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--- libmalloc/libmalloc-166.220.1/src/malloc.c
+++ libmalloc/libmalloc-140.50.6/src/malloc.c
@@ -23,12 +23,25 @@
 
 #include "internal.h"
 
-#if TARGET_OS_IPHONE
-// malloc_report(ASL_LEVEL_INFO...) on iOS doesn't show up in the Xcode Console log of the device,
+#if TARGET_OS_EMBEDDED || TARGET_IPHONE_SIMULATOR
+// _malloc_printf(ASL_LEVEL_INFO...) on iOS doesn't show up in the Xcode Console log of the device,
 // but ASL_LEVEL_NOTICE does.  So raising the log level is helpful.
 #undef ASL_LEVEL_INFO
 #define ASL_LEVEL_INFO ASL_LEVEL_NOTICE
-#endif // TARGET_OS_IPHONE
+#endif
+
+/*
+ * MALLOC_ABSOLUTE_MAX_SIZE - There are many instances of addition to a
+ * user-specified size_t, which can cause overflow (and subsequent crashes)
+ * for values near SIZE_T_MAX.  Rather than add extra "if" checks everywhere
+ * this occurs, it is easier to just set an absolute maximum request size,
+ * and immediately return an error if the requested size exceeds this maximum.
+ * Of course, values less than this absolute max can fail later if the value
+ * is still too large for the available memory.  The largest value added
+ * seems to be PAGE_SIZE (in the macro round_page()), so to be safe, we set
+ * the maximum to be 2 * PAGE_SIZE less than SIZE_T_MAX.
+ */
+#define MALLOC_ABSOLUTE_MAX_SIZE (SIZE_T_MAX - (2 * PAGE_SIZE))
 
 #define USE_SLEEP_RATHER_THAN_ABORT 0
 
@@ -78,10 +91,16 @@
 unsigned malloc_check_counter = 0;
 unsigned malloc_check_each = 1000;
 
+/* global flag to suppress ASL logging e.g. for syslogd */
+int _malloc_no_asl_log = 0;
+
 static int malloc_check_sleep = 100; // default 100 second sleep
 static int malloc_check_abort = 0;   // default is to sleep, not abort
 
+static int malloc_debug_file = STDERR_FILENO;
 static os_once_t _malloc_initialize_pred;
+
+static const char Malloc_Facility[] = "com.apple.Libsystem.malloc";
 
 // Used by memory resource exceptions and enabling/disabling malloc stack logging via malloc_memory_event_handler
 static boolean_t warn_mode_entered = false;
@@ -96,8 +115,6 @@
 static int32_t volatile * volatile pFRZCounterLive = &counterAlice;
 static int32_t volatile * volatile pFRZCounterDrain = &counterBob;
 
-unsigned int _os_cpu_number_override = -1;
-
 static inline malloc_zone_t *inline_malloc_default_zone(void) __attribute__((always_inline));
 
 #define MALLOC_LOG_TYPE_ALLOCATE stack_logging_type_alloc
@@ -107,19 +124,8 @@
 
 #define DEFAULT_MALLOC_ZONE_STRING "DefaultMallocZone"
 #define DEFAULT_PUREGEABLE_ZONE_STRING "DefaultPurgeableMallocZone"
-#define MALLOC_HELPER_ZONE_STRING "MallocHelperZone"
-
-MALLOC_NOEXPORT
-unsigned int phys_ncpus;
-
-MALLOC_NOEXPORT
-unsigned int logical_ncpus;
-
-MALLOC_NOEXPORT
-unsigned int hyper_shift;
-
-// Boot argument for max magazine control
-static const char max_magazines_boot_arg[] = "malloc_max_magazines";
+
+boolean_t malloc_engaged_nano(void);
 
 /*********	Utilities	************/
 static bool _malloc_entropy_initialized;
@@ -156,47 +162,14 @@
 	return idx;
 }
 
-static void
-__malloc_init_from_bootargs(const char *bootargs)
-{
-	// The maximum number of magazines can be set either via a
-	// boot argument or from the environment. Get the boot argument value
-	// here and store it. We can't bounds check it until we have phys_ncpus,
-	// which happens later in _malloc_initialize(), along with handling
-	// of the environment value setting.
-	char value_buf[256];
-	const char *flag = malloc_common_value_for_key_copy(bootargs,
-			max_magazines_boot_arg, value_buf, sizeof(value_buf));
-	if (flag) {
-		const char *endp;
-		long value = malloc_common_convert_to_long(flag, &endp);
-		if (!*endp && value >= 0) {
-			max_magazines = (unsigned int)value;
-		} else {
-			malloc_report(ASL_LEVEL_ERR,
-						   "malloc_max_magazines must be positive - ignored.\n");
-		}
-	}
-}
-
 /* TODO: Investigate adding _malloc_initialize() into this libSystem initializer */
 void
 __malloc_init(const char *apple[])
 {
-	// We could try to be clever and cater for arbitrary length bootarg
-	// strings, but it's probably not worth it, especially as we would need
-	// to temporarily allocate at least a page of memory to read the bootargs
-	// into.
-	char bootargs[1024] = { '\0' };
-	size_t len = sizeof(bootargs) - 1;
-	if (!sysctlbyname("kern.bootargs", bootargs, &len, NULL, 0) && len > 0) {
-		bootargs[len + 1] = '\0';
-	}
-
 #if CONFIG_NANOZONE
 	// TODO: envp should be passed down from Libsystem
 	const char **envp = (const char **)*_NSGetEnviron();
-	nano_common_init(envp, apple, bootargs);
+	nano_init(envp, apple);
 #endif
 
 	const char **p;
@@ -216,7 +189,6 @@
 		_malloc_entropy_initialized = true;
 	}
 
-	__malloc_init_from_bootargs(bootargs);
 	mvm_aslr_init();
 }
 
@@ -320,16 +292,8 @@
 default_zone_pressure_relief(malloc_zone_t *zone, size_t goal)
 {
 	zone = runtime_default_zone();
-
+	
 	return zone->pressure_relief(zone, goal);
-}
-
-static boolean_t
-default_zone_malloc_claimed_address(malloc_zone_t *zone, void *ptr)
-{
-	zone = runtime_default_zone();
-
-	return malloc_zone_claimed_address(zone, ptr);
 }
 
 static kern_return_t
@@ -365,8 +329,8 @@
 default_zone_print(malloc_zone_t *zone, boolean_t verbose)
 {
 	zone = runtime_default_zone();
-
-	return (void)zone->introspect->print(zone, verbose);
+	
+	return (void)zone->introspect->check(zone);
 }
 
 static void
@@ -455,11 +419,10 @@
 	default_zone_batch_malloc,
 	default_zone_batch_free,
 	&default_zone_introspect,
-	10,
+	9,
 	default_zone_memalign,
 	default_zone_free_definite_size,
-	default_zone_pressure_relief,
-	default_zone_malloc_claimed_address,
+	default_zone_pressure_relief
 };
 
