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--- libmalloc/libmalloc-657.60.21/tests/nano_tests.c
+++ libmalloc/libmalloc-425.100.7/tests/nano_tests.c
@@ -85,44 +85,28 @@
static void *allocations[ALLOCATION_COUNT];
-T_GLOBAL_META(T_META_RUN_CONCURRENTLY(true), T_META_TAG_VM_NOT_PREFERRED);
+T_GLOBAL_META(T_META_RUN_CONCURRENTLY(true));
T_DECL(nano_active_test, "Test that Nano is activated",
- T_META_ENVVAR("MallocNanoZone=1"), T_META_ENVVAR("MallocProbGuard=0"),
- T_META_TAG_XZONE, T_META_TAG_NANO_ON_XZONE)
-{
-#if CONFIG_NANOZONE
- bool nano_on_xzone = getenv("MallocNanoOnXzone");
- if (nano_on_xzone) {
- T_ASSERT_NE(malloc_engaged_secure_allocator(), 0,
- "Secure allocator engaged");
- }
-
- T_ASSERT_NE(malloc_engaged_nano(), 0, "Nano mode engaged");
-
- if (nano_on_xzone || !malloc_engaged_secure_allocator()) {
- void *ptr = malloc(16);
- T_LOG("Nano ptr is %p\n", ptr);
- T_ASSERT_EQ(NANOZONE_SIGNATURE, (uint64_t)((uintptr_t)ptr) >> SHIFT_NANO_SIGNATURE,
- "Nanozone is active");
- free(ptr);
- }
+ T_META_ENVVAR("MallocNanoZone=1"))
+{
+#if CONFIG_NANOZONE
+ void *ptr = malloc(16);
+ T_LOG("Nano ptr is %p\n", ptr);
+ T_ASSERT_EQ(NANOZONE_SIGNATURE, (uint64_t)((uintptr_t)ptr) >> SHIFT_NANO_SIGNATURE,
+ "Nanozone is active");
+ T_ASSERT_NE(malloc_engaged_nano(), 0, "Nanozone engaged");
+ free(ptr);
#else // CONFIG_NANOZONE
T_SKIP("Nano allocator not configured");
#endif // CONFIG_NANOZONE
}
T_DECL(nano_enumerator_test, "Test the Nanov2 enumerator",
- T_META_ENVVAR("MallocNanoZone=V2"), T_META_ENVVAR("MallocProbGuard=0"),
- T_META_TAG_XZONE)
-{
-#if CONFIG_NANOZONE
- if (malloc_engaged_secure_allocator()) {
- T_ASSERT_NE(malloc_engaged_nano(), 0,
- "Secure allocator nano mode engaged");
- } else {
- T_ASSERT_EQ(malloc_engaged_nano(), 2, "Nanozone V2 engaged");
- }
+ T_META_ENVVAR("MallocNanoZone=V2"))
+{
+#if CONFIG_NANOZONE
+ T_ASSERT_EQ(malloc_engaged_nano(), 2, "Nanozone V2 engaged");
// This test is problematic because the allocator is used before the test
// starts, so we can't start everything from zero.
@@ -154,7 +138,7 @@
"Incorrect blocks_in_use");
T_ASSERT_EQ(stats.size_in_use, initial_size_in_use + total_requested_size,
"Incorrect size_in_use");
- T_ASSERT_GE(stats.size_allocated, total_requested_size,
+ T_ASSERT_TRUE(stats.size_allocated - initial_size_allocated >= total_requested_size,
"Size allocated must be >= size requested");
T_ASSERT_EQ(ptr_count, initial_ptrs + ALLOCATION_COUNT,
@@ -177,7 +161,7 @@
T_ASSERT_EQ(stats.size_in_use,
initial_size_in_use + total_requested_size - size_freed,
"Incorrect size_in_use after half free");
- T_ASSERT_GE(stats.size_allocated, initial_size_allocated,
+ T_ASSERT_TRUE(stats.size_allocated >= initial_size_allocated ,
"Size allocated must be >= size requested");
T_ASSERT_EQ(ptr_count, initial_ptrs + ALLOCATION_COUNT / 2,
@@ -199,7 +183,7 @@
"Incorrect blocks_in_use after full free");
T_ASSERT_EQ(stats.size_in_use, initial_size_in_use,
"Incorrect size_in_use after full free");
- T_ASSERT_GE(stats.size_allocated, initial_size_allocated,
+ T_ASSERT_TRUE(stats.size_allocated >= initial_size_allocated ,
"Size allocated must be >= size requested");
T_ASSERT_EQ(ptr_count, initial_ptrs, "Incorrect number of pointers after free");
@@ -263,7 +247,7 @@
}
T_DECL(realloc_nano_to_other, "realloc with allocator change (nano)",
- T_META_ENVVAR("MallocNanoZone=1"), T_META_TAG_NANO_ON_XZONE)
+ T_META_ENVVAR("MallocNanoZone=1"))
{
#if CONFIG_NANOZONE
void *ptr = malloc(32); // From Nano
@@ -436,9 +420,7 @@
T_DECL(overspill_nanozone, "force overspill of nano zone",
T_META_ENVVAR("MallocNanoZone=V2"),
- T_META_ENVVAR("MallocNanoMaxRegion=1"),
- T_META_ENVVAR("MallocProbGuard=0"),
- T_META_TAG_NANO_ON_XZONE)
+ T_META_ENVVAR("MallocNanoMaxRegion=1"))
{
int index;
bool spilled_to_tiny = false;
@@ -458,17 +440,17 @@
T_QUIET; T_ASSERT_TRUE(malloc_zone_claimed_address(nano_zone, ptrs[0]),
"Initial allocation did not come from nano zone");
T_QUIET; T_ASSERT_FALSE(malloc_zone_claimed_address(helper_zone, ptrs[0]),
- "Initial allocation came from helper zone");
+ "Initial allocation came from scalable zone");
for (index = 1; index < (nano_max_allocations); index++) {
ptrs[index] = malloc(256);
if (malloc_zone_claimed_address(helper_zone, ptrs[index])) {
- T_LOG("Spilled to helper zone");
+ T_LOG("Spilled to scalable zone");
spilled_to_tiny = true;
break;
}
}
- T_EXPECT_TRUE(spilled_to_tiny, "Allocation falls through to helper zone");
+ T_EXPECT_TRUE(spilled_to_tiny, "Allocation falls through to scalable zone");
T_LOG("Freeing %d pointers", index);
for (int i = 0; i < MIN(index + 1, nano_max_allocations); i++) {