xref: /freebsd/contrib/libevent/test/regress_iocp.c (revision c6879c6c14eedbd060ba588a3129a6c60ebbe783)
1*c43e99fdSEd Maste /*
2*c43e99fdSEd Maste  * Copyright (c) 2009-2012 Niels Provos and Nick Mathewson
3*c43e99fdSEd Maste  *
4*c43e99fdSEd Maste  * Redistribution and use in source and binary forms, with or without
5*c43e99fdSEd Maste  * modification, are permitted provided that the following conditions
6*c43e99fdSEd Maste  * are met:
7*c43e99fdSEd Maste  * 1. Redistributions of source code must retain the above copyright
8*c43e99fdSEd Maste  *    notice, this list of conditions and the following disclaimer.
9*c43e99fdSEd Maste  * 2. Redistributions in binary form must reproduce the above copyright
10*c43e99fdSEd Maste  *    notice, this list of conditions and the following disclaimer in the
11*c43e99fdSEd Maste  *    documentation and/or other materials provided with the distribution.
12*c43e99fdSEd Maste  * 3. The name of the author may not be used to endorse or promote products
13*c43e99fdSEd Maste  *    derived from this software without specific prior written permission.
14*c43e99fdSEd Maste  *
15*c43e99fdSEd Maste  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16*c43e99fdSEd Maste  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17*c43e99fdSEd Maste  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18*c43e99fdSEd Maste  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19*c43e99fdSEd Maste  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20*c43e99fdSEd Maste  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21*c43e99fdSEd Maste  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22*c43e99fdSEd Maste  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23*c43e99fdSEd Maste  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24*c43e99fdSEd Maste  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25*c43e99fdSEd Maste  */
26*c43e99fdSEd Maste 
27*c43e99fdSEd Maste #include <stdlib.h>
28*c43e99fdSEd Maste #include <string.h>
29*c43e99fdSEd Maste #include "event2/event.h"
30*c43e99fdSEd Maste #include "event2/thread.h"
31*c43e99fdSEd Maste #include "event2/buffer.h"
32*c43e99fdSEd Maste #include "event2/buffer_compat.h"
33*c43e99fdSEd Maste #include "event2/bufferevent.h"
34*c43e99fdSEd Maste 
35*c43e99fdSEd Maste #include <winsock2.h>
36*c43e99fdSEd Maste #include <ws2tcpip.h>
37*c43e99fdSEd Maste 
38*c43e99fdSEd Maste #include "regress.h"
39*c43e99fdSEd Maste #include "tinytest.h"
40*c43e99fdSEd Maste #include "tinytest_macros.h"
41*c43e99fdSEd Maste 
42*c43e99fdSEd Maste #define WIN32_LEAN_AND_MEAN
43*c43e99fdSEd Maste #include <windows.h>
44*c43e99fdSEd Maste #include <winsock2.h>
45*c43e99fdSEd Maste #undef WIN32_LEAN_AND_MEAN
46*c43e99fdSEd Maste 
47*c43e99fdSEd Maste #include "iocp-internal.h"
48*c43e99fdSEd Maste #include "evbuffer-internal.h"
