t_ptrace_wait.h revision 1.39 1 1.39 riastrad /* $NetBSD: t_ptrace_wait.h,v 1.39 2025/05/02 02:30:21 riastradh Exp $ */
2 1.1 kamil
3 1.1 kamil /*-
4 1.14 kamil * Copyright (c) 2016, 2017, 2018, 2019 The NetBSD Foundation, Inc.
5 1.1 kamil * All rights reserved.
6 1.1 kamil *
7 1.1 kamil * Redistribution and use in source and binary forms, with or without
8 1.1 kamil * modification, are permitted provided that the following conditions
9 1.1 kamil * are met:
10 1.1 kamil * 1. Redistributions of source code must retain the above copyright
11 1.1 kamil * notice, this list of conditions and the following disclaimer.
12 1.1 kamil * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 kamil * notice, this list of conditions and the following disclaimer in the
14 1.1 kamil * documentation and/or other materials provided with the distribution.
15 1.1 kamil *
16 1.1 kamil * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
17 1.1 kamil * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
18 1.1 kamil * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
19 1.1 kamil * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
20 1.1 kamil * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
21 1.1 kamil * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
22 1.1 kamil * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
23 1.1 kamil * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
24 1.1 kamil * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
25 1.1 kamil * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
26 1.1 kamil * POSSIBILITY OF SUCH DAMAGE.
27 1.1 kamil */
28 1.1 kamil
29 1.1 kamil /* Detect plain wait(2) use-case */
30 1.1 kamil #if !defined(TWAIT_WAITPID) && \
31 1.1 kamil !defined(TWAIT_WAITID) && \
32 1.1 kamil !defined(TWAIT_WAIT3) && \
33 1.1 kamil !defined(TWAIT_WAIT4) && \
34 1.1 kamil !defined(TWAIT_WAIT6)
35 1.1 kamil #define TWAIT_WAIT
36 1.1 kamil #endif
37 1.1 kamil
38 1.1 kamil /*
39 1.1 kamil * There are two classes of wait(2)-like functions:
40 1.1 kamil * - wait4(2)-like accepting pid_t, optional options parameter, struct rusage*
41 1.1 kamil * - wait6(2)-like accepting idtype_t, id_t, struct wrusage, mandatory options
42 1.1 kamil *
43 1.1 kamil * The TWAIT_FNAME value is to be used for convenience in debug messages.
44 1.1 kamil *
45 1.1 kamil * The TWAIT_GENERIC() macro is designed to reuse the same unmodified
46 1.1 kamil * code with as many wait(2)-like functions as possible.
47 1.1 kamil *
48 1.1 kamil * In a common use-case wait4(2) and wait6(2)-like function can work the almost
49 1.1 kamil * the same way, however there are few important differences:
50 1.1 kamil * wait6(2) must specify P_PID for idtype to match wpid from wait4(2).
51 1.1 kamil * To behave like wait4(2), wait6(2) the 'options' to wait must include
52 1.1 kamil * WEXITED|WTRUNCATED.
53 1.1 kamil *
54 1.1 kamil * There are two helper macros (they purpose it to mach more than one
55 1.1 kamil * wait(2)-like function):
56 1.1 kamil * The TWAIT_HAVE_STATUS - specifies whether a function can retrieve
57 1.1 kamil * status (as integer value).
58 1.1 kamil * The TWAIT_HAVE_PID - specifies whether a function can request
59 1.1 kamil * exact process identifier
60 1.1 kamil * The TWAIT_HAVE_RUSAGE - specifies whether a function can request
61 1.1 kamil * the struct rusage value
62 1.1 kamil *
63 1.1 kamil */
64 1.1 kamil
65 1.1 kamil #if defined(TWAIT_WAIT)
66 1.1 kamil # define TWAIT_FNAME "wait"
67 1.1 kamil # define TWAIT_WAIT4TYPE(a,b,c,d) wait((b))
68 1.1 kamil # define TWAIT_GENERIC(a,b,c) wait((b))
69 1.1 kamil # define TWAIT_HAVE_STATUS 1
70 1.1 kamil #elif defined(TWAIT_WAITPID)
71 1.1 kamil # define TWAIT_FNAME "waitpid"
72 1.1 kamil # define TWAIT_WAIT4TYPE(a,b,c,d) waitpid((a),(b),(c))
73 1.1 kamil # define TWAIT_GENERIC(a,b,c) waitpid((a),(b),(c))
