Files
strans/ibus.c
Hojun-Cho 650f00812d compose: a sequence belongs to one context
One xkb_compose_state served the whole session, so a dead key left half
typed in one window was completed by the first key in the next.  Two IBus
contexts through the real processkey(), before this:

	want length 0, got length 2; byte 0: want <end>, got 0xc3  (text)
	want 0, got 1                                              (req.op)

Context A pressed dead_acute; context B pressed e, got é, and went down
the composed-text branch instead of sending a key.  Only COMPOSING is
sticky -- xkbcommon starts over by itself after COMPOSED and CANCELLED,
which the table in compose_test already pins -- and nothing here ever
called xkb_compose_state_reset.

That static was also fed from three procs, two of them live at once, with
no lock, which xkbcommon forbids.  Reaching it needs two focused windows,
so it cannot be made to fail on demand and has no test: it goes because
the sharing goes, not because anything guards it.

So a state per frontend, each starting over when the key comes from
another context.  All are made in composeinit(), on threadmain, before
proccreate, because xkb_compose_state_new refs the table and that ref is
a plain increment --

	b160: mov (%rdi),%edx   b16a: add $0x1,%edx   b170: mov %edx,(%rdi)

-- so making a state from a shared table on two procs would race in place
of the feed.  Made before the procs exist they can still share the one
table.  An owner address that gets reused says so with composedrop: ibus
hands out a contexts[] slot again, xim can malloc an Ic at a freed one,
and wl's single context, which serves every client in turn, drops at
every activate and deactivate.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-17 23:25:22 +09:00

1120 lines
29 KiB
C

#include "dat.h"
#include "fn.h"
#include <stdio.h>
#include <errno.h>
#include <sys/stat.h>
#include <poll.h>
#include <dbus/dbus.h>
#include <xkbcommon/xkbcommon.h>
enum
{
Maxwatches = 2*Maxclients + 1,
/* Toolkits keep one context per widget that ever took focus. */
Maxcontexts = 1024,
Relmask = 1<<30,
/* IBus wire constants; the daemon does not link libibus. */
Ibuscappreedit = 1<<0,
Ibusattrunderline = 1,
Ibusunderlinesingle = 1,
Ibuspreeditclear = 0,
Maxpost = 3,
};
/*
* A client in IBus's synchronous mode (GTK 4) cannot take signals while
* it waits for its ProcessKeyEvent reply: it asks afterwards, through the
* PostProcessKeyEvent property, for what the key produced, as typed
* (yv) pairs — 'c' a commit, 'u' or 'm' a preedit and then its
* "cursor,visible[,mode]".
*/
typedef struct Post Post;
struct Post
{
char type;
char text[Maxutf];
char pos[32];
};
typedef struct Ictx Ictx;
struct Ictx
{
DBusConnection *conn;
char path[64];
int focused;
u32int cap;
u32int purpose;
int clientcommitpreedit;
int postprocess;
int keying; /* inside ProcessKeyEvent: hold signals for the post */
int npost;
Post post[Maxpost];
Caret caret;
};
static DBusWatch *watches[Maxwatches];
static int nwatches;
static DBusConnection *conns[Maxclients];
static int nconns;
static DBusServer *srv;
static Ictx contexts[Maxcontexts];
static char addrfile[512];
static dev_t addrdev;
static ino_t addrino;
static int icctr;
static int busctr;
static Channel *replyc;
static const char ibusowner[] = ":1.0";
static Ictx *preowner;
/* Removes the address file only while it is still the one we wrote. */
static void
unlinkaddr(void)
{
struct stat st;
if(addrfile[0] != '\0' && lstat(addrfile, &st) == 0 &&
st.st_dev == addrdev && st.st_ino == addrino)
unlink(addrfile);
addrfile[0] = '\0';
addrdev = 0;
addrino = 0;
}
static int
addrnote(void*, char*)
{
unlinkaddr();
return 0;
}
static void
machineidfiles(char *buf, int sz, char **path, int npath)
{
int fd, i, n;
for(i = 0; i < npath; i++){
fd = open(path[i], 0);
if(fd < 0)
continue;
n = read(fd, buf, sz - 1);
close(fd);
if(n <= 0)
continue;
buf[n] = '\0';
while(n > 0 && (buf[n-1] == '\n' || buf[n-1] == '\r'))
buf[--n] = '\0';
if(n > 0)
return;
}
buf[0] = '\0';
}
/* libibus reads the D-Bus file first and calls it "machine-id" if neither is there. */
static void
machineid(char *buf, int sz)
{
char *path[] = {
"/var/lib/dbus/machine-id",
"/etc/machine-id",
};
machineidfiles(buf, sz, path, nelem(path));
if(buf[0] == '\0')
snprintf(buf, sz, "machine-id");
}
static void
copyfield(char *dst, int sz, char *src, int n)
{
if(n >= sz)
n = sz - 1;
memcpy(dst, src, n);
dst[n] = '\0';
}
/*
* The display libibus names the file after: the whole WAYLAND_DISPLAY,
* else DISPLAY's host and number, else unix and 0.
