blob: b9c61bda9029d15db22d242d1b21d875945102b2 [file] [log] [blame]
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301/*
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01002 * User-space Probes (UProbes)
Srikar Dronamraju2b144492012-02-09 14:56:42 +05303 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
17 *
Ingo Molnar35aa6212012-02-22 11:37:29 +010018 * Copyright (C) IBM Corporation, 2008-2012
Srikar Dronamraju2b144492012-02-09 14:56:42 +053019 * Authors:
20 * Srikar Dronamraju
21 * Jim Keniston
Ingo Molnar35aa6212012-02-22 11:37:29 +010022 * Copyright (C) 2011-2012 Red Hat, Inc., Peter Zijlstra <pzijlstr@redhat.com>
Srikar Dronamraju2b144492012-02-09 14:56:42 +053023 */
24
25#include <linux/kernel.h>
26#include <linux/highmem.h>
27#include <linux/pagemap.h> /* read_mapping_page */
28#include <linux/slab.h>
29#include <linux/sched.h>
30#include <linux/rmap.h> /* anon_vma_prepare */
31#include <linux/mmu_notifier.h> /* set_pte_at_notify */
32#include <linux/swap.h> /* try_to_free_swap */
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +053033#include <linux/ptrace.h> /* user_enable_single_step */
34#include <linux/kdebug.h> /* notifier mechanism */
Ingo Molnar7b2d81d2012-02-17 09:27:41 +010035
Srikar Dronamraju2b144492012-02-09 14:56:42 +053036#include <linux/uprobes.h>
37
Srikar Dronamrajud4b3b632012-03-30 23:56:31 +053038#define UINSNS_PER_PAGE (PAGE_SIZE/UPROBE_XOL_SLOT_BYTES)
39#define MAX_UPROBE_XOL_SLOTS UINSNS_PER_PAGE
40
Srikar Dronamraju2b144492012-02-09 14:56:42 +053041static struct rb_root uprobes_tree = RB_ROOT;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +010042
Srikar Dronamraju2b144492012-02-09 14:56:42 +053043static DEFINE_SPINLOCK(uprobes_treelock); /* serialize rbtree access */
44
45#define UPROBES_HASH_SZ 13
Ingo Molnar7b2d81d2012-02-17 09:27:41 +010046
Peter Zijlstrac5784de2012-06-15 17:43:39 +020047/*
48 * We need separate register/unregister and mmap/munmap lock hashes because
49 * of mmap_sem nesting.
50 *
51 * uprobe_register() needs to install probes on (potentially) all processes
52 * and thus needs to acquire multiple mmap_sems (consequtively, not
53 * concurrently), whereas uprobe_mmap() is called while holding mmap_sem
54 * for the particular process doing the mmap.
55 *
56 * uprobe_register()->register_for_each_vma() needs to drop/acquire mmap_sem
57 * because of lock order against i_mmap_mutex. This means there's a hole in
58 * the register vma iteration where a mmap() can happen.
59 *
60 * Thus uprobe_register() can race with uprobe_mmap() and we can try and
61 * install a probe where one is already installed.
62 */
63
Srikar Dronamraju2b144492012-02-09 14:56:42 +053064/* serialize (un)register */
65static struct mutex uprobes_mutex[UPROBES_HASH_SZ];
Ingo Molnar7b2d81d2012-02-17 09:27:41 +010066
67#define uprobes_hash(v) (&uprobes_mutex[((unsigned long)(v)) % UPROBES_HASH_SZ])
Srikar Dronamraju2b144492012-02-09 14:56:42 +053068
69/* serialize uprobe->pending_list */
70static struct mutex uprobes_mmap_mutex[UPROBES_HASH_SZ];
Ingo Molnar7b2d81d2012-02-17 09:27:41 +010071#define uprobes_mmap_hash(v) (&uprobes_mmap_mutex[((unsigned long)(v)) % UPROBES_HASH_SZ])
Srikar Dronamraju2b144492012-02-09 14:56:42 +053072
73/*
Ingo Molnar7b2d81d2012-02-17 09:27:41 +010074 * uprobe_events allows us to skip the uprobe_mmap if there are no uprobe
Srikar Dronamraju2b144492012-02-09 14:56:42 +053075 * events active at this time. Probably a fine grained per inode count is
76 * better?
77 */
78static atomic_t uprobe_events = ATOMIC_INIT(0);
79
Srikar Dronamraju3ff54ef2012-02-22 14:46:02 +053080struct uprobe {
81 struct rb_node rb_node; /* node in the rb tree */
82 atomic_t ref;
83 struct rw_semaphore consumer_rwsem;
84 struct list_head pending_list;
85 struct uprobe_consumer *consumers;
86 struct inode *inode; /* Also hold a ref to inode */
87 loff_t offset;
88 int flags;
89 struct arch_uprobe arch;
90};
91
Srikar Dronamraju2b144492012-02-09 14:56:42 +053092/*
93 * valid_vma: Verify if the specified vma is an executable vma
94 * Relax restrictions while unregistering: vm_flags might have
95 * changed after breakpoint was inserted.
96 * - is_register: indicates if we are in register context.
97 * - Return 1 if the specified virtual address is in an
98 * executable vma.
99 */
100static bool valid_vma(struct vm_area_struct *vma, bool is_register)
101{
102 if (!vma->vm_file)
103 return false;
104
105 if (!is_register)
106 return true;
107
Oleg Nesterovea131372012-06-15 17:43:22 +0200108 if ((vma->vm_flags & (VM_HUGETLB|VM_READ|VM_WRITE|VM_EXEC|VM_SHARED))
109 == (VM_READ|VM_EXEC))
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530110 return true;
111
112 return false;
113}
114
115static loff_t vma_address(struct vm_area_struct *vma, loff_t offset)
116{
117 loff_t vaddr;
118
119 vaddr = vma->vm_start + offset;
120 vaddr -= vma->vm_pgoff << PAGE_SHIFT;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100121
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530122 return vaddr;
123}
124
125/**
126 * __replace_page - replace page in vma by new page.
127 * based on replace_page in mm/ksm.c
128 *
129 * @vma: vma that holds the pte pointing to page
130 * @page: the cowed page we are replacing by kpage
131 * @kpage: the modified page we replace page by
132 *
133 * Returns 0 on success, -EFAULT on failure.
134 */
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100135static int __replace_page(struct vm_area_struct *vma, struct page *page, struct page *kpage)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530136{
137 struct mm_struct *mm = vma->vm_mm;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530138 unsigned long addr;
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200139 spinlock_t *ptl;
140 pte_t *ptep;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530141
142 addr = page_address_in_vma(page, vma);
143 if (addr == -EFAULT)
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200144 return -EFAULT;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530145
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200146 ptep = page_check_address(page, mm, addr, &ptl, 0);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530147 if (!ptep)
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200148 return -EAGAIN;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530149
150 get_page(kpage);
151 page_add_new_anon_rmap(kpage, vma, addr);
152
Srikar Dronamraju7396fa82012-04-11 16:05:16 +0530153 if (!PageAnon(page)) {
154 dec_mm_counter(mm, MM_FILEPAGES);
155 inc_mm_counter(mm, MM_ANONPAGES);
156 }
157
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530158 flush_cache_page(vma, addr, pte_pfn(*ptep));
159 ptep_clear_flush(vma, addr, ptep);
160 set_pte_at_notify(mm, addr, ptep, mk_pte(kpage, vma->vm_page_prot));
161
162 page_remove_rmap(page);
163 if (!page_mapped(page))
164 try_to_free_swap(page);
165 put_page(page);
166 pte_unmap_unlock(ptep, ptl);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530167
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200168 return 0;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530169}
170
171/**
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530172 * is_swbp_insn - check if instruction is breakpoint instruction.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530173 * @insn: instruction to be checked.
