Files
strans/tests/xim_adapter_test.c

307 lines
6.0 KiB
C

#include "xim/xim.c"
#include "cutest/cutest.h"
void testengineinit(int);
void testenginehandle(Keyreq*);
void* testengineowner(void);
void testenginepreedit(Str*);
typedef struct Ximfix Ximfix;
struct Ximfix
{
Channel *oldreply;
Channel *trace;
Channel *stop;
Channel *done;
Channel *waiting;
Channel *ack;
int holdrelease;
int pumpactive;
};
typedef struct Freejob Freejob;
struct Freejob
{
Ic *state;
Channel *done;
};
static void
enginepump(void *arg)
{
Ximfix *f;
Keyreq req;
uchar token;
Alt alts[] = {
{keyc, &req, CHANRCV, nil},
{nil, &token, CHANRCV, nil},
{nil, nil, CHANEND, nil},
};
f = arg;
alts[1].c = f->stop;
for(;;)
switch(alt(alts)){
case 0:
chansend(f->trace, &req);
if(f->holdrelease && req.op == Keyrelease){
token = 0;
chansend(f->waiting, &token);
chanrecv(f->ack, &token);
}
testenginehandle(&req);
break;
case 1:
chansend(f->done, &token);
return;
}
}
static int
ximbegin(struct ct *t, Ximfix *f, int lang)
{
Drawcmd dc;
memset(f, 0, sizeof *f);
while(channbrecv(drawc, &dc) > 0)
;
testengineinit(lang);
f->oldreply = replyc;
replyc = chancreate(sizeof(Keyres), 0);
f->trace = chancreate(sizeof(Keyreq), 16);
f->stop = chancreate(sizeof(uchar), 0);
f->done = chancreate(sizeof(uchar), 0);
f->waiting = chancreate(sizeof(uchar), 0);
f->ack = chancreate(sizeof(uchar), 0);
f->pumpactive = threadcreate(enginepump, f, 8192) >= 0;
return CT_CHECK(t, replyc != nil && f->trace != nil &&
f->stop != nil && f->done != nil && f->waiting != nil &&
f->ack != nil && f->pumpactive);
}
static void
ximend(Ximfix *f)
{
Drawcmd dc;
uchar token;
if(f->pumpactive){
token = 0;
chansend(f->stop, &token);
chanrecv(f->done, &token);
}
testengineinit(LangEN);
while(channbrecv(drawc, &dc) > 0)
;
chanfree(replyc);
replyc = f->oldreply;
chanfree(f->trace);
chanfree(f->stop);
chanfree(f->done);
chanfree(f->waiting);
chanfree(f->ack);
}
static Keyreq
nexttrace(struct ct *t, Ximfix *f, int op, Ic *state)
{
Keyreq req;
memset(&req, 0, sizeof req);
if(!CT_CHECK(t, channbrecv(f->trace, &req) > 0))
return req;
CT_EQ_INT(t, op, req.op);
CT_EQ_PTR(t, state, req.owner);
CT_EQ_PTR(t, replyc, req.reply);
return req;
}
static void
notrace(struct ct *t, Ximfix *f)
{
Keyreq req;
CT_CHECK(t, channbrecv(f->trace, &req) <= 0);
}
static void
checkstr(struct ct *t, char *want, Str *got)
{
char buf[Maxutf];
stoutf(got, buf, sizeof buf);
CT_EQ_STR(t, want, buf);
}
static void
checkenginepreedit(struct ct *t, char *want)
{
Str preedit;
testenginepreedit(&preedit);
checkstr(t, want, &preedit);
}
void
xim_adapter_key_contract(struct ct *t)
{
Ximfix f;
Ic state;
Keyreq req;
Keyres res;
u32int allmod;
memset(&state, 0, sizeof state);
if(!ximbegin(t, &f, LangJP))
goto cleanup;
allmod = ~0;
keypress(&state, 'x', allmod, &res);
req = nexttrace(t, &f, Keypress, &state);
CT_EQ_UINT(t, Mmask, req.mod);
CT_CHECK(t, !res.eaten);
keypress(&state, 'k', 0, &res);
