Files
strans/tests/gtk_live_test.c
Hojun-Cho 0f684ae6d3 gtk: a dead key hands the pending text back first
GtkIMContextSimple composes dead keys, and while it did the daemon still
held the syllable typed before them: the composed é was inserted first
and 하 reappeared after it.  A key the daemon does not take now resets
the composition when Simple begins composing on it — a modifier press,
which is also no key, leaves it alone.
2026-08-17 11:59:42 +09:00

961 lines
24 KiB
C

#define _GNU_SOURCE
#include <errno.h>
#include <fcntl.h>
#include <gtk/gtk.h>
#include <poll.h>
#include <pthread.h>
#include <signal.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/socket.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <sys/un.h>
#include <sys/wait.h>
#include <time.h>
#include <unistd.h>
#include "ipc.h"
#include "live.h"
enum
{
Maxevent = 256,
Timeout = 4000,
};
enum
{
Ecap,
Ecaret,
Ekey,
Ereset,
};
enum
{
Rnormal,
Rcommitpre,
Rbadcommit,
Rbadpreedit,
};
typedef struct Event Event;
typedef struct Server Server;
typedef struct Siglog Siglog;
struct Event
{
int type;
int want;
int valid;
uint32_t key;
int32_t x;
int32_t y;
int32_t h;
};
struct Server
{
pthread_t thread;
pthread_mutex_t lock;
pthread_cond_t changed;
int listenfd;
int wake[2];
int stop;
int old;
int eaten;
int stall;
int response;
int nclose;
char pre[Ipcfieldmax+1];
Event ev[Maxevent];
int nev;
};
struct Siglog
{
char event[128];
int n;
char pre[Ipcfieldmax+1];
char shown[Ipcfieldmax+1];
char commit[Ipcfieldmax+1];
int prechanged;
};
static void
record(Server *s, Event *e)
{
pthread_mutex_lock(&s->lock);
if(s->nev < Maxevent)
s->ev[s->nev++] = *e;
pthread_cond_broadcast(&s->changed);
pthread_mutex_unlock(&s->lock);
}
static void
closed(Server *s)
{
pthread_mutex_lock(&s->lock);
s->nclose++;
pthread_cond_broadcast(&s->changed);
pthread_mutex_unlock(&s->lock);
}
static int
sendresponse(Server *s, int fd, int eaten, int want, int key)
{
unsigned char buf[Ipcmaxresp];
const char *commit;
char pre[Ipcfieldmax+1];
int n, response, stall;
size_t ncommit, npreedit;
pthread_mutex_lock(&s->lock);
memcpy(pre, s->pre, sizeof pre);
response = s->response;
stall = s->stall;
pthread_mutex_unlock(&s->lock);
if(stall)
return 1;
commit = "";
ncommit = 0;
npreedit = strlen(pre);
if(key && response == Rcommitpre){
commit = pre;
ncommit = npreedit;
}else if(key && response == Rbadcommit){
commit = "\xc3(";
ncommit = 2;
}else if(key && response == Rbadpreedit){
pre[0] = 'x';
pre[1] = 0;
pre[2] = 'y';
npreedit = 3;
}
n = ipcpackresp(buf, sizeof buf, eaten, commit, ncommit,
pre, npreedit, want);
return n >= 0 && ipcsend(fd, buf, n) == 0;
}
static int
request(Server *s, int fd)
{
unsigned char buf[Ipccaretsz];
uint32_t mod, key;
Event e;
int old, type, want;
if(ipcreadn(fd, buf, Ipcreqsz) < 0)
return 0;
type = ipcreqtype(buf);
memset(&e, 0, sizeof e);
switch(type){
case Ipccap:
e.type = Ecap;
ipcunpackreq(buf, &e.want, &mod, &key);
record(s, &e);
