Files
LookingGlass/client/tests/clipboard_test.c
2026-08-14 19:09:11 +10:00

1427 lines
41 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 "core/clipboard.h"
#include "main.h"
#include "test.h"
#include "common/debug.h"
#include <pthread.h>
#include <stdbool.h>
#include <stdatomic.h>
#include <stdint.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#define MAX_CALL 16U
#define MAX_DATA 32U
#define TEST_ALARM_S 5U
struct Provider
{
bool avail;
bool attachOK;
bool callOK;
bool reqOK;
uint32_t gen;
LG_ClipboardStatusFn statFn;
void * statCtx;
const LG_ClipboardEventOps * ev;
void * evCtx;
const LG_ClipboardEventOps * oldEv;
void * oldCtx;
unsigned int statSet;
unsigned int statClear;
unsigned int attach;
unsigned int detach;
unsigned int release;
unsigned int notice;
unsigned int data;
unsigned int begin;
unsigned int chunk;
unsigned int end;
unsigned int cancel;
unsigned int ready;
unsigned int request;
unsigned int fileOffer;
uint64_t fileDataset[MAX_CALL];
LG_ClipboardData noticeTypes[LG_CLIPBOARD_DATA_NONE];
size_t noticeCount;
LG_ClipboardRequest reqId[MAX_CALL];
LG_ClipboardData reqType[MAX_CALL];
LG_ClipboardRequest dataId[MAX_CALL];
LG_ClipboardData dataType[MAX_CALL];
size_t dataSize[MAX_CALL];
uint8_t dataBuf[MAX_CALL][MAX_DATA];
LG_ClipboardResult beginResult;
LG_ClipboardResult chunkResult;
LG_ClipboardResult endResult;
LG_ClipboardRequest streamId;
LG_ClipboardData streamType;
uint64_t sizeHint;
uint64_t chunkOffset[MAX_CALL];
size_t chunkSize[MAX_CALL];
uint8_t chunkBuf[MAX_CALL][MAX_DATA];
uint64_t finalSize;
LG_ClipboardCancelReason cancelReason;
bool earlyBegin;
LG_ClipboardResult earlyResult;
};
struct Display
{
unsigned int notice;
unsigned int release;
unsigned int request;
unsigned int ready;
unsigned int cancel;
LG_ClipboardData noticeType[MAX_CALL];
LG_ClipboardRequest reqId[MAX_CALL];
LG_ClipboardData reqType[MAX_CALL];
bool autoData;
LG_ClipboardData autoType;
const void * autoBuf;
size_t autoSize;
bool autoBegin;
LG_ClipboardResult readyResult;
LG_ClipboardCancelReason cancelReason;
atomic_bool blockCancel;
atomic_bool cancelEntered;
atomic_bool releaseCancel;
};
struct Reply
{
unsigned int count;
LG_ClipboardData type;
uint32_t size;
uint8_t data[MAX_DATA];
struct Reply * next;
bool nested;
};
struct StreamSink
{
unsigned int begin;
unsigned int chunk;
unsigned int end;
unsigned int cancel;
LG_ClipboardResult beginResult;
LG_ClipboardResult chunkResult;
LG_ClipboardResult endResult;
LG_ClipboardData type;
uint64_t sizeHint;
uint64_t offset;
uint64_t finalSize;
LG_ClipboardCancelReason reason;
LG_ClipboardRequest request;
bool requireRequest;
size_t size;
uint8_t data[MAX_DATA];
};
static struct Provider p;
static struct Provider q;
static struct Provider r;
static struct Display d;
extern unsigned lgClipboardFilesStubRemoteOfferCount;
extern unsigned lgClipboardFilesStubRemoteClearCount;
extern uint64_t lgClipboardFilesStubRemoteDataset;
extern bool lgClipboardFilesStubRemoteReady;
extern bool lgClipboardFilesStubRemoteOfferResult;
struct AppState g_state;
struct AppParams g_params;
static LG_ClipboardResult sinkBegin(void * opaque,
LG_ClipboardData type, uint64_t sizeHint)
{
struct StreamSink * sink = opaque;
if (sink->requireRequest)
CHECK(sink->request != LG_CLIPBOARD_REQUEST_INVALID);
++sink->begin;
sink->type = type;
sink->sizeHint = sizeHint;
return sink->beginResult;
}
static LG_ClipboardResult sinkChunk(void * opaque, uint64_t offset,
const void * data, size_t size)
{
struct StreamSink * sink = opaque;
++sink->chunk;
sink->offset = offset;
if (sink->chunkResult == LG_CLIPBOARD_RESULT_ACCEPTED)
{
CHECK(offset + size <= MAX_DATA);
memcpy(sink->data + offset, data, size);
sink->size = offset + size;
}
return sink->chunkResult;
}
static LG_ClipboardResult sinkEnd(void * opaque, uint64_t finalSize)
{
struct StreamSink * sink = opaque;
++sink->end;
sink->finalSize = finalSize;
return sink->endResult;
}
static void sinkCancel(void * opaque, LG_ClipboardCancelReason reason)
{
struct StreamSink * sink = opaque;
++sink->cancel;
sink->reason = reason;
}
static const LG_ClipboardStreamOps sinkOps =
{
.begin = sinkBegin,
.chunk = sinkChunk,
.end = sinkEnd,
.cancel = sinkCancel,
};
static void initSink(struct StreamSink * sink)
{
sink->beginResult = LG_CLIPBOARD_RESULT_ACCEPTED;
sink->chunkResult = LG_CLIPBOARD_RESULT_ACCEPTED;
sink->endResult = LG_CLIPBOARD_RESULT_ACCEPTED;
}
static void setStat(void * opaque, LG_ClipboardStatusFn callback,
void * callbackOpaque)
{
struct Provider * provider = opaque;
provider->statFn = callback;
provider->statCtx = callbackOpaque;
