d8b9821c94e86b470a03118a3e5494f5cf2b2d5c
[adns] / regress / hcommon.c.m4
1 m4_dnl hcommon.c
2 m4_dnl (part of complex test harness, not of the library)
3 m4_dnl - routines used for both record and playback
4
5 m4_dnl This file is part of adns, which is
6 m4_dnl Copyright (C) 1997-2000,2003,2006 Ian Jackson
7 m4_dnl Copyright (C) 1999-2000,2003,2006 Tony Finch
8 m4_dnl Copyright (C) 1991 Massachusetts Institute of Technology
9 m4_dnl (See the file INSTALL for full details.)
10 m4_dnl
11 m4_dnl This program is free software; you can redistribute it and/or modify
12 m4_dnl it under the terms of the GNU General Public License as published by
13 m4_dnl the Free Software Foundation; either version 2, or (at your option)
14 m4_dnl any later version.
15 m4_dnl
16 m4_dnl This program is distributed in the hope that it will be useful,
17 m4_dnl but WITHOUT ANY WARRANTY; without even the implied warranty of
18 m4_dnl MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 m4_dnl GNU General Public License for more details.
20 m4_dnl
21 m4_dnl You should have received a copy of the GNU General Public License
22 m4_dnl along with this program; if not, write to the Free Software Foundation,
23 m4_dnl Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
24
25 m4_include(hmacros.i4)
26
27 #include <string.h>
28 #include <errno.h>
29 #include <stdlib.h>
30 #include <stdarg.h>
31
32 #include <sys/types.h>
33 #include <sys/socket.h>
34 #include <netinet/in.h>
35 #include <arpa/inet.h>
36
37 #include <unistd.h>
38 #include <fcntl.h>
39
40 #include "harness.h"
41 #include "internal.h"
42
43 vbuf vb;
44 FILE *Toutputfile= 0;
45 struct timeval currenttime;
46
47 const struct Terrno Terrnos[]= {
48 { "EBADF", EBADF },
49 { "EAGAIN", EAGAIN },
50 { "EINPROGRESS", EINPROGRESS },
51 { "EINTR", EINTR },
52 { "EINVAL", EINVAL },
53 { "EMSGSIZE", EMSGSIZE },
54 { "ENOBUFS", ENOBUFS },
55 { "ENOENT", ENOENT },
56 { "ENOPROTOOPT", ENOPROTOOPT },
57 { "ENOSPC", ENOSPC },
58 { "EWOULDBLOCK", EWOULDBLOCK },
59 { "EHOSTUNREACH", EHOSTUNREACH },
60 { "ECONNRESET", ECONNRESET },
61 { "ECONNREFUSED", ECONNREFUSED },
62 { "EPIPE", EPIPE },
63 { "ENOTSOCK", ENOTSOCK },
64 { 0, 0 }
65 };
66
67 static vbuf vbw;
68
69 int Hgettimeofday(struct timeval *tv, struct timezone *tz) {
70 Tensurerecordfile();
71 Tmust("gettimeofday","tz",!tz);
72 *tv= currenttime;
73 return 0;
74 }
75
76 int Hwritev(int fd, const struct iovec *vector, size_t count) {
77 size_t i;
78
79 vbw.used= 0;
80 for (i=0; i<count; i++, vector++) {
81 if (!adns__vbuf_append(&vbw,vector->iov_base,vector->iov_len)) Tnomem();
82 }
83 return Hwrite(fd,vbw.buf,vbw.used);
84 }
85
86 m4_define(`hm_syscall', `
87 hm_create_proto_q
88 void Q$1(hm_args_massage($3,void)) {
89
90 vb.used= 0;
91 Tvba("$1");
92 m4_define(`hm_na',`')
93 m4_define(`hm_arg_nullptr',`')
94 m4_define(`hm_arg_int', `Tvbf(" $'`1=%d",$'`1);')
95 m4_define(`hm_arg_fdset_io', `Tvbf(" $'`1="); Tvbfdset($'`2,$'`1);')