*/
static void
xdisplay(char *host, int hsz, char *num, int nsz)
{
char *d, *colon, *dot, *p;
copyfield(host, hsz, "unix", 4);
copyfield(num, nsz, "0", 1);
d = getenv("WAYLAND_DISPLAY");
if(d != nil && d[0] != '\0'){
copyfield(num, nsz, d, strlen(d));
return;
}
d = getenv("DISPLAY");
if(d == nil || d[0] == '\0')
return;
colon = strchr(d, ':');
if(colon == nil)
return;
if(colon > d)
copyfield(host, hsz, d, colon - d);
p = colon + 1;
dot = strchr(p, '.');
copyfield(num, nsz, p, dot ? dot - p : (int)strlen(p));
}
/* The IBus address file lives where libibus looks: config/ibus/bus/. */
static int
buildaddrpath(char *buf, int sz)
{
char mid[64], host[64], num[64], dir[512];
char *cfg, *home, *explicit, *p;
int n;
explicit = getenv("IBUS_ADDRESS_FILE");
if(explicit != nil){
n = snprintf(buf, sz, "%s", explicit);
return explicit[0] == '\0' || n < 0 || n >= sz ? -1 : 0;
}
machineid(mid, sizeof(mid));
xdisplay(host, sizeof(host), num, sizeof(num));
cfg = getenv("XDG_CONFIG_HOME");
if(cfg != nil && cfg[0] != '\0')
n = snprintf(dir, sizeof(dir), "%s/ibus/bus", cfg);
else{
home = getenv("HOME");
if(home == nil)
return -1;
n = snprintf(dir, sizeof(dir), "%s/.config/ibus/bus", home);
}
if(n < 0 || n >= (int)sizeof dir)
return -1;
for(p = dir+1; *p; p++)
if(*p == '/'){
*p = '\0';
mkdir(dir, 0700);
*p = '/';
}
mkdir(dir, 0700);
n = snprintf(buf, sz, "%s/%s-%s-%s", dir, mid, host, num);
return n < 0 || n >= sz ? -1 : 0;
}
/* Publishes the address atomically and remembers the file's identity. */
static int
writeaddr(char *path, char *addr)
{
char tmp[576], text[256];
struct stat st;
int fd, n, ok;
n = snprintf(tmp, sizeof tmp, "%s.tmp.XXXXXX", path);
if(n < 0 || n >= (int)sizeof tmp)
return -1;
n = snprintf(text, sizeof text, "IBUS_ADDRESS=%s\nIBUS_DAEMON_PID=%d\n",
addr, (int)getpid());
if(n < 0 || n >= (int)sizeof text)
return -1;
fd = mkstemp(tmp);
if(fd < 0)
return -1;
ok = write(fd, text, n) == n && fsync(fd) == 0 &&
fstat(fd, &st) == 0;
close(fd);
if(!ok || rename(tmp, path) < 0){
unlink(tmp);
return -1;
}
addrdev = st.st_dev;
addrino = st.st_ino;
return 0;
}
static dbus_bool_t
addwatch(DBusWatch *w, void*)
{
int i;
for(i = 0; i < nwatches; i++)
if(watches[i] == nil){
watches[i] = w;
return TRUE;
}
if(nwatches >= Maxwatches)
return FALSE;
watches[nwatches++] = w;
return TRUE;
}
static void
removewatch(DBusWatch *w, void*)
{
int i;
for(i = 0; i < nwatches; i++)
if(watches[i] == w){
watches[i] = nil;
return;
}
}
static Ictx*
findcontext(DBusConnection *conn, const char *path)
{
int i;
for(i = 0; i < nelem(contexts); i++)
if(contexts[i].conn == conn && strcmp(contexts[i].path, path) == 0)
return &contexts[i];
return nil;
}
static Ictx*
newcontext(DBusConnection *conn, const char *path)
{
int i;
for(i = 0; i < nelem(contexts); i++)
if(contexts[i].conn == nil){
memset(&contexts[i], 0, sizeof contexts[i]);
contexts[i].conn = conn;
strncpy(contexts[i].path, path, sizeof contexts[i].path);
contexts[i].path[sizeof contexts[i].path-1] = '\0';
return &contexts[i];
}
return nil;
}
static int
clientpreedit(Ictx *ctx)
{
return (ctx->cap & Ibuscappreedit) != 0;
}
static void
sendrequest(Ictx *ctx, int op, u32int ks, u32int mod, Keyres *res)
{
Keyreq kr;
memset(&kr, 0, sizeof kr);
kr.owner = ctx;
kr.clientpre = clientpreedit(ctx);
kr.op = op;
kr.ks = ks;
kr.mod = mod;
kr.caret = ctx->caret;
kr.reply = replyc;
chansend(keyc, &kr);
chanrecv(replyc, res);
}
static int
hidden(Ictx *ctx)
{
return ctx->purpose == Purposepassword ||
ctx->purpose == Purposepin;
}
static void
setcursor(Ictx *ctx, int x, int y, int h)
{
Keyres res;
ctx->caret.valid = 1;
ctx->caret.x = x;
ctx->caret.y = y;
ctx->caret.h = h;
