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asyncio: Allow file closes to request a flush/fsyncdata.
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parent
022a6a9f97
commit
3ca629ceb5
7 changed files with 70 additions and 11 deletions
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@ -299,6 +299,17 @@ extern SDL_DECLSPEC SDL_AsyncIOTask * SDLCALL SDL_WriteAsyncIO(SDL_AsyncIO *asyn
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* were to happen during the closing process, for example, the
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* task results will report it as usual.
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*
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* Closing a file that has been written to does not guarantee the data
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* has made it to physical media; it may remain in the operating
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* system's file cache, for later writing to disk. This means that
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* a successfully-closed file can be lost if the system crashes or
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* loses power in this small window. To prevent this, call this
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* function with the `flush` parameter set to true. This will make
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* the operation take longer, but a successful result guarantees that
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* the data has made it to physical storage. Don't use this for
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* temporary files, caches, and unimportant data, and definitely use
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* it for crucial irreplaceable files, like game saves.
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*
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* This function guarantees that the close will happen after any other
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* pending tasks to `asyncio`, so it's safe to open a file, start
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* several operations, close the file immediately, then check for all
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@ -315,6 +326,7 @@ extern SDL_DECLSPEC SDL_AsyncIOTask * SDLCALL SDL_WriteAsyncIO(SDL_AsyncIO *asyn
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* it's safe to attempt to close again later.
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*
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* \param asyncio a pointer to an SDL_AsyncIO structure to close.
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* \param flush true if data should sync to disk before the task completes.
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* \param queue a queue to add the new SDL_AsyncIO to.
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* \param userdata an app-defined pointer that will be provided with the task results.
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* \returns A new task handle if a task was started, NULL on complete failure;
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@ -325,7 +337,7 @@ extern SDL_DECLSPEC SDL_AsyncIOTask * SDLCALL SDL_WriteAsyncIO(SDL_AsyncIO *asyn
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*
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* \since This function is available since SDL 3.0.0.
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*/
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extern SDL_DECLSPEC SDL_AsyncIOTask * SDLCALL SDL_CloseAsyncIO(SDL_AsyncIO *asyncio, SDL_AsyncIOQueue *queue, void *userdata);
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extern SDL_DECLSPEC SDL_AsyncIOTask * SDLCALL SDL_CloseAsyncIO(SDL_AsyncIO *asyncio, bool flush, SDL_AsyncIOQueue *queue, void *userdata);
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/**
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* Create a task queue for tracking multiple I/O operations.
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@ -1224,7 +1224,7 @@ SDL_DYNAPI_PROC(SDL_AsyncIO*,SDL_AsyncIOFromFile,(const char *a, const char *b),
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SDL_DYNAPI_PROC(Sint64,SDL_GetAsyncIOSize,(SDL_AsyncIO *a),(a),return)
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SDL_DYNAPI_PROC(SDL_AsyncIOTask*,SDL_ReadAsyncIO,(SDL_AsyncIO *a, void *b, Uint64 c, Uint64 d, SDL_AsyncIOQueue *e, void *f),(a,b,c,d,e,f),return)
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SDL_DYNAPI_PROC(SDL_AsyncIOTask*,SDL_WriteAsyncIO,(SDL_AsyncIO *a, void *b, Uint64 c, Uint64 d, SDL_AsyncIOQueue *e, void *f),(a,b,c,d,e,f),return)
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SDL_DYNAPI_PROC(SDL_AsyncIOTask*,SDL_CloseAsyncIO,(SDL_AsyncIO *a, SDL_AsyncIOQueue *b, void *c),(a,b,c),return)
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SDL_DYNAPI_PROC(SDL_AsyncIOTask*,SDL_CloseAsyncIO,(SDL_AsyncIO *a, bool b, SDL_AsyncIOQueue *c, void *d),(a,b,c,d),return)
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SDL_DYNAPI_PROC(SDL_AsyncIOQueue*,SDL_CreateAsyncIOQueue,(void),(),return)
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SDL_DYNAPI_PROC(void,SDL_DestroyAsyncIOQueue,(SDL_AsyncIOQueue *a),(a),)
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SDL_DYNAPI_PROC(bool,SDL_GetAsyncIOResult,(SDL_AsyncIOQueue *a, SDL_AsyncIOOutcome *b),(a,b),return)
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@ -143,7 +143,7 @@ SDL_AsyncIOTask *SDL_WriteAsyncIO(SDL_AsyncIO *asyncio, void *ptr, Uint64 offset
