Mercurial > hg
annotate contrib/chg/hgclient.c @ 35710:5cd60b0587a8
evolution: make reporting of new unstable changesets optional
This makes it possible to turn off the reporting of unstable
changesets (e.g. "1 new orphan changesets"), just in case it's too
slow for some users. Anyone who's been using the evolve extension has
already been accepting the cost of the reporting, so this is just for
the few users who have turned on obsmarkers but not been using the
evolve extension (as I believe Facebook has).
Differential Revision: https://phab.mercurial-scm.org/D1868
author | Martin von Zweigbergk <martinvonz@google.com> |
---|---|
date | Sun, 14 Jan 2018 00:02:40 -0800 |
parents | ac5527021097 |
children | 9724f54923ec |
rev | line source |
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28060 | 1 /* |
2 * A command server client that uses Unix domain socket | |
3 * | |
4 * Copyright (c) 2011 Yuya Nishihara <yuya@tcha.org> | |
5 * | |
6 * This software may be used and distributed according to the terms of the | |
7 * GNU General Public License version 2 or any later version. | |
8 */ | |
9 | |
10 #include <arpa/inet.h> /* for ntohl(), htonl() */ | |
11 #include <assert.h> | |
12 #include <ctype.h> | |
13 #include <errno.h> | |
14 #include <fcntl.h> | |
15 #include <signal.h> | |
16 #include <stdint.h> | |
17 #include <stdio.h> | |
18 #include <stdlib.h> | |
19 #include <string.h> | |
20 #include <sys/socket.h> | |
21 #include <sys/stat.h> | |
22 #include <sys/un.h> | |
23 #include <unistd.h> | |
24 | |
25 #include "hgclient.h" | |
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26 #include "procutil.h" |
28060 | 27 #include "util.h" |
28 | |
29 enum { | |
30 CAP_GETENCODING = 0x0001, | |
31 CAP_RUNCOMMAND = 0x0002, | |
32 /* cHg extension: */ | |
33 CAP_ATTACHIO = 0x0100, | |
34 CAP_CHDIR = 0x0200, | |
35 CAP_SETENV = 0x0800, | |
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36 CAP_SETUMASK = 0x1000, |
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37 CAP_VALIDATE = 0x2000, |
30751 | 38 CAP_SETPROCNAME = 0x4000, |
28060 | 39 }; |
40 | |
41 typedef struct { | |
42 const char *name; | |
43 unsigned int flag; | |
44 } cappair_t; | |
45 | |
46 static const cappair_t captable[] = { | |
47 {"getencoding", CAP_GETENCODING}, | |
48 {"runcommand", CAP_RUNCOMMAND}, | |
49 {"attachio", CAP_ATTACHIO}, | |
50 {"chdir", CAP_CHDIR}, | |
51 {"setenv", CAP_SETENV}, | |
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52 {"setumask", CAP_SETUMASK}, |
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53 {"validate", CAP_VALIDATE}, |
30751 | 54 {"setprocname", CAP_SETPROCNAME}, |
28060 | 55 {NULL, 0}, /* terminator */ |
56 }; | |
57 | |
58 typedef struct { | |
59 char ch; | |
60 char *data; | |
61 size_t maxdatasize; | |
62 size_t datasize; | |
63 } context_t; | |
64 | |
65 struct hgclient_tag_ { | |
66 int sockfd; | |
29581 | 67 pid_t pgid; |
28060 | 68 pid_t pid; |
69 context_t ctx; | |
70 unsigned int capflags; | |
71 }; | |
72 | |
73 static const size_t defaultdatasize = 4096; | |
74 | |
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75 static void attachio(hgclient_t *hgc); |
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76 |
28060 | 77 static void initcontext(context_t *ctx) |
78 { | |
79 ctx->ch = '\0'; | |
80 ctx->data = malloc(defaultdatasize); | |
81 ctx->maxdatasize = (ctx->data) ? defaultdatasize : 0; | |
82 ctx->datasize = 0; | |
83 debugmsg("initialize context buffer with size %zu", ctx->maxdatasize); | |
84 } | |
85 | |
86 static void enlargecontext(context_t *ctx, size_t newsize) | |
87 { | |
88 if (newsize <= ctx->maxdatasize) | |
89 return; | |
90 | |
91 newsize = defaultdatasize | |
92 * ((newsize + defaultdatasize - 1) / defaultdatasize); | |
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93 ctx->data = reallocx(ctx->data, newsize); |
28060 | 94 ctx->maxdatasize = newsize; |
95 debugmsg("enlarge context buffer to %zu", ctx->maxdatasize); | |
96 } | |
97 | |