 static malloc_zone_t *default_zone = &virtual_default_zone.malloc_zone;
@@ -617,7 +580,7 @@
 	 * so, print an error message and return. */
 	for (i = 0; i != malloc_num_zones; ++i) {
 		if (zone == malloc_zones[i]) {
-			malloc_report(ASL_LEVEL_ERR, "Attempted to register zone more than once: %p\n", zone);
+			_malloc_printf(ASL_LEVEL_ERR, "Attempted to register zone more than once: %p\n", zone);
 			return;
 		}
 	}
@@ -631,7 +594,7 @@
 		vm_addr = vm_page_size;
 		kern_return_t kr = mach_vm_allocate(mach_task_self(), &vm_addr, alloc_size, alloc_flags);
 		if (kr) {
-			malloc_report(ASL_LEVEL_ERR, "malloc_zone_register allocation failed: %d\n", kr);
+			_malloc_printf(ASL_LEVEL_ERR, "malloc_zone_register allocation failed: %d\n", kr);
 			return;
 		}
 
@@ -671,7 +634,7 @@
 	/* Finally, now that the zone is registered, disallow write access to the
 	 * malloc_zones array */
 	mprotect(malloc_zones, protect_size, PROT_READ);
-	//malloc_report(ASL_LEVEL_INFO, "Registered malloc_zone %p in malloc_zones %p [%u zones, %u bytes]\n", zone, malloc_zones,
+	//_malloc_printf(ASL_LEVEL_INFO, "Registered malloc_zone %p in malloc_zones %p [%u zones, %u bytes]\n", zone, malloc_zones,
 	// malloc_num_zones, protect_size);
 }
 
@@ -707,7 +670,7 @@
 					stack_logging_enable_logging = 1;
 					ret = true;
 					
-					malloc_report(ASL_LEVEL_INFO, "recording malloc and VM allocation stacks to disk using standard recorder\n");
+					malloc_printf("recording malloc and VM allocation stacks to disk using standard recorder\n");
 					break;
 					
 				case stack_logging_mode_malloc:
@@ -717,7 +680,7 @@
 					stack_logging_enable_logging = 1;
 					ret = true;
 					
-					malloc_report(ASL_LEVEL_INFO, "recording malloc (but not VM allocation) stacks to disk using standard recorder\n");
+					malloc_printf("recording malloc (but not VM allocation) stacks to disk using standard recorder\n");
 					break;
 					
 				case stack_logging_mode_vm:
@@ -727,15 +690,15 @@
 					stack_logging_enable_logging = 1;
 					ret = true;
 					
-					malloc_report(ASL_LEVEL_INFO, "recording VM allocation (but not malloc) stacks to disk using standard recorder\n");
+					malloc_printf("recording VM allocation (but not malloc) stacks to disk using standard recorder\n");
 					break;
 					
 				case stack_logging_mode_lite:
 					if (!has_default_zone0()) {
-						malloc_report(ASL_LEVEL_ERR, "zone[0] is not the normal default zone so can't turn on lite mode.\n", mode);
+						malloc_printf("zone[0] is not the normal default zone so can't turn on lite mode.\n", mode);
 						ret = false;
 					} else {
-						malloc_report(ASL_LEVEL_INFO, "recording malloc (and VM allocation) stacks using lite mode\n");
+						malloc_printf("recording malloc (and VM allocation) stacks using lite mode\n");
 						
 						if (lite_zone) {
 							enable_stack_logging_lite();
@@ -753,22 +716,13 @@
 					}
 					break;
 					
-				case stack_logging_mode_vmlite:
-					if (__prepare_to_log_stacks(true)) {
-						__syscall_logger = __disk_stack_logging_log_stack;
-						stack_logging_mode = mode;
-						stack_logging_enable_logging = 1;
-						malloc_report(ASL_LEVEL_INFO, "recording VM allocation (but not malloc) stacks using lite mode\n");
-					}
-					break;
-					
 				default:
-					malloc_report(ASL_LEVEL_ERR, "invalid mode %d passed to turn_on_stack_logging\n", mode);
+					malloc_printf("invalid mode %d passed to turn_on_stack_logging\n", mode);
 					break;
 			}
 		}
 	} else {
-		malloc_report(ASL_LEVEL_ERR, "malloc stack logging already enabled.\n");
+		malloc_printf("malloc stack logging already enabled.\n");
 	}
 	
 	MALLOC_UNLOCK();
@@ -787,40 +741,34 @@
 				malloc_logger = NULL;
 				__syscall_logger = NULL;
 				stack_logging_enable_logging = 0;
-				malloc_report(ASL_LEVEL_INFO, "turning off recording malloc and VM allocation stacks to disk using standard recorder\n");
+				malloc_printf("turning off recording malloc and VM allocation stacks to disk using standard recorder\n");
 				break;
 				
 			case stack_logging_mode_malloc:
 				malloc_logger = NULL;
 				stack_logging_enable_logging = 0;
-				malloc_report(ASL_LEVEL_INFO, "turnning off recording malloc (but not VM allocation) stacks to disk using standard recorder\n");
+				malloc_printf("turnning off recording malloc (but not VM allocation) stacks to disk using standard recorder\n");
 				break;
 				
 			case stack_logging_mode_vm:
 				__syscall_logger = NULL;
 				stack_logging_enable_logging = 0;
-				malloc_report(ASL_LEVEL_INFO, "turning off recording VM allocation (but not malloc) stacks to disk using standard recorder\n");
+				malloc_printf("turning off recording VM allocation (but not malloc) stacks to disk using standard recorder\n");
 				break;
 				
 			case stack_logging_mode_lite:
-				malloc_report(ASL_LEVEL_INFO, "turning off recording malloc (but not VM allocation) stacks using lite mode\n");
+				malloc_printf("turning off recording malloc (but not VM allocation) stacks using lite mode\n");
 				
 				disable_stack_logging_lite();
 				stack_logging_enable_logging = 0;
 				break;
 				
-			case stack_logging_mode_vmlite:
-				__syscall_logger = NULL;
-				stack_logging_enable_logging = 0;
-				malloc_report(ASL_LEVEL_INFO, "turning off recording VM allocation stacks using lite mode\n");
+			default:
+				malloc_printf("invalid stack_logging_mode %d in turn_off_stack_logging\n", stack_logging_mode);
 				break;
-				
-			default:
-				malloc_report(ASL_LEVEL_ERR, "invalid stack_logging_mode %d in turn_off_stack_logging\n", stack_logging_mode);
-				break;
 		}
 	} else {
-		malloc_report(ASL_LEVEL_ERR, "malloc stack logging not enabled.\n");
+		malloc_printf("malloc stack logging not enabled.\n");
 	}
 	
