ID,
/**
* Mastering display metadata (based on SMPTE-2086:2014). This metadata
* should be associated with a video stream and contains data in the form
* of the AVMasteringDisplayMetadata struct.
*/
AV_PKT_DATA_MASTERING_DISPLAY_METADATA,
/**
* This side data should be associated with a video stream and corresponds
* to the AVSphericalMapping structure.
*/
AV_PKT_DATA_SPHERICAL,
/**
* Content light level (based on CTA-861.3). This metadata should be
* associated with a video stream and contains data in the form of the
* AVContentLightMetadata struct.
*/
AV_PKT_DATA_CONTENT_LIGHT_LEVEL,
/**
* ATSC A53 Part 4 Closed Captions. This metadata should be associated with
* a video stream. A53 CC bitstream is stored as uint8_t in AVPacketSideData.data.
* The number of bytes of CC data is AVPacketSideData.size.
*/
AV_PKT_DATA_A53_CC,
/**
* This side data is encryption initialization data.
* The format is not part of ABI, use av_encryption_init_info_* methods to
* access.
*/
AV_PKT_DATA_ENCRYPTION_INIT_INFO,
/**
* This side data contains encryption info for how to decrypt the packet.
* The format is not part of ABI, use av_encryption_info_* methods to access.
*/
AV_PKT_DATA_ENCRYPTION_INFO,
/**
* Active Format Description data consisting of a single byte as specified
* in ETSI TS 101 154 using AVActiveFormatDescription enum.
*/
AV_PKT_DATA_AFD,
/**
* Producer Reference Time data corresponding to the AVProducerReferenceTime struct,
* usually exported by some encoders (on demand through the prft flag set in the
* AVCodecContext export_side_data field).
*/
AV_PKT_DATA_PRFT,
/**
* ICC profile data consisting of an opaque octet buffer following the
* format described by ISO 15076-1.
*/
AV_PKT_DATA_ICC_PROFILE,
/**
* DOVI configuration
* ref:
* dolby-vision-bitstreams-within-the-iso-base-media-file-format-v2.1.2, section 2.2
* dolby-vision-bitstreams-in-mpeg-2-transport-stream-multiplex-v1.2, section 3.3
* Tags are stored in struct AVDOVIDecoderConfigurationRecord.
*/
AV_PKT_DATA_DOVI_CONF,
/**
* Timecode which conforms to SMPTE ST 12-1:2014. The data is an array of 4 uint32_t
* where the first uint32_t describes how many (1-3) of the other timecodes are used.
* The timecode format is described in the documentation of av_timecode_get_smpte_from_framenum()
* function in libavutil/timecode.h.
*/
AV_PKT_DATA_S12M_TIMECODE,
/**
* HDR10+ dynamic metadata associated with a video frame. The metadata is in
* the form of the AVDynamicHDRPlus struct and contains
* information for color volume transform - application 4 of
* SMPTE 2094-40:2016 standard.
*/
AV_PKT_DATA_DYNAMIC_HDR10_PLUS,
/**
* The number of side data types.
* This is not part of the public API/ABI in the sense that it may
* change when new side data types are added.
* This must stay the last enum value.
* If its value becomes huge, some code using it
* needs to be updated as it assumes it to be smaller than other limits.
*/
AV_PKT_DATA_NB
};
#define AV_PKT_DATA_QUALITY_FACTOR AV_PKT_DATA_QUALITY_STATS //DEPRECATED
/**
* This structure stores auxiliary information for decoding, presenting, or
* otherwise processing the coded stream. It is typically exported by demuxers
* and encoders and can be fed to decoders and muxers either in a per packet
* basis, or as global side data (applying to the entire coded stream).
*
* Global side data is handled as follows:
* - During demuxing, it may be exported through
* @ref AVStream.codecpar.side_data "AVStream's codec parameters", which can
* then be passed as input to decoders through the
* @ref AVCodecContext.coded_side_data "decoder context's side data", for
* initialization.
* - For muxing, it can be fed through @ref AVStream.codecpar.side_data
* "AVStream's codec parameters", typically the output of encoders through
* the @ref AVCodecContext.coded_side_data "encoder context's side data", for
* initialization.
*
* Packet specific side data is handled as follows:
* - During demuxing, it may be exported through @ref AVPacket.side_data
* "AVPacket's side data", which can then be passed as input to decoders.
* - For muxing, it can be fed through @ref AVPacket.side_data "AVPacket's
* side data", typically the output of encoders.
*
* Different modules may accept or export different types of side data
* depending on media type and codec. Refer to @ref AVPacketSideDataType for a
* list of defined types and where they may be found or used.
*/
typedef struct AVPacketSideData {
uint8_t *data;
size_t size;
enum AVPacketSideDataType type;
} AVPacketSideData;
/**
* Allocate a new packet side data.
*
* @param sd pointer to an array of side data to which the side data should
* be added. *sd may be NULL, in which case the array will be
* initialized.
* @param nb_sd pointer to an integer containing the number of entries in
* the array. The integer value will be increased by 1 on success.
* @param type side data type
* @param size desired side data size
* @param flags currently unused. Must be zero
*
* @return pointer to freshly allocated side data on success, or NULL otherwise.
*/
AVPacketSideData *av_packet_side_data_new(AVPacketSideData **psd, int *pnb_sd,
enum AVPacketSideDataType type,
size_t size, int flags);
/**
* Wrap existing data as packet side data.
*
* @param sd pointer to an array of side data to which the side data should
* be added. *sd may be NULL, in which case the array will be
* initialized
* @param nb_sd pointer to an integer containing the number of entries in
* the array. The integer value will be increased by 1 on success.
* @param type side data type
* @param data a data array. It must be allocated with the av_malloc() family
* of functions. The ownership of the data is transferred to the
* side data array on success
* @param size size of the data array
* @param flags currently unused. Must be zero
*
* @return pointer to freshly allocated side data on success, or NULL otherwise
* On failure, the side data array is unchanged and the data remains
* owned by the caller.
*/
AVPacketSideData *av_packet_side_data_add(AVPacketSideData **sd, int *nb_sd,
enum AVPacketSideDataType type,
void *data, size_t size, int flags);
/**
* Get side information from a side data array.
*
* @param sd the array from which the side data should be fetched
* @param nb_sd value containing the number of entries in the array.
* @param type desired side information type
*
* @return pointer to side data if present or NULL otherwise
*/
const AVPacketSideData *av_packet_side_data_get(const AVPacketSideData *sd,
int nb_sd,
enum AVPacketSideDataType type);
/**
* Remove side data of the given type from a side data array.
*
* @param sd the array from which the side data should be removed
* @param nb_sd pointer to an integer containing the number of entries in
* the array. Will be reduced by the amount of entries removed
* upon return
* @param type side information type
*/
void av_packet_side_data_remove(AVPacketSideData *sd, int *nb_sd,
enum AVPacketSideDataType type);
/**
* Convenience function to free all the side data stored in an array, and
* the array itself.
*
* @param sd pointer to array of side data to free. Will be set to NULL
* upon return.
* @param nb_sd pointer to an integer containing the number of entries in
* the array. Will be set to 0 upon return.
*/
void av_packet_side_data_free(AVPacketSideData **sd, int *nb_sd);
const char *av_packet_side_data_name(enum AVPacketSideDataType type);
/**
* @}
*/
/**
* @defgroup lavc_packet AVPacket
*
* Types and functions for working with AVPacket.
* @{
*/
/**
* This structure stores compressed data. It is typically exported by demuxers
* and then passed as input to decoders, or received as output from encoders and
* then passed to muxers.
*
* For video, it should typically contain one compressed frame. For audio it may
* contain several compressed frames. Encoders are allowed to output empty
* packets, with no compressed data, containing only side data
* (e.g. to update some stream parameters at the end of encoding).
*
* The semantics of data ownership depends on the buf field.
* If it is set, the packet data is dynamically allocated and is
* valid indefinitely until a call to av_packet_unref() reduces the
* reference count to 0.
*
* If the buf field is not set av_packet_ref() would make a copy instead
* of increasing the reference count.
*
* The side data is always allocated with av_malloc(), copied by
* av_packet_ref() and freed by av_packet_unref().
*
* sizeof(AVPacket) being a part of the public ABI is deprecated. once
* av_init_packet() is removed, new packets will only be able to be allocated
* with av_packet_alloc(), and new fields may be added to the end of the struct
* with a minor bump.
*
* @see av_packet_alloc
* @see av_packet_ref
* @see av_packet_unref
*/
typedef struct AVPacket {
/**
* A reference to the reference-counted buffer where the packet data is
* stored.
* May be NULL, then the packet data is not reference-counted.
*/
AVBufferRef *buf;
/**
* Presentation timestamp in AVStream->time_base units; the time at which
* the decompressed packet will be presented to the user.
* Can be AV_NOPTS_VALUE if it is not stored in the file.
* pts MUST be larger or equal to dts as presentation cannot happen before
* decompression, unless one wants to view hex dumps. Some formats misuse
* the terms dts and pts/cts to mean something different. Such timestamps
* must be converted to true pts/dts before they are stored in AVPacket.
*/
int64_t pts;
/**
* Decompression timestamp in AVStream->time_base units; the time at which
* the packet is decompressed.
* Can be AV_NOPTS_VALUE if it is not stored in the file.
*/
int64_t dts;
uint8_t *data;
int size;
int stream_index;
/**
* A combination of AV_PKT_FLAG values
*/
int flags;
/**
* Additional packet data that can be provided by the container.
* Packet can contain several types of side information.
*/
AVPacketSideData *side_data;
int side_data_elems;
/**
* Duration of this packet in AVStream->time_base units, 0 if unknown.
* Equals next_pts - this_pts in presentation order.
*/
int64_t duration;
int64_t pos; ///< byte position in stream, -1 if unknown
/**
* for some private data of the user
*/
void *opaque;
/**
* AVBufferRef for free use by the API user. FFmpeg will never check the
* contents of the buffer ref. FFmpeg calls av_buffer_unref() on it when
* the packet is unreferenced. av_packet_copy_props() calls create a new
* reference with av_buffer_ref() for the target packet's opaque_ref field.
*
* This is unrelated to the opaque field, although it serves a similar
* purpose.
*/
AVBufferRef *opaque_ref;
/**
* Time base of the packet's timestamps.
* In the future, this field may be set on packets output by encoders or
* demuxers, but its value will be by default ignored on input to decoders
* or muxers.
*/
AVRational time_base;
} AVPacket;
#if FF_API_INIT_PACKET
attribute_deprecated
typedef struct AVPacketList {
AVPacket pkt;
struct AVPacketList *next;
} AVPacketList;
#endif
#define AV_PKT_FLAG_KEY 0x0001 ///< The packet contains a keyframe
#define AV_PKT_FLAG_CORRUPT 0x0002 ///< The packet content is corrupted
/**
* Flag is used to discard packets which are required to maintain valid
* decoder state but are not required for output and should be dropped
* after decoding.
**/
#define AV_PKT_FLAG_DISCARD 0x0004
/**
* The packet comes from a trusted source.
*
* Otherwise-unsafe constructs such as arbitrary pointers to data
* outside the packet may be followed.
*/
#define AV_PKT_FLAG_TRUSTED 0x0008
/**
* Flag is used to indicate packets that contain frames that can
* be discarded by the decoder. I.e. Non-reference frames.
*/
#define AV_PKT_FLAG_DISPOSABLE 0x0010
enum AVSideDataParamChangeFlags {
#if FF_API_OLD_CHANNEL_LAYOUT
/**
* @deprecated those are not used by any decoder
*/
AV_SIDE_DATA_PARAM_CHANGE_CHANNEL_COUNT = 0x0001,
AV_SIDE_DATA_PARAM_CHANGE_CHANNEL_LAYOUT = 0x0002,
#endif
AV_SIDE_DATA_PARAM_CHANGE_SAMPLE_RATE = 0x0004,
AV_SIDE_DATA_PARAM_CHANGE_DIMENSIONS = 0x0008,
};
/**
* Allocate an AVPacket and set its fields to default values. The resulting
* struct must be freed using av_packet_free().
*
* @return An AVPacket filled with default values or NULL on failure.
