Files
Kyty/source/emulator/src/Graphics/VideoOut.cpp
T
2022-03-21 19:23:27 +10:00

970 lines
25 KiB
C++

#include "Emulator/Graphics/VideoOut.h"
#include "Kyty/Core/Common.h"
#include "Kyty/Core/DbgAssert.h"
#include "Kyty/Core/LinkList.h"
#include "Kyty/Core/String.h"
#include "Kyty/Core/Threads.h"
#include "Kyty/Core/Vector.h"
#include "Emulator/Common.h"
#include "Emulator/Config.h"
#include "Emulator/Graphics/GraphicsRender.h"
#include "Emulator/Graphics/Objects/GpuMemory.h"
#include "Emulator/Graphics/Objects/VideoOutBuffer.h"
#include "Emulator/Graphics/Tile.h"
#include "Emulator/Graphics/Window.h"
#include "Emulator/Kernel/Pthread.h"
#include "Emulator/Libs/Errno.h"
#include "Emulator/Libs/Libs.h"
#include "Emulator/Profiler.h"
#ifdef KYTY_EMU_ENABLED
namespace Kyty::Libs::Graphics {
struct GraphicContext;
} // namespace Kyty::Libs::Graphics
namespace Kyty::Libs::VideoOut {
LIB_NAME("VideoOut", "VideoOut");
namespace EventQueue = LibKernel::EventQueue;
constexpr int VIDEO_OUT_EVENT_FLIP = 0;
constexpr int VIDEO_OUT_EVENT_VBLANK = 1;
constexpr int VIDEO_OUT_EVENT_PRE_VBLANK_START = 2;
struct VideoOutResolutionStatus
{
uint32_t fullWidth = 1280;
uint32_t fullHeight = 720;
uint32_t paneWidth = 1280;
uint32_t paneHeight = 720;
uint64_t refreshRate = 3;
float screenSizeInInch = 50;
uint16_t flags = 0;
uint16_t reserved0 = 0;
uint32_t reserved1[3] = {0};
};
struct VideoOutBufferAttribute
{
uint32_t pixelFormat;
uint32_t tilingMode;
uint32_t aspectRatio;
uint32_t width;
uint32_t height;
uint32_t pitchInPixel;
uint32_t option;
uint32_t reserved0;
uint64_t reserved1;
};
struct VideoOutFlipStatus
{
uint64_t count = 0;
uint64_t processTime = 0;
uint64_t tsc = 0;
int64_t flipArg = 0;
uint64_t submitTsc = 0;
uint64_t reserved0 = 0;
int32_t gcQueueNum = 0;
int32_t flipPendingNum = 0;
int32_t currentBuffer = 0;
uint32_t reserved1 = 0;
};
struct VideoOutVblankStatus
{
uint64_t count = 0;
uint64_t processTime = 0;
uint64_t tsc = 0;
uint64_t reserved[1] = {0};
uint8_t flags = 0;
uint8_t pad1[7] = {};
};
struct VideoOutBufferSet
{
VideoOutBufferAttribute attr = {};
int start_index = 0;
int num = 0;
};
struct VideoOutBufferInfo
{
void* buffer = nullptr;
Graphics::VideoOutVulkanImage* buffer_vulkan = nullptr;
uint64_t buffer_size = 0;
uint64_t buffer_pitch = 0;
int set_id = 0;
};
struct VideoOutConfig
{
Core::Mutex mutex;
VideoOutResolutionStatus resolution;
bool opened = false;
int flip_rate = 0;
Vector<EventQueue::KernelEqueue> flip_eqs;
Vector<EventQueue::KernelEqueue> pre_vblank_eqs;
Vector<EventQueue::KernelEqueue> vblank_eqs;
VideoOutFlipStatus flip_status;
VideoOutVblankStatus pre_vblank_status;
VideoOutVblankStatus vblank_status;
VideoOutBufferInfo buffers[16];
VideoOutBufferSet buffers_sets[16];
int buffers_sets_num = 0;
};
class FlipQueue
{
public:
FlipQueue() { EXIT_NOT_IMPLEMENTED(!Core::Thread::IsMainThread()); }
virtual ~FlipQueue() { KYTY_NOT_IMPLEMENTED; }
KYTY_CLASS_NO_COPY(FlipQueue);
