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1 /* Licensed to the Apache Software Foundation (ASF) under one or more
2  * contributor license agreements.  See the NOTICE file distributed with
3  * this work for additional information regarding copyright ownership.
4  * The ASF licenses this file to You under the Apache License, Version 2.0
5  * (the "License"); you may not use this file except in compliance with
6  * the License.  You may obtain a copy of the License at
7  *
8  *     http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include "apr_arch_threadproc.h"
18 #include "apr_arch_file_io.h"
19 #include "apr_strings.h"
20 #include "apr_portable.h"
21 
22 #include <proc.h>
23 
24 /* Heavy on no'ops, here's what we want to pass if there is APR_NO_FILE
25  * requested for a specific child handle;
26  */
27 static apr_file_t no_file = { NULL, -1, };
28 
apr_netware_proc_cleanup(void * theproc)29 static apr_status_t apr_netware_proc_cleanup(void *theproc)
30 {
31     apr_proc_t *proc = theproc;
32     int exit_int;
33     int waitpid_options = WUNTRACED | WNOHANG;
34 
35     if (proc->pid > 0) {
36         waitpid(proc->pid, &exit_int, waitpid_options);
37     }
38 
39 /*	NXVmDestroy(proc->pid); */
40     return APR_SUCCESS;
41 }
42 
apr_procattr_create(apr_procattr_t ** new,apr_pool_t * pool)43 APR_DECLARE(apr_status_t) apr_procattr_create(apr_procattr_t **new,apr_pool_t *pool)
44 {
45     (*new) = (apr_procattr_t *)apr_pcalloc(pool, sizeof(apr_procattr_t));
46 
47     if ((*new) == NULL) {
48         return APR_ENOMEM;
49     }
50     (*new)->pool = pool;
51     (*new)->cmdtype = APR_PROGRAM;
52     /* Default to a current path since NetWare doesn't handle it very well */
53     apr_filepath_get(&((*new)->currdir), APR_FILEPATH_NATIVE, pool);
54     (*new)->detached = 1;
55     return APR_SUCCESS;
56 
57 }
58 
apr_procattr_io_set(apr_procattr_t * attr,apr_int32_t in,apr_int32_t out,apr_int32_t err)59 APR_DECLARE(apr_status_t) apr_procattr_io_set(apr_procattr_t *attr,
60                                               apr_int32_t in,
61                                               apr_int32_t out,
62                                               apr_int32_t err)
63 {
64     apr_status_t rv;
65 
66     if ((in != APR_NO_PIPE) && (in != APR_NO_FILE)) {
67         /* APR_CHILD_BLOCK maps to APR_WRITE_BLOCK, while
68          * APR_PARENT_BLOCK maps to APR_READ_BLOCK, so transpose
69          * the CHILD/PARENT blocking flags for the stdin pipe.
70          * stdout/stderr map to the correct mode by default.
71          */
72         if (in == APR_CHILD_BLOCK)
73             in = APR_READ_BLOCK;
74         else if (in == APR_PARENT_BLOCK)
75             in = APR_WRITE_BLOCK;
76 
77         if ((rv = apr_file_pipe_create_ex(&attr->child_in, &attr->parent_in,
78                                           in, attr->pool)) == APR_SUCCESS)
79             rv = apr_file_inherit_unset(attr->parent_in);
80         if (rv != APR_SUCCESS)
81             return rv;
82     }
83     else if (in == APR_NO_FILE)
84         attr->child_in = &no_file;
85 
86     if ((out != APR_NO_PIPE) && (out != APR_NO_FILE)) {
87         if ((rv = apr_file_pipe_create_ex(&attr->parent_out, &attr->child_out,
88                                           out, attr->pool)) == APR_SUCCESS)
89             rv = apr_file_inherit_unset(attr->parent_out);
90         if (rv != APR_SUCCESS)
91             return rv;
92     }
93     else if (out == APR_NO_FILE)
94         attr->child_out = &no_file;
95 