 	MALLOC_UNLOCK();
@@ -832,57 +780,20 @@
 {
 	MALLOC_LOCK();
 	unsigned n;
-	malloc_zone_t *zone = NULL;
+	malloc_zone_t *zone;
 
 	if (!_malloc_entropy_initialized) {
 		// Lazy initialization may occur before __malloc_init (rdar://27075409)
 		// TODO: make this a fatal error
-		malloc_report(ASL_LEVEL_ERR, "*** malloc was initialized without entropy\n");
-	}
-
-	phys_ncpus = *(uint8_t *)(uintptr_t)_COMM_PAGE_PHYSICAL_CPUS;
-	logical_ncpus = *(uint8_t *)(uintptr_t)_COMM_PAGE_LOGICAL_CPUS;
-
-	if (0 != (logical_ncpus % phys_ncpus)) {
-		MALLOC_REPORT_FATAL_ERROR(logical_ncpus % phys_ncpus,
-				"logical_ncpus %% phys_ncpus != 0\n");
-	}
-
-	switch (logical_ncpus / phys_ncpus) {
-	case 1:
-		hyper_shift = 0;
-		break;
-	case 2:
-		hyper_shift = 1;
-		break;
-	case 4:
-		hyper_shift = 2;
-		break;
-	default:
-		MALLOC_REPORT_FATAL_ERROR(logical_ncpus / phys_ncpus, "logical_ncpus / phys_ncpus not 1, 2, or 4");
-	}
-
-	// max_magazines may already be set from a boot argument. Make sure that it
-	// is bounded by the number of CPUs.
-	if (max_magazines) {
-		max_magazines = MIN(max_magazines, logical_ncpus);
-	} else {
-		max_magazines = logical_ncpus;
+		malloc_printf("*** malloc was initialized without entropy\n");
 	}
 
 	set_flags_from_environment(); // will only set flags up to two times
 	n = malloc_num_zones;
 
 #if CONFIG_NANOZONE
-	nano_common_configure();
-	
 	malloc_zone_t *helper_zone = create_scalable_zone(0, malloc_debug_flags);
-
-	if (_malloc_engaged_nano == NANO_V2) {
-		zone = nanov2_create_zone(helper_zone, malloc_debug_flags);
-	} else if (_malloc_engaged_nano == NANO_V1) {
-		zone = nano_create_zone(helper_zone, malloc_debug_flags);
-	}
+	zone = create_nano_zone(0, helper_zone, malloc_debug_flags);
 
 	if (zone) {
 		malloc_zone_register_while_locked(zone);
@@ -939,14 +850,11 @@
 			create_and_insert_lite_zone_while_locked();
 			enable_stack_logging_lite();
 			break;
-		case stack_logging_mode_vmlite:
-			__syscall_logger = __disk_stack_logging_log_stack;
-			break;
-		}
-	}
-
-	// malloc_report(ASL_LEVEL_INFO, "%d registered zones\n", malloc_num_zones);
-	// malloc_report(ASL_LEVEL_INFO, "malloc_zones is at %p; malloc_num_zones is at %p\n", (unsigned)&malloc_zones,
+		}
+	}
+
+	// _malloc_printf(ASL_LEVEL_INFO, "%d registered zones\n", malloc_num_zones);
+	// _malloc_printf(ASL_LEVEL_INFO, "malloc_zones is at %p; malloc_num_zones is at %p\n", (unsigned)&malloc_zones,
 	// (unsigned)&malloc_num_zones);
 	MALLOC_UNLOCK();
 }
@@ -962,7 +870,7 @@
 inline_malloc_default_zone(void)
 {
 	_malloc_initialize_once();
-	// malloc_report(ASL_LEVEL_INFO, "In inline_malloc_default_zone with %d %d\n", malloc_num_zones, malloc_has_debug_zone);
+	// _malloc_printf(ASL_LEVEL_INFO, "In inline_malloc_default_zone with %d %d\n", malloc_num_zones, malloc_has_debug_zone);
 	return malloc_zones[0];
 }
 
@@ -979,7 +887,7 @@
 	unsigned index;
 
 	_malloc_initialize_once();
-	// malloc_report(ASL_LEVEL_INFO, "In inline_malloc_default_scalable_zone with %d %d\n", malloc_num_zones,
+	// _malloc_printf(ASL_LEVEL_INFO, "In inline_malloc_default_scalable_zone with %d %d\n", malloc_num_zones,
 	// malloc_has_debug_zone);
 
 	MALLOC_LOCK();
@@ -1003,7 +911,7 @@
 	}
 	MALLOC_UNLOCK();
 
-	malloc_report(ASL_LEVEL_ERR, "*** malloc_default_scalable_zone() failed to find 'DefaultMallocZone'\n");
+	malloc_printf("*** malloc_default_scalable_zone() failed to find 'DefaultMallocZone'\n");
 	return NULL; // FIXME: abort() instead?
 }
 
@@ -1043,9 +951,9 @@
 }
 
 /*
- * Returns the version of the Nano allocator that's in use, or 0 if not.
+ * malloc_engaged_nano() is for the benefit of libdispatch, which calls here just once.
  */
-int
+boolean_t
 malloc_engaged_nano(void)
 {
 #if CONFIG_NANOZONE
@@ -1079,10 +987,16 @@
 set_flags_from_environment(void)
 {
 	const char *flag;
+	int fd;
 	char **env = *_NSGetEnviron();
 	char **p;
 	char *c;
-
+	bool restricted = 0;
+
+	if (malloc_debug_file != STDERR_FILENO) {
+		close(malloc_debug_file);
+		malloc_debug_file = STDERR_FILENO;
+	}
 #if __LP64__
 	malloc_debug_flags = MALLOC_ABORT_ON_CORRUPTION; // Set always on 64-bit processes
 #else
@@ -1120,23 +1034,33 @@
 	 * MallocLogFile & MallocCorruptionAbort
 	 * as these provide the ability to turn *off* aborting in error cases.
 	 */
-	bool restricted = dyld_process_is_restricted();
-	malloc_print_configure(restricted);
+	restricted = dyld_process_is_restricted();
 