bool Submit(VideoOutConfig* cfg, int index, int64_t flip_arg);
bool Flip(uint32_t micros);
void GetFlipStatus(VideoOutConfig* cfg, VideoOutFlipStatus* out);
void Wait(VideoOutConfig* cfg, int index);
private:
struct Request
{
VideoOutConfig* cfg;
int index;
int64_t flip_arg;
uint64_t submit_tsc;
};
Core::Mutex m_mutex;
Core::CondVar m_submit_cond_var;
Core::CondVar m_done_cond_var;
Core::List<Request> m_requests;
};
class VideoOutContext
{
public:
static constexpr int VIDEO_OUT_NUM_MAX = 2;
VideoOutContext() { EXIT_NOT_IMPLEMENTED(!Core::Thread::IsMainThread()); }
virtual ~VideoOutContext() { KYTY_NOT_IMPLEMENTED; }
KYTY_CLASS_NO_COPY(VideoOutContext);
int Open();
void Close(int handle);
VideoOutConfig* Get(int handle);
VideoOutBufferImageInfo FindImage(void* buffer);
void Init(uint32_t width, uint32_t height);
Graphics::GraphicContext* GetGraphicCtx()
{
Core::LockGuard lock(m_mutex);
if (m_graphic_ctx == nullptr)
{
m_graphic_ctx = Graphics::WindowGetGraphicContext();
}
return m_graphic_ctx;
}
FlipQueue& GetFlipQueue() { return m_flip_queue; }
void VblankBegin();
void VblankEnd();
private:
Core::Mutex m_mutex;
VideoOutConfig m_video_out_ctx[VIDEO_OUT_NUM_MAX];
Graphics::GraphicContext* m_graphic_ctx = nullptr;
FlipQueue m_flip_queue;
};
static VideoOutContext* g_video_out_context = nullptr;
static void calc_buffer_size(const VideoOutBufferAttribute* attribute, uint64_t* size, uint64_t* pitch)
{
EXIT_IF(size == nullptr);
EXIT_IF(pitch == nullptr);
bool tile = attribute->tilingMode == 0;
bool neo = Config::IsNeo();
uint32_t width = attribute->width;
uint32_t height = attribute->height;
EXIT_NOT_IMPLEMENTED(attribute->width != attribute->pitchInPixel);
EXIT_NOT_IMPLEMENTED(attribute->option != 0);
EXIT_NOT_IMPLEMENTED(attribute->aspectRatio != 0);
EXIT_NOT_IMPLEMENTED(attribute->pixelFormat != 0x80000000);
uint32_t size32 = 0;
uint32_t pitch32 = 0;
Graphics::TileGetVideoOutSize(width, height, tile, neo, &size32, &pitch32);
*size = size32;
*pitch = pitch32;
}
void VideoOutInit(uint32_t width, uint32_t height)
{
EXIT_IF(g_video_out_context != nullptr);
g_video_out_context = new VideoOutContext;
g_video_out_context->Init(width, height);
}
void VideoOutContext::Init(uint32_t width, uint32_t height)
{
for (auto& ctx: m_video_out_ctx)
{
ctx.resolution.fullWidth = width;
ctx.resolution.fullHeight = height;
ctx.resolution.paneWidth = width;
ctx.resolution.paneHeight = height;
}
}
int VideoOutContext::Open()
{
Core::LockGuard lock(m_mutex);
int handle = -1;
for (int i = 1; i < VIDEO_OUT_NUM_MAX; i++)
{
if (!m_video_out_ctx[i].opened)
{
handle = i;
break;
}
}
EXIT_IF(!m_video_out_ctx[handle].flip_eqs.IsEmpty());
EXIT_IF(!m_video_out_ctx[handle].pre_vblank_eqs.IsEmpty());
EXIT_IF(!m_video_out_ctx[handle].vblank_eqs.IsEmpty());
EXIT_IF(m_video_out_ctx[handle].flip_rate != 0);
m_video_out_ctx[handle].opened = true;
m_video_out_ctx[handle].flip_status = VideoOutFlipStatus();
m_video_out_ctx[handle].flip_status.flipArg = -1;