pthread_mutex_lock(&s->lock);
old = s->old;
pthread_mutex_unlock(&s->lock);
return sendresponse(s, fd, !old, e.want, 0);
case Ipccaret:
if(ipcreadn(fd, buf + Ipcreqsz, Ipccaretsz - Ipcreqsz) < 0 ||
ipcunpackcaret(buf, &e.valid, &e.x, &e.y, &e.h) < 0)
return 0;
e.type = Ecaret;
record(s, &e);
return 1;
case Ipckey:
ipcunpackreq(buf, &want, &mod, &key);
e.want = want;
e.key = key;
e.type = ipcreqreset(buf) ? Ereset : Ekey;
record(s, &e);
pthread_mutex_lock(&s->lock);
old = s->eaten;
pthread_mutex_unlock(&s->lock);
return sendresponse(s, fd, e.type == Ekey && old, want,
e.type == Ekey);
}
return 0;
}
static void*
serverthread(void *v)
{
Server *s;
struct pollfd pfd[3];
int fd, n;
char c;
s = v;
fd = -1;
for(;;){
pfd[0].fd = s->wake[0];
pfd[0].events = POLLIN;
pfd[1].fd = s->listenfd;
pfd[1].events = fd < 0 ? POLLIN : 0;
pfd[2].fd = fd;
pfd[2].events = fd >= 0 ? POLLIN : 0;
n = poll(pfd, 3, -1);
if(n < 0 && errno == EINTR)
continue;
if(n < 0 || (pfd[0].revents & POLLIN))
break;
if(pfd[1].revents & POLLIN){
fd = accept(s->listenfd, NULL, NULL);
continue;
}
if(fd >= 0 && pfd[2].revents != 0){
if((pfd[2].revents & POLLIN) && request(s, fd))
continue;
close(fd);
fd = -1;
closed(s);
}
}
if(fd >= 0){
close(fd);
closed(s);
}
while(read(s->wake[0], &c, 1) < 0 && errno == EINTR)
;
return NULL;
}
static int
startserver(Server *s, char *path)
{
struct sockaddr_un addr;
int cond;
memset(s, 0, sizeof *s);
s->eaten = 1;
s->listenfd = -1;
s->wake[0] = s->wake[1] = -1;
if(pthread_mutex_init(&s->lock, NULL) != 0)
return fail("initialize server lock");
cond = pthread_cond_init(&s->changed, NULL) == 0;
if(!cond){
fail("initialize server condition");
goto bad;
}
if(pipe(s->wake) < 0){
fail("pipe: %s", strerror(errno));
goto bad;
}
s->listenfd = socket(AF_UNIX, SOCK_STREAM, 0);
if(s->listenfd < 0){
fail("socket: %s", strerror(errno));
goto bad;
}
memset(&addr, 0, sizeof addr);
addr.sun_family = AF_UNIX;
if(strlen(path) >= sizeof addr.sun_path){
fail("socket path is too long");
goto bad;
}
strcpy(addr.sun_path, path);
if(bind(s->listenfd, (struct sockaddr*)&addr, sizeof addr) < 0 ||
listen(s->listenfd, 4) < 0){
fail("listen %s: %s", path, strerror(errno));
goto bad;
}
if(pthread_create(&s->thread, NULL, serverthread, s) != 0){
fail("create server thread");
goto bad;
}
return 1;
bad:
if(s->listenfd >= 0)
close(s->listenfd);
if(s->wake[0] >= 0)
close(s->wake[0]);
if(s->wake[1] >= 0)
close(s->wake[1]);
if(cond)
pthread_cond_destroy(&s->changed);
pthread_mutex_destroy(&s->lock);
s->listenfd = s->wake[0] = s->wake[1] = -1;
return 0;
}
static void
stopserver(Server *s)
{
char c;
if(s->wake[1] >= 0){
c = 0;
while(write(s->wake[1], &c, 1) < 0 && errno == EINTR)
;
pthread_join(s->thread, NULL);
}
if(s->listenfd >= 0)
close(s->listenfd);
if(s->wake[0] >= 0)
close(s->wake[0]);
if(s->wake[1] >= 0)
close(s->wake[1]);
pthread_cond_destroy(&s->changed);
pthread_mutex_destroy(&s->lock);
s->listenfd = s->wake[0] = s->wake[1] = -1;
}
static void