 	if (c == NULL) {
 		return;
 	}
-
+	if (!restricted) {
+		flag = getenv("MallocLogFile");
+		if (flag) {
+			fd = open(flag, O_WRONLY | O_APPEND | O_CREAT, 0644);
+			if (fd >= 0) {
+				malloc_debug_file = fd;
+				fcntl(fd, F_SETFD, 0); // clear close-on-exec flag  XXX why?
+			} else {
+				malloc_printf("Could not open %s, using stderr\n", flag);
+			}
+		}
+	}
 	if (getenv("MallocGuardEdges")) {
 		malloc_debug_flags |= MALLOC_ADD_GUARD_PAGES;
-		malloc_report(ASL_LEVEL_INFO, "protecting edges\n");
+		_malloc_printf(ASL_LEVEL_INFO, "protecting edges\n");
 		if (getenv("MallocDoNotProtectPrelude")) {
 			malloc_debug_flags |= MALLOC_DONT_PROTECT_PRELUDE;
-			malloc_report(ASL_LEVEL_INFO, "... but not protecting prelude guard page\n");
+			_malloc_printf(ASL_LEVEL_INFO, "... but not protecting prelude guard page\n");
 		}
 		if (getenv("MallocDoNotProtectPostlude")) {
 			malloc_debug_flags |= MALLOC_DONT_PROTECT_POSTLUDE;
-			malloc_report(ASL_LEVEL_INFO, "... but not protecting postlude guard page\n");
+			_malloc_printf(ASL_LEVEL_INFO, "... but not protecting postlude guard page\n");
 		}
 	}
 	flag = getenv("MallocStackLogging");
@@ -1146,46 +1070,43 @@
 	}
 	if (flag) {
 		// Set up stack logging as early as possible to catch all ensuing VM allocations,
-		// including those from malloc_report and malloc zone setup.  Make sure to set
+		// including those from _malloc_printf and malloc zone setup.  Make sure to set
 		// __syscall_logger after this, because prepare_to_log_stacks() itself makes VM
 		// allocations that we aren't prepared to log yet.
-		boolean_t lite_or_vmlite_mode = strcmp(flag, "lite") == 0 || strcmp(flag, "vmlite") == 0;
+		boolean_t lite_mode = strcmp(flag, "lite") == 0;
 		
-		__prepare_to_log_stacks(lite_or_vmlite_mode);
+		__prepare_to_log_stacks(lite_mode);
 
 		if (strcmp(flag, "lite") == 0) {
 			stack_logging_mode = stack_logging_mode_lite;
-			malloc_report(ASL_LEVEL_INFO, "recording malloc and VM allocation stacks using lite mode\n");
+			_malloc_printf(ASL_LEVEL_INFO, "recording malloc and VM allocation stacks using lite mode\n");
 		} else if (strcmp(flag,"malloc") == 0) {
 			stack_logging_mode = stack_logging_mode_malloc;
-			malloc_report(ASL_LEVEL_INFO, "recording malloc (but not VM allocation) stacks to disk using standard recorder\n");
+			_malloc_printf(ASL_LEVEL_INFO, "recording malloc (but not VM allocation) stacks to disk using standard recorder\n");
 		} else if (strcmp(flag, "vm") == 0) {
 			stack_logging_mode = stack_logging_mode_vm;
-			malloc_report(ASL_LEVEL_INFO, "recording VM allocation (but not malloc) stacks to disk using standard recorder\n");
-		} else if (strcmp(flag, "vmlite") == 0) {
-			stack_logging_mode = stack_logging_mode_vmlite;
-			malloc_report(ASL_LEVEL_NOTICE, "recording VM allocation (but not malloc) stacks using lite mode\n");
+			_malloc_printf(ASL_LEVEL_INFO, "recording VM allocation (but not malloc) stacks to disk using standard recorder\n");
 		} else {
 			stack_logging_mode = stack_logging_mode_all;
-			malloc_report(ASL_LEVEL_INFO, "recording malloc and VM allocation stacks to disk using standard recorder\n");
+			_malloc_printf(ASL_LEVEL_INFO, "recording malloc and VM allocation stacks to disk using standard recorder\n");
 		}
 		stack_logging_enable_logging = 1;
 		if (stack_logging_dontcompact) {
 			if (stack_logging_mode == stack_logging_mode_all || stack_logging_mode == stack_logging_mode_malloc) {
-				malloc_report(
+				_malloc_printf(
 						ASL_LEVEL_INFO, "stack logging compaction turned off; size of log files on disk can increase rapidly\n");
 			} else {
-				malloc_report(ASL_LEVEL_INFO, "stack logging compaction turned off; VM can increase rapidly\n");
+				_malloc_printf(ASL_LEVEL_INFO, "stack logging compaction turned off; VM can increase rapidly\n");
 			}
 		}
 	}
 	if (getenv("MallocScribble")) {
 		malloc_debug_flags |= MALLOC_DO_SCRIBBLE;
-		malloc_report(ASL_LEVEL_INFO, "enabling scribbling to detect mods to free blocks\n");
+		_malloc_printf(ASL_LEVEL_INFO, "enabling scribbling to detect mods to free blocks\n");
 	}
 	if (getenv("MallocErrorAbort")) {
 		malloc_debug_flags |= MALLOC_ABORT_ON_ERROR;
-		malloc_report(ASL_LEVEL_INFO, "enabling abort() on bad malloc or free\n");
+		_malloc_printf(ASL_LEVEL_INFO, "enabling abort() on bad malloc or free\n");
 	}
 	if (getenv("MallocTracing")) {
 		malloc_tracing_enabled = true;
@@ -1220,56 +1141,30 @@
 				malloc_check_each = 1;
 			}
 		}
-		malloc_report(ASL_LEVEL_INFO, "checks heap after operation #%d and each %d operations\n", malloc_check_start, malloc_check_each);
+		_malloc_printf(
+				ASL_LEVEL_INFO, "checks heap after %dth operation and each %d operations\n", malloc_check_start, malloc_check_each);
 		flag = getenv("MallocCheckHeapAbort");
 		if (flag) {
 			malloc_check_abort = (unsigned)strtol(flag, NULL, 0);
 		}
 		if (malloc_check_abort) {
-			malloc_report(ASL_LEVEL_INFO, "will abort on heap corruption\n");
+			_malloc_printf(ASL_LEVEL_INFO, "will abort on heap corruption\n");
 		} else {
 			flag = getenv("MallocCheckHeapSleep");
 			if (flag) {
 				malloc_check_sleep = (unsigned)strtol(flag, NULL, 0);
 			}
 			if (malloc_check_sleep > 0) {
-				malloc_report(ASL_LEVEL_INFO, "will sleep for %d seconds on heap corruption\n", malloc_check_sleep);
+				_malloc_printf(ASL_LEVEL_INFO, "will sleep for %d seconds on heap corruption\n", malloc_check_sleep);
 			} else if (malloc_check_sleep < 0) {
-				malloc_report(ASL_LEVEL_INFO, "will sleep once for %d seconds on heap corruption\n", -malloc_check_sleep);
+				_malloc_printf(ASL_LEVEL_INFO, "will sleep once for %d seconds on heap corruption\n", -malloc_check_sleep);
 			} else {
-				malloc_report(ASL_LEVEL_INFO, "no sleep on heap corruption\n");
+				_malloc_printf(ASL_LEVEL_INFO, "no sleep on heap corruption\n");
 			}
 		}
 	}
-
-	flag = getenv("MallocMaxMagazines");
-	if (flag) {
-		int value = (unsigned)strtol(flag, NULL, 0);
-		if (value == 0) {
-			malloc_report(ASL_LEVEL_INFO, "Maximum magazines defaulted to %d\n", max_magazines);
-		} else if (value < 0) {
-			malloc_report(ASL_LEVEL_ERR, "MallocMaxMagazines must be positive - ignored.\n");
-		} else if (value > logical_ncpus) {
-			max_magazines = logical_ncpus;
-			malloc_report(ASL_LEVEL_INFO, "Maximum magazines limited to number of logical CPUs (%d)\n", max_magazines);
-		} else {
-			max_magazines = value;
-			malloc_report(ASL_LEVEL_INFO, "Maximum magazines set to %d\n", max_magazines);
-		}
-	}
-#if CONFIG_RECIRC_DEPOT
-	flag = getenv("MallocRecircRetainedRegions");
-	if (flag) {
-		int value = (int)strtol(flag, NULL, 0);
-		if (value > 0) {
-			recirc_retained_regions = value;
-		} else {
-			malloc_report(ASL_LEVEL_ERR, "MallocRecircRetainedRegions must be positive - ignored.\n");
-		}
-	}
-#endif // CONFIG_RECIRC_DEPOT
 	if (getenv("MallocHelp")) {
-		malloc_report(ASL_LEVEL_INFO,
+		_malloc_printf(ASL_LEVEL_INFO,
 				"environment variables that can be set for debug:\n"
 				"- MallocLogFile <f> to create/append messages to file <f> instead of stderr\n"
 				"- MallocGuardEdges to add 2 guard pages for each large block\n"
@@ -1353,87 +1248,71 @@
 	zone->destroy(zone);
 }
 
