690f818afd
of work to make libarchive work on Windows.
456 lines
16 KiB
C
456 lines
16 KiB
C
/*-
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* Copyright (c) 2003-2007 Tim Kientzle
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR(S) ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR(S) BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "test.h"
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__FBSDID("$FreeBSD$");
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#if ARCHIVE_VERSION_NUMBER >= 1009000 && !defined(_WIN32)
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#define UMASK 022
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static long _default_gid = -1;
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static long _invalid_gid = -1;
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static long _alt_gid = -1;
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/*
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* To fully test SGID restores, we need three distinct GIDs to work
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* with:
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* * the GID that files are created with by default (for the
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* current user in the current directory)
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* * An "alt gid" that this user can create files with
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* * An "invalid gid" that this user is not permitted to create
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* files with.
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* The second fails if this user doesn't belong to at least two groups;
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* the third fails if the current user is root.
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*/
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static void
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searchgid(void)
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{
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static int _searched = 0;
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uid_t uid = getuid();
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gid_t gid = 0;
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unsigned int n;
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struct stat st;
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int fd;
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/* If we've already looked this up, we're done. */
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if (_searched)
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return;
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_searched = 1;
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/* Create a file on disk in the current default dir. */
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fd = open("test_gid", O_CREAT, 0664);
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failure("Couldn't create a file for gid testing.");
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assert(fd > 0);
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/* See what GID it ended up with. This is our "valid" GID. */
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assert(fstat(fd, &st) == 0);
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_default_gid = st.st_gid;
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/* Find a GID for which fchown() fails. This is our "invalid" GID. */
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_invalid_gid = -1;
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/* This loop stops when we wrap the gid or examine 10,000 gids. */
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for (gid = 1, n = 1; gid == n && n < 10000 ; n++, gid++) {
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if (fchown(fd, uid, gid) != 0) {
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_invalid_gid = gid;
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break;
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}
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}
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/*
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* Find a GID for which fchown() succeeds, but which isn't the
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* default. This is the "alternate" gid.
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*/
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_alt_gid = -1;
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for (gid = 0, n = 0; gid == n && n < 10000 ; n++, gid++) {
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/* _alt_gid must be different than _default_gid */
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if (gid == (gid_t)_default_gid)
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continue;
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if (fchown(fd, uid, gid) == 0) {
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_alt_gid = gid;
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break;
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}
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}
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close(fd);
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}
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static int
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altgid(void)
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{
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searchgid();
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return (_alt_gid);
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}
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static int
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invalidgid(void)
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{
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searchgid();
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return (_invalid_gid);
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}
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static int
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defaultgid(void)
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{
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searchgid();
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return (_default_gid);
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}
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#endif
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/*
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* Exercise permission and ownership restores.
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* In particular, try to exercise a bunch of border cases related
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* to files/dirs that already exist, SUID/SGID bits, etc.
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*/
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DEFINE_TEST(test_write_disk_perms)
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{
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#if ARCHIVE_VERSION_NUMBER < 1009000 || defined(_WIN32)
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skipping("archive_write_disk interface");
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#else
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struct archive *a;
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struct archive_entry *ae;
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struct stat st;
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/*
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* Set ownership of the current directory to the group of this
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* process. Otherwise, the SGID tests below fail if the
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* /tmp directory is owned by a group to which we don't belong
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* and we're on a system where group ownership is inherited.
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* (Because we're not allowed to SGID files with defaultgid().)
