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--- libmalloc/libmalloc-409.81.2/src/malloc.c
+++ libmalloc/libmalloc-474.0.13/src/malloc.c
@@ -48,19 +48,33 @@
int32_t malloc_num_zones = 0;
int32_t malloc_num_zones_allocated = 0;
malloc_zone_t **malloc_zones = (malloc_zone_t **)0xdeaddeaddeaddead;
+
+// TODO: getter and setter rather than direct export so that this can be baked
+// into the cached fastpath checks
malloc_logger_t *malloc_logger = NULL;
static uint32_t initial_num_zones;
static malloc_zone_t *initial_scalable_zone;
+#if CONFIG_NANOZONE
static malloc_zone_t *initial_nano_zone;
+#endif // CONFIG_NANOZONE
+malloc_zone_t *initial_xzone_zone;
+static malloc_zone_t *default_purgeable_zone;
static bool has_injected_zone0;
+static bool malloc_xzone_enabled;
unsigned malloc_debug_flags = 0;
bool malloc_tracing_enabled = false;
bool malloc_space_efficient_enabled = false;
bool malloc_medium_space_efficient_enabled = true;
-bool malloc_quarantine_enabled = false;
+bool malloc_sanitizer_enabled = false;
+
+bool malloc_interposition_compat = false;
+
+#if CONFIG_MALLOC_PROCESS_IDENTITY
+malloc_process_identity_t malloc_process_identity = MALLOC_PROCESS_NONE;
+#endif // CONFIG_MALLOC_PROCESS_IDENTITY
unsigned malloc_check_start = 0; // 0 means don't check
unsigned malloc_check_counter = 0;
@@ -68,12 +82,32 @@
static int malloc_check_sleep = 100; // default 100 second sleep
static int malloc_check_abort = 0; // default is to sleep, not abort
-static bool malloc_instrumented = false;
static bool malloc_simple_stack_logging = false;
#define MALLOC_SIMPLE_STACK_LOGGING_FLAGS \
(ASL_LEVEL_NOTICE | MALLOC_REPORT_NOPREFIX | MALLOC_REPORT_BACKTRACE | MALLOC_REPORT_NOWRITE)
+static bool malloc_slowpath = false;
+
static struct _malloc_msl_symbols msl = {};
+
+static struct malloc_sanitizer_poison *sanitizer = NULL;
+
+#if CONFIG_SANITIZER && TARGET_OS_OSX
+// Fallback pointers for memory poisoning functions from upstream ASan runtime
+static struct {
+ void (*memory_poison)(uintptr_t ptr, size_t sz);
+ void (*memory_unpoison)(uintptr_t ptr, size_t sz);
+} sanitizer_fallback_ptrs;
+
+// Fallback structure for heap allocation functions from our ASan runtime
+static struct malloc_sanitizer_poison sanitizer_fallback = {0};
+
+static void malloc_sanitizer_fallback_allocate_poison(uintptr_t ptr, size_t leftrz_sz, size_t alloc_sz, size_t rightrz_sz);
+static void malloc_sanitizer_fallback_deallocate_poison(uintptr_t ptr, size_t sz);
+#endif
+/* These masks are exported for libdispatch to register with (see "internal.h") */
+const unsigned long malloc_memorypressure_mask_default_4libdispatch = MALLOC_MEMORYPRESSURE_MASK_DEFAULT;
+const unsigned long malloc_memorypressure_mask_msl_4libdispatch = MALLOC_MEMORYPRESSURE_MASK_MSL;
// TODO delete this, its only used some deprecated functions like turn_on_stack_logging,
// which have been replaced by functions in MallocStackLogging.framework
@@ -105,6 +139,8 @@
uint32_t max_frames);
} msld = {};
+MALLOC_NOEXPORT malloc_zone_t* lite_zone = NULL;
+
/*
* Counters that coordinate zone destruction (in malloc_zone_unregister) with
* find_registered_zone (here abbreviated as FRZ).
@@ -123,6 +159,7 @@
#define MALLOC_LOG_TYPE_CLEARED stack_logging_flag_cleared
#define DEFAULT_MALLOC_ZONE_STRING "DefaultMallocZone"
+#define DEFAULT_SCALABLE_ZONE_STRING "DefaultScalableMallocZone"
#define DEFAULT_PUREGEABLE_ZONE_STRING "DefaultPurgeableMallocZone"
#define MALLOC_HELPER_ZONE_STRING "MallocHelperZone"
@@ -132,6 +169,11 @@
MALLOC_NOEXPORT
unsigned int logical_ncpus;
+#if CONFIG_MAGAZINE_PER_CLUSTER
+MALLOC_NOEXPORT
+unsigned int ncpuclusters;
+#endif // CONFIG_MAGAZINE_PER_CLUSTER
+
MALLOC_NOEXPORT
unsigned int hyper_shift;
@@ -153,6 +195,7 @@
malloc_zero_policy_t malloc_zero_policy = MALLOC_ZERO_POLICY_DEFAULT;
static const char zero_on_free_enabled_boot_arg[] = "malloc_zero_on_free_enabled";
+
#if CONFIG_MEDIUM_ALLOCATOR
static const char medium_enabled_boot_arg[] = "malloc_medium_zone";
@@ -177,6 +220,23 @@
#define _dlopen(...) NULL
#define _dlsym(...) NULL
#endif // TARGET_OS_DRIVERKIT
+
+void
+malloc_slowpath_update(void)
+{
+ bool slowpath = has_injected_zone0 ||
+ malloc_num_zones == 0 ||
+ malloc_check_start ||
+ lite_zone ||
+ malloc_tracing_enabled ||
+ malloc_simple_stack_logging ||
+ malloc_interposition_compat;
+
+ if (malloc_slowpath != slowpath) {
+ malloc_slowpath = slowpath;
+ }
+}
+
void __malloc_init(const char *apple[]);
static void _malloc_initialize(const char *apple[], const char *bootargs);
@@ -298,6 +358,7 @@
}
}
+
#if CONFIG_MEDIUM_ALLOCATOR
#if TARGET_OS_OSX
#if defined(__x86_64__)
@@ -369,6 +430,181 @@
#endif // CONFIG_MEDIUM_ALLOCATOR
}
+#if CONFIG_MALLOC_PROCESS_IDENTITY
+
+static void
+_malloc_check_process_identity(void)
+{
+ static const struct {
+ const char *name;
+ malloc_process_identity_t identity;
+ } name_identity_mapping[] = {
+#if TARGET_OS_SIMULATOR
+ { "launchd_sim", MALLOC_PROCESS_LAUNCHD, },
+ { "launchd_sim.development", MALLOC_PROCESS_LAUNCHD, },
+ { "launchd_sim.debug", MALLOC_PROCESS_LAUNCHD, },
+#else // TARGET_OS_SIMULATOR
+ { "launchd", MALLOC_PROCESS_LAUNCHD, },
+ { "launchd.development", MALLOC_PROCESS_LAUNCHD, },
+ { "launchd.debug", MALLOC_PROCESS_LAUNCHD, },
+ { "launchd.testing", MALLOC_PROCESS_LAUNCHD, },
+#endif // TARGET_OS_SIMULATOR
+ { "logd", MALLOC_PROCESS_LOGD, },
+ { "notifyd", MALLOC_PROCESS_NOTIFYD, },
+
+ { "mediaparserd", MALLOC_PROCESS_MEDIAPARSERD, },
+ { "videocodecd", MALLOC_PROCESS_VIDEOCODECD, },
+ { "mediaplaybackd", MALLOC_PROCESS_MEDIAPLAYBACKD },
+ { "audiomxd", MALLOC_PROCESS_AUDIOMXD, },
+ { "avconferenced", MALLOC_PROCESS_AVCONFERENCED, },
+ { "mediaserverd", MALLOC_PROCESS_MEDIASERVERD, },
+
+ { "MessagesBlastDoorService", MALLOC_PROCESS_BLASTDOOR_MESSAGES, },
+ { "MessagesAirlockService", MALLOC_PROCESS_BLASTDOOR_MESSAGES, },
+ { "IDSBlastDoorService", MALLOC_PROCESS_BLASTDOOR_IDS, },
+ { "IMDPersistenceAgent", MALLOC_PROCESS_IMDPERSISTENCEAGENT },
+ { "imagent", MALLOC_PROCESS_IMAGENT, },
+
