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Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001/*
2 * mm/kmemleak.c
3 *
4 * Copyright (C) 2008 ARM Limited
5 * Written by Catalin Marinas <catalin.marinas@arm.com>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 *
20 *
21 * For more information on the algorithm and kmemleak usage, please see
22 * Documentation/kmemleak.txt.
23 *
24 * Notes on locking
25 * ----------------
26 *
27 * The following locks and mutexes are used by kmemleak:
28 *
29 * - kmemleak_lock (rwlock): protects the object_list modifications and
30 * accesses to the object_tree_root. The object_list is the main list
31 * holding the metadata (struct kmemleak_object) for the allocated memory
Michel Lespinasse85d3a312012-10-08 16:31:27 -070032 * blocks. The object_tree_root is a red black tree used to look-up
Catalin Marinas3c7b4e62009-06-11 13:22:39 +010033 * metadata based on a pointer to the corresponding memory block. The
34 * kmemleak_object structures are added to the object_list and
35 * object_tree_root in the create_object() function called from the
36 * kmemleak_alloc() callback and removed in delete_object() called from the
37 * kmemleak_free() callback
38 * - kmemleak_object.lock (spinlock): protects a kmemleak_object. Accesses to
39 * the metadata (e.g. count) are protected by this lock. Note that some
40 * members of this structure may be protected by other means (atomic or
41 * kmemleak_lock). This lock is also held when scanning the corresponding
42 * memory block to avoid the kernel freeing it via the kmemleak_free()
43 * callback. This is less heavyweight than holding a global lock like
44 * kmemleak_lock during scanning
45 * - scan_mutex (mutex): ensures that only one thread may scan the memory for
46 * unreferenced objects at a time. The gray_list contains the objects which
47 * are already referenced or marked as false positives and need to be
48 * scanned. This list is only modified during a scanning episode when the
49 * scan_mutex is held. At the end of a scan, the gray_list is always empty.
50 * Note that the kmemleak_object.use_count is incremented when an object is
Catalin Marinas4698c1f2009-06-26 17:38:27 +010051 * added to the gray_list and therefore cannot be freed. This mutex also
52 * prevents multiple users of the "kmemleak" debugfs file together with
53 * modifications to the memory scanning parameters including the scan_thread
54 * pointer
Catalin Marinas3c7b4e62009-06-11 13:22:39 +010055 *
Catalin Marinas93ada572015-06-24 16:58:37 -070056 * Locks and mutexes are acquired/nested in the following order:
Catalin Marinas9d5a4c72015-06-24 16:58:34 -070057 *
Catalin Marinas93ada572015-06-24 16:58:37 -070058 * scan_mutex [-> object->lock] -> kmemleak_lock -> other_object->lock (SINGLE_DEPTH_NESTING)
59 *
60 * No kmemleak_lock and object->lock nesting is allowed outside scan_mutex
61 * regions.
Catalin Marinas9d5a4c72015-06-24 16:58:34 -070062 *
Catalin Marinas3c7b4e62009-06-11 13:22:39 +010063 * The kmemleak_object structures have a use_count incremented or decremented
64 * using the get_object()/put_object() functions. When the use_count becomes
65 * 0, this count can no longer be incremented and put_object() schedules the
66 * kmemleak_object freeing via an RCU callback. All calls to the get_object()
67 * function must be protected by rcu_read_lock() to avoid accessing a freed
68 * structure.
69 */
70
Joe Perchesae281062009-06-23 14:40:26 +010071#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
72
Catalin Marinas3c7b4e62009-06-11 13:22:39 +010073#include <linux/init.h>
74#include <linux/kernel.h>
75#include <linux/list.h>
76#include <linux/sched.h>
77#include <linux/jiffies.h>
78#include <linux/delay.h>
Paul Gortmakerb95f1b312011-10-16 02:01:52 -040079#include <linux/export.h>
Catalin Marinas3c7b4e62009-06-11 13:22:39 +010080#include <linux/kthread.h>
Michel Lespinasse85d3a312012-10-08 16:31:27 -070081#include <linux/rbtree.h>
Catalin Marinas3c7b4e62009-06-11 13:22:39 +010082#include <linux/fs.h>
83#include <linux/debugfs.h>
84#include <linux/seq_file.h>
85#include <linux/cpumask.h>
86#include <linux/spinlock.h>
87#include <linux/mutex.h>
88#include <linux/rcupdate.h>
89#include <linux/stacktrace.h>
90#include <linux/cache.h>
91#include <linux/percpu.h>
92#include <linux/hardirq.h>
93#include <linux/mmzone.h>
94#include <linux/slab.h>
95#include <linux/thread_info.h>
96#include <linux/err.h>
97#include <linux/uaccess.h>
98#include <linux/string.h>
99#include <linux/nodemask.h>
100#include <linux/mm.h>
Catalin Marinas179a8102009-09-07 10:14:42 +0100101#include <linux/workqueue.h>
Catalin Marinas04609ccc2009-10-28 13:33:12 +0000102#include <linux/crc32.h>
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100103
104#include <asm/sections.h>
105#include <asm/processor.h>
Arun Sharma600634972011-07-26 16:09:06 -0700106#include <linux/atomic.h>
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100107
Andrey Ryabinine79ed2f2015-02-13 14:39:49 -0800108#include <linux/kasan.h>
Pekka Enberg8e019362009-08-27 14:50:00 +0100109#include <linux/kmemcheck.h>
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100110#include <linux/kmemleak.h>
Laura Abbott029aeff2011-11-15 23:49:09 +0000111#include <linux/memory_hotplug.h>
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100112
113/*
114 * Kmemleak configuration and common defines.
115 */
116#define MAX_TRACE 16 /* stack trace length */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100117#define MSECS_MIN_AGE 5000 /* minimum object age for reporting */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100118#define SECS_FIRST_SCAN 60 /* delay before the first scan */
119#define SECS_SCAN_WAIT 600 /* subsequent auto scanning delay */
Catalin Marinasaf986032009-08-27 14:29:12 +0100120#define MAX_SCAN_SIZE 4096 /* maximum size of a scanned block */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100121
122#define BYTES_PER_POINTER sizeof(void *)
123
Catalin Marinas216c04b2009-06-17 18:29:02 +0100124/* GFP bitmask for kmemleak internal allocations */
Vladimir Davydov8f4fc072015-05-14 15:16:55 -0700125#define gfp_kmemleak_mask(gfp) (((gfp) & (GFP_KERNEL | GFP_ATOMIC | \
126 __GFP_NOACCOUNT)) | \
Catalin Marinas6ae4bd12011-01-27 10:30:26 +0000127 __GFP_NORETRY | __GFP_NOMEMALLOC | \
128 __GFP_NOWARN)
Catalin Marinas216c04b2009-06-17 18:29:02 +0100129
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100130/* scanning area inside a memory block */
131struct kmemleak_scan_area {
132 struct hlist_node node;
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000133 unsigned long start;
134 size_t size;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100135};
136
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -0700137#define KMEMLEAK_GREY 0
138#define KMEMLEAK_BLACK -1
139
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100140/*
141 * Structure holding the metadata for each allocated memory block.
142 * Modifications to such objects should be made while holding the
143 * object->lock. Insertions or deletions from object_list, gray_list or
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700144 * rb_node are already protected by the corresponding locks or mutex (see
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100145 * the notes on locking above). These objects are reference-counted
146 * (use_count) and freed using the RCU mechanism.
147 */
148struct kmemleak_object {
149 spinlock_t lock;
150 unsigned long flags; /* object status flags */
151 struct list_head object_list;
152 struct list_head gray_list;
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700153 struct rb_node rb_node;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100154 struct rcu_head rcu; /* object_list lockless traversal */
155 /* object usage count; object freed when use_count == 0 */
156 atomic_t use_count;
157 unsigned long pointer;
158 size_t size;
159 /* minimum number of a pointers found before it is considered leak */
160 int min_count;
161 /* the total number of pointers found pointing to this object */
162 int count;
Catalin Marinas04609ccc2009-10-28 13:33:12 +0000163 /* checksum for detecting modified objects */
164 u32 checksum;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100165 /* memory ranges to be scanned inside an object (empty for all) */
166 struct hlist_head area_list;
167 unsigned long trace[MAX_TRACE];
168 unsigned int trace_len;
169 unsigned long jiffies; /* creation timestamp */
170 pid_t pid; /* pid of the current task */
171 char comm[TASK_COMM_LEN]; /* executable name */
172};
173
174/* flag representing the memory block allocation status */
175#define OBJECT_ALLOCATED (1 << 0)
176/* flag set after the first reporting of an unreference object */
177#define OBJECT_REPORTED (1 << 1)
178/* flag set to not scan the object */
179#define OBJECT_NO_SCAN (1 << 2)
180
Sergey Senozhatsky0494e082009-08-27 14:29:18 +0100181/* number of bytes to print per line; must be 16 or 32 */
182#define HEX_ROW_SIZE 16
183/* number of bytes to print at a time (1, 2, 4, 8) */
184#define HEX_GROUP_SIZE 1
185/* include ASCII after the hex output */
186#define HEX_ASCII 1
187/* max number of lines to be printed */
188#define HEX_MAX_LINES 2
189
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100190/* the list of all allocated objects */
191static LIST_HEAD(object_list);
192/* the list of gray-colored objects (see color_gray comment below) */
193static LIST_HEAD(gray_list);
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700194/* search tree for object boundaries */
195static struct rb_root object_tree_root = RB_ROOT;
196/* rw_lock protecting the access to object_list and object_tree_root */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100197static DEFINE_RWLOCK(kmemleak_lock);
198
199/* allocation caches for kmemleak internal data */
200static struct kmem_cache *object_cache;
201static struct kmem_cache *scan_area_cache;
202
203/* set if tracing memory operations is enabled */
Li Zefan8910ae82014-04-03 14:46:29 -0700204static int kmemleak_enabled;
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -0700205/* same as above but only for the kmemleak_free() callback */
206static int kmemleak_free_enabled;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100207/* set in the late_initcall if there were no errors */
Li Zefan8910ae82014-04-03 14:46:29 -0700208static int kmemleak_initialized;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100209/* enables or disables early logging of the memory operations */
Li Zefan8910ae82014-04-03 14:46:29 -0700210static int kmemleak_early_log = 1;
Catalin Marinas5f790202011-09-28 12:17:03 +0100211/* set if a kmemleak warning was issued */
Li Zefan8910ae82014-04-03 14:46:29 -0700212static int kmemleak_warning;
Catalin Marinas5f790202011-09-28 12:17:03 +0100213/* set if a fatal kmemleak error has occurred */
Li Zefan8910ae82014-04-03 14:46:29 -0700214static int kmemleak_error;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100215
216/* minimum and maximum address that may be valid pointers */
217static unsigned long min_addr = ULONG_MAX;
218static unsigned long max_addr;
219
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100220static struct task_struct *scan_thread;
Catalin Marinasacf49682009-06-26 17:38:29 +0100221/* used to avoid reporting of recently allocated objects */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100222static unsigned long jiffies_min_age;
Catalin Marinasacf49682009-06-26 17:38:29 +0100223static unsigned long jiffies_last_scan;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100224/* delay between automatic memory scannings */
225static signed long jiffies_scan_wait;
226/* enables or disables the task stacks scanning */
Catalin Marinase0a2a162009-06-26 17:38:25 +0100227static int kmemleak_stack_scan = 1;
Catalin Marinas4698c1f2009-06-26 17:38:27 +0100228/* protects the memory scanning, parameters and debug/kmemleak file access */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100229static DEFINE_MUTEX(scan_mutex);
Jason Baronab0155a2010-07-19 11:54:17 +0100230/* setting kmemleak=on, will set this var, skipping the disable */
231static int kmemleak_skip_disable;
Li Zefandc9b3f42014-04-03 14:46:26 -0700232/* If there are leaks that can be reported */
233static bool kmemleak_found_leaks;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100234
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100235/*
Catalin Marinas20301172009-06-17 18:29:04 +0100236 * Early object allocation/freeing logging. Kmemleak is initialized after the
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100237 * kernel allocator. However, both the kernel allocator and kmemleak may
Catalin Marinas20301172009-06-17 18:29:04 +0100238 * allocate memory blocks which need to be tracked. Kmemleak defines an
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100239 * arbitrary buffer to hold the allocation/freeing information before it is
240 * fully initialized.
