Files
FastSync/tests/test_xattr.c
T
TapTap 5893de4a34 fix(receiver): close re-review findings — dry-run basis oracle, ACL capture, fsync reopen
Follow-up to a237043 addressing three security/correctness re-review findings.

(1) MEDIUM: a server-contacting --dry-run with --compare-dest/--copy-dest/
    --link-dest still read and hashed the basis file and compared it with the
    client-supplied digest, a 1-bit content oracle. basis_match_find() gains a
    hash_content parameter; the dry-run shortcut passes false and returns no
    match without touching basis bytes, so an otherwise-matching entry is
    reported as would-transfer. The real (non-dry-run) path is unchanged.

(2) LOW: xattr_capture_path() hardcoded preserve_acls=true, so the receiver's
    hard-link copy fallback re-applied system.posix_acl_* even when -A was not
    negotiated. The function now takes preserve_acls and members.* is
    unaffected; scanner and receiver callers thread the negotiated flag.

(3) INFO: the --fsync --link-dest temp reopen now uses O_NONBLOCK and treats
    a raced-in FIFO's ENXIO as a benign fsync-skip instead of blocking.

Tests: dry-run + basis unit test (asserts would-transfer, no content read) and
integration test; xattr capture ACL-filter test. Verified strict build, ASan,
clang-format, cppcheck, and the CI integration subset.
2026-09-14 17:19:27 +02:00

491 lines
16 KiB
C

#include "test_xattr.h"
#include "xattr.h"
#include "config.h"
#include "file.h"
#include "identity.h"
#include "protocol.h"
#include "test_utils.h"
#include <fcntl.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/stat.h>
#include <sys/wait.h>
#include <sys/xattr.h>
#include <unistd.h>
static void run_recv_helper(int fd) {
int ok = 0;
FileXattrList* list = xattr_receive(fd, &ok, false);
if (!ok)
_exit(1);
if (!list) {
/* NULL list only on error, already handled above. */
_exit(1);
}
if (list->count != 2)
_exit(1);
if (strcmp(list->items[0].name, "user.foo") != 0 || list->items[0].value_len != 3 ||
memcmp(list->items[0].value, "bar", 3) != 0)
_exit(1);
if (strcmp(list->items[1].name, "user.empty") != 0 || list->items[1].value_len != 0)
_exit(1);
xattr_list_free(list);
_exit(0);
}
static void test_xattr_wire_roundtrip() {
/* Round-trip a user.* list incl. an empty value. */
int p[2];
EXPECT_EQ_INT(pipe(p), 0);
io_set_fds(p[0], p[1]);
io_set_bwlimit(0);
pid_t pid = fork();
if (pid == 0) {
close(p[1]);
io_set_fds(p[0], p[0]);
run_recv_helper(p[0]);
}
close(p[0]);
io_set_fds(p[1], p[1]);
FileXattrList* list = xattr_list_new();
EXPECT_NOT_NULL(list);
EXPECT_TRUE(xattr_list_append(list, "user.foo", "bar", 3));
EXPECT_TRUE(xattr_list_append(list, "user.empty", NULL, 0));
EXPECT_TRUE(xattr_send(p[1], list));
xattr_list_free(list);
int status;
waitpid(pid, &status, 0);
close(p[1]);
EXPECT_TRUE(WIFEXITED(status) && WEXITSTATUS(status) == 0);
}
static void run_recv_must_fail(int fd) {
int ok = 0;
FileXattrList* list = xattr_receive(fd, &ok, false);
/* A NULL list with ok==0 is the expected rejection. */
if (ok == 0 && list == NULL)
_exit(0);
xattr_list_free(list);
_exit(1);
}
/* A receiver must reject a security.* (privileged-namespace) attribute, never
* apply it: the send side can be malicious, so only the receiver whitelist
* matters. */
static void test_xattr_reject_privileged_namespace() {
int p[2];
EXPECT_EQ_INT(pipe(p), 0);
io_set_fds(p[0], p[1]);
io_set_bwlimit(0);
pid_t pid = fork();
if (pid == 0) {
close(p[1]);
io_set_fds(p[0], p[0]);
run_recv_must_fail(p[0]);
}
close(p[0]);
io_set_fds(p[1], p[1]);
FileXattrList* list = xattr_list_new();
EXPECT_NOT_NULL(list);
/* security.capability must be rejected by the receiver. */
EXPECT_TRUE(xattr_list_append(list, "security.capability", "\x01\x00", 2));
xattr_send(p[1], list); /* receiver rejects at the name check and exits */
xattr_list_free(list);
int status;
waitpid(pid, &status, 0);
close(p[1]);
EXPECT_TRUE(WIFEXITED(status) && WEXITSTATUS(status) == 0);