+ { "ThumbnailExtensionSecure", MALLOC_PROCESS_QUICKLOOK_THUMBNAIL_SECURE, },
+ { "com.apple.quicklook.extension.previewUI", MALLOC_PROCESS_QUICKLOOK_PREVIEW, },
+ { "QuickLookUIExtension", MALLOC_PROCESS_QUICKLOOK_PREVIEW, },
+ { "ThumbnailExtension", MALLOC_PROCESS_QUICKLOOK_THUMBNAIL },
+
+ { "com.apple.WebKit.Networking", MALLOC_PROCESS_WEBKIT_NETWORKING, },
+ { "com.apple.WebKit.GPU", MALLOC_PROCESS_WEBKIT_GPU, },
+ { "MTLCompilerService", MALLOC_PROCESS_MTLCOMPILERSERVICE },
+ { "com.apple.WebKit.WebContent", MALLOC_PROCESS_WEBKIT_WEBCONTENT, },
+ { "com.apple.WebKit.WebContent.CaptivePortal", MALLOC_PROCESS_WEBKIT_WEBCONTENT, },
+
+ { "callservicesd", MALLOC_PROCESS_CALLSERVICESD, },
+ { "maild", MALLOC_PROCESS_MAILD, },
+ { "mDNSResponder", MALLOC_PROCESS_MDNSRESPONDER, },
+ { "ASVAssetViewer", MALLOC_PROCESS_ASVASSETVIEWER },
+ { "identityservicesd", MALLOC_PROCESS_IDENTITYSERVICESD, },
+ { "wifid", MALLOC_PROCESS_WIFID, },
+ { "fmfd", MALLOC_PROCESS_FMFD, },
+ { "searchpartyd", MALLOC_PROCESS_SEARCHPARTYD, },
+ { "vmd", MALLOC_PROCESS_VMD, },
+ { "CommCenter", MALLOC_PROCESS_COMMCENTER, },
+ { "wifip2pd", MALLOC_PROCESS_WIFIP2PD, },
+ { "wifianalyticsd", MALLOC_PROCESS_WIFIANALYTICSD, },
+ };
+
+ if (getpid() == 1) {
+ malloc_process_identity = MALLOC_PROCESS_LAUNCHD;
+ return;
+ }
+
+ const char *name = getprogname();
+ for (size_t i = 0; i < countof(name_identity_mapping); i++) {
+ if (!strcmp(name, name_identity_mapping[i].name)) {
+ malloc_process_identity = name_identity_mapping[i].identity;
+ break;
+ }
+ }
+}
+
+#if !CONFIG_FEATUREFLAGS_SIMPLE
+#error "must have feature flags"
+#endif
+
+static bool
+_malloc_check_secure_allocator_process_enablement(void)
+{
+ // launchd is special because the feature flag check can't work for it
+ if (malloc_process_identity == MALLOC_PROCESS_LAUNCHD) {
+ return MALLOC_SECURE_ALLOCATOR_LAUNCHD_ENABLED_DEFAULT;
+ }
+
+ if (os_feature_enabled_simple(libmalloc,
+ SecureAllocator_AllInitialProcesses, false)) {
+ switch (malloc_process_identity) {
+ case MALLOC_PROCESS_COMMCENTER:
+ // Enabled by explicit feature flag only
+ break;
+ default:
+ return true;
+ }
+ }
+
+#define ENABLEMENT_CASE(id, name, simulator_default) \
+ case MALLOC_PROCESS_##id: \
+ return os_feature_enabled_simple(libmalloc, \
+ SecureAllocator_process_##name, (simulator_default))
+
+ switch (malloc_process_identity) {
+ ENABLEMENT_CASE(LOGD, logd, true);
+ ENABLEMENT_CASE(NOTIFYD, notifyd, true);
+
+ ENABLEMENT_CASE(MEDIAPARSERD, mediaparserd, true);
+ ENABLEMENT_CASE(VIDEOCODECD, videocodecd, true);
+ ENABLEMENT_CASE(MEDIAPLAYBACKD, mediaplaybackd, true);
+ ENABLEMENT_CASE(AVCONFERENCED, avconferenced, true);
+ ENABLEMENT_CASE(MEDIASERVERD, mediaserverd, true);
+ ENABLEMENT_CASE(AUDIOMXD, audiomxd, true);
+
+ ENABLEMENT_CASE(BLASTDOOR_MESSAGES, blastdoor_messages, true);
+ ENABLEMENT_CASE(BLASTDOOR_IDS, blastdoor_ids, true);
+ ENABLEMENT_CASE(IMDPERSISTENCEAGENT, IMDPersistenceAgent, true);
+ ENABLEMENT_CASE(IMAGENT, imagent, true);
+
+ ENABLEMENT_CASE(QUICKLOOK_THUMBNAIL_SECURE, ThumbnailExtensionSecure, true);
+ ENABLEMENT_CASE(QUICKLOOK_PREVIEW, quicklook_preview, true);
+ ENABLEMENT_CASE(QUICKLOOK_THUMBNAIL, ThumbnailExtension, true);
+
+ ENABLEMENT_CASE(MTLCOMPILERSERVICE, MTLCompilerService, true);
+
+ ENABLEMENT_CASE(CALLSERVICESD, callservicesd, true);
+ ENABLEMENT_CASE(MAILD, maild, true);
+ ENABLEMENT_CASE(MDNSRESPONDER, mDNSResponder, true);
+ ENABLEMENT_CASE(ASVASSETVIEWER, ASVAssetViewer, true);
+ ENABLEMENT_CASE(IDENTITYSERVICESD, identityservicesd, true);
+ ENABLEMENT_CASE(WIFID, wifid, true);
+ ENABLEMENT_CASE(FMFD, fmfd, true);
+ ENABLEMENT_CASE(SEARCHPARTYD, searchpartyd, true);
+ ENABLEMENT_CASE(VMD, vmd, true);
+ ENABLEMENT_CASE(WIFIP2PD, wifip2pd, true);
+ ENABLEMENT_CASE(WIFIANALYTICSD, wifianalyticsd, true);
+
+ ENABLEMENT_CASE(COMMCENTER, CommCenter, true);
+
+ ENABLEMENT_CASE(WEBKIT_NETWORKING, WebKit_Networking, true);
+ ENABLEMENT_CASE(WEBKIT_GPU, WebKit_GPU, true);
+ ENABLEMENT_CASE(WEBKIT_WEBCONTENT, WebKit_WebContent, true);
+
+ default:
+ return false;
+ }
+}
+
+#endif // CONFIG_MALLOC_PROCESS_IDENTITY
+
+static void
+_malloc_init_featureflags(void)
+{
+#if CONFIG_FEATUREFLAGS_SIMPLE
+ bool zero_on_free_feature_enabled = os_feature_enabled_simple(libmalloc,
+ ZeroOnFree, MALLOC_ZERO_POLICY_DEFAULT == MALLOC_ZERO_ON_FREE);
+ bool policy_is_zero_on_free = (malloc_zero_policy == MALLOC_ZERO_ON_FREE);
+ if (zero_on_free_feature_enabled != policy_is_zero_on_free) {
+ malloc_zero_policy = zero_on_free_feature_enabled ?
+ MALLOC_ZERO_ON_FREE : MALLOC_ZERO_NONE;
+ }
+
+ bool secure_allocator = os_feature_enabled_simple(libmalloc,
+ SecureAllocator_SystemWide, false);
+#if CONFIG_MALLOC_PROCESS_IDENTITY
+ if (!secure_allocator && malloc_process_identity != MALLOC_PROCESS_NONE) {
+ secure_allocator = _malloc_check_secure_allocator_process_enablement();
+ }
+#endif
+
+ if (secure_allocator != malloc_xzone_enabled) {
+ malloc_xzone_enabled = secure_allocator;
+ }
+#endif
+}
+
extern malloc_zone_t *force_asan_init_if_present(void)
asm("_malloc_default_zone");
@@ -382,7 +618,11 @@
char bootargs[1024] = { '\0' };
bool allow_bootargs = true;
#if CONFIG_FEATUREFLAGS_SIMPLE
- allow_bootargs &= os_feature_enabled_simple(libmalloc, EnableBootArgs, false);
+ // os_feature_enabled_simple() doesn't work in launchd, but launchd should
+ // be able to read boot-args
+ if (getpid() != 1) {
+ allow_bootargs &= os_feature_enabled_simple(libmalloc, EnableBootArgs, false);
+ }
#endif
#if defined(_COMM_PAGE_DEV_FIRM)
allow_bootargs &= !!*((uint32_t *)_COMM_PAGE_DEV_FIRM);
@@ -395,19 +635,15 @@
bootargs[len + 1] = '\0';
}
-#if CONFIG_FEATUREFLAGS_SIMPLE
- bool zero_on_free_feature_enabled = os_feature_enabled_simple(libmalloc,
- ZeroOnFree, MALLOC_ZERO_POLICY_DEFAULT == MALLOC_ZERO_ON_FREE);
- bool policy_is_zero_on_free = (malloc_zero_policy == MALLOC_ZERO_ON_FREE);
- if (zero_on_free_feature_enabled != policy_is_zero_on_free) {
- malloc_zero_policy = zero_on_free_feature_enabled ?
