1 // Copyright (c) 2007 The NetBSD Foundation, Inc.
2 // All rights reserved.
3 //
4 // Redistribution and use in source and binary forms, with or without
5 // modification, are permitted provided that the following conditions
6 // are met:
7 // 1. Redistributions of source code must retain the above copyright
8 // notice, this list of conditions and the following disclaimer.
9 // 2. Redistributions in binary form must reproduce the above copyright
10 // notice, this list of conditions and the following disclaimer in the
11 // documentation and/or other materials provided with the distribution.
12 //
13 // THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND
14 // CONTRIBUTORS ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
15 // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
16 // MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
17 // IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS BE LIABLE FOR ANY
18 // DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 // DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
20 // GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
21 // INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
22 // IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
23 // OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
24 // IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25
26 #include "atf-c++/detail/fs.hpp"
27
28 #if defined(HAVE_CONFIG_H)
29 #include "config.h"
30 #endif
31
32 extern "C" {
33 #include <sys/param.h>
34 #include <sys/types.h>
35 #include <sys/mount.h>
36 #include <sys/stat.h>
37 #include <sys/wait.h>
38 #include <dirent.h>
39 #include <libgen.h>
40 #include <unistd.h>
41 }
42
43 #include <cerrno>
44 #include <cstdlib>
45 #include <cstring>
46
47 extern "C" {
48 #include "atf-c/error.h"
49 }
50
51 #include "atf-c++/detail/env.hpp"
52 #include "atf-c++/detail/exceptions.hpp"
53 #include "atf-c++/detail/process.hpp"
54 #include "atf-c++/detail/sanity.hpp"
55 #include "atf-c++/detail/text.hpp"
56 #include "atf-c++/utils.hpp"
57
58 namespace impl = atf::fs;
59 #define IMPL_NAME "atf::fs"
60
61 // ------------------------------------------------------------------------
62 // Auxiliary functions.
63 // ------------------------------------------------------------------------
64
65 static bool safe_access(const impl::path&, int, int);
66
67 //!
68 //! \brief A controlled version of access(2).
69 //!
70 //! This function reimplements the standard access(2) system call to
71 //! safely control its exit status and raise an exception in case of
72 //! failure.
73 //!
74 static
75 bool
safe_access(const impl::path & p,int mode,int experr)76 safe_access(const impl::path& p, int mode, int experr)
77 {
78 bool ok;
79
80 atf_error_t err = atf_fs_eaccess(p.c_path(), mode);
81 if (atf_is_error(err)) {
82 if (atf_error_is(err, "libc")) {
83 if (atf_libc_error_code(err) == experr) {
84 atf_error_free(err);
85 ok = false;
86 } else {
87 atf::throw_atf_error(err);
88 // XXX Silence warning; maybe throw_atf_error should be
89 // an exception and not a function.
90 ok = false;
91 }
92 } else {
93 atf::throw_atf_error(err);
94 // XXX Silence warning; maybe throw_atf_error should be
95 // an exception and not a function.
96 ok = false;
97 }
98 } else
99 ok = true;
100
101 return ok;
102 }
103
104 // ------------------------------------------------------------------------
105 // The "path" class.
106 // ------------------------------------------------------------------------
107
path(const std::string & s)108 impl::path::path(const std::string& s)
109 {
110 atf_error_t err = atf_fs_path_init_fmt(&m_path, "%s", s.c_str());
111 if (atf_is_error(err))
112 throw_atf_error(err);
113 }
114
path(const path & p)115 impl::path::path(const path& p)
116 {
117 atf_error_t err = atf_fs_path_copy(&m_path, &p.m_path);
118 if (atf_is_error(err))
119 throw_atf_error(err);
120 }
121
path(const atf_fs_path_t * p)122 impl::path::path(const atf_fs_path_t *p)
123 {
124 atf_error_t err = atf_fs_path_copy(&m_path, p);
125 if (atf_is_error(err))
126 throw_atf_error(err);
127 }
128
~path(void)129 impl::path::~path(void)
130 {
131 atf_fs_path_fini(&m_path);
132 }
133
134 const char*
c_str(void) const135 impl::path::c_str(void)
136 const
137 {
138 return atf_fs_path_cstring(&m_path);
139 }
140
141 const atf_fs_path_t*
c_path(void) const142 impl::path::c_path(void)
143 const
144 {
145 return &m_path;
146 }
147
148 std::string
str(void) const149 impl::path::str(void)
150 const
151 {
152 return c_str();