98 static void freecontext(context_t *ctx) | |
99 { | |
100 debugmsg("free context buffer"); | |
101 free(ctx->data); | |
102 ctx->data = NULL; | |
103 ctx->maxdatasize = 0; | |
104 ctx->datasize = 0; | |
105 } | |
106 | |
107 /* Read channeled response from cmdserver */ | |
108 static void readchannel(hgclient_t *hgc) | |
109 { | |
110 assert(hgc); | |
111 | |
112 ssize_t rsize = recv(hgc->sockfd, &hgc->ctx.ch, sizeof(hgc->ctx.ch), 0); | |
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113 if (rsize != sizeof(hgc->ctx.ch)) { |
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114 /* server would have exception and traceback would be printed */ |
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115 debugmsg("failed to read channel"); |
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116 exit(255); |
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117 } |
28060 | 118 |
119 uint32_t datasize_n; | |
120 rsize = recv(hgc->sockfd, &datasize_n, sizeof(datasize_n), 0); | |
121 if (rsize != sizeof(datasize_n)) | |
122 abortmsg("failed to read data size"); | |
123 | |
124 /* datasize denotes the maximum size to write if input request */ | |
125 hgc->ctx.datasize = ntohl(datasize_n); | |
126 enlargecontext(&hgc->ctx, hgc->ctx.datasize); | |
127 | |
128 if (isupper(hgc->ctx.ch) && hgc->ctx.ch != 'S') | |
129 return; /* assumes input request */ | |
130 | |
131 size_t cursize = 0; | |
132 while (cursize < hgc->ctx.datasize) { | |
133 rsize = recv(hgc->sockfd, hgc->ctx.data + cursize, | |
134 hgc->ctx.datasize - cursize, 0); | |
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135 if (rsize < 1) |
28060 | 136 abortmsg("failed to read data block"); |
137 cursize += rsize; | |
138 } | |
139 } | |
140 | |
141 static void sendall(int sockfd, const void *data, size_t datasize) | |
142 { | |
143 const char *p = data; | |
144 const char *const endp = p + datasize; | |
145 while (p < endp) { | |
146 ssize_t r = send(sockfd, p, endp - p, 0); | |
147 if (r < 0) | |
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148 abortmsgerrno("cannot communicate"); |
28060 | 149 p += r; |
150 } | |
151 } | |
152 | |
153 /* Write lengh-data block to cmdserver */ | |
154 static void writeblock(const hgclient_t *hgc) | |
155 { | |
156 assert(hgc); | |
157 | |
158 const uint32_t datasize_n = htonl(hgc->ctx.datasize); | |
159 sendall(hgc->sockfd, &datasize_n, sizeof(datasize_n)); | |
160 | |
161 sendall(hgc->sockfd, hgc->ctx.data, hgc->ctx.datasize); | |
162 } | |
163 | |
164 static void writeblockrequest(const hgclient_t *hgc, const char *chcmd) | |
165 { | |
166 debugmsg("request %s, block size %zu", chcmd, hgc->ctx.datasize); | |
167 | |
168 char buf[strlen(chcmd) + 1]; | |
169 memcpy(buf, chcmd, sizeof(buf) - 1); | |
170 buf[sizeof(buf) - 1] = '\n'; | |
171 sendall(hgc->sockfd, buf, sizeof(buf)); | |
172 | |
173 writeblock(hgc); | |
174 } | |
175 | |
176 /* Build '\0'-separated list of args. argsize < 0 denotes that args are | |
177 * terminated by NULL. */ | |
178 static void packcmdargs(context_t *ctx, const char *const args[], | |
179 ssize_t argsize) | |
180 { | |
181 ctx->datasize = 0; | |
182 const char *const *const end = (argsize >= 0) ? args + argsize : NULL; | |
183 for (const char *const *it = args; it != end && *it; ++it) { | |
184 const size_t n = strlen(*it) + 1; /* include '\0' */ | |
185 enlargecontext(ctx, ctx->datasize + n); | |
186 memcpy(ctx->data + ctx->datasize, *it, n); | |
187 ctx->datasize += n; | |
188 } | |
189 | |
190 if (ctx->datasize > 0) | |
191 --ctx->datasize; /* strip last '\0' */ | |
192 } | |
193 | |
194 /* Extract '\0'-separated list of args to new buffer, terminated by NULL */ | |
195 static const char **unpackcmdargsnul(const context_t *ctx) | |
196 { | |
197 const char **args = NULL; | |
198 size_t nargs = 0, maxnargs = 0; | |
199 const char *s = ctx->data; | |
200 const char *e = ctx->data + ctx->datasize; | |
201 for (;;) { | |
202 if (nargs + 1 >= maxnargs) { /* including last NULL */ | |