- MALLOC_ZERO_ON_FREE : MALLOC_ZERO_NONE;
- }
-#endif
-
// Cache the calculation of this "constant", which unfortunately depends on
// runtime values of vm_kernel_page_size and vm_page_size
malloc_absolute_max_size = _MALLOC_ABSOLUTE_MAX_SIZE;
+
+#if CONFIG_MALLOC_PROCESS_IDENTITY
+ _malloc_check_process_identity();
+#endif
+
+ _malloc_init_featureflags();
const char **p;
const char *malloc_experiments = NULL;
@@ -470,14 +706,32 @@
stack_logging_early_finished(mli);
initial_num_zones = malloc_num_zones;
-#if CONFIG_QUARANTINE
- if (malloc_quarantine_enabled) {
- quarantine_reset_environment();
- }
+#if CONFIG_SANITIZER
+ if (malloc_sanitizer_enabled) {
+ sanitizer_reset_environment();
+
+#if TARGET_OS_OSX
+ // Fetch the memory poisoning functions from the upstream ASan runtime
+ sanitizer_fallback_ptrs.memory_poison = _dlsym(RTLD_MAIN_ONLY, "__asan_poison_memory_region");
+ sanitizer_fallback_ptrs.memory_unpoison = _dlsym(RTLD_MAIN_ONLY, "__asan_unpoison_memory_region");
+
+ // Prefer the heap allocation functions from our ASan runtime, if available
+ void *heap_alloc = _dlsym(RTLD_MAIN_ONLY, "__asan_poison_heap_memory_alloc"),
+ *heap_dealloc = _dlsym(RTLD_MAIN_ONLY, "__asan_poison_heap_memory_free"),
+ *heap_internal_poison = _dlsym(RTLD_MAIN_ONLY, "__asan_poison_heap_memory_internal");
+ if (heap_alloc && heap_dealloc && heap_internal_poison) {
+ sanitizer_fallback.heap_allocate_poison = heap_alloc;
+ sanitizer_fallback.heap_deallocate_poison = heap_dealloc;
+ sanitizer_fallback.heap_internal_poison = heap_internal_poison;
+ } else {
+ sanitizer_fallback.heap_allocate_poison = &malloc_sanitizer_fallback_allocate_poison;
+ sanitizer_fallback.heap_deallocate_poison = &malloc_sanitizer_fallback_deallocate_poison;
+ sanitizer_fallback.heap_internal_poison = &malloc_sanitizer_fallback_deallocate_poison;
+ }
#endif
-}
-
-MALLOC_NOEXPORT malloc_zone_t* lite_zone = NULL;
+ }
+#endif
+}
MALLOC_ALWAYS_INLINE
static inline malloc_zone_t *
@@ -940,6 +1194,7 @@
// ASan and others interpose on mprotect() to ensure their zone is always at position 0.
if (make_default && malloc_zones[0] != zone) {
has_injected_zone0 = true;
+ malloc_slowpath_update();
}
//malloc_report(ASL_LEVEL_INFO, "Registered malloc_zone %p in malloc_zones %p [%u zones, %u bytes]\n", zone, malloc_zones,
@@ -956,6 +1211,9 @@
{
phys_ncpus = *(uint8_t *)(uintptr_t)_COMM_PAGE_PHYSICAL_CPUS;
logical_ncpus = *(uint8_t *)(uintptr_t)_COMM_PAGE_LOGICAL_CPUS;
+#if CONFIG_MAGAZINE_PER_CLUSTER
+ ncpuclusters = *(uint8_t *)(uintptr_t)_COMM_PAGE_CPU_CLUSTERS;
+#endif // CONFIG_MAGAZINE_PER_CLUSTER
if (0 != (logical_ncpus % phys_ncpus)) {
MALLOC_REPORT_FATAL_ERROR(logical_ncpus % phys_ncpus,
@@ -992,21 +1250,25 @@
max_medium_magazines = max_magazines;
}
+#if CONFIG_MAGAZINE_PER_CLUSTER && CONFIG_FEATUREFLAGS_SIMPLE
+ if (ncpuclusters == 1) {
+ // Not with the other feature flag checks because ncpuclusters needs to
+ // be initialized first
+ bool secure_allocator_single_cluster = os_feature_enabled_simple(
+ libmalloc, SecureAllocator_SingleCluster, false);
+ if (malloc_xzone_enabled && !secure_allocator_single_cluster) {
+ malloc_xzone_enabled = false;
+ }
+ }
+#endif // CONFIG_MAGAZINE_PER_CLUSTER
+
+ _malloc_detect_interposition();
+
set_flags_from_environment(); // will only set flags up to two times
- if (malloc_tracing_enabled || malloc_simple_stack_logging) {
- // Note: although malloc_tracing_enabled is exported "for performance
- // tools", it does not appear in any API or SPI headers and is not
- // referenced by any indexed performance tools, so we're going to go
- // ahead and stop respecting dynamic programmatic enablement via direct
- // setting of the global by other code
- //
- // TODO: it may be possible to fold malloc_check_start into this as well
- malloc_instrumented = true;
- }
-
-#if CONFIG_QUARANTINE
- malloc_quarantine_enabled = quarantine_should_enable();
+
+#if CONFIG_SANITIZER
+ malloc_sanitizer_enabled = sanitizer_should_enable();
#endif
#if CONFIG_NANOZONE
@@ -1014,45 +1276,54 @@
const char **envp = (const char **)*_NSGetEnviron();
// Force magazine_malloc when:
- // - quarantine is enabled, to avoid speculative out-of-bounds
+ // - sanitizer is enabled, to avoid speculative out-of-bounds
// use-after-free reads that nano/nanov2 performs, OR
// - MallocScribble is enabled, which nanov2 does not implement
// - MallocCheckZeroOnFreeCorruption sampling is enabled, which nanov2 does
// not implement
- if (!malloc_quarantine_enabled &&
+ // - xzone malloc is enabled
+ if (!malloc_xzone_enabled &&
+ !malloc_sanitizer_enabled &&
!(malloc_debug_flags & MALLOC_DO_SCRIBBLE) &&
!malloc_zero_on_free_sample_period) {
nano_common_init(envp, apple, bootargs);
}
#endif // CONFIG_NANOZONE
- initial_scalable_zone = create_scalable_zone(0, malloc_debug_flags);
- malloc_set_zone_name(initial_scalable_zone, DEFAULT_MALLOC_ZONE_STRING);
- malloc_zone_register_while_locked(initial_scalable_zone, /*make_default=*/true);
+
+ if (!initial_xzone_zone) {
+ initial_scalable_zone = create_scalable_zone(0, malloc_debug_flags);
+ malloc_set_zone_name(initial_scalable_zone, DEFAULT_MALLOC_ZONE_STRING);
+ malloc_zone_register_while_locked(initial_scalable_zone, /*make_default=*/true);
#if CONFIG_NANOZONE
- nano_common_configure();
-
- malloc_zone_t *helper_zone = initial_scalable_zone;
-
- if (_malloc_engaged_nano == NANO_V2) {
- initial_nano_zone = nanov2_create_zone(helper_zone, malloc_debug_flags);
- }
-
- if (initial_nano_zone) {
- malloc_set_zone_name(initial_nano_zone, DEFAULT_MALLOC_ZONE_STRING);
- malloc_set_zone_name(helper_zone, MALLOC_HELPER_ZONE_STRING);
- malloc_zone_register_while_locked(initial_nano_zone, /*make_default=*/true);
- }
+ nano_common_configure();
+
+ malloc_zone_t *helper_zone = initial_scalable_zone;
+
+ if (_malloc_engaged_nano == NANO_V2) {