*
* @note this only allocates the AVPacket itself, not the data buffers. Those
* must be allocated through other means such as av_new_packet.
*
* @see av_new_packet
*/
AVPacket *av_packet_alloc(void);
/**
* Create a new packet that references the same data as src.
*
* This is a shortcut for av_packet_alloc()+av_packet_ref().
*
* @return newly created AVPacket on success, NULL on error.
*
* @see av_packet_alloc
* @see av_packet_ref
*/
AVPacket *av_packet_clone(const AVPacket *src);
/**
* Free the packet, if the packet is reference counted, it will be
* unreferenced first.
*
* @param pkt packet to be freed. The pointer will be set to NULL.
* @note passing NULL is a no-op.
*/
void av_packet_free(AVPacket **pkt);
#if FF_API_INIT_PACKET
/**
* Initialize optional fields of a packet with default values.
*
* Note, this does not touch the data and size members, which have to be
* initialized separately.
*
* @param pkt packet
*
* @see av_packet_alloc
* @see av_packet_unref
*
* @deprecated This function is deprecated. Once it's removed,
sizeof(AVPacket) will not be a part of the ABI anymore.
*/
attribute_deprecated
void av_init_packet(AVPacket *pkt);
#endif
/**
* Allocate the payload of a packet and initialize its fields with
* default values.
*
* @param pkt packet
* @param size wanted payload size
* @return 0 if OK, AVERROR_xxx otherwise
*/
int av_new_packet(AVPacket *pkt, int size);
/**
* Reduce packet size, correctly zeroing padding
*
* @param pkt packet
* @param size new size
*/
void av_shrink_packet(AVPacket *pkt, int size);
/**
* Increase packet size, correctly zeroing padding
*
* @param pkt packet
* @param grow_by number of bytes by which to increase the size of the packet
*/
int av_grow_packet(AVPacket *pkt, int grow_by);
/**
* Initialize a reference-counted packet from av_malloc()ed data.
*
* @param pkt packet to be initialized. This function will set the data, size,
* and buf fields, all others are left untouched.
* @param data Data allocated by av_malloc() to be used as packet data. If this
* function returns successfully, the data is owned by the underlying AVBuffer.
* The caller may not access the data through other means.
* @param size size of data in bytes, without the padding. I.e. the full buffer
* size is assumed to be size + AV_INPUT_BUFFER_PADDING_SIZE.
*
* @return 0 on success, a negative AVERROR on error
*/
int av_packet_from_data(AVPacket *pkt, uint8_t *data, int size);
/**
* Allocate new information of a packet.
*
* @param pkt packet
* @param type side information type
* @param size side information size
* @return pointer to fresh allocated data or NULL otherwise
*/
uint8_t* av_packet_new_side_data(AVPacket *pkt, enum AVPacketSideDataType type,
size_t size);
/**
* Wrap an existing array as a packet side data.
*
* @param pkt packet
* @param type side information type
* @param data the side data array. It must be allocated with the av_malloc()
* family of functions. The ownership of the data is transferred to
* pkt.
* @param size side information size
* @return a non-negative number on success, a negative AVERROR code on
* failure. On failure, the packet is unchanged and the data remains
* owned by the caller.
*/
int av_packet_add_side_data(AVPacket *pkt, enum AVPacketSideDataType type,
uint8_t *data, size_t size);
/**
* Shrink the already allocated side data buffer
*
* @param pkt packet
* @param type side information type
* @param size new side information size
* @return 0 on success, < 0 on failure
*/
int av_packet_shrink_side_data(AVPacket *pkt, enum AVPacketSideDataType type,
size_t size);
/**
* Get side information from packet.
*
* @param pkt packet
* @param type desired side information type
* @param size If supplied, *size will be set to the size of the side data
* or to zero if the desired side data is not present.
* @return pointer to data if present or NULL otherwise
*/
uint8_t* av_packet_get_side_data(const AVPacket *pkt, enum AVPacketSideDataType type,
size_t *size);
/**
* Pack a dictionary for use in side_data.
*
* @param dict The dictionary to pack.
* @param size pointer to store the size of the returned data
* @return pointer to data if successful, NULL otherwise
*/
uint8_t *av_packet_pack_dictionary(AVDictionary *dict, size_t *size);
/**
* Unpack a dictionary from side_data.
*
* @param data data from side_data
* @param size size of the data
* @param dict the metadata storage dictionary
* @return 0 on success, < 0 on failure
*/
int av_packet_unpack_dictionary(const uint8_t *data, size_t size,
AVDictionary **dict);
/**
* Convenience function to free all the side data stored.
* All the other fields stay untouched.
*
* @param pkt packet
*/
void av_packet_free_side_data(AVPacket *pkt);
/**
* Setup a new reference to the data described by a given packet
*
* If src is reference-counted, setup dst as a new reference to the
* buffer in src. Otherwise allocate a new buffer in dst and copy the
* data from src into it.
*
* All the other fields are copied from src.
*
* @see av_packet_unref
*
* @param dst Destination packet. Will be completely overwritten.
* @param src Source packet
*
* @return 0 on success, a negative AVERROR on error. On error, dst
* will be blank (as if returned by av_packet_alloc()).
*/
int av_packet_ref(AVPacket *dst, const AVPacket *src);
/**
* Wipe the packet.
*
* Unreference the buffer referenced by the packet and reset the
* remaining packet fields to their default values.
*
* @param pkt The packet to be unreferenced.
*/
void av_packet_unref(AVPacket *pkt);
/**
* Move every field in src to dst and reset src.
*
* @see av_packet_unref
*
* @param src Source packet, will be reset
* @param dst Destination packet
*/
void av_packet_move_ref(AVPacket *dst, AVPacket *src);
/**
* Copy only "properties" fields from src to dst.
*
* Properties for the purpose of this function are all the fields
* beside those related to the packet data (buf, data, size)
*
* @param dst Destination packet
* @param src Source packet
*
* @return 0 on success AVERROR on failure.
*/
int av_packet_copy_props(AVPacket *dst, const AVPacket *src);
/**
* Ensure the data described by a given packet is reference counted.
*
* @note This function does not ensure that the reference will be writable.
* Use av_packet_make_writable instead for that purpose.
*
* @see av_packet_ref
* @see av_packet_make_writable
*
* @param pkt packet whose data should be made reference counted.
*
* @return 0 on success, a negative AVERROR on error. On failure, the
* packet is unchanged.
*/
int av_packet_make_refcounted(AVPacket *pkt);
/**
* Create a writable reference for the data described by a given packet,
* avoiding data copy if possible.
*
* @param pkt Packet whose data should be made writable.
*
* @return 0 on success, a negative AVERROR on failure. On failure, the
* packet is unchanged.
*/
int av_packet_make_writable(AVPacket *pkt);
/**
* Convert valid timing fields (timestamps / durations) in a packet from one
* timebase to another. Timestamps with unknown values (AV_NOPTS_VALUE) will be
* ignored.
*
* @param pkt packet on which the conversion will be performed
* @param tb_src source timebase, in which the timing fields in pkt are
* expressed
* @param tb_dst destination timebase, to which the timing fields will be
* converted
*/
void av_packet_rescale_ts(AVPacket *pkt, AVRational tb_src, AVRational tb_dst);
/**
* @}
*/
#endif // AVCODEC_PACKET_H

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/*
* Intel MediaSDK QSV public API
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_QSV_H
#define AVCODEC_QSV_H
#include <mfxvideo.h>
#include "libavutil/buffer.h"
/**
* This struct is used for communicating QSV parameters between libavcodec and
* the caller. It is managed by the caller and must be assigned to
* AVCodecContext.hwaccel_context.
* - decoding: hwaccel_context must be set on return from the get_format()
* callback
* - encoding: hwaccel_context must be set before avcodec_open2()
*/
typedef struct AVQSVContext {
/**
* If non-NULL, the session to use for encoding or decoding.
* Otherwise, libavcodec will try to create an internal session.
*/
mfxSession session;
/**
* The IO pattern to use.
*/
int iopattern;
/**
* Extra buffers to pass to encoder or decoder initialization.
*/
mfxExtBuffer **ext_buffers;
int nb_ext_buffers;
/**
* Encoding only. If this field is set to non-zero by the caller, libavcodec
* will create an mfxExtOpaqueSurfaceAlloc extended buffer and pass it to
* the encoder initialization. This only makes sense if iopattern is also
* set to MFX_IOPATTERN_IN_OPAQUE_MEMORY.
*
* The number of allocated opaque surfaces will be the sum of the number
* required by the encoder and the user-provided value nb_opaque_surfaces.
* The array of the opaque surfaces will be exported to the caller through
* the opaque_surfaces field.
*
* The caller must set this field to zero for oneVPL (MFX_VERSION >= 2.0)
*/
int opaque_alloc;
/**
* Encoding only, and only if opaque_alloc is set to non-zero. Before
* calling avcodec_open2(), the caller should set this field to the number
* of extra opaque surfaces to allocate beyond what is required by the
* encoder.
*
* On return from avcodec_open2(), this field will be set by libavcodec to
* the total number of allocated opaque surfaces.
*/
int nb_opaque_surfaces;
/**
* Encoding only, and only if opaque_alloc is set to non-zero. On return
* from avcodec_open2(), this field will be used by libavcodec to export the
* array of the allocated opaque surfaces to the caller, so they can be
* passed to other parts of the pipeline.
*
* The buffer reference exported here is owned and managed by libavcodec,
* the callers should make their own reference with av_buffer_ref() and free
* it with av_buffer_unref() when it is no longer needed.
*
* The buffer data is an nb_opaque_surfaces-sized array of mfxFrameSurface1.
*/
AVBufferRef *opaque_surfaces;
/**
* Encoding only, and only if opaque_alloc is set to non-zero. On return
* from avcodec_open2(), this field will be set to the surface type used in
* the opaque allocation request.
*/
int opaque_alloc_type;
} AVQSVContext;
/**
* Allocate a new context.
*
* It must be freed by the caller with av_free().
*/
AVQSVContext *av_qsv_alloc_context(void);
#endif /* AVCODEC_QSV_H */

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/*
* The Video Decode and Presentation API for UNIX (VDPAU) is used for
* hardware-accelerated decoding of MPEG-1/2, H.264 and VC-1.
*
* Copyright (C) 2008 NVIDIA
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_VDPAU_H
#define AVCODEC_VDPAU_H
/**
* @file
* @ingroup lavc_codec_hwaccel_vdpau
* Public libavcodec VDPAU header.
*/
/**
* @defgroup lavc_codec_hwaccel_vdpau VDPAU Decoder and Renderer
* @ingroup lavc_codec_hwaccel
*
* VDPAU hardware acceleration has two modules
* - VDPAU decoding
* - VDPAU presentation
*
* The VDPAU decoding module parses all headers using FFmpeg
* parsing mechanisms and uses VDPAU for the actual decoding.
*
* As per the current implementation, the actual decoding
* and rendering (API calls) are done as part of the VDPAU
* presentation (vo_vdpau.c) module.
*
* @{
*/
#include <vdpau/vdpau.h>
#include "libavutil/avconfig.h"
#include "libavutil/attributes.h"
#include "avcodec.h"
struct AVCodecContext;
struct AVFrame;
typedef int (*AVVDPAU_Render2)(struct AVCodecContext *, struct AVFrame *,
const VdpPictureInfo *, uint32_t,
const VdpBitstreamBuffer *);
/**
* This structure is used to share data between the libavcodec library and
* the client video application.
* The user shall allocate the structure via the av_alloc_vdpau_hwaccel
* function and make it available as
* AVCodecContext.hwaccel_context. Members can be set by the user once
* during initialization or through each AVCodecContext.get_buffer()
* function call. In any case, they must be valid prior to calling
* decoding functions.
*
* The size of this structure is not a part of the public ABI and must not
* be used outside of libavcodec. Use av_vdpau_alloc_context() to allocate an
* AVVDPAUContext.
*/
typedef struct AVVDPAUContext {
/**
* VDPAU decoder handle
*
* Set by user.
*/
VdpDecoder decoder;
/**
* VDPAU decoder render callback
*
* Set by the user.