49*c43e99fdSEd Maste #include "evthread-internal.h"
50*c43e99fdSEd Maste 
51*c43e99fdSEd Maste /* FIXME remove these ones */
52*c43e99fdSEd Maste #include <sys/queue.h>
53*c43e99fdSEd Maste #include "event2/event_struct.h"
54*c43e99fdSEd Maste #include "event-internal.h"
55*c43e99fdSEd Maste 
56*c43e99fdSEd Maste #define MAX_CALLS 16
57*c43e99fdSEd Maste 
58*c43e99fdSEd Maste static void *count_lock = NULL, *count_cond = NULL;
59*c43e99fdSEd Maste static int count = 0;
60*c43e99fdSEd Maste 
61*c43e99fdSEd Maste static void
count_init(void)62*c43e99fdSEd Maste count_init(void)
63*c43e99fdSEd Maste {
64*c43e99fdSEd Maste 	EVTHREAD_ALLOC_LOCK(count_lock, 0);
65*c43e99fdSEd Maste 	EVTHREAD_ALLOC_COND(count_cond);
66*c43e99fdSEd Maste 
67*c43e99fdSEd Maste 	tt_assert(count_lock);
68*c43e99fdSEd Maste 	tt_assert(count_cond);
69*c43e99fdSEd Maste 
70*c43e99fdSEd Maste end:
71*c43e99fdSEd Maste 	;
72*c43e99fdSEd Maste }
73*c43e99fdSEd Maste 
74*c43e99fdSEd Maste static void
count_free(void)75*c43e99fdSEd Maste count_free(void)
76*c43e99fdSEd Maste {
77*c43e99fdSEd Maste 	EVTHREAD_FREE_LOCK(count_lock, 0);
78*c43e99fdSEd Maste 	EVTHREAD_FREE_COND(count_cond);
79*c43e99fdSEd Maste }
80*c43e99fdSEd Maste 
81*c43e99fdSEd Maste static void
count_incr(void)82*c43e99fdSEd Maste count_incr(void)
83*c43e99fdSEd Maste {
84*c43e99fdSEd Maste 	EVLOCK_LOCK(count_lock, 0);
85*c43e99fdSEd Maste 	count++;
86*c43e99fdSEd Maste 	EVTHREAD_COND_BROADCAST(count_cond);
87*c43e99fdSEd Maste 	EVLOCK_UNLOCK(count_lock, 0);
88*c43e99fdSEd Maste }
89*c43e99fdSEd Maste 
90*c43e99fdSEd Maste static int
count_wait_for(int i,int ms)91*c43e99fdSEd Maste count_wait_for(int i, int ms)
92*c43e99fdSEd Maste {
93*c43e99fdSEd Maste 	struct timeval tv;
94*c43e99fdSEd Maste 	DWORD elapsed;
95*c43e99fdSEd Maste 	int rv = -1;
96*c43e99fdSEd Maste 
97*c43e99fdSEd Maste 	EVLOCK_LOCK(count_lock, 0);
98*c43e99fdSEd Maste 	while (ms > 0 && count != i) {
99*c43e99fdSEd Maste 		tv.tv_sec = 0;
100*c43e99fdSEd Maste 		tv.tv_usec = ms * 1000;
101*c43e99fdSEd Maste 		elapsed = GetTickCount();
102*c43e99fdSEd Maste 		EVTHREAD_COND_WAIT_TIMED(count_cond, count_lock, &tv);
103*c43e99fdSEd Maste 		elapsed = GetTickCount() - elapsed;
104*c43e99fdSEd Maste 		ms -= elapsed;
105*c43e99fdSEd Maste 	}
106*c43e99fdSEd Maste 	if (count == i)
107*c43e99fdSEd Maste 		rv = 0;
108*c43e99fdSEd Maste 	EVLOCK_UNLOCK(count_lock, 0);
109*c43e99fdSEd Maste 
110*c43e99fdSEd Maste 	return rv;
111*c43e99fdSEd Maste }
112*c43e99fdSEd Maste 
113*c43e99fdSEd Maste struct dummy_overlapped {
114*c43e99fdSEd Maste 	struct event_overlapped eo;
115*c43e99fdSEd Maste 	void *lock;
116*c43e99fdSEd Maste 	int call_count;
117*c43e99fdSEd Maste 	uintptr_t keys[MAX_CALLS];
118*c43e99fdSEd Maste 	ev_ssize_t sizes[MAX_CALLS];
119*c43e99fdSEd Maste };