-static vm_address_t *frames = NULL;
-static unsigned num_frames;
-
-MALLOC_NOINLINE
-void
-malloc_zone_check_fail(const char *msg, const char *fmt, ...)
-{
-	_SIMPLE_STRING b = _simple_salloc();
-	if (b) {
-		_simple_sprintf(b, "*** MallocCheckHeap: FAILED check at operation #%d\n", malloc_check_counter - 1);
-	} else {
-		malloc_report(MALLOC_REPORT_NOLOG, "*** MallocCheckHeap: FAILED check at operation #%d\n", malloc_check_counter - 1);
-	}
-	if (frames) {
-		unsigned index = 1;
-		if (b) {
-			_simple_sappend(b, "Stack for last operation where the malloc check succeeded: ");
-			while (index < num_frames)
-				_simple_sprintf(b, "%p ", (void*)frames[index++]);
-			malloc_report(MALLOC_REPORT_NOLOG, "%s\n(Use 'atos' for a symbolic stack)\n", _simple_string(b));
-		} else {
-			/*
-			 * Should only get here if vm_allocate() can't get a single page of
-			 * memory, implying _simple_asl_log() would also fail.  So we just
-			 * print to the file descriptor.
-			 */
-			malloc_report(MALLOC_REPORT_NOLOG, "Stack for last operation where the malloc check succeeded: ");
-			while (index < num_frames) {
-				malloc_report(MALLOC_REPORT_NOLOG, "%p ", (void *)frames[index++]);
-			}
-			malloc_report(MALLOC_REPORT_NOLOG, "\n(Use 'atos' for a symbolic stack)\n");
-		}
-	}
-	if (malloc_check_each > 1) {
-		unsigned recomm_each = (malloc_check_each > 10) ? malloc_check_each / 10 : 1;
-		unsigned recomm_start =
-				(malloc_check_counter > malloc_check_each + 1) ? malloc_check_counter - 1 - malloc_check_each : 1;
-		malloc_report(MALLOC_REPORT_NOLOG,
-				"*** Recommend using 'setenv MallocCheckHeapStart %d; setenv MallocCheckHeapEach %d' to narrow down failure\n",
-				recomm_start, recomm_each);
-	}
-
-	if (b) {
-		_simple_sfree(b);
-	}
-
-	// Use malloc_vreport() to:
-	// 	* report the error
-	// 	* call malloc_error_break() for a breakpoint
-	// 	* sleep or stop for debug
-	// 	* set the crash message and crash if malloc_check_abort is set.
-	unsigned sleep_time = 0;
-	uint32_t report_flags = ASL_LEVEL_ERR | MALLOC_REPORT_DEBUG | MALLOC_REPORT_NOLOG;
-	if (malloc_check_abort) {
-		report_flags |= MALLOC_REPORT_CRASH;
-	} else {
-		if (malloc_check_sleep > 0) {
-			malloc_report(ASL_LEVEL_NOTICE, "*** Will sleep for %d seconds to leave time to attach\n", malloc_check_sleep);
-			sleep_time = malloc_check_sleep;
-		} else if (malloc_check_sleep < 0) {
-			malloc_report(ASL_LEVEL_NOTICE, "*** Will sleep once for %d seconds to leave time to attach\n", -malloc_check_sleep);
-			sleep_time = -malloc_check_sleep;
-			malloc_check_sleep = 0;
-		}
-	}
-	va_list ap;
-	va_start(ap, fmt);
-	malloc_vreport(report_flags, sleep_time, msg, NULL, fmt, ap);
-	va_end(ap);
-}
-
 /*********	Block creation and manipulation	************/
 