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530174 * Default implementation of is_swbp_insn
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530175 * Returns true if @insn is a breakpoint instruction.
176 */
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530177bool __weak is_swbp_insn(uprobe_opcode_t *insn)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530178{
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530179 return *insn == UPROBE_SWBP_INSN;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530180}
181
182/*
183 * NOTE:
184 * Expect the breakpoint instruction to be the smallest size instruction for
185 * the architecture. If an arch has variable length instruction and the
186 * breakpoint instruction is not of the smallest length instruction
187 * supported by that architecture then we need to modify read_opcode /
188 * write_opcode accordingly. This would never be a problem for archs that
189 * have fixed length instructions.
190 */
191
192/*
193 * write_opcode - write the opcode at a given virtual address.
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530194 * @auprobe: arch breakpointing information.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530195 * @mm: the probed process address space.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530196 * @vaddr: the virtual address to store the opcode.
197 * @opcode: opcode to be written at @vaddr.
198 *
199 * Called with mm->mmap_sem held (for read and with a reference to
200 * mm).
201 *
202 * For mm @mm, write the opcode at @vaddr.
203 * Return 0 (success) or a negative errno.
204 */
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530205static int write_opcode(struct arch_uprobe *auprobe, struct mm_struct *mm,
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530206 unsigned long vaddr, uprobe_opcode_t opcode)
207{
208 struct page *old_page, *new_page;
209 struct address_space *mapping;
210 void *vaddr_old, *vaddr_new;
211 struct vm_area_struct *vma;
Srikar Dronamraju3ff54ef2012-02-22 14:46:02 +0530212 struct uprobe *uprobe;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530213 int ret;
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200214retry:
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530215 /* Read the page with vaddr into memory */
216 ret = get_user_pages(NULL, mm, vaddr, 1, 0, 0, &old_page, &vma);
217 if (ret <= 0)
218 return ret;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100219
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530220 ret = -EINVAL;
221
222 /*
223 * We are interested in text pages only. Our pages of interest
224 * should be mapped for read and execute only. We desist from
225 * adding probes in write mapped pages since the breakpoints
226 * might end up in the file copy.
227 */
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530228 if (!valid_vma(vma, is_swbp_insn(&opcode)))
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530229 goto put_out;
230
Srikar Dronamraju3ff54ef2012-02-22 14:46:02 +0530231 uprobe = container_of(auprobe, struct uprobe, arch);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530232 mapping = uprobe->inode->i_mapping;
233 if (mapping != vma->vm_file->f_mapping)
234 goto put_out;
235
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530236 ret = -ENOMEM;
237 new_page = alloc_page_vma(GFP_HIGHUSER_MOVABLE, vma, vaddr);
238 if (!new_page)
239 goto put_out;
240
241 __SetPageUptodate(new_page);
242
243 /*
244 * lock page will serialize against do_wp_page()'s
245 * PageAnon() handling
246 */
247 lock_page(old_page);
248 /* copy the page now that we've got it stable */
249 vaddr_old = kmap_atomic(old_page);
250 vaddr_new = kmap_atomic(new_page);
251
252 memcpy(vaddr_new, vaddr_old, PAGE_SIZE);
Oleg Nesterovd9c4a302012-06-15 17:43:50 +0200253 memcpy(vaddr_new + (vaddr & ~PAGE_MASK), &opcode, UPROBE_SWBP_INSN_SIZE);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530254
255 kunmap_atomic(vaddr_new);
256 kunmap_atomic(vaddr_old);
257
258 ret = anon_vma_prepare(vma);
259 if (ret)
260 goto unlock_out;
261
262 lock_page(new_page);
263 ret = __replace_page(vma, old_page, new_page);
264 unlock_page(new_page);
265
266unlock_out:
267 unlock_page(old_page);
268 page_cache_release(new_page);
269
270put_out:
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100271 put_page(old_page);
272
Oleg Nesterov5323ce72012-06-15 17:43:28 +0200273 if (unlikely(ret == -EAGAIN))
274 goto retry;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530275 return ret;
276}
277
278/**
279 * read_opcode - read the opcode at a given virtual address.
280 * @mm: the probed process address space.
281 * @vaddr: the virtual address to read the opcode.
282 * @opcode: location to store the read opcode.
283 *
284 * Called with mm->mmap_sem held (for read and with a reference to
285 * mm.
286 *
287 * For mm @mm, read the opcode at @vaddr and store it in @opcode.
288 * Return 0 (success) or a negative errno.
289 */
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100290static int read_opcode(struct mm_struct *mm, unsigned long vaddr, uprobe_opcode_t *opcode)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530291{
292 struct page *page;
293 void *vaddr_new;
294 int ret;
295
Oleg Nesterova3d7bb42012-05-29 21:27:59 +0200296 ret = get_user_pages(NULL, mm, vaddr, 1, 0, 1, &page, NULL);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530297 if (ret <= 0)
298 return ret;
299
300 lock_page(page);
301 vaddr_new = kmap_atomic(page);
302 vaddr &= ~PAGE_MASK;
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530303 memcpy(opcode, vaddr_new + vaddr, UPROBE_SWBP_INSN_SIZE);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530304 kunmap_atomic(vaddr_new);
305 unlock_page(page);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100306
307 put_page(page);
308
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530309 return 0;
310}
311
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530312static int is_swbp_at_addr(struct mm_struct *mm, unsigned long vaddr)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530313{
314 uprobe_opcode_t opcode;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100315 int result;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530316
Oleg Nesterovc00b2752012-05-29 21:27:44 +0200317 if (current->mm == mm) {
318 pagefault_disable();
319 result = __copy_from_user_inatomic(&opcode, (void __user*)vaddr,
320 sizeof(opcode));
321 pagefault_enable();
322
323 if (likely(result == 0))
324 goto out;
325 }
326
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100327 result = read_opcode(mm, vaddr, &opcode);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530328 if (result)
329 return result;
Oleg Nesterovc00b2752012-05-29 21:27:44 +0200330out:
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530331 if (is_swbp_insn(&opcode))
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530332 return 1;
333
334 return 0;
335}
336
337/**
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530338 * set_swbp - store breakpoint at a given address.
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530339 * @auprobe: arch specific probepoint information.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530340 * @mm: the probed process address space.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530341 * @vaddr: the virtual address to insert the opcode.
342 *
343 * For mm @mm, store the breakpoint instruction at @vaddr.
344 * Return 0 (success) or a negative errno.
345 */
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530346int __weak set_swbp(struct arch_uprobe *auprobe, struct mm_struct *mm, unsigned long vaddr)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530347{
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100348 int result;
Peter Zijlstrac5784de2012-06-15 17:43:39 +0200349 /*
350 * See the comment near uprobes_hash().
351 */
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530352 result = is_swbp_at_addr(mm, vaddr);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530353 if (result == 1)
354 return -EEXIST;
355
356 if (result)
357 return result;
358
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530359 return write_opcode(auprobe, mm, vaddr, UPROBE_SWBP_INSN);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530360}
361
362/**
363 * set_orig_insn - Restore the original instruction.
364 * @mm: the probed process address space.
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530365 * @auprobe: arch specific probepoint information.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530366 * @vaddr: the virtual address to insert the opcode.
367 * @verify: if true, verify existance of breakpoint instruction.
368 *
369 * For mm @mm, restore the original opcode (opcode) at @vaddr.
370 * Return 0 (success) or a negative errno.