}
/* An oversized value (beyond XATTR_VALUE_MAX) must be rejected on receive. */
static void test_xattr_reject_oversized_value() {
int p[2];
EXPECT_EQ_INT(pipe(p), 0);
io_set_fds(p[0], p[1]);
io_set_bwlimit(0);
pid_t pid = fork();
if (pid == 0) {
close(p[1]);
io_set_fds(p[0], p[0]);
run_recv_must_fail(p[0]);
}
close(p[0]);
io_set_fds(p[1], p[1]);
FileXattrList* list = xattr_list_new();
EXPECT_NOT_NULL(list);
size_t huge = (size_t)XATTR_VALUE_MAX + 1;
unsigned char* blob = calloc(1, huge);
EXPECT_NOT_NULL(blob);
EXPECT_TRUE(xattr_list_append(list, "user.huge", blob, huge));
xattr_send(p[1], list); /* send is best-effort; the receiver rejects and exits */
free(blob);
xattr_list_free(list);
int status;
waitpid(pid, &status, 0);
close(p[1]);
EXPECT_TRUE(WIFEXITED(status) && WEXITSTATUS(status) == 0);
}
/* The list append enforces the count bound (defense in depth). */
static void test_xattr_count_bound() {
FileXattrList* list = xattr_list_new();
EXPECT_NOT_NULL(list);
bool all_ok = true;
for (int i = 0; i < XATTR_MAX_COUNT + 1; i++) {
char name[32];
snprintf(name, sizeof(name), "user.k%d", i);
if (!xattr_list_append(list, name, "v", 1))
all_ok = false;
}
EXPECT_FALSE(all_ok);
EXPECT_EQ_INT(list->count, XATTR_MAX_COUNT);
xattr_list_free(list);
}
/* The captured list on a plain file reflects only whitelisted namespaces
* (Linux only; skipped when the filesystem has no xattr support). */
static void test_xattr_capture_and_appliable() {
EXPECT_FALSE(xattr_name_appliable(NULL, false));
EXPECT_FALSE(xattr_name_appliable("", false));
EXPECT_FALSE(xattr_name_appliable("security.selinux", false));
EXPECT_FALSE(xattr_name_appliable("trusted.blob", false));
EXPECT_TRUE(xattr_name_appliable("user.foo", false));
EXPECT_TRUE(xattr_name_appliable("user.foo", true));
/* The reserved fake-super key is receiver-only and never forwarded/applied. */
EXPECT_FALSE(xattr_name_appliable("user.fastsync.stat", false));
EXPECT_FALSE(xattr_name_appliable("user.fastsync.stat", true));
/* B4: the ACL names require --acls; -X alone must not authorize them. */
EXPECT_FALSE(xattr_name_appliable("system.posix_acl_access", false));
EXPECT_FALSE(xattr_name_appliable("system.posix_acl_default", false));
EXPECT_TRUE(xattr_name_appliable("system.posix_acl_access", true));
EXPECT_TRUE(xattr_name_appliable("system.posix_acl_default", true));
}
/* B4: a `-X`-only receiver (preserve_acls false) must NOT apply an incoming
* ACL xattr, while a user.* attribute in the same block still survives. The
* ACL entry is dropped, not applied (and the -X transfer is not failed). */
static void run_recv_drops_acl_keeps_user(int fd) {
int ok = 0;
FileXattrList* list = xattr_receive(fd, &ok, false);
if (!ok || list == NULL)
_exit(1);
bool saw_user = false;
for (int i = 0; i < list->count; i++) {
if (strcmp(list->items[i].name, "system.posix_acl_access") == 0)
_exit(1); /* ACL must have been dropped */
if (strcmp(list->items[i].name, "user.keep") == 0)
saw_user = true;
}
xattr_list_free(list);
_exit(saw_user ? 0 : 1);
}
static void test_xattr_receive_drops_acl_without_preserve_acls() {
int p[2];
EXPECT_EQ_INT(pipe(p), 0);
io_set_fds(p[0], p[1]);
io_set_bwlimit(0);
pid_t pid = fork();
if (pid == 0) {
close(p[1]);
io_set_fds(p[0], p[0]);
run_recv_drops_acl_keeps_user(p[0]);
}
close(p[0]);
io_set_fds(p[1], p[1]);
FileXattrList* list = xattr_list_new();
EXPECT_NOT_NULL(list);
EXPECT_TRUE(xattr_list_append(list, "system.posix_acl_access", "\x02\x00\x00\x00", 4));
EXPECT_TRUE(xattr_list_append(list, "user.keep", "yes", 3));
xattr_send(p[1], list);
xattr_list_free(list);
int status;
waitpid(pid, &status, 0);
close(p[1]);
EXPECT_TRUE(WIFEXITED(status) && WEXITSTATUS(status) == 0);
}
/* MINOR-2: a --link-dest / -H copy fallback (linkat refused) must still apply
* the per-file xattrs and --fake-super stat. A DIRECTORY basis forces linkat
* to fail with EPERM, exercising the byte-copy fallback deterministically.