*/
VdpDecoderRender *render;
AVVDPAU_Render2 render2;
} AVVDPAUContext;
/**
* @brief allocation function for AVVDPAUContext
*
* Allows extending the struct without breaking API/ABI
*/
AVVDPAUContext *av_alloc_vdpaucontext(void);
AVVDPAU_Render2 av_vdpau_hwaccel_get_render2(const AVVDPAUContext *);
void av_vdpau_hwaccel_set_render2(AVVDPAUContext *, AVVDPAU_Render2);
/**
* Associate a VDPAU device with a codec context for hardware acceleration.
* This function is meant to be called from the get_format() codec callback,
* or earlier. It can also be called after avcodec_flush_buffers() to change
* the underlying VDPAU device mid-stream (e.g. to recover from non-transparent
* display preemption).
*
* @note get_format() must return AV_PIX_FMT_VDPAU if this function completes
* successfully.
*
* @param avctx decoding context whose get_format() callback is invoked
* @param device VDPAU device handle to use for hardware acceleration
* @param get_proc_address VDPAU device driver
* @param flags zero of more OR'd AV_HWACCEL_FLAG_* flags
*
* @return 0 on success, an AVERROR code on failure.
*/
int av_vdpau_bind_context(AVCodecContext *avctx, VdpDevice device,
VdpGetProcAddress *get_proc_address, unsigned flags);
/**
* Gets the parameters to create an adequate VDPAU video surface for the codec
* context using VDPAU hardware decoding acceleration.
*
* @note Behavior is undefined if the context was not successfully bound to a
* VDPAU device using av_vdpau_bind_context().
*
* @param avctx the codec context being used for decoding the stream
* @param type storage space for the VDPAU video surface chroma type
* (or NULL to ignore)
* @param width storage space for the VDPAU video surface pixel width
* (or NULL to ignore)
* @param height storage space for the VDPAU video surface pixel height
* (or NULL to ignore)
*
* @return 0 on success, a negative AVERROR code on failure.
*/
int av_vdpau_get_surface_parameters(AVCodecContext *avctx, VdpChromaType *type,
uint32_t *width, uint32_t *height);
/**
* Allocate an AVVDPAUContext.
*
* @return Newly-allocated AVVDPAUContext or NULL on failure.
*/
AVVDPAUContext *av_vdpau_alloc_context(void);
/** @} */
#endif /* AVCODEC_VDPAU_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_VERSION_H
#define AVCODEC_VERSION_H
/**
* @file
* @ingroup libavc
* Libavcodec version macros.
*/
#include "libavutil/version.h"
#include "version_major.h"
#define LIBAVCODEC_VERSION_MINOR 31
#define LIBAVCODEC_VERSION_MICRO 102
#define LIBAVCODEC_VERSION_INT AV_VERSION_INT(LIBAVCODEC_VERSION_MAJOR, \
LIBAVCODEC_VERSION_MINOR, \
LIBAVCODEC_VERSION_MICRO)
#define LIBAVCODEC_VERSION AV_VERSION(LIBAVCODEC_VERSION_MAJOR, \
LIBAVCODEC_VERSION_MINOR, \
LIBAVCODEC_VERSION_MICRO)
#define LIBAVCODEC_BUILD LIBAVCODEC_VERSION_INT
#define LIBAVCODEC_IDENT "Lavc" AV_STRINGIFY(LIBAVCODEC_VERSION)
#endif /* AVCODEC_VERSION_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_VERSION_MAJOR_H
#define AVCODEC_VERSION_MAJOR_H
/**
* @file
* @ingroup libavc
* Libavcodec version macros.
*/
#define LIBAVCODEC_VERSION_MAJOR 60
/**
* FF_API_* defines may be placed below to indicate public API that will be
* dropped at a future version bump. The defines themselves are not part of
* the public API and may change, break or disappear at any time.
*
* @note, when bumping the major version it is recommended to manually
* disable each FF_API_* in its own commit instead of disabling them all
* at once through the bump. This improves the git bisect-ability of the change.
*/
#define FF_API_INIT_PACKET (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_IDCT_NONE (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_SVTAV1_OPTS (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_AYUV_CODECID (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_VT_OUTPUT_CALLBACK (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_AVCODEC_CHROMA_POS (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_VT_HWACCEL_CONTEXT (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_AVCTX_FRAME_NUMBER (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_SLICE_OFFSET (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_SUBFRAMES (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_TICKS_PER_FRAME (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_DROPCHANGED (LIBAVCODEC_VERSION_MAJOR < 61)
#define FF_API_AVFFT (LIBAVCODEC_VERSION_MAJOR < 62)
#define FF_API_FF_PROFILE_LEVEL (LIBAVCODEC_VERSION_MAJOR < 62)
// reminder to remove CrystalHD decoders on next major bump
#define FF_CODEC_CRYSTAL_HD (LIBAVCODEC_VERSION_MAJOR < 61)
#endif /* AVCODEC_VERSION_MAJOR_H */

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/*
* Videotoolbox hardware acceleration
*
* copyright (c) 2012 Sebastien Zwickert
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_VIDEOTOOLBOX_H
#define AVCODEC_VIDEOTOOLBOX_H
/**
* @file
* @ingroup lavc_codec_hwaccel_videotoolbox
* Public libavcodec Videotoolbox header.
*/
/**
* @defgroup lavc_codec_hwaccel_videotoolbox VideoToolbox Decoder
* @ingroup lavc_codec_hwaccel
*
* Hardware accelerated decoding using VideoToolbox on Apple Platforms
*
* @{
*/
#include <stdint.h>
#define Picture QuickdrawPicture
#include <VideoToolbox/VideoToolbox.h>
#undef Picture
#include "libavcodec/avcodec.h"
#include "libavutil/attributes.h"
/**
* This struct holds all the information that needs to be passed
* between the caller and libavcodec for initializing Videotoolbox decoding.
* Its size is not a part of the public ABI, it must be allocated with
* av_videotoolbox_alloc_context() and freed with av_free().
*/
typedef struct AVVideotoolboxContext {
/**
* Videotoolbox decompression session object.
*/
VTDecompressionSessionRef session;
#if FF_API_VT_OUTPUT_CALLBACK
/**
* The output callback that must be passed to the session.
* Set by av_videottoolbox_default_init()
*/
attribute_deprecated
VTDecompressionOutputCallback output_callback;
#endif
/**
* CVPixelBuffer Format Type that Videotoolbox will use for decoded frames.
* set by the caller. If this is set to 0, then no specific format is
* requested from the decoder, and its native format is output.
*/
OSType cv_pix_fmt_type;
/**
* CoreMedia Format Description that Videotoolbox will use to create the decompression session.
*/
CMVideoFormatDescriptionRef cm_fmt_desc;
/**
* CoreMedia codec type that Videotoolbox will use to create the decompression session.
*/
int cm_codec_type;
} AVVideotoolboxContext;
#if FF_API_VT_HWACCEL_CONTEXT
/**
* Allocate and initialize a Videotoolbox context.
*
* This function should be called from the get_format() callback when the caller
* selects the AV_PIX_FMT_VIDETOOLBOX format. The caller must then create
* the decoder object (using the output callback provided by libavcodec) that
* will be used for Videotoolbox-accelerated decoding.
*
* When decoding with Videotoolbox is finished, the caller must destroy the decoder
* object and free the Videotoolbox context using av_free().
*
* @return the newly allocated context or NULL on failure
* @deprecated Use AVCodecContext.hw_frames_ctx or hw_device_ctx instead.
*/
attribute_deprecated
AVVideotoolboxContext *av_videotoolbox_alloc_context(void);
/**
* This is a convenience function that creates and sets up the Videotoolbox context using
* an internal implementation.
*
* @param avctx the corresponding codec context
*
* @return >= 0 on success, a negative AVERROR code on failure
* @deprecated Use AVCodecContext.hw_frames_ctx or hw_device_ctx instead.
*/
attribute_deprecated
int av_videotoolbox_default_init(AVCodecContext *avctx);
/**
* This is a convenience function that creates and sets up the Videotoolbox context using
* an internal implementation.
*
* @param avctx the corresponding codec context
* @param vtctx the Videotoolbox context to use
*
* @return >= 0 on success, a negative AVERROR code on failure
* @deprecated Use AVCodecContext.hw_frames_ctx or hw_device_ctx instead.
*/
attribute_deprecated
int av_videotoolbox_default_init2(AVCodecContext *avctx, AVVideotoolboxContext *vtctx);
/**
* This function must be called to free the Videotoolbox context initialized with
* av_videotoolbox_default_init().
*
* @param avctx the corresponding codec context
* @deprecated Use AVCodecContext.hw_frames_ctx or hw_device_ctx instead.
*/
attribute_deprecated
void av_videotoolbox_default_free(AVCodecContext *avctx);
#endif /* FF_API_VT_HWACCEL_CONTEXT */
/**
* @}
*/
#endif /* AVCODEC_VIDEOTOOLBOX_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
/**
* @file
* A public API for Vorbis parsing
*
* Determines the duration for each packet.
*/
#ifndef AVCODEC_VORBIS_PARSER_H
#define AVCODEC_VORBIS_PARSER_H
#include <stdint.h>
typedef struct AVVorbisParseContext AVVorbisParseContext;
/**
* Allocate and initialize the Vorbis parser using headers in the extradata.
*/
AVVorbisParseContext *av_vorbis_parse_init(const uint8_t *extradata,
int extradata_size);
/**
* Free the parser and everything associated with it.
*/
void av_vorbis_parse_free(AVVorbisParseContext **s);
#define VORBIS_FLAG_HEADER 0x00000001
#define VORBIS_FLAG_COMMENT 0x00000002
#define VORBIS_FLAG_SETUP 0x00000004
/**
* Get the duration for a Vorbis packet.
*
* If @p flags is @c NULL,
* special frames are considered invalid.
*
* @param s Vorbis parser context
* @param buf buffer containing a Vorbis frame
* @param buf_size size of the buffer
* @param flags flags for special frames
*/
int av_vorbis_parse_frame_flags(AVVorbisParseContext *s, const uint8_t *buf,
int buf_size, int *flags);
/**
* Get the duration for a Vorbis packet.
*
* @param s Vorbis parser context
* @param buf buffer containing a Vorbis frame
* @param buf_size size of the buffer
*/
int av_vorbis_parse_frame(AVVorbisParseContext *s, const uint8_t *buf,
int buf_size);
void av_vorbis_parse_reset(AVVorbisParseContext *s);
#endif /* AVCODEC_VORBIS_PARSER_H */

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/*
* Copyright (C) 2003 Ivan Kalvachev
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVCODEC_XVMC_H
#define AVCODEC_XVMC_H
/**
* @file
* @ingroup lavc_codec_hwaccel_xvmc
* Public libavcodec XvMC header.
*/
#pragma message("XvMC is no longer supported; this header is deprecated and will be removed")
#include <X11/extensions/XvMC.h>
#include "libavutil/attributes.h"
#include "avcodec.h"
/**
* @defgroup lavc_codec_hwaccel_xvmc XvMC
* @ingroup lavc_codec_hwaccel
*
* @{
*/
#define AV_XVMC_ID 0x1DC711C0 /**< special value to ensure that regular pixel routines haven't corrupted the struct
the number is 1337 speak for the letters IDCT MCo (motion compensation) */
struct attribute_deprecated xvmc_pix_fmt {
/** The field contains the special constant value AV_XVMC_ID.
It is used as a test that the application correctly uses the API,
and that there is no corruption caused by pixel routines.
- application - set during initialization
- libavcodec - unchanged
*/
int xvmc_id;
/** Pointer to the block array allocated by XvMCCreateBlocks().
The array has to be freed by XvMCDestroyBlocks().
Each group of 64 values represents one data block of differential
pixel information (in MoCo mode) or coefficients for IDCT.
- application - set the pointer during initialization
- libavcodec - fills coefficients/pixel data into the array
*/
short* data_blocks;
/** Pointer to the macroblock description array allocated by
XvMCCreateMacroBlocks() and freed by XvMCDestroyMacroBlocks().
- application - set the pointer during initialization
- libavcodec - fills description data into the array
*/
XvMCMacroBlock* mv_blocks;
/** Number of macroblock descriptions that can be stored in the mv_blocks
array.
- application - set during initialization
- libavcodec - unchanged
*/
int allocated_mv_blocks;
/** Number of blocks that can be stored at once in the data_blocks array.