if(ctx->focused)
sendrequest(ctx, Keycaret, 0, 0, &res);
}
/* Every IBus serializable carries an (empty) attachment dictionary. */
static void
emptydict(DBusMessageIter *it)
{
DBusMessageIter d;
dbus_message_iter_open_container(it, DBUS_TYPE_ARRAY, "{sv}", &d);
dbus_message_iter_close_container(it, &d);
}
/* IBusText: (sa{sv}sv) holding an IBusAttrList of IBusAttributes. */
static void
appendibustext(DBusMessageIter *it, const char *s, int underline)
{
DBusMessageIter v, st, alv, ali, alist, av, ai;
const char *name = "IBusText";
const char *aname = "IBusAttrList";
const char *iname = "IBusAttribute";
dbus_uint32_t type, value, start, end;
dbus_message_iter_open_container(it, DBUS_TYPE_VARIANT, "(sa{sv}sv)", &v);
dbus_message_iter_open_container(&v, DBUS_TYPE_STRUCT, nil, &st);
dbus_message_iter_append_basic(&st, DBUS_TYPE_STRING, &name);
emptydict(&st);
dbus_message_iter_append_basic(&st, DBUS_TYPE_STRING, &s);
dbus_message_iter_open_container(&st, DBUS_TYPE_VARIANT, "(sa{sv}av)", &alv);
dbus_message_iter_open_container(&alv, DBUS_TYPE_STRUCT, nil, &ali);
dbus_message_iter_append_basic(&ali, DBUS_TYPE_STRING, &aname);
emptydict(&ali);
dbus_message_iter_open_container(&ali, DBUS_TYPE_ARRAY, "v", &alist);
if(underline && s[0] != '\0'){
type = Ibusattrunderline;
value = Ibusunderlinesingle;
start = 0;
end = utflen((char*)s);
dbus_message_iter_open_container(&alist, DBUS_TYPE_VARIANT,
"(sa{sv}uuuu)", &av);
dbus_message_iter_open_container(&av, DBUS_TYPE_STRUCT, nil, &ai);
dbus_message_iter_append_basic(&ai, DBUS_TYPE_STRING, &iname);
emptydict(&ai);
dbus_message_iter_append_basic(&ai, DBUS_TYPE_UINT32, &type);
dbus_message_iter_append_basic(&ai, DBUS_TYPE_UINT32, &value);
dbus_message_iter_append_basic(&ai, DBUS_TYPE_UINT32, &start);
dbus_message_iter_append_basic(&ai, DBUS_TYPE_UINT32, &end);
dbus_message_iter_close_container(&av, &ai);
dbus_message_iter_close_container(&alist, &av);
}
dbus_message_iter_close_container(&ali, &alist);
dbus_message_iter_close_container(&alv, &ali);
dbus_message_iter_close_container(&st, &alv);
dbus_message_iter_close_container(&v, &st);
dbus_message_iter_close_container(it, &v);
}
static DBusMessage*
newsignal(const char *path, const char *name)
{
DBusMessage *sig;
sig = dbus_message_new_signal(path, "org.freedesktop.IBus.InputContext",
name);
if(sig == nil)
die("ibus: out of memory");
dbus_message_set_sender(sig, ibusowner);
return sig;
}
static int
postpush(Ictx *ctx, char type, const char *text, const char *pos)
{
Post *p;
if(!ctx->postprocess || !ctx->keying)
return 0;
if(ctx->npost < Maxpost){
p = &ctx->post[ctx->npost++];
p->type = type;
strcpy(p->text, text);
strcpy(p->pos, pos);
}
return 1;
}
static void
emitcommit(Ictx *ctx, const char *text)
{
DBusMessage *sig;
DBusMessageIter it;
if(postpush(ctx, 'c', text, ""))
return;
sig = newsignal(ctx->path, "CommitText");
dbus_message_iter_init_append(sig, &it);
appendibustext(&it, text, 0);
dbus_connection_send(ctx->conn, sig, nil);
dbus_message_unref(sig);
}
/* preowner is the one context showing a preedit; clearing anyone else's is moot. */
static void
emitpreedit(Ictx *ctx, const char *text)
{
DBusMessage *sig;
DBusMessageIter it;
dbus_uint32_t cursor, mode;
dbus_bool_t visible;
char pos[32];
if(text[0] == '\0' && preowner != ctx)
return;
cursor = utflen((char*)text);
visible = text[0] != '\0' ? TRUE : FALSE;
mode = Ibuspreeditclear;
if(ctx->clientcommitpreedit)
snprintf(pos, sizeof pos, "%u,%u,%u", cursor, visible, mode);
else
snprintf(pos, sizeof pos, "%u,%u", cursor, visible);
if(!postpush(ctx, ctx->clientcommitpreedit ? 'm' : 'u', text, pos)){
sig = newsignal(ctx->path, ctx->clientcommitpreedit ?
