[common] kvmfr: report cadence hold and lead timing

This commit is contained in:
Geoffrey McRae
2026-08-06 17:14:29 +10:00
parent 1b78384da3
commit 0b744d2286
7 changed files with 59 additions and 20 deletions

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@@ -104,6 +104,8 @@ typedef struct LG_TransportFrameTiming
uint64_t postProcessTime;
uint64_t copyTime;
uint64_t readyTime;
uint64_t holdTime;
uint64_t readyLeadTime;
}
LG_TransportFrameTiming;

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@@ -1085,6 +1085,8 @@ static void lgmp_getFrameTiming(LG_Transport * this,
timing->postProcessTime = lease->frame->postProcessTime;
timing->copyTime = lease->frame->copyTime;
timing->readyTime = lease->frame->readyTime;
timing->holdTime = lease->frame->holdTime;
timing->readyLeadTime = lease->frame->readyLeadTime;
LG_UNLOCK(this->frameLock);
}

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@@ -30,7 +30,7 @@
#include "LGMPConfig.h"
#define KVMFR_MAGIC "KVMFR---"
#define KVMFR_VERSION 28
#define KVMFR_VERSION 29
// Fallback used by producers that cannot report the source display's SDR
// white level. IDD frames override this with IDDCX_METADATA2::SdrWhiteLevel.
@@ -210,24 +210,23 @@ typedef struct KVMFRFrame
uint64_t captureTime;
uint64_t postProcessTime;
uint64_t copyTime;
// Time from copy completion until FrameBuffer::wp publishes readiness.
// Non-copy preparation and publication time, excluding cadence hold time.
uint64_t readyTime;
// Time a prepared frame waited for its cadence publication target.
uint64_t holdTime;
// Time remaining until the cadence deadline when the frame was published.
uint64_t readyLeadTime;
// Published after the timing fields and matched against frameSerial by the
// client. timingValid is written last by the producer.
uint32_t timingSerial;
uint32_t timingValid;
// Producer cadence identity. Phase feedback is permitted only when the
// matching frame has KVMFR_FRAME_TIMING_PHASE_VALID set.
KVMFRFrameTimingFlags timingFlags;
uint32_t scheduleGeneration;
uint32_t scheduleEpoch;
uint32_t scheduleDeadlineSerial;
// Keep the conditional HDR block and damage rectangles on separate cache
// lines from the producer timing fields.
uint8_t timingReserved[8];
uint8_t timingReserved[4];
// HDR static metadata (valid when FRAME_FLAG_HDR_METADATA is set)
// Display color primaries in 0.00002 units (SMPTE ST 2086 format)
@@ -242,7 +241,13 @@ typedef struct KVMFRFrame
uint32_t hdrMaxContentLightLevel; // MaxCLL (cd/m²)
uint32_t hdrMaxFrameAverageLightLevel; // MaxFALL (cd/m²)
uint8_t hdrReserved[32];
// Producer cadence identity. Phase feedback is permitted only when the
// matching frame has KVMFR_FRAME_TIMING_PHASE_VALID set.
uint32_t scheduleGeneration;
uint32_t scheduleEpoch;
uint32_t scheduleDeadlineSerial;
uint8_t hdrReserved[20];
FrameDamageRect damageRects[KVMFR_MAX_DAMAGE_RECTS];
}
@@ -251,9 +256,15 @@ KVMFRFrame;
#if defined(__cplusplus)
static_assert(offsetof(KVMFRFrame, captureTime) == 64,
"KVMFRFrame hot fields must fit in one cache line");
static_assert(offsetof(KVMFRFrame, timingFlags) == 104,
static_assert(offsetof(KVMFRFrame, holdTime) == 96,
"KVMFRFrame hold timing layout changed");
static_assert(offsetof(KVMFRFrame, readyLeadTime) == 104,
"KVMFRFrame ready lead timing layout changed");
static_assert(offsetof(KVMFRFrame, timingSerial) == 112,
"KVMFRFrame timing publication layout changed");
static_assert(offsetof(KVMFRFrame, timingFlags) == 120,
"KVMFRFrame timing flags layout changed");
static_assert(offsetof(KVMFRFrame, scheduleDeadlineSerial) == 116,
static_assert(offsetof(KVMFRFrame, scheduleDeadlineSerial) == 168,
"KVMFRFrame schedule identity layout changed");
static_assert(offsetof(KVMFRFrame, hdrDisplayPrimary) == 128,
"KVMFRFrame HDR metadata must be cache-line aligned");
@@ -262,9 +273,15 @@ static_assert(offsetof(KVMFRFrame, damageRects) == 192,
#elif defined(__STDC_VERSION__) && __STDC_VERSION__ >= 201112L
_Static_assert(offsetof(KVMFRFrame, captureTime) == 64,
"KVMFRFrame hot fields must fit in one cache line");
_Static_assert(offsetof(KVMFRFrame, timingFlags) == 104,
_Static_assert(offsetof(KVMFRFrame, holdTime) == 96,
"KVMFRFrame hold timing layout changed");
_Static_assert(offsetof(KVMFRFrame, readyLeadTime) == 104,
"KVMFRFrame ready lead timing layout changed");
_Static_assert(offsetof(KVMFRFrame, timingSerial) == 112,
"KVMFRFrame timing publication layout changed");
_Static_assert(offsetof(KVMFRFrame, timingFlags) == 120,
"KVMFRFrame timing flags layout changed");
_Static_assert(offsetof(KVMFRFrame, scheduleDeadlineSerial) == 116,
_Static_assert(offsetof(KVMFRFrame, scheduleDeadlineSerial) == 168,
"KVMFRFrame schedule identity layout changed");
_Static_assert(offsetof(KVMFRFrame, hdrDisplayPrimary) == 128,
"KVMFRFrame HDR metadata must be cache-line aligned");