96     if ((err != APR_NO_PIPE) && (err != APR_NO_FILE)) {
97         if ((rv = apr_file_pipe_create_ex(&attr->parent_err, &attr->child_err,
98                                           err, attr->pool)) == APR_SUCCESS)
99             rv = apr_file_inherit_unset(attr->parent_err);
100         if (rv != APR_SUCCESS)
101             return rv;
102     }
103     else if (err == APR_NO_FILE)
104         attr->child_err = &no_file;
105 
106     return APR_SUCCESS;
107 }
108 
109 
apr_procattr_child_in_set(apr_procattr_t * attr,apr_file_t * child_in,apr_file_t * parent_in)110 APR_DECLARE(apr_status_t) apr_procattr_child_in_set(apr_procattr_t *attr, apr_file_t *child_in,
111                                    apr_file_t *parent_in)
112 {
113     apr_status_t rv = APR_SUCCESS;
114 
115     if (attr->child_in == NULL && attr->parent_in == NULL
116             && child_in == NULL && parent_in == NULL)
117         if ((rv = apr_file_pipe_create(&attr->child_in, &attr->parent_in,
118                                        attr->pool)) == APR_SUCCESS)
119             rv = apr_file_inherit_unset(attr->parent_in);
120 
121     if (child_in != NULL && rv == APR_SUCCESS) {
122         if (attr->child_in && (attr->child_in->filedes != -1))
123             rv = apr_file_dup2(attr->child_in, child_in, attr->pool);
124         else {
125             attr->child_in = NULL;
126             if ((rv = apr_file_dup(&attr->child_in, child_in, attr->pool))
127                     == APR_SUCCESS)
128                 rv = apr_file_inherit_set(attr->child_in);
129         }
130     }
131 
132     if (parent_in != NULL && rv == APR_SUCCESS) {
133         rv = apr_file_dup(&attr->parent_in, parent_in, attr->pool);
134     }
135 
136     return rv;
137 }
138 
139 
apr_procattr_child_out_set(apr_procattr_t * attr,apr_file_t * child_out,apr_file_t * parent_out)140 APR_DECLARE(apr_status_t) apr_procattr_child_out_set(apr_procattr_t *attr, apr_file_t *child_out,
141                                                      apr_file_t *parent_out)
142 {
143     apr_status_t rv = APR_SUCCESS;
144 
145     if (attr->child_out == NULL && attr->parent_out == NULL
146            && child_out == NULL && parent_out == NULL)
147         if ((rv = apr_file_pipe_create(&attr->parent_out, &attr->child_out,
148                                        attr->pool)) == APR_SUCCESS)
149             rv = apr_file_inherit_unset(attr->parent_out);
150 
151     if (child_out != NULL && rv == APR_SUCCESS) {
152         if (attr->child_out && (attr->child_out->filedes != -1))
153             rv = apr_file_dup2(attr->child_out, child_out, attr->pool);
154         else {
155             attr->child_out = NULL;
156             if ((rv = apr_file_dup(&attr->child_out, child_out, attr->pool))
157                     == APR_SUCCESS)
158                 rv = apr_file_inherit_set(attr->child_out);
159         }
160     }
161 
162     if (parent_out != NULL && rv == APR_SUCCESS) {
163         rv = apr_file_dup(&attr->parent_out, parent_out, attr->pool);
164     }
165 
166     return rv;
167 }
168 
169 
apr_procattr_child_err_set(apr_procattr_t * attr,apr_file_t * child_err,apr_file_t * parent_err)170 APR_DECLARE(apr_status_t) apr_procattr_child_err_set(apr_procattr_t *attr, apr_file_t *child_err,
171                                                      apr_file_t *parent_err)
172 {
173     apr_status_t rv = APR_SUCCESS;
174 
175     if (attr->child_err == NULL && attr->parent_err == NULL
176            && child_err == NULL && parent_err == NULL)