"UpdatePreeditTextWithMode" : "UpdatePreeditText");
dbus_message_iter_init_append(sig, &it);
appendibustext(&it, text, 1);
dbus_message_iter_append_basic(&it, DBUS_TYPE_UINT32, &cursor);
dbus_message_iter_append_basic(&it, DBUS_TYPE_BOOLEAN, &visible);
if(ctx->clientcommitpreedit)
dbus_message_iter_append_basic(&it, DBUS_TYPE_UINT32, &mode);
dbus_connection_send(ctx->conn, sig, nil);
dbus_message_unref(sig);
}
if(text[0] != '\0')
preowner = ctx;
else if(preowner == ctx)
preowner = nil;
}
/* Another frontend may have taken the engine; then our preedit is stale. */
static void
checkpreowner(void)
{
Ictx *ctx;
Keyres res;
ctx = preowner;
if(ctx == nil)
return;
sendrequest(ctx, Keycap, 0, 0, &res);
if(!res.eaten)
emitpreedit(ctx, "");
}
/* A reset or a lost focus hands the pending text back as committed text. */
static void
flushcontext(Ictx *ctx, int op)
{
Keyres res;
char commit[Maxutf];
sendrequest(ctx, op, 0, 0, &res);
if(clientpreedit(ctx))
emitpreedit(ctx, "");
stoutf(&res.commit, commit, sizeof commit);
if(commit[0] != '\0')
emitcommit(ctx, commit);
}
/* Nobody is left to hand text to: the context or its connection is gone. */
static void
releasecontext(Ictx *ctx)
{
Keyres res;
if(ctx->focused)
sendrequest(ctx, Keyrelease, 0, 0, &res);
ctx->focused = 0;
memset(&ctx->caret, 0, sizeof ctx->caret);
}
static void
dropcontext(Ictx *ctx)
{
releasecontext(ctx);
composedrop(Composeibus, ctx);
if(preowner == ctx)
preowner = nil;
memset(ctx, 0, sizeof *ctx);
}
static void
dropconncontexts(DBusConnection *conn)
{
int i;
for(i = 0; i < nelem(contexts); i++)
if(contexts[i].conn == conn)
dropcontext(&contexts[i]);
}
/*
* A key is proof of focus: some clients never send FocusIn, and the
* focus events of two applications can cross.
