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authorPhilippe Mathieu-Daudé <philmd@redhat.com>2021-09-03 19:45:05 +0200
committerThomas Huth <thuth@redhat.com>2022-07-18 20:24:36 +0200
commitc4f8ce24de81162d925ca24db8adb194b47fffb8 (patch)
treecc42a041b47a40c66eb4865eac6dab269cf67a10 /tests/unit/test-iov.c
parente18f27d9ed6132b774910e6ce6999cfc59822e67 (diff)
tests/unit: Replace g_memdup() by g_memdup2()
Per https://discourse.gnome.org/t/port-your-module-from-g-memdup-to-g-memdup2-now/5538 The old API took the size of the memory to duplicate as a guint, whereas most memory functions take memory sizes as a gsize. This made it easy to accidentally pass a gsize to g_memdup(). For large values, that would lead to a silent truncation of the size from 64 to 32 bits, and result in a heap area being returned which is significantly smaller than what the caller expects. This can likely be exploited in various modules to cause a heap buffer overflow. Replace g_memdup() by the safer g_memdup2() wrapper. Signed-off-by: Philippe Mathieu-Daudé <philmd@redhat.com> Message-Id: <20210903174510.751630-24-philmd@redhat.com> Signed-off-by: Thomas Huth <thuth@redhat.com>
Diffstat (limited to 'tests/unit/test-iov.c')
-rw-r--r--tests/unit/test-iov.c26
1 files changed, 13 insertions, 13 deletions
diff --git a/tests/unit/test-iov.c b/tests/unit/test-iov.c
index 93bda00f0e..6f7623d310 100644
--- a/tests/unit/test-iov.c
+++ b/tests/unit/test-iov.c
@@ -172,7 +172,7 @@ static void test_io(void)
}
iov_from_buf(iov, niov, 0, buf, sz);
- siov = g_memdup(iov, sizeof(*iov) * niov);
+ siov = g_memdup2(iov, sizeof(*iov) * niov);
if (socketpair(PF_UNIX, SOCK_STREAM, 0, sv) < 0) {
perror("socketpair");
@@ -349,7 +349,7 @@ static void test_discard_front_undo(void)
/* Discard zero bytes */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_tmp = iov;
iov_cnt_tmp = iov_cnt;
iov_discard_front_undoable(&iov_tmp, &iov_cnt_tmp, 0, &undo);
@@ -360,7 +360,7 @@ static void test_discard_front_undo(void)
/* Discard more bytes than vector size */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_tmp = iov;
iov_cnt_tmp = iov_cnt;
size = iov_size(iov, iov_cnt);
@@ -372,7 +372,7 @@ static void test_discard_front_undo(void)
/* Discard entire vector */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_tmp = iov;
iov_cnt_tmp = iov_cnt;
size = iov_size(iov, iov_cnt);
@@ -384,7 +384,7 @@ static void test_discard_front_undo(void)
/* Discard within first element */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_tmp = iov;
iov_cnt_tmp = iov_cnt;
size = g_test_rand_int_range(1, iov->iov_len);
@@ -396,7 +396,7 @@ static void test_discard_front_undo(void)
/* Discard entire first element */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_tmp = iov;
iov_cnt_tmp = iov_cnt;
iov_discard_front_undoable(&iov_tmp, &iov_cnt_tmp, iov->iov_len, &undo);
@@ -407,7 +407,7 @@ static void test_discard_front_undo(void)
/* Discard within second element */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_tmp = iov;
iov_cnt_tmp = iov_cnt;
size = iov->iov_len + g_test_rand_int_range(1, iov[1].iov_len);
@@ -498,7 +498,7 @@ static void test_discard_back_undo(void)
/* Discard zero bytes */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_cnt_tmp = iov_cnt;
iov_discard_back_undoable(iov, &iov_cnt_tmp, 0, &undo);
iov_discard_undo(&undo);
@@ -508,7 +508,7 @@ static void test_discard_back_undo(void)
/* Discard more bytes than vector size */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_cnt_tmp = iov_cnt;
size = iov_size(iov, iov_cnt);
iov_discard_back_undoable(iov, &iov_cnt_tmp, size + 1, &undo);
@@ -519,7 +519,7 @@ static void test_discard_back_undo(void)
/* Discard entire vector */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_cnt_tmp = iov_cnt;
size = iov_size(iov, iov_cnt);
iov_discard_back_undoable(iov, &iov_cnt_tmp, size, &undo);
@@ -530,7 +530,7 @@ static void test_discard_back_undo(void)
/* Discard within last element */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_cnt_tmp = iov_cnt;
size = g_test_rand_int_range(1, iov[iov_cnt - 1].iov_len);
iov_discard_back_undoable(iov, &iov_cnt_tmp, size, &undo);
@@ -541,7 +541,7 @@ static void test_discard_back_undo(void)
/* Discard entire last element */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_cnt_tmp = iov_cnt;
size = iov[iov_cnt - 1].iov_len;
iov_discard_back_undoable(iov, &iov_cnt_tmp, size, &undo);
@@ -552,7 +552,7 @@ static void test_discard_back_undo(void)
/* Discard within second-to-last element */
iov_random(&iov, &iov_cnt);
- iov_orig = g_memdup(iov, sizeof(iov[0]) * iov_cnt);
+ iov_orig = g_memdup2(iov, sizeof(iov[0]) * iov_cnt);
iov_cnt_tmp = iov_cnt;
size = iov[iov_cnt - 1].iov_len +
g_test_rand_int_range(1, iov[iov_cnt - 2].iov_len);