74 1.1 kamil # define TWAIT_HAVE_PID 1
75 1.1 kamil # define TWAIT_HAVE_STATUS 1
76 1.19 kamil # define TWAIT_HAVE_OPTIONS 1
77 1.1 kamil #elif defined(TWAIT_WAITID)
78 1.1 kamil # define TWAIT_FNAME "waitid"
79 1.1 kamil # define TWAIT_GENERIC(a,b,c) \
80 1.1 kamil waitid(P_PID,(a),NULL,(c)|WEXITED|WTRAPPED)
81 1.1 kamil # define TWAIT_WAIT6TYPE(a,b,c,d,e,f) waitid((a),(b),(f),(d))
82 1.1 kamil # define TWAIT_HAVE_PID 1
83 1.19 kamil # define TWAIT_HAVE_OPTIONS 1
84 1.1 kamil #elif defined(TWAIT_WAIT3)
85 1.1 kamil # define TWAIT_FNAME "wait3"
86 1.1 kamil # define TWAIT_WAIT4TYPE(a,b,c,d) wait3((b),(c),(d))
87 1.1 kamil # define TWAIT_GENERIC(a,b,c) wait3((b),(c),NULL)
88 1.1 kamil # define TWAIT_HAVE_STATUS 1
89 1.1 kamil # define TWAIT_HAVE_RUSAGE 1
90 1.19 kamil # define TWAIT_HAVE_OPTIONS 1
91 1.1 kamil #elif defined(TWAIT_WAIT4)
92 1.1 kamil # define TWAIT_FNAME "wait4"
93 1.1 kamil # define TWAIT_WAIT4TYPE(a,b,c,d) wait4((a),(b),(c),(d))
94 1.1 kamil # define TWAIT_GENERIC(a,b,c) wait4((a),(b),(c),NULL)
95 1.1 kamil # define TWAIT_HAVE_PID 1
96 1.1 kamil # define TWAIT_HAVE_STATUS 1
97 1.1 kamil # define TWAIT_HAVE_RUSAGE 1
98 1.19 kamil # define TWAIT_HAVE_OPTIONS 1
99 1.1 kamil #elif defined(TWAIT_WAIT6)
100 1.1 kamil # define TWAIT_FNAME "wait6"
101 1.1 kamil # define TWAIT_WAIT6TYPE(a,b,c,d,e,f) wait6((a),(b),(c),(d),(e),(f))
102 1.1 kamil # define TWAIT_GENERIC(a,b,c) \
103 1.1 kamil wait6(P_PID,(a),(b),(c)|WEXITED|WTRAPPED,NULL,NULL)
104 1.1 kamil # define TWAIT_HAVE_PID 1
105 1.1 kamil # define TWAIT_HAVE_STATUS 1
106 1.19 kamil # define TWAIT_HAVE_OPTIONS 1
107 1.1 kamil #endif
108 1.1 kamil
109 1.1 kamil /*
110 1.1 kamil * There are 3 groups of tests:
111 1.1 kamil * - TWAIT_GENERIC() (wait, wait2, waitpid, wait3, wait4, wait6)
112 1.1 kamil * - TWAIT_WAIT4TYPE() (wait2, waitpid, wait3, wait4)
113 1.1 kamil * - TWAIT_WAIT6TYPE() (waitid, wait6)
114 1.1 kamil *
115 1.1 kamil * Tests only in the above categories are allowed. However some tests are not
116 1.1 kamil * possible in the context requested functionality to be verified, therefore
117 1.1 kamil * there are helper macros:
118 1.1 kamil * - TWAIT_HAVE_PID (wait2, waitpid, waitid, wait4, wait6)
119 1.1 kamil * - TWAIT_HAVE_STATUS (wait, wait2, waitpid, wait3, wait4, wait6)
120 1.1 kamil * - TWAIT_HAVE_RUSAGE (wait3, wait4)
121 1.1 kamil * - TWAIT_HAVE_RETPID (wait, wait2, waitpid, wait3, wait4, wait6)
122 1.1 kamil *
123 1.1 kamil * If there is an intention to test e.g. wait6(2) specific features in the
124 1.1 kamil * ptrace(2) context, find the most matching group and with #ifdefs reduce
125 1.1 kamil * functionality of less featured than wait6(2) interface (TWAIT_WAIT6TYPE).
126 1.1 kamil *
127 1.1 kamil * For clarity never use negative preprocessor checks, like:
128 1.1 kamil * #if !defined(TWAIT_WAIT4)
129 1.1 kamil * always refer to checks for positive values.
130 1.1 kamil */
131 1.1 kamil
132 1.1 kamil #define TEST_REQUIRE_EQ(x, y) \
133 1.1 kamil do { \
134 1.1 kamil uintmax_t vx = (x); \
135 1.1 kamil uintmax_t vy = (y); \
136 1.1 kamil int ret = vx == vy; \
137 1.1 kamil if (!ret) \
138 1.1 kamil ATF_REQUIRE_EQ_MSG(vx, vy, "%s(%ju) == %s(%ju)", \
139 1.1 kamil #x, vx, #y, vy); \
140 1.1 kamil } while (/*CONSTCOND*/0)
141 1.1 kamil
142 1.1 kamil /*
143 1.1 kamil * A child process cannot call atf functions and expect them to magically
144 1.1 kamil * work like in the parent.
145 1.1 kamil * The printf(3) messaging from a child will not work out of the box as well
146 1.34 andvar * without establishing a communication protocol with its parent. To not
147 1.1 kamil * overcomplicate the tests - do not log from a child and use err(3)/errx(3)
148 1.1 kamil * wrapped with FORKEE_ASSERT()/FORKEE_ASSERTX() as that is guaranteed to work.