* Guarded on filesystem xattr support. */
static void test_link_copy_fallback_preserves_xattrs() {
const char* dest = "test_link_xattr_dest.txt";
const char* basis_dir = "test_link_xattr_basis_dir";
unlink(dest);
rmdir(basis_dir);
EXPECT_EQ_INT(mkdir(basis_dir, 0700), 0);
/* Probe xattr support on the cwd filesystem using the destination file. */
int probe = open(dest, O_WRONLY | O_CREAT | O_TRUNC, 0600);
bool has_xattr = probe >= 0 && setxattr(dest, "user.fastsync.xprobe", "p", 1, 0) == 0;
if (probe >= 0)
close(probe);
if (!has_xattr) {
removexattr(dest, "user.fastsync.xprobe");
unlink(dest);
rmdir(basis_dir);
return; /* skip silently when the filesystem has no xattr support */
}
removexattr(dest, "user.fastsync.xprobe");
FileXattrList* xattrs = xattr_list_new();
EXPECT_NOT_NULL(xattrs);
EXPECT_TRUE(xattr_list_append(xattrs, "user.fallback", "kept", 4));
FileMetadata m;
memset(&m, 0, sizeof(m));
m.mode = 0640;
m.uid = 1001;
m.gid = 1002;
m.mtime_sec = 1234567890;
m.mtime_nsec = 0;
m.atime_valid = false;
m.crtime_valid = false;
bool ok = file_to_disk_secure_link_attrs(dest, basis_dir, "payload", 7, false, &m, false, false,
xattrs, true, NULL);
xattr_list_free(xattrs);
EXPECT_TRUE(ok);
/* Content landed (the copy fallback wrote the caller's bytes). */
int fd = open(dest, O_RDONLY);
EXPECT_TRUE(fd >= 0);
char buf[16];
ssize_t n = read(fd, buf, sizeof(buf));
close(fd);
EXPECT_EQ_INT((int)strlen("payload"), (int)n);
if (n == 7)
EXPECT_TRUE(memcmp(buf, "payload", 7) == 0);
/* Per-file xattr applied on the copy. */
char vbuf[16];
ssize_t vlen = getxattr(dest, "user.fallback", vbuf, sizeof(vbuf));
EXPECT_EQ_INT(4, (int)vlen);
if (vlen == 4)
EXPECT_TRUE(memcmp(vbuf, "kept", 4) == 0);
/* fake-super stat parked by the receiver. */
EXPECT_TRUE((int)getxattr(dest, FAKESUPER_XATTR, NULL, 0) > 0);
unlink(dest);
rmdir(basis_dir);
}
/* Capture must honor --acls: xattr_capture_path(path, false) (plain -X) must
* never return the POSIX ACL names, while xattr_capture_path(path, true) (-A)
* does; user.* is captured either way. This is the capture-side counterpart of
* the receiver's --acls gate and must not depend on the caller having checked
* the flag. Guarded on filesystem/ACL support. */
static void test_xattr_capture_filters_acls() {
const char* path = "test_xattr_capture_acls.txt";
unlink(path);
int fd = open(path, O_WRONLY | O_CREAT | O_TRUNC, 0600);
if (fd < 0)
return;
bool has_xattr = setxattr(path, "user.fastsync.xprobe", "p", 1, 0) == 0;
if (has_xattr)
removexattr(path, "user.fastsync.xprobe");
if (!has_xattr) {
close(fd);
unlink(path);
return; /* filesystem without xattr support */
}
if (setxattr(path, "user.keep", "yes", 3, 0) != 0) {
close(fd);
unlink(path);
return;
}
/* Synthesize a valid non-trivial POSIX access ACL blob (little-endian):
version 2 followed by USER_OBJ/USER/GROUP_OBJ/MASK/OTHER entries. */
uint32_t acl_uid = geteuid() == 0 ? 65534u : (uint32_t)geteuid();
unsigned char blob[4 + 5 * 8];
uint32_t version = 2;
memcpy(blob, &version, 4);
const uint16_t tags[5] = {0x01, 0x02, 0x04, 0x10, 0x20}; /* OBJ/USER/GROUP/MASK/OTHER */
