emsApplication/3rdPartner/libhv/event/kqueue.c

175 lines
5.2 KiB
C

#include "iowatcher.h"
#ifdef EVENT_KQUEUE
#include "hplatform.h"
#include "hdef.h"
#include <sys/event.h>
#include "hevent.h"
#define EVENTS_INIT_SIZE 64
#define READ_INDEX 0
#define WRITE_INDEX 1
#define EVENT_INDEX(type) ((type == EVFILT_READ) ? READ_INDEX : WRITE_INDEX)
typedef struct kqueue_ctx_s {
int kqfd;
int capacity;
int nchanges;
struct kevent* changes;
//int nevents; // nevents == nchanges
struct kevent* events;
} kqueue_ctx_t;
static void kqueue_ctx_resize(kqueue_ctx_t* kqueue_ctx, int size) {
int bytes = sizeof(struct kevent) * size;
int oldbytes = sizeof(struct kevent) * kqueue_ctx->capacity;
kqueue_ctx->changes = (struct kevent*)hv_realloc(kqueue_ctx->changes, bytes, oldbytes);
kqueue_ctx->events = (struct kevent*)hv_realloc(kqueue_ctx->events, bytes, oldbytes);
kqueue_ctx->capacity = size;
}
int iowatcher_init(hloop_t* loop) {
if (loop->iowatcher) return 0;
kqueue_ctx_t* kqueue_ctx;
HV_ALLOC_SIZEOF(kqueue_ctx);
kqueue_ctx->kqfd = kqueue();
kqueue_ctx->capacity = EVENTS_INIT_SIZE;
kqueue_ctx->nchanges = 0;
int bytes = sizeof(struct kevent) * kqueue_ctx->capacity;
HV_ALLOC(kqueue_ctx->changes, bytes);
HV_ALLOC(kqueue_ctx->events, bytes);
loop->iowatcher = kqueue_ctx;
return 0;
}
int iowatcher_cleanup(hloop_t* loop) {
if (loop->iowatcher == NULL) return 0;
kqueue_ctx_t* kqueue_ctx = (kqueue_ctx_t*)loop->iowatcher;
close(kqueue_ctx->kqfd);
HV_FREE(kqueue_ctx->changes);
HV_FREE(kqueue_ctx->events);
HV_FREE(loop->iowatcher);
return 0;
}
static int __add_event(hloop_t* loop, int fd, int event) {
if (loop->iowatcher == NULL) {
iowatcher_init(loop);
}
kqueue_ctx_t* kqueue_ctx = (kqueue_ctx_t*)loop->iowatcher;
hio_t* io = loop->ios.ptr[fd];
int idx = io->event_index[EVENT_INDEX(event)];
if (idx < 0) {
io->event_index[EVENT_INDEX(event)] = idx = kqueue_ctx->nchanges;
kqueue_ctx->nchanges++;
if (idx == kqueue_ctx->capacity) {
kqueue_ctx_resize(kqueue_ctx, kqueue_ctx->capacity*2);
}
memset(kqueue_ctx->changes+idx, 0, sizeof(struct kevent));
kqueue_ctx->changes[idx].ident = fd;
}
assert(kqueue_ctx->changes[idx].ident == fd);
kqueue_ctx->changes[idx].filter = event;
kqueue_ctx->changes[idx].flags = EV_ADD|EV_ENABLE;
struct timespec ts;
ts.tv_sec = 0;
ts.tv_nsec = 0;
kevent(kqueue_ctx->kqfd, kqueue_ctx->changes, kqueue_ctx->nchanges, NULL, 0, &ts);
return 0;
}
int iowatcher_add_event(hloop_t* loop, int fd, int events) {
if (events & HV_READ) {
__add_event(loop, fd, EVFILT_READ);
}
if (events & HV_WRITE) {
__add_event(loop, fd, EVFILT_WRITE);
}
return 0;
}
static int __del_event(hloop_t* loop, int fd, int event) {
kqueue_ctx_t* kqueue_ctx = (kqueue_ctx_t*)loop->iowatcher;
if (kqueue_ctx == NULL) return 0;
hio_t* io = loop->ios.ptr[fd];
int idx = io->event_index[EVENT_INDEX(event)];
if (idx < 0) return 0;
assert(kqueue_ctx->changes[idx].ident == fd);
kqueue_ctx->changes[idx].flags = EV_DELETE;
io->event_index[EVENT_INDEX(event)] = -1;
int lastidx = kqueue_ctx->nchanges - 1;
if (idx < lastidx) {
// swap
struct kevent tmp;
tmp = kqueue_ctx->changes[idx];
kqueue_ctx->changes[idx] = kqueue_ctx->changes[lastidx];
kqueue_ctx->changes[lastidx] = tmp;
hio_t* last = loop->ios.ptr[kqueue_ctx->changes[idx].ident];
if (last) {
last->event_index[EVENT_INDEX(kqueue_ctx->changes[idx].filter)] = idx;
}
}
struct timespec ts;
ts.tv_sec = 0;
ts.tv_nsec = 0;
kevent(kqueue_ctx->kqfd, kqueue_ctx->changes, kqueue_ctx->nchanges, NULL, 0, &ts);
kqueue_ctx->nchanges--;
return 0;
}
int iowatcher_del_event(hloop_t* loop, int fd, int events) {
if (events & HV_READ) {
__del_event(loop, fd, EVFILT_READ);
}
if (events & HV_WRITE) {
__del_event(loop, fd, EVFILT_WRITE);
}
return 0;
}
int iowatcher_poll_events(hloop_t* loop, int timeout) {
kqueue_ctx_t* kqueue_ctx = (kqueue_ctx_t*)loop->iowatcher;
if (kqueue_ctx == NULL) return 0;
if (kqueue_ctx->nchanges == 0) return 0;
struct timespec ts, *tp;
if (timeout == INFINITE) {
tp = NULL;
}
else {
ts.tv_sec = timeout / 1000;
ts.tv_nsec = (timeout % 1000) * 1000000;
tp = &ts;
}
int nkqueue = kevent(kqueue_ctx->kqfd, kqueue_ctx->changes, kqueue_ctx->nchanges, kqueue_ctx->events, kqueue_ctx->nchanges, tp);
if (nkqueue < 0) {
perror("kevent");
return nkqueue;
}
if (nkqueue == 0) return 0;
int nevents = 0;
for (int i = 0; i < nkqueue; ++i) {
if (kqueue_ctx->events[i].flags & EV_ERROR) {
continue;
}
++nevents;
int fd = kqueue_ctx->events[i].ident;
int revents = kqueue_ctx->events[i].filter;
hio_t* io = loop->ios.ptr[fd];
if (io) {
if (revents & EVFILT_READ) {
io->revents |= HV_READ;
}
if (revents & EVFILT_WRITE) {
io->revents |= HV_WRITE;
}
EVENT_PENDING(io);
}
if (nevents == nkqueue) break;
}
return nevents;
}
#endif