241 */
242
243/* kmemleak operation type for early logging */
244enum {
245 KMEMLEAK_ALLOC,
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100246 KMEMLEAK_ALLOC_PERCPU,
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100247 KMEMLEAK_FREE,
Catalin Marinas53238a62009-07-07 10:33:00 +0100248 KMEMLEAK_FREE_PART,
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100249 KMEMLEAK_FREE_PERCPU,
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100250 KMEMLEAK_NOT_LEAK,
251 KMEMLEAK_IGNORE,
252 KMEMLEAK_SCAN_AREA,
253 KMEMLEAK_NO_SCAN
254};
255
256/*
257 * Structure holding the information passed to kmemleak callbacks during the
258 * early logging.
259 */
260struct early_log {
261 int op_type; /* kmemleak operation type */
262 const void *ptr; /* allocated/freed memory block */
263 size_t size; /* memory block size */
264 int min_count; /* minimum reference count */
Catalin Marinasfd678962009-08-27 14:29:17 +0100265 unsigned long trace[MAX_TRACE]; /* stack trace */
266 unsigned int trace_len; /* stack trace length */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100267};
268
269/* early logging buffer and current position */
Catalin Marinasa6186d82009-08-27 14:29:16 +0100270static struct early_log
271 early_log[CONFIG_DEBUG_KMEMLEAK_EARLY_LOG_SIZE] __initdata;
272static int crt_early_log __initdata;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100273
274static void kmemleak_disable(void);
275
276/*
277 * Print a warning and dump the stack trace.
278 */
Catalin Marinas5f790202011-09-28 12:17:03 +0100279#define kmemleak_warn(x...) do { \
280 pr_warning(x); \
281 dump_stack(); \
Li Zefan8910ae82014-04-03 14:46:29 -0700282 kmemleak_warning = 1; \
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100283} while (0)
284
285/*
Lucas De Marchi25985ed2011-03-30 22:57:33 -0300286 * Macro invoked when a serious kmemleak condition occurred and cannot be
Catalin Marinas20301172009-06-17 18:29:04 +0100287 * recovered from. Kmemleak will be disabled and further allocation/freeing
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100288 * tracing no longer available.
289 */
Catalin Marinas000814f2009-06-17 18:29:03 +0100290#define kmemleak_stop(x...) do { \
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100291 kmemleak_warn(x); \
292 kmemleak_disable(); \
293} while (0)
294
295/*
Sergey Senozhatsky0494e082009-08-27 14:29:18 +0100296 * Printing of the objects hex dump to the seq file. The number of lines to be
297 * printed is limited to HEX_MAX_LINES to prevent seq file spamming. The
298 * actual number of printed bytes depends on HEX_ROW_SIZE. It must be called
299 * with the object->lock held.
300 */
301static void hex_dump_object(struct seq_file *seq,
302 struct kmemleak_object *object)
303{
304 const u8 *ptr = (const u8 *)object->pointer;
305 int i, len, remaining;
306 unsigned char linebuf[HEX_ROW_SIZE * 5];
307
308 /* limit the number of lines to HEX_MAX_LINES */
309 remaining = len =
310 min(object->size, (size_t)(HEX_MAX_LINES * HEX_ROW_SIZE));
311
312 seq_printf(seq, " hex dump (first %d bytes):\n", len);
313 for (i = 0; i < len; i += HEX_ROW_SIZE) {
314 int linelen = min(remaining, HEX_ROW_SIZE);
315
316 remaining -= HEX_ROW_SIZE;
317 hex_dump_to_buffer(ptr + i, linelen, HEX_ROW_SIZE,
318 HEX_GROUP_SIZE, linebuf, sizeof(linebuf),
319 HEX_ASCII);
320 seq_printf(seq, " %s\n", linebuf);
321 }
322}
323
324/*
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100325 * Object colors, encoded with count and min_count:
326 * - white - orphan object, not enough references to it (count < min_count)
327 * - gray - not orphan, not marked as false positive (min_count == 0) or
328 * sufficient references to it (count >= min_count)
329 * - black - ignore, it doesn't contain references (e.g. text section)
330 * (min_count == -1). No function defined for this color.
331 * Newly created objects don't have any color assigned (object->count == -1)
332 * before the next memory scan when they become white.
333 */
Luis R. Rodriguez4a558dd2009-09-08 16:34:50 +0100334static bool color_white(const struct kmemleak_object *object)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100335{
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -0700336 return object->count != KMEMLEAK_BLACK &&
337 object->count < object->min_count;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100338}
339
Luis R. Rodriguez4a558dd2009-09-08 16:34:50 +0100340static bool color_gray(const struct kmemleak_object *object)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100341{
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -0700342 return object->min_count != KMEMLEAK_BLACK &&
343 object->count >= object->min_count;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100344}
345
346/*
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100347 * Objects are considered unreferenced only if their color is white, they have
348 * not be deleted and have a minimum age to avoid false positives caused by
349 * pointers temporarily stored in CPU registers.
350 */
Luis R. Rodriguez4a558dd2009-09-08 16:34:50 +0100351static bool unreferenced_object(struct kmemleak_object *object)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100352{
Catalin Marinas04609ccc2009-10-28 13:33:12 +0000353 return (color_white(object) && object->flags & OBJECT_ALLOCATED) &&
Catalin Marinasacf49682009-06-26 17:38:29 +0100354 time_before_eq(object->jiffies + jiffies_min_age,
355 jiffies_last_scan);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100356}
357
358/*
Catalin Marinasbab4a342009-06-26 17:38:26 +0100359 * Printing of the unreferenced objects information to the seq file. The
360 * print_unreferenced function must be called with the object->lock held.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100361 */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100362static void print_unreferenced(struct seq_file *seq,
363 struct kmemleak_object *object)
364{
365 int i;
Catalin Marinasfefdd332009-10-28 13:33:12 +0000366 unsigned int msecs_age = jiffies_to_msecs(jiffies - object->jiffies);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100367
Catalin Marinasbab4a342009-06-26 17:38:26 +0100368 seq_printf(seq, "unreferenced object 0x%08lx (size %zu):\n",
369 object->pointer, object->size);
Catalin Marinasfefdd332009-10-28 13:33:12 +0000370 seq_printf(seq, " comm \"%s\", pid %d, jiffies %lu (age %d.%03ds)\n",
371 object->comm, object->pid, object->jiffies,
372 msecs_age / 1000, msecs_age % 1000);
Sergey Senozhatsky0494e082009-08-27 14:29:18 +0100373 hex_dump_object(seq, object);
Catalin Marinasbab4a342009-06-26 17:38:26 +0100374 seq_printf(seq, " backtrace:\n");
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100375
376 for (i = 0; i < object->trace_len; i++) {
377 void *ptr = (void *)object->trace[i];
Catalin Marinasbab4a342009-06-26 17:38:26 +0100378 seq_printf(seq, " [<%p>] %pS\n", ptr, ptr);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100379 }
380}
381
382/*
383 * Print the kmemleak_object information. This function is used mainly for
384 * debugging special cases when kmemleak operations. It must be called with
385 * the object->lock held.
386 */
387static void dump_object_info(struct kmemleak_object *object)
388{
389 struct stack_trace trace;
390
391 trace.nr_entries = object->trace_len;
392 trace.entries = object->trace;
393
Joe Perchesae281062009-06-23 14:40:26 +0100394 pr_notice("Object 0x%08lx (size %zu):\n",
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700395 object->pointer, object->size);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100396 pr_notice(" comm \"%s\", pid %d, jiffies %lu\n",
397 object->comm, object->pid, object->jiffies);
398 pr_notice(" min_count = %d\n", object->min_count);
399 pr_notice(" count = %d\n", object->count);
Catalin Marinas189d84e2009-08-27 14:29:15 +0100400 pr_notice(" flags = 0x%lx\n", object->flags);
Jianpeng Maaae0ad72014-06-06 14:38:16 -0700401 pr_notice(" checksum = %u\n", object->checksum);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100402 pr_notice(" backtrace:\n");
403 print_stack_trace(&trace, 4);
404}
405
406/*
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700407 * Look-up a memory block metadata (kmemleak_object) in the object search
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100408 * tree based on a pointer value. If alias is 0, only values pointing to the
409 * beginning of the memory block are allowed. The kmemleak_lock must be held
410 * when calling this function.
411 */
412static struct kmemleak_object *lookup_object(unsigned long ptr, int alias)
413{
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700414 struct rb_node *rb = object_tree_root.rb_node;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100415
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700416 while (rb) {
417 struct kmemleak_object *object =
418 rb_entry(rb, struct kmemleak_object, rb_node);
419 if (ptr < object->pointer)
420 rb = object->rb_node.rb_left;
421 else if (object->pointer + object->size <= ptr)
422 rb = object->rb_node.rb_right;
423 else if (object->pointer == ptr || alias)
424 return object;
425 else {
Catalin Marinas5f790202011-09-28 12:17:03 +0100426 kmemleak_warn("Found object by alias at 0x%08lx\n",
427 ptr);
Catalin Marinasa7686a42010-07-19 11:54:16 +0100428 dump_object_info(object);
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700429 break;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100430 }
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700431 }
432 return NULL;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100433}
434
435/*
436 * Increment the object use_count. Return 1 if successful or 0 otherwise. Note
437 * that once an object's use_count reached 0, the RCU freeing was already
438 * registered and the object should no longer be used. This function must be
439 * called under the protection of rcu_read_lock().
440 */
441static int get_object(struct kmemleak_object *object)
442{
443 return atomic_inc_not_zero(&object->use_count);
444}
445
446/*
447 * RCU callback to free a kmemleak_object.
448 */
449static void free_object_rcu(struct rcu_head *rcu)
450{
Sasha Levinb67bfe02013-02-27 17:06:00 -0800451 struct hlist_node *tmp;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100452 struct kmemleak_scan_area *area;
453 struct kmemleak_object *object =
454 container_of(rcu, struct kmemleak_object, rcu);
455
456 /*
457 * Once use_count is 0 (guaranteed by put_object), there is no other
458 * code accessing this object, hence no need for locking.