 static void
 internal_check(void)
 {
+	static vm_address_t *frames = NULL;
+	static unsigned num_frames;
 	if (malloc_zone_check(NULL)) {
 		if (!frames) {
 			vm_allocate(mach_task_self(), (void *)&frames, vm_page_size, 1);
 		}
 		thread_stack_pcs(frames, (unsigned)(vm_page_size / sizeof(vm_address_t) - 1), &num_frames);
+	} else {
+		_SIMPLE_STRING b = _simple_salloc();
+		if (b) {
+			_simple_sprintf(b, "*** MallocCheckHeap: FAILED check at %dth operation\n", malloc_check_counter - 1);
+		} else {
+			_malloc_printf(MALLOC_PRINTF_NOLOG, "*** MallocCheckHeap: FAILED check at %dth operation\n", malloc_check_counter - 1);
+		}
+		malloc_printf("*** MallocCheckHeap: FAILED check at %dth operation\n", malloc_check_counter - 1);
+		if (frames) {
+			unsigned index = 1;
+			if (b) {
+				_simple_sappend(b, "Stack for last operation where the malloc check succeeded: ");
+				while (index < num_frames)
+					_simple_sprintf(b, "%p ", (void*)frames[index++]);
+				malloc_printf("%s\n(Use 'atos' for a symbolic stack)\n", _simple_string(b));
+			} else {
+				/*
+				 * Should only get here if vm_allocate() can't get a single page of
+				 * memory, implying _simple_asl_log() would also fail.  So we just
+				 * print to the file descriptor.
+				 */
+				_malloc_printf(MALLOC_PRINTF_NOLOG, "Stack for last operation where the malloc check succeeded: ");
+				while (index < num_frames)
+					_malloc_printf(MALLOC_PRINTF_NOLOG, "%p ", frames[index++]);
+				_malloc_printf(MALLOC_PRINTF_NOLOG, "\n(Use 'atos' for a symbolic stack)\n");
+			}
+		}
+		if (malloc_check_each > 1) {
+			unsigned recomm_each = (malloc_check_each > 10) ? malloc_check_each / 10 : 1;
+			unsigned recomm_start =
+					(malloc_check_counter > malloc_check_each + 1) ? malloc_check_counter - 1 - malloc_check_each : 1;
+			malloc_printf(
+					"*** Recommend using 'setenv MallocCheckHeapStart %d; setenv MallocCheckHeapEach %d' to narrow down failure\n",
+					recomm_start, recomm_each);
+		}
+		if (malloc_check_abort) {
+			if (b) {
+				_os_set_crash_log_message_dynamic(_simple_string(b));
+			} else {
+				_os_set_crash_log_message("*** MallocCheckHeap: FAILED check");
+			}
+			abort();
+		} else if (b) {
+			_simple_sfree(b);
+		}
+		if (malloc_check_sleep > 0) {
+			_malloc_printf(ASL_LEVEL_NOTICE, "*** Sleeping for %d seconds to leave time to attach\n", malloc_check_sleep);
+			sleep(malloc_check_sleep);
+		} else if (malloc_check_sleep < 0) {
+			_malloc_printf(ASL_LEVEL_NOTICE, "*** Sleeping once for %d seconds to leave time to attach\n", -malloc_check_sleep);
+			sleep(-malloc_check_sleep);
+			malloc_check_sleep = 0;
+		}
 	}
 	malloc_check_start += malloc_check_each;
 }
@@ -1465,33 +1344,32 @@
 void *
 malloc_zone_calloc(malloc_zone_t *zone, size_t num_items, size_t size)
 {
-	MALLOC_TRACE(TRACE_calloc | DBG_FUNC_START, (uintptr_t)zone, num_items, size, 0);
-
+	void *ptr;
+	size_t alloc_size;
+	if (malloc_check_start && (malloc_check_counter++ >= malloc_check_start)) {
+		internal_check();
+	}
+	if (os_mul_overflow(num_items, size, &alloc_size) || alloc_size > MALLOC_ABSOLUTE_MAX_SIZE){
+		errno = ENOMEM;
+		return NULL;
+	}
+
+	ptr = zone->calloc(zone, num_items, size);
+	
+	if (malloc_logger) {
+		malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE | MALLOC_LOG_TYPE_CLEARED, (uintptr_t)zone,
+				(uintptr_t)(num_items * size), 0, (uintptr_t)ptr, 0);
+	}
+	return ptr;
+}
+
+void *
+malloc_zone_valloc(malloc_zone_t *zone, size_t size)
+{
 	void *ptr;
 	if (malloc_check_start && (malloc_check_counter++ >= malloc_check_start)) {
 		internal_check();
 	}
-
-	ptr = zone->calloc(zone, num_items, size);
-	
-	if (malloc_logger) {
-		malloc_logger(MALLOC_LOG_TYPE_ALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE | MALLOC_LOG_TYPE_CLEARED, (uintptr_t)zone,
-				(uintptr_t)(num_items * size), 0, (uintptr_t)ptr, 0);
-	}
-
-	MALLOC_TRACE(TRACE_calloc | DBG_FUNC_END, (uintptr_t)zone, num_items, size, (uintptr_t)ptr);
-	return ptr;
-}
-
-void *
-malloc_zone_valloc(malloc_zone_t *zone, size_t size)
-{
-	MALLOC_TRACE(TRACE_valloc | DBG_FUNC_START, (uintptr_t)zone, size, 0, 0);
-
-	void *ptr;
-	if (malloc_check_start && (malloc_check_counter++ >= malloc_check_start)) {
-		internal_check();
-	}
 	if (size > MALLOC_ABSOLUTE_MAX_SIZE) {
 		return NULL;
 	}
@@ -1501,8 +1379,6 @@
 	if (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_TRACE(TRACE_valloc | DBG_FUNC_END, (uintptr_t)zone, size, (uintptr_t)ptr, 0);
 	return ptr;
 }
 
@@ -1532,7 +1408,7 @@
 void
 malloc_zone_free(malloc_zone_t *zone, void *ptr)
 {
-	MALLOC_TRACE(TRACE_free, (uintptr_t)zone, (uintptr_t)ptr, (ptr) ? *(uintptr_t*)ptr : 0, 0);
+	MALLOC_TRACE(TRACE_free, (uintptr_t)zone, (uintptr_t)ptr, 0, 0);
 
 	if (malloc_logger) {
 		malloc_logger(MALLOC_LOG_TYPE_DEALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE, (uintptr_t)zone, (uintptr_t)ptr, 0, 0, 0);
@@ -1547,7 +1423,7 @@
 static void
 malloc_zone_free_definite_size(malloc_zone_t *zone, void *ptr, size_t size)
 {
-	MALLOC_TRACE(TRACE_free, (uintptr_t)zone, (uintptr_t)ptr, size, (ptr && size) ? *(uintptr_t*)ptr : 0);
+	MALLOC_TRACE(TRACE_free, (uintptr_t)zone, (uintptr_t)ptr, size, 0);
 
 	if (malloc_logger) {
 		malloc_logger(MALLOC_LOG_TYPE_DEALLOCATE | MALLOC_LOG_TYPE_HAS_ZONE, (uintptr_t)zone, (uintptr_t)ptr, 0, 0, 0);
@@ -1600,27 +1476,6 @@
 
 	MALLOC_TRACE(TRACE_memalign | DBG_FUNC_END, (uintptr_t)zone, alignment, size, (uintptr_t)ptr);
 	return ptr;
-}
-
-boolean_t
-malloc_zone_claimed_address(malloc_zone_t *zone, void *ptr)
-{
-	if (!ptr) {
-		// NULL is not a member of any zone.
-		return false;
-	}
-
-	if (malloc_check_start && (malloc_check_counter++ >= malloc_check_start)) {
-		internal_check();
-	}
-
-	if (zone->version < 10 || !zone->claimed_address) {
-		// For zones that have not implemented claimed_address, we always have
-		// to return true to avoid a false negative.
-		return true;
-	}
-
-	return zone->claimed_address(zone, ptr);
 }
 