*/
static int
processkey(Ictx *ctx, u32int sym, u32int state, char *text, int n, Keyres *res)
{
text[0] = '\0';
if(state & Relmask || hidden(ctx))
return 0;
ctx->focused = 1;
/* An IBus client drops a dead key we do not take: compose it here. */
if(composekey(Composeibus, ctx, sym, text, n))
return -1;
if(text[0] != '\0')
/* Composed text follows whatever was pending. */
sendrequest(ctx, Keyreset, 0, 0, res);
else
sendrequest(ctx, Keypress, ipckeysym(sym, xkb_keysym_to_utf32(sym)),
ipcmod(state), res);
if(preowner != nil && preowner != ctx)
checkpreowner();
return 1;
}
static DBusHandlerResult
handleerror(DBusConnection *c, DBusMessage *m, const char *name,
const char *text)
{
DBusMessage *r;
r = dbus_message_new_error(m, name, text);
if(r == nil)
die("ibus: out of memory");
dbus_connection_send(c, r, nil);
dbus_message_unref(r);
return DBUS_HANDLER_RESULT_HANDLED;
}
/* Replies with one argument of the given D-Bus type, or none. */
static DBusHandlerResult
reply(DBusConnection *c, DBusMessage *m, int type, void *v)
{
DBusMessage *r;
r = dbus_message_new_method_return(m);
if(r == nil)
die("ibus: out of memory");
if(type != DBUS_TYPE_INVALID)
dbus_message_append_args(r, type, v, DBUS_TYPE_INVALID);
dbus_connection_send(c, r, nil);
dbus_message_unref(r);
return DBUS_HANDLER_RESULT_HANDLED;
}
static DBusHandlerResult
replybool(DBusConnection *c, DBusMessage *m, int value)
{
dbus_bool_t b;
b = value ? TRUE : FALSE;
return reply(c, m, DBUS_TYPE_BOOLEAN, &b);
}
/* We are the bus as well as the engine: Hello names the caller. */
static DBusHandlerResult
handlehello(DBusConnection *c, DBusMessage *m)
{
char name[32];
const char *np;
if(!dbus_message_has_signature(m, ""))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"Hello expects no arguments");
busctr++;
snprintf(name, sizeof(name), ":1.%d", busctr);
np = name;
return reply(c, m, DBUS_TYPE_STRING, &np);
}
static DBusHandlerResult
handlenameowner(DBusConnection *c, DBusMessage *m)
{
const char *name, *owner;
if(!dbus_message_get_args(m, nil, DBUS_TYPE_STRING, &name,
DBUS_TYPE_INVALID))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"GetNameOwner expects one bus name");
if(strcmp(name, "org.freedesktop.IBus") != 0)
return handleerror(c, m, DBUS_ERROR_NAME_HAS_NO_OWNER,
"bus name has no owner");
owner = ibusowner;
return reply(c, m, DBUS_TYPE_STRING, &owner);
}
static DBusHandlerResult
handlecreate(DBusConnection *c, DBusMessage *m)
{
char path[64];
const char *pp;
Ictx *ctx;
if(!dbus_message_has_signature(m, "s"))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"CreateInputContext expects one client name");
icctr++;
snprintf(path, sizeof(path),
"/org/freedesktop/IBus/InputContext_%d", icctr);
ctx = newcontext(c, path);
if(ctx == nil)
return handleerror(c, m, DBUS_ERROR_LIMITS_EXCEEDED,
"too many input contexts");
pp = path;
return reply(c, m, DBUS_TYPE_OBJECT_PATH, &pp);
}
static DBusHandlerResult
handlekey(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
dbus_uint32_t sym, code, state;
Keyres res;
char commit[Maxutf], preedit[Maxutf], text[Maxutf];
int restart, rv;
dbus_message_get_args(m, nil, DBUS_TYPE_UINT32, &sym,
DBUS_TYPE_UINT32, &code, DBUS_TYPE_UINT32, &state,
DBUS_TYPE_INVALID);
rv = processkey(ctx, sym, state, text, sizeof text, &res);
if(rv <= 0) /* below zero: a sequence in the making */
return replybool(c, m, rv < 0);
stoutf(&res.commit, commit, sizeof commit);
stoutf(&res.preedit, preedit, sizeof preedit);
/* A commit ends the preedit around it, so clients place it right. */
restart = clientpreedit(ctx) && commit[0] != '\0' && preowner == ctx;
ctx->keying = 1;
if(restart)
emitpreedit(ctx, "");
if(commit[0] != '\0')
emitcommit(ctx, commit);
if(text[0] != '\0')
emitcommit(ctx, text);
if(clientpreedit(ctx) && (!restart || preedit[0] != '\0'))
emitpreedit(ctx, preedit);
ctx->keying = 0;
return replybool(c, m, res.eaten || text[0] != '\0');
}
/* Properties.Get PostProcessKeyEvent: what the last key produced. */
static DBusHandlerResult
handlepost(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
DBusMessage *r;
DBusMessageIter it, v, a, st;
Post *p;
int i;
r = dbus_message_new_method_return(m);
if(r == nil)
die("ibus: out of memory");
dbus_message_iter_init_append(r, &it);
dbus_message_iter_open_container(&it, DBUS_TYPE_VARIANT, "a(yv)", &v);
dbus_message_iter_open_container(&v, DBUS_TYPE_ARRAY, "(yv)", &a);
for(i = 0; i < ctx->npost; i++){
p = &ctx->post[i];
dbus_message_iter_open_container(&a, DBUS_TYPE_STRUCT, nil, &st);
dbus_message_iter_append_basic(&st, DBUS_TYPE_BYTE, &p->type);
appendibustext(&st, p->text, p->type != 'c');
dbus_message_iter_close_container(&a, &st);
if(p->type == 'c')
continue;
dbus_message_iter_open_container(&a, DBUS_TYPE_STRUCT, nil, &st);
dbus_message_iter_append_basic(&st, DBUS_TYPE_BYTE, &p->type);
appendibustext(&st, p->pos, 0);
dbus_message_iter_close_container(&a, &st);
}
dbus_message_iter_close_container(&v, &a);
dbus_message_iter_close_container(&it, &v);
dbus_connection_send(c, r, nil);
dbus_message_unref(r);
ctx->npost = 0;
return DBUS_HANDLER_RESULT_HANDLED;
}
static DBusHandlerResult
handlereset(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