459 */
Sasha Levinb67bfe02013-02-27 17:06:00 -0800460 hlist_for_each_entry_safe(area, tmp, &object->area_list, node) {
461 hlist_del(&area->node);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100462 kmem_cache_free(scan_area_cache, area);
463 }
464 kmem_cache_free(object_cache, object);
465}
466
467/*
468 * Decrement the object use_count. Once the count is 0, free the object using
469 * an RCU callback. Since put_object() may be called via the kmemleak_free() ->
470 * delete_object() path, the delayed RCU freeing ensures that there is no
471 * recursive call to the kernel allocator. Lock-less RCU object_list traversal
472 * is also possible.
473 */
474static void put_object(struct kmemleak_object *object)
475{
476 if (!atomic_dec_and_test(&object->use_count))
477 return;
478
479 /* should only get here after delete_object was called */
480 WARN_ON(object->flags & OBJECT_ALLOCATED);
481
482 call_rcu(&object->rcu, free_object_rcu);
483}
484
485/*
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700486 * Look up an object in the object search tree and increase its use_count.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100487 */
488static struct kmemleak_object *find_and_get_object(unsigned long ptr, int alias)
489{
490 unsigned long flags;
491 struct kmemleak_object *object = NULL;
492
493 rcu_read_lock();
494 read_lock_irqsave(&kmemleak_lock, flags);
Catalin Marinas93ada572015-06-24 16:58:37 -0700495 object = lookup_object(ptr, alias);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100496 read_unlock_irqrestore(&kmemleak_lock, flags);
497
498 /* check whether the object is still available */
499 if (object && !get_object(object))
500 object = NULL;
501 rcu_read_unlock();
502
503 return object;
504}
505
506/*
Catalin Marinase781a9a2015-06-24 16:58:29 -0700507 * Look up an object in the object search tree and remove it from both
508 * object_tree_root and object_list. The returned object's use_count should be
509 * at least 1, as initially set by create_object().
510 */
511static struct kmemleak_object *find_and_remove_object(unsigned long ptr, int alias)
512{
513 unsigned long flags;
514 struct kmemleak_object *object;
515
516 write_lock_irqsave(&kmemleak_lock, flags);
517 object = lookup_object(ptr, alias);
518 if (object) {
519 rb_erase(&object->rb_node, &object_tree_root);
520 list_del_rcu(&object->object_list);
521 }
522 write_unlock_irqrestore(&kmemleak_lock, flags);
523
524 return object;
525}
526
527/*
Catalin Marinasfd678962009-08-27 14:29:17 +0100528 * Save stack trace to the given array of MAX_TRACE size.
529 */
530static int __save_stack_trace(unsigned long *trace)
531{
532 struct stack_trace stack_trace;
533
534 stack_trace.max_entries = MAX_TRACE;
535 stack_trace.nr_entries = 0;
536 stack_trace.entries = trace;
537 stack_trace.skip = 2;
538 save_stack_trace(&stack_trace);
539
540 return stack_trace.nr_entries;
541}
542
543/*
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100544 * Create the metadata (struct kmemleak_object) corresponding to an allocated
545 * memory block and add it to the object_list and object_tree_root.
546 */
Catalin Marinasfd678962009-08-27 14:29:17 +0100547static struct kmemleak_object *create_object(unsigned long ptr, size_t size,
548 int min_count, gfp_t gfp)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100549{
550 unsigned long flags;
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700551 struct kmemleak_object *object, *parent;
552 struct rb_node **link, *rb_parent;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100553
Catalin Marinas6ae4bd12011-01-27 10:30:26 +0000554 object = kmem_cache_alloc(object_cache, gfp_kmemleak_mask(gfp));
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100555 if (!object) {
Catalin Marinas6ae4bd12011-01-27 10:30:26 +0000556 pr_warning("Cannot allocate a kmemleak_object structure\n");
557 kmemleak_disable();
Catalin Marinasfd678962009-08-27 14:29:17 +0100558 return NULL;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100559 }
560
561 INIT_LIST_HEAD(&object->object_list);
562 INIT_LIST_HEAD(&object->gray_list);
563 INIT_HLIST_HEAD(&object->area_list);
564 spin_lock_init(&object->lock);
565 atomic_set(&object->use_count, 1);
Catalin Marinas04609ccc2009-10-28 13:33:12 +0000566 object->flags = OBJECT_ALLOCATED;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100567 object->pointer = ptr;
568 object->size = size;
569 object->min_count = min_count;
Catalin Marinas04609ccc2009-10-28 13:33:12 +0000570 object->count = 0; /* white color initially */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100571 object->jiffies = jiffies;
Catalin Marinas04609ccc2009-10-28 13:33:12 +0000572 object->checksum = 0;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100573
574 /* task information */
575 if (in_irq()) {
576 object->pid = 0;
577 strncpy(object->comm, "hardirq", sizeof(object->comm));
578 } else if (in_softirq()) {
579 object->pid = 0;
580 strncpy(object->comm, "softirq", sizeof(object->comm));
581 } else {
582 object->pid = current->pid;
583 /*
584 * There is a small chance of a race with set_task_comm(),
585 * however using get_task_comm() here may cause locking
586 * dependency issues with current->alloc_lock. In the worst
587 * case, the command line is not correct.
588 */
589 strncpy(object->comm, current->comm, sizeof(object->comm));
590 }
591
592 /* kernel backtrace */
Catalin Marinasfd678962009-08-27 14:29:17 +0100593 object->trace_len = __save_stack_trace(object->trace);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100594
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100595 write_lock_irqsave(&kmemleak_lock, flags);
Luis R. Rodriguez0580a182009-09-08 17:32:34 +0100596
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100597 min_addr = min(min_addr, ptr);
598 max_addr = max(max_addr, ptr + size);
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700599 link = &object_tree_root.rb_node;
600 rb_parent = NULL;
601 while (*link) {
602 rb_parent = *link;
603 parent = rb_entry(rb_parent, struct kmemleak_object, rb_node);
604 if (ptr + size <= parent->pointer)
605 link = &parent->rb_node.rb_left;
606 else if (parent->pointer + parent->size <= ptr)
607 link = &parent->rb_node.rb_right;
608 else {
609 kmemleak_stop("Cannot insert 0x%lx into the object "
610 "search tree (overlaps existing)\n",
611 ptr);
Catalin Marinas9d5a4c72015-06-24 16:58:34 -0700612 /*
613 * No need for parent->lock here since "parent" cannot
614 * be freed while the kmemleak_lock is held.
615 */
616 dump_object_info(parent);
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700617 kmem_cache_free(object_cache, object);
Catalin Marinas9d5a4c72015-06-24 16:58:34 -0700618 object = NULL;
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700619 goto out;
620 }
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100621 }
Michel Lespinasse85d3a312012-10-08 16:31:27 -0700622 rb_link_node(&object->rb_node, rb_parent, link);
623 rb_insert_color(&object->rb_node, &object_tree_root);
624
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100625 list_add_tail_rcu(&object->object_list, &object_list);
626out:
627 write_unlock_irqrestore(&kmemleak_lock, flags);
Catalin Marinasfd678962009-08-27 14:29:17 +0100628 return object;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100629}
630
631/*
Catalin Marinase781a9a2015-06-24 16:58:29 -0700632 * Mark the object as not allocated and schedule RCU freeing via put_object().
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100633 */
Catalin Marinas53238a62009-07-07 10:33:00 +0100634static void __delete_object(struct kmemleak_object *object)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100635{
636 unsigned long flags;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100637
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100638 WARN_ON(!(object->flags & OBJECT_ALLOCATED));
Catalin Marinase781a9a2015-06-24 16:58:29 -0700639 WARN_ON(atomic_read(&object->use_count) < 1);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100640
641 /*
642 * Locking here also ensures that the corresponding memory block
643 * cannot be freed when it is being scanned.
644 */
645 spin_lock_irqsave(&object->lock, flags);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100646 object->flags &= ~OBJECT_ALLOCATED;
647 spin_unlock_irqrestore(&object->lock, flags);
648 put_object(object);
649}
650
651/*
Catalin Marinas53238a62009-07-07 10:33:00 +0100652 * Look up the metadata (struct kmemleak_object) corresponding to ptr and
653 * delete it.
654 */
655static void delete_object_full(unsigned long ptr)
656{
657 struct kmemleak_object *object;
658
Catalin Marinase781a9a2015-06-24 16:58:29 -0700659 object = find_and_remove_object(ptr, 0);
Catalin Marinas53238a62009-07-07 10:33:00 +0100660 if (!object) {
661#ifdef DEBUG
662 kmemleak_warn("Freeing unknown object at 0x%08lx\n",
663 ptr);
664#endif
665 return;
666 }
667 __delete_object(object);
Catalin Marinas53238a62009-07-07 10:33:00 +0100668}
669
670/*
671 * Look up the metadata (struct kmemleak_object) corresponding to ptr and
672 * delete it. If the memory block is partially freed, the function may create
673 * additional metadata for the remaining parts of the block.
674 */
675static void delete_object_part(unsigned long ptr, size_t size)
676{
677 struct kmemleak_object *object;
678 unsigned long start, end;
679
Catalin Marinase781a9a2015-06-24 16:58:29 -0700680 object = find_and_remove_object(ptr, 1);
Catalin Marinas53238a62009-07-07 10:33:00 +0100681 if (!object) {
682#ifdef DEBUG
683 kmemleak_warn("Partially freeing unknown object at 0x%08lx "
684 "(size %zu)\n", ptr, size);
685#endif
686 return;
687 }
Catalin Marinas53238a62009-07-07 10:33:00 +0100688
689 /*
690 * Create one or two objects that may result from the memory block
691 * split. Note that partial freeing is only done by free_bootmem() and
692 * this happens before kmemleak_init() is called. The path below is
693 * only executed during early log recording in kmemleak_init(), so
694 * GFP_KERNEL is enough.
695 */
696 start = object->pointer;
697 end = object->pointer + object->size;
698 if (ptr > start)
699 create_object(start, ptr - start, object->min_count,
700 GFP_KERNEL);
701 if (ptr + size < end)
702 create_object(ptr + size, end - ptr - size, object->min_count,
703 GFP_KERNEL);
704
Catalin Marinase781a9a2015-06-24 16:58:29 -0700705 __delete_object(object);
Catalin Marinas53238a62009-07-07 10:33:00 +0100706}
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -0700707
708static void __paint_it(struct kmemleak_object *object, int color)
709{
710 object->min_count = color;
711 if (color == KMEMLEAK_BLACK)
712 object->flags |= OBJECT_NO_SCAN;
713}
714
715static void paint_it(struct kmemleak_object *object, int color)
716{
717 unsigned long flags;
718
719 spin_lock_irqsave(&object->lock, flags);
720 __paint_it(object, color);
721 spin_unlock_irqrestore(&object->lock, flags);
722}
723
724static void paint_ptr(unsigned long ptr, int color)
725{
726 struct kmemleak_object *object;
727
728 object = find_and_get_object(ptr, 0);
729 if (!object) {
730 kmemleak_warn("Trying to color unknown object "
731 "at 0x%08lx as %s\n", ptr,
732 (color == KMEMLEAK_GREY) ? "Grey" :
733 (color == KMEMLEAK_BLACK) ? "Black" : "Unknown");
734 return;
735 }
736 paint_it(object, color);
737 put_object(object);
738}
739
Catalin Marinas53238a62009-07-07 10:33:00 +0100740/*
Holger Hans Peter Freyther145b64b2010-07-22 19:54:13 +0800741 * Mark an object permanently as gray-colored so that it can no longer be
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100742 * reported as a leak. This is used in general to mark a false positive.