m_video_out_ctx[handle].flip_status.currentBuffer = -1;
m_video_out_ctx[handle].flip_status.count = 0;
m_video_out_ctx[handle].pre_vblank_status = VideoOutVblankStatus();
m_video_out_ctx[handle].vblank_status = VideoOutVblankStatus();
return handle;
}
void VideoOutContext::Close(int handle)
{
Core::LockGuard lock(m_mutex);
EXIT_NOT_IMPLEMENTED(handle >= VIDEO_OUT_NUM_MAX);
EXIT_NOT_IMPLEMENTED(!m_video_out_ctx[handle].opened);
m_video_out_ctx[handle].opened = false;
m_video_out_ctx[handle].mutex.Lock();
for (auto& flip_eq: m_video_out_ctx[handle].flip_eqs)
{
if (flip_eq != nullptr)
{
auto result = EventQueue::KernelDeleteEvent(flip_eq, VIDEO_OUT_EVENT_FLIP, EventQueue::KERNEL_EVFILT_VIDEO_OUT);
EXIT_NOT_IMPLEMENTED(result != OK);
}
}
m_video_out_ctx[handle].flip_eqs.Clear();
for (auto& vblank_eq: m_video_out_ctx[handle].pre_vblank_eqs)
{
if (vblank_eq != nullptr)
{
auto result = EventQueue::KernelDeleteEvent(vblank_eq, VIDEO_OUT_EVENT_VBLANK, EventQueue::KERNEL_EVFILT_VIDEO_OUT);
EXIT_NOT_IMPLEMENTED(result != OK);
}
}
m_video_out_ctx[handle].pre_vblank_eqs.Clear();
for (auto& vblank_eq: m_video_out_ctx[handle].vblank_eqs)
{
if (vblank_eq != nullptr)
{
auto result = EventQueue::KernelDeleteEvent(vblank_eq, VIDEO_OUT_EVENT_PRE_VBLANK_START, EventQueue::KERNEL_EVFILT_VIDEO_OUT);
EXIT_NOT_IMPLEMENTED(result != OK);
}
}
m_video_out_ctx[handle].vblank_eqs.Clear();
m_video_out_ctx[handle].mutex.Unlock();
m_video_out_ctx[handle].flip_rate = 0;
for (int i = 0; i < 16; i++)
{
m_video_out_ctx[handle].buffers[i].buffer = nullptr;
m_video_out_ctx[handle].buffers[i].buffer_vulkan = nullptr;
m_video_out_ctx[handle].buffers[i].buffer_size = 0;
m_video_out_ctx[handle].buffers[i].set_id = 0;
m_video_out_ctx[handle].buffers_sets[i].num = 0;
m_video_out_ctx[handle].buffers_sets[i].start_index = 0;
}
m_video_out_ctx[handle].buffers_sets_num = 0;
}
VideoOutConfig* VideoOutContext::Get(int handle)
{
EXIT_NOT_IMPLEMENTED(handle >= VIDEO_OUT_NUM_MAX);
EXIT_NOT_IMPLEMENTED(!m_video_out_ctx[handle].opened);
return m_video_out_ctx + handle;
}
void VideoOutContext::VblankBegin()
{
Core::LockGuard lock(m_mutex);
for (int i = 1; i < VIDEO_OUT_NUM_MAX; i++)
{
auto& ctx = m_video_out_ctx[i];
if (ctx.opened)
{
ctx.mutex.Lock();
ctx.pre_vblank_status.count++;
ctx.pre_vblank_status.processTime = LibKernel::KernelGetProcessTime();
ctx.pre_vblank_status.tsc = LibKernel::KernelReadTsc();
for (auto& vblank_eq: ctx.pre_vblank_eqs)
{
if (vblank_eq != nullptr)
{
auto result = EventQueue::KernelTriggerEvent(vblank_eq, VIDEO_OUT_EVENT_VBLANK, EventQueue::KERNEL_EVFILT_VIDEO_OUT,
reinterpret_cast<void*>(ctx.pre_vblank_status.count));
EXIT_NOT_IMPLEMENTED(result != OK);
}
}
ctx.mutex.Unlock();
}
}
}
void VideoOutContext::VblankEnd()
{
Core::LockGuard lock(m_mutex);
for (int i = 1; i < VIDEO_OUT_NUM_MAX; i++)
{
auto& ctx = m_video_out_ctx[i];
if (ctx.opened)
{
ctx.mutex.Lock();
ctx.vblank_status.count++;