153 }
154
155 bool
is_absolute(void) const156 impl::path::is_absolute(void)
157 const
158 {
159 return atf_fs_path_is_absolute(&m_path);
160 }
161
162 bool
is_root(void) const163 impl::path::is_root(void)
164 const
165 {
166 return atf_fs_path_is_root(&m_path);
167 }
168
169 impl::path
branch_path(void) const170 impl::path::branch_path(void)
171 const
172 {
173 atf_fs_path_t bp;
174 atf_error_t err;
175
176 err = atf_fs_path_branch_path(&m_path, &bp);
177 if (atf_is_error(err))
178 throw_atf_error(err);
179
180 path p(atf_fs_path_cstring(&bp));
181 atf_fs_path_fini(&bp);
182 return p;
183 }
184
185 std::string
leaf_name(void) const186 impl::path::leaf_name(void)
187 const
188 {
189 atf_dynstr_t ln;
190 atf_error_t err;
191
192 err = atf_fs_path_leaf_name(&m_path, &ln);
193 if (atf_is_error(err))
194 throw_atf_error(err);
195
196 std::string s(atf_dynstr_cstring(&ln));
197 atf_dynstr_fini(&ln);
198 return s;
199 }
200
201 impl::path
to_absolute(void) const202 impl::path::to_absolute(void)
203 const
204 {
205 atf_fs_path_t pa;
206
207 atf_error_t err = atf_fs_path_to_absolute(&m_path, &pa);
208 if (atf_is_error(err))
209 throw_atf_error(err);
210
211 path p(atf_fs_path_cstring(&pa));
212 atf_fs_path_fini(&pa);
213 return p;
214 }
215
216 impl::path&
operator =(const path & p)217 impl::path::operator=(const path& p)
218 {
219 atf_fs_path_t tmp;
220
221 atf_error_t err = atf_fs_path_init_fmt(&tmp, "%s", p.c_str());
222 if (atf_is_error(err))
223 throw_atf_error(err);
224 else {
225 atf_fs_path_fini(&m_path);
226 m_path = tmp;
227 }
228
229 return *this;
230 }
231
232 bool
operator ==(const path & p) const233 impl::path::operator==(const path& p)
234 const
235 {
236 return atf_equal_fs_path_fs_path(&m_path, &p.m_path);
237 }
238
239 bool
operator !=(const path & p) const240 impl::path::operator!=(const path& p)
241 const
242 {
243 return !atf_equal_fs_path_fs_path(&m_path, &p.m_path);
244 }
245
246 impl::path
operator /(const std::string & p) const247 impl::path::operator/(const std::string& p)
248 const
249 {
250 path p2 = *this;
251
252 atf_error_t err = atf_fs_path_append_fmt(&p2.m_path, "%s", p.c_str());
253 if (atf_is_error(err))
254 throw_atf_error(err);
255
256 return p2;
257 }
258
259 impl::path
operator /(const path & p) const260 impl::path::operator/(const path& p)
261 const
262 {
263 path p2 = *this;
264
265 atf_error_t err = atf_fs_path_append_fmt(&p2.m_path, "%s",
266 atf_fs_path_cstring(&p.m_path));
267 if (atf_is_error(err))
268 throw_atf_error(err);
269
270 return p2;
271 }
272
273 bool
operator <(const path & p) const274 impl::path::operator<(const path& p)
275 const
276 {
277 const char *s1 = atf_fs_path_cstring(&m_path);
278 const char *s2 = atf_fs_path_cstring(&p.m_path);
279 return std::strcmp(s1, s2) < 0;
280 }
281
282 // ------------------------------------------------------------------------
283 // The "file_info" class.
284 // ------------------------------------------------------------------------
285
286 const int impl::file_info::blk_type = atf_fs_stat_blk_type;
287 const int impl::file_info::chr_type = atf_fs_stat_chr_type;
288 const int impl::file_info::dir_type = atf_fs_stat_dir_type;
289 const int impl::file_info::fifo_type = atf_fs_stat_fifo_type;
290 const int impl::file_info::lnk_type = atf_fs_stat_lnk_type;
291 const int impl::file_info::reg_type = atf_fs_stat_reg_type;
292 const int impl::file_info::sock_type = atf_fs_stat_sock_type;
293 const int impl::file_info::wht_type = atf_fs_stat_wht_type;
294
file_info(const path & p)295 impl::file_info::file_info(const path& p)
296 {
297 atf_error_t err;
298
299 err = atf_fs_stat_init(&m_stat, p.c_path());
300 if (atf_is_error(err))
301 throw_atf_error(err);
302 }
303
file_info(const file_info & fi)304 impl::file_info::file_info(const file_info& fi)
305 {
306 atf_fs_stat_copy(&m_stat, &fi.m_stat);
307 }
308
~file_info(void)309 impl::file_info::~file_info(void)
310 {
311 atf_fs_stat_fini(&m_stat);
312 }
313
314 dev_t
get_device(void) const315 impl::file_info::get_device(void)
316 const
317 {
318 return atf_fs_stat_get_device(&m_stat);
319 }
320
321 ino_t
get_inode(void) const322 impl::file_info::get_inode(void)
323 const
324 {
325 return atf_fs_stat_get_inode(&m_stat);
326 }
327
328 mode_t
get_mode(void) const329 impl::file_info::get_mode(void)
330 const
331 {
332 return atf_fs_stat_get_mode(&m_stat);
333 }
334
335 off_t
get_size(void) const336 impl::file_info::get_size(void)
337 const
338 {
339 return atf_fs_stat_get_size(&m_stat);
340 }
341