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*/
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assertEqualInt(0, chown(".", getuid(), getgid()));
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/* Create an archive_write_disk object. */
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assert((a = archive_write_disk_new()) != NULL);
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/* Write a regular file to it. */
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assert((ae = archive_entry_new()) != NULL);
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archive_entry_copy_pathname(ae, "file_0755");
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archive_entry_set_mode(ae, S_IFREG | 0777);
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assert(0 == archive_write_header(a, ae));
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assert(0 == archive_write_finish_entry(a));
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archive_entry_free(ae);
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/* Write a regular file, then write over it. */
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/* For files, the perms should get updated. */
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assert((ae = archive_entry_new()) != NULL);
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archive_entry_copy_pathname(ae, "file_overwrite_0144");
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archive_entry_set_mode(ae, S_IFREG | 0777);
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assert(0 == archive_write_header(a, ae));
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archive_entry_free(ae);
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assert(0 == archive_write_finish_entry(a));
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/* Check that file was created with different perms. */
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assert(0 == stat("file_overwrite_0144", &st));
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failure("file_overwrite_0144: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) != 0144);
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/* Overwrite, this should change the perms. */
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assert((ae = archive_entry_new()) != NULL);
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archive_entry_copy_pathname(ae, "file_overwrite_0144");
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archive_entry_set_mode(ae, S_IFREG | 0144);
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assert(0 == archive_write_header(a, ae));
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archive_entry_free(ae);
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assert(0 == archive_write_finish_entry(a));
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/* Write a regular dir. */
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assert((ae = archive_entry_new()) != NULL);
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archive_entry_copy_pathname(ae, "dir_0514");
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archive_entry_set_mode(ae, S_IFDIR | 0514);
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assert(0 == archive_write_header(a, ae));
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archive_entry_free(ae);
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assert(0 == archive_write_finish_entry(a));
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/* Overwrite an existing dir. */
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/* For dir, the first perms should get left. */
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assert(mkdir("dir_overwrite_0744", 0744) == 0);
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/* Check original perms. */
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assert(0 == stat("dir_overwrite_0744", &st));
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failure("dir_overwrite_0744: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 0777) == 0744);
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/* Overwrite shouldn't edit perms. */
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assert((ae = archive_entry_new()) != NULL);
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archive_entry_copy_pathname(ae, "dir_overwrite_0744");
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archive_entry_set_mode(ae, S_IFDIR | 0777);
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assert(0 == archive_write_header(a, ae));
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archive_entry_free(ae);
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assert(0 == archive_write_finish_entry(a));
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/* Make sure they're unchanged. */
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assert(0 == stat("dir_overwrite_0744", &st));
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failure("dir_overwrite_0744: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 0777) == 0744);
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/* Write a regular file with SUID bit, but don't use _EXTRACT_PERM. */
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assert((ae = archive_entry_new()) != NULL);
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archive_entry_copy_pathname(ae, "file_no_suid");
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archive_entry_set_mode(ae, S_IFREG | S_ISUID | 0777);
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archive_write_disk_set_options(a, 0);
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assert(0 == archive_write_header(a, ae));
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assert(0 == archive_write_finish_entry(a));
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/* Write a regular file with ARCHIVE_EXTRACT_PERM. */
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_0777");
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archive_entry_set_mode(ae, S_IFREG | 0777);
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_PERM);
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assert(0 == archive_write_header(a, ae));
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assert(0 == archive_write_finish_entry(a));
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/* Write a regular file with ARCHIVE_EXTRACT_PERM & SUID bit */
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_4742");
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archive_entry_set_mode(ae, S_IFREG | S_ISUID | 0742);
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archive_entry_set_uid(ae, getuid());
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_PERM);
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assert(0 == archive_write_header(a, ae));
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assert(0 == archive_write_finish_entry(a));
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/*
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* Write a regular file with ARCHIVE_EXTRACT_PERM & SUID bit,
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* but wrong uid. POSIX says you shouldn't restore SUID bit
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* unless the UID could be restored.
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*/
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_bad_suid");
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archive_entry_set_mode(ae, S_IFREG | S_ISUID | 0742);
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archive_entry_set_uid(ae, getuid() + 1);
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_PERM);
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assertA(0 == archive_write_header(a, ae));
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/*
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* Because we didn't ask for owner, the failure to
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* restore SUID shouldn't return a failure.
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* We check below to make sure SUID really wasn't set.
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* See more detailed comments below.