ctx.vblank_status.processTime = LibKernel::KernelGetProcessTime();
ctx.vblank_status.tsc = LibKernel::KernelReadTsc();
for (auto& vblank_eq: ctx.vblank_eqs)
{
if (vblank_eq != nullptr)
{
auto result = EventQueue::KernelTriggerEvent(vblank_eq, VIDEO_OUT_EVENT_VBLANK, EventQueue::KERNEL_EVFILT_VIDEO_OUT,
reinterpret_cast<void*>(ctx.vblank_status.count));
EXIT_NOT_IMPLEMENTED(result != OK);
}
}
ctx.mutex.Unlock();
}
}
}
VideoOutBufferImageInfo VideoOutContext::FindImage(void* buffer)
{
VideoOutBufferImageInfo ret;
Core::LockGuard lock(m_mutex);
for (auto& ctx: m_video_out_ctx)
{
if (ctx.opened)
{
for (int i = 0; i < ctx.buffers_sets_num; i++)
{
for (int j = ctx.buffers_sets[i].start_index; j < ctx.buffers_sets[i].num; j++)
{
if (ctx.buffers[j].buffer == buffer)
{
ret.image = ctx.buffers[j].buffer_vulkan;
ret.buffer_size = ctx.buffers[j].buffer_size;
ret.buffer_pitch = ctx.buffers[j].buffer_pitch;
ret.index = j - ctx.buffers_sets[i].start_index;
goto END;
}
}
}
}
}
END:
return ret;
}
bool FlipQueue::Submit(VideoOutConfig* cfg, int index, int64_t flip_arg)
{
Core::LockGuard lock(m_mutex);
if (m_requests.Size() >= 2)
{
return false;
}
Request r {};
r.cfg = cfg;
r.index = index;
r.flip_arg = flip_arg;
r.submit_tsc = LibKernel::KernelReadTsc();
m_requests.Add(r);
cfg->flip_status.flipPendingNum = static_cast<int>(m_requests.Size());
cfg->flip_status.gcQueueNum = 0;
m_submit_cond_var.Signal();
return true;
}
void FlipQueue::Wait(VideoOutConfig* cfg, int index)
{
Core::LockGuard lock(m_mutex);
while (
m_requests.IndexValid(m_requests.Find(cfg, index, [](auto r, auto cfg, auto index) { return r.cfg == cfg && r.index == index; })))
{
m_done_cond_var.Wait(&m_mutex);
}
}
bool FlipQueue::Flip(uint32_t micros)
{
KYTY_PROFILER_BLOCK("FlipQueue::Flip");
m_mutex.Lock();
if (m_requests.Size() == 0)
{
m_submit_cond_var.WaitFor(&m_mutex, micros);
if (m_requests.Size() == 0)
{
m_mutex.Unlock();
return false;
}
}
auto first = m_requests.First();
auto r = m_requests.At(first);
m_mutex.Unlock();
auto* buffer = r.cfg->buffers[r.index].buffer_vulkan;
Graphics::WindowDrawBuffer(buffer);
m_mutex.Lock();
r.cfg->mutex.Lock();
for (auto& flip_eq: r.cfg->flip_eqs)
{
if (flip_eq != nullptr)
{
auto result = EventQueue::KernelTriggerEvent(flip_eq, VIDEO_OUT_EVENT_FLIP, EventQueue::KERNEL_EVFILT_VIDEO_OUT,
reinterpret_cast<void*>(r.flip_arg));
EXIT_NOT_IMPLEMENTED(result != OK);
}
}
r.cfg->mutex.Unlock();
printf("Flip done: %d\n", r.index);
// m_mutex.Lock();
m_requests.Remove(first);
m_done_cond_var.Signal();
r.cfg->flip_status.count++;
r.cfg->flip_status.processTime = LibKernel::KernelGetProcessTime();
r.cfg->flip_status.tsc = LibKernel::KernelReadTsc();
r.cfg->flip_status.submitTsc = r.submit_tsc;
r.cfg->flip_status.flipArg = r.flip_arg;
r.cfg->flip_status.currentBuffer = r.index;
r.cfg->flip_status.flipPendingNum = static_cast<int>(m_requests.Size());
m_mutex.Unlock();
Graphics::GpuMemoryFrameDone();
Graphics::GpuMemoryDbgDump();
return true;