743 */
744static void make_gray_object(unsigned long ptr)
745{
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -0700746 paint_ptr(ptr, KMEMLEAK_GREY);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100747}
748
749/*
750 * Mark the object as black-colored so that it is ignored from scans and
751 * reporting.
752 */
753static void make_black_object(unsigned long ptr)
754{
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -0700755 paint_ptr(ptr, KMEMLEAK_BLACK);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100756}
757
758/*
759 * Add a scanning area to the object. If at least one such area is added,
760 * kmemleak will only scan these ranges rather than the whole memory block.
761 */
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000762static void add_scan_area(unsigned long ptr, size_t size, gfp_t gfp)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100763{
764 unsigned long flags;
765 struct kmemleak_object *object;
766 struct kmemleak_scan_area *area;
767
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000768 object = find_and_get_object(ptr, 1);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100769 if (!object) {
Joe Perchesae281062009-06-23 14:40:26 +0100770 kmemleak_warn("Adding scan area to unknown object at 0x%08lx\n",
771 ptr);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100772 return;
773 }
774
Catalin Marinas6ae4bd12011-01-27 10:30:26 +0000775 area = kmem_cache_alloc(scan_area_cache, gfp_kmemleak_mask(gfp));
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100776 if (!area) {
Catalin Marinas6ae4bd12011-01-27 10:30:26 +0000777 pr_warning("Cannot allocate a scan area\n");
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100778 goto out;
779 }
780
781 spin_lock_irqsave(&object->lock, flags);
Catalin Marinas7f88f882013-11-12 15:07:45 -0800782 if (size == SIZE_MAX) {
783 size = object->pointer + object->size - ptr;
784 } else if (ptr + size > object->pointer + object->size) {
Joe Perchesae281062009-06-23 14:40:26 +0100785 kmemleak_warn("Scan area larger than object 0x%08lx\n", ptr);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100786 dump_object_info(object);
787 kmem_cache_free(scan_area_cache, area);
788 goto out_unlock;
789 }
790
791 INIT_HLIST_NODE(&area->node);
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000792 area->start = ptr;
793 area->size = size;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100794
795 hlist_add_head(&area->node, &object->area_list);
796out_unlock:
797 spin_unlock_irqrestore(&object->lock, flags);
798out:
799 put_object(object);
800}
801
802/*
803 * Set the OBJECT_NO_SCAN flag for the object corresponding to the give
804 * pointer. Such object will not be scanned by kmemleak but references to it
805 * are searched.
806 */
807static void object_no_scan(unsigned long ptr)
808{
809 unsigned long flags;
810 struct kmemleak_object *object;
811
812 object = find_and_get_object(ptr, 0);
813 if (!object) {
Joe Perchesae281062009-06-23 14:40:26 +0100814 kmemleak_warn("Not scanning unknown object at 0x%08lx\n", ptr);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100815 return;
816 }
817
818 spin_lock_irqsave(&object->lock, flags);
819 object->flags |= OBJECT_NO_SCAN;
820 spin_unlock_irqrestore(&object->lock, flags);
821 put_object(object);
822}
823
824/*
825 * Log an early kmemleak_* call to the early_log buffer. These calls will be
826 * processed later once kmemleak is fully initialized.
827 */
Catalin Marinasa6186d82009-08-27 14:29:16 +0100828static void __init log_early(int op_type, const void *ptr, size_t size,
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000829 int min_count)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100830{
831 unsigned long flags;
832 struct early_log *log;
833
Li Zefan8910ae82014-04-03 14:46:29 -0700834 if (kmemleak_error) {
Catalin Marinasb6693002011-09-28 17:22:56 +0100835 /* kmemleak stopped recording, just count the requests */
836 crt_early_log++;
837 return;
838 }
839
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100840 if (crt_early_log >= ARRAY_SIZE(early_log)) {
Catalin Marinasa9d90582009-06-25 10:16:11 +0100841 kmemleak_disable();
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100842 return;
843 }
844
845 /*
846 * There is no need for locking since the kernel is still in UP mode
847 * at this stage. Disabling the IRQs is enough.
848 */
849 local_irq_save(flags);
850 log = &early_log[crt_early_log];
851 log->op_type = op_type;
852 log->ptr = ptr;
853 log->size = size;
854 log->min_count = min_count;
Catalin Marinas5f790202011-09-28 12:17:03 +0100855 log->trace_len = __save_stack_trace(log->trace);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100856 crt_early_log++;
857 local_irq_restore(flags);
858}
859
860/*
Catalin Marinasfd678962009-08-27 14:29:17 +0100861 * Log an early allocated block and populate the stack trace.
862 */
863static void early_alloc(struct early_log *log)
864{
865 struct kmemleak_object *object;
866 unsigned long flags;
867 int i;
868
Li Zefan8910ae82014-04-03 14:46:29 -0700869 if (!kmemleak_enabled || !log->ptr || IS_ERR(log->ptr))
Catalin Marinasfd678962009-08-27 14:29:17 +0100870 return;
871
872 /*
873 * RCU locking needed to ensure object is not freed via put_object().
874 */
875 rcu_read_lock();
876 object = create_object((unsigned long)log->ptr, log->size,
Tetsuo Handac1bcd6b2009-10-09 10:39:24 +0100877 log->min_count, GFP_ATOMIC);
Catalin Marinas0d5d1aa2009-10-09 10:30:34 +0100878 if (!object)
879 goto out;
Catalin Marinasfd678962009-08-27 14:29:17 +0100880 spin_lock_irqsave(&object->lock, flags);
881 for (i = 0; i < log->trace_len; i++)
882 object->trace[i] = log->trace[i];
883 object->trace_len = log->trace_len;
884 spin_unlock_irqrestore(&object->lock, flags);
Catalin Marinas0d5d1aa2009-10-09 10:30:34 +0100885out:
Catalin Marinasfd678962009-08-27 14:29:17 +0100886 rcu_read_unlock();
887}
888
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100889/*
890 * Log an early allocated block and populate the stack trace.
891 */
892static void early_alloc_percpu(struct early_log *log)
893{
894 unsigned int cpu;
895 const void __percpu *ptr = log->ptr;
896
897 for_each_possible_cpu(cpu) {
898 log->ptr = per_cpu_ptr(ptr, cpu);
899 early_alloc(log);
900 }
901}
902
Catalin Marinasa2b6bf62010-07-19 11:54:17 +0100903/**
904 * kmemleak_alloc - register a newly allocated object
905 * @ptr: pointer to beginning of the object
906 * @size: size of the object
907 * @min_count: minimum number of references to this object. If during memory
908 * scanning a number of references less than @min_count is found,
909 * the object is reported as a memory leak. If @min_count is 0,
910 * the object is never reported as a leak. If @min_count is -1,
911 * the object is ignored (not scanned and not reported as a leak)
912 * @gfp: kmalloc() flags used for kmemleak internal memory allocations
913 *
914 * This function is called from the kernel allocators when a new object
915 * (memory block) is allocated (kmem_cache_alloc, kmalloc, vmalloc etc.).
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100916 */
Catalin Marinasa6186d82009-08-27 14:29:16 +0100917void __ref kmemleak_alloc(const void *ptr, size_t size, int min_count,
918 gfp_t gfp)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100919{
920 pr_debug("%s(0x%p, %zu, %d)\n", __func__, ptr, size, min_count);
921
Li Zefan8910ae82014-04-03 14:46:29 -0700922 if (kmemleak_enabled && ptr && !IS_ERR(ptr))
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100923 create_object((unsigned long)ptr, size, min_count, gfp);
Li Zefan8910ae82014-04-03 14:46:29 -0700924 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000925 log_early(KMEMLEAK_ALLOC, ptr, size, min_count);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100926}
927EXPORT_SYMBOL_GPL(kmemleak_alloc);
928
Catalin Marinasa2b6bf62010-07-19 11:54:17 +0100929/**
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100930 * kmemleak_alloc_percpu - register a newly allocated __percpu object
931 * @ptr: __percpu pointer to beginning of the object
932 * @size: size of the object
933 *
934 * This function is called from the kernel percpu allocator when a new object
935 * (memory block) is allocated (alloc_percpu). It assumes GFP_KERNEL
936 * allocation.
937 */
938void __ref kmemleak_alloc_percpu(const void __percpu *ptr, size_t size)
939{
940 unsigned int cpu;
941
942 pr_debug("%s(0x%p, %zu)\n", __func__, ptr, size);
943
944 /*
945 * Percpu allocations are only scanned and not reported as leaks
946 * (min_count is set to 0).
947 */
Li Zefan8910ae82014-04-03 14:46:29 -0700948 if (kmemleak_enabled && ptr && !IS_ERR(ptr))
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100949 for_each_possible_cpu(cpu)
950 create_object((unsigned long)per_cpu_ptr(ptr, cpu),
951 size, 0, GFP_KERNEL);
Li Zefan8910ae82014-04-03 14:46:29 -0700952 else if (kmemleak_early_log)
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100953 log_early(KMEMLEAK_ALLOC_PERCPU, ptr, size, 0);
954}
955EXPORT_SYMBOL_GPL(kmemleak_alloc_percpu);
956
957/**
Catalin Marinasa2b6bf62010-07-19 11:54:17 +0100958 * kmemleak_free - unregister a previously registered object
959 * @ptr: pointer to beginning of the object
960 *
961 * This function is called from the kernel allocators when an object (memory
962 * block) is freed (kmem_cache_free, kfree, vfree etc.).
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100963 */
Catalin Marinasa6186d82009-08-27 14:29:16 +0100964void __ref kmemleak_free(const void *ptr)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100965{
966 pr_debug("%s(0x%p)\n", __func__, ptr);
967
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -0700968 if (kmemleak_free_enabled && ptr && !IS_ERR(ptr))
Catalin Marinas53238a62009-07-07 10:33:00 +0100969 delete_object_full((unsigned long)ptr);
Li Zefan8910ae82014-04-03 14:46:29 -0700970 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000971 log_early(KMEMLEAK_FREE, ptr, 0, 0);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +0100972}
973EXPORT_SYMBOL_GPL(kmemleak_free);
974
Catalin Marinasa2b6bf62010-07-19 11:54:17 +0100975/**
976 * kmemleak_free_part - partially unregister a previously registered object
977 * @ptr: pointer to the beginning or inside the object. This also
978 * represents the start of the range to be freed
979 * @size: size to be unregistered
980 *
981 * This function is called when only a part of a memory block is freed
982 * (usually from the bootmem allocator).