const uint16_t perms[5] = {0x04, 0x04, 0x04, 0x04, 0x00};
const uint32_t ids[5] = {0xFFFFFFFFu, acl_uid, 0xFFFFFFFFu, 0xFFFFFFFFu, 0xFFFFFFFFu};
size_t off = 4;
for (int i = 0; i < 5; i++) {
memcpy(blob + off, &tags[i], sizeof(tags[i]));
off += sizeof(tags[i]);
memcpy(blob + off, &perms[i], sizeof(perms[i]));
off += sizeof(perms[i]);
memcpy(blob + off, &ids[i], sizeof(ids[i]));
off += sizeof(ids[i]);
}
if (setxattr(path, "system.posix_acl_access", blob, off, 0) != 0) {
close(fd);
unlink(path);
return; /* no unprivileged ACL support: skip silently */
}
close(fd);
FileXattrList* plain = xattr_capture_path(path, false);
FileXattrList* with_acls = xattr_capture_path(path, true);
bool plain_user = false, plain_acl = false, acl_user = false, acl_acl = false;
for (int i = 0; plain && i < plain->count; i++) {
if (strcmp(plain->items[i].name, "user.keep") == 0)
plain_user = true;
if (strcmp(plain->items[i].name, "system.posix_acl_access") == 0)
plain_acl = true;
}
for (int i = 0; with_acls && i < with_acls->count; i++) {
if (strcmp(with_acls->items[i].name, "user.keep") == 0)
acl_user = true;
if (strcmp(with_acls->items[i].name, "system.posix_acl_access") == 0)
acl_acl = true;
}
EXPECT_TRUE(plain_user);
EXPECT_FALSE(plain_acl);
EXPECT_TRUE(acl_user);
EXPECT_TRUE(acl_acl);
xattr_list_free(plain);
xattr_list_free(with_acls);
unlink(path);
}
/* --fake-super replay: fake_super_store_fd records the source stat into the
* reserved xattr, and fake_super_restore_fd re-applies mode/mtime (and owner,
* when the process may) fd-relative. Restore must also be a safe no-op with no
* xattr present. Guarded on filesystem xattr support. */
static void test_fake_super_restore() {
const char* path = "test_fake_super_restore.txt";
unlink(path);
int fd = open(path, O_WRONLY | O_CREAT | O_TRUNC, 0600);
if (fd < 0)
return;
bool has_xattr = setxattr(path, "user.fastsync.xprobe", "p", 1, 0) == 0;
if (has_xattr)
removexattr(path, "user.fastsync.xprobe");
if (!has_xattr) {
close(fd);
unlink(path);
return; /* skip silently when the filesystem has no xattr support */
}
/* No xattr present yet: restore is a silent no-op (returns false, no crash). */
EXPECT_FALSE(fake_super_restore_fd(fd));
fake_super_store_fd(fd, 1001, 1002, 0751, 1700000000, 123456789);
EXPECT_TRUE(fake_super_restore_fd(fd));
struct stat st;
EXPECT_EQ_INT(fstat(fd, &st), 0);
EXPECT_EQ_INT((int)(st.st_mode & 07777), 0751);
/* Mode sanitization: the normal metadata path never grants group/other write
bits, and fake-super replay must not re-add them (a recorded 0666 restores
as 0644, never as world-writable). */
fake_super_store_fd(fd, 1001, 1002, 0666, 1700000000, 0);
EXPECT_TRUE(fake_super_restore_fd(fd));
EXPECT_EQ_INT(fstat(fd, &st), 0);
EXPECT_EQ_INT((int)(st.st_mode & 0777), 0644);
/* Restore with a malformed record must skip without failing. */
time_t before = st.st_mtime;
int wfd = open(path, O_RDONLY);
if (wfd >= 0) {
EXPECT_EQ_INT((int)fsetxattr(wfd, FAKESUPER_XATTR, "not-a-valid-record", 19, 0), 0);
close(wfd);
}