177         if ((rv = apr_file_pipe_create(&attr->parent_err, &attr->child_err,
178                                        attr->pool)) == APR_SUCCESS)
179             rv = apr_file_inherit_unset(attr->parent_err);
180 
181     if (child_err != NULL && rv == APR_SUCCESS) {
182         if (attr->child_err && (attr->child_err->filedes != -1))
183             rv = apr_file_dup2(attr->child_err, child_err, attr->pool);
184         else {
185             attr->child_err = NULL;
186             if ((rv = apr_file_dup(&attr->child_err, child_err, attr->pool))
187                     == APR_SUCCESS)
188                 rv = apr_file_inherit_set(attr->child_err);
189         }
190     }
191 
192     if (parent_err != NULL && rv == APR_SUCCESS) {
193         rv = apr_file_dup(&attr->parent_err, parent_err, attr->pool);
194     }
195 
196     return rv;
197 }
198 
199 
apr_procattr_dir_set(apr_procattr_t * attr,const char * dir)200 APR_DECLARE(apr_status_t) apr_procattr_dir_set(apr_procattr_t *attr,
201                                const char *dir)
202 {
203     return apr_filepath_merge(&attr->currdir, NULL, dir,
204                               APR_FILEPATH_NATIVE, attr->pool);
205 }
206 
apr_procattr_cmdtype_set(apr_procattr_t * attr,apr_cmdtype_e cmd)207 APR_DECLARE(apr_status_t) apr_procattr_cmdtype_set(apr_procattr_t *attr,
208                                      apr_cmdtype_e cmd)
209 {
210     /* won't ever be called on this platform, so don't save the function pointer */
211     return APR_SUCCESS;
212 }
213 
apr_procattr_detach_set(apr_procattr_t * attr,apr_int32_t detach)214 APR_DECLARE(apr_status_t) apr_procattr_detach_set(apr_procattr_t *attr, apr_int32_t detach)
215 {
216     attr->detached = detach;
217     return APR_SUCCESS;
218 }
219 
220 #if APR_HAS_FORK
apr_proc_fork(apr_proc_t * proc,apr_pool_t * pool)221 APR_DECLARE(apr_status_t) apr_proc_fork(apr_proc_t *proc, apr_pool_t *pool)
222 {
223     int pid;
224 
225     if ((pid = fork()) < 0) {
226         return errno;
227     }
228     else if (pid == 0) {
229         proc->pid = pid;
230         proc->in = NULL;
231         proc->out = NULL;
232         proc->err = NULL;
233         return APR_INCHILD;
234     }
235     proc->pid = pid;
236     proc->in = NULL;
237     proc->out = NULL;
238     proc->err = NULL;
239     return APR_INPARENT;
240 }
241 #endif
242 
limit_proc(apr_procattr_t * attr)243 static apr_status_t limit_proc(apr_procattr_t *attr)
244 {
245 #if APR_HAVE_STRUCT_RLIMIT && APR_HAVE_SETRLIMIT
246 #ifdef RLIMIT_CPU
247     if (attr->limit_cpu != NULL) {
248         if ((setrlimit(RLIMIT_CPU, attr->limit_cpu)) != 0) {
249             return errno;
250         }
251     }
252 #endif
253 #ifdef RLIMIT_NPROC
254     if (attr->limit_nproc != NULL) {
255         if ((setrlimit(RLIMIT_NPROC, attr->limit_nproc)) != 0) {
256             return errno;
257         }
258     }
259 #endif
260 #if defined(RLIMIT_AS)
261     if (attr->limit_mem != NULL) {
262         if ((setrlimit(RLIMIT_AS, attr->limit_mem)) != 0) {
263             return errno;
264         }
265     }
266 #elif defined(RLIMIT_DATA)
267     if (attr->limit_mem != NULL) {
268         if ((setrlimit(RLIMIT_DATA, attr->limit_mem)) != 0) {
269             return errno;
270         }
271     }
272 #elif defined(RLIMIT_VMEM)
273     if (attr->limit_mem != NULL) {
274         if ((setrlimit(RLIMIT_VMEM, attr->limit_mem)) != 0) {
275             return errno;
276         }
277     }
278 #endif
279 #else
280     /*
281      * Maybe make a note in error_log that setrlimit isn't supported??