Catalin Marinas53238a62009-07-07 10:33:00 +0100983 */
Catalin Marinasa6186d82009-08-27 14:29:16 +0100984void __ref kmemleak_free_part(const void *ptr, size_t size)
Catalin Marinas53238a62009-07-07 10:33:00 +0100985{
986 pr_debug("%s(0x%p)\n", __func__, ptr);
987
Li Zefan8910ae82014-04-03 14:46:29 -0700988 if (kmemleak_enabled && ptr && !IS_ERR(ptr))
Catalin Marinas53238a62009-07-07 10:33:00 +0100989 delete_object_part((unsigned long)ptr, size);
Li Zefan8910ae82014-04-03 14:46:29 -0700990 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +0000991 log_early(KMEMLEAK_FREE_PART, ptr, size, 0);
Catalin Marinas53238a62009-07-07 10:33:00 +0100992}
993EXPORT_SYMBOL_GPL(kmemleak_free_part);
994
Catalin Marinasa2b6bf62010-07-19 11:54:17 +0100995/**
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100996 * kmemleak_free_percpu - unregister a previously registered __percpu object
997 * @ptr: __percpu pointer to beginning of the object
998 *
999 * This function is called from the kernel percpu allocator when an object
1000 * (memory block) is freed (free_percpu).
1001 */
1002void __ref kmemleak_free_percpu(const void __percpu *ptr)
1003{
1004 unsigned int cpu;
1005
1006 pr_debug("%s(0x%p)\n", __func__, ptr);
1007
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -07001008 if (kmemleak_free_enabled && ptr && !IS_ERR(ptr))
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001009 for_each_possible_cpu(cpu)
1010 delete_object_full((unsigned long)per_cpu_ptr(ptr,
1011 cpu));
Li Zefan8910ae82014-04-03 14:46:29 -07001012 else if (kmemleak_early_log)
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001013 log_early(KMEMLEAK_FREE_PERCPU, ptr, 0, 0);
1014}
1015EXPORT_SYMBOL_GPL(kmemleak_free_percpu);
1016
1017/**
Catalin Marinasffe2c742014-06-06 14:38:17 -07001018 * kmemleak_update_trace - update object allocation stack trace
1019 * @ptr: pointer to beginning of the object
1020 *
1021 * Override the object allocation stack trace for cases where the actual
1022 * allocation place is not always useful.
1023 */
1024void __ref kmemleak_update_trace(const void *ptr)
1025{
1026 struct kmemleak_object *object;
1027 unsigned long flags;
1028
1029 pr_debug("%s(0x%p)\n", __func__, ptr);
1030
1031 if (!kmemleak_enabled || IS_ERR_OR_NULL(ptr))
1032 return;
1033
1034 object = find_and_get_object((unsigned long)ptr, 1);
1035 if (!object) {
1036#ifdef DEBUG
1037 kmemleak_warn("Updating stack trace for unknown object at %p\n",
1038 ptr);
1039#endif
1040 return;
1041 }
1042
1043 spin_lock_irqsave(&object->lock, flags);
1044 object->trace_len = __save_stack_trace(object->trace);
1045 spin_unlock_irqrestore(&object->lock, flags);
1046
1047 put_object(object);
1048}
1049EXPORT_SYMBOL(kmemleak_update_trace);
1050
1051/**
Catalin Marinasa2b6bf62010-07-19 11:54:17 +01001052 * kmemleak_not_leak - mark an allocated object as false positive
1053 * @ptr: pointer to beginning of the object
1054 *
1055 * Calling this function on an object will cause the memory block to no longer
1056 * be reported as leak and always be scanned.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001057 */
Catalin Marinasa6186d82009-08-27 14:29:16 +01001058void __ref kmemleak_not_leak(const void *ptr)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001059{
1060 pr_debug("%s(0x%p)\n", __func__, ptr);
1061
Li Zefan8910ae82014-04-03 14:46:29 -07001062 if (kmemleak_enabled && ptr && !IS_ERR(ptr))
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001063 make_gray_object((unsigned long)ptr);
Li Zefan8910ae82014-04-03 14:46:29 -07001064 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001065 log_early(KMEMLEAK_NOT_LEAK, ptr, 0, 0);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001066}
1067EXPORT_SYMBOL(kmemleak_not_leak);
1068
Catalin Marinasa2b6bf62010-07-19 11:54:17 +01001069/**
1070 * kmemleak_ignore - ignore an allocated object
1071 * @ptr: pointer to beginning of the object
1072 *
1073 * Calling this function on an object will cause the memory block to be
1074 * ignored (not scanned and not reported as a leak). This is usually done when
1075 * it is known that the corresponding block is not a leak and does not contain
1076 * any references to other allocated memory blocks.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001077 */
Catalin Marinasa6186d82009-08-27 14:29:16 +01001078void __ref kmemleak_ignore(const void *ptr)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001079{
1080 pr_debug("%s(0x%p)\n", __func__, ptr);
1081
Li Zefan8910ae82014-04-03 14:46:29 -07001082 if (kmemleak_enabled && ptr && !IS_ERR(ptr))
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001083 make_black_object((unsigned long)ptr);
Li Zefan8910ae82014-04-03 14:46:29 -07001084 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001085 log_early(KMEMLEAK_IGNORE, ptr, 0, 0);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001086}
1087EXPORT_SYMBOL(kmemleak_ignore);
1088
Catalin Marinasa2b6bf62010-07-19 11:54:17 +01001089/**
1090 * kmemleak_scan_area - limit the range to be scanned in an allocated object
1091 * @ptr: pointer to beginning or inside the object. This also
1092 * represents the start of the scan area
1093 * @size: size of the scan area
1094 * @gfp: kmalloc() flags used for kmemleak internal memory allocations
1095 *
1096 * This function is used when it is known that only certain parts of an object
1097 * contain references to other objects. Kmemleak will only scan these areas
1098 * reducing the number false negatives.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001099 */
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001100void __ref kmemleak_scan_area(const void *ptr, size_t size, gfp_t gfp)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001101{
1102 pr_debug("%s(0x%p)\n", __func__, ptr);
1103
Li Zefan8910ae82014-04-03 14:46:29 -07001104 if (kmemleak_enabled && ptr && size && !IS_ERR(ptr))
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001105 add_scan_area((unsigned long)ptr, size, gfp);
Li Zefan8910ae82014-04-03 14:46:29 -07001106 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001107 log_early(KMEMLEAK_SCAN_AREA, ptr, size, 0);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001108}
1109EXPORT_SYMBOL(kmemleak_scan_area);
1110
Catalin Marinasa2b6bf62010-07-19 11:54:17 +01001111/**
1112 * kmemleak_no_scan - do not scan an allocated object
1113 * @ptr: pointer to beginning of the object
1114 *
1115 * This function notifies kmemleak not to scan the given memory block. Useful
1116 * in situations where it is known that the given object does not contain any
1117 * references to other objects. Kmemleak will not scan such objects reducing
1118 * the number of false negatives.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001119 */
Catalin Marinasa6186d82009-08-27 14:29:16 +01001120void __ref kmemleak_no_scan(const void *ptr)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001121{
1122 pr_debug("%s(0x%p)\n", __func__, ptr);
1123
Li Zefan8910ae82014-04-03 14:46:29 -07001124 if (kmemleak_enabled && ptr && !IS_ERR(ptr))
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001125 object_no_scan((unsigned long)ptr);
Li Zefan8910ae82014-04-03 14:46:29 -07001126 else if (kmemleak_early_log)
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001127 log_early(KMEMLEAK_NO_SCAN, ptr, 0, 0);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001128}
1129EXPORT_SYMBOL(kmemleak_no_scan);
1130
1131/*
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001132 * Update an object's checksum and return true if it was modified.
1133 */
1134static bool update_checksum(struct kmemleak_object *object)
1135{
1136 u32 old_csum = object->checksum;
1137
1138 if (!kmemcheck_is_obj_initialized(object->pointer, object->size))
1139 return false;
1140
Andrey Ryabinine79ed2f2015-02-13 14:39:49 -08001141 kasan_disable_current();
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001142 object->checksum = crc32(0, (void *)object->pointer, object->size);
Andrey Ryabinine79ed2f2015-02-13 14:39:49 -08001143 kasan_enable_current();
1144
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001145 return object->checksum != old_csum;
1146}
1147
1148/*
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001149 * Memory scanning is a long process and it needs to be interruptable. This
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001150 * function checks whether such interrupt condition occurred.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001151 */
1152static int scan_should_stop(void)
1153{
Li Zefan8910ae82014-04-03 14:46:29 -07001154 if (!kmemleak_enabled)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001155 return 1;
1156
1157 /*
1158 * This function may be called from either process or kthread context,
1159 * hence the need to check for both stop conditions.
1160 */
1161 if (current->mm)
1162 return signal_pending(current);
1163 else
1164 return kthread_should_stop();
1165
1166 return 0;
1167}
1168
1169/*
1170 * Scan a memory block (exclusive range) for valid pointers and add those
1171 * found to the gray list.
1172 */
1173static void scan_block(void *_start, void *_end,
Catalin Marinas93ada572015-06-24 16:58:37 -07001174 struct kmemleak_object *scanned)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001175{
1176 unsigned long *ptr;
1177 unsigned long *start = PTR_ALIGN(_start, BYTES_PER_POINTER);
1178 unsigned long *end = _end - (BYTES_PER_POINTER - 1);
Catalin Marinas93ada572015-06-24 16:58:37 -07001179 unsigned long flags;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001180
Catalin Marinas93ada572015-06-24 16:58:37 -07001181 read_lock_irqsave(&kmemleak_lock, flags);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001182 for (ptr = start; ptr < end; ptr++) {
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001183 struct kmemleak_object *object;
Pekka Enberg8e019362009-08-27 14:50:00 +01001184 unsigned long pointer;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001185
1186 if (scan_should_stop())
1187 break;
1188
Pekka Enberg8e019362009-08-27 14:50:00 +01001189 /* don't scan uninitialized memory */
1190 if (!kmemcheck_is_obj_initialized((unsigned long)ptr,
1191 BYTES_PER_POINTER))
1192 continue;
1193
Andrey Ryabinine79ed2f2015-02-13 14:39:49 -08001194 kasan_disable_current();
Pekka Enberg8e019362009-08-27 14:50:00 +01001195 pointer = *ptr;
Andrey Ryabinine79ed2f2015-02-13 14:39:49 -08001196 kasan_enable_current();
Pekka Enberg8e019362009-08-27 14:50:00 +01001197
Catalin Marinas93ada572015-06-24 16:58:37 -07001198 if (pointer < min_addr || pointer >= max_addr)
1199 continue;
1200
1201 /*
1202 * No need for get_object() here since we hold kmemleak_lock.
1203 * object->use_count cannot be dropped to 0 while the object
1204 * is still present in object_tree_root and object_list
1205 * (with updates protected by kmemleak_lock).
1206 */
1207 object = lookup_object(pointer, 1);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001208 if (!object)
1209 continue;
Catalin Marinas93ada572015-06-24 16:58:37 -07001210 if (object == scanned)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001211 /* self referenced, ignore */
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001212 continue;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001213
1214 /*
1215 * Avoid the lockdep recursive warning on object->lock being
1216 * previously acquired in scan_object(). These locks are
1217 * enclosed by scan_mutex.