}
void FlipQueue::GetFlipStatus(VideoOutConfig* cfg, VideoOutFlipStatus* out)
{
EXIT_IF(cfg == nullptr);
EXIT_IF(out == nullptr);
Core::LockGuard lock(m_mutex);
*out = cfg->flip_status;
}
bool VideoOutFlipWindow(uint32_t micros)
{
EXIT_IF(g_video_out_context == nullptr);
return g_video_out_context->GetFlipQueue().Flip(micros);
}
void VideoOutBeginVblank()
{
EXIT_IF(g_video_out_context == nullptr);
// g_video_out_context->VblankBegin();
}
void VideoOutEndVblank()
{
EXIT_IF(g_video_out_context == nullptr);
// g_video_out_context->VblankEnd();
}
KYTY_SYSV_ABI int VideoOutOpen(int user_id, int bus_type, int index, const void* param)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
EXIT_NOT_IMPLEMENTED(user_id != 255 && user_id != 0);
EXIT_NOT_IMPLEMENTED(bus_type != 0);
EXIT_NOT_IMPLEMENTED(index != 0);
EXIT_NOT_IMPLEMENTED(param != nullptr);
int handle = g_video_out_context->Open();
if (handle < 0)
{
return VIDEO_OUT_ERROR_RESOURCE_BUSY;
}
return handle;
}
KYTY_SYSV_ABI int VideoOutClose(int handle)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
g_video_out_context->Close(handle);
return OK;
}
KYTY_SYSV_ABI int VideoOutGetResolutionStatus(int handle, VideoOutResolutionStatus* status)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
EXIT_NOT_IMPLEMENTED(status == nullptr);
*status = g_video_out_context->Get(handle)->resolution;
return OK;
}
KYTY_SYSV_ABI void VideoOutSetBufferAttribute(VideoOutBufferAttribute* attribute, uint32_t pixel_format, uint32_t tiling_mode,
uint32_t aspect_ratio, uint32_t width, uint32_t height, uint32_t pitch_in_pixel)
{
PRINT_NAME();
EXIT_NOT_IMPLEMENTED(attribute == nullptr);
printf("\tpixel_format = %08" PRIx32 "\n", pixel_format);
printf("\ttiling_mode = %" PRIu32 "\n", tiling_mode);
printf("\taspect_ratio = %" PRIu32 "\n", aspect_ratio);
printf("\twidth = %" PRIu32 "\n", width);
printf("\theight = %" PRIu32 "\n", height);
printf("\tpitch_in_pixel = %" PRIu32 "\n", pitch_in_pixel);
memset(attribute, 0, sizeof(VideoOutBufferAttribute));
attribute->pixelFormat = pixel_format;
attribute->tilingMode = tiling_mode;
attribute->aspectRatio = aspect_ratio;
attribute->width = width;
attribute->height = height;
attribute->pitchInPixel = pitch_in_pixel;
}
KYTY_SYSV_ABI int VideoOutSetFlipRate(int handle, int rate)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
EXIT_NOT_IMPLEMENTED(rate < 0 || rate > 2);
printf("\trate = %d\n", rate);
g_video_out_context->Get(handle)->flip_rate = rate;
return OK;
}
static void flip_event_reset_func(LibKernel::EventQueue::KernelEqueueEvent* event)
{
EXIT_IF(event == nullptr);
event->triggered = false;
event->event.fflags = 0;
event->event.data = 0;
}
static void flip_event_delete_func(EventQueue::KernelEqueue eq, LibKernel::EventQueue::KernelEqueueEvent* event)
{
EXIT_IF(event == nullptr);
EXIT_IF(event->filter.data == nullptr);
EXIT_NOT_IMPLEMENTED(event->event.ident != VIDEO_OUT_EVENT_FLIP);