282      */
283 
284 #endif
285     return APR_SUCCESS;
286 }
287 
apr_procattr_child_errfn_set(apr_procattr_t * attr,apr_child_errfn_t * errfn)288 APR_DECLARE(apr_status_t) apr_procattr_child_errfn_set(apr_procattr_t *attr,
289                                                        apr_child_errfn_t *errfn)
290 {
291     /* won't ever be called on this platform, so don't save the function pointer */
292     return APR_SUCCESS;
293 }
294 
apr_procattr_error_check_set(apr_procattr_t * attr,apr_int32_t chk)295 APR_DECLARE(apr_status_t) apr_procattr_error_check_set(apr_procattr_t *attr,
296                                                        apr_int32_t chk)
297 {
298     /* won't ever be used on this platform, so don't save the flag */
299     return APR_SUCCESS;
300 }
301 
apr_procattr_addrspace_set(apr_procattr_t * attr,apr_int32_t addrspace)302 APR_DECLARE(apr_status_t) apr_procattr_addrspace_set(apr_procattr_t *attr,
303                                                        apr_int32_t addrspace)
304 {
305     attr->addrspace = addrspace;
306     return APR_SUCCESS;
307 }
308 
apr_proc_create(apr_proc_t * newproc,const char * progname,const char * const * args,const char * const * env,apr_procattr_t * attr,apr_pool_t * pool)309 APR_DECLARE(apr_status_t) apr_proc_create(apr_proc_t *newproc,
310 									const char *progname,
311 									const char * const *args,
312 									const char * const *env,
313                               		apr_procattr_t *attr,
314                               		apr_pool_t *pool)
315 {
316     wiring_t wire;
317     int      addr_space;
318 
319     wire.infd  = attr->child_in
320                ? (attr->child_in->filedes != -1 ? attr->child_in->filedes
321                                                 : FD_UNUSED)
322                : fileno(stdin);
323     wire.outfd  = attr->child_out
324                 ? (attr->child_out->filedes != -1 ? attr->child_out->filedes
325                                                   : FD_UNUSED)
326                 : fileno(stdout);
327     wire.errfd  = attr->child_err
328                 ? (attr->child_err->filedes != -1 ? attr->child_err->filedes
329                                                   : FD_UNUSED)
330                 : fileno(stderr);
331 
332     newproc->in = attr->parent_in;
333     newproc->out = attr->parent_out;
334     newproc->err = attr->parent_err;
335 
336     /* attr->detached and PROC_DETACHED do not mean the same thing.  attr->detached means
337      * start the NLM in a separate address space.  PROC_DETACHED means don't wait for the
338      * NLM to unload by calling wait() or waitpid(), just clean up */
339     addr_space = PROC_LOAD_SILENT | (attr->addrspace ? 0 : PROC_CURRENT_SPACE);
340     addr_space |= (attr->detached ? PROC_DETACHED : 0);
341 
342     if (attr->currdir) {
343         char *fullpath = NULL;
344         apr_status_t rv;
345 
346         if ((rv = apr_filepath_merge(&fullpath, attr->currdir, progname,
347                                      APR_FILEPATH_NATIVE, pool)) != APR_SUCCESS) {
348             return rv;
349         }
350         progname = fullpath;
351     }
352 
353     if ((newproc->pid = procve(progname, addr_space, (const char**)env, &wire,
354         NULL, NULL, 0, NULL, (const char **)args)) == -1) {
355         return errno;
356     }
357 
358     if (attr->child_in && (attr->child_in->filedes != -1)) {
359         apr_pool_cleanup_kill(apr_file_pool_get(attr->child_in),
360                               attr->child_in, apr_unix_file_cleanup);
361         apr_file_close(attr->child_in);
362     }
363     if (attr->child_out && (attr->child_out->filedes != -1)) {
364         apr_pool_cleanup_kill(apr_file_pool_get(attr->child_out),
365                               attr->child_out, apr_unix_file_cleanup);
366         apr_file_close(attr->child_out);
367     }
368     if (attr->child_err && (attr->child_err->filedes != -1)) {
369         apr_pool_cleanup_kill(apr_file_pool_get(attr->child_err),
370                               attr->child_err, apr_unix_file_cleanup);
371         apr_file_close(attr->child_err);
372     }
373 
374     apr_pool_cleanup_register(pool, (void *)newproc, apr_netware_proc_cleanup,
375         apr_pool_cleanup_null);
376 
377     return APR_SUCCESS;
378 }
379 
apr_proc_wait_all_procs(apr_proc_t * proc,int * exitcode,apr_exit_why_e * exitwhy,apr_wait_how_e waithow,apr_pool_t * p)380 APR_DECLARE(apr_status_t) apr_proc_wait_all_procs(apr_proc_t *proc,
381                                                   int *exitcode,
382                                                   apr_exit_why_e *exitwhy,
383                                                   apr_wait_how_e waithow,
384                                                   apr_pool_t *p)
385 {
386     proc->pid = -1;
387     return apr_proc_wait(proc, exitcode, exitwhy, waithow);
388 }
389 
apr_proc_wait(apr_proc_t * proc,int * exitcode,apr_exit_why_e * exitwhy,apr_wait_how_e waithow)390 APR_DECLARE(apr_status_t) apr_proc_wait(apr_proc_t *proc,
391                                         int *exitcode, apr_exit_why_e *exitwhy,
392                                         apr_wait_how_e waithow)
393 {
394     pid_t pstatus;
395     int waitpid_options = WUNTRACED;
396     int exit_int;
397     int ignore;
398     apr_exit_why_e ignorewhy;
399 
400     if (exitcode == NULL) {
401         exitcode = &ignore;
402     }
403 
404     if (exitwhy == NULL) {
405         exitwhy = &ignorewhy;
406     }
407 
408     if (waithow != APR_WAIT) {
409         waitpid_options |= WNOHANG;
410     }
411 
412     /* If the pid is 0 then the process was started detached. There
413        is no need to wait since there is nothing to wait for on a
414        detached process.  Starting a process as non-detached and
415        then calling wait or waitpid could cause the thread to hang.