- application - set during initialization
- libavcodec - unchanged
*/
int allocated_data_blocks;
/** Indicate that the hardware would interpret data_blocks as IDCT
coefficients and perform IDCT on them.
- application - set during initialization
- libavcodec - unchanged
*/
int idct;
/** In MoCo mode it indicates that intra macroblocks are assumed to be in
unsigned format; same as the XVMC_INTRA_UNSIGNED flag.
- application - set during initialization
- libavcodec - unchanged
*/
int unsigned_intra;
/** Pointer to the surface allocated by XvMCCreateSurface().
It has to be freed by XvMCDestroySurface() on application exit.
It identifies the frame and its state on the video hardware.
- application - set during initialization
- libavcodec - unchanged
*/
XvMCSurface* p_surface;
/** Set by the decoder before calling ff_draw_horiz_band(),
needed by the XvMCRenderSurface function. */
//@{
/** Pointer to the surface used as past reference
- application - unchanged
- libavcodec - set
*/
XvMCSurface* p_past_surface;
/** Pointer to the surface used as future reference
- application - unchanged
- libavcodec - set
*/
XvMCSurface* p_future_surface;
/** top/bottom field or frame
- application - unchanged
- libavcodec - set
*/
unsigned int picture_structure;
/** XVMC_SECOND_FIELD - 1st or 2nd field in the sequence
- application - unchanged
- libavcodec - set
*/
unsigned int flags;
//}@
/** Number of macroblock descriptions in the mv_blocks array
that have already been passed to the hardware.
- application - zeroes it on get_buffer().
A successful ff_draw_horiz_band() may increment it
with filled_mb_block_num or zero both.
- libavcodec - unchanged
*/
int start_mv_blocks_num;
/** Number of new macroblock descriptions in the mv_blocks array (after
start_mv_blocks_num) that are filled by libavcodec and have to be
passed to the hardware.
- application - zeroes it on get_buffer() or after successful
ff_draw_horiz_band().
- libavcodec - increment with one of each stored MB
*/
int filled_mv_blocks_num;
/** Number of the next free data block; one data block consists of
64 short values in the data_blocks array.
All blocks before this one have already been claimed by placing their
position into the corresponding block description structure field,
that are part of the mv_blocks array.
- application - zeroes it on get_buffer().
A successful ff_draw_horiz_band() may zero it together
with start_mb_blocks_num.
- libavcodec - each decoded macroblock increases it by the number
of coded blocks it contains.
*/
int next_free_data_block_num;
};
/**
* @}
*/
#endif /* AVCODEC_XVMC_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVDEVICE_AVDEVICE_H
#define AVDEVICE_AVDEVICE_H
#include "version_major.h"
#ifndef HAVE_AV_CONFIG_H
/* When included as part of the ffmpeg build, only include the major version
* to avoid unnecessary rebuilds. When included externally, keep including
* the full version information. */
#include "version.h"
#endif
/**
* @file
* @ingroup lavd
* Main libavdevice API header
*/
/**
* @defgroup lavd libavdevice
* Special devices muxing/demuxing library.
*
* Libavdevice is a complementary library to @ref libavf "libavformat". It
* provides various "special" platform-specific muxers and demuxers, e.g. for
* grabbing devices, audio capture and playback etc. As a consequence, the
* (de)muxers in libavdevice are of the AVFMT_NOFILE type (they use their own
* I/O functions). The filename passed to avformat_open_input() often does not
* refer to an actually existing file, but has some special device-specific
* meaning - e.g. for xcbgrab it is the display name.
*
* To use libavdevice, simply call avdevice_register_all() to register all
* compiled muxers and demuxers. They all use standard libavformat API.
*
* @{
*/
#include "libavutil/log.h"
#include "libavutil/opt.h"
#include "libavutil/dict.h"
#include "libavformat/avformat.h"
/**
* Return the LIBAVDEVICE_VERSION_INT constant.
*/
unsigned avdevice_version(void);
/**
* Return the libavdevice build-time configuration.
*/
const char *avdevice_configuration(void);
/**
* Return the libavdevice license.
*/
const char *avdevice_license(void);
/**
* Initialize libavdevice and register all the input and output devices.
*/
void avdevice_register_all(void);
/**
* Audio input devices iterator.
*
* If d is NULL, returns the first registered input audio/video device,
* if d is non-NULL, returns the next registered input audio/video device after d
* or NULL if d is the last one.
*/
const AVInputFormat *av_input_audio_device_next(const AVInputFormat *d);
/**
* Video input devices iterator.
*
* If d is NULL, returns the first registered input audio/video device,
* if d is non-NULL, returns the next registered input audio/video device after d
* or NULL if d is the last one.
*/
const AVInputFormat *av_input_video_device_next(const AVInputFormat *d);
/**
* Audio output devices iterator.
*
* If d is NULL, returns the first registered output audio/video device,
* if d is non-NULL, returns the next registered output audio/video device after d
* or NULL if d is the last one.
*/
const AVOutputFormat *av_output_audio_device_next(const AVOutputFormat *d);
/**
* Video output devices iterator.
*
* If d is NULL, returns the first registered output audio/video device,
* if d is non-NULL, returns the next registered output audio/video device after d
* or NULL if d is the last one.
*/
const AVOutputFormat *av_output_video_device_next(const AVOutputFormat *d);
typedef struct AVDeviceRect {
int x; /**< x coordinate of top left corner */
int y; /**< y coordinate of top left corner */
int width; /**< width */
int height; /**< height */
} AVDeviceRect;
/**
* Message types used by avdevice_app_to_dev_control_message().
*/
enum AVAppToDevMessageType {
/**
* Dummy message.
*/
AV_APP_TO_DEV_NONE = MKBETAG('N','O','N','E'),
/**
* Window size change message.
*
* Message is sent to the device every time the application changes the size
* of the window device renders to.
* Message should also be sent right after window is created.
*
* data: AVDeviceRect: new window size.
*/
AV_APP_TO_DEV_WINDOW_SIZE = MKBETAG('G','E','O','M'),
/**
* Repaint request message.
*
* Message is sent to the device when window has to be repainted.
*
* data: AVDeviceRect: area required to be repainted.
* NULL: whole area is required to be repainted.
*/
AV_APP_TO_DEV_WINDOW_REPAINT = MKBETAG('R','E','P','A'),
/**
* Request pause/play.
*
* Application requests pause/unpause playback.
* Mostly usable with devices that have internal buffer.
* By default devices are not paused.
*
* data: NULL
*/
AV_APP_TO_DEV_PAUSE = MKBETAG('P', 'A', 'U', ' '),
AV_APP_TO_DEV_PLAY = MKBETAG('P', 'L', 'A', 'Y'),
AV_APP_TO_DEV_TOGGLE_PAUSE = MKBETAG('P', 'A', 'U', 'T'),
/**
* Volume control message.
*
* Set volume level. It may be device-dependent if volume
* is changed per stream or system wide. Per stream volume
* change is expected when possible.
*
* data: double: new volume with range of 0.0 - 1.0.
*/
AV_APP_TO_DEV_SET_VOLUME = MKBETAG('S', 'V', 'O', 'L'),
/**
* Mute control messages.
*
* Change mute state. It may be device-dependent if mute status
* is changed per stream or system wide. Per stream mute status
* change is expected when possible.
*
* data: NULL.
*/
AV_APP_TO_DEV_MUTE = MKBETAG(' ', 'M', 'U', 'T'),
AV_APP_TO_DEV_UNMUTE = MKBETAG('U', 'M', 'U', 'T'),
AV_APP_TO_DEV_TOGGLE_MUTE = MKBETAG('T', 'M', 'U', 'T'),
/**
* Get volume/mute messages.
*
* Force the device to send AV_DEV_TO_APP_VOLUME_LEVEL_CHANGED or
* AV_DEV_TO_APP_MUTE_STATE_CHANGED command respectively.
*
* data: NULL.
*/
AV_APP_TO_DEV_GET_VOLUME = MKBETAG('G', 'V', 'O', 'L'),
AV_APP_TO_DEV_GET_MUTE = MKBETAG('G', 'M', 'U', 'T'),
};
/**
* Message types used by avdevice_dev_to_app_control_message().
*/
enum AVDevToAppMessageType {
/**
* Dummy message.
*/
AV_DEV_TO_APP_NONE = MKBETAG('N','O','N','E'),
/**
* Create window buffer message.
*
* Device requests to create a window buffer. Exact meaning is device-
* and application-dependent. Message is sent before rendering first
* frame and all one-shot initializations should be done here.
* Application is allowed to ignore preferred window buffer size.
*
* @note: Application is obligated to inform about window buffer size
* with AV_APP_TO_DEV_WINDOW_SIZE message.
*
* data: AVDeviceRect: preferred size of the window buffer.
* NULL: no preferred size of the window buffer.
*/
AV_DEV_TO_APP_CREATE_WINDOW_BUFFER = MKBETAG('B','C','R','E'),
/**
* Prepare window buffer message.
*
* Device requests to prepare a window buffer for rendering.
* Exact meaning is device- and application-dependent.
* Message is sent before rendering of each frame.
*
* data: NULL.
*/
AV_DEV_TO_APP_PREPARE_WINDOW_BUFFER = MKBETAG('B','P','R','E'),
/**
* Display window buffer message.
*
* Device requests to display a window buffer.
* Message is sent when new frame is ready to be displayed.
* Usually buffers need to be swapped in handler of this message.
*
* data: NULL.
*/
AV_DEV_TO_APP_DISPLAY_WINDOW_BUFFER = MKBETAG('B','D','I','S'),
/**
* Destroy window buffer message.
*
* Device requests to destroy a window buffer.
* Message is sent when device is about to be destroyed and window
* buffer is not required anymore.
*
* data: NULL.
*/
AV_DEV_TO_APP_DESTROY_WINDOW_BUFFER = MKBETAG('B','D','E','S'),
/**
* Buffer fullness status messages.
*
* Device signals buffer overflow/underflow.
*
* data: NULL.
*/
AV_DEV_TO_APP_BUFFER_OVERFLOW = MKBETAG('B','O','F','L'),
AV_DEV_TO_APP_BUFFER_UNDERFLOW = MKBETAG('B','U','F','L'),
/**
* Buffer readable/writable.
*
* Device informs that buffer is readable/writable.
* When possible, device informs how many bytes can be read/write.
*
* @warning Device may not inform when number of bytes than can be read/write changes.
*
* data: int64_t: amount of bytes available to read/write.
* NULL: amount of bytes available to read/write is not known.
*/
AV_DEV_TO_APP_BUFFER_READABLE = MKBETAG('B','R','D',' '),
AV_DEV_TO_APP_BUFFER_WRITABLE = MKBETAG('B','W','R',' '),
/**
* Mute state change message.
*
* Device informs that mute state has changed.
*
* data: int: 0 for not muted state, non-zero for muted state.
*/
AV_DEV_TO_APP_MUTE_STATE_CHANGED = MKBETAG('C','M','U','T'),
/**
* Volume level change message.
*
* Device informs that volume level has changed.
*
* data: double: new volume with range of 0.0 - 1.0.
*/
AV_DEV_TO_APP_VOLUME_LEVEL_CHANGED = MKBETAG('C','V','O','L'),
};
/**
* Send control message from application to device.
*
* @param s device context.
* @param type message type.
* @param data message data. Exact type depends on message type.
* @param data_size size of message data.
* @return >= 0 on success, negative on error.
* AVERROR(ENOSYS) when device doesn't implement handler of the message.
*/
int avdevice_app_to_dev_control_message(struct AVFormatContext *s,
enum AVAppToDevMessageType type,
void *data, size_t data_size);
/**
* Send control message from device to application.
*
* @param s device context.
* @param type message type.
* @param data message data. Can be NULL.
* @param data_size size of message data.
* @return >= 0 on success, negative on error.
* AVERROR(ENOSYS) when application doesn't implement handler of the message.
*/
int avdevice_dev_to_app_control_message(struct AVFormatContext *s,
enum AVDevToAppMessageType type,
void *data, size_t data_size);
/**
* Structure describes basic parameters of the device.