371 */
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100372int __weak
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530373set_orig_insn(struct arch_uprobe *auprobe, struct mm_struct *mm, unsigned long vaddr, bool verify)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530374{
375 if (verify) {
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100376 int result;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530377
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530378 result = is_swbp_at_addr(mm, vaddr);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530379 if (!result)
380 return -EINVAL;
381
382 if (result != 1)
383 return result;
384 }
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530385 return write_opcode(auprobe, mm, vaddr, *(uprobe_opcode_t *)auprobe->insn);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530386}
387
388static int match_uprobe(struct uprobe *l, struct uprobe *r)
389{
390 if (l->inode < r->inode)
391 return -1;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100392
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530393 if (l->inode > r->inode)
394 return 1;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530395
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100396 if (l->offset < r->offset)
397 return -1;
398
399 if (l->offset > r->offset)
400 return 1;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530401
402 return 0;
403}
404
405static struct uprobe *__find_uprobe(struct inode *inode, loff_t offset)
406{
407 struct uprobe u = { .inode = inode, .offset = offset };
408 struct rb_node *n = uprobes_tree.rb_node;
409 struct uprobe *uprobe;
410 int match;
411
412 while (n) {
413 uprobe = rb_entry(n, struct uprobe, rb_node);
414 match = match_uprobe(&u, uprobe);
415 if (!match) {
416 atomic_inc(&uprobe->ref);
417 return uprobe;
418 }
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100419
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530420 if (match < 0)
421 n = n->rb_left;
422 else
423 n = n->rb_right;
424 }
425 return NULL;
426}
427
428/*
429 * Find a uprobe corresponding to a given inode:offset
430 * Acquires uprobes_treelock
431 */
432static struct uprobe *find_uprobe(struct inode *inode, loff_t offset)
433{
434 struct uprobe *uprobe;
435 unsigned long flags;
436
437 spin_lock_irqsave(&uprobes_treelock, flags);
438 uprobe = __find_uprobe(inode, offset);
439 spin_unlock_irqrestore(&uprobes_treelock, flags);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100440
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530441 return uprobe;
442}
443
444static struct uprobe *__insert_uprobe(struct uprobe *uprobe)
445{
446 struct rb_node **p = &uprobes_tree.rb_node;
447 struct rb_node *parent = NULL;
448 struct uprobe *u;
449 int match;
450
451 while (*p) {
452 parent = *p;
453 u = rb_entry(parent, struct uprobe, rb_node);
454 match = match_uprobe(uprobe, u);
455 if (!match) {
456 atomic_inc(&u->ref);
457 return u;
458 }
459
460 if (match < 0)
461 p = &parent->rb_left;
462 else
463 p = &parent->rb_right;
464
465 }
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100466
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530467 u = NULL;
468 rb_link_node(&uprobe->rb_node, parent, p);
469 rb_insert_color(&uprobe->rb_node, &uprobes_tree);
470 /* get access + creation ref */
471 atomic_set(&uprobe->ref, 2);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100472
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530473 return u;
474}
475
476/*
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100477 * Acquire uprobes_treelock.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530478 * Matching uprobe already exists in rbtree;
479 * increment (access refcount) and return the matching uprobe.
480 *
481 * No matching uprobe; insert the uprobe in rb_tree;
482 * get a double refcount (access + creation) and return NULL.
483 */
484static struct uprobe *insert_uprobe(struct uprobe *uprobe)
485{
486 unsigned long flags;
487 struct uprobe *u;
488
489 spin_lock_irqsave(&uprobes_treelock, flags);
490 u = __insert_uprobe(uprobe);
491 spin_unlock_irqrestore(&uprobes_treelock, flags);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100492
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +0530493 /* For now assume that the instruction need not be single-stepped */
494 uprobe->flags |= UPROBE_SKIP_SSTEP;
495
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530496 return u;
497}
498
499static void put_uprobe(struct uprobe *uprobe)
500{
501 if (atomic_dec_and_test(&uprobe->ref))
502 kfree(uprobe);
503}
504
505static struct uprobe *alloc_uprobe(struct inode *inode, loff_t offset)
506{
507 struct uprobe *uprobe, *cur_uprobe;
508
509 uprobe = kzalloc(sizeof(struct uprobe), GFP_KERNEL);
510 if (!uprobe)
511 return NULL;
512
513 uprobe->inode = igrab(inode);
514 uprobe->offset = offset;
515 init_rwsem(&uprobe->consumer_rwsem);
516 INIT_LIST_HEAD(&uprobe->pending_list);
517
518 /* add to uprobes_tree, sorted on inode:offset */
519 cur_uprobe = insert_uprobe(uprobe);
520
521 /* a uprobe exists for this inode:offset combination */
522 if (cur_uprobe) {
523 kfree(uprobe);
524 uprobe = cur_uprobe;
525 iput(inode);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100526 } else {
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530527 atomic_inc(&uprobe_events);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100528 }
529
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530530 return uprobe;
531}
532
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +0530533static void handler_chain(struct uprobe *uprobe, struct pt_regs *regs)
534{
535 struct uprobe_consumer *uc;
536
537 if (!(uprobe->flags & UPROBE_RUN_HANDLER))
538 return;
539
540 down_read(&uprobe->consumer_rwsem);
541 for (uc = uprobe->consumers; uc; uc = uc->next) {
542 if (!uc->filter || uc->filter(uc, current))
543 uc->handler(uc, regs);
544 }
545 up_read(&uprobe->consumer_rwsem);
546}
547
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530548/* Returns the previous consumer */
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100549static struct uprobe_consumer *
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530550consumer_add(struct uprobe *uprobe, struct uprobe_consumer *uc)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530551{
552 down_write(&uprobe->consumer_rwsem);
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530553 uc->next = uprobe->consumers;
554 uprobe->consumers = uc;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530555 up_write(&uprobe->consumer_rwsem);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100556
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530557 return uc->next;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530558}
559
560/*
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530561 * For uprobe @uprobe, delete the consumer @uc.
562 * Return true if the @uc is deleted successfully
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530563 * or return false.
564 */
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530565static bool consumer_del(struct uprobe *uprobe, struct uprobe_consumer *uc)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530566{
567 struct uprobe_consumer **con;
568 bool ret = false;
569
570 down_write(&uprobe->consumer_rwsem);
571 for (con = &uprobe->consumers; *con; con = &(*con)->next) {
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530572 if (*con == uc) {
573 *con = uc->next;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530574 ret = true;
575 break;
576 }
577 }
578 up_write(&uprobe->consumer_rwsem);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100579
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530580 return ret;
581}
582
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530583static int
Oleg Nesterovd4366152012-06-15 17:43:42 +0200584__copy_insn(struct address_space *mapping, struct file *filp, char *insn,
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530585 unsigned long nbytes, unsigned long offset)
586{
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530587 struct page *page;
588 void *vaddr;
589 unsigned long off1;
590 unsigned long idx;
591
592 if (!filp)
593 return -EINVAL;
594
Oleg Nesterovcc359d12012-06-15 17:43:25 +0200595 if (!mapping->a_ops->readpage)
596 return -EIO;
597
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530598 idx = (unsigned long)(offset >> PAGE_CACHE_SHIFT);
599 off1 = offset &= ~PAGE_MASK;
600
601 /*
602 * Ensure that the page that has the original instruction is
603 * populated and in page-cache.