120*c43e99fdSEd Maste 
121*c43e99fdSEd Maste static void
dummy_cb(struct event_overlapped * o,uintptr_t key,ev_ssize_t n,int ok)122*c43e99fdSEd Maste dummy_cb(struct event_overlapped *o, uintptr_t key, ev_ssize_t n, int ok)
123*c43e99fdSEd Maste {
124*c43e99fdSEd Maste 	struct dummy_overlapped *d_o =
125*c43e99fdSEd Maste 	    EVUTIL_UPCAST(o, struct dummy_overlapped, eo);
126*c43e99fdSEd Maste 
127*c43e99fdSEd Maste 	EVLOCK_LOCK(d_o->lock, 0);
128*c43e99fdSEd Maste 	if (d_o->call_count < MAX_CALLS) {
129*c43e99fdSEd Maste 		d_o->keys[d_o->call_count] = key;
130*c43e99fdSEd Maste 		d_o->sizes[d_o->call_count] = n;
131*c43e99fdSEd Maste 	}
132*c43e99fdSEd Maste 	d_o->call_count++;
133*c43e99fdSEd Maste 	EVLOCK_UNLOCK(d_o->lock, 0);
134*c43e99fdSEd Maste 
135*c43e99fdSEd Maste 	count_incr();
136*c43e99fdSEd Maste }
137*c43e99fdSEd Maste 
138*c43e99fdSEd Maste static int
pair_is_in(struct dummy_overlapped * o,uintptr_t key,ev_ssize_t n)139*c43e99fdSEd Maste pair_is_in(struct dummy_overlapped *o, uintptr_t key, ev_ssize_t n)
140*c43e99fdSEd Maste {
141*c43e99fdSEd Maste 	int i;
142*c43e99fdSEd Maste 	int result = 0;
143*c43e99fdSEd Maste 	EVLOCK_LOCK(o->lock, 0);
144*c43e99fdSEd Maste 	for (i=0; i < o->call_count; ++i) {
145*c43e99fdSEd Maste 		if (o->keys[i] == key && o->sizes[i] == n) {
146*c43e99fdSEd Maste 			result = 1;
147*c43e99fdSEd Maste 			break;
148*c43e99fdSEd Maste 		}
149*c43e99fdSEd Maste 	}
150*c43e99fdSEd Maste 	EVLOCK_UNLOCK(o->lock, 0);
151*c43e99fdSEd Maste 	return result;
152*c43e99fdSEd Maste }
153*c43e99fdSEd Maste 
154*c43e99fdSEd Maste static void
test_iocp_port(void * ptr)155*c43e99fdSEd Maste test_iocp_port(void *ptr)
156*c43e99fdSEd Maste {
157*c43e99fdSEd Maste 	struct event_iocp_port *port = NULL;
158*c43e99fdSEd Maste 	struct dummy_overlapped o1, o2;
159*c43e99fdSEd Maste 
160*c43e99fdSEd Maste 	memset(&o1, 0, sizeof(o1));
161*c43e99fdSEd Maste 	memset(&o2, 0, sizeof(o2));
162*c43e99fdSEd Maste 
163*c43e99fdSEd Maste 	count_init();
164*c43e99fdSEd Maste 	EVTHREAD_ALLOC_LOCK(o1.lock, EVTHREAD_LOCKTYPE_RECURSIVE);
165*c43e99fdSEd Maste 	EVTHREAD_ALLOC_LOCK(o2.lock, EVTHREAD_LOCKTYPE_RECURSIVE);
166*c43e99fdSEd Maste 
167*c43e99fdSEd Maste 	tt_assert(o1.lock);
168*c43e99fdSEd Maste 	tt_assert(o2.lock);
169*c43e99fdSEd Maste 
170*c43e99fdSEd Maste 	event_overlapped_init_(&o1.eo, dummy_cb);
171*c43e99fdSEd Maste 	event_overlapped_init_(&o2.eo, dummy_cb);
172*c43e99fdSEd Maste 
173*c43e99fdSEd Maste 	port = event_iocp_port_launch_(0);
174*c43e99fdSEd Maste 	tt_assert(port);
175*c43e99fdSEd Maste 
176*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o1.eo, 10, 100));
177*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o2.eo, 20, 200));
178*c43e99fdSEd Maste 
179*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o1.eo, 11, 101));
