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elf: Add _dl_audit_activity_map and _dl_audit_activity_nsid
It consolidates the code required to call la_activity audit callback. Also for a new Lmid_t the namespace link_map list are empty, so it requires to check if before using it. This can happen for when audit module is used along with dlmopen. Checked on x86_64-linux-gnu, i686-linux-gnu, and aarch64-linux-gnu. Reviewed-by: Florian Weimer <fweimer@redhat.com>
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@ -18,6 +18,32 @@
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#include <ldsodefs.h>
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void
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_dl_audit_activity_map (struct link_map *l, int action)
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{
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struct audit_ifaces *afct = GLRO(dl_audit);
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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afct->activity (&link_map_audit_state (l, cnt)->cookie, action);
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afct = afct->next;
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}
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}
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void
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_dl_audit_activity_nsid (Lmid_t nsid, int action)
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{
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/* If head is NULL, the namespace has become empty, and the audit interface
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does not give us a way to signal LA_ACT_CONSISTENT for it because the
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first loaded module is used to identify the namespace. */
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struct link_map *head = GL(dl_ns)[nsid]._ns_loaded;
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if (__glibc_likely (GLRO(dl_naudit) == 0)
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|| head == NULL || head->l_auditing)
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return;
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_dl_audit_activity_map (head, action);
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}
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void
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_dl_audit_objopen (struct link_map *l, Lmid_t nsid)
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{
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@ -472,25 +472,7 @@ _dl_close_worker (struct link_map *map, bool force)
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#ifdef SHARED
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/* Auditing checkpoint: we will start deleting objects. */
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if (__glibc_unlikely (do_audit))
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{
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struct link_map *head = ns->_ns_loaded;
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struct audit_ifaces *afct = GLRO(dl_audit);
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/* Do not call the functions for any auditing object. */
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if (head->l_auditing == 0)
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{
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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{
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struct auditstate *state = link_map_audit_state (head, cnt);
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afct->activity (&state->cookie, LA_ACT_DELETE);
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}
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afct = afct->next;
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}
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}
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}
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_dl_audit_activity_nsid (nsid, LA_ACT_DELETE);
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#endif
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/* Notify the debugger we are about to remove some loaded objects. */
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@ -785,32 +767,9 @@ _dl_close_worker (struct link_map *map, bool force)
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__rtld_lock_unlock_recursive (GL(dl_load_tls_lock));
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#ifdef SHARED
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/* Auditing checkpoint: we have deleted all objects. */
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if (__glibc_unlikely (do_audit))
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{
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struct link_map *head = ns->_ns_loaded;
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/* If head is NULL, the namespace has become empty, and the
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audit interface does not give us a way to signal
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LA_ACT_CONSISTENT for it because the first loaded module is
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used to identify the namespace.