1218 */
Catalin Marinas93ada572015-06-24 16:58:37 -07001219 spin_lock_nested(&object->lock, SINGLE_DEPTH_NESTING);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001220 if (!color_white(object)) {
1221 /* non-orphan, ignored or new */
Catalin Marinas93ada572015-06-24 16:58:37 -07001222 spin_unlock(&object->lock);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001223 continue;
1224 }
1225
1226 /*
1227 * Increase the object's reference count (number of pointers
1228 * to the memory block). If this count reaches the required
1229 * minimum, the object's color will become gray and it will be
1230 * added to the gray_list.
1231 */
1232 object->count++;
Catalin Marinas0587da42009-10-28 13:33:11 +00001233 if (color_gray(object)) {
Catalin Marinas93ada572015-06-24 16:58:37 -07001234 /* put_object() called when removing from gray_list */
1235 WARN_ON(!get_object(object));
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001236 list_add_tail(&object->gray_list, &gray_list);
Catalin Marinas0587da42009-10-28 13:33:11 +00001237 }
Catalin Marinas93ada572015-06-24 16:58:37 -07001238 spin_unlock(&object->lock);
1239 }
1240 read_unlock_irqrestore(&kmemleak_lock, flags);
1241}
Catalin Marinas0587da42009-10-28 13:33:11 +00001242
Catalin Marinas93ada572015-06-24 16:58:37 -07001243/*
1244 * Scan a large memory block in MAX_SCAN_SIZE chunks to reduce the latency.
1245 */
1246static void scan_large_block(void *start, void *end)
1247{
1248 void *next;
1249
1250 while (start < end) {
1251 next = min(start + MAX_SCAN_SIZE, end);
1252 scan_block(start, next, NULL);
1253 start = next;
1254 cond_resched();
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001255 }
1256}
1257
1258/*
1259 * Scan a memory block corresponding to a kmemleak_object. A condition is
1260 * that object->use_count >= 1.
1261 */
1262static void scan_object(struct kmemleak_object *object)
1263{
1264 struct kmemleak_scan_area *area;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001265 unsigned long flags;
1266
1267 /*
Uwe Kleine-König21ae2952009-10-07 15:21:09 +02001268 * Once the object->lock is acquired, the corresponding memory block
1269 * cannot be freed (the same lock is acquired in delete_object).
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001270 */
1271 spin_lock_irqsave(&object->lock, flags);
1272 if (object->flags & OBJECT_NO_SCAN)
1273 goto out;
1274 if (!(object->flags & OBJECT_ALLOCATED))
1275 /* already freed object */
1276 goto out;
Catalin Marinasaf986032009-08-27 14:29:12 +01001277 if (hlist_empty(&object->area_list)) {
1278 void *start = (void *)object->pointer;
1279 void *end = (void *)(object->pointer + object->size);
Catalin Marinas93ada572015-06-24 16:58:37 -07001280 void *next;
Catalin Marinasaf986032009-08-27 14:29:12 +01001281
Catalin Marinas93ada572015-06-24 16:58:37 -07001282 do {
1283 next = min(start + MAX_SCAN_SIZE, end);
1284 scan_block(start, next, object);
1285
1286 start = next;
1287 if (start >= end)
1288 break;
Catalin Marinasaf986032009-08-27 14:29:12 +01001289
1290 spin_unlock_irqrestore(&object->lock, flags);
1291 cond_resched();
1292 spin_lock_irqsave(&object->lock, flags);
Catalin Marinas93ada572015-06-24 16:58:37 -07001293 } while (object->flags & OBJECT_ALLOCATED);
Catalin Marinasaf986032009-08-27 14:29:12 +01001294 } else
Sasha Levinb67bfe02013-02-27 17:06:00 -08001295 hlist_for_each_entry(area, &object->area_list, node)
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001296 scan_block((void *)area->start,
1297 (void *)(area->start + area->size),
Catalin Marinas93ada572015-06-24 16:58:37 -07001298 object);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001299out:
1300 spin_unlock_irqrestore(&object->lock, flags);
1301}
1302
1303/*
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001304 * Scan the objects already referenced (gray objects). More objects will be
1305 * referenced and, if there are no memory leaks, all the objects are scanned.
1306 */
1307static void scan_gray_list(void)
1308{
1309 struct kmemleak_object *object, *tmp;
1310
1311 /*
1312 * The list traversal is safe for both tail additions and removals
1313 * from inside the loop. The kmemleak objects cannot be freed from
1314 * outside the loop because their use_count was incremented.
1315 */
1316 object = list_entry(gray_list.next, typeof(*object), gray_list);
1317 while (&object->gray_list != &gray_list) {
1318 cond_resched();
1319
1320 /* may add new objects to the list */
1321 if (!scan_should_stop())
1322 scan_object(object);
1323
1324 tmp = list_entry(object->gray_list.next, typeof(*object),
1325 gray_list);
1326
1327 /* remove the object from the list and release it */
1328 list_del(&object->gray_list);
1329 put_object(object);
1330
1331 object = tmp;
1332 }
1333 WARN_ON(!list_empty(&gray_list));
1334}
1335
1336/*
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001337 * Scan data sections and all the referenced memory blocks allocated via the
1338 * kernel's standard allocators. This function must be called with the
1339 * scan_mutex held.
1340 */
1341static void kmemleak_scan(void)
1342{
1343 unsigned long flags;
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001344 struct kmemleak_object *object;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001345 int i;
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001346 int new_leaks = 0;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001347
Catalin Marinasacf49682009-06-26 17:38:29 +01001348 jiffies_last_scan = jiffies;
1349
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001350 /* prepare the kmemleak_object's */
1351 rcu_read_lock();
1352 list_for_each_entry_rcu(object, &object_list, object_list) {
1353 spin_lock_irqsave(&object->lock, flags);
1354#ifdef DEBUG
1355 /*
1356 * With a few exceptions there should be a maximum of
1357 * 1 reference to any object at this point.
1358 */
1359 if (atomic_read(&object->use_count) > 1) {
Joe Perchesae281062009-06-23 14:40:26 +01001360 pr_debug("object->use_count = %d\n",
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001361 atomic_read(&object->use_count));
1362 dump_object_info(object);
1363 }
1364#endif
1365 /* reset the reference count (whiten the object) */
1366 object->count = 0;
1367 if (color_gray(object) && get_object(object))
1368 list_add_tail(&object->gray_list, &gray_list);
1369
1370 spin_unlock_irqrestore(&object->lock, flags);
1371 }
1372 rcu_read_unlock();
1373
1374 /* data/bss scanning */
Catalin Marinas93ada572015-06-24 16:58:37 -07001375 scan_large_block(_sdata, _edata);
1376 scan_large_block(__bss_start, __bss_stop);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001377
1378#ifdef CONFIG_SMP
1379 /* per-cpu sections scanning */
1380 for_each_possible_cpu(i)
Catalin Marinas93ada572015-06-24 16:58:37 -07001381 scan_large_block(__per_cpu_start + per_cpu_offset(i),
1382 __per_cpu_end + per_cpu_offset(i));
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001383#endif
1384
1385 /*
Laura Abbott029aeff2011-11-15 23:49:09 +00001386 * Struct page scanning for each node.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001387 */
Vladimir Davydovbfc8c902014-06-04 16:07:18 -07001388 get_online_mems();
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001389 for_each_online_node(i) {
Cody P Schafer108bcc92013-02-22 16:35:23 -08001390 unsigned long start_pfn = node_start_pfn(i);
1391 unsigned long end_pfn = node_end_pfn(i);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001392 unsigned long pfn;
1393
1394 for (pfn = start_pfn; pfn < end_pfn; pfn++) {
1395 struct page *page;
1396
1397 if (!pfn_valid(pfn))
1398 continue;
1399 page = pfn_to_page(pfn);
1400 /* only scan if page is in use */
1401 if (page_count(page) == 0)
1402 continue;
Catalin Marinas93ada572015-06-24 16:58:37 -07001403 scan_block(page, page + 1, NULL);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001404 }
1405 }
Vladimir Davydovbfc8c902014-06-04 16:07:18 -07001406 put_online_mems();
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001407
1408 /*
Catalin Marinas43ed5d62009-09-01 11:12:44 +01001409 * Scanning the task stacks (may introduce false negatives).
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001410 */
1411 if (kmemleak_stack_scan) {
Catalin Marinas43ed5d62009-09-01 11:12:44 +01001412 struct task_struct *p, *g;
1413
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001414 read_lock(&tasklist_lock);
Catalin Marinas43ed5d62009-09-01 11:12:44 +01001415 do_each_thread(g, p) {
1416 scan_block(task_stack_page(p), task_stack_page(p) +
Catalin Marinas93ada572015-06-24 16:58:37 -07001417 THREAD_SIZE, NULL);
Catalin Marinas43ed5d62009-09-01 11:12:44 +01001418 } while_each_thread(g, p);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001419 read_unlock(&tasklist_lock);
1420 }
1421
1422 /*
1423 * Scan the objects already referenced from the sections scanned
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001424 * above.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001425 */
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001426 scan_gray_list();
Catalin Marinas25873622009-07-07 10:32:58 +01001427
1428 /*
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001429 * Check for new or unreferenced objects modified since the previous
1430 * scan and color them gray until the next scan.
Catalin Marinas25873622009-07-07 10:32:58 +01001431 */
1432 rcu_read_lock();
1433 list_for_each_entry_rcu(object, &object_list, object_list) {
1434 spin_lock_irqsave(&object->lock, flags);
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001435 if (color_white(object) && (object->flags & OBJECT_ALLOCATED)
1436 && update_checksum(object) && get_object(object)) {
1437 /* color it gray temporarily */
1438 object->count = object->min_count;
Catalin Marinas25873622009-07-07 10:32:58 +01001439 list_add_tail(&object->gray_list, &gray_list);
1440 }
1441 spin_unlock_irqrestore(&object->lock, flags);
1442 }
1443 rcu_read_unlock();
1444
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001445 /*
1446 * Re-scan the gray list for modified unreferenced objects.
1447 */
1448 scan_gray_list();
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001449
1450 /*
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001451 * If scanning was stopped do not report any new unreferenced objects.
Catalin Marinas17bb9e02009-06-29 17:13:56 +01001452 */
Catalin Marinas04609ccc2009-10-28 13:33:12 +00001453 if (scan_should_stop())
Catalin Marinas17bb9e02009-06-29 17:13:56 +01001454 return;
1455
1456 /*
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001457 * Scanning result reporting.
1458 */
1459 rcu_read_lock();
1460 list_for_each_entry_rcu(object, &object_list, object_list) {
1461 spin_lock_irqsave(&object->lock, flags);
1462 if (unreferenced_object(object) &&
1463 !(object->flags & OBJECT_REPORTED)) {
1464 object->flags |= OBJECT_REPORTED;
1465 new_leaks++;
1466 }
1467 spin_unlock_irqrestore(&object->lock, flags);
1468 }
1469 rcu_read_unlock();
1470
Li Zefandc9b3f42014-04-03 14:46:26 -07001471 if (new_leaks) {
1472 kmemleak_found_leaks = true;
1473
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001474 pr_info("%d new suspected memory leaks (see "
1475 "/sys/kernel/debug/kmemleak)\n", new_leaks);
Li Zefandc9b3f42014-04-03 14:46:26 -07001476 }
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001477
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001478}
1479
1480/*
1481 * Thread function performing automatic memory scanning. Unreferenced objects
1482 * at the end of a memory scan are reported but only the first time.
