};
typedef struct pending_reply {
- unsigned int first_request;
- unsigned int last_request;
+ uint64_t first_request;
+ uint64_t last_request;
enum workarounds workaround;
int flags;
struct pending_reply *next;
/* Compute 32-bit sequence number of this packet. */
if((genrep.response_type & 0x7f) != XCB_KEYMAP_NOTIFY)
{
- unsigned int lastread = c->in.request_read;
- c->in.request_read = (lastread & 0xffff0000) | genrep.sequence;
+ uint64_t lastread = c->in.request_read;
+ c->in.request_read = (lastread & UINT64_C(0xffffffffffff0000)) | genrep.sequence;
if(XCB_SEQUENCE_COMPARE(c->in.request_read, <, lastread))
c->in.request_read += 0x10000;
if(XCB_SEQUENCE_COMPARE(c->in.request_read, >, c->in.request_expected))
c->in.current_reply_tail = &cur->next;
for(reader = c->in.readers;
reader &&
- XCB_SEQUENCE_COMPARE(reader->request, <=, c->in.request_read);
+ XCB_SEQUENCE_COMPARE_32(reader->request, <=, c->in.request_read);
reader = reader->next)
{
- if(reader->request == c->in.request_read)
+ if(XCB_SEQUENCE_COMPARE_32(reader->request, ==, c->in.request_read))
{
pthread_cond_signal(reader->data);
break;
head = 0;
/* We've read requests past the one we want, so if it has replies we have
* them all and they're in the replies map. */
- else if(XCB_SEQUENCE_COMPARE(request, <, c->in.request_read))
+ else if(XCB_SEQUENCE_COMPARE_32(request, <, c->in.request_read))
{
head = _xcb_map_remove(c->in.replies, request);
if(head && head->next)
}
/* We're currently processing the responses to the request we want, and we
* have a reply ready to return. So just return it without blocking. */
- else if(request == c->in.request_read && c->in.current_reply)
+ else if(XCB_SEQUENCE_COMPARE_32(request, ==, c->in.request_read) && c->in.current_reply)
{
head = c->in.current_reply;
c->in.current_reply = head->next;
}
/* We know this request can't have any more replies, and we've already
* established it doesn't have a reply now. Don't bother blocking. */
- else if(request == c->in.request_completed)
+ else if(XCB_SEQUENCE_COMPARE_32(request, ==, c->in.request_completed))
head = 0;
/* We may have more replies on the way for this request: block until we're
* sure. */
void *xcb_wait_for_reply(xcb_connection_t *c, unsigned int request, xcb_generic_error_t **e)
{
+ uint64_t widened_request;
void *ret = 0;
if(e)
*e = 0;
pthread_mutex_lock(&c->iolock);
+ widened_request = (c->out.request & UINT64_C(0xffffffff00000000)) | request;
+ if(widened_request > c->out.request)
+ widened_request -= UINT64_C(1) << 32;
+
/* If this request has not been written yet, write it. */
- if(_xcb_out_flush_to(c, request))
+ if(_xcb_out_flush_to(c, widened_request))
{
pthread_cond_t cond = PTHREAD_COND_INITIALIZER;
reader_list reader;
for(prev_reader = &c->in.readers;
*prev_reader &&
- XCB_SEQUENCE_COMPARE ((*prev_reader)->request, <=, request);
+ XCB_SEQUENCE_COMPARE_32((*prev_reader)->request, <=, request);
prev_reader = &(*prev_reader)->next)
{
/* empty */;
for(prev_reader = &c->in.readers;
*prev_reader &&
- XCB_SEQUENCE_COMPARE((*prev_reader)->request, <=, request);
+ XCB_SEQUENCE_COMPARE_32((*prev_reader)->request, <=, request);
prev_reader = &(*prev_reader)->next)
{
if(*prev_reader == &reader)
void *reply;
if(c->has_error)
return 0;
- if(XCB_SEQUENCE_COMPARE(cookie.sequence,>,c->in.request_expected)
- && XCB_SEQUENCE_COMPARE(cookie.sequence,>,c->in.request_completed))
+ if(XCB_SEQUENCE_COMPARE_32(cookie.sequence,>,c->in.request_expected)
+ && XCB_SEQUENCE_COMPARE_32(cookie.sequence,>,c->in.request_completed))
{
free(xcb_get_input_focus_reply(c, xcb_get_input_focus(c), &ret));
assert(!ret);
}
}
-int _xcb_in_expect_reply(xcb_connection_t *c, unsigned int request, enum workarounds workaround, int flags)
+int _xcb_in_expect_reply(xcb_connection_t *c, uint64_t request, enum workarounds workaround, int flags)
{
pending_reply *pend = malloc(sizeof(pending_reply));
assert(workaround != WORKAROUND_NONE || flags != 0);
#define XCB_PAD(i) (-(i) & 3)
-#define XCB_SEQUENCE_COMPARE(a,op,b) ((int) ((a) - (b)) op 0)
+#define XCB_SEQUENCE_COMPARE(a,op,b) ((int64_t) ((a) - (b)) op 0)
+#define XCB_SEQUENCE_COMPARE_32(a,op,b) (((int) (a) - (int) (b)) op 0)
/* xcb_list.c */
char queue[XCB_QUEUE_BUFFER_SIZE];
int queue_len;
- unsigned int request;
- unsigned int request_written;
+ uint64_t request;
+ uint64_t request_written;
pthread_mutex_t reqlenlock;
enum lazy_reply_tag maximum_request_length_tag;
void _xcb_out_destroy(_xcb_out *out);
int _xcb_out_send(xcb_connection_t *c, struct iovec **vector, int *count);
-int _xcb_out_flush_to(xcb_connection_t *c, unsigned int request);
+int _xcb_out_flush_to(xcb_connection_t *c, uint64_t request);
/* xcb_in.c */
char queue[4096];
int queue_len;
- unsigned int request_expected;
- unsigned int request_read;
- unsigned int request_completed;
+ uint64_t request_expected;
+ uint64_t request_read;
+ uint64_t request_completed;
struct reply_list *current_reply;
struct reply_list **current_reply_tail;
int _xcb_in_init(_xcb_in *in);
void _xcb_in_destroy(_xcb_in *in);
-int _xcb_in_expect_reply(xcb_connection_t *c, unsigned int request, enum workarounds workaround, int flags);
+int _xcb_in_expect_reply(xcb_connection_t *c, uint64_t request, enum workarounds workaround, int flags);
int _xcb_in_read(xcb_connection_t *c);
int _xcb_in_read_block(xcb_connection_t *c, void *buf, int nread);