149 1.1 kamil */
150 1.1 kamil #define FORKEE_ASSERT_EQ(x, y) \
151 1.1 kamil do { \
152 1.1 kamil uintmax_t vx = (x); \
153 1.1 kamil uintmax_t vy = (y); \
154 1.1 kamil int ret = vx == vy; \
155 1.1 kamil if (!ret) \
156 1.1 kamil errx(EXIT_FAILURE, "%s:%d %s(): Assertion failed for: " \
157 1.39 riastrad "%s(%jd=0x%jx) == %s(%jd=0x%jx)", \
158 1.39 riastrad __FILE__, __LINE__, __func__, \
159 1.39 riastrad #x, vx, vx, #y, vy, vy); \
160 1.1 kamil } while (/*CONSTCOND*/0)
161 1.1 kamil
162 1.5 kamil #define FORKEE_ASSERT_NEQ(x, y) \
163 1.5 kamil do { \
164 1.5 kamil uintmax_t vx = (x); \
165 1.5 kamil uintmax_t vy = (y); \
166 1.5 kamil int ret = vx != vy; \
167 1.5 kamil if (!ret) \
168 1.5 kamil errx(EXIT_FAILURE, "%s:%d %s(): Assertion failed for: " \
169 1.39 riastrad "%s(%ju=0x%jx) != %s(%ju=0x%jx)", \
170 1.39 riastrad __FILE__, __LINE__, __func__, \
171 1.39 riastrad #x, vx, vx, #y, vy, vy); \
172 1.5 kamil } while (/*CONSTCOND*/0)
173 1.5 kamil
174 1.38 riastrad __unused /* used by FORKEE_ASSERT_MEMEQ, otherwise not used */
175 1.38 riastrad static void
176 1.38 riastrad hexdump(const char *title, const void *buf, size_t len)
177 1.38 riastrad {
178 1.38 riastrad const unsigned char *p = buf;
179 1.38 riastrad size_t i;
180 1.38 riastrad
181 1.38 riastrad fprintf(stderr, "%s (%zu bytes)\n", title, len);
182 1.38 riastrad for (i = 0; i < len; i++) {
183 1.38 riastrad if ((i % 8) == 0)
184 1.38 riastrad fprintf(stderr, " ");
185 1.38 riastrad fprintf(stderr, "%02hhx", p[i]);
186 1.38 riastrad if ((i % 16) == 0)
187 1.38 riastrad fprintf(stderr, "\n");
188 1.38 riastrad }
189 1.38 riastrad if (i % 16)
190 1.38 riastrad fprintf(stderr, "\n");
191 1.38 riastrad }
192 1.38 riastrad
193 1.38 riastrad #define FORKEE_ASSERT_MEMEQ(x, y, n) \
194 1.38 riastrad do { \
195 1.38 riastrad const void *const vx = (x); \
196 1.38 riastrad const void *const vy = (y); \
197 1.38 riastrad const size_t vn = (n); \
198 1.38 riastrad \
199 1.38 riastrad if (__predict_true(memcmp(vx, vy, vn) == 0)) \
200 1.38 riastrad break; \
201 1.38 riastrad fprintf(stderr, "%s != %s (%s = %zu bytes)\n", #x, #y, #n, vn); \
202 1.38 riastrad hexdump(#x, vx, vn); \
203 1.38 riastrad hexdump(#y, vy, vn); \
204 1.38 riastrad } while (/*CONSTCOND*/0)
205 1.38 riastrad
206 1.1 kamil #define FORKEE_ASSERTX(x) \
207 1.1 kamil do { \
208 1.1 kamil int ret = (x); \
209 1.1 kamil if (!ret) \
210 1.1 kamil errx(EXIT_FAILURE, "%s:%d %s(): Assertion failed for: %s",\
211 1.1 kamil __FILE__, __LINE__, __func__, #x); \
212 1.1 kamil } while (/*CONSTCOND*/0)
213 1.1 kamil
214 1.1 kamil #define FORKEE_ASSERT(x) \
215 1.1 kamil do { \
216 1.1 kamil int ret = (x); \
217 1.1 kamil if (!ret) \
218 1.1 kamil err(EXIT_FAILURE, "%s:%d %s(): Assertion failed for: %s",\
219 1.1 kamil __FILE__, __LINE__, __func__, #x); \
220 1.1 kamil } while (/*CONSTCOND*/0)
221 1.1 kamil
222 1.38 riastrad #define FORKEE_PTHREAD(x) \
223 1.38 riastrad do { \
224 1.38 riastrad int _forkee_pthread_error = (x); \
225 1.38 riastrad if (_forkee_pthread_error) { \
226 1.38 riastrad errno = _forkee_pthread_error; \
227 1.38 riastrad err(EXIT_FAILURE, "%s:%d %s(): %s", __FILE__, __LINE__, \
228 1.38 riastrad __func__, #x); \
229 1.38 riastrad } \
230 1.38 riastrad } while (/*CONSTCOND*/0)
231 1.38 riastrad
232 1.1 kamil /*
233 1.1 kamil * Simplify logic for functions using general purpose registers add HAVE_GPREGS
234 1.1 kamil *
235 1.1 kamil * For platforms that do not implement all needed calls for simplicity assume
236 1.1 kamil * that they are unsupported at all.
237 1.1 kamil */
238 1.1 kamil #if defined(PT_GETREGS) \
239 1.1 kamil && defined(PT_SETREGS) \
240 1.1 kamil && defined(PTRACE_REG_PC) \
241 1.1 kamil && defined(PTRACE_REG_SET_PC) \
242 1.1 kamil && defined(PTRACE_REG_SP) \
243 1.1 kamil && defined(PTRACE_REG_INTRV)
244 1.1 kamil #define HAVE_GPREGS
245 1.1 kamil #endif
246 1.1 kamil
247 1.1 kamil /* Add guards for floating point registers */
248 1.1 kamil #if defined(PT_GETFPREGS) \
249 1.1 kamil && defined(PT_SETFPREGS)
250 1.1 kamil #define HAVE_FPREGS
251 1.1 kamil #endif
252 1.1 kamil
253 1.1 kamil /* Add guards for cpu debug registers */
254 1.1 kamil #if defined(PT_GETDBREGS) \
255 1.1 kamil && defined(PT_SETDBREGS)
256 1.1 kamil #define HAVE_DBREGS
257 1.1 kamil #endif
258 1.1 kamil
259 1.1 kamil /*
260 1.1 kamil * If waitid(2) returns because one or more processes have a state change to
261 1.1 kamil * report, 0 is returned. If an error is detected, a value of -1 is returned
262 1.1 kamil * and errno is set to indicate the error. If WNOHANG is specified and there
263 1.1 kamil * are no stopped, continued or exited children, 0 is returned.