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Furthermore, do not notify auditors of the cleanup of a
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failed audit module loading attempt. */
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if (head != NULL && head->l_auditing == 0)
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{
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struct audit_ifaces *afct = GLRO(dl_audit);
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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{
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struct auditstate *state = link_map_audit_state (head, cnt);
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afct->activity (&state->cookie, LA_ACT_CONSISTENT);
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}
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afct = afct->next;
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}
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}
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}
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/* Auditing checkpoint: we have deleted all objects. Also, do not notify
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auditors of the cleanup of a failed audit module loading attempt. */
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_dl_audit_activity_nsid (nsid, LA_ACT_CONSISTENT);
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#endif
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if (__builtin_expect (ns->_ns_loaded == NULL, 0)
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@ -1483,24 +1483,8 @@ cannot enable executable stack as shared object requires");
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/* Auditing checkpoint: we are going to add new objects. Since this
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is called after _dl_add_to_namespace_list the namespace is guaranteed
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to not be empty. */
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if ((mode & __RTLD_AUDIT) == 0
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&& __glibc_unlikely (GLRO(dl_naudit) > 0))
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{
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struct link_map *head = GL(dl_ns)[nsid]._ns_loaded;
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/* Do not call the functions for any auditing object. */
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if (head->l_auditing == 0)
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{
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struct audit_ifaces *afct = GLRO(dl_audit);
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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afct->activity (&link_map_audit_state (head, cnt)->cookie,
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LA_ACT_ADD);
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afct = afct->next;
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}
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}
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}
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if ((mode & __RTLD_AUDIT) == 0)
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_dl_audit_activity_nsid (nsid, LA_ACT_ADD);
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#endif
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/* Notify the debugger we have added some objects. We need to
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@ -611,25 +611,7 @@ dl_open_worker_begin (void *a)
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#ifdef SHARED
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/* Auditing checkpoint: we have added all objects. */
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if (__glibc_unlikely (GLRO(dl_naudit) > 0))
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{
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struct link_map *head = GL(dl_ns)[new->l_ns]._ns_loaded;
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/* Do not call the functions for any auditing object. */
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if (head->l_auditing == 0)
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{
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struct audit_ifaces *afct = GLRO(dl_audit);
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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{
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struct auditstate *state = link_map_audit_state (head, cnt);
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afct->activity (&state->cookie, LA_ACT_CONSISTENT);
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}
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afct = afct->next;
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}
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}
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}
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_dl_audit_activity_nsid (new->l_ns, LA_ACT_CONSISTENT);
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#endif
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/* Notify the debugger all new objects are now ready to go. */
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31
elf/rtld.c
31
elf/rtld.c
@ -1794,18 +1794,7 @@ dl_main (const ElfW(Phdr) *phdr,
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/* Auditing checkpoint: we are ready to signal that the initial map
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is being constructed. */
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if (__glibc_unlikely (GLRO(dl_naudit) > 0))
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{
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struct audit_ifaces *afct = GLRO(dl_audit);
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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afct->activity (&link_map_audit_state (main_map, cnt)->cookie,
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LA_ACT_ADD);
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afct = afct->next;
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}
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}
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_dl_audit_activity_map (main_map, LA_ACT_ADD);
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/* We have two ways to specify objects to preload: via environment
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variable and via the file /etc/ld.so.preload. The latter can also
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@ -2486,23 +2475,7 @@ dl_main (const ElfW(Phdr) *phdr,
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#ifdef SHARED
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/* Auditing checkpoint: we have added all objects. */
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if (__glibc_unlikely (GLRO(dl_naudit) > 0))
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{
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struct link_map *head = GL(dl_ns)[LM_ID_BASE]._ns_loaded;
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/* Do not call the functions for any auditing object. */
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if (head->l_auditing == 0)
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{
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struct audit_ifaces *afct = GLRO(dl_audit);
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for (unsigned int cnt = 0; cnt < GLRO(dl_naudit); ++cnt)
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{
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if (afct->activity != NULL)
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afct->activity (&link_map_audit_state (head, cnt)->cookie,
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LA_ACT_CONSISTENT);
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afct = afct->next;
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}
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}
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}
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_dl_audit_activity_nsid (LM_ID_BASE, LA_ACT_CONSISTENT);
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#endif
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/* Notify the debugger all new objects are now ready to go. We must re-get
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@ -1396,6 +1396,16 @@ link_map_audit_state (struct link_map *l, size_t index)
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}
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}
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/* Call the la_activity from the audit modules from the link map L and issues
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the ACTION argument. */
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void _dl_audit_activity_map (struct link_map *l, int action)
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attribute_hidden;
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/* Call the la_activity from the audit modules from the link map from the
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namespace NSID and issues the ACTION argument. */
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void _dl_audit_activity_nsid (Lmid_t nsid, int action)
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attribute_hidden;
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/* Call the la_objopen from the audit modules for the link_map L on the
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namespace identification NSID. */
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void _dl_audit_objopen (struct link_map *l, Lmid_t nsid)
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