203 maxnargs += 256; | |
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204 args = reallocx(args, maxnargs * sizeof(args[0])); |
28060 | 205 } |
206 args[nargs] = s; | |
207 nargs++; | |
208 s = memchr(s, '\0', e - s); | |
209 if (!s) | |
210 break; | |
211 s++; | |
212 } | |
213 args[nargs] = NULL; | |
214 return args; | |
215 } | |
216 | |
217 static void handlereadrequest(hgclient_t *hgc) | |
218 { | |
219 context_t *ctx = &hgc->ctx; | |
220 size_t r = fread(ctx->data, sizeof(ctx->data[0]), ctx->datasize, stdin); | |
221 ctx->datasize = r; | |
222 writeblock(hgc); | |
223 } | |
224 | |
225 /* Read single-line */ | |
226 static void handlereadlinerequest(hgclient_t *hgc) | |
227 { | |
228 context_t *ctx = &hgc->ctx; | |
229 if (!fgets(ctx->data, ctx->datasize, stdin)) | |
230 ctx->data[0] = '\0'; | |
231 ctx->datasize = strlen(ctx->data); | |
232 writeblock(hgc); | |
233 } | |
234 | |
235 /* Execute the requested command and write exit code */ | |
236 static void handlesystemrequest(hgclient_t *hgc) | |
237 { | |
238 context_t *ctx = &hgc->ctx; | |
239 enlargecontext(ctx, ctx->datasize + 1); | |
240 ctx->data[ctx->datasize] = '\0'; /* terminate last string */ | |
241 | |
242 const char **args = unpackcmdargsnul(ctx); | |
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243 if (!args[0] || !args[1] || !args[2]) |
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244 abortmsg("missing type or command or cwd in system request"); |
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245 if (strcmp(args[0], "system") == 0) { |
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246 debugmsg("run '%s' at '%s'", args[1], args[2]); |
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247 int32_t r = runshellcmd(args[1], args + 3, args[2]); |
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248 free(args); |
28060 | 249 |
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250 uint32_t r_n = htonl(r); |
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251 memcpy(ctx->data, &r_n, sizeof(r_n)); |
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252 ctx->datasize = sizeof(r_n); |
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253 writeblock(hgc); |
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254 } else if (strcmp(args[0], "pager") == 0) { |
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255 setuppager(args[1], args + 3); |
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256 if (hgc->capflags & CAP_ATTACHIO) |
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257 attachio(hgc); |
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258 /* unblock the server */ |
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259 static const char emptycmd[] = "\n"; |
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260 sendall(hgc->sockfd, emptycmd, sizeof(emptycmd) - 1); |
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261 } else { |
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262 abortmsg("unknown type in system request: %s", args[0]); |
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263 } |
28060 | 264 } |
265 | |
266 /* Read response of command execution until receiving 'r'-esult */ | |
267 static void handleresponse(hgclient_t *hgc) | |
268 { | |
269 for (;;) { | |
270 readchannel(hgc); | |
271 context_t *ctx = &hgc->ctx; | |
272 debugmsg("response read from channel %c, size %zu", | |
273 ctx->ch, ctx->datasize); | |
274 switch (ctx->ch) { | |
275 case 'o': | |
276 fwrite(ctx->data, sizeof(ctx->data[0]), ctx->datasize, | |
277 stdout); | |
278 break; | |
279 case 'e': | |
280 fwrite(ctx->data, sizeof(ctx->data[0]), ctx->datasize, | |
281 stderr); | |
282 break; | |
283 case 'd': | |
284 /* assumes last char is '\n' */ | |
285 ctx->data[ctx->datasize - 1] = '\0'; | |
286 debugmsg("server: %s", ctx->data); | |
287 break; | |
288 case 'r': | |
289 return; | |
290 case 'I': | |
291 handlereadrequest(hgc); | |
292 break; | |
293 case 'L': | |
