API refactoring: introduce probe context
[lttng-ust.git] / src / lib / lttng-ust / lttng-context-vegid.c
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fca2f191 1/*
c0c0989a 2 * SPDX-License-Identifier: LGPL-2.1-only
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3 *
4 * Copyright (C) 2009-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
c0c0989a 5 * Copyright (C) 2019 Michael Jeanson <mjeanson@efficios.com>
fca2f191 6 *
c0c0989a 7 * LTTng UST namespaced effective group ID context.
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8 */
9
10#define _LGPL_SOURCE
9af5d97a 11#include <limits.h>
b4051ad8 12#include <stddef.h>
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13#include <sys/types.h>
14#include <sys/stat.h>
15#include <unistd.h>
16#include <lttng/ust-events.h>
17#include <lttng/ust-tracer.h>
0b4b8811 18#include <lttng/ust-ringbuffer-context.h>
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19
20#include "context-internal.h"
6abdf6dc 21#include "common/creds.h"
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22
23
24/*
25 * At the kernel level, user IDs and group IDs are a per-thread attribute.
26 * However, POSIX requires that all threads in a process share the same
27 * credentials. The NPTL threading implementation handles the POSIX
28 * requirements by providing wrapper functions for the various system calls
29 * that change process UIDs and GIDs. These wrapper functions (including those
30 * for setreuid() and setregid()) employ a signal-based technique to ensure
31 * that when one thread changes credentials, all of the other threads in the
32 * process also change their credentials.
33 */
34
35/*
36 * We cache the result to ensure we don't trigger a system call for
37 * each event. User / group IDs are global to the process.
38 */
39static gid_t cached_vegid = INVALID_GID;
40
41static
42gid_t get_vegid(void)
43{
44 gid_t vegid;
45
46 vegid = CMM_LOAD_SHARED(cached_vegid);
47
48 if (caa_unlikely(vegid == INVALID_GID)) {
49 vegid = getegid();
50 CMM_STORE_SHARED(cached_vegid, vegid);
51 }
52
53 return vegid;
54}
55
56/*
57 * The vegid can change on setuid, setreuid, setresuid and seteuid.
58 */
59void lttng_context_vegid_reset(void)
60{
61 CMM_STORE_SHARED(cached_vegid, INVALID_GID);
62}
63
64static
4e48b5d2 65size_t vegid_get_size(void *priv __attribute__((unused)),
b2e37d27 66 struct lttng_ust_probe_ctx *probe_ctx __attribute__((unused)),
2208d8b5 67 size_t offset)
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68{
69 size_t size = 0;
70
b5457df5 71 size += lttng_ust_ring_buffer_align(offset, lttng_ust_rb_alignof(gid_t));
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72 size += sizeof(gid_t);
73 return size;
74}
75
76static
4e48b5d2 77void vegid_record(void *priv __attribute__((unused)),
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78 struct lttng_ust_probe_ctx *probe_ctx __attribute__((unused)),
79 struct lttng_ust_ring_buffer_ctx *ctx,
80 struct lttng_ust_channel_buffer *chan)
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81{
82 gid_t vegid;
83
84 vegid = get_vegid();
8936b6c0 85 chan->ops->event_write(ctx, &vegid, sizeof(vegid), lttng_ust_rb_alignof(vegid));
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86}
87
88static
4e48b5d2 89void vegid_get_value(void *priv __attribute__((unused)),
b2e37d27 90 struct lttng_ust_probe_ctx *probe_ctx __attribute__((unused)),
daacdbfc 91 struct lttng_ust_ctx_value *value)
fca2f191 92{
b2e37d27 93 value->u.u64 = get_vegid();
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94}
95
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96static const struct lttng_ust_ctx_field *ctx_field = lttng_ust_static_ctx_field(
97 lttng_ust_static_event_field("vegid",
98 lttng_ust_static_type_integer(sizeof(gid_t) * CHAR_BIT,
99 lttng_ust_rb_alignof(gid_t) * CHAR_BIT,
100 lttng_ust_is_signed_type(gid_t),
baa8acf3 101 LTTNG_UST_BYTE_ORDER, 10),
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102 false, false),
103 vegid_get_size,
104 vegid_record,
105 vegid_get_value,
106 NULL, NULL);
107
daacdbfc 108int lttng_add_vegid_to_ctx(struct lttng_ust_ctx **ctx)
fca2f191 109{
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110 int ret;
111
4e48b5d2 112 if (lttng_find_context(*ctx, ctx_field->event_field->name)) {
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113 ret = -EEXIST;
114 goto error_find_context;
115 }
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116 ret = lttng_ust_context_append(ctx, ctx_field);
117 if (ret)
118 return ret;
fca2f191 119 return 0;
a084756d 120
a084756d 121error_find_context:
a084756d 122 return ret;
fca2f191 123}
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