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return RequestAsyncIO(false, asyncio, ptr, offset, size, queue, userdata);
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}
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SDL_AsyncIOTask *SDL_CloseAsyncIO(SDL_AsyncIO *asyncio, SDL_AsyncIOQueue *queue, void *userdata)
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SDL_AsyncIOTask *SDL_CloseAsyncIO(SDL_AsyncIO *asyncio, bool flush, SDL_AsyncIOQueue *queue, void *userdata)
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{
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if (!asyncio) {
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SDL_InvalidParamError("asyncio");
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@ -166,6 +166,7 @@ SDL_AsyncIOTask *SDL_CloseAsyncIO(SDL_AsyncIO *asyncio, SDL_AsyncIOQueue *queue,
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task->type = SDL_ASYNCIO_TASK_CLOSE;
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task->app_userdata = userdata;
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task->queue = queue;
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task->flush = flush;
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asyncio->closing = task;
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@ -328,7 +329,7 @@ SDL_AsyncIOTask *SDL_LoadFileAsync(const char *file, SDL_AsyncIOQueue *queue, vo
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SDL_free(ptr);
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}
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SDL_CloseAsyncIO(asyncio, queue, userdata); // if this fails, we'll have a resource leak, but this would already be a dramatic system failure.
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SDL_CloseAsyncIO(asyncio, false, queue, userdata); // if this fails, we'll have a resource leak, but this would already be a dramatic system failure.
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}
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return task;
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@ -68,6 +68,7 @@ struct SDL_AsyncIOTask
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SDL_AsyncIOTaskType type;
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SDL_AsyncIOQueue *queue;
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Uint64 offset;
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bool flush;
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void *buffer;
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char *error;
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SDL_AsyncIOResult result;
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@ -76,7 +76,12 @@ static void SynchronousIO(SDL_AsyncIOTask *task)
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// files will still run in parallel. An app can also open the same file twice to avoid this.
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SDL_LockMutex(data->lock);
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if (task->type == SDL_ASYNCIO_TASK_CLOSE) {
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task->result = SDL_CloseIO(data->io) ? SDL_ASYNCIO_COMPLETE : SDL_ASYNCIO_FAILURE;
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bool okay = true;
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if (task->flush) {
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okay = SDL_FlushIO(data->io);
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}
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okay = SDL_CloseIO(data->io) && okay;
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task->result = okay ? SDL_ASYNCIO_COMPLETE : SDL_ASYNCIO_FAILURE;
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} else if (SDL_SeekIO(io, (Sint64) task->offset, SDL_IO_SEEK_SET) < 0) {
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task->result = SDL_ASYNCIO_FAILURE;
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} else {
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@ -58,6 +58,7 @@ static void *liburing_handle = NULL;
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SDL_LIBURING_FUNC(void, io_uring_prep_fsync, (struct io_uring_sqe *sqe, int fd, unsigned fsync_flags)) \
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SDL_LIBURING_FUNC(void, io_uring_prep_cancel, (struct io_uring_sqe *sqe, void *user_data, int flags)) \
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SDL_LIBURING_FUNC(void, io_uring_prep_timeout, (struct io_uring_sqe *sqe, struct __kernel_timespec *ts, unsigned count, unsigned flags)) \
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SDL_LIBURING_FUNC(void, io_uring_prep_nop, (struct io_uring_sqe *sqe)) \
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SDL_LIBURING_FUNC(void, io_uring_sqe_set_data, (struct io_uring_sqe *sqe, void *data)) \
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SDL_LIBURING_FUNC(void, io_uring_sqe_set_flags, (struct io_uring_sqe *sqe, unsigned flags)) \
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SDL_LIBURING_FUNC(int, io_uring_submit, (struct io_uring *ring)) \
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@ -211,7 +212,7 @@ static SDL_AsyncIOTask *ProcessCQE(LibUringAsyncIOQueueData *queuedata, struct i
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}
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SDL_AsyncIOTask *task = (SDL_AsyncIOTask *) io_uring_cqe_get_data(cqe);
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if (task) { // can be NULL if this was just a wakeup message, etc.