294 handlereadlinerequest(hgc); | |
295 break; | |
296 case 'S': | |
297 handlesystemrequest(hgc); | |
298 break; | |
299 default: | |
300 if (isupper(ctx->ch)) | |
301 abortmsg("cannot handle response (ch = %c)", | |
302 ctx->ch); | |
303 } | |
304 } | |
305 } | |
306 | |
307 static unsigned int parsecapabilities(const char *s, const char *e) | |
308 { | |
309 unsigned int flags = 0; | |
310 while (s < e) { | |
311 const char *t = strchr(s, ' '); | |
312 if (!t || t > e) | |
313 t = e; | |
314 const cappair_t *cap; | |
315 for (cap = captable; cap->flag; ++cap) { | |
316 size_t n = t - s; | |
317 if (strncmp(s, cap->name, n) == 0 && | |
318 strlen(cap->name) == n) { | |
319 flags |= cap->flag; | |
320 break; | |
321 } | |
322 } | |
323 s = t + 1; | |
324 } | |
325 return flags; | |
326 } | |
327 | |
328 static void readhello(hgclient_t *hgc) | |
329 { | |
330 readchannel(hgc); | |
331 context_t *ctx = &hgc->ctx; | |
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332 if (ctx->ch != 'o') { |
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333 char ch = ctx->ch; |
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334 if (ch == 'e') { |
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335 /* write early error and will exit */ |
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336 fwrite(ctx->data, sizeof(ctx->data[0]), ctx->datasize, |
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337 stderr); |
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338 handleresponse(hgc); |
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339 } |
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340 abortmsg("unexpected channel of hello message (ch = %c)", ch); |
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341 } |
28060 | 342 enlargecontext(ctx, ctx->datasize + 1); |
343 ctx->data[ctx->datasize] = '\0'; | |
344 debugmsg("hello received: %s (size = %zu)", ctx->data, ctx->datasize); | |
345 | |
346 const char *s = ctx->data; | |
347 const char *const dataend = ctx->data + ctx->datasize; | |
348 while (s < dataend) { | |
349 const char *t = strchr(s, ':'); | |
350 if (!t || t[1] != ' ') | |
351 break; | |
352 const char *u = strchr(t + 2, '\n'); | |
353 if (!u) | |
354 u = dataend; | |
355 if (strncmp(s, "capabilities:", t - s + 1) == 0) { | |
356 hgc->capflags = parsecapabilities(t + 2, u); | |
29581 | 357 } else if (strncmp(s, "pgid:", t - s + 1) == 0) { |
358 hgc->pgid = strtol(t + 2, NULL, 10); | |
28060 | 359 } else if (strncmp(s, "pid:", t - s + 1) == 0) { |
360 hgc->pid = strtol(t + 2, NULL, 10); | |
361 } | |
362 s = u + 1; | |
363 } | |
364 debugmsg("capflags=0x%04x, pid=%d", hgc->capflags, hgc->pid); | |
365 } | |
366 | |
30751 | 367 static void updateprocname(hgclient_t *hgc) |
368 { | |
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369 int r = snprintf(hgc->ctx.data, hgc->ctx.maxdatasize, |
30751 | 370 "chg[worker/%d]", (int)getpid()); |
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371 if (r < 0 || (size_t)r >= hgc->ctx.maxdatasize) |
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372 abortmsg("insufficient buffer to write procname (r = %d)", r); |
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373 hgc->ctx.datasize = (size_t)r; |
30751 | 374 writeblockrequest(hgc, "setprocname"); |
375 } | |
376 | |
28060 | 377 static void attachio(hgclient_t *hgc) |
378 { | |
379 debugmsg("request attachio"); | |
380 static const char chcmd[] = "attachio\n"; | |
381 sendall(hgc->sockfd, chcmd, sizeof(chcmd) - 1); | |
382 readchannel(hgc); | |
383 context_t *ctx = &hgc->ctx; | |
384 if (ctx->ch != 'I') | |
385 abortmsg("unexpected response for attachio (ch = %c)", ctx->ch); | |
386 | |
387 static const int fds[3] = {STDIN_FILENO, STDOUT_FILENO, STDERR_FILENO}; | |
388 struct msghdr msgh; | |
389 memset(&msgh, 0, sizeof(msgh)); | |
390 struct iovec iov = {ctx->data, ctx->datasize}; /* dummy payload */ | |
391 msgh.msg_iov = &iov; | |
392 msgh.msg_iovlen = 1; | |
393 char fdbuf[CMSG_SPACE(sizeof(fds))]; | |