EXIT_NOT_IMPLEMENTED(event->event.filter != EventQueue::KERNEL_EVFILT_VIDEO_OUT);
if (event->filter.data != nullptr)
{
auto* video_out = static_cast<VideoOutConfig*>(event->filter.data);
video_out->mutex.Lock();
EXIT_IF(video_out->flip_eqs.IsEmpty());
auto index = video_out->flip_eqs.Find(eq);
EXIT_NOT_IMPLEMENTED(!video_out->flip_eqs.IndexValid(index));
video_out->flip_eqs[index] = nullptr;
video_out->mutex.Unlock();
}
}
static void flip_event_trigger_func(LibKernel::EventQueue::KernelEqueueEvent* event, void* trigger_data)
{
EXIT_IF(event == nullptr);
event->triggered = true;
event->event.fflags++;
event->event.data = reinterpret_cast<intptr_t>(trigger_data);
}
static void vblank_event_reset_func(LibKernel::EventQueue::KernelEqueueEvent* event)
{
EXIT_IF(event == nullptr);
event->triggered = false;
event->event.fflags = 0;
event->event.data = 0;
}
static void vblank_event_delete_func(EventQueue::KernelEqueue eq, LibKernel::EventQueue::KernelEqueueEvent* event)
{
EXIT_IF(event == nullptr);
EXIT_IF(event->filter.data == nullptr);
EXIT_NOT_IMPLEMENTED(event->event.ident != VIDEO_OUT_EVENT_VBLANK);
EXIT_NOT_IMPLEMENTED(event->event.filter != EventQueue::KERNEL_EVFILT_VIDEO_OUT);
if (event->filter.data != nullptr)
{
auto* video_out = static_cast<VideoOutConfig*>(event->filter.data);
video_out->mutex.Lock();
EXIT_IF(video_out->vblank_eqs.IsEmpty());
auto index = video_out->vblank_eqs.Find(eq);
EXIT_NOT_IMPLEMENTED(!video_out->vblank_eqs.IndexValid(index));
video_out->vblank_eqs[index] = nullptr;
video_out->mutex.Unlock();
}
}
static void vblank_event_trigger_func(LibKernel::EventQueue::KernelEqueueEvent* event, void* trigger_data)
{
EXIT_IF(event == nullptr);
event->triggered = true;
event->event.fflags++;
event->event.data = reinterpret_cast<intptr_t>(trigger_data);
}
KYTY_SYSV_ABI int VideoOutAddFlipEvent(EventQueue::KernelEqueue eq, int handle, void* udata)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
auto* ctx = g_video_out_context->Get(handle);
ctx->mutex.Lock();
EXIT_NOT_IMPLEMENTED(ctx->flip_eqs.Contains(eq));
if (eq == nullptr)
{
return VIDEO_OUT_ERROR_INVALID_EVENT_QUEUE;
}
EventQueue::KernelEqueueEvent event;
event.triggered = false;
event.event.ident = VIDEO_OUT_EVENT_FLIP;
event.event.filter = EventQueue::KERNEL_EVFILT_VIDEO_OUT;
event.event.udata = udata;
event.event.fflags = 0;
event.event.data = 0;
event.filter.delete_event_func = flip_event_delete_func;
event.filter.reset_func = flip_event_reset_func;
event.filter.trigger_func = flip_event_trigger_func;
event.filter.data = ctx;
int result = EventQueue::KernelAddEvent(eq, event);
ctx->flip_eqs.Add(eq);
ctx->mutex.Unlock();
return result;
}
KYTY_SYSV_ABI int VideoOutAddVblankEvent(LibKernel::EventQueue::KernelEqueue eq, int handle, void* udata)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
auto* ctx = g_video_out_context->Get(handle);
ctx->mutex.Lock();
EXIT_NOT_IMPLEMENTED(ctx->vblank_eqs.Contains(eq));
if (eq == nullptr)
{
return VIDEO_OUT_ERROR_INVALID_EVENT_QUEUE;