604 */
605 page = read_mapping_page(mapping, idx, filp);
606 if (IS_ERR(page))
607 return PTR_ERR(page);
608
609 vaddr = kmap_atomic(page);
610 memcpy(insn, vaddr + off1, nbytes);
611 kunmap_atomic(vaddr);
612 page_cache_release(page);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100613
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530614 return 0;
615}
616
Oleg Nesterovd4366152012-06-15 17:43:42 +0200617static int copy_insn(struct uprobe *uprobe, struct file *filp)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530618{
619 struct address_space *mapping;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530620 unsigned long nbytes;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100621 int bytes;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530622
Oleg Nesterovd4366152012-06-15 17:43:42 +0200623 nbytes = PAGE_SIZE - (uprobe->offset & ~PAGE_MASK);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530624 mapping = uprobe->inode->i_mapping;
625
626 /* Instruction at end of binary; copy only available bytes */
627 if (uprobe->offset + MAX_UINSN_BYTES > uprobe->inode->i_size)
628 bytes = uprobe->inode->i_size - uprobe->offset;
629 else
630 bytes = MAX_UINSN_BYTES;
631
632 /* Instruction at the page-boundary; copy bytes in second page */
633 if (nbytes < bytes) {
Oleg Nesterovfc36f592012-06-15 17:43:44 +0200634 int err = __copy_insn(mapping, filp, uprobe->arch.insn + nbytes,
635 bytes - nbytes, uprobe->offset + nbytes);
636 if (err)
637 return err;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530638 bytes = nbytes;
639 }
Oleg Nesterovd4366152012-06-15 17:43:42 +0200640 return __copy_insn(mapping, filp, uprobe->arch.insn, bytes, uprobe->offset);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530641}
642
Srikar Dronamraju682968e2012-03-30 23:56:46 +0530643/*
644 * How mm->uprobes_state.count gets updated
645 * uprobe_mmap() increments the count if
646 * - it successfully adds a breakpoint.
647 * - it cannot add a breakpoint, but sees that there is a underlying
648 * breakpoint (via a is_swbp_at_addr()).
649 *
650 * uprobe_munmap() decrements the count if
651 * - it sees a underlying breakpoint, (via is_swbp_at_addr)
652 * (Subsequent uprobe_unregister wouldnt find the breakpoint
653 * unless a uprobe_mmap kicks in, since the old vma would be
654 * dropped just after uprobe_munmap.)
655 *
656 * uprobe_register increments the count if:
657 * - it successfully adds a breakpoint.
658 *
659 * uprobe_unregister decrements the count if:
660 * - it sees a underlying breakpoint and removes successfully.
661 * (via is_swbp_at_addr)
662 * (Subsequent uprobe_munmap wouldnt find the breakpoint
663 * since there is no underlying breakpoint after the
664 * breakpoint removal.)
665 */
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530666static int
667install_breakpoint(struct uprobe *uprobe, struct mm_struct *mm,
668 struct vm_area_struct *vma, loff_t vaddr)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530669{
670 unsigned long addr;
671 int ret;
672
673 /*
674 * If probe is being deleted, unregister thread could be done with
675 * the vma-rmap-walk through. Adding a probe now can be fatal since
676 * nobody will be able to cleanup. Also we could be from fork or
677 * mremap path, where the probe might have already been inserted.
678 * Hence behave as if probe already existed.
679 */
680 if (!uprobe->consumers)
681 return -EEXIST;
682
683 addr = (unsigned long)vaddr;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100684
Srikar Dronamraju900771a2012-03-12 14:55:14 +0530685 if (!(uprobe->flags & UPROBE_COPY_INSN)) {
Oleg Nesterovd4366152012-06-15 17:43:42 +0200686 ret = copy_insn(uprobe, vma->vm_file);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530687 if (ret)
688 return ret;
689
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530690 if (is_swbp_insn((uprobe_opcode_t *)uprobe->arch.insn))
Oleg Nesterovc1914a02012-06-15 17:43:31 +0200691 return -ENOTSUPP;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530692
Ananth N Mavinakayanahalli7eb9ba52012-06-08 15:02:57 +0530693 ret = arch_uprobe_analyze_insn(&uprobe->arch, mm, addr);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530694 if (ret)
695 return ret;
696
Oleg Nesterovd9c4a302012-06-15 17:43:50 +0200697 /* write_opcode() assumes we don't cross page boundary */
698 BUG_ON((uprobe->offset & ~PAGE_MASK) +
699 UPROBE_SWBP_INSN_SIZE > PAGE_SIZE);
700
Srikar Dronamraju900771a2012-03-12 14:55:14 +0530701 uprobe->flags |= UPROBE_COPY_INSN;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530702 }
Srikar Dronamraju682968e2012-03-30 23:56:46 +0530703
704 /*
705 * Ideally, should be updating the probe count after the breakpoint
706 * has been successfully inserted. However a thread could hit the
707 * breakpoint we just inserted even before the probe count is
708 * incremented. If this is the first breakpoint placed, breakpoint
709 * notifier might ignore uprobes and pass the trap to the thread.
710 * Hence increment before and decrement on failure.
711 */
712 atomic_inc(&mm->uprobes_state.count);
Srikar Dronamraju5cb4ac32012-03-12 14:55:45 +0530713 ret = set_swbp(&uprobe->arch, mm, addr);
Srikar Dronamraju682968e2012-03-30 23:56:46 +0530714 if (ret)
715 atomic_dec(&mm->uprobes_state.count);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530716
717 return ret;
718}
719
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530720static void
721remove_breakpoint(struct uprobe *uprobe, struct mm_struct *mm, loff_t vaddr)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530722{
Srikar Dronamraju682968e2012-03-30 23:56:46 +0530723 if (!set_orig_insn(&uprobe->arch, mm, (unsigned long)vaddr, true))
724 atomic_dec(&mm->uprobes_state.count);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530725}
726
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +0530727/*
Oleg Nesterov778b0322012-05-29 21:30:08 +0200728 * There could be threads that have already hit the breakpoint. They
729 * will recheck the current insn and restart if find_uprobe() fails.
730 * See find_active_uprobe().
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +0530731 */
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530732static void delete_uprobe(struct uprobe *uprobe)
733{
734 unsigned long flags;
735
736 spin_lock_irqsave(&uprobes_treelock, flags);
737 rb_erase(&uprobe->rb_node, &uprobes_tree);
738 spin_unlock_irqrestore(&uprobes_treelock, flags);
739 iput(uprobe->inode);
740 put_uprobe(uprobe);
741 atomic_dec(&uprobe_events);
742}
743
Oleg Nesterov26872092012-06-15 17:43:33 +0200744struct map_info {
745 struct map_info *next;
746 struct mm_struct *mm;
747 loff_t vaddr;
748};
749
750static inline struct map_info *free_map_info(struct map_info *info)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530751{
Oleg Nesterov26872092012-06-15 17:43:33 +0200752 struct map_info *next = info->next;
753 kfree(info);
754 return next;
755}
756
757static struct map_info *
758build_map_info(struct address_space *mapping, loff_t offset, bool is_register)
759{
760 unsigned long pgoff = offset >> PAGE_SHIFT;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530761 struct prio_tree_iter iter;
762 struct vm_area_struct *vma;
Oleg Nesterov26872092012-06-15 17:43:33 +0200763 struct map_info *curr = NULL;
764 struct map_info *prev = NULL;
765 struct map_info *info;
766 int more = 0;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100767
Oleg Nesterov26872092012-06-15 17:43:33 +0200768 again:
769 mutex_lock(&mapping->i_mmap_mutex);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530770 vma_prio_tree_foreach(vma, &iter, &mapping->i_mmap, pgoff, pgoff) {
771 if (!valid_vma(vma, is_register))
772 continue;
773
Oleg Nesterov7a5bfb62012-06-15 17:43:36 +0200774 if (!prev && !more) {
775 /*
776 * Needs GFP_NOWAIT to avoid i_mmap_mutex recursion through
777 * reclaim. This is optimistic, no harm done if it fails.