416        The reason for this is because NetWare does not have a way
417        to kill or even signal a process to be killed.  Starting
418        all processes as detached avoids the possibility of a
419        thread hanging. */
420     if (proc->pid == 0) {
421         *exitwhy = APR_PROC_EXIT;
422         *exitcode = 0;
423         return APR_CHILD_DONE;
424     }
425 
426     if ((pstatus = waitpid(proc->pid, &exit_int, waitpid_options)) > 0) {
427         proc->pid = pstatus;
428 
429         if (WIFEXITED(exit_int)) {
430             *exitwhy = APR_PROC_EXIT;
431             *exitcode = WEXITSTATUS(exit_int);
432         }
433         else if (WIFSIGNALED(exit_int)) {
434             *exitwhy = APR_PROC_SIGNAL;
435             *exitcode = WIFTERMSIG(exit_int);
436         }
437         else {
438             /* unexpected condition */
439             return APR_EGENERAL;
440         }
441 
442         return APR_CHILD_DONE;
443     }
444     else if (pstatus == 0) {
445         return APR_CHILD_NOTDONE;
446     }
447 
448     return errno;
449 }
450 
451 #if APR_HAVE_STRUCT_RLIMIT
apr_procattr_limit_set(apr_procattr_t * attr,apr_int32_t what,struct rlimit * limit)452 APR_DECLARE(apr_status_t) apr_procattr_limit_set(apr_procattr_t *attr,
453                                                  apr_int32_t what,
454                                                  struct rlimit *limit)
455 {
456     switch(what) {
457         case APR_LIMIT_CPU:
458 #ifdef RLIMIT_CPU
459             attr->limit_cpu = limit;
460             break;
461 #else
462             return APR_ENOTIMPL;
463 #endif
464 
465         case APR_LIMIT_MEM:
466 #if defined(RLIMIT_DATA) || defined(RLIMIT_VMEM) || defined(RLIMIT_AS)
467             attr->limit_mem = limit;
468             break;
469 #else
470             return APR_ENOTIMPL;
471 #endif
472 
473         case APR_LIMIT_NPROC:
474 #ifdef RLIMIT_NPROC
475             attr->limit_nproc = limit;
476             break;
477 #else
478             return APR_ENOTIMPL;
479 #endif
480 
481         case APR_LIMIT_NOFILE:
482 #ifdef RLIMIT_NOFILE
483             attr->limit_nofile = limit;
484             break;
485 #else
486             return APR_ENOTIMPL;
487 #endif
488 
489     }
490     return APR_SUCCESS;
491 }
492 #endif /* APR_HAVE_STRUCT_RLIMIT */
493 
apr_procattr_user_set(apr_procattr_t * attr,const char * username,const char * password)494 APR_DECLARE(apr_status_t) apr_procattr_user_set(apr_procattr_t *attr,
495                                                 const char *username,
496                                                 const char *password)
497 {
498     /* Always return SUCCESS because NetWare threads don't run as a user */
499     return APR_SUCCESS;
500 }
501 
apr_procattr_group_set(apr_procattr_t * attr,const char * groupname)502 APR_DECLARE(apr_status_t) apr_procattr_group_set(apr_procattr_t *attr,
503                                                  const char *groupname)
504 {
505     /* Always return SUCCESS because NetWare threads don't run within a group */
506     return APR_SUCCESS;
507 }
508