flushcontext(ctx, Keyreset);
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
static DBusHandlerResult
handlefocusin(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
ctx->focused = 1;
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
static DBusHandlerResult
handlefocusout(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
if(ctx->focused)
flushcontext(ctx, Keyrelease);
ctx->focused = 0;
memset(&ctx->caret, 0, sizeof ctx->caret);
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
static DBusHandlerResult
handlecap(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
dbus_uint32_t cap;
Keyres res;
char preedit[Maxutf];
u32int old;
dbus_message_get_args(m, nil, DBUS_TYPE_UINT32, &cap, DBUS_TYPE_INVALID);
old = ctx->cap;
ctx->cap = cap;
if(ctx->focused){
sendrequest(ctx, Keycap, 0, 0, &res);
if((old & Ibuscappreedit) != (ctx->cap & Ibuscappreedit)){
if((ctx->cap & Ibuscappreedit) && res.eaten){
stoutf(&res.preedit, preedit, sizeof preedit);
emitpreedit(ctx, preedit);
}else if(!(ctx->cap & Ibuscappreedit))
emitpreedit(ctx, "");
}
}
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
static int
getproperty(DBusMessage *m, const char **iface, const char **name,
DBusMessageIter *value)
{
DBusMessageIter it;
if(!dbus_message_has_signature(m, "ssv") ||
!dbus_message_iter_init(m, &it))
return 0;
dbus_message_iter_get_basic(&it, iface);
dbus_message_iter_next(&it);
dbus_message_iter_get_basic(&it, name);
dbus_message_iter_next(&it);
dbus_message_iter_recurse(&it, value);
return 1;
}
/* ContentType is (purpose, hints); only the purpose matters to us. */
static int
getcontent(DBusMessageIter *value, u32int *purpose)
{
DBusMessageIter st;
dbus_uint32_t p;
if(dbus_message_iter_get_arg_type(value) != DBUS_TYPE_STRUCT)
return 0;
dbus_message_iter_recurse(value, &st);
if(dbus_message_iter_get_arg_type(&st) != DBUS_TYPE_UINT32)
return 0;
dbus_message_iter_get_basic(&st, &p);
if(!dbus_message_iter_next(&st) ||
dbus_message_iter_get_arg_type(&st) != DBUS_TYPE_UINT32)
return 0;
if(dbus_message_iter_next(&st))
return 0;
*purpose = p;
return 1;
}
/* ContentType, ClientCommitPreedit, and EffectivePostProcessKeyEvent are settable. */
static DBusHandlerResult
handlepropertyset(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
const char *iface, *name;
DBusMessageIter value, st;
dbus_bool_t b;
u32int purpose;
int washidden;
if(!getproperty(m, &iface, &name, &value))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"Properties.Set expects interface, property, and value");
if(strcmp(iface, "org.freedesktop.IBus.InputContext") != 0)
return handleerror(c, m, DBUS_ERROR_UNKNOWN_INTERFACE,
"unknown property interface");
if(strcmp(name, "ContentType") == 0){
if(!getcontent(&value, &purpose))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"ContentType expects (uu)");
washidden = hidden(ctx);
ctx->purpose = purpose;
if(ctx->focused && !washidden && hidden(ctx))
flushcontext(ctx, Keyreset);
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
if(strcmp(name, "ClientCommitPreedit") == 0 ||
strcmp(name, "EffectivePostProcessKeyEvent") == 0){
if(dbus_message_iter_get_arg_type(&value) != DBUS_TYPE_STRUCT)
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"the property expects (b)");
dbus_message_iter_recurse(&value, &st);
if(dbus_message_iter_get_arg_type(&st) != DBUS_TYPE_BOOLEAN)
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"the property expects (b)");
dbus_message_iter_get_basic(&st, &b);
if(dbus_message_iter_next(&st))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"the property expects (b)");
if(name[0] == 'C')
ctx->clientcommitpreedit = b != FALSE;
else
ctx->postprocess = b != FALSE;
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
return handleerror(c, m, DBUS_ERROR_UNKNOWN_PROPERTY,
"unknown input context property");
}
static DBusHandlerResult
handlepropertygetall(DBusConnection *c, DBusMessage *m)
{
DBusMessage *r;
DBusMessageIter it;
const char *iface;
if(!dbus_message_get_args(m, nil, DBUS_TYPE_STRING, &iface,
DBUS_TYPE_INVALID))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"Properties.GetAll expects an interface name");
if(strcmp(iface, "org.freedesktop.IBus.InputContext") != 0)
return handleerror(c, m, DBUS_ERROR_UNKNOWN_INTERFACE,
"unknown property interface");
r = dbus_message_new_method_return(m);
if(r == nil)
die("ibus: out of memory");
dbus_message_iter_init_append(r, &it);
emptydict(&it);
dbus_connection_send(c, r, nil);
dbus_message_unref(r);
return DBUS_HANDLER_RESULT_HANDLED;
}
static DBusHandlerResult
handledestroy(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
dropcontext(ctx);
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
static DBusHandlerResult
handlecursor(DBusConnection *c, DBusMessage *m, Ictx *ctx)
{
dbus_int32_t x, y, w, h;
dbus_message_get_args(m, nil, DBUS_TYPE_INT32, &x, DBUS_TYPE_INT32, &y,
DBUS_TYPE_INT32, &w, DBUS_TYPE_INT32, &h, DBUS_TYPE_INVALID);
setcursor(ctx, x, y, h);
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
/*
* Accepted and thrown away: there is one engine, so any name is fine,
* and a relative cursor location is surface local, not a caret.