if (!callback)
{
++provider->statClear;
return;
}
++provider->statSet;
const LG_ClipboardStatus status =
{
.available = provider->avail,
.generation = provider->gen,
};
callback(callbackOpaque, &status);
}
static bool attach(void * opaque, const LG_ClipboardEventOps * events,
void * eventOpaque)
{
struct Provider * provider = opaque;
++provider->attach;
provider->ev = events;
provider->evCtx = eventOpaque;
return provider->attachOK;
}
static void detach(void * opaque)
{
struct Provider * provider = opaque;
++provider->detach;
provider->oldEv = provider->ev;
provider->oldCtx = provider->evCtx;
provider->ev = NULL;
provider->evCtx = NULL;
}
static bool release(void * opaque)
{
struct Provider * provider = opaque;
++provider->release;
return provider->callOK;
}
static bool notify(void * opaque, const LG_ClipboardData types[],
size_t count)
{
struct Provider * provider = opaque;
CHECK(types);
CHECK(count <= LG_CLIPBOARD_DATA_NONE);
++provider->notice;
provider->noticeCount = count;
memcpy(provider->noticeTypes, types, count * sizeof(*types));
return provider->callOK;
}
static bool offerFiles(void * opaque, uint64_t dataset)
{
struct Provider * provider = opaque;
CHECK(dataset);
CHECK(provider->fileOffer < MAX_CALL);
provider->fileDataset[provider->fileOffer++] = dataset;
return provider->callOK;
}
static bool data(void * opaque, LG_ClipboardRequest id,
LG_ClipboardData type, const void * buf, size_t size)
{
struct Provider * provider = opaque;
CHECK(provider->data < MAX_CALL);
const unsigned int no = provider->data++;
provider->dataId[no] = id;
provider->dataType[no] = type;
provider->dataSize[no] = size;
if (size)
{
CHECK(buf);
CHECK(size <= MAX_DATA);
memcpy(provider->dataBuf[no], buf, size);
}
return provider->callOK;
}
static LG_ClipboardResult dataBegin(void * opaque,
LG_ClipboardRequest id, LG_ClipboardData type, uint64_t sizeHint)
{
struct Provider * provider = opaque;
++provider->begin;
provider->streamId = id;
provider->streamType = type;
provider->sizeHint = sizeHint;
return provider->beginResult;
}
static LG_ClipboardResult dataChunk(void * opaque,
LG_ClipboardRequest id, uint64_t offset, const void * buf, size_t size)
{
struct Provider * provider = opaque;
CHECK(provider->chunk < MAX_CALL);
CHECK(id == provider->streamId);
const unsigned int no = provider->chunk++;
provider->chunkOffset[no] = offset;
provider->chunkSize[no] = size;
if (size <= MAX_DATA)
memcpy(provider->chunkBuf[no], buf, size);
return provider->chunkResult;
}
static LG_ClipboardResult dataEnd(void * opaque,
LG_ClipboardRequest id, uint64_t finalSize)
{
struct Provider * provider = opaque;
CHECK(id == provider->streamId);
++provider->end;
provider->finalSize = finalSize;
return provider->endResult;
}
static bool dataCancel(void * opaque, LG_ClipboardRequest id,
LG_ClipboardCancelReason reason)
{
struct Provider * provider = opaque;
++provider->cancel;
provider->streamId = id;
provider->cancelReason = reason;
return provider->callOK;
}
static bool dataReady(void * opaque, LG_ClipboardRequest id)
{
struct Provider * provider = opaque;
++provider->ready;
provider->streamId = id;
return provider->callOK;
}
struct EarlyRequest
{
struct Provider * provider;
LG_ClipboardRequest request;
LG_ClipboardData type;
};
static void * earlyRequestThread(void * opaque)
{
struct EarlyRequest * early = opaque;
early->provider->earlyResult = early->provider->ev->dataBegin(
early->provider->evCtx, early->request, early->type,
LG_CLIPBOARD_SIZE_UNKNOWN);
return NULL;
}
static bool request(void * opaque, LG_ClipboardRequest id,
LG_ClipboardData type)
{
struct Provider * provider = opaque;
CHECK(provider->request < MAX_CALL);
const unsigned int no = provider->request++;
provider->reqId[no] = id;
provider->reqType[no] = type;
if (provider->earlyBegin)
{
struct EarlyRequest early =
{
.provider = provider,
.request = id,
.type = type,
};
pthread_t thread;
CHECK(pthread_create(&thread, NULL, earlyRequestThread, &early) == 0);
CHECK(pthread_join(thread, NULL) == 0);
}
return provider->reqOK;
}
static const LG_ClipboardOps plainOps =
{
.name = "plain",
.attach = attach,
.detach = detach,
.release = release,
.notifyTypes = notify,
.data = data,
.request = request,
};
static const LG_ClipboardOps statOps =
{
.name = "status",
.setStatusListener = setStat,
.attach = attach,
.detach = detach,
.release = release,
.notifyTypes = notify,
.data = data,
.request = request,
};
static const LG_ClipboardOps streamOps =
{
.name = "stream",
.attach = attach,
.detach = detach,
.release = release,
.notifyTypes = notify,
.dataBegin = dataBegin,
.dataChunk = dataChunk,