1483 */
1484static int kmemleak_scan_thread(void *arg)
1485{
1486 static int first_run = 1;
1487
Joe Perchesae281062009-06-23 14:40:26 +01001488 pr_info("Automatic memory scanning thread started\n");
Catalin Marinasbf2a76b2009-07-07 10:32:55 +01001489 set_user_nice(current, 10);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001490
1491 /*
1492 * Wait before the first scan to allow the system to fully initialize.
1493 */
1494 if (first_run) {
1495 first_run = 0;
1496 ssleep(SECS_FIRST_SCAN);
1497 }
1498
1499 while (!kthread_should_stop()) {
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001500 signed long timeout = jiffies_scan_wait;
1501
1502 mutex_lock(&scan_mutex);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001503 kmemleak_scan();
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001504 mutex_unlock(&scan_mutex);
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001505
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001506 /* wait before the next scan */
1507 while (timeout && !kthread_should_stop())
1508 timeout = schedule_timeout_interruptible(timeout);
1509 }
1510
Joe Perchesae281062009-06-23 14:40:26 +01001511 pr_info("Automatic memory scanning thread ended\n");
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001512
1513 return 0;
1514}
1515
1516/*
1517 * Start the automatic memory scanning thread. This function must be called
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001518 * with the scan_mutex held.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001519 */
Luis R. Rodriguez7eb0d5e2009-09-08 17:31:45 +01001520static void start_scan_thread(void)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001521{
1522 if (scan_thread)
1523 return;
1524 scan_thread = kthread_run(kmemleak_scan_thread, NULL, "kmemleak");
1525 if (IS_ERR(scan_thread)) {
Joe Perchesae281062009-06-23 14:40:26 +01001526 pr_warning("Failed to create the scan thread\n");
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001527 scan_thread = NULL;
1528 }
1529}
1530
1531/*
1532 * Stop the automatic memory scanning thread. This function must be called
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001533 * with the scan_mutex held.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001534 */
Luis R. Rodriguez7eb0d5e2009-09-08 17:31:45 +01001535static void stop_scan_thread(void)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001536{
1537 if (scan_thread) {
1538 kthread_stop(scan_thread);
1539 scan_thread = NULL;
1540 }
1541}
1542
1543/*
1544 * Iterate over the object_list and return the first valid object at or after
1545 * the required position with its use_count incremented. The function triggers
1546 * a memory scanning when the pos argument points to the first position.
1547 */
1548static void *kmemleak_seq_start(struct seq_file *seq, loff_t *pos)
1549{
1550 struct kmemleak_object *object;
1551 loff_t n = *pos;
Catalin Marinasb87324d2009-07-07 10:32:58 +01001552 int err;
1553
1554 err = mutex_lock_interruptible(&scan_mutex);
1555 if (err < 0)
1556 return ERR_PTR(err);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001557
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001558 rcu_read_lock();
1559 list_for_each_entry_rcu(object, &object_list, object_list) {
1560 if (n-- > 0)
1561 continue;
1562 if (get_object(object))
1563 goto out;
1564 }
1565 object = NULL;
1566out:
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001567 return object;
1568}
1569
1570/*
1571 * Return the next object in the object_list. The function decrements the
1572 * use_count of the previous object and increases that of the next one.
1573 */
1574static void *kmemleak_seq_next(struct seq_file *seq, void *v, loff_t *pos)
1575{
1576 struct kmemleak_object *prev_obj = v;
1577 struct kmemleak_object *next_obj = NULL;
Michael Wang58fac092012-08-17 12:33:34 +08001578 struct kmemleak_object *obj = prev_obj;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001579
1580 ++(*pos);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001581
Michael Wang58fac092012-08-17 12:33:34 +08001582 list_for_each_entry_continue_rcu(obj, &object_list, object_list) {
Catalin Marinas52c3ce42011-04-27 16:44:26 +01001583 if (get_object(obj)) {
1584 next_obj = obj;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001585 break;
Catalin Marinas52c3ce42011-04-27 16:44:26 +01001586 }
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001587 }
Catalin Marinas288c8572009-07-07 10:32:57 +01001588
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001589 put_object(prev_obj);
1590 return next_obj;
1591}
1592
1593/*
1594 * Decrement the use_count of the last object required, if any.
1595 */
1596static void kmemleak_seq_stop(struct seq_file *seq, void *v)
1597{
Catalin Marinasb87324d2009-07-07 10:32:58 +01001598 if (!IS_ERR(v)) {
1599 /*
1600 * kmemleak_seq_start may return ERR_PTR if the scan_mutex
1601 * waiting was interrupted, so only release it if !IS_ERR.
1602 */
Catalin Marinasf5886c72009-07-29 16:26:57 +01001603 rcu_read_unlock();
Catalin Marinasb87324d2009-07-07 10:32:58 +01001604 mutex_unlock(&scan_mutex);
1605 if (v)
1606 put_object(v);
1607 }
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001608}
1609
1610/*
1611 * Print the information for an unreferenced object to the seq file.
1612 */
1613static int kmemleak_seq_show(struct seq_file *seq, void *v)
1614{
1615 struct kmemleak_object *object = v;
1616 unsigned long flags;
1617
1618 spin_lock_irqsave(&object->lock, flags);
Catalin Marinas288c8572009-07-07 10:32:57 +01001619 if ((object->flags & OBJECT_REPORTED) && unreferenced_object(object))
Catalin Marinas17bb9e02009-06-29 17:13:56 +01001620 print_unreferenced(seq, object);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001621 spin_unlock_irqrestore(&object->lock, flags);
1622 return 0;
1623}
1624
1625static const struct seq_operations kmemleak_seq_ops = {
1626 .start = kmemleak_seq_start,
1627 .next = kmemleak_seq_next,
1628 .stop = kmemleak_seq_stop,
1629 .show = kmemleak_seq_show,
1630};
1631
1632static int kmemleak_open(struct inode *inode, struct file *file)
1633{
Catalin Marinasb87324d2009-07-07 10:32:58 +01001634 return seq_open(file, &kmemleak_seq_ops);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001635}
1636
Catalin Marinas189d84e2009-08-27 14:29:15 +01001637static int dump_str_object_info(const char *str)
1638{
1639 unsigned long flags;
1640 struct kmemleak_object *object;
1641 unsigned long addr;
1642
Abhijit Pawardc053732012-12-18 14:23:27 -08001643 if (kstrtoul(str, 0, &addr))
1644 return -EINVAL;
Catalin Marinas189d84e2009-08-27 14:29:15 +01001645 object = find_and_get_object(addr, 0);
1646 if (!object) {
1647 pr_info("Unknown object at 0x%08lx\n", addr);
1648 return -EINVAL;
1649 }
1650
1651 spin_lock_irqsave(&object->lock, flags);
1652 dump_object_info(object);
1653 spin_unlock_irqrestore(&object->lock, flags);
1654
1655 put_object(object);
1656 return 0;
1657}
1658
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001659/*
Luis R. Rodriguez30b37102009-09-04 17:44:51 -07001660 * We use grey instead of black to ensure we can do future scans on the same
1661 * objects. If we did not do future scans these black objects could
1662 * potentially contain references to newly allocated objects in the future and
1663 * we'd end up with false positives.
1664 */
1665static void kmemleak_clear(void)
1666{
1667 struct kmemleak_object *object;
1668 unsigned long flags;
1669
1670 rcu_read_lock();
1671 list_for_each_entry_rcu(object, &object_list, object_list) {
1672 spin_lock_irqsave(&object->lock, flags);
1673 if ((object->flags & OBJECT_REPORTED) &&
1674 unreferenced_object(object))
Luis R. Rodrigueza1084c82009-09-04 17:44:52 -07001675 __paint_it(object, KMEMLEAK_GREY);
Luis R. Rodriguez30b37102009-09-04 17:44:51 -07001676 spin_unlock_irqrestore(&object->lock, flags);
1677 }
1678 rcu_read_unlock();
Li Zefandc9b3f42014-04-03 14:46:26 -07001679
1680 kmemleak_found_leaks = false;
Luis R. Rodriguez30b37102009-09-04 17:44:51 -07001681}
1682
Li Zefanc89da702014-04-03 14:46:27 -07001683static void __kmemleak_do_cleanup(void);
1684
Luis R. Rodriguez30b37102009-09-04 17:44:51 -07001685/*
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001686 * File write operation to configure kmemleak at run-time. The following
1687 * commands can be written to the /sys/kernel/debug/kmemleak file:
1688 * off - disable kmemleak (irreversible)
1689 * stack=on - enable the task stacks scanning
1690 * stack=off - disable the tasks stacks scanning
1691 * scan=on - start the automatic memory scanning thread
1692 * scan=off - stop the automatic memory scanning thread
1693 * scan=... - set the automatic memory scanning period in seconds (0 to
1694 * disable it)
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001695 * scan - trigger a memory scan
Luis R. Rodriguez30b37102009-09-04 17:44:51 -07001696 * clear - mark all current reported unreferenced kmemleak objects as
Li Zefanc89da702014-04-03 14:46:27 -07001697 * grey to ignore printing them, or free all kmemleak objects
1698 * if kmemleak has been disabled.