96 m4_define(`hm_arg_pollfds_io', `Tvbf(" $'`1="); Tvbpollfds($'`1,$'`2);')
97 m4_define(`hm_arg_timeval_in_rel_null', `
98 if ($'`1) Tvbf(" $'`1=%ld.%06ld",(long)$'`1->tv_sec,(long)$'`1->tv_usec);
99 else Tvba(" $'`1=null");')
100 m4_define(`hm_arg_must', `')
101 m4_define(`hm_arg_socktype', `
102 Tvbf($'`1==SOCK_STREAM ? " $'`1=SOCK_STREAM" : " $'`1=SOCK_DGRAM");')
103 m4_define(`hm_arg_ign', `')
104 m4_define(`hm_arg_fd', `Tvbf(" $'`1=%d",$'`1);')
105 m4_define(`hm_arg_fcntl_cmd_arg', `
106 if ($'`1 == F_SETFL) {
107 Tvbf(" $'`1=F_SETFL %s",arg & O_NONBLOCK ? "O_NONBLOCK|..." : "~O_NONBLOCK&...");
108 } else if ($'`1 == F_GETFL) {
109 Tvba(" $'`1=F_GETFL");
110 } else {
111 Tmust("$'`1","F_GETFL/F_SETFL",0);
112 }')
113 m4_define(`hm_arg_addr_in', `Tvba(" $'`1="); Tvbaddr($'`1,$'`2);')
114 m4_define(`hm_arg_bytes_in', `')
115 m4_define(`hm_arg_bytes_out', `Tvbf(" $'`4=%lu",(unsigned long)$'`4);')
116 m4_define(`hm_arg_addr_out', `')
117 $3
118
119 hm_create_nothing
120 m4_define(`hm_arg_bytes_in', `Tvbbytes($'`2,$'`4);')
121 $3
122
123 Q_vb();
124 }
125 ')
126
127 m4_define(`hm_specsyscall', `')
128
129 m4_include(`hsyscalls.i4')
130
131 void Tvbaddr(const struct sockaddr *addr, int len) {
132 char buf[ADNS_ADDR2TEXT_BUFLEN];
133 int err, port;
134 int sz= sizeof(buf);
135
136 err= adns_addr2text(addr, 0, buf,&sz, &port);
137 assert(!err);
138
139 Tvbf(strchr(buf, ':') ? "[%s]:%d" : "%s:%d", buf,port);
140 }
141
142 void Tvbbytes(const void *buf, int len) {
143 const byte *bp;
144 int i;
145
146 if (!len) { Tvba("\n ."); return; }
147 for (i=0, bp=buf; i<len; i++, bp++) {
148 if (!(i&31)) Tvba("\n ");
149 else if (!(i&3)) Tvba(" ");
150 Tvbf("%02x",*bp);
151 }
152 Tvba(".");
153 }
154
155 void Tvbfdset(int max, const fd_set *fds) {
156 int i;
157 const char *comma= "";
158
159 Tvba("[");
160 for (i=0; i<max; i++) {
161 if (!FD_ISSET(i,fds)) continue;
162 Tvba(comma);
163 Tvbf("%d",i);
164 comma= ",";
165 }
166 Tvba("]");
167 }
168
169 static void Tvbpollevents(int events) {
170 const char *delim= "";
171
172 events &= (POLLIN|POLLOUT|POLLPRI);
173 if (!events) { Tvba("0"); return; }
174 if (events & POLLIN) { Tvba("POLLIN"); delim= "|"; }
175 if (events & POLLOUT) { Tvba(delim); Tvba("POLLOUT"); delim= "|"; }
176 if (events & POLLPRI) { Tvba(delim); Tvba("POLLPRI"); }
177 }
178
179 void Tvbpollfds(const struct pollfd *fds, int nfds) {
180 const char *comma= "";
181
182 Tvba("[");
183 while (nfds>0) {
184 Tvba(comma);
185 Tvbf("{fd=%d, events=",fds->fd);
186 Tvbpollevents(fds->events);
187 Tvba(", revents=");
188 Tvbpollevents(fds->revents);
189 Tvba("}");
190 comma= ", ";
191 nfds--; fds++;
192 }
193 Tvba("]");
194 }
195
196 void Tvberrno(int e) {
197 const struct Terrno *te;
198
199 for (te= Terrnos; te->n && te->v != e; te++);
200 assert(te->n);
201 Tvba(te->n);
202 }
203
204 void Tvba(const char *str) {
205 if (!adns__vbuf_appendstr(&vb,str)) Tnomem();