180*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o2.eo, 21, 201));
181*c43e99fdSEd Maste 
182*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o1.eo, 12, 102));
183*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o2.eo, 22, 202));
184*c43e99fdSEd Maste 
185*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o1.eo, 13, 103));
186*c43e99fdSEd Maste 	tt_assert(!event_iocp_activate_overlapped_(port, &o2.eo, 23, 203));
187*c43e99fdSEd Maste 
188*c43e99fdSEd Maste 	tt_int_op(count_wait_for(8, 2000), ==, 0);
189*c43e99fdSEd Maste 
190*c43e99fdSEd Maste 	tt_want(!event_iocp_shutdown_(port, 2000));
191*c43e99fdSEd Maste 
192*c43e99fdSEd Maste 	tt_int_op(o1.call_count, ==, 4);
193*c43e99fdSEd Maste 	tt_int_op(o2.call_count, ==, 4);
194*c43e99fdSEd Maste 
195*c43e99fdSEd Maste 	tt_want(pair_is_in(&o1, 10, 100));
196*c43e99fdSEd Maste 	tt_want(pair_is_in(&o1, 11, 101));
197*c43e99fdSEd Maste 	tt_want(pair_is_in(&o1, 12, 102));
198*c43e99fdSEd Maste 	tt_want(pair_is_in(&o1, 13, 103));
199*c43e99fdSEd Maste 
200*c43e99fdSEd Maste 	tt_want(pair_is_in(&o2, 20, 200));
201*c43e99fdSEd Maste 	tt_want(pair_is_in(&o2, 21, 201));
202*c43e99fdSEd Maste 	tt_want(pair_is_in(&o2, 22, 202));
203*c43e99fdSEd Maste 	tt_want(pair_is_in(&o2, 23, 203));
204*c43e99fdSEd Maste 
205*c43e99fdSEd Maste end:
206*c43e99fdSEd Maste 	EVTHREAD_FREE_LOCK(o1.lock, EVTHREAD_LOCKTYPE_RECURSIVE);
207*c43e99fdSEd Maste 	EVTHREAD_FREE_LOCK(o2.lock, EVTHREAD_LOCKTYPE_RECURSIVE);
208*c43e99fdSEd Maste 	count_free();
209*c43e99fdSEd Maste }
210*c43e99fdSEd Maste 
211*c43e99fdSEd Maste static struct evbuffer *rbuf = NULL, *wbuf = NULL;
212*c43e99fdSEd Maste 
213*c43e99fdSEd Maste static void
read_complete(struct event_overlapped * eo,uintptr_t key,ev_ssize_t nbytes,int ok)214*c43e99fdSEd Maste read_complete(struct event_overlapped *eo, uintptr_t key,
215*c43e99fdSEd Maste     ev_ssize_t nbytes, int ok)
216*c43e99fdSEd Maste {
217*c43e99fdSEd Maste 	tt_assert(ok);
218*c43e99fdSEd Maste 	evbuffer_commit_read_(rbuf, nbytes);
219*c43e99fdSEd Maste 	count_incr();
220*c43e99fdSEd Maste end:
221*c43e99fdSEd Maste 	;
222*c43e99fdSEd Maste }
223*c43e99fdSEd Maste 
224*c43e99fdSEd Maste static void
write_complete(struct event_overlapped * eo,uintptr_t key,ev_ssize_t nbytes,int ok)225*c43e99fdSEd Maste write_complete(struct event_overlapped *eo, uintptr_t key,
226*c43e99fdSEd Maste     ev_ssize_t nbytes, int ok)
227*c43e99fdSEd Maste {
228*c43e99fdSEd Maste 	tt_assert(ok);
229*c43e99fdSEd Maste 	evbuffer_commit_write_(wbuf, nbytes);
230*c43e99fdSEd Maste 	count_incr();
231*c43e99fdSEd Maste end:
232*c43e99fdSEd Maste 	;
233*c43e99fdSEd Maste }
234*c43e99fdSEd Maste 
235*c43e99fdSEd Maste static void
test_iocp_evbuffer(void * ptr)236*c43e99fdSEd Maste test_iocp_evbuffer(void *ptr)
237*c43e99fdSEd Maste {
238*c43e99fdSEd Maste 	struct event_overlapped rol, wol;