264 1.1 kamil */
265 1.1 kamil #if defined(TWAIT_WAITID)
266 1.1 kamil #define TWAIT_REQUIRE_SUCCESS(a,b) TEST_REQUIRE_EQ((a), 0)
267 1.1 kamil #define TWAIT_REQUIRE_FAILURE(a,b) ATF_REQUIRE_ERRNO((a),(b) == -1)
268 1.1 kamil #define FORKEE_REQUIRE_SUCCESS(a,b) FORKEE_ASSERT_EQ(a, 0)
269 1.1 kamil #define FORKEE_REQUIRE_FAILURE(a,b) \
270 1.1 kamil FORKEE_ASSERTX(((a) == errno) && ((b) == -1))
271 1.1 kamil #else
272 1.1 kamil #define TWAIT_REQUIRE_SUCCESS(a,b) TEST_REQUIRE_EQ((a), (b))
273 1.1 kamil #define TWAIT_REQUIRE_FAILURE(a,b) ATF_REQUIRE_ERRNO((a),(b) == -1)
274 1.1 kamil #define FORKEE_REQUIRE_SUCCESS(a,b) FORKEE_ASSERT_EQ(a, b)
275 1.1 kamil #define FORKEE_REQUIRE_FAILURE(a,b) \
276 1.1 kamil FORKEE_ASSERTX(((a) == errno) && ((b) == -1))
277 1.1 kamil #endif
278 1.1 kamil
279 1.1 kamil /*
280 1.1 kamil * Helper tools to verify whether status reports exited value
281 1.1 kamil */
282 1.1 kamil #if TWAIT_HAVE_STATUS
283 1.1 kamil static void __used
284 1.1 kamil validate_status_exited(int status, int expected)
285 1.1 kamil {
286 1.1 kamil ATF_REQUIRE_MSG(WIFEXITED(status), "Reported !exited process");
287 1.1 kamil ATF_REQUIRE_MSG(!WIFCONTINUED(status), "Reported continued process");
288 1.1 kamil ATF_REQUIRE_MSG(!WIFSIGNALED(status), "Reported signaled process");
289 1.1 kamil ATF_REQUIRE_MSG(!WIFSTOPPED(status), "Reported stopped process");
290 1.1 kamil
291 1.1 kamil ATF_REQUIRE_EQ_MSG(WEXITSTATUS(status), expected,
292 1.1 kamil "The process has exited with invalid value %d != %d",
293 1.1 kamil WEXITSTATUS(status), expected);
294 1.1 kamil }
295 1.1 kamil
296 1.1 kamil static void __used
297 1.1 kamil forkee_status_exited(int status, int expected)
298 1.1 kamil {
299 1.1 kamil FORKEE_ASSERTX(WIFEXITED(status));
300 1.1 kamil FORKEE_ASSERTX(!WIFCONTINUED(status));
301 1.1 kamil FORKEE_ASSERTX(!WIFSIGNALED(status));
302 1.1 kamil FORKEE_ASSERTX(!WIFSTOPPED(status));
303 1.1 kamil
304 1.1 kamil FORKEE_ASSERT_EQ(WEXITSTATUS(status), expected);
305 1.1 kamil }
306 1.1 kamil
307 1.1 kamil static void __used
308 1.1 kamil validate_status_continued(int status)
309 1.1 kamil {
310 1.1 kamil ATF_REQUIRE_MSG(!WIFEXITED(status), "Reported exited process");
311 1.1 kamil ATF_REQUIRE_MSG(WIFCONTINUED(status), "Reported !continued process");
312 1.1 kamil ATF_REQUIRE_MSG(!WIFSIGNALED(status), "Reported signaled process");
313 1.1 kamil ATF_REQUIRE_MSG(!WIFSTOPPED(status), "Reported stopped process");
314 1.1 kamil }
315 1.1 kamil
316 1.1 kamil static void __used
317 1.1 kamil forkee_status_continued(int status)
318 1.1 kamil {
319 1.1 kamil FORKEE_ASSERTX(!WIFEXITED(status));
320 1.1 kamil FORKEE_ASSERTX(WIFCONTINUED(status));
321 1.1 kamil FORKEE_ASSERTX(!WIFSIGNALED(status));
322 1.1 kamil FORKEE_ASSERTX(!WIFSTOPPED(status));
323 1.1 kamil }
324 1.1 kamil
325 1.1 kamil static void __used
326 1.1 kamil validate_status_signaled(int status, int expected_termsig, int expected_core)
327 1.1 kamil {
328 1.1 kamil ATF_REQUIRE_MSG(!WIFEXITED(status), "Reported exited process");
329 1.1 kamil ATF_REQUIRE_MSG(!WIFCONTINUED(status), "Reported continued process");
330 1.1 kamil ATF_REQUIRE_MSG(WIFSIGNALED(status), "Reported !signaled process");
331 1.1 kamil ATF_REQUIRE_MSG(!WIFSTOPPED(status), "Reported stopped process");
332 1.1 kamil
333 1.1 kamil ATF_REQUIRE_EQ_MSG(WTERMSIG(status), expected_termsig,
334 1.1 kamil "Unexpected signal received");
335 1.1 kamil
336 1.3 kamil ATF_REQUIRE_EQ_MSG(!!WCOREDUMP(status), expected_core,
337 1.1 kamil "Unexpectedly core file %s generated", expected_core ? "not" : "");
338 1.1 kamil }
339 1.1 kamil
340 1.1 kamil static void __used
341 1.1 kamil forkee_status_signaled(int status, int expected_termsig, int expected_core)
342 1.1 kamil {
343 1.1 kamil FORKEE_ASSERTX(!WIFEXITED(status));
344 1.1 kamil FORKEE_ASSERTX(!WIFCONTINUED(status));
345 1.1 kamil FORKEE_ASSERTX(WIFSIGNALED(status));
346 1.1 kamil FORKEE_ASSERTX(!WIFSTOPPED(status));
347 1.1 kamil
348 1.1 kamil FORKEE_ASSERT_EQ(WTERMSIG(status), expected_termsig);
349 1.3 kamil FORKEE_ASSERT_EQ(!!WCOREDUMP(status), expected_core);
350 1.1 kamil }
351 1.1 kamil
352 1.1 kamil static void __used
353 1.1 kamil validate_status_stopped(int status, int expected)