.dataEnd = dataEnd,
.dataCancel = dataCancel,
.dataReady = dataReady,
.request = request,
};
static const LG_ClipboardOps fileOps =
{
.name = "files",
.attach = attach,
.detach = detach,
.release = release,
.notifyTypes = notify,
.offerFiles = offerFiles,
.data = data,
.request = request,
};
static void dsNotice(LG_ClipboardData type)
{
CHECK(d.notice < MAX_CALL);
d.noticeType[d.notice++] = type;
}
static void dsRelease(void)
{
++d.release;
}
static void dsRequest(LG_ClipboardRequest id, LG_ClipboardData type)
{
CHECK(d.request < MAX_CALL);
const unsigned int no = d.request++;
d.reqId[no] = id;
d.reqType[no] = type;
if (d.autoData)
lgClipboard_data(id, d.autoType, d.autoBuf, d.autoSize);
}
static void dsRequestReady(LG_ClipboardRequest id)
{
++d.ready;
if (d.autoBegin)
d.readyResult = lgClipboard_dataBegin(
id, LG_CLIPBOARD_DATA_TEXT, LG_CLIPBOARD_SIZE_UNKNOWN);
}
static void dsRequestCancel(LG_ClipboardRequest id,
LG_ClipboardCancelReason reason)
{
(void)id;
if (atomic_load_explicit(&d.blockCancel, memory_order_acquire))
{
atomic_store_explicit(
&d.cancelEntered, true, memory_order_release);
while (!atomic_load_explicit(&d.releaseCancel, memory_order_acquire))
usleep(1000);
}
++d.cancel;
d.cancelReason = reason;
}
static struct LG_DisplayServerOps dsOps =
{
.cbNotice = dsNotice,
.cbRelease = dsRelease,
.cbRequest = dsRequest,
.cbRequestReady = dsRequestReady,
.cbRequestCancel = dsRequestCancel,
};
static void initProvider(struct Provider * provider)
{
provider->avail = true;
provider->attachOK = true;
provider->callOK = true;
provider->reqOK = true;
provider->gen = 1;
provider->beginResult = LG_CLIPBOARD_RESULT_ACCEPTED;
provider->chunkResult = LG_CLIPBOARD_RESULT_ACCEPTED;
provider->endResult = LG_CLIPBOARD_RESULT_ACCEPTED;
}
static void init(void)
{
initProvider(&p);
initProvider(&q);
initProvider(&r);
atomic_init(&d.blockCancel, false);
atomic_init(&d.cancelEntered, false);
atomic_init(&d.releaseCancel, false);
lgClipboardFilesStubRemoteOfferCount = 0;
lgClipboardFilesStubRemoteClearCount = 0;
lgClipboardFilesStubRemoteDataset = 0;
lgClipboardFilesStubRemoteReady = false;
lgClipboardFilesStubRemoteOfferResult = true;
g_state.ds = &dsOps;
g_params.clipboardToVM = true;
g_params.clipboardToLocal = true;
CHECK(lgClipboard_init());
lgClipboard_setLocalAvailable(true);
}
static void bind(struct Provider * provider)
{
lgClipboard_setFallback(&plainOps, provider);
CHECK(provider->attach == 1);
}
static void setStatus(struct Provider * provider, bool avail, uint32_t gen)
{
CHECK(provider->statFn);
provider->avail = avail;
provider->gen = gen;
const LG_ClipboardStatus status =
{
.available = avail,
.generation = gen,
};
provider->statFn(provider->statCtx, &status);
}
static void notice(struct Provider * provider,
const LG_ClipboardData types[], size_t count)
{
CHECK(provider->ev);
provider->ev->notice(provider->evCtx, types, count);
}
static void remoteData(struct Provider * provider, LG_ClipboardRequest id,
LG_ClipboardData type, const void * buf, size_t size)
{
CHECK(provider->ev);
provider->ev->data(provider->evCtx, id, type, buf, size);
}
static void onReply(void * opaque, LG_ClipboardData type,
const uint8_t * buf, uint32_t size)
{
struct Reply * reply = opaque;
++reply->count;
reply->type = type;
reply->size = size;
CHECK(size <= MAX_DATA);
if (size)
{
CHECK(buf);
memcpy(reply->data, buf, size);
}
else
CHECK(!buf);
if (type != LG_CLIPBOARD_DATA_NONE && reply->next)
reply->nested = lgClipboard_request(
LG_CLIPBOARD_DATA_TEXT, onReply, reply->next);
}
static void checkNone(const struct Reply * reply)
{
CHECK(reply->count == 1);
CHECK(reply->type == LG_CLIPBOARD_DATA_NONE);
CHECK(reply->size == 0);
}
static void testPreference(void)
{
init();
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
lgClipboard_setFallback(&statOps, &p);
CHECK(p.attach == 1);
CHECK(p.notice == 1);
lgClipboard_setTransport(&statOps, &q);
CHECK(p.release == 1);
CHECK(p.detach == 1);
CHECK(q.attach == 1);
CHECK(q.notice == 1);
CHECK(p.oldEv);
p.oldEv->notice(p.oldCtx, types, 1);
p.oldEv->release(p.oldCtx);
CHECK(!p.oldEv->request(p.oldCtx, 1, LG_CLIPBOARD_DATA_TEXT));
CHECK(d.notice == 0);
CHECK(d.release == 0);
const LG_ClipboardStatusFn staleFn = q.statFn;
void * staleCtx = q.statCtx;
CHECK(staleFn);
lgClipboard_dropTransport();
CHECK(q.release == 0);
CHECK(q.detach == 0);
CHECK(p.attach == 2);
const LG_ClipboardStatus stale =
{
.available = false,
.generation = 2,
};
staleFn(staleCtx, &stale);
CHECK(p.attach == 2);
lgClipboard_setTransport(&statOps, &r);
CHECK(p.release == 2);
CHECK(p.detach == 2);