setpre(Server *s, char *pre)
{
pthread_mutex_lock(&s->lock);
snprintf(s->pre, sizeof s->pre, "%s", pre);
pthread_mutex_unlock(&s->lock);
}
static void
setold(Server *s, int old)
{
pthread_mutex_lock(&s->lock);
s->old = old;
pthread_mutex_unlock(&s->lock);
}
static void
setreply(Server *s, int eaten, int response, int stall)
{
pthread_mutex_lock(&s->lock);
s->eaten = eaten;
s->response = response;
s->stall = stall;
pthread_mutex_unlock(&s->lock);
}
static int
eventcount(Server *s)
{
int n;
pthread_mutex_lock(&s->lock);
n = s->nev;
pthread_mutex_unlock(&s->lock);
return n;
}
static int
closecount(Server *s)
{
int n;
pthread_mutex_lock(&s->lock);
n = s->nclose;
pthread_mutex_unlock(&s->lock);
return n;
}
static int
waitcount(Server *s, int n)
{
struct timespec ts;
int r;
clock_gettime(CLOCK_REALTIME, &ts);
ts.tv_sec += Timeout / 1000;
ts.tv_nsec += (Timeout % 1000) * 1000000;
if(ts.tv_nsec >= 1000000000){
ts.tv_sec++;
ts.tv_nsec -= 1000000000;
}
pthread_mutex_lock(&s->lock);
while(s->nev < n){
r = pthread_cond_timedwait(&s->changed, &s->lock, &ts);
if(r == ETIMEDOUT)
break;
}
r = s->nev >= n;
pthread_mutex_unlock(&s->lock);
return r;
}
static int
waitclose(Server *s, int n)
{
struct timespec ts;
int r;
clock_gettime(CLOCK_REALTIME, &ts);
ts.tv_sec += Timeout / 1000;
pthread_mutex_lock(&s->lock);
while(s->nclose < n){
r = pthread_cond_timedwait(&s->changed, &s->lock, &ts);
if(r == ETIMEDOUT)
break;
}
r = s->nclose >= n;
pthread_mutex_unlock(&s->lock);
return r;
}
static Event
getevent(Server *s, int n)
{
Event e;
memset(&e, 0, sizeof e);
pthread_mutex_lock(&s->lock);
if(n >= 0 && n < s->nev)
e = s->ev[n];
pthread_mutex_unlock(&s->lock);
return e;
}
static int
runquery(char *module, char *cache)
{
int fd, status;
pid_t pid;
fd = open(cache, O_WRONLY|O_CREAT|O_TRUNC, 0600);
if(fd < 0)
return fail("open module cache: %s", strerror(errno));
pid = fork();
if(pid < 0){
close(fd);
return fail("fork gtk-query-immodules: %s", strerror(errno));
}
if(pid == 0){
dup2(fd, STDOUT_FILENO);
close(fd);
execlp("gtk-query-immodules-3.0", "gtk-query-immodules-3.0",
module, (char*)NULL);
_exit(127);
}
close(fd);
if(waitpid(pid, &status, 0) != pid || !WIFEXITED(status) ||
WEXITSTATUS(status) != 0)
return fail("gtk-query-immodules-3.0 failed");
return 1;
}
static int
startxvfb(pid_t *pidp, char *display, size_t ndisplay)
{
struct pollfd pfd;
char fdarg[32], line[32];
int p[2], n, status;
pid_t pid;
if(pipe(p) < 0)
return fail("Xvfb display pipe: %s", strerror(errno));
pid = fork();
if(pid < 0){
close(p[0]);
close(p[1]);
return fail("fork Xvfb: %s", strerror(errno));
}
if(pid == 0){
close(p[0]);
snprintf(fdarg, sizeof fdarg, "%d", p[1]);
execlp("Xvfb", "Xvfb", "-displayfd", fdarg, "-screen", "0",
"1024x768x24", "-nolisten", "tcp", "-noreset", (char*)NULL);
_exit(127);
}
close(p[1]);
pfd.fd = p[0];
pfd.events = POLLIN;
if(poll(&pfd, 1, Timeout) <= 0){
kill(pid, SIGTERM);
waitpid(pid, NULL, 0);
close(p[0]);
return fail("Xvfb did not publish a display");