778 */
779 prev = kmalloc(sizeof(struct map_info),
780 GFP_NOWAIT | __GFP_NOMEMALLOC | __GFP_NOWARN);
781 if (prev)
782 prev->next = NULL;
783 }
Oleg Nesterov26872092012-06-15 17:43:33 +0200784 if (!prev) {
785 more++;
786 continue;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530787 }
788
Oleg Nesterov26872092012-06-15 17:43:33 +0200789 if (!atomic_inc_not_zero(&vma->vm_mm->mm_users))
790 continue;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100791
Oleg Nesterov26872092012-06-15 17:43:33 +0200792 info = prev;
793 prev = prev->next;
794 info->next = curr;
795 curr = info;
796
797 info->mm = vma->vm_mm;
798 info->vaddr = vma_address(vma, offset);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530799 }
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530800 mutex_unlock(&mapping->i_mmap_mutex);
801
Oleg Nesterov26872092012-06-15 17:43:33 +0200802 if (!more)
803 goto out;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100804
Oleg Nesterov26872092012-06-15 17:43:33 +0200805 prev = curr;
806 while (curr) {
807 mmput(curr->mm);
808 curr = curr->next;
809 }
810
811 do {
812 info = kmalloc(sizeof(struct map_info), GFP_KERNEL);
813 if (!info) {
814 curr = ERR_PTR(-ENOMEM);
815 goto out;
816 }
817 info->next = prev;
818 prev = info;
819 } while (--more);
820
821 goto again;
822 out:
823 while (prev)
824 prev = free_map_info(prev);
825 return curr;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530826}
827
828static int register_for_each_vma(struct uprobe *uprobe, bool is_register)
829{
Oleg Nesterov26872092012-06-15 17:43:33 +0200830 struct map_info *info;
831 int err = 0;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530832
Oleg Nesterov26872092012-06-15 17:43:33 +0200833 info = build_map_info(uprobe->inode->i_mapping,
834 uprobe->offset, is_register);
835 if (IS_ERR(info))
836 return PTR_ERR(info);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100837
Oleg Nesterov26872092012-06-15 17:43:33 +0200838 while (info) {
839 struct mm_struct *mm = info->mm;
840 struct vm_area_struct *vma;
841 loff_t vaddr;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100842
Oleg Nesterov26872092012-06-15 17:43:33 +0200843 if (err)
844 goto free;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100845
Oleg Nesterov77fc4af2012-05-29 21:29:28 +0200846 down_write(&mm->mmap_sem);
Oleg Nesterov26872092012-06-15 17:43:33 +0200847 vma = find_vma(mm, (unsigned long)info->vaddr);
848 if (!vma || !valid_vma(vma, is_register))
849 goto unlock;
850
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530851 vaddr = vma_address(vma, uprobe->offset);
852 if (vma->vm_file->f_mapping->host != uprobe->inode ||
Oleg Nesterov26872092012-06-15 17:43:33 +0200853 vaddr != info->vaddr)
854 goto unlock;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530855
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530856 if (is_register) {
Oleg Nesterov26872092012-06-15 17:43:33 +0200857 err = install_breakpoint(uprobe, mm, vma, info->vaddr);
Peter Zijlstrac5784de2012-06-15 17:43:39 +0200858 /*
859 * We can race against uprobe_mmap(), see the
860 * comment near uprobe_hash().
861 */
Oleg Nesterov26872092012-06-15 17:43:33 +0200862 if (err == -EEXIST)
863 err = 0;
864 } else {
865 remove_breakpoint(uprobe, mm, info->vaddr);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530866 }
Oleg Nesterov26872092012-06-15 17:43:33 +0200867 unlock:
868 up_write(&mm->mmap_sem);
869 free:
870 mmput(mm);
871 info = free_map_info(info);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530872 }
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100873
Oleg Nesterov26872092012-06-15 17:43:33 +0200874 return err;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530875}
876
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100877static int __uprobe_register(struct uprobe *uprobe)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530878{
879 return register_for_each_vma(uprobe, true);
880}
881
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100882static void __uprobe_unregister(struct uprobe *uprobe)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530883{
884 if (!register_for_each_vma(uprobe, false))
885 delete_uprobe(uprobe);
886
887 /* TODO : cant unregister? schedule a worker thread */
888}
889
890/*
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100891 * uprobe_register - register a probe
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530892 * @inode: the file in which the probe has to be placed.
893 * @offset: offset from the start of the file.
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530894 * @uc: information on howto handle the probe..
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530895 *
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100896 * Apart from the access refcount, uprobe_register() takes a creation
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530897 * refcount (thro alloc_uprobe) if and only if this @uprobe is getting
898 * inserted into the rbtree (i.e first consumer for a @inode:@offset
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100899 * tuple). Creation refcount stops uprobe_unregister from freeing the
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530900 * @uprobe even before the register operation is complete. Creation
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530901 * refcount is released when the last @uc for the @uprobe
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530902 * unregisters.
903 *
904 * Return errno if it cannot successully install probes
905 * else return 0 (success)
906 */
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530907int uprobe_register(struct inode *inode, loff_t offset, struct uprobe_consumer *uc)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530908{
909 struct uprobe *uprobe;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100910 int ret;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530911
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530912 if (!inode || !uc || uc->next)
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100913 return -EINVAL;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530914
915 if (offset > i_size_read(inode))
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100916 return -EINVAL;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530917
918 ret = 0;
919 mutex_lock(uprobes_hash(inode));
920 uprobe = alloc_uprobe(inode, offset);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100921
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530922 if (uprobe && !consumer_add(uprobe, uc)) {
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100923 ret = __uprobe_register(uprobe);
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530924 if (ret) {
925 uprobe->consumers = NULL;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100926 __uprobe_unregister(uprobe);
927 } else {
Srikar Dronamraju900771a2012-03-12 14:55:14 +0530928 uprobe->flags |= UPROBE_RUN_HANDLER;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100929 }
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530930 }
931
932 mutex_unlock(uprobes_hash(inode));
933 put_uprobe(uprobe);
934
935 return ret;
936}
937
938/*
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100939 * uprobe_unregister - unregister a already registered probe.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530940 * @inode: the file in which the probe has to be removed.
941 * @offset: offset from the start of the file.
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530942 * @uc: identify which probe if multiple probes are colocated.
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530943 */
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530944void uprobe_unregister(struct inode *inode, loff_t offset, struct uprobe_consumer *uc)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530945{
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100946 struct uprobe *uprobe;
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530947
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530948 if (!inode || !uc)
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530949 return;
950
951 uprobe = find_uprobe(inode, offset);
952 if (!uprobe)
953 return;
954
955 mutex_lock(uprobes_hash(inode));
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530956
Srikar Dronamrajue3343e62012-03-12 14:55:30 +0530957 if (consumer_del(uprobe, uc)) {
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100958 if (!uprobe->consumers) {
959 __uprobe_unregister(uprobe);
Srikar Dronamraju900771a2012-03-12 14:55:14 +0530960 uprobe->flags &= ~UPROBE_RUN_HANDLER;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100961 }
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530962 }
963
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530964 mutex_unlock(uprobes_hash(inode));
965 if (uprobe)
966 put_uprobe(uprobe);
967}
968
969/*
970 * Of all the nodes that correspond to the given inode, return the node
971 * with the least offset.
972 */
973static struct rb_node *find_least_offset_node(struct inode *inode)
974{
975 struct uprobe u = { .inode = inode, .offset = 0};
976 struct rb_node *n = uprobes_tree.rb_node;
977 struct rb_node *close_node = NULL;
978 struct uprobe *uprobe;
979 int match;
980
981 while (n) {
982 uprobe = rb_entry(n, struct uprobe, rb_node);
983 match = match_uprobe(&u, uprobe);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100984
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530985 if (uprobe->inode == inode)
986 close_node = n;
987
988 if (!match)
989 return close_node;
990
991 if (match < 0)
992 n = n->rb_left;
993 else
994 n = n->rb_right;
995 }
Ingo Molnar7b2d81d2012-02-17 09:27:41 +0100996
Srikar Dronamraju2b144492012-02-09 14:56:42 +0530997 return close_node;
998}
999
1000/*
1001 * For a given inode, build a list of probes that need to be inserted.