239*c43e99fdSEd Maste 	struct basic_test_data *data = ptr;
240*c43e99fdSEd Maste 	struct event_iocp_port *port = NULL;
241*c43e99fdSEd Maste 	struct evbuffer *buf=NULL;
242*c43e99fdSEd Maste 	struct evbuffer_chain *chain;
243*c43e99fdSEd Maste 	char junk[1024];
244*c43e99fdSEd Maste 	int i;
245*c43e99fdSEd Maste 
246*c43e99fdSEd Maste 	count_init();
247*c43e99fdSEd Maste 	event_overlapped_init_(&rol, read_complete);
248*c43e99fdSEd Maste 	event_overlapped_init_(&wol, write_complete);
249*c43e99fdSEd Maste 
250*c43e99fdSEd Maste 	for (i = 0; i < (int)sizeof(junk); ++i)
251*c43e99fdSEd Maste 		junk[i] = (char)(i);
252*c43e99fdSEd Maste 
253*c43e99fdSEd Maste 	rbuf = evbuffer_overlapped_new_(data->pair[0]);
254*c43e99fdSEd Maste 	wbuf = evbuffer_overlapped_new_(data->pair[1]);
255*c43e99fdSEd Maste 	evbuffer_enable_locking(rbuf, NULL);
256*c43e99fdSEd Maste 	evbuffer_enable_locking(wbuf, NULL);
257*c43e99fdSEd Maste 
258*c43e99fdSEd Maste 	port = event_iocp_port_launch_(0);
259*c43e99fdSEd Maste 	tt_assert(port);
260*c43e99fdSEd Maste 	tt_assert(rbuf);
261*c43e99fdSEd Maste 	tt_assert(wbuf);
262*c43e99fdSEd Maste 
263*c43e99fdSEd Maste 	tt_assert(!event_iocp_port_associate_(port, data->pair[0], 100));
264*c43e99fdSEd Maste 	tt_assert(!event_iocp_port_associate_(port, data->pair[1], 100));
265*c43e99fdSEd Maste 
266*c43e99fdSEd Maste 	for (i=0;i<10;++i)
267*c43e99fdSEd Maste 		evbuffer_add(wbuf, junk, sizeof(junk));
268*c43e99fdSEd Maste 
269*c43e99fdSEd Maste 	buf = evbuffer_new();
270*c43e99fdSEd Maste 	tt_assert(buf != NULL);
271*c43e99fdSEd Maste 	evbuffer_add(rbuf, junk, sizeof(junk));
272*c43e99fdSEd Maste 	tt_assert(!evbuffer_launch_read_(rbuf, 2048, &rol));
273*c43e99fdSEd Maste 	evbuffer_add_buffer(buf, rbuf);
274*c43e99fdSEd Maste 	tt_int_op(evbuffer_get_length(buf), ==, sizeof(junk));
275*c43e99fdSEd Maste 	for (chain = buf->first; chain; chain = chain->next)
276*c43e99fdSEd Maste 		tt_int_op(chain->flags & EVBUFFER_MEM_PINNED_ANY, ==, 0);
277*c43e99fdSEd Maste 	tt_assert(!evbuffer_get_length(rbuf));
278*c43e99fdSEd Maste 	tt_assert(!evbuffer_launch_write_(wbuf, 512, &wol));
279*c43e99fdSEd Maste 
280*c43e99fdSEd Maste 	tt_int_op(count_wait_for(2, 2000), ==, 0);
281*c43e99fdSEd Maste 
282*c43e99fdSEd Maste 	tt_int_op(evbuffer_get_length(rbuf),==,512);
283*c43e99fdSEd Maste 
284*c43e99fdSEd Maste 	/* FIXME Actually test some stuff here. */
285*c43e99fdSEd Maste 
286*c43e99fdSEd Maste 	tt_want(!event_iocp_shutdown_(port, 2000));
287*c43e99fdSEd Maste end:
288*c43e99fdSEd Maste 	count_free();
289*c43e99fdSEd Maste 	evbuffer_free(rbuf);
290*c43e99fdSEd Maste 	evbuffer_free(wbuf);
291*c43e99fdSEd Maste 	if (buf) evbuffer_free(buf);
292*c43e99fdSEd Maste }
293*c43e99fdSEd Maste 
294*c43e99fdSEd Maste static int got_readcb = 0;
295*c43e99fdSEd Maste 