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if (task) { // can be NULL if this was just a wakeup message, a NOP, etc.
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if (!task->queue) { // We leave `queue` blank to signify this was a task cancellation.
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SDL_AsyncIOTask *cancel_task = task;
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task = (SDL_AsyncIOTask *) cancel_task->app_userdata;
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@ -227,13 +228,19 @@ static SDL_AsyncIOTask *ProcessCQE(LibUringAsyncIOQueueData *queuedata, struct i
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} else {
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if ((task->type == SDL_ASYNCIO_TASK_WRITE) && (((Uint64) cqe->res) < task->requested_size)) {
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task->result = SDL_ASYNCIO_FAILURE; // it's always a failure on short writes.
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} else {
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task->result = SDL_ASYNCIO_COMPLETE;
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}
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// don't explicitly mark it as COMPLETE; that's the default value and a linked task might have failed in an earlier operation and this would overwrite it.
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if ((task->type == SDL_ASYNCIO_TASK_READ) || (task->type == SDL_ASYNCIO_TASK_WRITE)) {
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task->result_size = (Uint64) cqe->res;
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}
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}
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if ((task->type == SDL_ASYNCIO_TASK_CLOSE) && task->flush) {
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task->flush = false;
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task = NULL; // don't return this one, it's a linked task, so it'll arrive in a later CQE.
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}
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}
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return task;
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@ -358,6 +365,7 @@ static bool SDL_SYS_CreateAsyncIOQueue_liburing(SDL_AsyncIOQueue *queue)
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static bool liburing_asyncio_read(void *userdata, SDL_AsyncIOTask *task)
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{
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LibUringAsyncIOQueueData *queuedata = (LibUringAsyncIOQueueData *) task->queue->userdata;
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const int fd = (int) (size_t) userdata;
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// !!! FIXME: `unsigned` is likely smaller than requested_size's Uint64. If we overflow it, we could try submitting multiple SQEs
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// !!! FIXME: and make a note in the task that there are several in sequence.
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@ -372,7 +380,7 @@ static bool liburing_asyncio_read(void *userdata, SDL_AsyncIOTask *task)
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return SDL_SetError("io_uring: submission queue is full");
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}
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liburing.io_uring_prep_read(sqe, (int) (size_t) userdata, task->buffer, (unsigned) task->requested_size, task->offset);
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liburing.io_uring_prep_read(sqe, fd, task->buffer, (unsigned) task->requested_size, task->offset);
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liburing.io_uring_sqe_set_data(sqe, task);
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const bool retval = task->queue->iface.queue_task(task->queue->userdata, task);
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@ -383,6 +391,7 @@ static bool liburing_asyncio_read(void *userdata, SDL_AsyncIOTask *task)
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static bool liburing_asyncio_write(void *userdata, SDL_AsyncIOTask *task)
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{
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LibUringAsyncIOQueueData *queuedata = (LibUringAsyncIOQueueData *) task->queue->userdata;
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const int fd = (int) (size_t) userdata;
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// !!! FIXME: `unsigned` is likely smaller than requested_size's Uint64. If we overflow it, we could try submitting multiple SQEs
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// !!! FIXME: and make a note in the task that there are several in sequence.