342 int
get_type(void) const343 impl::file_info::get_type(void)
344 const
345 {
346 return atf_fs_stat_get_type(&m_stat);
347 }
348
349 bool
is_owner_readable(void) const350 impl::file_info::is_owner_readable(void)
351 const
352 {
353 return atf_fs_stat_is_owner_readable(&m_stat);
354 }
355
356 bool
is_owner_writable(void) const357 impl::file_info::is_owner_writable(void)
358 const
359 {
360 return atf_fs_stat_is_owner_writable(&m_stat);
361 }
362
363 bool
is_owner_executable(void) const364 impl::file_info::is_owner_executable(void)
365 const
366 {
367 return atf_fs_stat_is_owner_executable(&m_stat);
368 }
369
370 bool
is_group_readable(void) const371 impl::file_info::is_group_readable(void)
372 const
373 {
374 return atf_fs_stat_is_group_readable(&m_stat);
375 }
376
377 bool
is_group_writable(void) const378 impl::file_info::is_group_writable(void)
379 const
380 {
381 return atf_fs_stat_is_group_writable(&m_stat);
382 }
383
384 bool
is_group_executable(void) const385 impl::file_info::is_group_executable(void)
386 const
387 {
388 return atf_fs_stat_is_group_executable(&m_stat);
389 }
390
391 bool
is_other_readable(void) const392 impl::file_info::is_other_readable(void)
393 const
394 {
395 return atf_fs_stat_is_other_readable(&m_stat);
396 }
397
398 bool
is_other_writable(void) const399 impl::file_info::is_other_writable(void)
400 const
401 {
402 return atf_fs_stat_is_other_writable(&m_stat);
403 }
404
405 bool
is_other_executable(void) const406 impl::file_info::is_other_executable(void)
407 const
408 {
409 return atf_fs_stat_is_other_executable(&m_stat);
410 }
411
412 // ------------------------------------------------------------------------
413 // The "directory" class.
414 // ------------------------------------------------------------------------
415
directory(const path & p)416 impl::directory::directory(const path& p)
417 {
418 DIR* dp = ::opendir(p.c_str());
419 if (dp == NULL)
420 throw system_error(IMPL_NAME "::directory::directory(" +
421 p.str() + ")", "opendir(3) failed", errno);
422
423 struct dirent* dep;
424 while ((dep = ::readdir(dp)) != NULL) {
425 path entryp = p / dep->d_name;
426 insert(value_type(dep->d_name, file_info(entryp)));
427 }
428
429 if (::closedir(dp) == -1)
430 throw system_error(IMPL_NAME "::directory::directory(" +
431 p.str() + ")", "closedir(3) failed", errno);
432 }
433
434 std::set< std::string >
names(void) const435 impl::directory::names(void)
436 const
437 {
438 std::set< std::string > ns;
439
440 for (const_iterator iter = begin(); iter != end(); iter++)
441 ns.insert((*iter).first);
442
443 return ns;
444 }
445
446 // ------------------------------------------------------------------------
447 // Free functions.
448 // ------------------------------------------------------------------------
449
450 bool
exists(const path & p)451 impl::exists(const path& p)
452 {
453 atf_error_t err;
454 bool b;
455
456 err = atf_fs_exists(p.c_path(), &b);
457 if (atf_is_error(err))
458 throw_atf_error(err);
459
460 return b;
461 }
462
463 bool
have_prog_in_path(const std::string & prog)464 impl::have_prog_in_path(const std::string& prog)
465 {
466 PRE(prog.find('/') == std::string::npos);
467
468 // Do not bother to provide a default value for PATH. If it is not
469 // there something is broken in the user's environment.
470 if (!atf::env::has("PATH"))
471 throw std::runtime_error("PATH not defined in the environment");
472 std::vector< std::string > dirs =
473 atf::text::split(atf::env::get("PATH"), ":");
474
475 bool found = false;
476 for (std::vector< std::string >::const_iterator iter = dirs.begin();
477 !found && iter != dirs.end(); iter++) {
478 const path& dir = path(*iter);
479
480 if (is_executable(dir / prog))
481 found = true;
482 }
483 return found;
484 }
485
486 bool
is_executable(const path & p)487 impl::is_executable(const path& p)
488 {
489 if (!exists(p))
490 return false;
491 return safe_access(p, atf_fs_access_x, EACCES);
492 }
493
494 void
remove(const path & p)495 impl::remove(const path& p)
496 {
497 if (file_info(p).get_type() == file_info::dir_type)
498 throw atf::system_error(IMPL_NAME "::remove(" + p.str() + ")",
499 "Is a directory",
500 EPERM);
501 if (::unlink(p.c_str()) == -1)
502 throw atf::system_error(IMPL_NAME "::remove(" + p.str() + ")",
503 "unlink(" + p.str() + ") failed",
504 errno);
505 }
506
507 void
rmdir(const path & p)508 impl::rmdir(const path& p)
509 {
510 atf_error_t err = atf_fs_rmdir(p.c_path());
511 if (atf_is_error(err))
512 throw_atf_error(err);
513 }
514