394 msgh.msg_control = fdbuf; | |
395 msgh.msg_controllen = sizeof(fdbuf); | |
396 struct cmsghdr *cmsg = CMSG_FIRSTHDR(&msgh); | |
397 cmsg->cmsg_level = SOL_SOCKET; | |
398 cmsg->cmsg_type = SCM_RIGHTS; | |
399 cmsg->cmsg_len = CMSG_LEN(sizeof(fds)); | |
400 memcpy(CMSG_DATA(cmsg), fds, sizeof(fds)); | |
401 msgh.msg_controllen = cmsg->cmsg_len; | |
402 ssize_t r = sendmsg(hgc->sockfd, &msgh, 0); | |
403 if (r < 0) | |
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404 abortmsgerrno("sendmsg failed"); |
28060 | 405 |
406 handleresponse(hgc); | |
407 int32_t n; | |
408 if (ctx->datasize != sizeof(n)) | |
409 abortmsg("unexpected size of attachio result"); | |
410 memcpy(&n, ctx->data, sizeof(n)); | |
411 n = ntohl(n); | |
412 if (n != sizeof(fds) / sizeof(fds[0])) | |
413 abortmsg("failed to send fds (n = %d)", n); | |
414 } | |
415 | |
416 static void chdirtocwd(hgclient_t *hgc) | |
417 { | |
418 if (!getcwd(hgc->ctx.data, hgc->ctx.maxdatasize)) | |
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419 abortmsgerrno("failed to getcwd"); |
28060 | 420 hgc->ctx.datasize = strlen(hgc->ctx.data); |
421 writeblockrequest(hgc, "chdir"); | |
422 } | |
423 | |
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424 static void forwardumask(hgclient_t *hgc) |
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425 { |
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426 mode_t mask = umask(0); |
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427 umask(mask); |
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428 |
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429 static const char command[] = "setumask\n"; |
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430 sendall(hgc->sockfd, command, sizeof(command) - 1); |
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431 uint32_t data = htonl(mask); |
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432 sendall(hgc->sockfd, &data, sizeof(data)); |
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433 } |
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434 |
28060 | 435 /*! |
436 * Open connection to per-user cmdserver | |
437 * | |
438 * If no background server running, returns NULL. | |
439 */ | |
440 hgclient_t *hgc_open(const char *sockname) | |
441 { | |
442 int fd = socket(AF_UNIX, SOCK_STREAM, 0); | |
443 if (fd < 0) | |
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444 abortmsgerrno("cannot create socket"); |
28060 | 445 |
446 /* don't keep fd on fork(), so that it can be closed when the parent | |
447 * process get terminated. */ | |
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448 fsetcloexec(fd); |
28060 | 449 |
450 struct sockaddr_un addr; | |
451 addr.sun_family = AF_UNIX; | |
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452 |
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453 /* use chdir to workaround small sizeof(sun_path) */ |
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454 int bakfd = -1; |
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455 const char *basename = sockname; |
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456 { |
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457 const char *split = strrchr(sockname, '/'); |
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458 if (split && split != sockname) { |
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459 if (split[1] == '\0') |
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460 abortmsg("sockname cannot end with a slash"); |
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461 size_t len = split - sockname; |
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462 char sockdir[len + 1]; |
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463 memcpy(sockdir, sockname, len); |
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464 sockdir[len] = '\0'; |
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465 |