*/
static DBusHandlerResult
handleok(DBusConnection *c, DBusMessage *m, Ictx*)
{
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
/* The InputContext interface: member, argument signature, handler. */
static struct {
char *member;
char *sig;
DBusHandlerResult (*fn)(DBusConnection*, DBusMessage*, Ictx*);
} ictab[] = {
{"ProcessKeyEvent", "uuu", handlekey},
{"FocusIn", "", handlefocusin},
{"FocusOut", "", handlefocusout},
{"Reset", "", handlereset},
{"Destroy", "", handledestroy},
{"SetCursorLocation", "iiii", handlecursor},
{"SetCursorLocationRelative", "iiii", handleok},
{"SetCapabilities", "u", handlecap},
{"SetEngine", "s", handleok},
};
/*
* One handler for everything a client sends: the tiny slice of the bus
* that libibus needs, then the InputContext interface. Unhandled calls
* get libdbus's UnknownMethod error.
*/
static DBusHandlerResult
onmsg(DBusConnection *c, DBusMessage *m, void*)
{
const char *iface, *member, *path;
Ictx *ctx;
int i;
if(dbus_message_get_type(m) != DBUS_MESSAGE_TYPE_METHOD_CALL)
return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
iface = dbus_message_get_interface(m);
member = dbus_message_get_member(m);
path = dbus_message_get_path(m);
if(iface == nil || member == nil || path == nil)
return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
if(strcmp(iface, "org.freedesktop.DBus") == 0){
if(strcmp(member, "Hello") == 0)
return handlehello(c, m);
if(strcmp(member, "GetNameOwner") == 0)
return handlenameowner(c, m);
if(strcmp(member, "AddMatch") == 0
|| strcmp(member, "RemoveMatch") == 0){
if(!dbus_message_has_signature(m, "s"))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"match rule must be one string");
return reply(c, m, DBUS_TYPE_INVALID, nil);
}
}
if(strcmp(iface, "org.freedesktop.IBus") == 0){
if(strcmp(member, "CreateInputContext") == 0)
return handlecreate(c, m);
}
if(strcmp(iface, "org.freedesktop.DBus.Properties") == 0){
ctx = findcontext(c, path);
if(ctx == nil)
return handleerror(c, m, DBUS_ERROR_UNKNOWN_OBJECT,
"unknown input context");
if(strcmp(member, "Set") == 0)
return handlepropertyset(c, m, ctx);
if(strcmp(member, "Get") == 0){
if(dbus_message_get_args(m, nil, DBUS_TYPE_STRING, &iface,
DBUS_TYPE_STRING, &member, DBUS_TYPE_INVALID) &&
strcmp(member, "PostProcessKeyEvent") == 0)
return handlepost(c, m, ctx);
return handleerror(c, m, DBUS_ERROR_UNKNOWN_PROPERTY,
"unknown input context property");
}
if(strcmp(member, "GetAll") == 0)
return handlepropertygetall(c, m);
}
/* libibus destroys a context through its Service base interface. */
if(strcmp(iface, "org.freedesktop.IBus.Service") == 0 &&
strcmp(member, "Destroy") == 0)
iface = "org.freedesktop.IBus.InputContext";
if(strcmp(iface, "org.freedesktop.IBus.InputContext") == 0){
ctx = findcontext(c, path);
if(ctx == nil)
return handleerror(c, m, DBUS_ERROR_UNKNOWN_OBJECT,
"unknown input context");
for(i = 0; i < nelem(ictab); i++){
if(strcmp(member, ictab[i].member) != 0)
continue;
if(!dbus_message_has_signature(m, ictab[i].sig))
return handleerror(c, m, DBUS_ERROR_INVALID_ARGS,
"bad arguments");
return ictab[i].fn(c, m, ctx);
