Files
LookingGlass/idd/LGIdd/transport/lgmp/CLGMPTransport.cpp
Geoffrey McRae 6725133375 [idd] transport: abstract LGMP implementation
Introduce transport, frame, and control interfaces with an LGMP factory
backend.

Move LGMP and IVSHMEM implementation details under transport/lgmp and
expose direct frame-buffer memory through a neutral capability.
2026-08-07 17:53:00 +10:00

184 lines
5.4 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 "transport/lgmp/CLGMPTransport.h"
#include "CDebug.h"
#include "common/KVMFR.h"
static bool TranslateFrameScheduleFlags(
uint32_t source, uint32_t& destination)
{
static const uint32_t validFlags =
KVMFR_FRAME_SCHEDULE_ACTIVE |
KVMFR_FRAME_SCHEDULE_RELEASE |
KVMFR_FRAME_SCHEDULE_RESET |
KVMFR_FRAME_SCHEDULE_IMMEDIATE;
if (source & ~validFlags)
return false;
destination = 0;
if (source & KVMFR_FRAME_SCHEDULE_ACTIVE)
destination |= FRAME_SCHEDULE_ACTIVE;
if (source & KVMFR_FRAME_SCHEDULE_RELEASE)
destination |= FRAME_SCHEDULE_RELEASE;
if (source & KVMFR_FRAME_SCHEDULE_RESET)
destination |= FRAME_SCHEDULE_RESET;
if (source & KVMFR_FRAME_SCHEDULE_IMMEDIATE)
destination |= FRAME_SCHEDULE_IMMEDIATE;
return true;
}
CLGMPTransport::CLGMPTransport() :
m_control(m_host),
m_frames(m_host, m_ivshmem)
{
}
ITransport::OpenResult CLGMPTransport::Open()
{
if (m_ivshmem.GetMem())
return OpenResult::SUCCESS;
if (!m_ivshmem.Init() || !m_ivshmem.Open())
return OpenResult::RETRY;
return OpenResult::SUCCESS;
}
bool CLGMPTransport::Initialize()
{
if (!m_host.Initialize(m_ivshmem))
return false;
// Preserve the shared-memory layout: frame queues precede the pointer queue
// and its retained cursor and color-transform allocations.
if (!m_frames.Initialize() || !m_control.Initialize())
return false;
m_frames.SealMemoryLayout();
return true;
}
bool CLGMPTransport::Setup(size_t alignment)
{
return m_frames.Setup(alignment);
}
void CLGMPTransport::Process(ITransportEvents& events)
{
const LGMP_STATUS processStatus = m_host.Process();
if (processStatus != LGMP_OK)
{
if (processStatus == LGMP_ERR_CORRUPTED)
{
DEBUG_WARN(
"LGMP reported the shared memory has been corrupted, attempting to recover\n");
// TODO: reinitialize LGMP.
return;
}
DEBUG_ERROR("lgmpHostProcess Failed: %s",
lgmpStatusString(processStatus));
// TODO: shut down LGMP.
return;
}
const uint64_t now = CFrameScheduler::Nanotime();
// Take the frame subscriber snapshot before processing scheduling messages,
// then publish both updates together just as the original timer did.
const CLGMPFrameTransport::SubscriberSnapshot subscribers =
m_frames.SnapshotSubscribers();
uint8_t data[LGMP_MSGS_SIZE];
size_t size;
uint32_t sourceClientID;
LGMP_STATUS status;
while ((status = m_control.ReadDataWithSource(
data, &size, &sourceClientID)) == LGMP_OK)
{
KVMFRMessage * msg = reinterpret_cast<KVMFRMessage *>(data);
switch (msg->type)
{
case KVMFR_MESSAGE_SETCURSORPOS:
{
KVMFRSetCursorPos * position =
reinterpret_cast<KVMFRSetCursorPos *>(msg);
events.OnSetCursorPos(position->x, position->y);
break;
}
case KVMFR_MESSAGE_WINDOWSIZE:
{
KVMFRWindowSize * window =
reinterpret_cast<KVMFRWindowSize *>(msg);
events.OnSetResolution(window->w, window->h);
break;
}
case KVMFR_MESSAGE_FRAME_SCHEDULE:
{
const KVMFRFrameSchedule * schedule =
reinterpret_cast<KVMFRFrameSchedule *>(msg);
uint32_t translatedFlags = 0;
bool valid = size == sizeof(*schedule) &&
TranslateFrameScheduleFlags(schedule->flags, translatedFlags);
if (valid)
{
FrameScheduleUpdate update = {};
update.clientID = schedule->clientID;
update.generation = schedule->generation;
update.flags = translatedFlags;
update.period = schedule->period;
update.targetSlack = schedule->targetSlack;
update.phaseError = schedule->phaseError;
update.feedbackFrameSerial = schedule->feedbackFrameSerial;
update.feedbackScheduleEpoch = schedule->feedbackScheduleEpoch;
update.feedbackDeadlineSerial = schedule->feedbackDeadlineSerial;
update.lease = schedule->lease;
valid = m_frames.UpdateSchedule(sourceClientID, update, now);
}
if (!valid)
DEBUG_WARN("Ignoring invalid KVMFR frame schedule");
break;
}
}
m_control.AckData();
}
m_frames.FinalizeSubscribers(subscribers, now);
if (m_control.HasNewSubscribers())
m_control.ResendState();
}
FrameMemoryLimits CLGMPTransport::GetMemoryLimits() const
{
return m_frames.GetMemoryLimits();
}
DirectFrameBufferMemory CLGMPTransport::GetDirectMemory() const
{
return {m_ivshmem.GetMem(), m_ivshmem.GetSize()};
}