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466 bakfd = open(".", O_DIRECTORY); |
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467 if (bakfd == -1) |
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468 abortmsgerrno("cannot open cwd"); |
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469 |
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470 int r = chdir(sockdir); |
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471 if (r != 0) |
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472 abortmsgerrno("cannot chdir %s", sockdir); |
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473 |
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474 basename = split + 1; |
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475 } |
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476 } |
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477 if (strlen(basename) >= sizeof(addr.sun_path)) |
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478 abortmsg("sockname is too long: %s", basename); |
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479 strncpy(addr.sun_path, basename, sizeof(addr.sun_path)); |
28060 | 480 addr.sun_path[sizeof(addr.sun_path) - 1] = '\0'; |
481 | |
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482 /* real connect */ |
28060 | 483 int r = connect(fd, (struct sockaddr *)&addr, sizeof(addr)); |
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484 if (r < 0) { |
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485 if (errno != ENOENT && errno != ECONNREFUSED) |
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486 abortmsgerrno("cannot connect to %s", sockname); |
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487 } |
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488 if (bakfd != -1) { |
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489 fchdirx(bakfd); |
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490 close(bakfd); |
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491 } |
28060 | 492 if (r < 0) { |
493 close(fd); | |
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494 return NULL; |
28060 | 495 } |
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496 debugmsg("connected to %s", addr.sun_path); |
28060 | 497 |
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498 hgclient_t *hgc = mallocx(sizeof(hgclient_t)); |
28060 | 499 memset(hgc, 0, sizeof(*hgc)); |
500 hgc->sockfd = fd; | |
501 initcontext(&hgc->ctx); | |
502 | |
503 readhello(hgc); | |
504 if (!(hgc->capflags & CAP_RUNCOMMAND)) | |
505 abortmsg("insufficient capability: runcommand"); | |
30751 | 506 if (hgc->capflags & CAP_SETPROCNAME) |
507 updateprocname(hgc); | |
28060 | 508 if (hgc->capflags & CAP_ATTACHIO) |
509 attachio(hgc); | |
510 if (hgc->capflags & CAP_CHDIR) | |
511 chdirtocwd(hgc); | |
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512 if (hgc->capflags & CAP_SETUMASK) |
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513 forwardumask(hgc); |
28060 | 514 |
515 return hgc; | |
516 } | |
517 | |
518 /*! | |
519 * Close connection and free allocated memory | |
520 */ | |
521 void hgc_close(hgclient_t *hgc) | |
522 { | |
523 assert(hgc); | |
524 freecontext(&hgc->ctx); | |
525 close(hgc->sockfd); | |
526 free(hgc); | |
527 } | |
528 | |
29581 | 529 pid_t hgc_peerpgid(const hgclient_t *hgc) |
530 { | |
531 assert(hgc); | |
532 return hgc->pgid; | |
533 } | |
534 | |
28060 | 535 pid_t hgc_peerpid(const hgclient_t *hgc) |
536 { | |
537 assert(hgc); | |
538 return hgc->pid; | |
539 } | |
540 | |
541 /*! | |
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542 * Send command line arguments to let the server load the repo config and check |
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543 * whether it can process our request directly or not. |
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544 * Make sure hgc_setenv is called before calling this. |
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545 * |