+ initial_nano_zone = nanov2_create_zone(helper_zone, malloc_debug_flags);
+ }
+
+ if (initial_nano_zone) {
+ malloc_set_zone_name(initial_nano_zone, DEFAULT_MALLOC_ZONE_STRING);
+ malloc_set_zone_name(helper_zone, MALLOC_HELPER_ZONE_STRING);
+ malloc_zone_register_while_locked(initial_nano_zone, /*make_default=*/true);
+ }
#endif
-
-#if CONFIG_QUARANTINE
- if (malloc_quarantine_enabled) {
+ }
+
+#if CONFIG_SANITIZER
+ if (malloc_sanitizer_enabled) {
malloc_zone_t *wrapped_zone = malloc_zones[0];
- malloc_zone_t *quarantine_zone = quarantine_create_zone(wrapped_zone);
- malloc_zone_register_while_locked(quarantine_zone, /*make_default=*/true);
+ malloc_zone_t *sanitizer_zone = sanitizer_create_zone(wrapped_zone);
+ malloc_zone_register_while_locked(sanitizer_zone, /*make_default=*/true);
}
#endif
+
+ // Initialize slowpath check after we've registered zones so that
+ // malloc_num_zones check is meaningful
+ malloc_slowpath_update();
initial_num_zones = malloc_num_zones;
@@ -1060,7 +1331,8 @@
if (large_cache_enabled) {
kern_return_t kr = mvm_deferred_reclaim_init();
if (kr != KERN_SUCCESS) {
- MALLOC_REPORT_FATAL_ERROR(kr, "Unable to set up reclaim buffer.\n");
+ large_cache_enabled = false;
+ malloc_report(ASL_LEVEL_ERR, "Unable to set up reclaim buffer (%d) - disabling large cache\n", kr);
}
}
#endif /* CONFIG_DEFERRED_RECLAIM */
@@ -1083,20 +1355,17 @@
// (unsigned)&malloc_num_zones);
}
-static bool internal_build;
static bool
enable_pgm(void)
{
- bool other_debug_tool = has_injected_zone0 || malloc_quarantine_enabled;
- return !other_debug_tool && pgm_should_enable(internal_build);
+ bool other_debug_tool = has_injected_zone0 || malloc_sanitizer_enabled;
+ return !other_debug_tool && pgm_should_enable();
}
static void
register_pgm_zone(bool internal_diagnostics)
{
- if (internal_diagnostics) {
- internal_build = true;
- }
+ pgm_init_config(internal_diagnostics);
if (enable_pgm()) {
malloc_zone_t *wrapped_zone = malloc_zones[0];
malloc_zone_t *pgm_zone = pgm_create_zone(wrapped_zone);
@@ -1167,26 +1436,6 @@
#endif
}
-malloc_zone_t *
-malloc_default_purgeable_zone(void)
-{
- static malloc_zone_t *dpz;
-
- if (!dpz) {
- //
- // PR_7288598: Must pass a *scalable* zone (szone) as the helper for create_purgeable_zone().
- // Take care that the zone so obtained is not subject to interposing.
- //
- malloc_zone_t *tmp = create_purgeable_zone(0, initial_scalable_zone, malloc_debug_flags);
- malloc_zone_register(tmp);
- malloc_set_zone_name(tmp, DEFAULT_PUREGEABLE_ZONE_STRING);
- if (!OSAtomicCompareAndSwapPtrBarrier(NULL, tmp, (void**)&dpz)) {
- malloc_destroy_zone(tmp);
- }
- }
- return dpz;
-}
-
static void
set_flags_from_environment(void)
{
@@ -1195,7 +1444,7 @@
const char **p;
const char *c;
-#if __LP64__
+#if defined(__LP64__)
malloc_debug_flags = MALLOC_ABORT_ON_CORRUPTION; // Set always on 64-bit processes
#else
int libSystemVersion = NSVersionOfLinkTimeLibrary("System");
@@ -1288,7 +1537,7 @@
malloc_simple_stack_logging = true;
}
-#if __LP64__
+#if defined(__LP64__)
/* initialization above forces MALLOC_ABORT_ON_CORRUPTION of 64-bit processes */
#else
flag = getenv("MallocCorruptionAbort");
@@ -1346,9 +1595,15 @@
}
#endif // RDAR_48993662
if (flag) {
- int value = (unsigned)strtol(flag, NULL, 0);
+
+ int value = (int)strtol(flag, NULL, 0);
if (value == 0) {
malloc_report(ASL_LEVEL_INFO, "Maximum magazines defaulted to %d\n", max_magazines);
+#if CONFIG_MAGAZINE_PER_CLUSTER
+ } else if (value == UINT16_MAX) {
+ max_magazines = ncpuclusters;
+ malloc_report(ASL_LEVEL_INFO, "Maximum magazines limited to number of logical CPU clusters (%d)\n", max_magazines);
+#endif // CONFIG_MAGAZINE_PER_CLUSTER
} else if (value < 0) {
malloc_report(ASL_LEVEL_ERR, "Maximum magazines must be positive - ignored.\n");
} else if (value > logical_ncpus) {
@@ -1541,6 +1796,17 @@
} else {
malloc_report(ASL_LEVEL_ERR,
"malloc_zero_on_free_sample_period must be positive - ignored.\n");
+ }
+ }
+
+ flag = getenv("MallocSecureAllocator");
+ if (flag) {
+ const char *endp;
+ long value = malloc_common_convert_to_long(flag, &endp);
+ if (!*endp && endp != flag && (value == 0 || value == 1)) {
+ malloc_xzone_enabled = value;
+ } else {
+ malloc_report(ASL_LEVEL_ERR, "MallocSecureAllocator must be 0 or 1.\n");
}
}
@@ -1720,7 +1986,9 @@
_malloc_zone_malloc_instrumented_or_legacy(malloc_zone_t *zone, size_t size,
malloc_zone_options_t mzo)
{
- MALLOC_TRACE(TRACE_malloc | DBG_FUNC_START, (uintptr_t)zone, size, 0, 0);
+ uint64_t type_id = malloc_get_tsd_type_id();
+ MALLOC_TRACE(TRACE_malloc | DBG_FUNC_START, (uintptr_t)zone, size, type_id,
+ 0);
void *ptr = NULL;
@@ -1734,7 +2002,8 @@
ptr = zone->malloc(zone, size);
if (os_unlikely(malloc_logger)) {
- malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE, (uintptr_t)zone, (uintptr_t)size, 0, (uintptr_t)ptr, 0);
+ malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE,
+ (uintptr_t)zone, (uintptr_t)size, 0, (uintptr_t)ptr, 0);
}
if (os_unlikely(malloc_simple_stack_logging)) {
@@ -1742,7 +2011,8 @@
ptr, (unsigned long long)size);
}
- MALLOC_TRACE(TRACE_malloc | DBG_FUNC_END, (uintptr_t)zone, size, (uintptr_t)ptr, 0);
+ MALLOC_TRACE(TRACE_malloc | DBG_FUNC_END, (uintptr_t)zone, size,
+ (uintptr_t)ptr, type_id);
out:
if (os_unlikely(ptr == NULL)) {
malloc_set_errno_fast(mzo, ENOMEM);
@@ -1759,8 +2029,7 @@
zone = malloc_zones[0];
}
- if (os_unlikely(malloc_instrumented || malloc_check_start ||
- malloc_logger || zone->version < 13)) {
+ if (os_unlikely(malloc_slowpath || malloc_logger || zone->version < 13)) {
return _malloc_zone_malloc_instrumented_or_legacy(zone, size, mzo);
}
@@ -1773,6 +2042,7 @@
return zone->malloc(zone, size);
}
+MALLOC_NOINLINE
void *
malloc_zone_malloc(malloc_zone_t *zone, size_t size)
{
@@ -1784,7 +2054,9 @@
_malloc_zone_calloc_instrumented_or_legacy(malloc_zone_t *zone,