354 1.1 kamil {
355 1.1 kamil ATF_REQUIRE_MSG(!WIFEXITED(status), "Reported exited process");
356 1.1 kamil ATF_REQUIRE_MSG(!WIFCONTINUED(status), "Reported continued process");
357 1.1 kamil ATF_REQUIRE_MSG(!WIFSIGNALED(status), "Reported signaled process");
358 1.1 kamil ATF_REQUIRE_MSG(WIFSTOPPED(status), "Reported !stopped process");
359 1.1 kamil
360 1.1 kamil char st[128], ex[128];
361 1.1 kamil strlcpy(st, strsignal(WSTOPSIG(status)), sizeof(st));
362 1.1 kamil strlcpy(ex, strsignal(expected), sizeof(ex));
363 1.1 kamil
364 1.1 kamil ATF_REQUIRE_EQ_MSG(WSTOPSIG(status), expected,
365 1.1 kamil "Unexpected stop signal received [%s] != [%s]", st, ex);
366 1.1 kamil }
367 1.1 kamil
368 1.1 kamil static void __used
369 1.1 kamil forkee_status_stopped(int status, int expected)
370 1.1 kamil {
371 1.1 kamil FORKEE_ASSERTX(!WIFEXITED(status));
372 1.1 kamil FORKEE_ASSERTX(!WIFCONTINUED(status));
373 1.1 kamil FORKEE_ASSERTX(!WIFSIGNALED(status));
374 1.1 kamil FORKEE_ASSERTX(WIFSTOPPED(status));
375 1.1 kamil
376 1.1 kamil FORKEE_ASSERT_EQ(WSTOPSIG(status), expected);
377 1.1 kamil }
378 1.1 kamil #else
379 1.1 kamil #define validate_status_exited(a,b)
380 1.1 kamil #define forkee_status_exited(a,b)
381 1.1 kamil #define validate_status_continued(a,b)
382 1.1 kamil #define forkee_status_continued(a,b)
383 1.1 kamil #define validate_status_signaled(a,b,c)
384 1.1 kamil #define forkee_status_signaled(a,b,c)
385 1.1 kamil #define validate_status_stopped(a,b)
386 1.1 kamil #define forkee_status_stopped(a,b)
387 1.1 kamil #endif
388 1.1 kamil
389 1.1 kamil /* This function is currently designed to be run in the main/parent process */
390 1.1 kamil static void __used
391 1.2 kamil await_zombie_raw(pid_t process, useconds_t ms)
392 1.1 kamil {
393 1.1 kamil struct kinfo_proc2 p;
394 1.1 kamil size_t len = sizeof(p);
395 1.1 kamil
396 1.1 kamil const int name[] = {
397 1.1 kamil [0] = CTL_KERN,
398 1.1 kamil [1] = KERN_PROC2,
399 1.1 kamil [2] = KERN_PROC_PID,
400 1.1 kamil [3] = process,
401 1.1 kamil [4] = sizeof(p),
402 1.1 kamil [5] = 1
403 1.1 kamil };
404 1.1 kamil
405 1.1 kamil const size_t namelen = __arraycount(name);
406 1.1 kamil
407 1.1 kamil /* Await the process becoming a zombie */
408 1.1 kamil while(1) {
409 1.1 kamil ATF_REQUIRE(sysctl(name, namelen, &p, &len, NULL, 0) == 0);
410 1.1 kamil
411 1.1 kamil if (p.p_stat == LSZOMB)
412 1.1 kamil break;
413 1.1 kamil
414 1.2 kamil if (ms > 0) {
415 1.2 kamil ATF_REQUIRE(usleep(ms) == 0);
416 1.2 kamil }
417 1.1 kamil }
418 1.1 kamil }
419 1.1 kamil
420 1.2 kamil static void __used
421 1.2 kamil await_zombie(pid_t process)
422 1.2 kamil {
423 1.2 kamil
424 1.2 kamil await_zombie_raw(process, 1000);
425 1.2 kamil }
426 1.2 kamil
427 1.12 kamil static void __used
428 1.12 kamil await_stopped(pid_t process)
429 1.12 kamil {
430 1.12 kamil struct kinfo_proc2 p;
431 1.12 kamil size_t len = sizeof(p);
432 1.12 kamil
433 1.12 kamil const int name[] = {
434 1.12 kamil [0] = CTL_KERN,
435 1.12 kamil [1] = KERN_PROC2,
436 1.12 kamil [2] = KERN_PROC_PID,
437 1.12 kamil [3] = process,
438 1.12 kamil [4] = sizeof(p),
439 1.12 kamil [5] = 1
440 1.12 kamil };
441 1.12 kamil
442 1.12 kamil const size_t namelen = __arraycount(name);
443 1.12 kamil
444 1.12 kamil /* Await the process becoming a zombie */
445 1.12 kamil while(1) {
446 1.12 kamil ATF_REQUIRE(sysctl(name, namelen, &p, &len, NULL, 0) == 0);
447 1.12 kamil
448 1.12 kamil if (p.p_stat == LSSTOP)
449 1.12 kamil break;
450 1.12 kamil
451 1.12 kamil ATF_REQUIRE(usleep(1000) == 0);
452 1.12 kamil }
453 1.12 kamil }
454 1.12 kamil
455 1.5 kamil static pid_t __used
456 1.5 kamil await_stopped_child(pid_t process)
457 1.5 kamil {
458 1.5 kamil struct kinfo_proc2 *p = NULL;
459 1.5 kamil size_t i, len;
460 1.5 kamil pid_t child = -1;
461 1.5 kamil
462 1.5 kamil int name[] = {
463 1.5 kamil [0] = CTL_KERN,
464 1.5 kamil [1] = KERN_PROC2,
465 1.5 kamil [2] = KERN_PROC_ALL,
466 1.5 kamil [3] = 0,
467 1.5 kamil [4] = sizeof(struct kinfo_proc2),
468 1.5 kamil [5] = 0
469 1.5 kamil };
470 1.5 kamil
471 1.5 kamil const size_t namelen = __arraycount(name);
472 1.5 kamil
473 1.5 kamil /* Await the process becoming a zombie */