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@@ -403,6 +403,8 @@ static bool sendFrame(CaptureResult result, bool * restart)
fi->postProcessTime = 0;
fi->copyTime = 0;
fi->readyTime = 0;
fi->holdTime = 0;
fi->readyLeadTime = 0;
fi->timingSerial = 0;
fi->timingFlags = 0;
fi->scheduleGeneration = 0;

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@@ -1973,6 +1973,8 @@ CIndirectDeviceContext::PreparedFrameBuffer CIndirectDeviceContext::PrepareFrame
fi->postProcessTime = 0;
fi->copyTime = 0;
fi->readyTime = 0;
fi->holdTime = 0;
fi->readyLeadTime = 0;
fi->timingSerial = 0;
fi->timingFlags = 0;
fi->scheduleGeneration = 0;
@@ -2343,8 +2345,8 @@ void CIndirectDeviceContext::CompleteFrameBuffer(
void CIndirectDeviceContext::SetFrameTiming(unsigned frameIndex,
uint64_t captureTime, uint64_t postProcessTime, uint64_t copyTime,
uint64_t readyTime, const CFrameScheduler::Schedule& schedule,
uint64_t completedAt)
uint64_t readyTime, uint64_t holdTime,
const CFrameScheduler::Schedule& schedule, uint64_t completedAt)
{
if (frameIndex >= LGMP_Q_FRAME_BUFFER_LEN)
return;
@@ -2357,6 +2359,10 @@ void CIndirectDeviceContext::SetFrameTiming(unsigned frameIndex,
frame->postProcessTime = postProcessTime;
frame->copyTime = copyTime;
frame->readyTime = readyTime;
frame->holdTime = holdTime;
frame->readyLeadTime = phaseValid &&
schedule.deadline >= completedAt ?
schedule.deadline - completedAt : 0;
frame->timingFlags = phaseValid ?
KVMFR_FRAME_TIMING_PHASE_VALID : 0;
frame->timingSerial = frame->frameSerial;

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@@ -299,7 +299,8 @@ public:
void CompleteFrameBuffer(unsigned frameIndex, bool succeeded);
void SetFrameTiming(unsigned frameIndex, uint64_t captureTime,
uint64_t postProcessTime, uint64_t copyTime, uint64_t readyTime,
const CFrameScheduler::Schedule& schedule, uint64_t completedAt);
uint64_t holdTime, const CFrameScheduler::Schedule& schedule,
uint64_t completedAt);
void WriteFrameBuffer(unsigned frameIndex, void* src, size_t offset, size_t len, bool setWritePos) const;
void FinalizeFrameBuffer(unsigned frameIndex) const;

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@@ -766,12 +766,21 @@ void CSwapChainProcessor::CompletionFunction(
// discarded.
sc->m_devContext->FinalizeFrameBuffer(fbRes->GetFrameIndex());
const uint64_t publishedAt = CFrameScheduler::Nanotime();
const uint64_t elapsed = publishedAt - postProcessStart;
const uint64_t measured = postProcessTime + copyTime;
const uint64_t readyTime = elapsed > measured ? elapsed - measured : 0;
const uint64_t prepareElapsed = prepareReady >= postProcessStart ?
prepareReady - postProcessStart : 0;
const uint64_t prepareMeasured = postProcessTime + prepareCopyTime;
const uint64_t prepareReadyTime = prepareElapsed > prepareMeasured ?
prepareElapsed - prepareMeasured : 0;
const uint64_t publishElapsed = publishedAt >= publishStart ?
publishedAt - publishStart : 0;
const uint64_t publishReadyTime = publishElapsed > publishCopyTime ?
publishElapsed - publishCopyTime : 0;
const uint64_t readyTime = prepareReadyTime + publishReadyTime;
const uint64_t holdTime = publishStart >= prepareReady ?
publishStart - prepareReady : 0;
sc->m_devContext->SetFrameTiming(fbRes->GetFrameIndex(),
fbRes->GetCaptureTime(), postProcessTime, copyTime, readyTime,
fbRes->GetCaptureTime(), postProcessTime, copyTime, readyTime, holdTime,
fbRes->GetSchedule(), publishedAt);
sc->m_devContext->TryRecordFrameTiming(
publishedAt - publishStart);