size_t num_items, size_t size, malloc_zone_options_t mzo)
{
- MALLOC_TRACE(TRACE_calloc | DBG_FUNC_START, (uintptr_t)zone, num_items, size, 0);
+ uint64_t type_id = malloc_get_tsd_type_id();
+ MALLOC_TRACE(TRACE_calloc | DBG_FUNC_START, (uintptr_t)zone, num_items,
+ size, type_id);
void *ptr;
if (malloc_check_start) {
@@ -1794,16 +2066,20 @@
ptr = zone->calloc(zone, num_items, size);
if (os_unlikely(malloc_logger)) {
- malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE | MALLOC_LOG_TYPE_CLEARED, (uintptr_t)zone,
+ uint32_t logger_type = MALLOC_LOG_TYPE_ALLOCATE |
+ MALLOC_LOG_TYPE_HAS_ZONE | MALLOC_LOG_TYPE_CLEARED;
+ malloc_logger(logger_type, (uintptr_t)zone,
(uintptr_t)(num_items * size), 0, (uintptr_t)ptr, 0);
}
if (os_unlikely(malloc_simple_stack_logging)) {
- malloc_report(MALLOC_SIMPLE_STACK_LOGGING_FLAGS, "calloc (%p/%llu*%llu): ",
- ptr, (unsigned long long)num_items, (unsigned long long)size);
- }
-
- MALLOC_TRACE(TRACE_calloc | DBG_FUNC_END, (uintptr_t)zone, num_items, size, (uintptr_t)ptr);
+ malloc_report(MALLOC_SIMPLE_STACK_LOGGING_FLAGS,
+ "calloc (%p/%llu*%llu): ", ptr, (unsigned long long)num_items,
+ (unsigned long long)size);
+ }
+
+ MALLOC_TRACE(TRACE_calloc | DBG_FUNC_END, (uintptr_t)zone, num_items, size,
+ (uintptr_t)ptr);
if (os_unlikely(ptr == NULL)) {
malloc_set_errno_fast(mzo, ENOMEM);
}
@@ -1821,8 +2097,7 @@
zone = malloc_zones[0];
}
- if (os_unlikely(malloc_instrumented || malloc_check_start ||
- malloc_logger || zone->version < 13)) {
+ if (os_unlikely(malloc_slowpath || malloc_logger || zone->version < 13)) {
return _malloc_zone_calloc_instrumented_or_legacy(zone, num_items, size, mzo);
}
@@ -1830,6 +2105,7 @@
return zone->calloc(zone, num_items, size);
}
+MALLOC_NOINLINE
void *
malloc_zone_calloc(malloc_zone_t *zone, size_t num_items, size_t size)
{
@@ -1840,7 +2116,9 @@
static void *
_malloc_zone_valloc(malloc_zone_t *zone, size_t size, malloc_zone_options_t mzo)
{
- MALLOC_TRACE(TRACE_valloc | DBG_FUNC_START, (uintptr_t)zone, size, 0, 0);
+ uint64_t type_id = malloc_get_tsd_type_id();
+ MALLOC_TRACE(TRACE_valloc | DBG_FUNC_START, (uintptr_t)zone, size, type_id,
+ 0);
void *ptr = NULL;
if (malloc_check_start) {
@@ -1853,7 +2131,8 @@
ptr = zone->valloc(zone, size);
if (os_unlikely(malloc_logger)) {
- malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE, (uintptr_t)zone, (uintptr_t)size, 0, (uintptr_t)ptr, 0);
+ malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE,
+ (uintptr_t)zone, (uintptr_t)size, 0, (uintptr_t)ptr, 0);
}
if (os_unlikely(malloc_simple_stack_logging)) {
@@ -1861,7 +2140,8 @@
ptr, (unsigned long long)size);
}
- MALLOC_TRACE(TRACE_valloc | DBG_FUNC_END, (uintptr_t)zone, size, (uintptr_t)ptr, 0);
+ MALLOC_TRACE(TRACE_valloc | DBG_FUNC_END, (uintptr_t)zone, size,
+ (uintptr_t)ptr, type_id);
out:
if (os_unlikely(ptr == NULL)) {
malloc_set_errno_fast(mzo, ENOMEM);
@@ -1869,16 +2149,21 @@
return ptr;
}
+MALLOC_NOINLINE
void *
malloc_zone_valloc(malloc_zone_t *zone, size_t size)
{
return _malloc_zone_valloc(zone, size, MZ_NONE);
}
-void *
-malloc_zone_realloc(malloc_zone_t *zone, void *ptr, size_t size)
-{
- MALLOC_TRACE(TRACE_realloc | DBG_FUNC_START, (uintptr_t)zone, (uintptr_t)ptr, size, 0);
+// We have this function so code within libmalloc can call it without going
+// through the (potentially interposed) dyld symbol stub
+static void *
+_malloc_zone_realloc(malloc_zone_t *zone, void *ptr, size_t size)
+{
+ uint64_t type_id = malloc_get_tsd_type_id();
+ MALLOC_TRACE(TRACE_realloc | DBG_FUNC_START, (uintptr_t)zone,
+ (uintptr_t)ptr, size, type_id);
void *new_ptr;
if (malloc_check_start) {
@@ -1891,19 +2176,31 @@
new_ptr = zone->realloc(zone, ptr, size);
if (os_unlikely(malloc_logger)) {
- malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_DEALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE, (uintptr_t)zone,
- (uintptr_t)ptr, (uintptr_t)size, (uintptr_t)new_ptr, 0);
+ uint32_t logger_type = MALLOC_LOG_TYPE_ALLOCATE |
+ MALLOC_LOG_TYPE_DEALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE;
+ malloc_logger(logger_type, (uintptr_t)zone, (uintptr_t)ptr,
+ (uintptr_t)size, (uintptr_t)new_ptr, 0);
}
if (os_unlikely(malloc_simple_stack_logging)) {
- malloc_report(MALLOC_SIMPLE_STACK_LOGGING_FLAGS, "realloc (%p->%p/%llu): ",
- ptr, new_ptr, (unsigned long long)size);
- }
-
- MALLOC_TRACE(TRACE_realloc | DBG_FUNC_END, (uintptr_t)zone, (uintptr_t)ptr, size, (uintptr_t)new_ptr);
+ malloc_report(MALLOC_SIMPLE_STACK_LOGGING_FLAGS,
+ "realloc (%p->%p/%llu): ", ptr, new_ptr,
+ (unsigned long long)size);
+ }
+
+ MALLOC_TRACE(TRACE_realloc | DBG_FUNC_END, (uintptr_t)zone, (uintptr_t)ptr,
+ size, (uintptr_t)new_ptr);
return new_ptr;
}
+MALLOC_NOINLINE
+void *
+malloc_zone_realloc(malloc_zone_t *zone, void *ptr, size_t size)
+{
+ return _malloc_zone_realloc(zone, ptr, size);
+}
+
+MALLOC_NOINLINE
void
malloc_zone_free(malloc_zone_t *zone, void *ptr)
{
@@ -1956,11 +2253,14 @@
_malloc_zone_memalign(malloc_zone_t *zone, size_t alignment, size_t size,
malloc_zone_options_t mzo)
{
- MALLOC_TRACE(TRACE_memalign | DBG_FUNC_START, (uintptr_t)zone, alignment, size, 0);
+ uint64_t type_id = malloc_get_tsd_type_id();
+ MALLOC_TRACE(TRACE_memalign | DBG_FUNC_START, (uintptr_t)zone, alignment,
+ size, type_id);
void *ptr = NULL;
int err = ENOMEM;
- if (zone->version < 5) { // Version must be >= 5 to look at the new memalign field.
+ // Version must be >= 5 to look at the new memalign field.
+ if (zone->version < 5) {
goto out;
}
if (malloc_check_start) {
@@ -1969,12 +2269,15 @@
if (size > malloc_absolute_max_size) {
goto out;
}
- if (alignment < sizeof(void *) || // excludes 0 == alignment
- 0 != (alignment & (alignment - 1))) { // relies on sizeof(void *) being a power of two.
+ // excludes 0 == alignment
+ // relies on sizeof(void *) being a power of two.