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*/
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failure("Opportunistic SUID failure shouldn't return error.");
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assertEqualInt(0, archive_write_finish_entry(a));
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if (getuid() != 0) {
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_bad_suid2");
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archive_entry_set_mode(ae, S_IFREG | S_ISUID | 0742);
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archive_entry_set_uid(ae, getuid() + 1);
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archive_write_disk_set_options(a,
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ARCHIVE_EXTRACT_PERM | ARCHIVE_EXTRACT_OWNER);
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assertA(0 == archive_write_header(a, ae));
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/* Owner change should fail here. */
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failure("Non-opportunistic SUID failure should return error.");
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assertEqualInt(ARCHIVE_WARN, archive_write_finish_entry(a));
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}
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/* Write a regular file with ARCHIVE_EXTRACT_PERM & SGID bit */
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_perm_sgid");
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archive_entry_set_mode(ae, S_IFREG | S_ISGID | 0742);
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archive_entry_set_gid(ae, defaultgid());
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_PERM);
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assert(0 == archive_write_header(a, ae));
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failure("Setting SGID bit should succeed here.");
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assertEqualIntA(a, 0, archive_write_finish_entry(a));
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if (altgid() == -1) {
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/*
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* Current user must belong to at least two groups or
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* else we can't test setting the GID to another group.
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*/
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skipping("Current user can't test gid restore: must belong to more than one group.");
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} else {
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/*
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* Write a regular file with ARCHIVE_EXTRACT_PERM & SGID bit
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* but without ARCHIVE_EXTRACT_OWNER.
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*/
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/*
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* This is a weird case: The user has asked for permissions to
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* be restored but not asked for ownership to be restored. As
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* a result, the default file creation will create a file with
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* the wrong group. There are several possible behaviors for
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* libarchive in this scenario:
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* = Set the SGID bit. It is wrong and a security hole to
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* set SGID with the wrong group. Even POSIX thinks so.
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* = Implicitly set the group. I don't like this.
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* = drop the SGID bit and warn (the old libarchive behavior)
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* = drop the SGID bit and don't warn (the current libarchive
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* behavior).
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* The current behavior sees SGID/SUID restore when you
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* don't ask for owner restore as an "opportunistic"
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* action. That is, libarchive should do it if it can,
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* but if it can't, it's not an error.
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*/
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_alt_sgid");
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archive_entry_set_mode(ae, S_IFREG | S_ISGID | 0742);
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archive_entry_set_uid(ae, getuid());
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archive_entry_set_gid(ae, altgid());
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_PERM);
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assert(0 == archive_write_header(a, ae));
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failure("Setting SGID bit should fail because of group mismatch but the failure should be silent because we didn't ask for the group to be set.");
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assertEqualIntA(a, 0, archive_write_finish_entry(a));
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/*
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* As above, but add _EXTRACT_OWNER to verify that it
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* does succeed.
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*/
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_alt_sgid_owner");
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archive_entry_set_mode(ae, S_IFREG | S_ISGID | 0742);
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archive_entry_set_uid(ae, getuid());
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archive_entry_set_gid(ae, altgid());
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archive_write_disk_set_options(a,
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ARCHIVE_EXTRACT_PERM | ARCHIVE_EXTRACT_OWNER);
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assert(0 == archive_write_header(a, ae));
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failure("Setting SGID bit should succeed here.");
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assertEqualIntA(a, ARCHIVE_OK, archive_write_finish_entry(a));
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}
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/*
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* Write a regular file with ARCHIVE_EXTRACT_PERM & SGID bit,
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* but wrong GID. POSIX says you shouldn't restore SGID bit
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* unless the GID could be restored.