}
n = read(p[0], line, sizeof line - 1);
close(p[0]);
if(n <= 0){
waitpid(pid, &status, 0);
return fail("read Xvfb display number");
}
line[n] = '\0';
line[strcspn(line, "\r\n")] = '\0';
if(snprintf(display, ndisplay, ":%s", line) >= (int)ndisplay){
kill(pid, SIGTERM);
waitpid(pid, NULL, 0);
return fail("Xvfb display number is too long");
}
*pidp = pid;
return 1;
}
static void
stopxvfb(pid_t *pidp)
{
int status;
int64_t deadline;
if(*pidp <= 0)
return;
kill(*pidp, SIGTERM);
deadline = nowms() + Timeout;
while(waitpid(*pidp, &status, WNOHANG) == 0 && leftms(deadline) > 0)
g_usleep(10000);
if(waitpid(*pidp, &status, WNOHANG) == 0){
kill(*pidp, SIGKILL);
waitpid(*pidp, &status, 0);
}
*pidp = -1;
}
static void
pump(void)
{
while(gtk_events_pending())
gtk_main_iteration();
}
static void
logsig(Siglog *l, char c)
{
if(l->n + 1 < (int)sizeof l->event){
l->event[l->n++] = c;
l->event[l->n] = '\0';
}
}
static void
prestart(GtkIMContext *ctx, Siglog *l)
{
(void)ctx;
logsig(l, 'S');
}
static void
prechange(GtkIMContext *ctx, Siglog *l)
{
gchar *s;
gtk_im_context_get_preedit_string(ctx, &s, NULL, NULL);
if(strcmp(l->pre, s) != 0)
l->prechanged = 1;
snprintf(l->pre, sizeof l->pre, "%s", s);
g_free(s);
logsig(l, 'C');
}
static void
preend(GtkIMContext *ctx, Siglog *l)
{
(void)ctx;
logsig(l, 'E');
}
static void
commit(GtkIMContext *ctx, gchar *s, Siglog *l)
{
(void)ctx;
snprintf(l->commit, sizeof l->commit, "%s", s);
logsig(l, 'K');
}
static void
clearevent(Siglog *l)
{
l->event[0] = '\0';
l->n = 0;
l->commit[0] = '\0';
l->prechanged = 0;
}
static void
applyclient(Siglog *l)
{
if(l->commit[0] != '\0')
l->shown[0] = '\0';
if(l->prechanged)
snprintf(l->shown, sizeof l->shown, "%s", l->pre);
}
static void
clearlog(Siglog *l)
{
memset(l, 0, sizeof *l);
}
static GtkIMContext*
newcontext(Siglog *l)
{
GtkIMContext *ctx;
ctx = gtk_im_multicontext_new();
gtk_im_multicontext_set_context_id(GTK_IM_MULTICONTEXT(ctx), "strans");
g_signal_connect(ctx, "preedit-start", G_CALLBACK(prestart), l);
g_signal_connect(ctx, "preedit-changed", G_CALLBACK(prechange), l);
g_signal_connect(ctx, "preedit-end", G_CALLBACK(preend), l);
g_signal_connect(ctx, "commit", G_CALLBACK(commit), l);
return ctx;
}
static int
keyevent(GtkIMContext *ctx, GdkWindow *win, GdkEventType type,
guint keyval, guint state)
{
GdkEvent *ev;
int r;
ev = gdk_event_new(type);
ev->key.window = g_object_ref(win);
ev->key.send_event = TRUE;
ev->key.time = GDK_CURRENT_TIME;
ev->key.keyval = keyval;
ev->key.state = state;
r = gtk_im_context_filter_keypress(ctx, &ev->key);
gdk_event_free(ev);
return r;
}
static int
keystate(GtkIMContext *ctx, GdkWindow *win, guint keyval, guint state)
{
return keyevent(ctx, win, GDK_KEY_PRESS, keyval, state);
}
static int
key(GtkIMContext *ctx, GdkWindow *win, guint keyval)
{
return keystate(ctx, win, keyval, 0);
}
static GtkWidget*
newwindow(int x, int y)
{
GtkWidget *w;
w = gtk_window_new(GTK_WINDOW_TOPLEVEL);