req = nexttrace(t, &f, Keypress, &state);
CT_EQ_UINT(t, 0, req.mod);
CT_CHECK(t, res.eaten);
keypress(&state, 'a', 0, &res);
nexttrace(t, &f, Keypress, &state);
CT_CHECK(t, res.eaten);
checkstr(t, "", &res.preedit);
keypress(&state, Kspec|0x55, 0, &res);
nexttrace(t, &f, Keypress, &state);
CT_CHECK(t, !res.eaten);
checkstr(t, "", &res.commit);
checkstr(t, "", &res.preedit);
cleanup:
ximend(&f);
}
void
xim_adapter_release_lifecycle(struct ct *t)
{
Ximfix f;
Ic a, b, *dead;
Keyres res;
memset(&a, 0, sizeof a);
memset(&b, 0, sizeof b);
dead = nil;
if(!ximbegin(t, &f, LangJP))
goto cleanup;
keypress(&a, 'k', 0, &res);
nexttrace(t, &f, Keypress, &a);
keypress(&a, 'a', 0, &res);
nexttrace(t, &f, Keypress, &a);
keypress(&b, 'n', 0, &res);
nexttrace(t, &f, Keypress, &b);
checkstr(t, "", &res.preedit);
CT_EQ_PTR(t, &b, testengineowner());
/* ResetIC and focus loss use the same idempotent release path. */
release(&a);
nexttrace(t, &f, Keyrelease, &a);
checkenginepreedit(t, "");
CT_EQ_PTR(t, &b, testengineowner());
release(&a);
notrace(t, &f);
release(&b);
nexttrace(t, &f, Keyrelease, &b);
CT_EQ_PTR(t, nil, testengineowner());
keypress(&b, 'k', 0, &res);
nexttrace(t, &f, Keypress, &b);
release(&b);
nexttrace(t, &f, Keyrelease, &b);
release(&b);
notrace(t, &f);
dead = calloc(1, sizeof *dead);
if(!CT_CHECK(t, dead != nil))
goto cleanup;
dead->next = ics;
ics = dead;
keypress(dead, 'n', 0, &res);
nexttrace(t, &f, Keypress, dead);
CT_EQ_PTR(t, dead, testengineowner());
icfree(dead);
nexttrace(t, &f, Keyrelease, dead);
dead = nil;
CT_EQ_PTR(t, nil, ics);
CT_EQ_PTR(t, nil, testengineowner());
cleanup:
if(dead != nil){
icunlink(dead);
free(dead);
}
ximend(&f);
}
static void
freeworker(void *arg)
{
Freejob *job;
uchar token;
job = arg;
icfree(job->state);
token = 0;
chansend(job->done, &token);
}
void
xim_adapter_free_waits_for_release(struct ct *t)
{
Ximfix f;
Freejob job;
Ic *state;
Channel *freed;
Keyres res;
uchar token;
int workeractive;
state = nil;
freed = nil;
workeractive = 0;
if(!ximbegin(t, &f, LangJP))
goto cleanup;
state = calloc(1, sizeof *state);
freed = chancreate(sizeof(uchar), 0);
if(!CT_CHECK(t, state != nil && freed != nil))
goto cleanup;
state->next = ics;
ics = state;
keypress(state, 'n', 0, &res);
nexttrace(t, &f, Keypress, state);
f.holdrelease = 1;
job.state = state;
job.done = freed;
workeractive = threadcreate(freeworker, &job, 8192) >= 0;
if(!CT_CHECK(t, workeractive))
goto cleanup;
chanrecv(f.waiting, &token);
nexttrace(t, &f, Keyrelease, state);
CT_CHECK(t, channbrecv(freed, &token) <= 0);
CT_EQ_PTR(t, state, ics);
CT_EQ_PTR(t, state, testengineowner());
chansend(f.ack, &token);
chanrecv(freed, &token);
workeractive = 0;
state = nil;
CT_EQ_PTR(t, nil, ics);
CT_EQ_PTR(t, nil, testengineowner());
cleanup:
if(workeractive){
chansend(f.ack, &token);
chanrecv(freed, &token);
state = nil;
}
if(state != nil){
icunlink(state);
free(state);
}
if(freed != nil)
chanfree(freed);
ximend(&f);
}