CHECK(r.attach == 1);
lgClipboard_setTransport(NULL, NULL);
CHECK(r.statClear == 1);
CHECK(r.release == 1);
CHECK(r.detach == 1);
CHECK(p.attach == 3);
lgClipboard_free();
}
static void testFilePublication(void)
{
init();
lgClipboard_setFallback(&fileOps, &p);
const uint64_t dataset = UINT64_C(0x123456789abcdef);
lgClipboard_notifyFiles(dataset);
CHECK(p.fileOffer == 1);
CHECK(p.fileDataset[0] == dataset);
const LG_ClipboardData files[] = { LG_CLIPBOARD_DATA_FILES };
lgClipboard_notifyTypes(files, 1);
CHECK(p.notice == 0);
CHECK(p.fileOffer == 1);
lgClipboard_setTransport(&plainOps, &r);
CHECK(r.attach == 1);
CHECK(r.release == 1);
const uint64_t replacement = dataset + 1U;
lgClipboard_notifyFiles(replacement);
CHECK(r.release == 2);
lgClipboard_dropTransport();
CHECK(p.attach == 2);
CHECK(p.fileOffer == 2);
CHECK(p.fileDataset[1] == replacement);
lgClipboard_setTransport(&fileOps, &q);
CHECK(q.attach == 1);
CHECK(q.fileOffer == 1);
CHECK(q.fileDataset[0] == replacement);
lgClipboard_dropTransport();
CHECK(p.attach == 3);
CHECK(p.fileOffer == 3);
CHECK(p.fileDataset[2] == replacement);
lgClipboard_free();
}
static void testFileReplacement(void)
{
init();
bind(&p);
lgClipboardFilesStubRemoteReady = true;
const uint64_t first = UINT64_C(0x2000000000000001);
p.ev->fileOffer(p.evCtx, first);
CHECK(lgClipboardFilesStubRemoteOfferCount == 1);
CHECK(lgClipboardFilesStubRemoteDataset == first);
const LG_ClipboardData files[] = { LG_CLIPBOARD_DATA_FILES };
p.ev->notice(p.evCtx, files, 1);
CHECK(d.notice == 1);
CHECK(d.noticeType[0] == LG_CLIPBOARD_DATA_FILES);
const LG_ClipboardData text[] = { LG_CLIPBOARD_DATA_TEXT };
p.ev->notice(p.evCtx, text, 1);
CHECK(lgClipboardFilesStubRemoteClearCount == 1);
CHECK(lgClipboardFilesStubRemoteDataset == 0);
CHECK(d.notice == 2);
CHECK(d.noticeType[1] == LG_CLIPBOARD_DATA_TEXT);
const uint64_t mixedDataset = first + 1U;
p.ev->fileOffer(p.evCtx, mixedDataset);
const LG_ClipboardData mixed[] =
{
LG_CLIPBOARD_DATA_TEXT,
LG_CLIPBOARD_DATA_FILES,
};
p.ev->notice(p.evCtx, mixed, 2);
CHECK(lgClipboardFilesStubRemoteClearCount == 1);
CHECK(lgClipboardFilesStubRemoteDataset == mixedDataset);
CHECK(d.notice == 3);
CHECK(d.noticeType[2] == LG_CLIPBOARD_DATA_FILES);
p.ev->notice(p.evCtx, text, 1);
CHECK(lgClipboardFilesStubRemoteClearCount == 2);
CHECK(lgClipboardFilesStubRemoteDataset == 0);
CHECK(d.notice == 4);
CHECK(d.noticeType[3] == LG_CLIPBOARD_DATA_TEXT);
lgClipboard_free();
}
static void testFileFailure(void)
{
init();
bind(&p);
const LG_ClipboardData text[] = { LG_CLIPBOARD_DATA_TEXT };
p.ev->notice(p.evCtx, text, 1);
CHECK(d.notice == 1);
CHECK(d.release == 0);
const LG_ClipboardData files[] = { LG_CLIPBOARD_DATA_FILES };
const uint64_t first = UINT64_C(0x2100000000000001);
p.ev->fileOffer(p.evCtx, first);
p.ev->notice(p.evCtx, files, 1);
CHECK(d.notice == 1);
CHECK(d.release == 0);
const uint64_t second = first + 1U;
p.ev->fileOffer(p.evCtx, second);
p.ev->notice(p.evCtx, files, 1);
CHECK(d.notice == 1);
CHECK(d.release == 0);
lgClipboard_fileRemoteFailed(first);
CHECK(d.release == 0);
CHECK(lgClipboardFilesStubRemoteDataset == second);
lgClipboard_fileRemoteFailed(second);
CHECK(d.release == 1);
lgClipboard_fileRemoteFailed(second);
CHECK(d.release == 1);
p.ev->notice(p.evCtx, text, 1);
CHECK(d.notice == 2);
lgClipboardFilesStubRemoteOfferResult = false;
const unsigned previousClears = lgClipboardFilesStubRemoteClearCount;
p.ev->fileOffer(p.evCtx, second + 1U);
CHECK(lgClipboardFilesStubRemoteClearCount == previousClears + 1U);
p.ev->notice(p.evCtx, files, 1);
CHECK(d.notice == 2);
CHECK(d.release == 2);
p.ev->notice(p.evCtx, text, 1);
CHECK(d.notice == 3);
lgClipboardFilesStubRemoteOfferResult = true;
const uint64_t pending = second + 2U;
p.ev->fileOffer(p.evCtx, pending);
lgClipboard_fileRemoteFailed(pending);
CHECK(d.release == 2);
p.ev->notice(p.evCtx, files, 1);
CHECK(d.notice == 3);
CHECK(d.release == 3);
lgClipboard_free();
}
struct CallbackSerializationTask
{
atomic_bool switched;
atomic_bool availabilityChanged;
};
static void * switchClipboardProvider(void * opaque)
{
struct CallbackSerializationTask * task = opaque;
lgClipboard_setTransport(&plainOps, &q);
atomic_store_explicit(&task->switched, true, memory_order_release);
return NULL;
}
static void * clearClipboardAvailability(void * opaque)
{
struct CallbackSerializationTask * task = opaque;
lgClipboard_setLocalAvailable(false);
atomic_store_explicit(
&task->availabilityChanged, true, memory_order_release);
return NULL;
}
static void waitAtomicBool(const atomic_bool * value)
{
for (unsigned i = 0; i < 1000U; ++i)