474 1.5 kamil while(1) {
475 1.5 kamil name[5] = 0;
476 1.5 kamil
477 1.5 kamil FORKEE_ASSERT_EQ(sysctl(name, namelen, 0, &len, NULL, 0), 0);
478 1.5 kamil
479 1.5 kamil FORKEE_ASSERT_EQ(reallocarr(&p,
480 1.5 kamil len,
481 1.5 kamil sizeof(struct kinfo_proc2)), 0);
482 1.5 kamil
483 1.5 kamil name[5] = len;
484 1.5 kamil
485 1.5 kamil FORKEE_ASSERT_EQ(sysctl(name, namelen, p, &len, NULL, 0), 0);
486 1.5 kamil
487 1.5 kamil for (i = 0; i < len/sizeof(struct kinfo_proc2); i++) {
488 1.5 kamil if (p[i].p_pid == getpid())
489 1.5 kamil continue;
490 1.5 kamil if (p[i].p_ppid != process)
491 1.5 kamil continue;
492 1.5 kamil if (p[i].p_stat != LSSTOP)
493 1.5 kamil continue;
494 1.5 kamil child = p[i].p_pid;
495 1.5 kamil break;
496 1.5 kamil }
497 1.5 kamil
498 1.5 kamil if (child != -1)
499 1.5 kamil break;
500 1.5 kamil
501 1.5 kamil FORKEE_ASSERT_EQ(usleep(1000), 0);
502 1.5 kamil }
503 1.5 kamil
504 1.5 kamil /* Free the buffer */
505 1.5 kamil FORKEE_ASSERT_EQ(reallocarr(&p, 0, sizeof(struct kinfo_proc2)), 0);
506 1.5 kamil
507 1.5 kamil return child;
508 1.5 kamil }
509 1.5 kamil
510 1.24 kamil static void __used
511 1.24 kamil await_collected(pid_t process)
512 1.24 kamil {
513 1.24 kamil struct kinfo_proc2 p;
514 1.24 kamil size_t len = sizeof(p);
515 1.24 kamil
516 1.24 kamil const int name[] = {
517 1.24 kamil [0] = CTL_KERN,
518 1.24 kamil [1] = KERN_PROC2,
519 1.24 kamil [2] = KERN_PROC_PID,
520 1.24 kamil [3] = process,
521 1.24 kamil [4] = sizeof(p),
522 1.24 kamil [5] = 1
523 1.24 kamil };
524 1.24 kamil
525 1.24 kamil const size_t namelen = __arraycount(name);
526 1.24 kamil
527 1.24 kamil /* Await the process to disappear */
528 1.24 kamil while(1) {
529 1.24 kamil FORKEE_ASSERT_EQ(sysctl(name, namelen, &p, &len, NULL, 0), 0);
530 1.24 kamil if (len == 0)
531 1.24 kamil break;
532 1.24 kamil
533 1.24 kamil ATF_REQUIRE(usleep(1000) == 0);
534 1.24 kamil }
535 1.24 kamil }
536 1.24 kamil
537 1.1 kamil /* Happy number sequence -- this function is used to just consume cpu cycles */
538 1.1 kamil #define HAPPY_NUMBER 1
539 1.1 kamil
540 1.1 kamil /* If n is not happy then its sequence ends in the cycle:
541 1.1 kamil * 4, 16, 37, 58, 89, 145, 42, 20, 4, ... */
542 1.1 kamil #define SAD_NUMBER 4
543 1.1 kamil
544 1.1 kamil /* Calculate the sum of the squares of the digits of n */
545 1.1 kamil static unsigned __used
546 1.1 kamil dsum(unsigned n)
547 1.1 kamil {
548 1.1 kamil unsigned sum, x;
549 1.1 kamil for (sum = 0; n; n /= 10) {
550 1.1 kamil x = n % 10;
551 1.1 kamil sum += x * x;
552 1.1 kamil }
553 1.1 kamil return sum;
554 1.1 kamil }
555 1.1 kamil
556 1.1 kamil /*
557 1.1 kamil * XXX: Disabled optimization is required to make tests for hardware assisted
558 1.1 kamil * traps in .text functional
559 1.1 kamil *
560 1.1 kamil * Tested with GCC 5.4 on NetBSD 7.99.47 amd64
561 1.1 kamil */
562 1.1 kamil static int __used
563 1.1 kamil #ifdef __clang__
564 1.1 kamil __attribute__((__optnone__))
565 1.1 kamil #else
566 1.1 kamil __attribute__((__optimize__("O0")))
567 1.1 kamil #endif
568 1.1 kamil check_happy(unsigned n)
569 1.1 kamil {
570 1.1 kamil for (;;) {
571 1.1 kamil unsigned total = dsum(n);
572 1.1 kamil
573 1.1 kamil if (total == HAPPY_NUMBER)
574 1.1 kamil return 1;
575 1.1 kamil if (total == SAD_NUMBER)
576 1.1 kamil return 0;
577 1.1 kamil
578 1.1 kamil n = total;
579 1.1 kamil }
580 1.1 kamil }
581 1.1 kamil
582 1.14 kamil static void * __used
583 1.13 kamil infinite_thread(void *arg __unused)
584 1.13 kamil {
585 1.13 kamil
586 1.13 kamil while (true)
587 1.13 kamil continue;
588 1.13 kamil
589 1.13 kamil __unreachable();
590 1.13 kamil }
591 1.13 kamil
592 1.15 kamil static int __used
593 1.15 kamil clone_func(void *arg)
594 1.15 kamil {
595 1.15 kamil int ret;
596 1.15 kamil
597 1.15 kamil ret = (int)(intptr_t)arg;
598 1.15 kamil
599 1.15 kamil return ret;
600 1.15 kamil }
601 1.15 kamil
602 1.4 kamil #if defined(HAVE_DBREGS)
603 1.6 kamil static bool __used
604 1.4 kamil can_we_set_dbregs(void)
605 1.4 kamil {
606 1.4 kamil static long euid = -1;
607 1.4 kamil static int user_set_dbregs = -1;
608 1.4 kamil size_t user_set_dbregs_len = sizeof(user_set_dbregs);