1002 */
1003static void build_probe_list(struct inode *inode, struct list_head *head)
1004{
1005 struct uprobe *uprobe;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301006 unsigned long flags;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001007 struct rb_node *n;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301008
1009 spin_lock_irqsave(&uprobes_treelock, flags);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001010
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301011 n = find_least_offset_node(inode);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001012
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301013 for (; n; n = rb_next(n)) {
1014 uprobe = rb_entry(n, struct uprobe, rb_node);
1015 if (uprobe->inode != inode)
1016 break;
1017
1018 list_add(&uprobe->pending_list, head);
1019 atomic_inc(&uprobe->ref);
1020 }
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001021
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301022 spin_unlock_irqrestore(&uprobes_treelock, flags);
1023}
1024
1025/*
1026 * Called from mmap_region.
1027 * called with mm->mmap_sem acquired.
1028 *
1029 * Return -ve no if we fail to insert probes and we cannot
1030 * bail-out.
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001031 * Return 0 otherwise. i.e:
1032 *
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301033 * - successful insertion of probes
1034 * - (or) no possible probes to be inserted.
1035 * - (or) insertion of probes failed but we can bail-out.
1036 */
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001037int uprobe_mmap(struct vm_area_struct *vma)
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301038{
1039 struct list_head tmp_list;
1040 struct uprobe *uprobe, *u;
1041 struct inode *inode;
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301042 int ret, count;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301043
1044 if (!atomic_read(&uprobe_events) || !valid_vma(vma, true))
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001045 return 0;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301046
1047 inode = vma->vm_file->f_mapping->host;
1048 if (!inode)
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001049 return 0;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301050
1051 INIT_LIST_HEAD(&tmp_list);
1052 mutex_lock(uprobes_mmap_hash(inode));
1053 build_probe_list(inode, &tmp_list);
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001054
1055 ret = 0;
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301056 count = 0;
Ingo Molnar7b2d81d2012-02-17 09:27:41 +01001057
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301058 list_for_each_entry_safe(uprobe, u, &tmp_list, pending_list) {
1059 loff_t vaddr;
1060
1061 list_del(&uprobe->pending_list);
1062 if (!ret) {
1063 vaddr = vma_address(vma, uprobe->offset);
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301064
1065 if (vaddr < vma->vm_start || vaddr >= vma->vm_end) {
1066 put_uprobe(uprobe);
1067 continue;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301068 }
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301069
1070 ret = install_breakpoint(uprobe, vma->vm_mm, vma, vaddr);
Peter Zijlstrac5784de2012-06-15 17:43:39 +02001071 /*
1072 * We can race against uprobe_register(), see the
1073 * comment near uprobe_hash().
1074 */
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301075 if (ret == -EEXIST) {
1076 ret = 0;
1077
1078 if (!is_swbp_at_addr(vma->vm_mm, vaddr))
1079 continue;
1080
1081 /*
1082 * Unable to insert a breakpoint, but
1083 * breakpoint lies underneath. Increment the
1084 * probe count.
1085 */
1086 atomic_inc(&vma->vm_mm->uprobes_state.count);
1087 }
1088
1089 if (!ret)
1090 count++;
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301091 }
1092 put_uprobe(uprobe);
1093 }
1094
1095 mutex_unlock(uprobes_mmap_hash(inode));
1096
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301097 if (ret)
1098 atomic_sub(count, &vma->vm_mm->uprobes_state.count);
1099
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301100 return ret;
1101}
1102
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301103/*
1104 * Called in context of a munmap of a vma.
1105 */
Srikar Dronamrajucbc91f72012-04-11 16:05:27 +05301106void uprobe_munmap(struct vm_area_struct *vma, unsigned long start, unsigned long end)
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301107{
1108 struct list_head tmp_list;
1109 struct uprobe *uprobe, *u;
1110 struct inode *inode;
1111
1112 if (!atomic_read(&uprobe_events) || !valid_vma(vma, false))
1113 return;
1114
1115 if (!atomic_read(&vma->vm_mm->uprobes_state.count))
1116 return;
1117
1118 inode = vma->vm_file->f_mapping->host;
1119 if (!inode)
1120 return;
1121
1122 INIT_LIST_HEAD(&tmp_list);
1123 mutex_lock(uprobes_mmap_hash(inode));
1124 build_probe_list(inode, &tmp_list);
1125
1126 list_for_each_entry_safe(uprobe, u, &tmp_list, pending_list) {
1127 loff_t vaddr;
1128
1129 list_del(&uprobe->pending_list);
1130 vaddr = vma_address(vma, uprobe->offset);
1131
Srikar Dronamrajucbc91f72012-04-11 16:05:27 +05301132 if (vaddr >= start && vaddr < end) {
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301133 /*
1134 * An unregister could have removed the probe before
1135 * unmap. So check before we decrement the count.
1136 */
1137 if (is_swbp_at_addr(vma->vm_mm, vaddr) == 1)
1138 atomic_dec(&vma->vm_mm->uprobes_state.count);
1139 }
1140 put_uprobe(uprobe);
1141 }
1142 mutex_unlock(uprobes_mmap_hash(inode));
1143}
1144
Srikar Dronamrajud4b3b632012-03-30 23:56:31 +05301145/* Slot allocation for XOL */
1146static int xol_add_vma(struct xol_area *area)
1147{
1148 struct mm_struct *mm;
1149 int ret;
1150
1151 area->page = alloc_page(GFP_HIGHUSER);
1152 if (!area->page)
1153 return -ENOMEM;
1154
1155 ret = -EALREADY;
1156 mm = current->mm;
1157
1158 down_write(&mm->mmap_sem);
1159 if (mm->uprobes_state.xol_area)
1160 goto fail;
1161
1162 ret = -ENOMEM;
1163
1164 /* Try to map as high as possible, this is only a hint. */
1165 area->vaddr = get_unmapped_area(NULL, TASK_SIZE - PAGE_SIZE, PAGE_SIZE, 0, 0);
1166 if (area->vaddr & ~PAGE_MASK) {
1167 ret = area->vaddr;
1168 goto fail;
1169 }
1170
1171 ret = install_special_mapping(mm, area->vaddr, PAGE_SIZE,
1172 VM_EXEC|VM_MAYEXEC|VM_DONTCOPY|VM_IO, &area->page);
1173 if (ret)
1174 goto fail;
1175
1176 smp_wmb(); /* pairs with get_xol_area() */
1177 mm->uprobes_state.xol_area = area;
1178 ret = 0;
1179
1180fail:
1181 up_write(&mm->mmap_sem);
1182 if (ret)
1183 __free_page(area->page);
1184
1185 return ret;
1186}
1187
1188static struct xol_area *get_xol_area(struct mm_struct *mm)
1189{
1190 struct xol_area *area;
1191
1192 area = mm->uprobes_state.xol_area;
1193 smp_read_barrier_depends(); /* pairs with wmb in xol_add_vma() */
1194
1195 return area;
1196}
1197
1198/*
1199 * xol_alloc_area - Allocate process's xol_area.
1200 * This area will be used for storing instructions for execution out of
1201 * line.
1202 *
1203 * Returns the allocated area or NULL.
1204 */
1205static struct xol_area *xol_alloc_area(void)
1206{
1207 struct xol_area *area;
1208
1209 area = kzalloc(sizeof(*area), GFP_KERNEL);
1210 if (unlikely(!area))
1211 return NULL;
1212
1213 area->bitmap = kzalloc(BITS_TO_LONGS(UINSNS_PER_PAGE) * sizeof(long), GFP_KERNEL);
1214
1215 if (!area->bitmap)
1216 goto fail;
1217
1218 init_waitqueue_head(&area->wq);
1219 if (!xol_add_vma(area))
1220 return area;
1221
1222fail:
1223 kfree(area->bitmap);
1224 kfree(area);
1225
1226 return get_xol_area(current->mm);
1227}
1228
1229/*
1230 * uprobe_clear_state - Free the area allocated for slots.
1231 */
1232void uprobe_clear_state(struct mm_struct *mm)
1233{
1234 struct xol_area *area = mm->uprobes_state.xol_area;
1235
1236 if (!area)
1237 return;
1238
1239 put_page(area->page);
1240 kfree(area->bitmap);
1241 kfree(area);
1242}
1243
1244/*
1245 * uprobe_reset_state - Free the area allocated for slots.