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546 * @return - NULL, the server believes it can handle our request, or does not |
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547 * support "validate" command. |
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548 * - a list of strings, the server probably cannot handle our request |
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549 * and it sent instructions telling us what to do next. See |
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550 * chgserver.py for possible instruction formats. |
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551 * the list should be freed by the caller. |
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552 * the last string is guaranteed to be NULL. |
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553 */ |
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554 const char **hgc_validate(hgclient_t *hgc, const char *const args[], |
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555 size_t argsize) |
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556 { |
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557 assert(hgc); |
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558 if (!(hgc->capflags & CAP_VALIDATE)) |
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559 return NULL; |
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560 |
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561 packcmdargs(&hgc->ctx, args, argsize); |
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562 writeblockrequest(hgc, "validate"); |
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563 handleresponse(hgc); |
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564 |
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565 /* the server returns '\0' if it can handle our request */ |
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566 if (hgc->ctx.datasize <= 1) |
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567 return NULL; |
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568 |
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569 /* make sure the buffer is '\0' terminated */ |
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570 enlargecontext(&hgc->ctx, hgc->ctx.datasize + 1); |
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571 hgc->ctx.data[hgc->ctx.datasize] = '\0'; |
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572 return unpackcmdargsnul(&hgc->ctx); |
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573 } |
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574 |
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575 /*! |
28060 | 576 * Execute the specified Mercurial command |
577 * | |
578 * @return result code | |
579 */ | |
580 int hgc_runcommand(hgclient_t *hgc, const char *const args[], size_t argsize) | |
581 { | |
582 assert(hgc); | |
583 | |
584 packcmdargs(&hgc->ctx, args, argsize); | |
585 writeblockrequest(hgc, "runcommand"); | |
586 handleresponse(hgc); | |
587 | |
588 int32_t exitcode_n; | |
589 if (hgc->ctx.datasize != sizeof(exitcode_n)) { | |
590 abortmsg("unexpected size of exitcode"); | |
591 } | |
592 memcpy(&exitcode_n, hgc->ctx.data, sizeof(exitcode_n)); | |
593 return ntohl(exitcode_n); | |
594 } | |
595 | |
596 /*! | |
597 * (Re-)send client's stdio channels so that the server can access to tty | |
598 */ | |
599 void hgc_attachio(hgclient_t *hgc) | |
600 { | |
601 assert(hgc); | |
602 if (!(hgc->capflags & CAP_ATTACHIO)) | |
603 return; | |
604 attachio(hgc); | |
605 } | |
606 | |
607 /*! | |
608 * Update server's environment variables | |
609 * | |
610 * @param envp list of environment variables in "NAME=VALUE" format, | |
611 * terminated by NULL. | |
612 */ | |
613 void hgc_setenv(hgclient_t *hgc, const char *const envp[]) | |
614 { | |
615 assert(hgc && envp); | |
616 if (!(hgc->capflags & CAP_SETENV)) | |
617 return; | |
618 packcmdargs(&hgc->ctx, envp, /*argsize*/ -1); | |
619 writeblockrequest(hgc, "setenv"); | |
620 } |