609 1.4 kamil
610 1.4 kamil if (euid == -1)
611 1.4 kamil euid = geteuid();
612 1.4 kamil
613 1.4 kamil if (euid == 0)
614 1.4 kamil return true;
615 1.4 kamil
616 1.4 kamil if (user_set_dbregs == -1) {
617 1.4 kamil if (sysctlbyname("security.models.extensions.user_set_dbregs",
618 1.4 kamil &user_set_dbregs, &user_set_dbregs_len, NULL, 0)
619 1.4 kamil == -1) {
620 1.4 kamil return false;
621 1.4 kamil }
622 1.4 kamil }
623 1.4 kamil
624 1.4 kamil if (user_set_dbregs > 0)
625 1.4 kamil return true;
626 1.4 kamil else
627 1.4 kamil return false;
628 1.4 kamil }
629 1.4 kamil #endif
630 1.4 kamil
631 1.8 kamil static bool __used
632 1.17 kamil get_user_va0_disable(void)
633 1.17 kamil {
634 1.17 kamil static int user_va0_disable = -1;
635 1.17 kamil size_t user_va0_disable_len = sizeof(user_va0_disable);
636 1.17 kamil
637 1.17 kamil if (user_va0_disable == -1) {
638 1.17 kamil if (sysctlbyname("vm.user_va0_disable",
639 1.17 kamil &user_va0_disable, &user_va0_disable_len, NULL, 0)
640 1.17 kamil == -1) {
641 1.17 kamil return true;
642 1.17 kamil }
643 1.17 kamil }
644 1.17 kamil
645 1.17 kamil if (user_va0_disable > 0)
646 1.17 kamil return true;
647 1.17 kamil else
648 1.17 kamil return false;
649 1.17 kamil }
650 1.17 kamil
651 1.17 kamil static bool __used
652 1.8 kamil can_we_write_to_text(pid_t pid)
653 1.8 kamil {
654 1.8 kamil int mib[3];
655 1.8 kamil int paxflags;
656 1.8 kamil size_t len = sizeof(int);
657 1.8 kamil
658 1.8 kamil mib[0] = CTL_PROC;
659 1.8 kamil mib[1] = pid;
660 1.8 kamil mib[2] = PROC_PID_PAXFLAGS;
661 1.8 kamil
662 1.8 kamil if (sysctl(mib, 3, &paxflags, &len, NULL, 0) == -1)
663 1.8 kamil return false;
664 1.8 kamil
665 1.8 kamil return !(paxflags & CTL_PROC_PAXFLAGS_MPROTECT);
666 1.8 kamil }
667 1.8 kamil
668 1.6 kamil static void __used
669 1.6 kamil trigger_trap(void)
670 1.6 kamil {
671 1.6 kamil
672 1.6 kamil /* Software breakpoint causes CPU trap, translated to SIGTRAP */
673 1.6 kamil #ifdef PTRACE_BREAKPOINT_ASM
674 1.6 kamil PTRACE_BREAKPOINT_ASM;
675 1.6 kamil #else
676 1.6 kamil /* port me */
677 1.6 kamil #endif
678 1.6 kamil }
679 1.6 kamil
680 1.6 kamil static void __used
681 1.6 kamil trigger_segv(void)
682 1.6 kamil {
683 1.6 kamil static volatile char *ptr = NULL;
684 1.6 kamil
685 1.6 kamil /* Access to unmapped memory causes CPU trap, translated to SIGSEGV */
686 1.6 kamil *ptr = 1;
687 1.6 kamil }
688 1.6 kamil
689 1.6 kamil static void __used
690 1.6 kamil trigger_ill(void)
691 1.6 kamil {
692 1.6 kamil
693 1.6 kamil /* Illegal instruction causes CPU trap, translated to SIGILL */
694 1.6 kamil #ifdef PTRACE_ILLEGAL_ASM
695 1.33 gson #ifndef __mips__ /* To avoid GXemul crash */
696 1.6 kamil PTRACE_ILLEGAL_ASM;
697 1.33 gson #endif
698 1.6 kamil #else
699 1.6 kamil /* port me */
700 1.6 kamil #endif
701 1.6 kamil }
702 1.6 kamil
703 1.25 christos #include <fenv.h>
704 1.25 christos
705 1.25 christos #if (__arm__ && !__SOFTFP__) || __aarch64__
706 1.25 christos #include <ieeefp.h> /* only need for ARM Cortex/Neon hack */
707 1.25 christos
708 1.16 kamil static bool __used
709 1.16 kamil are_fpu_exceptions_supported(void)
710 1.16 kamil {
711 1.16 kamil /*
712 1.16 kamil * Some NEON fpus do not trap on IEEE 754 FP exceptions.
713 1.16 kamil * Skip these tests if running on them and compiled for
714 1.16 kamil * hard float.
715 1.16 kamil */
716 1.16 kamil if (0 == fpsetmask(fpsetmask(FP_X_INV)))
717 1.16 kamil return false;
718 1.16 kamil return true;
719 1.16 kamil }
720 1.36 riastrad #elif defined __riscv__
721 1.36 riastrad #define are_fpu_exceptions_supported() 0
722 1.25 christos #else
723 1.26 kamil #define are_fpu_exceptions_supported() 1
724 1.25 christos #endif
725 1.16 kamil
726 1.35 riastrad volatile double ignore_result;
727 1.35 riastrad
728 1.9 kamil static void __used
729 1.6 kamil trigger_fpe(void)
730 1.6 kamil {
731 1.32 rin #if __i386__ || __x86_64__
732 1.32 rin /*
733 1.32 rin * XXX
734 1.32 rin * Hack for QEMU bug #1668041, by which floating-point division by
735 1.32 rin * zero is not trapped correctly. Also, assertions for si_code in
736 1.32 rin * ptrace_signal_wait.h are commented out. Clean them up after the
737 1.32 rin * bug is fixed.