+ if (alignment < sizeof(void *) ||
+ 0 != (alignment & (alignment - 1))) {
err = EINVAL;
goto out;
}
- if ((mzo & MZ_C11) && (size & (alignment - 1)) != 0) { /* C11 requires size to be a multiple of alignment */
+ // C11 requires size to be a multiple of alignment
+ if ((mzo & MZ_C11) && (size & (alignment - 1)) != 0) {
err = EINVAL;
goto out;
}
@@ -1985,14 +2288,17 @@
ptr = zone->memalign(zone, alignment, size);
if (os_unlikely(malloc_logger)) {
- malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE, (uintptr_t)zone, (uintptr_t)size, 0, (uintptr_t)ptr, 0);
+ malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE,
+ (uintptr_t)zone, (uintptr_t)size, 0, (uintptr_t)ptr, 0);
}
if (os_unlikely(malloc_simple_stack_logging)) {
- malloc_report(MALLOC_SIMPLE_STACK_LOGGING_FLAGS, "memalign (%p/%llu,%llu): ",
- ptr, (unsigned long long)alignment, (unsigned long long)size);
- }
-
- MALLOC_TRACE(TRACE_memalign | DBG_FUNC_END, (uintptr_t)zone, alignment, size, (uintptr_t)ptr);
+ malloc_report(MALLOC_SIMPLE_STACK_LOGGING_FLAGS,
+ "memalign (%p/%llu,%llu): ", ptr, (unsigned long long)alignment,
+ (unsigned long long)size);
+ }
+
+ MALLOC_TRACE(TRACE_memalign | DBG_FUNC_END, (uintptr_t)zone, alignment,
+ size, (uintptr_t)ptr);
out:
if (os_unlikely(ptr == NULL)) {
@@ -2003,6 +2309,7 @@
return ptr;
}
+MALLOC_NOINLINE
void *
malloc_zone_memalign(malloc_zone_t *zone, size_t alignment, size_t size)
{
@@ -2095,7 +2402,10 @@
void
malloc_set_zone_name(malloc_zone_t *z, const char *name)
{
- mprotect(z, sizeof(malloc_zone_t), PROT_READ | PROT_WRITE);
+ // TODO: save and restore permissions generally
+ if (z != initial_xzone_zone) {
+ mprotect(z, sizeof(malloc_zone_t), PROT_READ | PROT_WRITE);
+ }
if (z->zone_name) {
malloc_zone_t *old_zone = find_registered_zone(z->zone_name, NULL, false);
if (old_zone) {
@@ -2115,7 +2425,9 @@
}
}
}
- mprotect(z, sizeof(malloc_zone_t), PROT_READ);
+ if (z != initial_xzone_zone) {
+ mprotect(z, sizeof(malloc_zone_t), PROT_READ);
+ }
}
const char *
@@ -2151,12 +2463,14 @@
/********* Generic ANSI callouts ************/
+MALLOC_NOINLINE
void *
malloc(size_t size)
{
return _malloc_zone_malloc(default_zone, size, MZ_POSIX);
}
+MALLOC_NOINLINE
void *
aligned_alloc(size_t alignment, size_t size)
{
@@ -2164,12 +2478,14 @@
MZ_POSIX | MZ_C11);
}
+MALLOC_NOINLINE
void *
calloc(size_t num_items, size_t size)
{
return _malloc_zone_calloc(default_zone, num_items, size, MZ_POSIX);
}
+MALLOC_NOINLINE
void
free(void *ptr)
{
@@ -2177,23 +2493,26 @@
return;
}
- if (os_unlikely(malloc_instrumented ||
- malloc_check_start ||
+ malloc_zone_t *zone0 = malloc_zones[0];
+ if (os_unlikely(malloc_slowpath ||
malloc_logger ||
- lite_zone ||
- malloc_num_zones == 0 ||
- malloc_zones[0]->version < 13 ||
- !malloc_zones[0]->try_free_default)) {
+ zone0->version < 13)) {
find_zone_and_free(ptr, false);
return;
}
- malloc_zone_t *zone0 = malloc_zones[0];
- zone0->try_free_default(zone0, ptr);
-}
-
-void *
-realloc(void *in_ptr, size_t new_size)
+
+ if (zone0->try_free_default) {
+ zone0->try_free_default(zone0, ptr);
+ } else {
+ find_zone_and_free(ptr, false);
+ }
+}
+
+// We have this function so code within libmalloc can call it without going
+// through the (potentially interposed) dyld symbol stub
+static void *
+_realloc(void *in_ptr, size_t new_size)
{
void *retval = NULL;
void *old_ptr;
@@ -2209,7 +2528,7 @@
// size." So we only free the original memory if the allocation succeeds.
old_ptr = (new_size == 0) ? NULL : in_ptr;
if (!old_ptr) {
- retval = malloc_zone_malloc(default_zone, new_size);
+ retval = _malloc_zone_malloc(default_zone, new_size, MZ_NONE);
} else {
zone = find_registered_zone(old_ptr, NULL, false);
if (!zone) {
@@ -2219,7 +2538,7 @@
}
malloc_report(flags, "*** error for object %p: pointer being realloc'd was not allocated\n", in_ptr);
} else {
- retval = malloc_zone_realloc(zone, old_ptr, new_size);
+ retval = _malloc_zone_realloc(zone, old_ptr, new_size);
}
}
@@ -2231,6 +2550,14 @@
return retval;
}
+MALLOC_NOINLINE
+void *
+realloc(void *in_ptr, size_t new_size)
+{
+ return _realloc(in_ptr, new_size);
+}
+
+MALLOC_NOINLINE
void *
valloc(size_t size)
{
@@ -2279,14 +2606,16 @@
* There is insufficient memory available with the requested alignment.
*/
-int
-posix_memalign(void **memptr, size_t alignment, size_t size)
+// We have this function so code within libmalloc can call it without going
+// through the (potentially interposed) dyld symbol stub
+static int
+_posix_memalign(void **memptr, size_t alignment, size_t size)
{
void *retval;
/* POSIX is silent on NULL == memptr !?! */
- retval = malloc_zone_memalign(default_zone, alignment, size);
+ retval = _malloc_zone_memalign(default_zone, alignment, size, MZ_NONE);
if (retval == NULL) {
// To avoid testing the alignment constraints redundantly, we'll rely on the
// test made in malloc_zone_memalign to vet each request. Only if that test fails
@@ -2303,6 +2632,13 @@
}
}
+MALLOC_NOINLINE
+int
+posix_memalign(void **memptr, size_t alignment, size_t size)
+{
+ return _posix_memalign(memptr, alignment, size);
+}
+
boolean_t
malloc_claimed_address(void *ptr)
{
@@ -2362,6 +2698,476 @@
return NULL;
}
return reallocf(in_ptr, alloc_size);
+}
+
+/********* malloc_type ************/
+
+#if MALLOC_TARGET_64BIT
+
+MALLOC_ALWAYS_INLINE MALLOC_INLINE
+static malloc_type_descriptor_t
+_malloc_type_outlined_set_tsd(malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = malloc_get_tsd_type_descriptor();
+
+ if (!type_id) {
+ // We need this to be non-zero so that we can use it for the recursion
+ // check below
+ type_id = MALLOC_TYPE_ID_NONZERO;
+ }
+ malloc_set_tsd_type_descriptor(
+ (malloc_type_descriptor_t){ .type_id = type_id });
+
+ return prev_type_desc;
+}
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_malloc_outlined(size_t size, malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = malloc(size);
+ } else {
+ ptr = _malloc_zone_malloc(default_zone, size, MZ_POSIX);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_calloc_outlined(size_t count, size_t size, malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = calloc(count, size);
+ } else {
+ ptr = _malloc_zone_calloc(default_zone, count, size, MZ_POSIX);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+// TODO: malloc_type_free_outlined
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_realloc_outlined(void *ptr, size_t size, malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *new_ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ new_ptr = realloc(ptr, size);
+ } else {
+ new_ptr = _realloc(ptr, size);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return new_ptr;
+}
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_aligned_alloc_outlined(size_t alignment, size_t size,
+ malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = aligned_alloc(alignment, size);
+ } else {
+ ptr = _malloc_zone_memalign(default_zone, alignment, size,
+ MZ_POSIX | MZ_C11);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+MALLOC_NOINLINE
+static int
+_malloc_type_posix_memalign_outlined(void **memptr, size_t alignment,
+ size_t size, malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ int retval;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ retval = posix_memalign(memptr, alignment, size);
+ } else {
+ retval = _posix_memalign(memptr, alignment, size);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return retval;