 /*********	Functions for zone implementors	************/
@@ -1678,7 +1533,7 @@
 		return;
 	}
 	MALLOC_UNLOCK();
-	malloc_report(ASL_LEVEL_ERR, "*** malloc_zone_unregister() failed for %p\n", z);
+	malloc_printf("*** malloc_zone_unregister() failed for %p\n", z);
 }
 
 void
@@ -1710,6 +1565,53 @@
 	return zone->zone_name;
 }
 
+/*
+ * XXX malloc_printf now uses _simple_*printf.  It only deals with a
+ * subset of printf format specifiers, but it doesn't call malloc.
+ */
+
+__attribute__((visibility("hidden"))) void
+_malloc_vprintf(int flags, const char *format, va_list ap)
+{
+	_SIMPLE_STRING b;
+
+	if (_malloc_no_asl_log || (flags & MALLOC_PRINTF_NOLOG) || (b = _simple_salloc()) == NULL) {
+		if (!(flags & MALLOC_PRINTF_NOPREFIX)) {
+			void *self = _os_tsd_get_direct(__TSD_THREAD_SELF);
+			_simple_dprintf(malloc_debug_file, "%s(%d,%p) malloc: ", getprogname(), getpid(), self);
+		}
+		_simple_vdprintf(malloc_debug_file, format, ap);
+		return;
+	}
+	if (!(flags & MALLOC_PRINTF_NOPREFIX)) {
+		void *self = _os_tsd_get_direct(__TSD_THREAD_SELF);
+		_simple_sprintf(b, "%s(%d,%p) malloc: ", getprogname(), getpid(), self);
+	}
+	_simple_vsprintf(b, format, ap);
+	_simple_put(b, malloc_debug_file);
+	_simple_asl_log(flags & MALLOC_PRINTF_LEVEL_MASK, Malloc_Facility, _simple_string(b));
+	_simple_sfree(b);
+}
+
+__attribute__((visibility("hidden"))) void
+_malloc_printf(int flags, const char *format, ...)
+{
+	va_list ap;
+
+	va_start(ap, format);
+	_malloc_vprintf(flags, format, ap);
+	va_end(ap);
+}
+
+void
+malloc_printf(const char *format, ...)
+{
+	va_list ap;
+
+	va_start(ap, format);
+	_malloc_vprintf(ASL_LEVEL_ERR, format, ap);
+	va_end(ap);
+}
 
 /*********	Generic ANSI callouts	************/
 
@@ -1743,15 +1645,23 @@
 	if (!ptr) {
 		return;
 	}
-
 	zone = find_registered_zone(ptr, &size);
 	if (!zone) {
-		int flags = MALLOC_REPORT_DEBUG | MALLOC_REPORT_NOLOG;
+		malloc_printf(
+				"*** error for object %p: pointer being freed was not allocated\n"
+				"*** set a breakpoint in malloc_error_break to debug\n",
+				ptr);
+		malloc_error_break();
 		if ((malloc_debug_flags & (MALLOC_ABORT_ON_CORRUPTION | MALLOC_ABORT_ON_ERROR))) {
-			flags = MALLOC_REPORT_CRASH | MALLOC_REPORT_NOLOG;
-		}
-		malloc_report(flags,
-				"*** error for object %p: pointer being freed was not allocated\n", ptr);
+			_SIMPLE_STRING b = _simple_salloc();
+			if (b) {
+				_simple_sprintf(b, "*** error for object %p: pointer being freed was not allocated\n", ptr);
+				_os_set_crash_log_message_dynamic(_simple_string(b));
+			} else {
+				_os_set_crash_log_message("*** error: pointer being freed was not allocated\n");
+			}
+			abort();
+		}
 	} else if (zone->version >= 6 && zone->free_definite_size) {
 		malloc_zone_free_definite_size(zone, ptr, size);
 	} else {
@@ -1780,16 +1690,25 @@
 	} else {
 		zone = find_registered_zone(old_ptr, NULL);
 		if (!zone) {
-			int flags = MALLOC_REPORT_DEBUG | MALLOC_REPORT_NOLOG;
-			if (malloc_debug_flags & (MALLOC_ABORT_ON_CORRUPTION | MALLOC_ABORT_ON_ERROR)) {
-				flags = MALLOC_REPORT_CRASH | MALLOC_REPORT_NOLOG;
+			malloc_printf(
+					"*** error for object %p: pointer being realloc'd was not allocated\n"
+					"*** set a breakpoint in malloc_error_break to debug\n",
+					old_ptr);
+			malloc_error_break();
+			if ((malloc_debug_flags & (MALLOC_ABORT_ON_CORRUPTION | MALLOC_ABORT_ON_ERROR))) {
+				_SIMPLE_STRING b = _simple_salloc();
+				if (b) {
+					_simple_sprintf(b, "*** error for object %p: pointer being realloc'd was not allocated\n", old_ptr);
+					_os_set_crash_log_message_dynamic(_simple_string(b));
+				} else {
+					_os_set_crash_log_message("*** error: pointer being realloc'd was not allocated\n");
+				}
+				abort();
 			}
-			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);
 		}
 	}
-
 	if (retval == NULL) {
 		errno = ENOMEM;
 	} else if (new_size == 0) {
@@ -1876,46 +1795,6 @@
 	}
 }
 
-boolean_t
-malloc_claimed_address(void *ptr)
-{
-	// We need to check with each registered zone whether it claims "ptr".
-	// Use logic similar to that in find_registered_zone().
-	if (malloc_num_zones == 0) {
-		return false;
-	}
-
-	// Start with the lite zone, if it's in use.
-	if (lite_zone && malloc_zone_claimed_address(lite_zone, ptr)) {
-		return true;
-	}
-
-	// Next, try the default zone, which is always present.
-	if (malloc_zone_claimed_address(malloc_zones[0], ptr)) {
-		return true;
-	}
-
-	// Try all the other zones. Increment the FRZ barrier so that we can
-	// walk the zones array without a lock (see find_registered_zone() for
-	// the details).
-	int32_t volatile *pFRZCounter = pFRZCounterLive;
-	OSAtomicIncrement32Barrier(pFRZCounter);
-
-	int32_t limit = *(int32_t volatile *)&malloc_num_zones;
-	malloc_zone_t **zones = &malloc_zones[1];
-	boolean_t result = false;
-	for (unsigned index = 1; index < limit; ++index, ++zones) {
-		malloc_zone_t *zone = *zones;
-		if (malloc_zone_claimed_address(zone, ptr)) {
-			result = true;
-			break;
-		}
-	}
-
-	OSAtomicDecrement32Barrier(pFRZCounter);
-	return result;
-}
-
 void *
 reallocarray(void * in_ptr, size_t nmemb, size_t size){
 	size_t alloc_size;
@@ -2077,23 +1956,17 @@
 	boolean_t msl_vm = (event & MEMORYSTATUS_ENABLE_MSL_VM);
 	boolean_t msl_lite = (event & MEMORYSTATUS_ENABLE_MSL_LITE);
 	
-	// The following ensures it's not possible to enable two different modes
+	// The following always checks to make it's not possible to enable two different modes
 	// For instance this would not be allowed:
 	// Enable lite
 	// Disable
 	// Enable full
 	
