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basic/process-util: convert bool arg to flags
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1 /* SPDX-License-Identifier: LGPL-2.1+ */
2 #pragma once
3
4 #include <alloca.h>
5 #include <errno.h>
6 #include <sched.h>
7 #include <signal.h>
8 #include <stdbool.h>
9 #include <stddef.h>
10 #include <stdio.h>
11 #include <string.h>
12 #include <sys/resource.h>
13 #include <sys/types.h>
14
15 #include "alloc-util.h"
16 #include "format-util.h"
17 #include "ioprio.h"
18 #include "macro.h"
19 #include "time-util.h"
20
21 #define procfs_file_alloca(pid, field) \
22 ({ \
23 pid_t _pid_ = (pid); \
24 const char *_r_; \
25 if (_pid_ == 0) { \
26 _r_ = ("/proc/self/" field); \
27 } else { \
28 _r_ = newa(char, STRLEN("/proc/") + DECIMAL_STR_MAX(pid_t) + 1 + sizeof(field)); \
29 sprintf((char*) _r_, "/proc/"PID_FMT"/" field, _pid_); \
30 } \
31 _r_; \
32 })
33
34 typedef enum ProcessCmdlineFlags {
35 PROCESS_CMDLINE_COMM_FALLBACK = 1 << 0,
36 } ProcessCmdlineFlags;
37
38 int get_process_comm(pid_t pid, char **name);
39 int get_process_cmdline(pid_t pid, size_t max_columns, ProcessCmdlineFlags flags, char **line);
40 int get_process_exe(pid_t pid, char **name);
41 int get_process_uid(pid_t pid, uid_t *uid);
42 int get_process_gid(pid_t pid, gid_t *gid);
43 int get_process_capeff(pid_t pid, char **capeff);
44 int get_process_cwd(pid_t pid, char **cwd);
45 int get_process_root(pid_t pid, char **root);
46 int get_process_environ(pid_t pid, char **environ);
47 int get_process_ppid(pid_t pid, pid_t *ppid);
48
49 int wait_for_terminate(pid_t pid, siginfo_t *status);
50
51 typedef enum WaitFlags {
52 WAIT_LOG_ABNORMAL = 1 << 0,
53 WAIT_LOG_NON_ZERO_EXIT_STATUS = 1 << 1,
54
55 /* A shortcut for requesting the most complete logging */
56 WAIT_LOG = WAIT_LOG_ABNORMAL|WAIT_LOG_NON_ZERO_EXIT_STATUS,
57 } WaitFlags;
58
59 int wait_for_terminate_and_check(const char *name, pid_t pid, WaitFlags flags);
60 int wait_for_terminate_with_timeout(pid_t pid, usec_t timeout);
61
62 void sigkill_wait(pid_t pid);
63 void sigkill_waitp(pid_t *pid);
64 void sigterm_wait(pid_t pid);
65
66 int kill_and_sigcont(pid_t pid, int sig);
67
68 int rename_process(const char name[]);
69 int is_kernel_thread(pid_t pid);
70
71 int getenv_for_pid(pid_t pid, const char *field, char **_value);
72
73 bool pid_is_alive(pid_t pid);
74 bool pid_is_unwaited(pid_t pid);
75 int pid_is_my_child(pid_t pid);
76 int pid_from_same_root_fs(pid_t pid);
77
78 bool is_main_thread(void);
79
80 _noreturn_ void freeze(void);
81
82 bool oom_score_adjust_is_valid(int oa);
83
84 #ifndef PERSONALITY_INVALID
85 /* personality(7) documents that 0xffffffffUL is used for querying the
86 * current personality, hence let's use that here as error
87 * indicator. */
88 #define PERSONALITY_INVALID 0xffffffffLU
89 #endif
90
91 unsigned long personality_from_string(const char *p);
92 const char *personality_to_string(unsigned long);
93
94 int safe_personality(unsigned long p);
95 int opinionated_personality(unsigned long *ret);
96
97 int ioprio_class_to_string_alloc(int i, char **s);
98 int ioprio_class_from_string(const char *s);
99
100 const char *sigchld_code_to_string(int i) _const_;
101 int sigchld_code_from_string(const char *s) _pure_;
102
103 int sched_policy_to_string_alloc(int i, char **s);
104 int sched_policy_from_string(const char *s);
105
106 static inline pid_t PTR_TO_PID(const void *p) {
107 return (pid_t) ((uintptr_t) p);
108 }
109
110 static inline void* PID_TO_PTR(pid_t pid) {
111 return (void*) ((uintptr_t) pid);
112 }
113
114 void valgrind_summary_hack(void);
115