gtk_window_set_default_size(GTK_WINDOW(w), 240, 120);
gtk_window_move(GTK_WINDOW(w), x, y);
gtk_widget_show(w);
pump();
return w;
}
#define Check(c, ...) do{ if(!(c)){ fail(__VA_ARGS__); goto out; } }while(0)
int
main(int argc, char **argv)
{
Server srv;
Siglog log;
GtkIMContext *ctx, *oldctx, *badctx;
GtkWidget *top;
GdkWindow *win;
GdkRectangle rect;
Event e;
static const GtkInputPurpose purposes[] = {
GTK_INPUT_PURPOSE_PASSWORD,
GTK_INPUT_PURPOSE_PIN,
};
static const int badresponses[] = { Rbadcommit, Rbadpreedit };
char root[] = "/tmp/strans-gtk.XXXXXX";
char runtime[320] = "", socket[384] = "", cache[384] = "";
char display[32];
char *module;
pid_t xvfb;
int first, i, ox, oy, scale, closes, ok, rootmade, serverup;
int64_t stalledms, started;
testname = "gtk_live_test";
ctx = oldctx = badctx = NULL;
top = NULL;
xvfb = -1;
rootmade = 0;
serverup = 0;
ok = 0;
if(argc != 2){
fail("usage: gtk_live_test /path/to/im-strans.so");
return 1;
}
module = realpath(argv[1], NULL);
if(module == NULL){
fail("realpath %s: %s", argv[1], strerror(errno));
return 1;
}
Check(mkdtemp(root) != NULL, "mkdtemp: %s", strerror(errno));
rootmade = 1;
Check(snprintf(runtime, sizeof runtime, "%s/runtime", root) <
(int)sizeof runtime, "runtime path is too long");
Check(snprintf(socket, sizeof socket, "%s/strans.sock", runtime) <
(int)sizeof socket, "socket path is too long");
Check(snprintf(cache, sizeof cache, "%s/immodules.cache", root) <
(int)sizeof cache, "cache path is too long");
Check(mkdir(runtime, 0700) == 0, "mkdir runtime: %s", strerror(errno));
Check(startxvfb(&xvfb, display, sizeof display), "start private Xvfb");
Check(setenv("DISPLAY", display, 1) == 0 &&
setenv("GDK_BACKEND", "x11", 1) == 0 &&
setenv("GDK_SCALE", "2", 1) == 0 &&
setenv("XDG_RUNTIME_DIR", runtime, 1) == 0,
"set private environment: %s", strerror(errno));
Check(runquery(module, cache), "generate GTK module cache");
Check(setenv("GTK_IM_MODULE_FILE", cache, 1) == 0 &&
setenv("GTK_IM_MODULE", "strans", 1) == 0,
"set GTK module environment: %s", strerror(errno));
Check(startserver(&srv, socket), "start fake daemon");
serverup = 1;
gtk_init(&argc, &argv);
clearlog(&log);
ctx = newcontext(&log);
top = newwindow(73, 41);
win = gtk_widget_get_window(top);
gtk_im_context_set_client_window(ctx, win);
rect.x = 11;
rect.y = 17;
rect.width = 3;
rect.height = 19;
gtk_im_context_set_cursor_location(ctx, &rect);
Check(eventcount(&srv) == 0, "cursor reporting opened the socket");
setpre(&srv, "");
Check(key(ctx, win, GDK_KEY_a), "initial key was not eaten");
Check(waitcount(&srv, 3), "initial protocol frames timed out");
e = getevent(&srv, 0);
Check(e.type == Ecap && e.want == 1, "default preedit capability missing");
e = getevent(&srv, 1);
Check(e.type == Ecaret && e.valid, "cached caret was not negotiated");
gdk_window_get_origin(win, &ox, &oy);
Check(ox != 0 && oy != 0, "test window did not get a nonzero root origin");
scale = gdk_window_get_scale_factor(win);
