Files
LookingGlass/obs/frame_scheduler.c
Geoffrey McRae 2ac49b6487 [obs] scheduler: release ownership when source is idle
Renew frame scheduling only while the source is active and OBS is
delivering video ticks. Release ownership after deactivation or a stale
tick stream.

Reacquire with a new generation and an immediate frame when ticking
resumes.
2026-08-06 18:02:08 +10:00

249 lines
8.2 KiB
C

/**
* Looking Glass
* Copyright © 2017-2026 The Looking Glass Authors
* https://looking-glass.io
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the Free
* Software Foundation; either version 2 of the License, or (at your option)
* any later version.
*
* This program 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 General Public License for
* more details.
*
* You should have received a copy of the GNU General Public License along
* with this program; if not, write to the Free Software Foundation, Inc., 59
* Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include "frame_scheduler.h"
#include <common/KVMFR.h>
#include <string.h>
#define FRAME_SCHEDULER_LEASE_MS 1000U
#define FRAME_SCHEDULER_RENEW_NS 250000000ULL
#define FRAME_SCHEDULER_FEEDBACK_NS 50000000ULL
#define FRAME_SCHEDULER_TICK_GRACE_NS 500000000ULL
#define FRAME_SCHEDULER_TARGET_SLACK_NS 1000000ULL
#define FRAME_SCHEDULER_MIN_PERIOD_NS 2000000ULL
#define FRAME_SCHEDULER_MAX_PERIOD_NS 1000000000ULL
static void lgFrameSchedulerResetFeedback(LGFrameScheduler * scheduler)
{
scheduler->phaseError = 0;
scheduler->feedbackFrameSerial = 0;
scheduler->feedbackScheduleEpoch = 0;
scheduler->feedbackDeadlineSerial = 0;
scheduler->feedbackSamples = 0;
scheduler->feedbackDirty = false;
scheduler->readyFrameSerial = 0;
scheduler->readyGeneration = 0;
scheduler->readyScheduleEpoch = 0;
scheduler->readyDeadlineSerial = 0;
scheduler->readyTime = 0;
}
void lgFrameSchedulerInit(LGFrameScheduler * scheduler, bool supported,
uint32_t clientID)
{
memset(scheduler, 0, sizeof(*scheduler));
scheduler->supported = supported;
scheduler->immediatePending = supported;
scheduler->clientID = clientID;
}
void lgFrameSchedulerSetActive(LGFrameScheduler * scheduler, bool active)
{
if (!scheduler->supported || scheduler->sourceActive == active)
return;
scheduler->sourceActive = active;
if (!active)
scheduler->lastTick = 0;
}
void lgFrameSchedulerSetPeriod(LGFrameScheduler * scheduler,
uint64_t period, uint64_t tickTime)
{
if (!scheduler->supported)
return;
scheduler->lastTick = tickTime;
if (period < FRAME_SCHEDULER_MIN_PERIOD_NS ||
period > FRAME_SCHEDULER_MAX_PERIOD_NS)
{
scheduler->period = 0;
return;
}
bool reset = !scheduler->period;
if (!reset)
{
const uint64_t delta = scheduler->period > period ?
scheduler->period - period : period - scheduler->period;
reset = delta > scheduler->period / 20;
}
scheduler->period = period;
if (!reset)
return;
++scheduler->generation;
scheduler->resetPending = true;
scheduler->immediatePending = true;
lgFrameSchedulerResetFeedback(scheduler);
}
void lgFrameSchedulerRequestImmediate(LGFrameScheduler * scheduler)
{
if (scheduler->supported)
scheduler->immediatePending = true;
}
void lgFrameSchedulerObserveFrame(LGFrameScheduler * scheduler,
uint32_t frameSerial, uint32_t generation, uint32_t scheduleEpoch,
uint32_t deadlineSerial, uint64_t readyTime)
{
if (!generation || !scheduleEpoch || !deadlineSerial ||
(scheduler->readyFrameSerial == frameSerial &&
scheduler->readyGeneration == generation &&
scheduler->readyScheduleEpoch == scheduleEpoch &&
scheduler->readyDeadlineSerial == deadlineSerial))
return;
scheduler->readyFrameSerial = frameSerial;
scheduler->readyGeneration = generation;
scheduler->readyScheduleEpoch = scheduleEpoch;
scheduler->readyDeadlineSerial = deadlineSerial;
scheduler->readyTime = readyTime;
}
void lgFrameSchedulerFeedback(LGFrameScheduler * scheduler,