116 int pid_compare_func(const pid_t *a, const pid_t *b);
117
118 static inline bool nice_is_valid(int n) {
119 return n >= PRIO_MIN && n < PRIO_MAX;
120 }
121
122 static inline bool sched_policy_is_valid(int i) {
123 return IN_SET(i, SCHED_OTHER, SCHED_BATCH, SCHED_IDLE, SCHED_FIFO, SCHED_RR);
124 }
125
126 static inline bool sched_priority_is_valid(int i) {
127 return i >= 0 && i <= sched_get_priority_max(SCHED_RR);
128 }
129
130 static inline bool ioprio_class_is_valid(int i) {
131 return IN_SET(i, IOPRIO_CLASS_NONE, IOPRIO_CLASS_RT, IOPRIO_CLASS_BE, IOPRIO_CLASS_IDLE);
132 }
133
134 static inline bool ioprio_priority_is_valid(int i) {
135 return i >= 0 && i < IOPRIO_BE_NR;
136 }
137
138 static inline bool pid_is_valid(pid_t p) {
139 return p > 0;
140 }
141
142 int ioprio_parse_priority(const char *s, int *ret);
143
144 pid_t getpid_cached(void);
145 void reset_cached_pid(void);
146
147 int must_be_root(void);
148
149 typedef enum ForkFlags {
150 FORK_RESET_SIGNALS = 1 << 0, /* Reset all signal handlers and signal mask */
151 FORK_CLOSE_ALL_FDS = 1 << 1, /* Close all open file descriptors in the child, except for 0,1,2 */
152 FORK_DEATHSIG = 1 << 2, /* Set PR_DEATHSIG in the child */
153 FORK_NULL_STDIO = 1 << 3, /* Connect 0,1,2 to /dev/null */
154 FORK_REOPEN_LOG = 1 << 4, /* Reopen log connection */
155 FORK_LOG = 1 << 5, /* Log above LOG_DEBUG log level about failures */
156 FORK_WAIT = 1 << 6, /* Wait until child exited */
157 FORK_NEW_MOUNTNS = 1 << 7, /* Run child in its own mount namespace */
158 FORK_MOUNTNS_SLAVE = 1 << 8, /* Make child's mount namespace MS_SLAVE */
159 FORK_RLIMIT_NOFILE_SAFE = 1 << 9, /* Set RLIMIT_NOFILE soft limit to 1K for select() compat */
160 } ForkFlags;
161
162 int safe_fork_full(const char *name, const int except_fds[], size_t n_except_fds, ForkFlags flags, pid_t *ret_pid);
163
164 static inline int safe_fork(const char *name, ForkFlags flags, pid_t *ret_pid) {
165 return safe_fork_full(name, NULL, 0, flags, ret_pid);
166 }
167
168 int namespace_fork(const char *outer_name, const char *inner_name, const int except_fds[], size_t n_except_fds, ForkFlags flags, int pidns_fd, int mntns_fd, int netns_fd, int userns_fd, int root_fd, pid_t *ret_pid);
169
170 int fork_agent(const char *name, const int except[], size_t n_except, pid_t *pid, const char *path, ...) _sentinel_;
171
172 int set_oom_score_adjust(int value);
173
174 #if SIZEOF_PID_T == 4
175 /* The highest possibly (theoretic) pid_t value on this architecture. */
176 #define PID_T_MAX ((pid_t) INT32_MAX)
177 /* The maximum number of concurrent processes Linux allows on this architecture, as well as the highest valid PID value
178 * the kernel will potentially assign. This reflects a value compiled into the kernel (PID_MAX_LIMIT), and sets the
179 * upper boundary on what may be written to the /proc/sys/kernel/pid_max sysctl (but do note that the sysctl is off by
180 * 1, since PID 0 can never exist and there can hence only be one process less than the limit would suggest). Since
181 * these values are documented in proc(5) we feel quite confident that they are stable enough for the near future at
182 * least to define them here too. */
183 #define TASKS_MAX 4194303U
184 #elif SIZEOF_PID_T == 2
185 #define PID_T_MAX ((pid_t) INT16_MAX)
186 #define TASKS_MAX 32767U
187 #else
188 #error "Unknown pid_t size"
189 #endif
190
191 assert_cc(TASKS_MAX <= (unsigned long) PID_T_MAX)
192
193 /* Like TAKE_PTR() but for child PIDs, resetting them to 0 */
194 #define TAKE_PID(pid) \
195 ({ \
196 pid_t _pid_ = (pid); \
197 (pid) = 0; \
198 _pid_; \
199 })
200
201 int cpus_in_affinity_mask(void);