1246 */
1247void uprobe_reset_state(struct mm_struct *mm)
1248{
1249 mm->uprobes_state.xol_area = NULL;
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301250 atomic_set(&mm->uprobes_state.count, 0);
Srikar Dronamrajud4b3b632012-03-30 23:56:31 +05301251}
1252
1253/*
1254 * - search for a free slot.
1255 */
1256static unsigned long xol_take_insn_slot(struct xol_area *area)
1257{
1258 unsigned long slot_addr;
1259 int slot_nr;
1260
1261 do {
1262 slot_nr = find_first_zero_bit(area->bitmap, UINSNS_PER_PAGE);
1263 if (slot_nr < UINSNS_PER_PAGE) {
1264 if (!test_and_set_bit(slot_nr, area->bitmap))
1265 break;
1266
1267 slot_nr = UINSNS_PER_PAGE;
1268 continue;
1269 }
1270 wait_event(area->wq, (atomic_read(&area->slot_count) < UINSNS_PER_PAGE));
1271 } while (slot_nr >= UINSNS_PER_PAGE);
1272
1273 slot_addr = area->vaddr + (slot_nr * UPROBE_XOL_SLOT_BYTES);
1274 atomic_inc(&area->slot_count);
1275
1276 return slot_addr;
1277}
1278
1279/*
1280 * xol_get_insn_slot - If was not allocated a slot, then
1281 * allocate a slot.
1282 * Returns the allocated slot address or 0.
1283 */
1284static unsigned long xol_get_insn_slot(struct uprobe *uprobe, unsigned long slot_addr)
1285{
1286 struct xol_area *area;
1287 unsigned long offset;
1288 void *vaddr;
1289
1290 area = get_xol_area(current->mm);
1291 if (!area) {
1292 area = xol_alloc_area();
1293 if (!area)
1294 return 0;
1295 }
1296 current->utask->xol_vaddr = xol_take_insn_slot(area);
1297
1298 /*
1299 * Initialize the slot if xol_vaddr points to valid
1300 * instruction slot.
1301 */
1302 if (unlikely(!current->utask->xol_vaddr))
1303 return 0;
1304
1305 current->utask->vaddr = slot_addr;
1306 offset = current->utask->xol_vaddr & ~PAGE_MASK;
1307 vaddr = kmap_atomic(area->page);
1308 memcpy(vaddr + offset, uprobe->arch.insn, MAX_UINSN_BYTES);
1309 kunmap_atomic(vaddr);
1310
1311 return current->utask->xol_vaddr;
1312}
1313
1314/*
1315 * xol_free_insn_slot - If slot was earlier allocated by
1316 * @xol_get_insn_slot(), make the slot available for
1317 * subsequent requests.
1318 */
1319static void xol_free_insn_slot(struct task_struct *tsk)
1320{
1321 struct xol_area *area;
1322 unsigned long vma_end;
1323 unsigned long slot_addr;
1324
1325 if (!tsk->mm || !tsk->mm->uprobes_state.xol_area || !tsk->utask)
1326 return;
1327
1328 slot_addr = tsk->utask->xol_vaddr;
1329
1330 if (unlikely(!slot_addr || IS_ERR_VALUE(slot_addr)))
1331 return;
1332
1333 area = tsk->mm->uprobes_state.xol_area;
1334 vma_end = area->vaddr + PAGE_SIZE;
1335 if (area->vaddr <= slot_addr && slot_addr < vma_end) {
1336 unsigned long offset;
1337 int slot_nr;
1338
1339 offset = slot_addr - area->vaddr;
1340 slot_nr = offset / UPROBE_XOL_SLOT_BYTES;
1341 if (slot_nr >= UINSNS_PER_PAGE)
1342 return;
1343
1344 clear_bit(slot_nr, area->bitmap);
1345 atomic_dec(&area->slot_count);
1346 if (waitqueue_active(&area->wq))
1347 wake_up(&area->wq);
1348
1349 tsk->utask->xol_vaddr = 0;
1350 }
1351}
1352
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301353/**
1354 * uprobe_get_swbp_addr - compute address of swbp given post-swbp regs
1355 * @regs: Reflects the saved state of the task after it has hit a breakpoint
1356 * instruction.
1357 * Return the address of the breakpoint instruction.
1358 */
1359unsigned long __weak uprobe_get_swbp_addr(struct pt_regs *regs)
1360{
1361 return instruction_pointer(regs) - UPROBE_SWBP_INSN_SIZE;
1362}
1363
1364/*
1365 * Called with no locks held.
1366 * Called in context of a exiting or a exec-ing thread.
1367 */
1368void uprobe_free_utask(struct task_struct *t)
1369{
1370 struct uprobe_task *utask = t->utask;
1371
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301372 if (!utask)
1373 return;
1374
1375 if (utask->active_uprobe)
1376 put_uprobe(utask->active_uprobe);
1377
Srikar Dronamrajud4b3b632012-03-30 23:56:31 +05301378 xol_free_insn_slot(t);
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301379 kfree(utask);
1380 t->utask = NULL;
1381}
1382
1383/*
1384 * Called in context of a new clone/fork from copy_process.
1385 */
1386void uprobe_copy_process(struct task_struct *t)
1387{
1388 t->utask = NULL;
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301389}
1390
1391/*
1392 * Allocate a uprobe_task object for the task.
1393 * Called when the thread hits a breakpoint for the first time.
1394 *
1395 * Returns:
1396 * - pointer to new uprobe_task on success
1397 * - NULL otherwise
1398 */
1399static struct uprobe_task *add_utask(void)
1400{
1401 struct uprobe_task *utask;
1402
1403 utask = kzalloc(sizeof *utask, GFP_KERNEL);
1404 if (unlikely(!utask))
1405 return NULL;
1406
1407 utask->active_uprobe = NULL;
1408 current->utask = utask;
1409 return utask;
1410}
1411
1412/* Prepare to single-step probed instruction out of line. */
1413static int
1414pre_ssout(struct uprobe *uprobe, struct pt_regs *regs, unsigned long vaddr)
1415{
Srikar Dronamrajud4b3b632012-03-30 23:56:31 +05301416 if (xol_get_insn_slot(uprobe, vaddr) && !arch_uprobe_pre_xol(&uprobe->arch, regs))
1417 return 0;
1418
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301419 return -EFAULT;
1420}
1421
1422/*
1423 * If we are singlestepping, then ensure this thread is not connected to
1424 * non-fatal signals until completion of singlestep. When xol insn itself
1425 * triggers the signal, restart the original insn even if the task is
1426 * already SIGKILL'ed (since coredump should report the correct ip). This
1427 * is even more important if the task has a handler for SIGSEGV/etc, The
1428 * _same_ instruction should be repeated again after return from the signal
1429 * handler, and SSTEP can never finish in this case.
1430 */
1431bool uprobe_deny_signal(void)
1432{
1433 struct task_struct *t = current;
1434 struct uprobe_task *utask = t->utask;
1435
1436 if (likely(!utask || !utask->active_uprobe))
1437 return false;
1438
1439 WARN_ON_ONCE(utask->state != UTASK_SSTEP);
1440
1441 if (signal_pending(t)) {
1442 spin_lock_irq(&t->sighand->siglock);
1443 clear_tsk_thread_flag(t, TIF_SIGPENDING);
1444 spin_unlock_irq(&t->sighand->siglock);
1445
1446 if (__fatal_signal_pending(t) || arch_uprobe_xol_was_trapped(t)) {
1447 utask->state = UTASK_SSTEP_TRAPPED;
1448 set_tsk_thread_flag(t, TIF_UPROBE);
1449 set_tsk_thread_flag(t, TIF_NOTIFY_RESUME);
1450 }
1451 }
1452
1453 return true;
1454}
1455
1456/*
1457 * Avoid singlestepping the original instruction if the original instruction
1458 * is a NOP or can be emulated.