EXPECT_FALSE(fake_super_restore_fd(fd));
fstat(fd, &st);
EXPECT_EQ_INT((int)st.st_mtime, (int)before);
close(fd);
unlink(path);
}
/* --fake-super owner replay must honor the super gate and copy-as authority:
--no-super suppresses the recorded-source-owner chown even for root, and an
active --copy-as keeps its forced owner (the recorded source owner must never
override it). Root-gated: only root can observe a chown actually landing. */
static void test_fake_super_owner_gate() {
if (geteuid() != 0)
return; /* non-root cannot observe ownership changes; skip silently */
const char* path = "test_fake_super_owner_gate.txt";
unlink(path);
int fd = open(path, O_WRONLY | O_CREAT | O_TRUNC, 0600);
if (fd < 0)
return;
bool has_xattr = setxattr(path, "user.fastsync.xprobe", "p", 1, 0) == 0;
if (has_xattr)
removexattr(path, "user.fastsync.xprobe");
if (!has_xattr) {
close(fd);
unlink(path);
return; /* filesystem without xattr support */
}
if (fchown(fd, 0, 0) != 0) {
close(fd);
unlink(path);
return;
}
fake_super_store_fd(fd, 12345, 12346, 0755, 1700000000, 0);
Config* c = config_create();
EXPECT_NOT_NULL(c);
/* An explicit ownership policy is required before fake-super replay may
chown; --fake-super alone only records the source owner (A2). */
c->numeric_ids = true;
/* --no-super: the owner leg is skipped even as root. */
c->super_mode = SUPER_MODE_OFF;
EXPECT_TRUE(identity_set_active(c));
EXPECT_TRUE(fake_super_restore_fd(fd));
struct stat st;
EXPECT_EQ_INT(fstat(fd, &st), 0);
EXPECT_EQ_INT((int)st.st_uid, 0);
EXPECT_EQ_INT((int)st.st_gid, 0);
/* AUTO with an identity policy: the recorded source owner is applied. */
c->super_mode = SUPER_MODE_AUTO;
EXPECT_TRUE(identity_set_active(c));
EXPECT_TRUE(fake_super_restore_fd(fd));
EXPECT_EQ_INT(fstat(fd, &st), 0);
EXPECT_EQ_INT((int)st.st_uid, 12345);
EXPECT_EQ_INT((int)st.st_gid, 12346);
/* --super / --fake-super with NO explicit identity flag must NOT apply a
client-chosen owner: super_mode alone never enables ownership. */
EXPECT_EQ_INT(fchown(fd, 0, 0), 0);
c->numeric_ids = false;
c->super_mode = SUPER_MODE_ON;
EXPECT_TRUE(identity_set_active(c));
EXPECT_TRUE(fake_super_restore_fd(fd));
EXPECT_EQ_INT(fstat(fd, &st), 0);
EXPECT_EQ_INT((int)st.st_uid, 0);
EXPECT_EQ_INT((int)st.st_gid, 0);
/* Active --copy-as is authoritative: the recorded source owner must not
override it, even with AUTO/ON. */
c->copy_as_set = true;
c->copy_as_uid = 777;
c->copy_as_gid = 778;
EXPECT_TRUE(identity_set_active(c));
EXPECT_TRUE(fake_super_restore_fd(fd));
EXPECT_EQ_INT(fstat(fd, &st), 0);
EXPECT_EQ_INT((int)st.st_uid, 0);
EXPECT_EQ_INT((int)st.st_gid, 0);
identity_clear_active();
config_delete(c);
close(fd);
unlink(path);
}
void test_xattr() {
test_xattr_wire_roundtrip();
test_xattr_reject_privileged_namespace();
test_xattr_reject_oversized_value();
test_xattr_count_bound();
test_xattr_capture_and_appliable();
test_xattr_capture_filters_acls();
test_xattr_receive_drops_acl_without_preserve_acls();
test_link_copy_fallback_preserves_xattrs();
test_fake_super_restore();
test_fake_super_owner_gate();
}