738 1.32 rin */
739 1.32 rin volatile int a, b;
740 1.32 rin #else
741 1.32 rin volatile double a, b;
742 1.32 rin #endif
743 1.32 rin
744 1.32 rin a = getpid();
745 1.32 rin b = atoi("0");
746 1.6 kamil
747 1.16 kamil #ifdef __HAVE_FENV
748 1.16 kamil feenableexcept(FE_ALL_EXCEPT);
749 1.16 kamil #endif
750 1.16 kamil
751 1.31 rin /* Division by zero causes CPU trap, translated to SIGFPE */
752 1.35 riastrad ignore_result = (int)(a / b);
753 1.6 kamil }
754 1.6 kamil
755 1.6 kamil static void __used
756 1.6 kamil trigger_bus(void)
757 1.6 kamil {
758 1.6 kamil FILE *fp;
759 1.6 kamil char *p;
760 1.6 kamil
761 1.6 kamil /* Open an empty file for writing. */
762 1.6 kamil fp = tmpfile();
763 1.7 kamil FORKEE_ASSERT_NEQ((uintptr_t)fp, (uintptr_t)NULL);
764 1.6 kamil
765 1.11 kamil /*
766 1.11 kamil * Map an empty file with mmap(2) to a pointer.
767 1.11 kamil *
768 1.11 kamil * PROT_READ handles read-modify-write sequences emitted for
769 1.11 kamil * certain combinations of CPUs and compilers (e.g. Alpha AXP).
770 1.11 kamil */
771 1.10 kamil p = mmap(0, 1, PROT_READ|PROT_WRITE, MAP_PRIVATE, fileno(fp), 0);
772 1.7 kamil FORKEE_ASSERT_NEQ((uintptr_t)p, (uintptr_t)MAP_FAILED);
773 1.6 kamil
774 1.6 kamil /* Invalid memory access causes CPU trap, translated to SIGBUS */
775 1.6 kamil *p = 'a';
776 1.6 kamil }
777 1.6 kamil
778 1.18 kamil struct lwp_event_count {
779 1.18 kamil lwpid_t lec_lwp;
780 1.18 kamil int lec_count;
781 1.18 kamil };
782 1.18 kamil
783 1.23 kamil static int * __used
784 1.18 kamil find_event_count(struct lwp_event_count list[], lwpid_t lwp, size_t max_lwps)
785 1.18 kamil {
786 1.18 kamil size_t i;
787 1.18 kamil
788 1.18 kamil for (i = 0; i < max_lwps; i++) {
789 1.18 kamil if (list[i].lec_lwp == 0)
790 1.18 kamil list[i].lec_lwp = lwp;
791 1.18 kamil if (list[i].lec_lwp == lwp)
792 1.18 kamil return &list[i].lec_count;
793 1.18 kamil }
794 1.18 kamil
795 1.18 kamil atf_tc_fail("More LWPs reported than expected");
796 1.18 kamil }
797 1.18 kamil
798 1.18 kamil #define FIND_EVENT_COUNT(list, lwp) \
799 1.18 kamil find_event_count(list, lwp, __arraycount(list))
800 1.18 kamil
801 1.1 kamil #if defined(TWAIT_HAVE_PID)
802 1.1 kamil #define ATF_TP_ADD_TC_HAVE_PID(a,b) ATF_TP_ADD_TC(a,b)
803 1.1 kamil #else
804 1.1 kamil #define ATF_TP_ADD_TC_HAVE_PID(a,b)
805 1.1 kamil #endif
806 1.1 kamil
807 1.28 kamil #if defined(TWAIT_HAVE_STATUS)
808 1.28 kamil #define ATF_TP_ADD_TC_HAVE_STATUS(a,b) ATF_TP_ADD_TC(a,b)
809 1.28 kamil #else
810 1.28 kamil #define ATF_TP_ADD_TC_HAVE_STATUS(a,b)
811 1.28 kamil #endif
812 1.28 kamil
813 1.28 kamil #if defined(TWAIT_HAVE_STATUS) && (defined(__i386__) || defined(__x86_64__))
814 1.28 kamil #define ATF_TP_ADD_TC_HAVE_STATUS_X86(a,b) ATF_TP_ADD_TC(a,b)
815 1.28 kamil #else
816 1.28 kamil #define ATF_TP_ADD_TC_HAVE_STATUS_X86(a,b)
817 1.28 kamil #endif
818 1.28 kamil
819 1.1 kamil #if defined(HAVE_GPREGS)
820 1.1 kamil #define ATF_TP_ADD_TC_HAVE_GPREGS(a,b) ATF_TP_ADD_TC(a,b)
821 1.1 kamil #else
822 1.1 kamil #define ATF_TP_ADD_TC_HAVE_GPREGS(a,b)
823 1.1 kamil #endif
824 1.1 kamil
825 1.1 kamil #if defined(HAVE_FPREGS)
826 1.1 kamil #define ATF_TP_ADD_TC_HAVE_FPREGS(a,b) ATF_TP_ADD_TC(a,b)
827 1.1 kamil #else
828 1.1 kamil #define ATF_TP_ADD_TC_HAVE_FPREGS(a,b)
829 1.1 kamil #endif
830 1.1 kamil
831 1.1 kamil #if defined(HAVE_DBREGS)
832 1.1 kamil #define ATF_TP_ADD_TC_HAVE_DBREGS(a,b) ATF_TP_ADD_TC(a,b)
833 1.1 kamil #else
834 1.1 kamil #define ATF_TP_ADD_TC_HAVE_DBREGS(a,b)
835 1.1 kamil #endif
836 1.1 kamil
837 1.1 kamil #if defined(PT_STEP)
838 1.1 kamil #define ATF_TP_ADD_TC_PT_STEP(a,b) ATF_TP_ADD_TC(a,b)
839 1.1 kamil #else
840 1.1 kamil #define ATF_TP_ADD_TC_PT_STEP(a,b)
841 1.1 kamil #endif
842