*/
typedef struct AVDeviceInfo {
char *device_name; /**< device name, format depends on device */
char *device_description; /**< human friendly name */
enum AVMediaType *media_types; /**< array indicating what media types(s), if any, a device can provide. If null, cannot provide any */
int nb_media_types; /**< length of media_types array, 0 if device cannot provide any media types */
} AVDeviceInfo;
/**
* List of devices.
*/
typedef struct AVDeviceInfoList {
AVDeviceInfo **devices; /**< list of autodetected devices */
int nb_devices; /**< number of autodetected devices */
int default_device; /**< index of default device or -1 if no default */
} AVDeviceInfoList;
/**
* List devices.
*
* Returns available device names and their parameters.
*
* @note: Some devices may accept system-dependent device names that cannot be
* autodetected. The list returned by this function cannot be assumed to
* be always completed.
*
* @param s device context.
* @param[out] device_list list of autodetected devices.
* @return count of autodetected devices, negative on error.
*/
int avdevice_list_devices(struct AVFormatContext *s, AVDeviceInfoList **device_list);
/**
* Convenient function to free result of avdevice_list_devices().
*
* @param device_list device list to be freed.
*/
void avdevice_free_list_devices(AVDeviceInfoList **device_list);
/**
* List devices.
*
* Returns available device names and their parameters.
* These are convinient wrappers for avdevice_list_devices().
* Device context is allocated and deallocated internally.
*
* @param device device format. May be NULL if device name is set.
* @param device_name device name. May be NULL if device format is set.
* @param device_options An AVDictionary filled with device-private options. May be NULL.
* The same options must be passed later to avformat_write_header() for output
* devices or avformat_open_input() for input devices, or at any other place
* that affects device-private options.
* @param[out] device_list list of autodetected devices
* @return count of autodetected devices, negative on error.
* @note device argument takes precedence over device_name when both are set.
*/
int avdevice_list_input_sources(const AVInputFormat *device, const char *device_name,
AVDictionary *device_options, AVDeviceInfoList **device_list);
int avdevice_list_output_sinks(const AVOutputFormat *device, const char *device_name,
AVDictionary *device_options, AVDeviceInfoList **device_list);
/**
* @}
*/
#endif /* AVDEVICE_AVDEVICE_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVDEVICE_VERSION_H
#define AVDEVICE_VERSION_H
/**
* @file
* @ingroup lavd
* Libavdevice version macros
*/
#include "libavutil/version.h"
#include "version_major.h"
#define LIBAVDEVICE_VERSION_MINOR 3
#define LIBAVDEVICE_VERSION_MICRO 100
#define LIBAVDEVICE_VERSION_INT AV_VERSION_INT(LIBAVDEVICE_VERSION_MAJOR, \
LIBAVDEVICE_VERSION_MINOR, \
LIBAVDEVICE_VERSION_MICRO)
#define LIBAVDEVICE_VERSION AV_VERSION(LIBAVDEVICE_VERSION_MAJOR, \
LIBAVDEVICE_VERSION_MINOR, \
LIBAVDEVICE_VERSION_MICRO)
#define LIBAVDEVICE_BUILD LIBAVDEVICE_VERSION_INT
#define LIBAVDEVICE_IDENT "Lavd" AV_STRINGIFY(LIBAVDEVICE_VERSION)
#endif /* AVDEVICE_VERSION_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVDEVICE_VERSION_MAJOR_H
#define AVDEVICE_VERSION_MAJOR_H
/**
* @file
* @ingroup lavd
* Libavdevice version macros
*/
#define LIBAVDEVICE_VERSION_MAJOR 60
/**
* FF_API_* defines may be placed below to indicate public API that will be
* dropped at a future version bump. The defines themselves are not part of
* the public API and may change, break or disappear at any time.
*/
#endif /* AVDEVICE_VERSION_MAJOR_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFILTER_BUFFERSINK_H
#define AVFILTER_BUFFERSINK_H
/**
* @file
* @ingroup lavfi_buffersink
* memory buffer sink API for audio and video
*/
#include "avfilter.h"
/**
* @defgroup lavfi_buffersink Buffer sink API
* @ingroup lavfi
* @{
*
* The buffersink and abuffersink filters are there to connect filter graphs
* to applications. They have a single input, connected to the graph, and no
* output. Frames must be extracted using av_buffersink_get_frame() or
* av_buffersink_get_samples().
*
* The format negotiated by the graph during configuration can be obtained
* using the accessor functions:
* - av_buffersink_get_time_base(),
* - av_buffersink_get_format(),
* - av_buffersink_get_frame_rate(),
* - av_buffersink_get_w(),
* - av_buffersink_get_h(),
* - av_buffersink_get_sample_aspect_ratio(),
* - av_buffersink_get_channels(),
* - av_buffersink_get_ch_layout(),
* - av_buffersink_get_sample_rate().
*
* The layout returned by av_buffersink_get_ch_layout() must de uninitialized
* by the caller.
*
* The format can be constrained by setting options, using av_opt_set() and
* related functions with the AV_OPT_SEARCH_CHILDREN flag.
* - pix_fmts (int list),
* - sample_fmts (int list),
* - sample_rates (int list),
* - ch_layouts (string),
* - channel_counts (int list),
* - all_channel_counts (bool).
* Most of these options are of type binary, and should be set using
* av_opt_set_int_list() or av_opt_set_bin(). If they are not set, all
* corresponding formats are accepted.
*
* As a special case, if ch_layouts is not set, all valid channel layouts are
* accepted except for UNSPEC layouts, unless all_channel_counts is set.
*/
/**
* Get a frame with filtered data from sink and put it in frame.
*
* @param ctx pointer to a buffersink or abuffersink filter context.
* @param frame pointer to an allocated frame that will be filled with data.
* The data must be freed using av_frame_unref() / av_frame_free()
* @param flags a combination of AV_BUFFERSINK_FLAG_* flags
*
* @return >= 0 in for success, a negative AVERROR code for failure.
*/
int av_buffersink_get_frame_flags(AVFilterContext *ctx, AVFrame *frame, int flags);
/**
* Tell av_buffersink_get_buffer_ref() to read video/samples buffer
* reference, but not remove it from the buffer. This is useful if you
* need only to read a video/samples buffer, without to fetch it.
*/
#define AV_BUFFERSINK_FLAG_PEEK 1
/**
* Tell av_buffersink_get_buffer_ref() not to request a frame from its input.
* If a frame is already buffered, it is read (and removed from the buffer),
* but if no frame is present, return AVERROR(EAGAIN).
*/
#define AV_BUFFERSINK_FLAG_NO_REQUEST 2
/**
* Set the frame size for an audio buffer sink.
*
* All calls to av_buffersink_get_buffer_ref will return a buffer with
* exactly the specified number of samples, or AVERROR(EAGAIN) if there is
* not enough. The last buffer at EOF will be padded with 0.
*/
void av_buffersink_set_frame_size(AVFilterContext *ctx, unsigned frame_size);
/**
* @defgroup lavfi_buffersink_accessors Buffer sink accessors
* Get the properties of the stream
* @{
*/
enum AVMediaType av_buffersink_get_type (const AVFilterContext *ctx);
AVRational av_buffersink_get_time_base (const AVFilterContext *ctx);
int av_buffersink_get_format (const AVFilterContext *ctx);
AVRational av_buffersink_get_frame_rate (const AVFilterContext *ctx);
int av_buffersink_get_w (const AVFilterContext *ctx);
int av_buffersink_get_h (const AVFilterContext *ctx);
AVRational av_buffersink_get_sample_aspect_ratio (const AVFilterContext *ctx);
int av_buffersink_get_channels (const AVFilterContext *ctx);
#if FF_API_OLD_CHANNEL_LAYOUT
attribute_deprecated
uint64_t av_buffersink_get_channel_layout (const AVFilterContext *ctx);
#endif
int av_buffersink_get_ch_layout (const AVFilterContext *ctx,
AVChannelLayout *ch_layout);
int av_buffersink_get_sample_rate (const AVFilterContext *ctx);
AVBufferRef * av_buffersink_get_hw_frames_ctx (const AVFilterContext *ctx);
/** @} */
/**
* Get a frame with filtered data from sink and put it in frame.
*
* @param ctx pointer to a context of a buffersink or abuffersink AVFilter.
* @param frame pointer to an allocated frame that will be filled with data.
* The data must be freed using av_frame_unref() / av_frame_free()
*
* @return
* - >= 0 if a frame was successfully returned.
* - AVERROR(EAGAIN) if no frames are available at this point; more
* input frames must be added to the filtergraph to get more output.
* - AVERROR_EOF if there will be no more output frames on this sink.
* - A different negative AVERROR code in other failure cases.
*/
int av_buffersink_get_frame(AVFilterContext *ctx, AVFrame *frame);
/**
* Same as av_buffersink_get_frame(), but with the ability to specify the number
* of samples read. This function is less efficient than
* av_buffersink_get_frame(), because it copies the data around.
*
* @param ctx pointer to a context of the abuffersink AVFilter.
* @param frame pointer to an allocated frame that will be filled with data.
* The data must be freed using av_frame_unref() / av_frame_free()
* frame will contain exactly nb_samples audio samples, except at
* the end of stream, when it can contain less than nb_samples.
*
* @return The return codes have the same meaning as for
* av_buffersink_get_frame().
*
* @warning do not mix this function with av_buffersink_get_frame(). Use only one or
* the other with a single sink, not both.
*/
int av_buffersink_get_samples(AVFilterContext *ctx, AVFrame *frame, int nb_samples);
/**
* @}
*/
#endif /* AVFILTER_BUFFERSINK_H */

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/*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFILTER_BUFFERSRC_H
#define AVFILTER_BUFFERSRC_H
/**
* @file
* @ingroup lavfi_buffersrc
* Memory buffer source API.
*/
#include "avfilter.h"
/**
* @defgroup lavfi_buffersrc Buffer source API
* @ingroup lavfi
* @{
*/
enum {
/**
* Do not check for format changes.
*/
AV_BUFFERSRC_FLAG_NO_CHECK_FORMAT = 1,
/**
* Immediately push the frame to the output.
*/
AV_BUFFERSRC_FLAG_PUSH = 4,
/**
* Keep a reference to the frame.
* If the frame if reference-counted, create a new reference; otherwise
* copy the frame data.
*/
AV_BUFFERSRC_FLAG_KEEP_REF = 8,
};
/**
* Get the number of failed requests.
*
* A failed request is when the request_frame method is called while no
* frame is present in the buffer.
* The number is reset when a frame is added.
*/
unsigned av_buffersrc_get_nb_failed_requests(AVFilterContext *buffer_src);
/**
* This structure contains the parameters describing the frames that will be
* passed to this filter.
*
* It should be allocated with av_buffersrc_parameters_alloc() and freed with
* av_free(). All the allocated fields in it remain owned by the caller.
*/
typedef struct AVBufferSrcParameters {
/**
* video: the pixel format, value corresponds to enum AVPixelFormat
* audio: the sample format, value corresponds to enum AVSampleFormat
*/
int format;
/**
* The timebase to be used for the timestamps on the input frames.
*/
AVRational time_base;
/**
* Video only, the display dimensions of the input frames.
*/
int width, height;
/**
* Video only, the sample (pixel) aspect ratio.
*/
AVRational sample_aspect_ratio;
/**
* Video only, the frame rate of the input video. This field must only be
* set to a non-zero value if input stream has a known constant framerate
* and should be left at its initial value if the framerate is variable or
* unknown.
*/
AVRational frame_rate;
/**
* Video with a hwaccel pixel format only. This should be a reference to an
* AVHWFramesContext instance describing the input frames.
*/
AVBufferRef *hw_frames_ctx;
/**
* Audio only, the audio sampling rate in samples per second.
*/
int sample_rate;
#if FF_API_OLD_CHANNEL_LAYOUT
/**
* Audio only, the audio channel layout
* @deprecated use ch_layout
*/
attribute_deprecated
uint64_t channel_layout;
#endif
/**
* Audio only, the audio channel layout
*/
AVChannelLayout ch_layout;
} AVBufferSrcParameters;
/**
* Allocate a new AVBufferSrcParameters instance. It should be freed by the
* caller with av_free().