{
if (atomic_load_explicit(value, memory_order_acquire))
return;
usleep(1000);
}
CHECK(false);
}
static void testCallbackSerialization(void)
{
init();
bind(&p);
const LG_ClipboardData text[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(text, 1);
CHECK(p.ev->request(p.evCtx, 1, LG_CLIPBOARD_DATA_TEXT));
CHECK(d.request == 1);
atomic_store_explicit(&d.blockCancel, true, memory_order_release);
struct CallbackSerializationTask task;
atomic_init(&task.switched, false);
atomic_init(&task.availabilityChanged, false);
pthread_t switchThread;
CHECK(pthread_create(&switchThread, NULL,
switchClipboardProvider, &task) == 0);
waitAtomicBool(&d.cancelEntered);
pthread_t availabilityThread;
CHECK(pthread_create(&availabilityThread, NULL,
clearClipboardAvailability, &task) == 0);
usleep(20000);
CHECK(!atomic_load_explicit(
&task.availabilityChanged, memory_order_acquire));
atomic_store_explicit(&d.releaseCancel, true, memory_order_release);
CHECK(pthread_join(switchThread, NULL) == 0);
CHECK(pthread_join(availabilityThread, NULL) == 0);
CHECK(atomic_load_explicit(&task.switched, memory_order_acquire));
CHECK(atomic_load_explicit(
&task.availabilityChanged, memory_order_acquire));
CHECK(d.cancel == 1);
CHECK(d.cancelReason == LG_CLIPBOARD_CANCEL_UNAVAILABLE);
lgClipboard_free();
}
static void testRequest(void)
{
init();
bind(&p);
const LG_ClipboardData types[] =
{ LG_CLIPBOARD_DATA_TEXT, LG_CLIPBOARD_DATA_PNG };
notice(&p, types, 2);
CHECK(d.notice == 1);
CHECK(d.noticeType[0] == LG_CLIPBOARD_DATA_TEXT);
struct Reply a = { 0 };
struct Reply b = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &a));
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &b));
CHECK(p.request == 2);
CHECK(p.reqId[0] != LG_CLIPBOARD_REQUEST_INVALID);
CHECK(p.reqId[0] != p.reqId[1]);
const uint8_t one[] = { 1, 2, 3 };
const uint8_t two[] = { 4, 5 };
remoteData(&p, p.reqId[1] + 100, LG_CLIPBOARD_DATA_TEXT,
one, sizeof(one));
CHECK(a.count == 0);
CHECK(b.count == 0);
remoteData(&p, p.reqId[1], LG_CLIPBOARD_DATA_TEXT, two, sizeof(two));
remoteData(&p, p.reqId[0], LG_CLIPBOARD_DATA_TEXT, one, sizeof(one));
CHECK(a.count == 1);
CHECK(a.type == LG_CLIPBOARD_DATA_TEXT);
CHECK(a.size == sizeof(one));
CHECK(memcmp(a.data, one, sizeof(one)) == 0);
CHECK(b.count == 1);
CHECK(b.type == LG_CLIPBOARD_DATA_TEXT);
CHECK(b.size == sizeof(two));
CHECK(memcmp(b.data, two, sizeof(two)) == 0);
lgClipboard_free();
}
static void testRemoteKeepsLocalRequest(void)
{
init();
bind(&p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
CHECK(p.notice == 1);
g_params.clipboardToLocal = false;
notice(&p, types, 1);
CHECK(d.notice == 0);
/* A notice which is not published locally must not discard the local
* clipboard advertised towards the guest. */
lgClipboard_setTransport(&plainOps, &q);
CHECK(q.attach == 1);
CHECK(q.notice == 1);
CHECK(q.release == 0);
g_params.clipboardToLocal = true;
notice(&q, types, 1);
CHECK(d.notice == 1);
/* The two clipboard directions have independent generations. A late
* request can still refer to the local offer advertised before this remote
* notice, so its type must remain serviceable. */
CHECK(q.ev->request(q.evCtx, 43, LG_CLIPBOARD_DATA_TEXT));
CHECK(d.request == 1);
CHECK(d.reqType[0] == LG_CLIPBOARD_DATA_TEXT);
lgClipboard_free();
}
static void testPendingRemoteKeepsLocalRequest(void)
{
init();
bind(&p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
CHECK(p.notice == 1);
lgClipboard_setLocalAvailable(false);
notice(&p, types, 1);
CHECK(d.notice == 0);
lgClipboard_setLocalAvailable(true);
CHECK(d.notice == 1);
/* Publishing a notice which arrived while the local clipboard was
* unavailable must likewise retain the local request allow-list. */
CHECK(p.ev->request(p.evCtx, 44, LG_CLIPBOARD_DATA_TEXT));
CHECK(d.request == 1);
CHECK(d.reqType[0] == LG_CLIPBOARD_DATA_TEXT);
lgClipboard_free();
}
static void testInvalid(void)
{
init();
bind(&p);
const LG_ClipboardData bad[] = { LG_CLIPBOARD_DATA_NONE };
p.ev->notice(p.evCtx, NULL, 1);
p.ev->notice(p.evCtx, bad, 1);
p.ev->notice(p.evCtx, bad, 0);
CHECK(d.notice == 0);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
notice(&p, types, 1);
CHECK(!lgClipboard_request(
LG_CLIPBOARD_DATA_NONE, onReply, &(struct Reply) { 0 }));
CHECK(!lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, NULL, NULL));
struct Reply empty = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &empty));
remoteData(&p, LG_CLIPBOARD_REQUEST_INVALID,
LG_CLIPBOARD_DATA_TEXT, NULL, 0);
CHECK(empty.count == 0);
remoteData(&p, p.reqId[p.request - 1],
LG_CLIPBOARD_DATA_TEXT, NULL, 0);