Check(scale == 2, "private Xvfb did not honor GDK_SCALE=2");
Check(e.x == (ox + rect.x) * scale &&
e.y == (oy + rect.y) * scale && e.h == rect.height * scale,
"caret conversion got %d,%d,%d want %d,%d,%d",
e.x, e.y, e.h, (ox + rect.x) * scale,
(oy + rect.y) * scale, rect.height * scale);
e = getevent(&srv, 2);
Check(e.type == Ekey && e.want == 1, "initial key framing changed");
Check(log.n == 0, "initial empty preedit emitted %s", log.event);
setpre(&srv, "");
clearlog(&log);
Check(key(ctx, win, GDK_KEY_z), "first preedit key was not eaten");
applyclient(&log);
Check(strcmp(log.event, "SC") == 0 && strcmp(log.pre, "") == 0 &&
strcmp(log.shown, "") == 0,
"first preedit signals were %s (preedit %s, shown %s)",
log.event, log.pre, log.shown);
clearevent(&log);
setreply(&srv, 1, Rcommitpre, 0);
Check(key(ctx, win, GDK_KEY_z), "repeated preedit key was not eaten");
applyclient(&log);
Check(strcmp(log.event, "CEKSC") == 0 &&
strcmp(log.commit, "") == 0 && strcmp(log.pre, "") == 0 &&
strcmp(log.shown, "") == 0,
"repeated preedit signals were %s (commit %s, preedit %s, shown %s)",
log.event, log.commit, log.pre, log.shown);
Check(g_utf8_strlen(log.commit, -1) + g_utf8_strlen(log.shown, -1) == 2,
"two physical keys produced commit %s and shown preedit %s",
log.commit, log.shown);
/* Unconsumed input uses GtkIMContextSimple, including its stateful forms. */
setpre(&srv, "");
setreply(&srv, 0, Rnormal, 0);
clearlog(&log);
Check(key(ctx, win, GDK_KEY_Multi_key) &&
key(ctx, win, GDK_KEY_apostrophe) && key(ctx, win, GDK_KEY_e),
"Compose sequence was not consumed");
Check(strcmp(log.commit, "é") == 0, "Compose committed %s", log.commit);
clearlog(&log);
Check(key(ctx, win, GDK_KEY_dead_acute) && key(ctx, win, GDK_KEY_e),
"dead-key sequence was not consumed");
Check(strcmp(log.commit, "é") == 0, "dead key committed %s", log.commit);
/* A dead key over a preedit hands the pending text back first. */
setreply(&srv, 1, Rnormal, 0);
setpre(&srv, "");
clearlog(&log);
Check(key(ctx, win, GDK_KEY_h), "dead-key setup key was not eaten");
clearevent(&log);
first = eventcount(&srv);
Check(!key(ctx, win, GDK_KEY_Shift_L), "a modifier press was eaten");
Check(eventcount(&srv) == first && strcmp(log.pre, "") == 0,
"a modifier press disturbed the preedit");
setreply(&srv, 0, Rnormal, 0);
setpre(&srv, "");
Check(key(ctx, win, GDK_KEY_dead_acute) && key(ctx, win, GDK_KEY_e),
"dead key over a preedit was not consumed");
Check(getevent(&srv, first).type == Ereset,
"dead key did not hand the pending text back");
Check(strcmp(log.commit, "é") == 0 && log.pre[0] == '\0',
"dead key over a preedit committed %s (preedit %s)",
log.commit, log.pre);
clearlog(&log);
Check(keystate(ctx, win, GDK_KEY_U, GDK_CONTROL_MASK|GDK_SHIFT_MASK),
"Unicode prefix was not consumed");
(void)keyevent(ctx, win, GDK_KEY_RELEASE, GDK_KEY_U,
GDK_CONTROL_MASK|GDK_SHIFT_MASK);
(void)keyevent(ctx, win, GDK_KEY_RELEASE, GDK_KEY_Shift_L,
GDK_CONTROL_MASK);