+}
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_zone_malloc_outlined(malloc_zone_t *zone, size_t size,
+ malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = malloc_zone_malloc(zone, size);
+ } else {
+ ptr = _malloc_zone_malloc(zone, size, MZ_NONE);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_zone_calloc_outlined(malloc_zone_t *zone, size_t count, size_t size,
+ malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = malloc_zone_calloc(zone, count, size);
+ } else {
+ ptr = _malloc_zone_calloc(zone, count, size, MZ_NONE);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+// TODO: malloc_type_zone_free_outlined
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_zone_realloc_outlined(malloc_zone_t *zone, void *ptr, size_t size,
+ malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *new_ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ new_ptr = malloc_zone_realloc(zone, ptr, size);
+ } else {
+ new_ptr = _malloc_zone_realloc(zone, ptr, size);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return new_ptr;
+}
+
+MALLOC_NOINLINE
+static void *
+_malloc_type_zone_memalign_outlined(malloc_zone_t *zone, size_t alignment,
+ size_t size, malloc_type_id_t type_id)
+{
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = malloc_zone_memalign(zone, alignment, size);
+ } else {
+ ptr = _malloc_zone_memalign(zone, alignment, size, MZ_NONE);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+void *
+malloc_type_malloc(size_t size, malloc_type_id_t type_id)
+{
+ if (os_unlikely(size > malloc_absolute_max_size)) {
+ malloc_set_errno_fast(MZ_POSIX, ENOMEM);
+ return NULL;
+ }
+
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_malloc_outlined(size, type_id);
+ }
+
+ malloc_zone_t *zone0 = malloc_zones[0];
+
+
+ if (zone0->version >= 13) {
+ return zone0->malloc(zone0, size);
+ }
+
+ return _malloc_type_malloc_outlined(size, type_id);
+}
+
+void *
+malloc_type_calloc(size_t count, size_t size, malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_calloc_outlined(count, size, type_id);
+ }
+
+ malloc_zone_t *zone0 = malloc_zones[0];
+
+ if (zone0->version >= 13) {
+ return zone0->calloc(zone0, count, size);
+ }
+
+ return _malloc_type_calloc_outlined(count, size, type_id);
+}
+
+void
+malloc_type_free(void *ptr, malloc_type_id_t type_id)
+{
+ // TODO: this is not interposition-safe - need to revist when we want to
+ // actually start using this
+ return free(ptr);
+}
+
+void *
+malloc_type_realloc(void *ptr, size_t size, malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_realloc_outlined(ptr, size, type_id);
+ }
+
+ malloc_zone_t *zone0 = malloc_zones[0];
+
+ // We're okay with dropping the type information here because
+ // malloc_slowpath should cover most of the situations we'd want to preserve
+ // it for. If we'd prefer to get more coverage we could go through
+ // _malloc_type_realloc_outlined(), at the expense of doing the TSD
+ // save/restore pointlessly sometimes.
+ return _realloc(ptr, size);
+}
+
+void *
+malloc_type_valloc(size_t size, malloc_type_id_t type_id)
+{
+ // valloc is not used often enough to warrant fastpath handling, so we'll
+ // just always pass the type information via the TSD
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = valloc(size);
+ } else {
+ ptr = _malloc_zone_valloc(default_zone, size, MZ_POSIX);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+void *
+malloc_type_aligned_alloc(size_t alignment, size_t size,
+ malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_aligned_alloc_outlined(alignment, size, type_id);
+ }
+
+
+ // Everything else takes the slower path
+ return _malloc_type_aligned_alloc_outlined(alignment, size, type_id);
+}
+
+int
+malloc_type_posix_memalign(void **memptr, size_t alignment, size_t size,
+ malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_posix_memalign_outlined(memptr, alignment, size,
+ type_id);
+ }
+
+
+ return _malloc_type_posix_memalign_outlined(memptr, alignment, size,
+ type_id);
+}
+
+void *
+malloc_type_zone_malloc(malloc_zone_t *zone, size_t size,
+ malloc_type_id_t type_id)
+{
+ if (os_unlikely(size > malloc_absolute_max_size)) {
+ malloc_set_errno_fast(MZ_POSIX, ENOMEM);
+ return NULL;
+ }
+
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_zone_malloc_outlined(zone, size, type_id);
+ }
+
+ if (zone == default_zone) {
+ zone = malloc_zones[0];
+ }
+
+
+ if (zone->version >= 13) {
+ return zone->malloc(zone, size);
+ }
+
+ return _malloc_type_zone_malloc_outlined(zone, size, type_id);
+}
+
+void *
+malloc_type_zone_calloc(malloc_zone_t *zone, size_t count, size_t size,
+ malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_zone_calloc_outlined(zone, count, size, type_id);
+ }
+
+ if (zone == default_zone) {
+ zone = malloc_zones[0];
+ }
+
+
+ if (zone->version >= 13) {
+ return zone->calloc(zone, count, size);
+ }
+
+ return _malloc_type_zone_calloc_outlined(zone, count, size, type_id);
+}
+
+void
+malloc_type_zone_free(malloc_zone_t *zone, void *ptr, malloc_type_id_t type_id)
+{
+ // TODO: this is not interposition-safe - need to revist when we want to
+ // actually start using this
+ return malloc_zone_free(zone, ptr);
+}
+
+void *
+malloc_type_zone_realloc(malloc_zone_t *zone, void *ptr, size_t size,
+ malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_zone_realloc_outlined(zone, ptr, size, type_id);
+ }
+
+ if (zone == default_zone) {
+ zone = malloc_zones[0];
+ }
+
+
+ // We're okay with dropping the type information here because
+ // malloc_slowpath should cover most of the situations we'd want to preserve
+ // it for. If we'd prefer to get more coverage we could go through
+ // _malloc_type_zone_realloc_outlined(), at the expense of doing the TSD
+ // save/restore pointlessly sometimes.
+ return _malloc_zone_realloc(zone, ptr, size);
+}
+
+void *
+malloc_type_zone_valloc(malloc_zone_t *zone, size_t size,
+ malloc_type_id_t type_id)
+{
+ // valloc is not used often enough to warrant fastpath handling, so we'll
+ // just always pass the type information via the TSD
+ malloc_type_descriptor_t prev_type_desc = _malloc_type_outlined_set_tsd(
+ type_id);
+
+ void *ptr;
+ if (malloc_interposition_compat && !prev_type_desc.type_id) {
+ // We're (potentially) interposed at the symbol level and aren't in a
+ // recursive call, so call through the external symbol
+ ptr = malloc_zone_valloc(zone, size);
+ } else {
+ ptr = _malloc_zone_valloc(zone, size, MZ_NONE);
+ }
+
+ malloc_set_tsd_type_descriptor(prev_type_desc);
+ return ptr;
+}
+
+void *
+malloc_type_zone_memalign(malloc_zone_t *zone, size_t alignment, size_t size,
+ malloc_type_id_t type_id)
+{
+ if (os_unlikely(malloc_logger || malloc_slowpath)) {
+ return _malloc_type_zone_memalign_outlined(zone, alignment, size,
+ type_id);
+ }
+
+
+ // Everything else takes the slower path
+ return _malloc_type_zone_memalign_outlined(zone, alignment, size, type_id);
+}
+
+#endif // MALLOC_TARGET_64BIT
+
+/********* Purgeable zone ************/
+
+static void
+_malloc_create_purgeable_zone(void * __unused ctx)
+{
+ //
+ // PR_7288598: Must pass a *scalable* zone (szone) as the helper for create_purgeable_zone().
+ // Take care that the zone so obtained is not subject to interposing.
+ //
+ if (!initial_scalable_zone) {
+ // If the process didn't initially create a scalable zone because xzone
+ // malloc is enabled, we should create one now.