CHECK(empty.count == 1);
CHECK(empty.type == LG_CLIPBOARD_DATA_TEXT);
CHECK(empty.size == 0);
struct Reply wrong = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &wrong));
remoteData(&p, p.reqId[p.request - 1],
LG_CLIPBOARD_DATA_PNG, NULL, 0);
checkNone(&wrong);
struct Reply null = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &null));
remoteData(&p, p.reqId[p.request - 1],
LG_CLIPBOARD_DATA_TEXT, NULL, 1);
checkNone(&null);
#if SIZE_MAX > UINT32_MAX
struct Reply large = { 0 };
const uint8_t byte = 1;
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &large));
remoteData(&p, p.reqId[p.request - 1], LG_CLIPBOARD_DATA_TEXT,
&byte, (size_t)UINT32_MAX + 1);
checkNone(&large);
#endif
p.reqOK = false;
struct Reply failed = { 0 };
CHECK(!lgClipboard_request(
LG_CLIPBOARD_DATA_TEXT, onReply, &failed));
CHECK(failed.count == 0);
lgClipboard_free();
}
static void testCancel(void)
{
init();
bind(&p);
const LG_ClipboardData text[] = { LG_CLIPBOARD_DATA_TEXT };
const LG_ClipboardData png[] = { LG_CLIPBOARD_DATA_PNG };
notice(&p, text, 1);
struct Reply newer = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &newer));
const LG_ClipboardRequest newerId = p.reqId[p.request - 1];
notice(&p, png, 1);
checkNone(&newer);
remoteData(&p, newerId, LG_CLIPBOARD_DATA_TEXT, "x", 1);
CHECK(newer.count == 1);
struct Reply released = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_PNG, onReply, &released));
const LG_ClipboardRequest releaseId = p.reqId[p.request - 1];
p.ev->release(p.evCtx);
checkNone(&released);
remoteData(&p, releaseId, LG_CLIPBOARD_DATA_PNG, "x", 1);
CHECK(released.count == 1);
notice(&p, text, 1);
struct Reply unavailable = { 0 };
CHECK(lgClipboard_request(
LG_CLIPBOARD_DATA_TEXT, onReply, &unavailable));
const LG_ClipboardRequest unavailableId = p.reqId[p.request - 1];
lgClipboard_setLocalAvailable(false);
checkNone(&unavailable);
remoteData(&p, unavailableId, LG_CLIPBOARD_DATA_TEXT, "x", 1);
CHECK(unavailable.count == 1);
lgClipboard_setLocalAvailable(true);
notice(&p, text, 1);
struct Reply switched = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &switched));
const LG_ClipboardRequest switchedId = p.reqId[p.request - 1];
lgClipboard_setTransport(&plainOps, &q);
checkNone(&switched);
CHECK(p.oldEv);
p.oldEv->data(p.oldCtx, switchedId, LG_CLIPBOARD_DATA_TEXT, "x", 1);
CHECK(switched.count == 1);
CHECK(d.release == 3);
lgClipboard_free();
}
static void testGeneration(void)
{
init();
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
lgClipboard_setFallback(&statOps, &p);
notice(&p, types, 1);
struct Reply old = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &old));
const LG_ClipboardRequest oldId = p.reqId[p.request - 1];
setStatus(&p, true, 2);
checkNone(&old);
CHECK(p.attach == 2);
CHECK(p.detach == 1);
CHECK(d.release == 1);
remoteData(&p, oldId, LG_CLIPBOARD_DATA_TEXT, "old", 3);
CHECK(old.count == 1);
notice(&p, types, 1);
struct Reply next = { 0 };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &next));
remoteData(&p, p.reqId[p.request - 1],
LG_CLIPBOARD_DATA_TEXT, "new", 3);
CHECK(next.count == 1);
CHECK(next.type == LG_CLIPBOARD_DATA_TEXT);
CHECK(next.size == 3);
CHECK(memcmp(next.data, "new", 3) == 0);
lgClipboard_free();
}
static void testLocal(void)
{
init();
bind(&p);
const LG_ClipboardData bad[] = { LG_CLIPBOARD_DATA_NONE };
const LG_ClipboardData many[LG_CLIPBOARD_DATA_NONE + 1] = { 0 };
const LG_ClipboardData types[] =
{ LG_CLIPBOARD_DATA_TEXT, LG_CLIPBOARD_DATA_PNG };
lgClipboard_notifyTypes(NULL, 1);
lgClipboard_notifyTypes(bad, 1);
lgClipboard_notifyTypes(many, LG_CLIPBOARD_DATA_NONE + 1);
CHECK(p.notice == 0);
lgClipboard_notifyTypes(types, 2);
CHECK(p.notice == 1);
CHECK(!p.ev->request(
p.evCtx, LG_CLIPBOARD_REQUEST_INVALID, LG_CLIPBOARD_DATA_TEXT));
CHECK(!p.ev->request(p.evCtx, 1, LG_CLIPBOARD_DATA_NONE));
CHECK(p.ev->request(p.evCtx, 40, LG_CLIPBOARD_DATA_TEXT));
CHECK(d.request == 1);
CHECK(!p.ev->request(p.evCtx, 41, LG_CLIPBOARD_DATA_PNG));
const LG_ClipboardRequest first = d.reqId[0];
lgClipboard_data(first + 100, LG_CLIPBOARD_DATA_TEXT, "x", 1);
CHECK(p.data == 0);
lgClipboard_data(first, LG_CLIPBOARD_DATA_PNG, "x", 1);
CHECK(p.data == 1);
CHECK(p.dataId[0] == 40);
CHECK(p.dataType[0] == LG_CLIPBOARD_DATA_NONE);
CHECK(p.dataSize[0] == 0);
CHECK(p.ev->request(p.evCtx, 41, LG_CLIPBOARD_DATA_PNG));
const LG_ClipboardRequest second = d.reqId[1];
lgClipboard_abort(second + 100);
CHECK(p.data == 1);
lgClipboard_abort(second);
CHECK(p.data == 2);
CHECK(p.dataId[1] == 41);
CHECK(p.dataType[1] == LG_CLIPBOARD_DATA_NONE);