*/
AVBufferSrcParameters *av_buffersrc_parameters_alloc(void);
/**
* Initialize the buffersrc or abuffersrc filter with the provided parameters.
* This function may be called multiple times, the later calls override the
* previous ones. Some of the parameters may also be set through AVOptions, then
* whatever method is used last takes precedence.
*
* @param ctx an instance of the buffersrc or abuffersrc filter
* @param param the stream parameters. The frames later passed to this filter
* must conform to those parameters. All the allocated fields in
* param remain owned by the caller, libavfilter will make internal
* copies or references when necessary.
* @return 0 on success, a negative AVERROR code on failure.
*/
int av_buffersrc_parameters_set(AVFilterContext *ctx, AVBufferSrcParameters *param);
/**
* Add a frame to the buffer source.
*
* @param ctx an instance of the buffersrc filter
* @param frame frame to be added. If the frame is reference counted, this
* function will make a new reference to it. Otherwise the frame data will be
* copied.
*
* @return 0 on success, a negative AVERROR on error
*
* This function is equivalent to av_buffersrc_add_frame_flags() with the
* AV_BUFFERSRC_FLAG_KEEP_REF flag.
*/
av_warn_unused_result
int av_buffersrc_write_frame(AVFilterContext *ctx, const AVFrame *frame);
/**
* Add a frame to the buffer source.
*
* @param ctx an instance of the buffersrc filter
* @param frame frame to be added. If the frame is reference counted, this
* function will take ownership of the reference(s) and reset the frame.
* Otherwise the frame data will be copied. If this function returns an error,
* the input frame is not touched.
*
* @return 0 on success, a negative AVERROR on error.
*
* @note the difference between this function and av_buffersrc_write_frame() is
* that av_buffersrc_write_frame() creates a new reference to the input frame,
* while this function takes ownership of the reference passed to it.
*
* This function is equivalent to av_buffersrc_add_frame_flags() without the
* AV_BUFFERSRC_FLAG_KEEP_REF flag.
*/
av_warn_unused_result
int av_buffersrc_add_frame(AVFilterContext *ctx, AVFrame *frame);
/**
* Add a frame to the buffer source.
*
* By default, if the frame is reference-counted, this function will take
* ownership of the reference(s) and reset the frame. This can be controlled
* using the flags.
*
* If this function returns an error, the input frame is not touched.
*
* @param buffer_src pointer to a buffer source context
* @param frame a frame, or NULL to mark EOF
* @param flags a combination of AV_BUFFERSRC_FLAG_*
* @return >= 0 in case of success, a negative AVERROR code
* in case of failure
*/
av_warn_unused_result
int av_buffersrc_add_frame_flags(AVFilterContext *buffer_src,
AVFrame *frame, int flags);
/**
* Close the buffer source after EOF.
*
* This is similar to passing NULL to av_buffersrc_add_frame_flags()
* except it takes the timestamp of the EOF, i.e. the timestamp of the end
* of the last frame.
*/
int av_buffersrc_close(AVFilterContext *ctx, int64_t pts, unsigned flags);
/**
* @}
*/
#endif /* AVFILTER_BUFFERSRC_H */

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/*
* Version macros.
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFILTER_VERSION_H
#define AVFILTER_VERSION_H
/**
* @file
* @ingroup lavfi
* Libavfilter version macros
*/
#include "libavutil/version.h"
#include "version_major.h"
#define LIBAVFILTER_VERSION_MINOR 12
#define LIBAVFILTER_VERSION_MICRO 100
#define LIBAVFILTER_VERSION_INT AV_VERSION_INT(LIBAVFILTER_VERSION_MAJOR, \
LIBAVFILTER_VERSION_MINOR, \
LIBAVFILTER_VERSION_MICRO)
#define LIBAVFILTER_VERSION AV_VERSION(LIBAVFILTER_VERSION_MAJOR, \
LIBAVFILTER_VERSION_MINOR, \
LIBAVFILTER_VERSION_MICRO)
#define LIBAVFILTER_BUILD LIBAVFILTER_VERSION_INT
#define LIBAVFILTER_IDENT "Lavfi" AV_STRINGIFY(LIBAVFILTER_VERSION)
#endif /* AVFILTER_VERSION_H */

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/*
* Version macros.
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFILTER_VERSION_MAJOR_H
#define AVFILTER_VERSION_MAJOR_H
/**
* @file
* @ingroup lavfi
* Libavfilter version macros
*/
#define LIBAVFILTER_VERSION_MAJOR 9
/**
* FF_API_* defines may be placed below to indicate public API that will be
* dropped at a future version bump. The defines themselves are not part of
* the public API and may change, break or disappear at any time.
*/
#define FF_API_LIBPLACEBO_OPTS (LIBAVFILTER_VERSION_MAJOR < 10)
#endif /* AVFILTER_VERSION_MAJOR_H */

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/*
* copyright (c) 2001 Fabrice Bellard
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFORMAT_AVIO_H
#define AVFORMAT_AVIO_H
/**
* @file
* @ingroup lavf_io
* Buffered I/O operations
*/
#include <stdint.h>
#include <stdio.h>
#include "libavutil/attributes.h"
#include "libavutil/dict.h"
#include "libavutil/log.h"
#include "libavformat/version_major.h"
/**
* Seeking works like for a local file.
*/
#define AVIO_SEEKABLE_NORMAL (1 << 0)
/**
* Seeking by timestamp with avio_seek_time() is possible.
*/
#define AVIO_SEEKABLE_TIME (1 << 1)
/**
* Callback for checking whether to abort blocking functions.
* AVERROR_EXIT is returned in this case by the interrupted
* function. During blocking operations, callback is called with
* opaque as parameter. If the callback returns 1, the
* blocking operation will be aborted.
*
* No members can be added to this struct without a major bump, if
* new elements have been added after this struct in AVFormatContext
* or AVIOContext.
*/
typedef struct AVIOInterruptCB {
int (*callback)(void*);
void *opaque;
} AVIOInterruptCB;
/**
* Directory entry types.
*/
enum AVIODirEntryType {
AVIO_ENTRY_UNKNOWN,
AVIO_ENTRY_BLOCK_DEVICE,
AVIO_ENTRY_CHARACTER_DEVICE,
AVIO_ENTRY_DIRECTORY,
AVIO_ENTRY_NAMED_PIPE,
AVIO_ENTRY_SYMBOLIC_LINK,
AVIO_ENTRY_SOCKET,
AVIO_ENTRY_FILE,
AVIO_ENTRY_SERVER,
AVIO_ENTRY_SHARE,
AVIO_ENTRY_WORKGROUP,
};
/**
* Describes single entry of the directory.
*
* Only name and type fields are guaranteed be set.
* Rest of fields are protocol or/and platform dependent and might be unknown.
*/
typedef struct AVIODirEntry {
char *name; /**< Filename */
int type; /**< Type of the entry */
int utf8; /**< Set to 1 when name is encoded with UTF-8, 0 otherwise.
Name can be encoded with UTF-8 even though 0 is set. */
int64_t size; /**< File size in bytes, -1 if unknown. */
int64_t modification_timestamp; /**< Time of last modification in microseconds since unix
epoch, -1 if unknown. */
int64_t access_timestamp; /**< Time of last access in microseconds since unix epoch,
-1 if unknown. */
int64_t status_change_timestamp; /**< Time of last status change in microseconds since unix
epoch, -1 if unknown. */
int64_t user_id; /**< User ID of owner, -1 if unknown. */
int64_t group_id; /**< Group ID of owner, -1 if unknown. */
int64_t filemode; /**< Unix file mode, -1 if unknown. */
} AVIODirEntry;
#if FF_API_AVIODIRCONTEXT
typedef struct AVIODirContext {
struct URLContext *url_context;
} AVIODirContext;
#else
typedef struct AVIODirContext AVIODirContext;
#endif
/**
* Different data types that can be returned via the AVIO
* write_data_type callback.
*/
enum AVIODataMarkerType {
/**
* Header data; this needs to be present for the stream to be decodeable.
*/
AVIO_DATA_MARKER_HEADER,
/**
* A point in the output bytestream where a decoder can start decoding
* (i.e. a keyframe). A demuxer/decoder given the data flagged with
* AVIO_DATA_MARKER_HEADER, followed by any AVIO_DATA_MARKER_SYNC_POINT,
* should give decodeable results.
*/
AVIO_DATA_MARKER_SYNC_POINT,
/**
* A point in the output bytestream where a demuxer can start parsing
* (for non self synchronizing bytestream formats). That is, any
* non-keyframe packet start point.
*/
AVIO_DATA_MARKER_BOUNDARY_POINT,
/**
* This is any, unlabelled data. It can either be a muxer not marking
* any positions at all, it can be an actual boundary/sync point
* that the muxer chooses not to mark, or a later part of a packet/fragment
* that is cut into multiple write callbacks due to limited IO buffer size.
*/
AVIO_DATA_MARKER_UNKNOWN,
/**
* Trailer data, which doesn't contain actual content, but only for
* finalizing the output file.
*/
AVIO_DATA_MARKER_TRAILER,
/**
* A point in the output bytestream where the underlying AVIOContext might
* flush the buffer depending on latency or buffering requirements. Typically
* means the end of a packet.
*/
AVIO_DATA_MARKER_FLUSH_POINT,
};
/**
* Bytestream IO Context.
* New public fields can be added with minor version bumps.
* Removal, reordering and changes to existing public fields require
* a major version bump.
* sizeof(AVIOContext) must not be used outside libav*.
*
* @note None of the function pointers in AVIOContext should be called
* directly, they should only be set by the client application
* when implementing custom I/O. Normally these are set to the
* function pointers specified in avio_alloc_context()
*/
typedef struct AVIOContext {
/**
* A class for private options.
*
* If this AVIOContext is created by avio_open2(), av_class is set and
* passes the options down to protocols.
*
* If this AVIOContext is manually allocated, then av_class may be set by
* the caller.
*
* warning -- this field can be NULL, be sure to not pass this AVIOContext
* to any av_opt_* functions in that case.
*/
const AVClass *av_class;
/*
* The following shows the relationship between buffer, buf_ptr,
* buf_ptr_max, buf_end, buf_size, and pos, when reading and when writing
* (since AVIOContext is used for both):
*
**********************************************************************************
* READING
**********************************************************************************
*
* | buffer_size |
* |---------------------------------------|
* | |
*
* buffer buf_ptr buf_end
* +---------------+-----------------------+
* |/ / / / / / / /|/ / / / / / /| |
* read buffer: |/ / consumed / | to be read /| |
* |/ / / / / / / /|/ / / / / / /| |
* +---------------+-----------------------+
*
* pos
* +-------------------------------------------+-----------------+
* input file: | | |
* +-------------------------------------------+-----------------+
*
*
**********************************************************************************
* WRITING
**********************************************************************************
*
* | buffer_size |
* |--------------------------------------|
* | |
*
* buf_ptr_max
* buffer (buf_ptr) buf_end
* +-----------------------+--------------+
* |/ / / / / / / / / / / /| |
* write buffer: | / / to be flushed / / | |
* |/ / / / / / / / / / / /| |
* +-----------------------+--------------+
* buf_ptr can be in this
* due to a backward seek
*
* pos
* +-------------+----------------------------------------------+
* output file: | | |
* +-------------+----------------------------------------------+
*
*/
unsigned char *buffer; /**< Start of the buffer. */
int buffer_size; /**< Maximum buffer size */
unsigned char *buf_ptr; /**< Current position in the buffer */
unsigned char *buf_end; /**< End of the data, may be less than
buffer+buffer_size if the read function returned
less data than requested, e.g. for streams where
no more data has been received yet. */
void *opaque; /**< A private pointer, passed to the read/write/seek/...
functions. */
int (*read_packet)(void *opaque, uint8_t *buf, int buf_size);
#if FF_API_AVIO_WRITE_NONCONST
int (*write_packet)(void *opaque, uint8_t *buf, int buf_size);
#else
int (*write_packet)(void *opaque, const uint8_t *buf, int buf_size);
#endif
int64_t (*seek)(void *opaque, int64_t offset, int whence);
int64_t pos; /**< position in the file of the current buffer */
int eof_reached; /**< true if was unable to read due to error or eof */
int error; /**< contains the error code or 0 if no error happened */
int write_flag; /**< true if open for writing */
int max_packet_size;
int min_packet_size; /**< Try to buffer at least this amount of data
before flushing it. */
unsigned long checksum;
unsigned char *checksum_ptr;
unsigned long (*update_checksum)(unsigned long checksum, const uint8_t *buf, unsigned int size);
/**
* Pause or resume playback for network streaming protocols - e.g. MMS.