206 }
207
208 void Tvbvf(const char *fmt, va_list al) {
209 char buf[1000];
210 buf[sizeof(buf)-2]= '\t';
211 vsnprintf(buf,sizeof(buf),fmt,al);
212 assert(buf[sizeof(buf)-2] == '\t');
213
214 Tvba(buf);
215 }
216
217 void Tvbf(const char *fmt, ...) {
218 va_list al;
219 va_start(al,fmt);
220 Tvbvf(fmt,al);
221 va_end(al);
222 }
223
224
225 void Tmust(const char *call, const char *arg, int cond) {
226 if (cond) return;
227 fprintf(stderr,"adns test harness: case not handled: system call %s, arg %s",call,arg);
228 exit(-1);
229 }
230
231 void Tfailed(const char *why) {
232 fprintf(stderr,"adns test harness: failure: %s: %s\n",why,strerror(errno));
233 exit(-1);
234 }
235
236 void Tnomem(void) {
237 Tfailed("unable to malloc/realloc");
238 }
239
240 void Toutputerr(void) {
241 Tfailed("write error on test harness output");
242 }
243
244 struct malloced {
245 struct malloced *next, *back;
246 size_t sz;
247 unsigned long count;
248 struct { double d; long ul; void *p; void (*fp)(void); } data;
249 };
250
251 static unsigned long malloccount, mallocfailat;
252 static struct { struct malloced *head, *tail; } mallocedlist;
253
254 #define MALLOCHSZ ((char*)&mallocedlist.head->data - (char*)mallocedlist.head)
255
256 void *Hmalloc(size_t sz) {
257 struct malloced *newnode;
258 const char *mfavar;
259 char *ep;
260
261 assert(sz);
262
263 newnode= malloc(MALLOCHSZ + sz); if (!newnode) Tnomem();
264
265 LIST_LINK_TAIL(mallocedlist,newnode);
266 newnode->sz= sz;
267 newnode->count= ++malloccount;
268 if (!mallocfailat) {
269 mfavar= getenv("ADNS_REGRESS_MALLOCFAILAT");
270 if (mfavar) {
271 mallocfailat= strtoul(mfavar,&ep,10);
272 if (!mallocfailat || *ep) Tfailed("ADNS_REGRESS_MALLOCFAILAT bad value");
273 } else {
274 mallocfailat= ~0UL;
275 }
276 }
277 assert(newnode->count != mallocfailat);
278 memset(&newnode->data,0xc7,sz);
279 return &newnode->data;
280 }
281
282 void Hfree(void *ptr) {
283 struct malloced *oldnode;
284
285 if (!ptr) return;
286
287 oldnode= (void*)((char*)ptr - MALLOCHSZ);
288 LIST_UNLINK(mallocedlist,oldnode);
289 memset(&oldnode->data,0x38,oldnode->sz);
290 free(oldnode);
291 }
292
293 void *Hrealloc(void *op, size_t nsz) {
294 struct malloced *oldnode;
295 void *np;
296 size_t osz;
297
298 if (op) { oldnode= (void*)((char*)op - MALLOCHSZ); osz= oldnode->sz; } else { osz= 0; }
299 np= Hmalloc(nsz);
300 memcpy(np,op, osz>nsz ? nsz : osz);
301 Hfree(op);
302 return np;
303 }
304
305 void Hexit(int rv) {
306 struct malloced *loopnode;
307
308 Tshutdown();
309 adns__vbuf_free(&vb);
310 adns__vbuf_free(&vbw);
311 if (mallocedlist.head) {
312 fprintf(stderr,"adns test harness: memory leaked:");
313 for (loopnode=mallocedlist.head; loopnode; loopnode=loopnode->next)
314 fprintf(stderr," %lu",loopnode->count);
315 putc('\n',stderr);
316 if (ferror(stderr)) exit(-1);
317 }
318 exit(rv);
319 }
320
321 pid_t Hgetpid(void) {
322 return 2264; /* just some number */
323 }
324