Catalin Marinas189d84e2009-08-27 14:29:15 +01001699 * dump=... - dump information about the object found at the given address
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001700 */
1701static ssize_t kmemleak_write(struct file *file, const char __user *user_buf,
1702 size_t size, loff_t *ppos)
1703{
1704 char buf[64];
1705 int buf_size;
Catalin Marinasb87324d2009-07-07 10:32:58 +01001706 int ret;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001707
1708 buf_size = min(size, (sizeof(buf) - 1));
1709 if (strncpy_from_user(buf, user_buf, buf_size) < 0)
1710 return -EFAULT;
1711 buf[buf_size] = 0;
1712
Catalin Marinasb87324d2009-07-07 10:32:58 +01001713 ret = mutex_lock_interruptible(&scan_mutex);
1714 if (ret < 0)
1715 return ret;
1716
Li Zefanc89da702014-04-03 14:46:27 -07001717 if (strncmp(buf, "clear", 5) == 0) {
Li Zefan8910ae82014-04-03 14:46:29 -07001718 if (kmemleak_enabled)
Li Zefanc89da702014-04-03 14:46:27 -07001719 kmemleak_clear();
1720 else
1721 __kmemleak_do_cleanup();
1722 goto out;
1723 }
1724
Li Zefan8910ae82014-04-03 14:46:29 -07001725 if (!kmemleak_enabled) {
Li Zefanc89da702014-04-03 14:46:27 -07001726 ret = -EBUSY;
1727 goto out;
1728 }
1729
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001730 if (strncmp(buf, "off", 3) == 0)
1731 kmemleak_disable();
1732 else if (strncmp(buf, "stack=on", 8) == 0)
1733 kmemleak_stack_scan = 1;
1734 else if (strncmp(buf, "stack=off", 9) == 0)
1735 kmemleak_stack_scan = 0;
1736 else if (strncmp(buf, "scan=on", 7) == 0)
1737 start_scan_thread();
1738 else if (strncmp(buf, "scan=off", 8) == 0)
1739 stop_scan_thread();
1740 else if (strncmp(buf, "scan=", 5) == 0) {
1741 unsigned long secs;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001742
Jingoo Han3dbb95f2013-09-11 14:20:25 -07001743 ret = kstrtoul(buf + 5, 0, &secs);
Catalin Marinasb87324d2009-07-07 10:32:58 +01001744 if (ret < 0)
1745 goto out;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001746 stop_scan_thread();
1747 if (secs) {
1748 jiffies_scan_wait = msecs_to_jiffies(secs * 1000);
1749 start_scan_thread();
1750 }
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001751 } else if (strncmp(buf, "scan", 4) == 0)
1752 kmemleak_scan();
Catalin Marinas189d84e2009-08-27 14:29:15 +01001753 else if (strncmp(buf, "dump=", 5) == 0)
1754 ret = dump_str_object_info(buf + 5);
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001755 else
Catalin Marinasb87324d2009-07-07 10:32:58 +01001756 ret = -EINVAL;
1757
1758out:
1759 mutex_unlock(&scan_mutex);
1760 if (ret < 0)
1761 return ret;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001762
1763 /* ignore the rest of the buffer, only one command at a time */
1764 *ppos += size;
1765 return size;
1766}
1767
1768static const struct file_operations kmemleak_fops = {
1769 .owner = THIS_MODULE,
1770 .open = kmemleak_open,
1771 .read = seq_read,
1772 .write = kmemleak_write,
1773 .llseek = seq_lseek,
Li Zefan5f3bf192014-04-03 14:46:28 -07001774 .release = seq_release,
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001775};
1776
Li Zefanc89da702014-04-03 14:46:27 -07001777static void __kmemleak_do_cleanup(void)
1778{
1779 struct kmemleak_object *object;
1780
1781 rcu_read_lock();
1782 list_for_each_entry_rcu(object, &object_list, object_list)
1783 delete_object_full(object->pointer);
1784 rcu_read_unlock();
1785}
1786
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001787/*
Catalin Marinas74341702011-09-29 11:50:07 +01001788 * Stop the memory scanning thread and free the kmemleak internal objects if
1789 * no previous scan thread (otherwise, kmemleak may still have some useful
1790 * information on memory leaks).
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001791 */
Catalin Marinas179a8102009-09-07 10:14:42 +01001792static void kmemleak_do_cleanup(struct work_struct *work)
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001793{
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001794 stop_scan_thread();
1795
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -07001796 /*
1797 * Once the scan thread has stopped, it is safe to no longer track
1798 * object freeing. Ordering of the scan thread stopping and the memory
1799 * accesses below is guaranteed by the kthread_stop() function.
1800 */
1801 kmemleak_free_enabled = 0;
1802
Li Zefanc89da702014-04-03 14:46:27 -07001803 if (!kmemleak_found_leaks)
1804 __kmemleak_do_cleanup();
1805 else
1806 pr_info("Kmemleak disabled without freeing internal data. "
1807 "Reclaim the memory with \"echo clear > /sys/kernel/debug/kmemleak\"\n");
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001808}
1809
Catalin Marinas179a8102009-09-07 10:14:42 +01001810static DECLARE_WORK(cleanup_work, kmemleak_do_cleanup);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001811
1812/*
1813 * Disable kmemleak. No memory allocation/freeing will be traced once this
1814 * function is called. Disabling kmemleak is an irreversible operation.
1815 */
1816static void kmemleak_disable(void)
1817{
1818 /* atomically check whether it was already invoked */
Li Zefan8910ae82014-04-03 14:46:29 -07001819 if (cmpxchg(&kmemleak_error, 0, 1))
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001820 return;
1821
1822 /* stop any memory operation tracing */
Li Zefan8910ae82014-04-03 14:46:29 -07001823 kmemleak_enabled = 0;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001824
1825 /* check whether it is too early for a kernel thread */
Li Zefan8910ae82014-04-03 14:46:29 -07001826 if (kmemleak_initialized)
Catalin Marinas179a8102009-09-07 10:14:42 +01001827 schedule_work(&cleanup_work);
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -07001828 else
1829 kmemleak_free_enabled = 0;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001830
1831 pr_info("Kernel memory leak detector disabled\n");
1832}
1833
1834/*
1835 * Allow boot-time kmemleak disabling (enabled by default).
1836 */
1837static int kmemleak_boot_config(char *str)
1838{
1839 if (!str)
1840 return -EINVAL;
1841 if (strcmp(str, "off") == 0)
1842 kmemleak_disable();
Jason Baronab0155a2010-07-19 11:54:17 +01001843 else if (strcmp(str, "on") == 0)
1844 kmemleak_skip_disable = 1;
1845 else
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001846 return -EINVAL;
1847 return 0;
1848}
1849early_param("kmemleak", kmemleak_boot_config);
1850
Catalin Marinas5f790202011-09-28 12:17:03 +01001851static void __init print_log_trace(struct early_log *log)
1852{
1853 struct stack_trace trace;
1854
1855 trace.nr_entries = log->trace_len;
1856 trace.entries = log->trace;
1857
1858 pr_notice("Early log backtrace:\n");
1859 print_stack_trace(&trace, 2);
1860}
1861
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001862/*
Catalin Marinas20301172009-06-17 18:29:04 +01001863 * Kmemleak initialization.
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001864 */
1865void __init kmemleak_init(void)
1866{
1867 int i;
1868 unsigned long flags;
1869
Jason Baronab0155a2010-07-19 11:54:17 +01001870#ifdef CONFIG_DEBUG_KMEMLEAK_DEFAULT_OFF
1871 if (!kmemleak_skip_disable) {
Catalin Marinas3551a922014-05-09 15:36:59 -07001872 kmemleak_early_log = 0;
Jason Baronab0155a2010-07-19 11:54:17 +01001873 kmemleak_disable();
1874 return;
1875 }
1876#endif
1877
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001878 jiffies_min_age = msecs_to_jiffies(MSECS_MIN_AGE);
1879 jiffies_scan_wait = msecs_to_jiffies(SECS_SCAN_WAIT * 1000);
1880
1881 object_cache = KMEM_CACHE(kmemleak_object, SLAB_NOLEAKTRACE);
1882 scan_area_cache = KMEM_CACHE(kmemleak_scan_area, SLAB_NOLEAKTRACE);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001883
Catalin Marinasb6693002011-09-28 17:22:56 +01001884 if (crt_early_log >= ARRAY_SIZE(early_log))
1885 pr_warning("Early log buffer exceeded (%d), please increase "
1886 "DEBUG_KMEMLEAK_EARLY_LOG_SIZE\n", crt_early_log);
1887
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001888 /* the kernel is still in UP mode, so disabling the IRQs is enough */
1889 local_irq_save(flags);
Catalin Marinas3551a922014-05-09 15:36:59 -07001890 kmemleak_early_log = 0;
Li Zefan8910ae82014-04-03 14:46:29 -07001891 if (kmemleak_error) {
Catalin Marinasb6693002011-09-28 17:22:56 +01001892 local_irq_restore(flags);
1893 return;
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -07001894 } else {
Li Zefan8910ae82014-04-03 14:46:29 -07001895 kmemleak_enabled = 1;
Catalin Marinasc5f3b1a2015-06-24 16:58:26 -07001896 kmemleak_free_enabled = 1;
1897 }
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001898 local_irq_restore(flags);
1899
1900 /*
1901 * This is the point where tracking allocations is safe. Automatic
1902 * scanning is started during the late initcall. Add the early logged
1903 * callbacks to the kmemleak infrastructure.
1904 */
1905 for (i = 0; i < crt_early_log; i++) {
1906 struct early_log *log = &early_log[i];
1907
1908 switch (log->op_type) {
1909 case KMEMLEAK_ALLOC:
Catalin Marinasfd678962009-08-27 14:29:17 +01001910 early_alloc(log);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001911 break;
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001912 case KMEMLEAK_ALLOC_PERCPU:
1913 early_alloc_percpu(log);
1914 break;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001915 case KMEMLEAK_FREE:
1916 kmemleak_free(log->ptr);
1917 break;
Catalin Marinas53238a62009-07-07 10:33:00 +01001918 case KMEMLEAK_FREE_PART:
1919 kmemleak_free_part(log->ptr, log->size);
1920 break;
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001921 case KMEMLEAK_FREE_PERCPU:
1922 kmemleak_free_percpu(log->ptr);
1923 break;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001924 case KMEMLEAK_NOT_LEAK:
1925 kmemleak_not_leak(log->ptr);
1926 break;
1927 case KMEMLEAK_IGNORE:
1928 kmemleak_ignore(log->ptr);
1929 break;
1930 case KMEMLEAK_SCAN_AREA:
Catalin Marinasc017b4b2009-10-28 13:33:09 +00001931 kmemleak_scan_area(log->ptr, log->size, GFP_KERNEL);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001932 break;
1933 case KMEMLEAK_NO_SCAN:
1934 kmemleak_no_scan(log->ptr);
1935 break;
1936 default:
Catalin Marinas5f790202011-09-28 12:17:03 +01001937 kmemleak_warn("Unknown early log operation: %d\n",
1938 log->op_type);
1939 }
1940
Li Zefan8910ae82014-04-03 14:46:29 -07001941 if (kmemleak_warning) {
Catalin Marinas5f790202011-09-28 12:17:03 +01001942 print_log_trace(log);
Li Zefan8910ae82014-04-03 14:46:29 -07001943 kmemleak_warning = 0;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001944 }
1945 }
1946}
1947
1948/*
1949 * Late initialization function.
1950 */
1951static int __init kmemleak_late_init(void)
1952{
1953 struct dentry *dentry;
1954
Li Zefan8910ae82014-04-03 14:46:29 -07001955 kmemleak_initialized = 1;
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001956
Li Zefan8910ae82014-04-03 14:46:29 -07001957 if (kmemleak_error) {
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001958 /*
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001959 * Some error occurred and kmemleak was disabled. There is a
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001960 * small chance that kmemleak_disable() was called immediately
1961 * after setting kmemleak_initialized and we may end up with
1962 * two clean-up threads but serialized by scan_mutex.
1963 */
Catalin Marinas179a8102009-09-07 10:14:42 +01001964 schedule_work(&cleanup_work);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001965 return -ENOMEM;
1966 }
1967
1968 dentry = debugfs_create_file("kmemleak", S_IRUGO, NULL, NULL,
1969 &kmemleak_fops);
1970 if (!dentry)
Joe Perchesae281062009-06-23 14:40:26 +01001971 pr_warning("Failed to create the debugfs kmemleak file\n");
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001972 mutex_lock(&scan_mutex);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001973 start_scan_thread();
Catalin Marinas4698c1f2009-06-26 17:38:27 +01001974 mutex_unlock(&scan_mutex);
Catalin Marinas3c7b4e62009-06-11 13:22:39 +01001975
1976 pr_info("Kernel memory leak detector initialized\n");
1977
1978 return 0;
1979}
1980late_initcall(kmemleak_late_init);