*/
int (*read_pause)(void *opaque, int pause);
/**
* Seek to a given timestamp in stream with the specified stream_index.
* Needed for some network streaming protocols which don't support seeking
* to byte position.
*/
int64_t (*read_seek)(void *opaque, int stream_index,
int64_t timestamp, int flags);
/**
* A combination of AVIO_SEEKABLE_ flags or 0 when the stream is not seekable.
*/
int seekable;
/**
* avio_read and avio_write should if possible be satisfied directly
* instead of going through a buffer, and avio_seek will always
* call the underlying seek function directly.
*/
int direct;
/**
* ',' separated list of allowed protocols.
*/
const char *protocol_whitelist;
/**
* ',' separated list of disallowed protocols.
*/
const char *protocol_blacklist;
/**
* A callback that is used instead of write_packet.
*/
#if FF_API_AVIO_WRITE_NONCONST
int (*write_data_type)(void *opaque, uint8_t *buf, int buf_size,
enum AVIODataMarkerType type, int64_t time);
#else
int (*write_data_type)(void *opaque, const uint8_t *buf, int buf_size,
enum AVIODataMarkerType type, int64_t time);
#endif
/**
* If set, don't call write_data_type separately for AVIO_DATA_MARKER_BOUNDARY_POINT,
* but ignore them and treat them as AVIO_DATA_MARKER_UNKNOWN (to avoid needlessly
* small chunks of data returned from the callback).
*/
int ignore_boundary_point;
/**
* Maximum reached position before a backward seek in the write buffer,
* used keeping track of already written data for a later flush.
*/
unsigned char *buf_ptr_max;
/**
* Read-only statistic of bytes read for this AVIOContext.
*/
int64_t bytes_read;
/**
* Read-only statistic of bytes written for this AVIOContext.
*/
int64_t bytes_written;
} AVIOContext;
/**
* Return the name of the protocol that will handle the passed URL.
*
* NULL is returned if no protocol could be found for the given URL.
*
* @return Name of the protocol or NULL.
*/
const char *avio_find_protocol_name(const char *url);
/**
* Return AVIO_FLAG_* access flags corresponding to the access permissions
* of the resource in url, or a negative value corresponding to an
* AVERROR code in case of failure. The returned access flags are
* masked by the value in flags.
*
* @note This function is intrinsically unsafe, in the sense that the
* checked resource may change its existence or permission status from
* one call to another. Thus you should not trust the returned value,
* unless you are sure that no other processes are accessing the
* checked resource.
*/
int avio_check(const char *url, int flags);
/**
* Open directory for reading.
*
* @param s directory read context. Pointer to a NULL pointer must be passed.
* @param url directory to be listed.
* @param options A dictionary filled with protocol-private options. On return
* this parameter will be destroyed and replaced with a dictionary
* containing options that were not found. May be NULL.
* @return >=0 on success or negative on error.
*/
int avio_open_dir(AVIODirContext **s, const char *url, AVDictionary **options);
/**
* Get next directory entry.
*
* Returned entry must be freed with avio_free_directory_entry(). In particular
* it may outlive AVIODirContext.
*
* @param s directory read context.
* @param[out] next next entry or NULL when no more entries.
* @return >=0 on success or negative on error. End of list is not considered an
* error.
*/
int avio_read_dir(AVIODirContext *s, AVIODirEntry **next);
/**
* Close directory.
*
* @note Entries created using avio_read_dir() are not deleted and must be
* freeded with avio_free_directory_entry().
*
* @param s directory read context.
* @return >=0 on success or negative on error.
*/
int avio_close_dir(AVIODirContext **s);
/**
* Free entry allocated by avio_read_dir().
*
* @param entry entry to be freed.
*/
void avio_free_directory_entry(AVIODirEntry **entry);
/**
* Allocate and initialize an AVIOContext for buffered I/O. It must be later
* freed with avio_context_free().
*
* @param buffer Memory block for input/output operations via AVIOContext.
* The buffer must be allocated with av_malloc() and friends.
* It may be freed and replaced with a new buffer by libavformat.
* AVIOContext.buffer holds the buffer currently in use,
* which must be later freed with av_free().
* @param buffer_size The buffer size is very important for performance.
* For protocols with fixed blocksize it should be set to this blocksize.
* For others a typical size is a cache page, e.g. 4kb.
* @param write_flag Set to 1 if the buffer should be writable, 0 otherwise.
* @param opaque An opaque pointer to user-specific data.
* @param read_packet A function for refilling the buffer, may be NULL.
* For stream protocols, must never return 0 but rather
* a proper AVERROR code.
* @param write_packet A function for writing the buffer contents, may be NULL.
* The function may not change the input buffers content.
* @param seek A function for seeking to specified byte position, may be NULL.
*
* @return Allocated AVIOContext or NULL on failure.
*/
AVIOContext *avio_alloc_context(
unsigned char *buffer,
int buffer_size,
int write_flag,
void *opaque,
int (*read_packet)(void *opaque, uint8_t *buf, int buf_size),
#if FF_API_AVIO_WRITE_NONCONST
int (*write_packet)(void *opaque, uint8_t *buf, int buf_size),
#else
int (*write_packet)(void *opaque, const uint8_t *buf, int buf_size),
#endif
int64_t (*seek)(void *opaque, int64_t offset, int whence));
/**
* Free the supplied IO context and everything associated with it.
*
* @param s Double pointer to the IO context. This function will write NULL
* into s.
*/
void avio_context_free(AVIOContext **s);
void avio_w8(AVIOContext *s, int b);
void avio_write(AVIOContext *s, const unsigned char *buf, int size);
void avio_wl64(AVIOContext *s, uint64_t val);
void avio_wb64(AVIOContext *s, uint64_t val);
void avio_wl32(AVIOContext *s, unsigned int val);
void avio_wb32(AVIOContext *s, unsigned int val);
void avio_wl24(AVIOContext *s, unsigned int val);
void avio_wb24(AVIOContext *s, unsigned int val);
void avio_wl16(AVIOContext *s, unsigned int val);
void avio_wb16(AVIOContext *s, unsigned int val);
/**
* Write a NULL-terminated string.
* @return number of bytes written.
*/
int avio_put_str(AVIOContext *s, const char *str);
/**
* Convert an UTF-8 string to UTF-16LE and write it.
* @param s the AVIOContext
* @param str NULL-terminated UTF-8 string
*
* @return number of bytes written.
*/
int avio_put_str16le(AVIOContext *s, const char *str);
/**
* Convert an UTF-8 string to UTF-16BE and write it.
* @param s the AVIOContext
* @param str NULL-terminated UTF-8 string
*
* @return number of bytes written.
*/
int avio_put_str16be(AVIOContext *s, const char *str);
/**
* Mark the written bytestream as a specific type.
*
* Zero-length ranges are omitted from the output.
*
* @param s the AVIOContext
* @param time the stream time the current bytestream pos corresponds to
* (in AV_TIME_BASE units), or AV_NOPTS_VALUE if unknown or not
* applicable
* @param type the kind of data written starting at the current pos
*/
void avio_write_marker(AVIOContext *s, int64_t time, enum AVIODataMarkerType type);
/**
* ORing this as the "whence" parameter to a seek function causes it to
* return the filesize without seeking anywhere. Supporting this is optional.
* If it is not supported then the seek function will return <0.
*/
#define AVSEEK_SIZE 0x10000
/**
* Passing this flag as the "whence" parameter to a seek function causes it to
* seek by any means (like reopening and linear reading) or other normally unreasonable
* means that can be extremely slow.
* This may be ignored by the seek code.
*/
#define AVSEEK_FORCE 0x20000
/**
* fseek() equivalent for AVIOContext.
* @return new position or AVERROR.
*/
int64_t avio_seek(AVIOContext *s, int64_t offset, int whence);
/**
* Skip given number of bytes forward
* @return new position or AVERROR.
*/
int64_t avio_skip(AVIOContext *s, int64_t offset);
/**
* ftell() equivalent for AVIOContext.
* @return position or AVERROR.
*/
static av_always_inline int64_t avio_tell(AVIOContext *s)
{
return avio_seek(s, 0, SEEK_CUR);
}
/**
* Get the filesize.
* @return filesize or AVERROR
*/
int64_t avio_size(AVIOContext *s);
/**
* Similar to feof() but also returns nonzero on read errors.
* @return non zero if and only if at end of file or a read error happened when reading.
*/
int avio_feof(AVIOContext *s);
/**
* Writes a formatted string to the context taking a va_list.
* @return number of bytes written, < 0 on error.
*/
int avio_vprintf(AVIOContext *s, const char *fmt, va_list ap);
/**
* Writes a formatted string to the context.
* @return number of bytes written, < 0 on error.
*/
int avio_printf(AVIOContext *s, const char *fmt, ...) av_printf_format(2, 3);
/**
* Write a NULL terminated array of strings to the context.
* Usually you don't need to use this function directly but its macro wrapper,
* avio_print.
*/
void avio_print_string_array(AVIOContext *s, const char *strings[]);
/**
* Write strings (const char *) to the context.
* This is a convenience macro around avio_print_string_array and it
* automatically creates the string array from the variable argument list.
* For simple string concatenations this function is more performant than using
* avio_printf since it does not need a temporary buffer.
*/
#define avio_print(s, ...) \
avio_print_string_array(s, (const char*[]){__VA_ARGS__, NULL})
/**
* Force flushing of buffered data.
*
* For write streams, force the buffered data to be immediately written to the output,
* without to wait to fill the internal buffer.
*
* For read streams, discard all currently buffered data, and advance the
* reported file position to that of the underlying stream. This does not
* read new data, and does not perform any seeks.
*/
void avio_flush(AVIOContext *s);
/**
* Read size bytes from AVIOContext into buf.
* @return number of bytes read or AVERROR
*/
int avio_read(AVIOContext *s, unsigned char *buf, int size);
/**
* Read size bytes from AVIOContext into buf. Unlike avio_read(), this is allowed
* to read fewer bytes than requested. The missing bytes can be read in the next
* call. This always tries to read at least 1 byte.
* Useful to reduce latency in certain cases.
* @return number of bytes read or AVERROR
*/
int avio_read_partial(AVIOContext *s, unsigned char *buf, int size);
/**
* @name Functions for reading from AVIOContext
* @{
*
* @note return 0 if EOF, so you cannot use it if EOF handling is
* necessary
*/
int avio_r8 (AVIOContext *s);
unsigned int avio_rl16(AVIOContext *s);
unsigned int avio_rl24(AVIOContext *s);
unsigned int avio_rl32(AVIOContext *s);
uint64_t avio_rl64(AVIOContext *s);
unsigned int avio_rb16(AVIOContext *s);
unsigned int avio_rb24(AVIOContext *s);
unsigned int avio_rb32(AVIOContext *s);
uint64_t avio_rb64(AVIOContext *s);
/**
* @}
*/
/**
* Read a string from pb into buf. The reading will terminate when either
* a NULL character was encountered, maxlen bytes have been read, or nothing
* more can be read from pb. The result is guaranteed to be NULL-terminated, it
* will be truncated if buf is too small.
* Note that the string is not interpreted or validated in any way, it
* might get truncated in the middle of a sequence for multi-byte encodings.
*
* @return number of bytes read (is always <= maxlen).
* If reading ends on EOF or error, the return value will be one more than
* bytes actually read.
*/
int avio_get_str(AVIOContext *pb, int maxlen, char *buf, int buflen);
/**
* Read a UTF-16 string from pb and convert it to UTF-8.
* The reading will terminate when either a null or invalid character was
* encountered or maxlen bytes have been read.
* @return number of bytes read (is always <= maxlen)
*/
int avio_get_str16le(AVIOContext *pb, int maxlen, char *buf, int buflen);
int avio_get_str16be(AVIOContext *pb, int maxlen, char *buf, int buflen);
/**
* @name URL open modes
* The flags argument to avio_open must be one of the following
* constants, optionally ORed with other flags.