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@ -397,7 +406,7 @@ static bool liburing_asyncio_write(void *userdata, SDL_AsyncIOTask *task)
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return SDL_SetError("io_uring: submission queue is full");
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}
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liburing.io_uring_prep_write(sqe, (int) (size_t) userdata, task->buffer, (unsigned) task->requested_size, task->offset);
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liburing.io_uring_prep_write(sqe, fd, task->buffer, (unsigned) task->requested_size, task->offset);
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liburing.io_uring_sqe_set_data(sqe, task);
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const bool retval = task->queue->iface.queue_task(task->queue->userdata, task);
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@ -408,6 +417,7 @@ static bool liburing_asyncio_write(void *userdata, SDL_AsyncIOTask *task)
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static bool liburing_asyncio_close(void *userdata, SDL_AsyncIOTask *task)
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{
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LibUringAsyncIOQueueData *queuedata = (LibUringAsyncIOQueueData *) task->queue->userdata;
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const int fd = (int) (size_t) userdata;
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// have to hold a lock because otherwise two threads could get_sqe and submit while one request isn't fully set up.
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SDL_LockMutex(queuedata->sqe_lock);
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@ -416,7 +426,22 @@ static bool liburing_asyncio_close(void *userdata, SDL_AsyncIOTask *task)
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return SDL_SetError("io_uring: submission queue is full");
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}
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liburing.io_uring_prep_close(sqe, (int) (size_t) userdata);
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if (task->flush) {
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struct io_uring_sqe *flush_sqe = sqe;
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sqe = liburing.io_uring_get_sqe(&queuedata->ring); // this will be our actual close task.
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if (!sqe) {
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liburing.io_uring_prep_nop(flush_sqe); // we already have the first sqe, just make it a NOP.
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liburing.io_uring_sqe_set_data(flush_sqe, NULL);
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task->queue->iface.queue_task(task->queue->userdata, task);
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return SDL_SetError("io_uring: submission queue is full");
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}
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liburing.io_uring_prep_fsync(flush_sqe, fd, IORING_FSYNC_DATASYNC);
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liburing.io_uring_sqe_set_data(flush_sqe, task);
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liburing.io_uring_sqe_set_flags(flush_sqe, IOSQE_IO_HARDLINK); // must complete before next sqe starts, and next sqe should run even if this fails.
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}
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liburing.io_uring_prep_close(sqe, fd);
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liburing.io_uring_sqe_set_data(sqe, task);
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const bool retval = task->queue->iface.queue_task(task->queue->userdata, task);
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@ -23,6 +23,7 @@ static SDLTest_CommonState *state = NULL;
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SDL_AppResult SDL_AppInit(void **appstate, int argc, char *argv[])
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{
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const char *base = NULL;
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SDL_AsyncIO *asyncio = NULL;
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char **bmps = NULL;
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int bmpcount = 0;
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int i;
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@ -104,6 +105,15 @@ SDL_AppResult SDL_AppInit(void **appstate, int argc, char *argv[])
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SDL_free(bmps);
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SDL_Log("Opening asyncio.tmp...");
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asyncio = SDL_AsyncIOFromFile("asyncio.tmp", "w");
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if (!asyncio) {
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SDL_Log("Failed!");
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return SDL_APP_FAILURE;
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}
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SDL_WriteAsyncIO(asyncio, "hello", 0, 5, queue, "asyncio.tmp (write)");
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SDL_CloseAsyncIO(asyncio, true, queue, "asyncio.tmp (flush/close)");
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return SDL_APP_CONTINUE;
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}
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@ -135,6 +145,10 @@ static void async_io_task_complete(const SDL_AsyncIOOutcome *outcome)
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SDL_Log("File '%s' async results: %s", fname, resultstr);
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if (SDL_strncmp(fname, "asyncio.tmp", 11) == 0) {
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return;
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}
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if (outcome->result == SDL_ASYNCIO_COMPLETE) {
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SDL_Surface *surface = SDL_LoadBMP_IO(SDL_IOFromConstMem(outcome->buffer, (size_t) outcome->bytes_transferred), true);
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if (surface) {
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@ -171,6 +185,7 @@ void SDL_AppQuit(void *appstate, SDL_AppResult result)
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{
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SDL_DestroyAsyncIOQueue(queue);
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SDL_DestroyTexture(texture);
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SDL_RemovePath("asyncio.tmp");
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SDLTest_CommonQuit(state);
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}
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