CHECK(p.ev->request(p.evCtx, 42, LG_CLIPBOARD_DATA_TEXT));
const LG_ClipboardRequest third = d.reqId[2];
const uint8_t buf[] = { 5, 6, 7 };
lgClipboard_data(third, LG_CLIPBOARD_DATA_TEXT, buf, sizeof(buf));
CHECK(p.data == 3);
CHECK(p.dataId[2] == 42);
CHECK(p.dataType[2] == LG_CLIPBOARD_DATA_TEXT);
CHECK(p.dataSize[2] == sizeof(buf));
CHECK(memcmp(p.dataBuf[2], buf, sizeof(buf)) == 0);
lgClipboard_data(third, LG_CLIPBOARD_DATA_TEXT, buf, sizeof(buf));
CHECK(p.data == 3);
lgClipboard_free();
}
static void testReentrant(void)
{
init();
bind(&p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
notice(&p, types, 1);
struct Reply second = { 0 };
struct Reply first = { .next = &second };
CHECK(lgClipboard_request(LG_CLIPBOARD_DATA_TEXT, onReply, &first));
remoteData(&p, p.reqId[0], LG_CLIPBOARD_DATA_TEXT, "a", 1);
CHECK(first.count == 1);
CHECK(first.nested);
CHECK(p.request == 2);
remoteData(&p, p.reqId[1], LG_CLIPBOARD_DATA_TEXT, "b", 1);
CHECK(second.count == 1);
lgClipboard_notifyTypes(types, 1);
d.autoData = true;
d.autoType = LG_CLIPBOARD_DATA_TEXT;
d.autoBuf = "local";
d.autoSize = 5;
CHECK(p.ev->request(p.evCtx, 70, LG_CLIPBOARD_DATA_TEXT));
CHECK(p.data == 1);
CHECK(p.dataId[0] == 70);
CHECK(p.dataType[0] == LG_CLIPBOARD_DATA_TEXT);
CHECK(p.dataSize[0] == 5);
CHECK(memcmp(p.dataBuf[0], "local", 5) == 0);
lgClipboard_free();
}
static void testStreamLocal(void)
{
init();
lgClipboard_setFallback(&streamOps, &p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
CHECK(p.ev->request(p.evCtx, 40, LG_CLIPBOARD_DATA_TEXT));
const LG_ClipboardRequest transfer = d.reqId[0];
CHECK(lgClipboard_dataBegin(transfer, LG_CLIPBOARD_DATA_TEXT,
LG_CLIPBOARD_SIZE_UNKNOWN) == LG_CLIPBOARD_RESULT_ACCEPTED);
const uint8_t first[] = { 1, 2 };
const uint8_t second[] = { 3, 4, 5 };
CHECK(lgClipboard_dataChunk(transfer, 0, first, sizeof(first)) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataChunk(transfer, sizeof(first),
second, sizeof(second)) == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataEnd(transfer,
sizeof(first) + sizeof(second)) == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(p.begin == 1);
CHECK(p.streamId == 40);
CHECK(p.streamType == LG_CLIPBOARD_DATA_TEXT);
CHECK(p.sizeHint == LG_CLIPBOARD_SIZE_UNKNOWN);
CHECK(p.chunk == 2);
CHECK(p.chunkOffset[0] == 0);
CHECK(p.chunkOffset[1] == sizeof(first));
CHECK(p.finalSize == sizeof(first) + sizeof(second));
CHECK(p.ev->request(p.evCtx, 41, LG_CLIPBOARD_DATA_TEXT));
const LG_ClipboardRequest invalid = d.reqId[1];
CHECK(lgClipboard_dataBegin(invalid, LG_CLIPBOARD_DATA_TEXT, 1) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataChunk(invalid, 1, first, 1) ==
LG_CLIPBOARD_RESULT_FAILED);
CHECK(p.cancel == 1);
CHECK(p.streamId == 41);
CHECK(p.cancelReason == LG_CLIPBOARD_CANCEL_INVALID);
CHECK(p.ev->request(p.evCtx, 42, LG_CLIPBOARD_DATA_TEXT));
p.ev->requestCancel(p.evCtx, 42, LG_CLIPBOARD_CANCEL_REPLACED);
CHECK(d.cancel == 1);
CHECK(d.cancelReason == LG_CLIPBOARD_CANCEL_REPLACED);
lgClipboard_free();
}
static void testStreamBlocked(void)
{
init();
lgClipboard_setFallback(&streamOps, &p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
CHECK(p.ev->request(p.evCtx, 50, LG_CLIPBOARD_DATA_TEXT));
p.beginResult = LG_CLIPBOARD_RESULT_BLOCKED;
uint8_t data[] = { 7, 8, 9 };
lgClipboard_data(d.reqId[0], LG_CLIPBOARD_DATA_TEXT,
data, sizeof(data));
CHECK(p.begin == 1);
CHECK(p.chunk == 0);
CHECK(p.end == 0);
data[0] = 0;
p.beginResult = LG_CLIPBOARD_RESULT_ACCEPTED;
p.ev->dataReady(p.evCtx, 50);
CHECK(p.begin == 2);
CHECK(p.chunk == 1);
CHECK(p.end == 1);
CHECK(p.chunkSize[0] == 3);
CHECK(p.chunkBuf[0][0] == 7);
CHECK(p.chunkBuf[0][1] == 8);
CHECK(p.chunkBuf[0][2] == 9);
CHECK(p.finalSize == 3);
CHECK(p.ev->request(p.evCtx, 51, LG_CLIPBOARD_DATA_TEXT));
const LG_ClipboardRequest transfer = d.reqId[1];
p.beginResult = LG_CLIPBOARD_RESULT_BLOCKED;
CHECK(lgClipboard_dataBegin(transfer, LG_CLIPBOARD_DATA_TEXT,
LG_CLIPBOARD_SIZE_UNKNOWN) == LG_CLIPBOARD_RESULT_BLOCKED);
p.beginResult = LG_CLIPBOARD_RESULT_ACCEPTED;
d.autoBegin = true;
p.ev->dataReady(p.evCtx, 51);
CHECK(d.ready == 1);
CHECK(d.readyResult == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataEnd(transfer, 0) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
lgClipboard_free();
}
static void testStreamRemote(void)
{
init();
lgClipboard_setFallback(&streamOps, &p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
notice(&p, types, 1);
struct StreamSink sink = { 0 };
initSink(&sink);
LG_ClipboardRequest id;
CHECK(lgClipboard_requestStream(
LG_CLIPBOARD_DATA_TEXT, &sinkOps, &sink, &id));