(void)keyevent(ctx, win, GDK_KEY_RELEASE, GDK_KEY_Control_L, 0);
Check(key(ctx, win, GDK_KEY_0), "Unicode digit 1 was not consumed");
Check(key(ctx, win, GDK_KEY_0), "Unicode digit 2 was not consumed");
Check(key(ctx, win, GDK_KEY_e), "Unicode digit 3 was not consumed");
Check(key(ctx, win, GDK_KEY_9), "Unicode digit 4 was not consumed");
(void)key(ctx, win, GDK_KEY_Return);
Check(strcmp(log.commit, "é") == 0, "Unicode entry committed %s", log.commit);
setreply(&srv, 1, Rnormal, 0);
/* PASSWORD and PIN transitions reset an existing composition. */
rect.height = 12;
gtk_im_context_set_cursor_location(ctx, &rect);
for(i = 0; i < (int)(sizeof purposes / sizeof purposes[0]); i++){
g_object_set(ctx, "input-purpose", GTK_INPUT_PURPOSE_FREE_FORM, NULL);
setpre(&srv, i == 0 ? "password" : "pin");
clearlog(&log);
Check(key(ctx, win, GDK_KEY_c + i), "private setup key was not eaten");
clearlog(&log);
first = eventcount(&srv);
g_object_set(ctx, "input-purpose", purposes[i], NULL);
Check(waitcount(&srv, first + 1), "private reset timed out");
Check(getevent(&srv, first).type == Ereset &&
strcmp(log.event, "CE") == 0,
"private transition did not reset and clear");
clearlog(&log);
first = eventcount(&srv);
Check(key(ctx, win, GDK_KEY_x), "private fallback did not commit");
Check(eventcount(&srv) == first && strcmp(log.commit, "x") == 0,
"private key reached daemon or did not commit");
}
g_object_set(ctx, "input-purpose", GTK_INPUT_PURPOSE_FREE_FORM, NULL);
setpre(&srv, "reset");
clearlog(&log);
Check(key(ctx, win, GDK_KEY_e), "reset setup key was not eaten");
clearlog(&log);
first = eventcount(&srv);
gtk_im_context_reset(ctx);
Check(waitcount(&srv, first + 1), "explicit reset timed out");
Check(getevent(&srv, first).type == Ereset && strcmp(log.event, "CE") == 0,
"explicit reset did not clear preedit");
setpre(&srv, "focus");
clearlog(&log);
Check(key(ctx, win, GDK_KEY_f), "focus setup key was not eaten");
clearlog(&log);
first = eventcount(&srv);
closes = closecount(&srv);
gtk_im_context_focus_out(ctx);
Check(waitclose(&srv, closes + 1), "focus-out did not close connection");
Check(eventcount(&srv) == first + 1 &&
getevent(&srv, first).type == Ereset,
"focus-out did not hand the pending text back before closing");
Check(strcmp(log.event, "CE") == 0, "focus-out clear order was %s", log.event);
/* Dispose is repeatable, closes the connection, and emits no preedit. */
gtk_im_context_set_client_window(ctx, win);
setpre(&srv, "final");
clearlog(&log);
Check(key(ctx, win, GDK_KEY_g), "dispose setup key was not eaten");
clearlog(&log);
closes = closecount(&srv);
g_object_run_dispose(G_OBJECT(ctx));
g_object_run_dispose(G_OBJECT(ctx));
g_object_unref(ctx);
ctx = NULL;
Check(waitclose(&srv, closes + 1), "dispose did not close connection");
Check(log.n == 0, "dispose emitted %s", log.event);
/* Malformed commit and preedit fields close the protocol connection. */
for(i = 0; i < (int)(sizeof badresponses / sizeof badresponses[0]); i++){