+	// Currently there is no separation of malloc/vm in lite mode
 	if (msl_lite) {
-		if (msl_vm && msl_malloc) {
-			if (msl_type_enabled_at_runtime == stack_logging_mode_none || msl_type_enabled_at_runtime == stack_logging_mode_lite) {
-				msl_type_enabled_at_runtime = stack_logging_mode_lite;
-				turn_on_stack_logging(stack_logging_mode_lite);
-			}
-		} else if (msl_vm) {
-			if (msl_type_enabled_at_runtime == stack_logging_mode_none || msl_type_enabled_at_runtime == stack_logging_mode_vmlite) {
-				msl_type_enabled_at_runtime = stack_logging_mode_vmlite;
-				turn_on_stack_logging(stack_logging_mode_vmlite);
-			}
+		if (msl_type_enabled_at_runtime == stack_logging_mode_none || msl_type_enabled_at_runtime == stack_logging_mode_lite) {
+			msl_type_enabled_at_runtime = stack_logging_mode_lite;
+			turn_on_stack_logging(stack_logging_mode_lite);
 		}
 		return;
 	} else if (msl_malloc && msl_vm) {
@@ -2145,7 +2018,7 @@
 		// Only try to clean up stack log data if it was enabled through a proc limit warning.
 		// User initiated stack logging should proceed unimpeded.
 		if (warn_mode_entered) {
-			malloc_report(ASL_LEVEL_INFO, "malloc_memory_event_handler: stopping stack-logging\n");
+			malloc_printf("malloc_memory_event_handler: stopping stack-logging\n");
 			turn_off_stack_logging();
 			__malloc_lock_stack_logging();
 			__delete_uniquing_table_memory_while_locked();
@@ -2161,7 +2034,7 @@
 		!(event & NOTE_MEMORYSTATUS_PRESSURE_CRITICAL) &&
 		!warn_mode_entered && !warn_mode_disable_retries &&
 		is_eligible_for_lite_mode_mre_handling()) {
-		malloc_report(ASL_LEVEL_INFO, "malloc_memory_event_handler: approaching memory limit. Starting stack-logging.\n");
+		malloc_printf("malloc_memory_event_handler: approaching memory limit. Starting stack-logging.\n");
 		if (turn_on_stack_logging(stack_logging_mode_lite)) {
 			warn_mode_entered = true;
 			
@@ -2290,14 +2163,14 @@
 	err = reader(task, remote_malloc_zones, sizeof(void *), (void **)&zones_address_ref);
 	// printf("Read malloc_zones[%p]=%p\n", remote_malloc_zones, *zones_address_ref);
 	if (err) {
-		malloc_report(ASL_LEVEL_ERR, "*** malloc_get_all_zones: error reading zones_address at %p\n", (void *)remote_malloc_zones);
+		malloc_printf("*** malloc_get_all_zones: error reading zones_address at %p\n", (unsigned)remote_malloc_zones);
 		return err;
 	}
 	zones_address = *zones_address_ref;
 	// printf("Reading num_zones at address %p\n", remote_malloc_num_zones);
 	err = reader(task, remote_malloc_num_zones, sizeof(unsigned), (void **)&num_zones_ref);
 	if (err) {
-		malloc_report(ASL_LEVEL_ERR, "*** malloc_get_all_zones: error reading num_zones at %p\n", (void *)remote_malloc_num_zones);
+		malloc_printf("*** malloc_get_all_zones: error reading num_zones at %p\n", (unsigned)remote_malloc_num_zones);
 		return err;
 	}
 	num_zones = *num_zones_ref;
@@ -2306,7 +2179,7 @@
 	// printf("malloc_get_all_zones succesfully found %d zones\n", num_zones);
 	err = reader(task, zones_address, sizeof(malloc_zone_t *) * num_zones, (void **)addresses);
 	if (err) {
-		malloc_report(ASL_LEVEL_ERR, "*** malloc_get_all_zones: error reading zones at %p\n", &zones_address);
+		malloc_printf("*** malloc_get_all_zones: error reading zones at %p\n", &zones_address);
 		return err;
 	}
 	// printf("malloc_get_all_zones succesfully read %d zones\n", num_zones);
@@ -2398,29 +2271,20 @@
 
 /*********	Misc other entry points	************/
 
-void
-mag_set_thread_index(unsigned int index)
-{
-	_os_cpu_number_override = index;
-#if CONFIG_NANOZONE
-	nano_common_cpu_number_override_set();
-#endif // CONFIG_NANOZONE
-}
-
 static void
 DefaultMallocError(int x)
 {
 #if USE_SLEEP_RATHER_THAN_ABORT
-	malloc_report(ASL_LEVEL_ERR, "*** error %d\n", x);
+	malloc_printf("*** error %d\n", x);
 	sleep(3600);
 #else
 	_SIMPLE_STRING b = _simple_salloc();
 	if (b) {
 		_simple_sprintf(b, "*** error %d", x);
-		malloc_report(MALLOC_REPORT_NOLOG, "%s\n", _simple_string(b));
+		malloc_printf("%s\n", _simple_string(b));
 		_os_set_crash_log_message_dynamic(_simple_string(b));
 	} else {
-		malloc_report(MALLOC_REPORT_NOLOG, "*** error %d\n", x);
+		_malloc_printf(MALLOC_PRINTF_NOLOG, "*** error %d", x);
 		_os_set_crash_log_message("*** DefaultMallocError called");
 	}
 	abort();
@@ -2494,12 +2358,8 @@
 _malloc_fork_child(void)
 {
 #if CONFIG_NANOZONE
-	if (_malloc_initialize_pred) {
-		if (_malloc_engaged_nano == NANO_V2) {
-			nanov2_forked_zone((nanozonev2_t *)inline_malloc_default_zone());
-		} else if (_malloc_engaged_nano == NANO_V1) {
-			nano_forked_zone((nanozone_t *)inline_malloc_default_zone());
-		}
+	if (_malloc_initialize_pred && _malloc_engaged_nano) {
+		nano_forked_zone((nanozone_t *)inline_malloc_default_zone());
 	}
 #endif
 	return _malloc_reinit_lock_all(&__stack_logging_fork_child);
@@ -2608,7 +2468,7 @@
 	static boolean_t warned = 0;
 	if (!warned) {
 #if PHASE_OUT_OLD_MALLOC
-		malloc_report(ASL_LEVEL_ERR, "*** OBSOLETE: set_malloc_singlethreaded(%d)\n", single);
+		malloc_printf("*** OBSOLETE: set_malloc_singlethreaded(%d)\n", single);
 #endif
 		warned = 1;
 	}
@@ -2619,7 +2479,7 @@
 {
 	static boolean_t warned = 0;
 	if (!warned) {
-		malloc_report(ASL_LEVEL_ERR, "*** OBSOLETE: malloc_singlethreaded()\n");
+		malloc_printf("*** OBSOLETE: malloc_singlethreaded()\n");
 		warned = 1;
 	}
 }
@@ -2627,7 +2487,7 @@
 int
 malloc_debug(int level)
 {
-	malloc_report(ASL_LEVEL_ERR, "*** OBSOLETE: malloc_debug()\n");
+	malloc_printf("*** OBSOLETE: malloc_debug()\n");
 	return 0;
 }