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*/
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if (invalidgid() == -1) {
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/* This test always fails for root. */
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printf("Running as root: Can't test SGID failures.\n");
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} else {
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_bad_sgid");
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archive_entry_set_mode(ae, S_IFREG | S_ISGID | 0742);
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archive_entry_set_gid(ae, invalidgid());
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_PERM);
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assertA(0 == archive_write_header(a, ae));
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failure("This SGID restore should fail without an error.");
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assertEqualIntA(a, 0, archive_write_finish_entry(a));
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_bad_sgid2");
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archive_entry_set_mode(ae, S_IFREG | S_ISGID | 0742);
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archive_entry_set_gid(ae, invalidgid());
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archive_write_disk_set_options(a,
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ARCHIVE_EXTRACT_PERM | ARCHIVE_EXTRACT_OWNER);
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assertA(0 == archive_write_header(a, ae));
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failure("This SGID restore should fail with an error.");
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assertEqualIntA(a, ARCHIVE_WARN, archive_write_finish_entry(a));
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}
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/* Set ownership should fail if we're not root. */
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if (getuid() == 0) {
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printf("Running as root: Can't test setuid failures.\n");
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} else {
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assert(archive_entry_clear(ae) != NULL);
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archive_entry_copy_pathname(ae, "file_bad_owner");
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archive_entry_set_mode(ae, S_IFREG | 0744);
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archive_entry_set_uid(ae, getuid() + 1);
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archive_write_disk_set_options(a, ARCHIVE_EXTRACT_OWNER);
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assertA(0 == archive_write_header(a, ae));
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assertEqualIntA(a,ARCHIVE_WARN,archive_write_finish_entry(a));
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}
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#if ARCHIVE_VERSION_NUMBER < 2000000
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archive_write_finish(a);
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#else
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assert(0 == archive_write_finish(a));
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#endif
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archive_entry_free(ae);
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/* Test the entries on disk. */
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assert(0 == stat("file_0755", &st));
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failure("file_0755: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == 0755);
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assert(0 == stat("file_overwrite_0144", &st));
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failure("file_overwrite_0144: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == 0144);
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assert(0 == stat("dir_0514", &st));
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failure("dir_0514: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == 0514);
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assert(0 == stat("dir_overwrite_0744", &st));
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failure("dir_overwrite_0744: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 0777) == 0744);
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assert(0 == stat("file_no_suid", &st));
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failure("file_0755: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == 0755);
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assert(0 == stat("file_0777", &st));
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failure("file_0777: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == 0777);
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/* SUID bit should get set here. */
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assert(0 == stat("file_4742", &st));
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failure("file_4742: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == (S_ISUID | 0742));
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/* SUID bit should NOT have been set here. */
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assert(0 == stat("file_bad_suid", &st));
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failure("file_bad_suid: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == (0742));
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/* Some things don't fail if you're root, so suppress this. */
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if (getuid() != 0) {
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/* SUID bit should NOT have been set here. */
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assert(0 == stat("file_bad_suid2", &st));
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failure("file_bad_suid2: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == (0742));
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}
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/* SGID should be set here. */
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assert(0 == stat("file_perm_sgid", &st));
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failure("file_perm_sgid: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == (S_ISGID | 0742));
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if (altgid() != -1) {
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/* SGID should not be set here. */
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assert(0 == stat("file_alt_sgid", &st));
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failure("file_alt_sgid: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == (0742));
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/* SGID should be set here. */
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assert(0 == stat("file_alt_sgid_owner", &st));
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failure("file_alt_sgid: st.st_mode=%o", st.st_mode);
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assert((st.st_mode & 07777) == (S_ISGID | 0742));
|
|
}
|
|
|
|
if (invalidgid() != -1) {
|
|
/* SGID should NOT be set here. */
|
|
assert(0 == stat("file_bad_sgid", &st));
|
|
failure("file_bad_sgid: st.st_mode=%o", st.st_mode);
|
|
assert((st.st_mode & 07777) == (0742));
|
|
/* SGID should NOT be set here. */
|
|
assert(0 == stat("file_bad_sgid2", &st));
|
|
failure("file_bad_sgid2: st.st_mode=%o", st.st_mode);
|
|
assert((st.st_mode & 07777) == (0742));
|
|
}
|
|
|
|
if (getuid() != 0) {
|
|
assert(0 == stat("file_bad_owner", &st));
|
|
failure("file_bad_owner: st.st_mode=%o", st.st_mode);
|
|
assert((st.st_mode & 07777) == (0744));
|
|
failure("file_bad_owner: st.st_uid=%d getuid()=%d",
|
|
st.st_uid, getuid());
|
|
/* The entry had getuid()+1, but because we're
|
|
* not root, we should not have been able to set that. */
|
|
assert(st.st_uid == getuid());
|
|
}
|
|
#endif
|
|
}
|