+ //
+ // TODO: xzone-backed purgeable zone
+ initial_scalable_zone = create_scalable_zone(0, malloc_debug_flags);
+ malloc_set_zone_name(initial_scalable_zone,
+ DEFAULT_SCALABLE_ZONE_STRING);
+ malloc_zone_register(initial_scalable_zone);
+ }
+
+ default_purgeable_zone = create_purgeable_zone(0, initial_scalable_zone,
+ malloc_debug_flags);
+ malloc_zone_register(default_purgeable_zone);
+ malloc_set_zone_name(default_purgeable_zone,
+ DEFAULT_PUREGEABLE_ZONE_STRING);
+}
+
+malloc_zone_t *
+malloc_default_purgeable_zone(void)
+{
+ static os_once_t pred;
+ os_once(&pred, NULL, _malloc_create_purgeable_zone);
+ return default_purgeable_zone;
}
static malloc_zone_t *
@@ -2427,32 +3233,34 @@
return 0;
}
+/********* Memory events ************/
+
void
malloc_enter_process_memory_limit_warn_mode(void)
{
// <rdar://problem/25063714>
}
-
-
// Note that malloc_memory_event_handler is not thread-safe, and we are relying on the callers of this for synchronization
void
malloc_memory_event_handler(unsigned long event)
{
- if (event & NOTE_MEMORYSTATUS_PRESSURE_WARN) {
+#if CONFIG_MADVISE_PRESSURE_RELIEF || (CONFIG_LARGE_CACHE && !CONFIG_DEFERRED_RECLAIM)
+ if (event & MALLOC_MEMORYSTATUS_MASK_PRESSURE_RELIEF) {
malloc_zone_pressure_relief(0, 0);
}
+#endif /* CONFIG_MADVISE_PRESSURE_RELIEF || (CONFIG_LARGE_CACHE && !CONFIG_DEFERRED_RECLAIM) */
if ((event & NOTE_MEMORYSTATUS_MSL_STATUS) != 0 && (event & ~NOTE_MEMORYSTATUS_MSL_STATUS) == 0) {
malloc_register_stack_logger();
}
#if ENABLE_MEMORY_RESOURCE_EXCEPTION_HANDLING
- if (event & (NOTE_MEMORYSTATUS_PROC_LIMIT_WARN | NOTE_MEMORYSTATUS_PROC_LIMIT_CRITICAL | NOTE_MEMORYSTATUS_PRESSURE_CRITICAL)) {
+ if (event & MALLOC_MEMORYSTATUS_MASK_RESOURCE_EXCEPTION_HANDLING) {
malloc_register_stack_logger();
}
-#endif // ENABLE_MEMORY_RESOURCE_EXCEPTION_HANDLING
-
+#endif /* ENABLE_MEMORY_RESOURCE_EXCEPTION_HANDLING */
+
if (msl.handle_memory_event) {
// Let MSL see the event.
msl.handle_memory_event(event);
@@ -2549,6 +3357,85 @@
}
}
+/********* Functions for sanitization ************/
+
+#if TARGET_OS_OSX
+
+// Shadow memory helpers
+#define SHADOW_MEMORY_BASE (0x0000200000000000ull)
+#define SHADOW_GRANULARITY_BITS 3u
+#define SHADOW_GRANULARITY (1u << SHADOW_GRANULARITY_BITS)
+#define PTR_TO_SHADOW(p) (void *)((((uintptr_t)ptr) >> SHADOW_GRANULARITY_BITS) + SHADOW_MEMORY_BASE)
+#define SIZE_TO_SHADOW_SIZE(p) ((p) >> SHADOW_GRANULARITY_BITS)
+#define SHADOW_POISON_HEAP_LEFT_RZ 0xfa
+#define SHADOW_POISON_HEAP_RIGHT_RZ 0xfb
+#define SHADOW_POISON_HEAP_FREED 0xfd
+
+static void
+malloc_sanitizer_fallback_allocate_poison(uintptr_t ptr, size_t leftrz_sz, size_t alloc_sz, size_t rightrz_sz)
+{
+ uintptr_t alloc_ptr, rightrz_ptr;
+ MALLOC_ASSERT(!os_add_overflow(ptr, leftrz_sz, &alloc_ptr) &&
+ !os_add_overflow(alloc_ptr, alloc_sz, &rightrz_ptr));
+
+ // Tag the ASan shadow as ASAN_POISON_USER/ASAN_VALID/ASAN_POISON_USER
+ if (sanitizer_fallback_ptrs.memory_poison && sanitizer_fallback_ptrs.memory_unpoison) {
+ (*sanitizer_fallback_ptrs.memory_poison)(ptr, leftrz_sz);
+ (*sanitizer_fallback_ptrs.memory_unpoison)(alloc_ptr, alloc_sz);
+ (*sanitizer_fallback_ptrs.memory_poison)(rightrz_ptr, rightrz_sz);
+ } else {
+ // This code should only be executed by Rosetta on macOS
+ MALLOC_ASSERT(!(leftrz_sz % SHADOW_GRANULARITY) &&
+ !((alloc_sz + rightrz_sz) % SHADOW_GRANULARITY));
+
+ const uint8_t partial = alloc_sz & (SHADOW_GRANULARITY - 1);
+ // Partial poison is not supported, leave it unpoisoned
+ const size_t left = SIZE_TO_SHADOW_SIZE(leftrz_sz),
+ right = SIZE_TO_SHADOW_SIZE(rightrz_sz),
+ alloc = SIZE_TO_SHADOW_SIZE(alloc_sz) + !!partial;
+ uint8_t *shadow = PTR_TO_SHADOW(ptr);
+ memset(shadow, SHADOW_POISON_HEAP_LEFT_RZ, left);
+ shadow += left;
+ bzero(shadow + left, alloc);
+ shadow += alloc;
+ memset(shadow, SHADOW_POISON_HEAP_RIGHT_RZ, right);
+ }
+}
+
+static void
+malloc_sanitizer_fallback_deallocate_poison(uintptr_t ptr, size_t sz)
+{
+ // Tag the ASan shadow as ASAN_POISON_USER
+ if (sanitizer_fallback_ptrs.memory_poison) {
+ (*sanitizer_fallback_ptrs.memory_poison)(ptr, sz);
+ } else {
+ memset(PTR_TO_SHADOW(ptr), SHADOW_POISON_HEAP_FREED, SIZE_TO_SHADOW_SIZE(sz));
+ }
+}
+
+#endif // TARGET_OS_OSX
+
+bool malloc_sanitizer_is_enabled(void)
+{
+ return malloc_sanitizer_enabled;
+}
+
+const struct malloc_sanitizer_poison *
+malloc_sanitizer_get_functions(void)
+{
+#if TARGET_OS_OSX
+ return sanitizer ? sanitizer : &sanitizer_fallback;
+#else
+ return sanitizer;
+#endif
+}
+
+void
+malloc_sanitizer_set_functions(struct malloc_sanitizer_poison *s)
+{
+ sanitizer = s;
+}
+
/********* Functions for performance tools ************/
kern_return_t
@@ -2717,6 +3604,9 @@
{
unsigned index = 0;
MALLOC_LOCK();
+#if CONFIG_EARLY_MALLOC
+ mfm_lock();
+#endif
while (index < malloc_num_zones) {
malloc_zone_t *zone = malloc_zones[index++];
zone->introspect->force_lock(zone);
@@ -2737,6 +3627,9 @@
malloc_zone_t *zone = malloc_zones[index++];
zone->introspect->force_unlock(zone);
}
+#if CONFIG_EARLY_MALLOC
+ mfm_unlock();
+#endif
MALLOC_UNLOCK();
}
@@ -2755,6 +3648,9 @@
zone->introspect->reinit_lock(zone);
}
}
+#if CONFIG_EARLY_MALLOC
+ mfm_reinit_lock();
+#endif
MALLOC_REINIT_LOCK();
}
@@ -2888,6 +3784,10 @@
/***************** OBSOLETE ENTRY POINTS ********************/
+#ifndef PHASE_OUT_OLD_MALLOC
+#define PHASE_OUT_OLD_MALLOC 0
+#endif
+
#if PHASE_OUT_OLD_MALLOC
#error PHASE OUT THE FOLLOWING FUNCTIONS
#endif
@@ -3033,7 +3933,7 @@
_malloc_register_stack_logger(bool at_startup)
{
void *dylib = NULL;
- if (malloc_quarantine_enabled && !at_startup) {
+ if (malloc_sanitizer_enabled && !at_startup) {
return false;
}
#if !TARGET_OS_DRIVERKIT