296*c43e99fdSEd Maste static void
async_readcb(struct bufferevent * bev,void * arg)297*c43e99fdSEd Maste async_readcb(struct bufferevent *bev, void *arg)
298*c43e99fdSEd Maste {
299*c43e99fdSEd Maste 	/* Disabling read should cause the loop to quit */
300*c43e99fdSEd Maste 	bufferevent_disable(bev, EV_READ);
301*c43e99fdSEd Maste 	got_readcb++;
302*c43e99fdSEd Maste }
303*c43e99fdSEd Maste 
304*c43e99fdSEd Maste static void
test_iocp_bufferevent_async(void * ptr)305*c43e99fdSEd Maste test_iocp_bufferevent_async(void *ptr)
306*c43e99fdSEd Maste {
307*c43e99fdSEd Maste 	struct basic_test_data *data = ptr;
308*c43e99fdSEd Maste 	struct event_iocp_port *port = NULL;
309*c43e99fdSEd Maste 	struct bufferevent *bea1=NULL, *bea2=NULL;
310*c43e99fdSEd Maste 	char buf[128];
311*c43e99fdSEd Maste 	size_t n;
312*c43e99fdSEd Maste 
313*c43e99fdSEd Maste 	event_base_start_iocp_(data->base, 0);
314*c43e99fdSEd Maste 	port = event_base_get_iocp_(data->base);
315*c43e99fdSEd Maste 	tt_assert(port);
316*c43e99fdSEd Maste 
317*c43e99fdSEd Maste 	bea1 = bufferevent_async_new_(data->base, data->pair[0],
318*c43e99fdSEd Maste 	    BEV_OPT_DEFER_CALLBACKS);
319*c43e99fdSEd Maste 	bea2 = bufferevent_async_new_(data->base, data->pair[1],
320*c43e99fdSEd Maste 	    BEV_OPT_DEFER_CALLBACKS);
321*c43e99fdSEd Maste 	tt_assert(bea1);
322*c43e99fdSEd Maste 	tt_assert(bea2);
323*c43e99fdSEd Maste 
324*c43e99fdSEd Maste 	bufferevent_setcb(bea2, async_readcb, NULL, NULL, NULL);
325*c43e99fdSEd Maste 	bufferevent_enable(bea1, EV_WRITE);
326*c43e99fdSEd Maste 	bufferevent_enable(bea2, EV_READ);
327*c43e99fdSEd Maste 
328*c43e99fdSEd Maste 	bufferevent_write(bea1, "Hello world", strlen("Hello world")+1);
329*c43e99fdSEd Maste 
330*c43e99fdSEd Maste 	event_base_dispatch(data->base);
331*c43e99fdSEd Maste 
332*c43e99fdSEd Maste 	tt_int_op(got_readcb, ==, 1);
333*c43e99fdSEd Maste 	n = bufferevent_read(bea2, buf, sizeof(buf)-1);
334*c43e99fdSEd Maste 	buf[n]='\0';
335*c43e99fdSEd Maste 	tt_str_op(buf, ==, "Hello world");
336*c43e99fdSEd Maste 
337*c43e99fdSEd Maste end:
338*c43e99fdSEd Maste 	bufferevent_free(bea1);
339*c43e99fdSEd Maste 	bufferevent_free(bea2);
340*c43e99fdSEd Maste }
341*c43e99fdSEd Maste 
342*c43e99fdSEd Maste 
343*c43e99fdSEd Maste struct testcase_t iocp_testcases[] = {
344*c43e99fdSEd Maste 	{ "port", test_iocp_port, TT_FORK|TT_NEED_THREADS, &basic_setup, NULL },
345*c43e99fdSEd Maste 	{ "evbuffer", test_iocp_evbuffer,
346*c43e99fdSEd Maste 	  TT_FORK|TT_NEED_SOCKETPAIR|TT_NEED_THREADS,
347*c43e99fdSEd Maste 	  &basic_setup, NULL },
348*c43e99fdSEd Maste 	{ "bufferevent_async", test_iocp_bufferevent_async,
349*c43e99fdSEd Maste 	  TT_FORK|TT_NEED_SOCKETPAIR|TT_NEED_THREADS|TT_NEED_BASE,
350*c43e99fdSEd Maste 	  &basic_setup, NULL },
351*c43e99fdSEd Maste 	END_OF_TESTCASES
352*c43e99fdSEd Maste };
353