}
EventQueue::KernelEqueueEvent event;
event.triggered = false;
event.event.ident = VIDEO_OUT_EVENT_VBLANK;
event.event.filter = EventQueue::KERNEL_EVFILT_VIDEO_OUT;
event.event.udata = udata;
event.event.fflags = 0;
event.event.data = 0;
event.filter.delete_event_func = vblank_event_delete_func;
event.filter.reset_func = vblank_event_reset_func;
event.filter.trigger_func = vblank_event_trigger_func;
event.filter.data = ctx;
int result = EventQueue::KernelAddEvent(eq, event);
ctx->vblank_eqs.Add(eq);
ctx->mutex.Unlock();
return result;
}
KYTY_SYSV_ABI int VideoOutRegisterBuffers(int handle, int start_index, void* const* addresses, int buffer_num,
const VideoOutBufferAttribute* attribute)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
auto* ctx = g_video_out_context->Get(handle);
if (addresses == nullptr)
{
return VIDEO_OUT_ERROR_INVALID_ADDRESS;
}
if (attribute == nullptr)
{
return VIDEO_OUT_ERROR_INVALID_OPTION;
}
if (start_index < 0 || start_index > 15 || buffer_num < 1 || buffer_num > 16 || start_index + buffer_num > 15)
{
return VIDEO_OUT_ERROR_INVALID_VALUE;
}
Graphics::WindowWaitForGraphicInitialized();
Graphics::GraphicsRenderCreateContext();
int set_index = ctx->buffers_sets_num++;
if (set_index > 15)
{
return VIDEO_OUT_ERROR_NO_EMPTY_SLOT;
}
printf("\tstart_index = %d\n", start_index);
printf("\tbuffer_num = %d\n", buffer_num);
printf("\tpixel_format = 0x%08" PRIx32 "\n", attribute->pixelFormat);
printf("\ttiling_mode = %" PRIu32 "\n", attribute->tilingMode);
printf("\taspect_ratio = %" PRIu32 "\n", attribute->aspectRatio);
printf("\twidth = %" PRIu32 "\n", attribute->width);
printf("\theight = %" PRIu32 "\n", attribute->height);
printf("\tpitch_in_pixel = %" PRIu32 "\n", attribute->pitchInPixel);
printf("\toption = %" PRIu32 "\n", attribute->option);
EXIT_NOT_IMPLEMENTED(attribute->pixelFormat != 0x80000000);
EXIT_NOT_IMPLEMENTED(attribute->tilingMode != 0);
EXIT_NOT_IMPLEMENTED(attribute->aspectRatio != 0);
EXIT_NOT_IMPLEMENTED(attribute->pitchInPixel != attribute->width);
EXIT_NOT_IMPLEMENTED(attribute->option != 0);
uint64_t buffer_size = 0;
uint64_t buffer_pitch = 0;
calc_buffer_size(attribute, &buffer_size, &buffer_pitch);
EXIT_NOT_IMPLEMENTED(buffer_size == 0);
EXIT_NOT_IMPLEMENTED(buffer_pitch == 0);
ctx->buffers_sets[set_index].start_index = start_index;
ctx->buffers_sets[set_index].num = buffer_num;
ctx->buffers_sets[set_index].attr = *attribute;
Graphics::VideoOutBufferObject vulkan_buffer_info(attribute->pixelFormat, attribute->width, attribute->height,
(attribute->tilingMode == 0), Config::IsNeo(), buffer_pitch);
for (int i = 0; i < buffer_num; i++)
{
if (ctx->buffers[i + start_index].buffer != nullptr)
{
return VIDEO_OUT_ERROR_SLOT_OCCUPIED;
}
ctx->buffers[i + start_index].set_id = set_index;
ctx->buffers[i + start_index].buffer = addresses[i];
ctx->buffers[i + start_index].buffer_size = buffer_size;
ctx->buffers[i + start_index].buffer_pitch = buffer_pitch;