setreply(&srv, 1, badresponses[i], 0);
clearlog(&log);
badctx = newcontext(&log);
gtk_im_context_set_client_window(badctx, win);
closes = closecount(&srv);
Check(key(badctx, win, GDK_KEY_m + i),
"malformed response did not fall back");
Check(waitclose(&srv, closes + 1),
"malformed response did not close connection");
Check(log.commit[0] == 'm' + i && log.commit[1] == '\0',
"malformed response fallback committed %s", log.commit);
g_object_unref(badctx);
badctx = NULL;
}
/* A peer which accepts a connection but never replies cannot freeze GTK. */
setreply(&srv, 1, Rnormal, 1);
clearlog(&log);
badctx = newcontext(&log);
closes = closecount(&srv);
started = nowms();
Check(key(badctx, win, GDK_KEY_t), "stalled peer did not fall back");
stalledms = nowms() - started;
Check(stalledms < 4*Ipcwaitms, "stalled peer blocked GTK");
Check(waitclose(&srv, closes + 1), "stalled connection was not closed");
Check(strcmp(log.commit, "t") == 0, "stalled fallback committed %s",
log.commit);
g_object_unref(badctx);
badctx = NULL;
setreply(&srv, 1, Rnormal, 0);
/* An old daemon still honors set_use_preedit(FALSE). */
setold(&srv, 1);
clearlog(&log);
oldctx = newcontext(&log);
gtk_im_context_set_client_window(oldctx, win);
rect.x = 2;
rect.y = 3;
rect.height = 10;
gtk_im_context_set_cursor_location(oldctx, &rect);
gtk_im_context_set_use_preedit(oldctx, FALSE);
setpre(&srv, "legacy");
first = eventcount(&srv);
Check(key(oldctx, win, GDK_KEY_h), "old-daemon key was not eaten");
Check(waitcount(&srv, first + 2), "old-daemon exchange timed out");
e = getevent(&srv, first);
Check(e.type == Ecap && e.want == 0, "old-daemon probe framing is wrong");
e = getevent(&srv, first + 1);
Check(e.type == Ekey && e.want == 0, "old daemon forced inline preedit");
for(i = first; i < eventcount(&srv); i++)
Check(getevent(&srv, i).type != Ecaret,
"caret extension sent to old daemon");
Check(log.n == 0 && log.pre[0] == '\0',
"old daemon emitted inline preedit %s (%s)", log.event, log.pre);
closes = closecount(&srv);
g_object_unref(oldctx);
oldctx = NULL;
Check(waitclose(&srv, closes + 1), "old-daemon context did not close");
/* A failed first connection uses GtkIMContextSimple. */
stopserver(&srv);
serverup = 0;
unlink(socket);
clearlog(&log);
badctx = newcontext(&log);
Check(key(badctx, win, GDK_KEY_z), "connection failure did not fall back");
Check(strcmp(log.commit, "z") == 0 && log.pre[0] == '\0',
"connection failure left stale preedit");
ok = 1;
out:
if(badctx != NULL)
g_object_unref(badctx);
if(oldctx != NULL)
g_object_unref(oldctx);
if(ctx != NULL)
g_object_unref(ctx);
if(top != NULL)
gtk_widget_destroy(top);
pump();
if(serverup)
stopserver(&srv);
if(socket[0] != '\0')
unlink(socket);
if(cache[0] != '\0')
unlink(cache);
if(runtime[0] != '\0')
rmdir(runtime);
if(rootmade)
rmdir(root);
stopxvfb(&xvfb);
free(module);
if(ok)
printf("gtk_live_test: ok (scale %d, stalled peer %lld ms)\n",
scale, (long long)stalledms);
return !ok;
}