}
}
return DBUS_HANDLER_RESULT_NOT_YET_HANDLED;
}
static void
newconn(DBusServer*, DBusConnection *c, void*)
{
DBusObjectPathVTable vt;
if(nconns >= Maxclients){
fprint(2, "strans: ibus: rejecting client: %d-connection limit reached\n",
Maxclients);
dbus_connection_close(c);
return;
}
if(!dbus_connection_set_watch_functions(c, addwatch, removewatch,
nil, nil, nil)){
fprint(2, "strans: ibus: cannot watch client connection\n");
dbus_connection_close(c);
return;
}
memset(&vt, 0, sizeof(vt));
vt.message_function = onmsg;
if(!dbus_connection_register_fallback(c, "/", &vt, nil)){
fprint(2, "strans: ibus: cannot register client handler\n");
dbus_connection_set_watch_functions(c, nil, nil, nil, nil, nil);
dbus_connection_close(c);
return;
}
dbus_connection_ref(c);
conns[nconns++] = c;
}
static void
pruneconns(void)
{
int i, j;
j = 0;
for(i = 0; i < nconns; i++){
if(dbus_connection_get_is_connected(conns[i])){
conns[j++] = conns[i];
continue;
}
dropconncontexts(conns[i]);
dbus_connection_unref(conns[i]);
}
nconns = j;
}
static void
ibusinit(void)
{
DBusError err;
char addr[64], *full;
if(buildaddrpath(addrfile, sizeof addrfile) < 0)
die("ibus: cannot build address path");
snprintf(addr, sizeof addr, "unix:abstract=strans-%d", (int)getpid());
dbus_error_init(&err);
srv = dbus_server_listen(addr, &err);
if(srv == nil)
die("ibus: listen: %s", err.message);
dbus_server_set_new_connection_function(srv, newconn, nil, nil);
if(!dbus_server_set_watch_functions(srv, addwatch, removewatch,
nil, nil, nil))
die("ibus: cannot watch server");
full = dbus_server_get_address(srv);
if(full == nil)
die("ibus: cannot get server address");
atexit(unlinkaddr);
threadnotify(addrnote, 1);
if(writeaddr(addrfile, full) < 0)
die("ibus: cannot write %s", addrfile);
dbus_free(full);
}
void
ibusthread(void*)
{
struct pollfd pfds[Maxwatches];
DBusWatch *polled[Maxwatches];
int wi[Maxwatches];
int i, n, rv;
unsigned int f;
threadsetname("ibus");
ibusinit();
replyc = chancreate(sizeof(Keyres), 0);
for(;;){
if(!dbus_server_get_is_connected(srv))
die("ibus: server disconnected");
n = 0;
for(i = 0; i < nwatches && n < Maxwatches; i++){
if(watches[i] == nil)
continue;
if(!dbus_watch_get_enabled(watches[i]))
continue;
pfds[n].fd = dbus_watch_get_unix_fd(watches[i]);
pfds[n].events = 0;
f = dbus_watch_get_flags(watches[i]);
if(f & DBUS_WATCH_READABLE) pfds[n].events |= POLLIN;
if(f & DBUS_WATCH_WRITABLE) pfds[n].events |= POLLOUT;
wi[n] = i;
polled[n] = watches[i];
n++;
}
rv = poll(pfds, n, preowner != nil ? Ownerpoll : -1);
if(rv < 0 && errno == EINTR)
continue;
if(rv < 0)
die("ibus: poll: %r");
for(i = 0; i < n; i++){
if(pfds[i].revents == 0)
continue;
if(watches[wi[i]] != polled[i])
continue;
f = 0;
if(pfds[i].revents & POLLIN) f |= DBUS_WATCH_READABLE;
if(pfds[i].revents & POLLOUT) f |= DBUS_WATCH_WRITABLE;
if(pfds[i].revents & POLLHUP) f |= DBUS_WATCH_HANGUP;
if(pfds[i].revents & POLLERR) f |= DBUS_WATCH_ERROR;
dbus_watch_handle(polled[i], f);
}
for(i = 0; i < nconns; i++)
while(dbus_connection_dispatch(conns[i]) == DBUS_DISPATCH_DATA_REMAINS)
;
pruneconns();
checkpreowner();
}
}