* @{
*/
#define AVIO_FLAG_READ 1 /**< read-only */
#define AVIO_FLAG_WRITE 2 /**< write-only */
#define AVIO_FLAG_READ_WRITE (AVIO_FLAG_READ|AVIO_FLAG_WRITE) /**< read-write pseudo flag */
/**
* @}
*/
/**
* Use non-blocking mode.
* If this flag is set, operations on the context will return
* AVERROR(EAGAIN) if they can not be performed immediately.
* If this flag is not set, operations on the context will never return
* AVERROR(EAGAIN).
* Note that this flag does not affect the opening/connecting of the
* context. Connecting a protocol will always block if necessary (e.g. on
* network protocols) but never hang (e.g. on busy devices).
* Warning: non-blocking protocols is work-in-progress; this flag may be
* silently ignored.
*/
#define AVIO_FLAG_NONBLOCK 8
/**
* Use direct mode.
* avio_read and avio_write should if possible be satisfied directly
* instead of going through a buffer, and avio_seek will always
* call the underlying seek function directly.
*/
#define AVIO_FLAG_DIRECT 0x8000
/**
* Create and initialize a AVIOContext for accessing the
* resource indicated by url.
* @note When the resource indicated by url has been opened in
* read+write mode, the AVIOContext can be used only for writing.
*
* @param s Used to return the pointer to the created AVIOContext.
* In case of failure the pointed to value is set to NULL.
* @param url resource to access
* @param flags flags which control how the resource indicated by url
* is to be opened
* @return >= 0 in case of success, a negative value corresponding to an
* AVERROR code in case of failure
*/
int avio_open(AVIOContext **s, const char *url, int flags);
/**
* Create and initialize a AVIOContext for accessing the
* resource indicated by url.
* @note When the resource indicated by url has been opened in
* read+write mode, the AVIOContext can be used only for writing.
*
* @param s Used to return the pointer to the created AVIOContext.
* In case of failure the pointed to value is set to NULL.
* @param url resource to access
* @param flags flags which control how the resource indicated by url
* is to be opened
* @param int_cb an interrupt callback to be used at the protocols level
* @param options A dictionary filled with protocol-private options. On return
* this parameter will be destroyed and replaced with a dict containing options
* that were not found. May be NULL.
* @return >= 0 in case of success, a negative value corresponding to an
* AVERROR code in case of failure
*/
int avio_open2(AVIOContext **s, const char *url, int flags,
const AVIOInterruptCB *int_cb, AVDictionary **options);
/**
* Close the resource accessed by the AVIOContext s and free it.
* This function can only be used if s was opened by avio_open().
*
* The internal buffer is automatically flushed before closing the
* resource.
*
* @return 0 on success, an AVERROR < 0 on error.
* @see avio_closep
*/
int avio_close(AVIOContext *s);
/**
* Close the resource accessed by the AVIOContext *s, free it
* and set the pointer pointing to it to NULL.
* This function can only be used if s was opened by avio_open().
*
* The internal buffer is automatically flushed before closing the
* resource.
*
* @return 0 on success, an AVERROR < 0 on error.
* @see avio_close
*/
int avio_closep(AVIOContext **s);
/**
* Open a write only memory stream.
*
* @param s new IO context
* @return zero if no error.
*/
int avio_open_dyn_buf(AVIOContext **s);
/**
* Return the written size and a pointer to the buffer.
* The AVIOContext stream is left intact.
* The buffer must NOT be freed.
* No padding is added to the buffer.
*
* @param s IO context
* @param pbuffer pointer to a byte buffer
* @return the length of the byte buffer
*/
int avio_get_dyn_buf(AVIOContext *s, uint8_t **pbuffer);
/**
* Return the written size and a pointer to the buffer. The buffer
* must be freed with av_free().
* Padding of AV_INPUT_BUFFER_PADDING_SIZE is added to the buffer.
*
* @param s IO context
* @param pbuffer pointer to a byte buffer
* @return the length of the byte buffer
*/
int avio_close_dyn_buf(AVIOContext *s, uint8_t **pbuffer);
/**
* Iterate through names of available protocols.
*
* @param opaque A private pointer representing current protocol.
* It must be a pointer to NULL on first iteration and will
* be updated by successive calls to avio_enum_protocols.
* @param output If set to 1, iterate over output protocols,
* otherwise over input protocols.
*
* @return A static string containing the name of current protocol or NULL
*/
const char *avio_enum_protocols(void **opaque, int output);
/**
* Get AVClass by names of available protocols.
*
* @return A AVClass of input protocol name or NULL
*/
const AVClass *avio_protocol_get_class(const char *name);
/**
* Pause and resume playing - only meaningful if using a network streaming
* protocol (e.g. MMS).
*
* @param h IO context from which to call the read_pause function pointer
* @param pause 1 for pause, 0 for resume
*/
int avio_pause(AVIOContext *h, int pause);
/**
* Seek to a given timestamp relative to some component stream.
* Only meaningful if using a network streaming protocol (e.g. MMS.).
*
* @param h IO context from which to call the seek function pointers
* @param stream_index The stream index that the timestamp is relative to.
* If stream_index is (-1) the timestamp should be in AV_TIME_BASE
* units from the beginning of the presentation.
* If a stream_index >= 0 is used and the protocol does not support
* seeking based on component streams, the call will fail.
* @param timestamp timestamp in AVStream.time_base units
* or if there is no stream specified then in AV_TIME_BASE units.
* @param flags Optional combination of AVSEEK_FLAG_BACKWARD, AVSEEK_FLAG_BYTE
* and AVSEEK_FLAG_ANY. The protocol may silently ignore
* AVSEEK_FLAG_BACKWARD and AVSEEK_FLAG_ANY, but AVSEEK_FLAG_BYTE will
* fail if used and not supported.
* @return >= 0 on success
* @see AVInputFormat::read_seek
*/
int64_t avio_seek_time(AVIOContext *h, int stream_index,
int64_t timestamp, int flags);
/* Avoid a warning. The header can not be included because it breaks c++. */
struct AVBPrint;
/**
* Read contents of h into print buffer, up to max_size bytes, or up to EOF.
*
* @return 0 for success (max_size bytes read or EOF reached), negative error
* code otherwise
*/
int avio_read_to_bprint(AVIOContext *h, struct AVBPrint *pb, size_t max_size);
/**
* Accept and allocate a client context on a server context.
* @param s the server context
* @param c the client context, must be unallocated
* @return >= 0 on success or a negative value corresponding
* to an AVERROR on failure
*/
int avio_accept(AVIOContext *s, AVIOContext **c);
/**
* Perform one step of the protocol handshake to accept a new client.
* This function must be called on a client returned by avio_accept() before
* using it as a read/write context.
* It is separate from avio_accept() because it may block.
* A step of the handshake is defined by places where the application may
* decide to change the proceedings.
* For example, on a protocol with a request header and a reply header, each
* one can constitute a step because the application may use the parameters
* from the request to change parameters in the reply; or each individual
* chunk of the request can constitute a step.
* If the handshake is already finished, avio_handshake() does nothing and
* returns 0 immediately.
*
* @param c the client context to perform the handshake on
* @return 0 on a complete and successful handshake
* > 0 if the handshake progressed, but is not complete
* < 0 for an AVERROR code
*/
int avio_handshake(AVIOContext *c);
#endif /* AVFORMAT_AVIO_H */

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/*
* Version macros.
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFORMAT_VERSION_H
#define AVFORMAT_VERSION_H
/**
* @file
* @ingroup libavf
* Libavformat version macros
*/
#include "libavutil/version.h"
#include "version_major.h"
#define LIBAVFORMAT_VERSION_MINOR 16
#define LIBAVFORMAT_VERSION_MICRO 101
#define LIBAVFORMAT_VERSION_INT AV_VERSION_INT(LIBAVFORMAT_VERSION_MAJOR, \
LIBAVFORMAT_VERSION_MINOR, \
LIBAVFORMAT_VERSION_MICRO)
#define LIBAVFORMAT_VERSION AV_VERSION(LIBAVFORMAT_VERSION_MAJOR, \
LIBAVFORMAT_VERSION_MINOR, \
LIBAVFORMAT_VERSION_MICRO)
#define LIBAVFORMAT_BUILD LIBAVFORMAT_VERSION_INT
#define LIBAVFORMAT_IDENT "Lavf" AV_STRINGIFY(LIBAVFORMAT_VERSION)
#endif /* AVFORMAT_VERSION_H */

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/*
* Version macros.
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVFORMAT_VERSION_MAJOR_H
#define AVFORMAT_VERSION_MAJOR_H
/**
* @file
* @ingroup libavf
* Libavformat version macros
*/
// Major bumping may affect Ticket5467, 5421, 5451(compatibility with Chromium)
// Also please add any ticket numbers that you believe might be affected here
#define LIBAVFORMAT_VERSION_MAJOR 60
/**
* FF_API_* defines may be placed below to indicate public API that will be
* dropped at a future version bump. The defines themselves are not part of
* the public API and may change, break or disappear at any time.
*
* @note, when bumping the major version it is recommended to manually
* disable each FF_API_* in its own commit instead of disabling them all
* at once through the bump. This improves the git bisect-ability of the change.
*
*/
#define FF_API_COMPUTE_PKT_FIELDS2 (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_GET_END_PTS (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_AVIODIRCONTEXT (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_AVFORMAT_IO_CLOSE (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_AVIO_WRITE_NONCONST (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_LAVF_SHORTEST (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_ALLOW_FLUSH (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_AVSTREAM_SIDE_DATA (LIBAVFORMAT_VERSION_MAJOR < 61)
#define FF_API_R_FRAME_RATE 1
#endif /* AVFORMAT_VERSION_MAJOR_H */

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/*
* copyright (c) 2006 Mans Rullgard
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
/**
* @file
* @ingroup lavu_adler32
* Public header for Adler-32 hash function implementation.
*/
#ifndef AVUTIL_ADLER32_H
#define AVUTIL_ADLER32_H
#include <stddef.h>
#include <stdint.h>
#include "attributes.h"
/**
* @defgroup lavu_adler32 Adler-32
* @ingroup lavu_hash
* Adler-32 hash function implementation.
*
* @{
*/
typedef uint32_t AVAdler;
/**
* Calculate the Adler32 checksum of a buffer.
*
* Passing the return value to a subsequent av_adler32_update() call
* allows the checksum of multiple buffers to be calculated as though
* they were concatenated.
*
* @param adler initial checksum value
* @param buf pointer to input buffer
* @param len size of input buffer
* @return updated checksum
*/
AVAdler av_adler32_update(AVAdler adler, const uint8_t *buf,
size_t len) av_pure;
/**
* @}
*/
#endif /* AVUTIL_ADLER32_H */

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/*
* copyright (c) 2007 Michael Niedermayer <michaelni@gmx.at>
*
* This file is part of FFmpeg.
*
* FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* FFmpeg is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with FFmpeg; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*/
#ifndef AVUTIL_AES_H
#define AVUTIL_AES_H
#include <stdint.h>
#include "attributes.h"
/**
* @defgroup lavu_aes AES
* @ingroup lavu_crypto
* @{
*/
extern const int av_aes_size;
struct AVAES;
/**
* Allocate an AVAES context.
*/
struct AVAES *av_aes_alloc(void);
/**
* Initialize an AVAES context.
*
* @param a The AVAES context
* @param key Pointer to the key
* @param key_bits 128, 192 or 256
* @param decrypt 0 for encryption, 1 for decryption
*/
int av_aes_init(struct AVAES *a, const uint8_t *key, int key_bits, int decrypt);
/**
* Encrypt or decrypt a buffer using a previously initialized context.
*
* @param a The AVAES context
* @param dst destination array, can be equal to src
* @param src source array, can be equal to dst
* @param count number of 16 byte blocks
* @param iv initialization vector for CBC mode, if NULL then ECB will be used
* @param decrypt 0 for encryption, 1 for decryption
*/
void av_aes_crypt(struct AVAES *a, uint8_t *dst, const uint8_t *src, int count, uint8_t *iv, int decrypt);
/**
* @}
*/
#endif /* AVUTIL_AES_H */

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