ctx->buffers[i + start_index].buffer_vulkan = static_cast<Graphics::VideoOutVulkanImage*>(Graphics::GpuMemoryCreateObject(
g_video_out_context->GetGraphicCtx(), nullptr, reinterpret_cast<uint64_t>(addresses[i]), buffer_size, vulkan_buffer_info));
EXIT_NOT_IMPLEMENTED(ctx->buffers[i + start_index].buffer_vulkan == nullptr);
printf("\tbuffers[%d] = %016" PRIx64 "\n", i + start_index, reinterpret_cast<uint64_t>(addresses[i]));
}
// Graphics::GpuMemoryDbgDump();
return set_index;
}
VideoOutBufferImageInfo VideoOutGetImage(uint64_t addr)
{
EXIT_IF(g_video_out_context == nullptr);
return g_video_out_context->FindImage(reinterpret_cast<void*>(addr));
}
KYTY_SYSV_ABI int VideoOutSubmitFlip(int handle, int index, int flip_mode, int64_t flip_arg)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
auto* ctx = g_video_out_context->Get(handle);
EXIT_NOT_IMPLEMENTED(flip_mode != 1);
if (index < 0 || index > 15)
{
return VIDEO_OUT_ERROR_INVALID_INDEX;
}
if (!g_video_out_context->GetFlipQueue().Submit(ctx, index, flip_arg))
{
return VIDEO_OUT_ERROR_FLIP_QUEUE_FULL;
}
return OK;
}
void VideoOutWaitFlipDone(int handle, int index)
{
EXIT_IF(g_video_out_context == nullptr);
auto* ctx = g_video_out_context->Get(handle);
EXIT_NOT_IMPLEMENTED(index < 0 || index > 15);
g_video_out_context->GetFlipQueue().Wait(ctx, index);
}
KYTY_SYSV_ABI int VideoOutGetFlipStatus(int handle, VideoOutFlipStatus* status)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
if (status == nullptr)
{
return VIDEO_OUT_ERROR_INVALID_ADDRESS;
}
auto* ctx = g_video_out_context->Get(handle);
g_video_out_context->GetFlipQueue().GetFlipStatus(ctx, status);
printf("\t count = %" PRIu64 "\n", status->count);
printf("\t processTime = %" PRIu64 "\n", status->processTime);
printf("\t tsc = %" PRIu64 "\n", status->tsc);
printf("\t submitTsc = %" PRIu64 "\n", status->submitTsc);
printf("\t flipArg = %" PRId64 "\n", status->flipArg);
printf("\t gcQueueNum = %d\n", status->gcQueueNum);
printf("\t flipPendingNum = %d\n", status->flipPendingNum);
printf("\t currentBuffer = %d\n", status->currentBuffer);
return OK;
}
KYTY_SYSV_ABI int VideoOutGetVblankStatus(int handle, VideoOutVblankStatus* status)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
if (status == nullptr)
{
return VIDEO_OUT_ERROR_INVALID_ADDRESS;
}
auto* ctx = g_video_out_context->Get(handle);
ctx->mutex.Lock();
*status = ctx->vblank_status;
ctx->mutex.Unlock();
printf("\t count = %" PRIu64 "\n", status->count);
printf("\t processTime = %" PRIu64 "\n", status->processTime);
printf("\t tsc = %" PRIu64 "\n", status->tsc);
return OK;
}
KYTY_SYSV_ABI int VideoOutSetWindowModeMargins(int handle, int top, int bottom)
{
PRINT_NAME();
EXIT_IF(g_video_out_context == nullptr);
[[maybe_unused]] auto* ctx = g_video_out_context->Get(handle);
printf("\t top = %d\n", top);
printf("\t bottom = %d\n", bottom);
return OK;
}
} // namespace Kyty::Libs::VideoOut
#endif // KYTY_EMU_ENABLED