uint32_t frameSerial, uint32_t generation, uint32_t scheduleEpoch,
uint32_t deadlineSerial, uint64_t tickTime)
{
if (!scheduler->active || generation != scheduler->generation ||
!scheduleEpoch || !deadlineSerial ||
(frameSerial == scheduler->feedbackFrameSerial &&
scheduleEpoch == scheduler->feedbackScheduleEpoch &&
deadlineSerial == scheduler->feedbackDeadlineSerial) ||
scheduler->readyFrameSerial != frameSerial ||
scheduler->readyGeneration != generation ||
scheduler->readyScheduleEpoch != scheduleEpoch ||
scheduler->readyDeadlineSerial != deadlineSerial)
return;
if (scheduler->feedbackScheduleEpoch &&
scheduler->feedbackScheduleEpoch != scheduleEpoch)
{
scheduler->phaseError = 0;
scheduler->feedbackSamples = 0;
}
const int64_t measuredPhase = tickTime >= scheduler->readyTime ?
(int64_t)(tickTime - scheduler->readyTime) :
-(int64_t)(scheduler->readyTime - tickTime);
int64_t error = measuredPhase -
(int64_t)FRAME_SCHEDULER_TARGET_SLACK_NS;
const int64_t period = (int64_t)scheduler->period;
const int64_t limit = period / 2;
if (error > limit)
error = limit;
else if (error < -limit)
error = -limit;
if (!scheduler->feedbackSamples)
scheduler->phaseError = error;
else
scheduler->phaseError = (scheduler->phaseError * 7 + error) / 8;
if (scheduler->feedbackSamples < 32)
++scheduler->feedbackSamples;
scheduler->feedbackFrameSerial = frameSerial;
scheduler->feedbackScheduleEpoch = scheduleEpoch;
scheduler->feedbackDeadlineSerial = deadlineSerial;
scheduler->feedbackDirty = true;
}
void lgFrameSchedulerUpdate(LGFrameScheduler * scheduler,
PLGMPClientQueue queue, uint64_t now)
{
if (!scheduler->supported || !queue)
return;
const bool tickStale = !scheduler->lastTick ||
now - scheduler->lastTick > FRAME_SCHEDULER_TICK_GRACE_NS;
if (!scheduler->sourceActive || tickStale || !scheduler->period)
{
if (!scheduler->active)
return;
const KVMFRFrameSchedule message = {
.msg.type = KVMFR_MESSAGE_FRAME_SCHEDULE,
.clientID = scheduler->clientID,
.generation = scheduler->generation,
.flags = KVMFR_FRAME_SCHEDULE_RELEASE,
};
if (lgmpClientSendData(queue, &message, sizeof(message), NULL) != LGMP_OK)
return;
scheduler->active = false;
scheduler->resetPending = false;
scheduler->immediatePending = true;
scheduler->period = 0;
scheduler->lastSend = now;
lgFrameSchedulerResetFeedback(scheduler);
return;
}
const uint64_t interval = scheduler->feedbackDirty ?
FRAME_SCHEDULER_FEEDBACK_NS : FRAME_SCHEDULER_RENEW_NS;
if (scheduler->active && !scheduler->resetPending &&
!scheduler->immediatePending &&
now - scheduler->lastSend < interval)
return;
KVMFRFrameScheduleFlags flags = KVMFR_FRAME_SCHEDULE_ACTIVE;
if (scheduler->resetPending)
flags |= KVMFR_FRAME_SCHEDULE_RESET;
if (scheduler->immediatePending)
flags |= KVMFR_FRAME_SCHEDULE_IMMEDIATE;
const uint32_t feedbackFrameSerial =
scheduler->feedbackFrameSerial;
const uint32_t feedbackScheduleEpoch =
scheduler->feedbackScheduleEpoch;
const uint32_t feedbackDeadlineSerial =
scheduler->feedbackDeadlineSerial;
const KVMFRFrameSchedule message = {
.msg.type = KVMFR_MESSAGE_FRAME_SCHEDULE,
.clientID = scheduler->clientID,
.generation = scheduler->generation,
.flags = flags,
.period = scheduler->period,
.targetSlack = FRAME_SCHEDULER_TARGET_SLACK_NS,
.phaseError = scheduler->phaseError,
.feedbackFrameSerial = feedbackFrameSerial,
.feedbackScheduleEpoch = feedbackScheduleEpoch,
.feedbackDeadlineSerial = feedbackDeadlineSerial,
.lease = FRAME_SCHEDULER_LEASE_MS,
};
if (lgmpClientSendData(queue, &message, sizeof(message), NULL) != LGMP_OK)
return;
scheduler->active = true;
scheduler->resetPending = false;
scheduler->immediatePending = false;
scheduler->lastSend = now;
if (scheduler->feedbackFrameSerial == feedbackFrameSerial &&
scheduler->feedbackScheduleEpoch == feedbackScheduleEpoch &&
scheduler->feedbackDeadlineSerial == feedbackDeadlineSerial)
scheduler->feedbackDirty = false;
}