CHECK(id == p.reqId[0]);
CHECK(p.ev->dataBegin(p.evCtx, id, LG_CLIPBOARD_DATA_TEXT,
LG_CLIPBOARD_SIZE_UNKNOWN) == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(sink.begin == 1);
CHECK(sink.sizeHint == LG_CLIPBOARD_SIZE_UNKNOWN);
const uint8_t data[] = { 1, 3, 5, 7 };
sink.chunkResult = LG_CLIPBOARD_RESULT_BLOCKED;
CHECK(p.ev->dataChunk(p.evCtx, id, 0, data, sizeof(data)) ==
LG_CLIPBOARD_RESULT_BLOCKED);
CHECK(sink.chunk == 1);
sink.chunkResult = LG_CLIPBOARD_RESULT_ACCEPTED;
CHECK(lgClipboard_requestReady(id));
CHECK(p.ready == 1);
CHECK(p.streamId == id);
CHECK(p.ev->dataChunk(p.evCtx, id, 0, data, sizeof(data)) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(p.ev->dataEnd(p.evCtx, id, sizeof(data)) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(sink.chunk == 2);
CHECK(sink.end == 1);
CHECK(sink.finalSize == sizeof(data));
CHECK(memcmp(sink.data, data, sizeof(data)) == 0);
struct StreamSink cancel = { 0 };
initSink(&cancel);
CHECK(lgClipboard_requestStream(
LG_CLIPBOARD_DATA_TEXT, &sinkOps, &cancel, &id));
p.ev->dataCancel(p.evCtx, id, LG_CLIPBOARD_CANCEL_ABORTED);
CHECK(cancel.cancel == 1);
CHECK(cancel.reason == LG_CLIPBOARD_CANCEL_ABORTED);
lgClipboard_free();
}
static void testRequestPublication(void)
{
init();
lgClipboard_setFallback(&streamOps, &p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
notice(&p, types, 1);
struct StreamSink sink = { 0 };
initSink(&sink);
sink.requireRequest = true;
p.earlyBegin = true;
CHECK(lgClipboard_requestStream(LG_CLIPBOARD_DATA_TEXT,
&sinkOps, &sink, &sink.request));
CHECK(sink.request == p.reqId[0]);
CHECK(p.earlyResult == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(sink.begin == 1);
CHECK(p.ev->dataEnd(p.evCtx, sink.request, 0) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(sink.end == 1);
lgClipboard_free();
}
static void testStreamLegacy(void)
{
init();
bind(&p);
const LG_ClipboardData types[] = { LG_CLIPBOARD_DATA_TEXT };
lgClipboard_notifyTypes(types, 1);
CHECK(p.ev->request(p.evCtx, 60, LG_CLIPBOARD_DATA_TEXT));
const LG_ClipboardRequest transfer = d.reqId[0];
const uint8_t first[] = { 2, 4 };
const uint8_t second[] = { 6, 8 };
CHECK(lgClipboard_dataBegin(transfer, LG_CLIPBOARD_DATA_TEXT,
LG_CLIPBOARD_SIZE_UNKNOWN) == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataChunk(transfer, 0, first, sizeof(first)) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataChunk(transfer, sizeof(first), second,
sizeof(second)) == LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(lgClipboard_dataEnd(transfer, 4) ==
LG_CLIPBOARD_RESULT_ACCEPTED);
CHECK(p.data == 1);
CHECK(p.dataId[0] == 60);
CHECK(p.dataType[0] == LG_CLIPBOARD_DATA_TEXT);
CHECK(p.dataSize[0] == 4);
CHECK(memcmp(p.dataBuf[0], "\x02\x04\x06\x08", 4) == 0);
notice(&p, types, 1);
struct StreamSink sink = { 0 };
initSink(&sink);
sink.beginResult = LG_CLIPBOARD_RESULT_BLOCKED;
LG_ClipboardRequest id;
CHECK(lgClipboard_requestStream(
LG_CLIPBOARD_DATA_TEXT, &sinkOps, &sink, &id));
const uint8_t remote[] = { 9, 8, 7 };
remoteData(&p, id, LG_CLIPBOARD_DATA_TEXT, remote, sizeof(remote));
CHECK(sink.begin == 1);
CHECK(sink.chunk == 0);
sink.beginResult = LG_CLIPBOARD_RESULT_ACCEPTED;
CHECK(lgClipboard_requestReady(id));
CHECK(p.ready == 0);
CHECK(sink.begin == 2);
CHECK(sink.chunk == 1);
CHECK(sink.end == 1);
CHECK(sink.size == sizeof(remote));
CHECK(memcmp(sink.data, remote, sizeof(remote)) == 0);
lgClipboard_free();
}
struct Test
{
const char * name;
void (*run)(void);
};
static const struct Test tests[] =
{
{ "preference", testPreference },
{ "file-publication", testFilePublication },
{ "file-replacement", testFileReplacement },
{ "file-failure", testFileFailure },
{ "callback-serial", testCallbackSerialization },
{ "request" , testRequest },
{ "remote-local", testRemoteKeepsLocalRequest },
{ "pending-remote", testPendingRemoteKeepsLocalRequest },
{ "invalid" , testInvalid },
{ "cancel" , testCancel },
{ "generation", testGeneration },
{ "local" , testLocal },
{ "reentrant" , testReentrant },
{ "stream-local" , testStreamLocal },
{ "stream-blocked", testStreamBlocked },
{ "stream-remote" , testStreamRemote },
{ "request-publish", testRequestPublication },
{ "stream-legacy" , testStreamLegacy },
};
int main(int argc, char ** argv)
{
if (argc != 2)
{
fprintf(stderr, "usage: %s <case>\n", argv[0]);
return EXIT_FAILURE;
}
alarm(TEST_ALARM_S);
debug_init();
for (unsigned int i = 0; i < sizeof(tests) / sizeof(tests[0]); ++i)
if (strcmp(argv[1], tests[i].name) == 0)
{
tests[i].run();
return 0;
}
fprintf(stderr, "unknown test: %s\n", argv[1]);
return EXIT_FAILURE;
}