1459 */
1460static bool can_skip_sstep(struct uprobe *uprobe, struct pt_regs *regs)
1461{
1462 if (arch_uprobe_skip_sstep(&uprobe->arch, regs))
1463 return true;
1464
1465 uprobe->flags &= ~UPROBE_SKIP_SSTEP;
1466 return false;
1467}
1468
Oleg Nesterovd790d342012-05-29 21:29:14 +02001469static struct uprobe *find_active_uprobe(unsigned long bp_vaddr, int *is_swbp)
Oleg Nesterov3a9ea052012-05-29 21:28:57 +02001470{
1471 struct mm_struct *mm = current->mm;
1472 struct uprobe *uprobe = NULL;
1473 struct vm_area_struct *vma;
1474
1475 down_read(&mm->mmap_sem);
1476 vma = find_vma(mm, bp_vaddr);
Oleg Nesterov3a9ea052012-05-29 21:28:57 +02001477 if (vma && vma->vm_start <= bp_vaddr) {
1478 if (valid_vma(vma, false)) {
1479 struct inode *inode;
1480 loff_t offset;
1481
1482 inode = vma->vm_file->f_mapping->host;
1483 offset = bp_vaddr - vma->vm_start;
1484 offset += (vma->vm_pgoff << PAGE_SHIFT);
1485 uprobe = find_uprobe(inode, offset);
1486 }
Oleg Nesterovd790d342012-05-29 21:29:14 +02001487
1488 if (!uprobe)
1489 *is_swbp = is_swbp_at_addr(mm, bp_vaddr);
1490 } else {
1491 *is_swbp = -EFAULT;
Oleg Nesterov3a9ea052012-05-29 21:28:57 +02001492 }
Oleg Nesterov3a9ea052012-05-29 21:28:57 +02001493 up_read(&mm->mmap_sem);
1494
1495 return uprobe;
1496}
1497
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301498/*
1499 * Run handler and ask thread to singlestep.
1500 * Ensure all non-fatal signals cannot interrupt thread while it singlesteps.
1501 */
1502static void handle_swbp(struct pt_regs *regs)
1503{
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301504 struct uprobe_task *utask;
1505 struct uprobe *uprobe;
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301506 unsigned long bp_vaddr;
Oleg Nesterov56bb4cf2012-05-29 21:29:47 +02001507 int uninitialized_var(is_swbp);
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301508
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301509 bp_vaddr = uprobe_get_swbp_addr(regs);
Oleg Nesterovd790d342012-05-29 21:29:14 +02001510 uprobe = find_active_uprobe(bp_vaddr, &is_swbp);
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301511
1512 if (!uprobe) {
Oleg Nesterov56bb4cf2012-05-29 21:29:47 +02001513 if (is_swbp > 0) {
1514 /* No matching uprobe; signal SIGTRAP. */
1515 send_sig(SIGTRAP, current, 0);
1516 } else {
1517 /*
1518 * Either we raced with uprobe_unregister() or we can't
1519 * access this memory. The latter is only possible if
1520 * another thread plays with our ->mm. In both cases
1521 * we can simply restart. If this vma was unmapped we
1522 * can pretend this insn was not executed yet and get
1523 * the (correct) SIGSEGV after restart.
1524 */
1525 instruction_pointer_set(regs, bp_vaddr);
1526 }
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301527 return;
1528 }
1529
1530 utask = current->utask;
1531 if (!utask) {
1532 utask = add_utask();
1533 /* Cannot allocate; re-execute the instruction. */
1534 if (!utask)
1535 goto cleanup_ret;
1536 }
1537 utask->active_uprobe = uprobe;
1538 handler_chain(uprobe, regs);
1539 if (uprobe->flags & UPROBE_SKIP_SSTEP && can_skip_sstep(uprobe, regs))
1540 goto cleanup_ret;
1541
1542 utask->state = UTASK_SSTEP;
1543 if (!pre_ssout(uprobe, regs, bp_vaddr)) {
1544 user_enable_single_step(current);
1545 return;
1546 }
1547
1548cleanup_ret:
1549 if (utask) {
1550 utask->active_uprobe = NULL;
1551 utask->state = UTASK_RUNNING;
1552 }
1553 if (uprobe) {
1554 if (!(uprobe->flags & UPROBE_SKIP_SSTEP))
1555
1556 /*
1557 * cannot singlestep; cannot skip instruction;
1558 * re-execute the instruction.
1559 */
1560 instruction_pointer_set(regs, bp_vaddr);
1561
1562 put_uprobe(uprobe);
1563 }
1564}
1565
1566/*
1567 * Perform required fix-ups and disable singlestep.
1568 * Allow pending signals to take effect.
1569 */
1570static void handle_singlestep(struct uprobe_task *utask, struct pt_regs *regs)
1571{
1572 struct uprobe *uprobe;
1573
1574 uprobe = utask->active_uprobe;
1575 if (utask->state == UTASK_SSTEP_ACK)
1576 arch_uprobe_post_xol(&uprobe->arch, regs);
1577 else if (utask->state == UTASK_SSTEP_TRAPPED)
1578 arch_uprobe_abort_xol(&uprobe->arch, regs);
1579 else
1580 WARN_ON_ONCE(1);
1581
1582 put_uprobe(uprobe);
1583 utask->active_uprobe = NULL;
1584 utask->state = UTASK_RUNNING;
1585 user_disable_single_step(current);
Srikar Dronamrajud4b3b632012-03-30 23:56:31 +05301586 xol_free_insn_slot(current);
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301587
1588 spin_lock_irq(&current->sighand->siglock);
1589 recalc_sigpending(); /* see uprobe_deny_signal() */
1590 spin_unlock_irq(&current->sighand->siglock);
1591}
1592
1593/*
1594 * On breakpoint hit, breakpoint notifier sets the TIF_UPROBE flag. (and on
1595 * subsequent probe hits on the thread sets the state to UTASK_BP_HIT) and
1596 * allows the thread to return from interrupt.
1597 *
1598 * On singlestep exception, singlestep notifier sets the TIF_UPROBE flag and
1599 * also sets the state to UTASK_SSTEP_ACK and allows the thread to return from
1600 * interrupt.
1601 *
1602 * While returning to userspace, thread notices the TIF_UPROBE flag and calls
1603 * uprobe_notify_resume().
1604 */
1605void uprobe_notify_resume(struct pt_regs *regs)
1606{
1607 struct uprobe_task *utask;
1608
1609 utask = current->utask;
1610 if (!utask || utask->state == UTASK_BP_HIT)
1611 handle_swbp(regs);
1612 else
1613 handle_singlestep(utask, regs);
1614}
1615
1616/*
1617 * uprobe_pre_sstep_notifier gets called from interrupt context as part of
1618 * notifier mechanism. Set TIF_UPROBE flag and indicate breakpoint hit.
1619 */
1620int uprobe_pre_sstep_notifier(struct pt_regs *regs)
1621{
1622 struct uprobe_task *utask;
1623
Srikar Dronamraju682968e2012-03-30 23:56:46 +05301624 if (!current->mm || !atomic_read(&current->mm->uprobes_state.count))
1625 /* task is currently not uprobed */
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301626 return 0;
1627
1628 utask = current->utask;
1629 if (utask)
1630 utask->state = UTASK_BP_HIT;
1631
1632 set_thread_flag(TIF_UPROBE);
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301633
1634 return 1;
1635}
1636
1637/*
1638 * uprobe_post_sstep_notifier gets called in interrupt context as part of notifier
1639 * mechanism. Set TIF_UPROBE flag and indicate completion of singlestep.
1640 */
1641int uprobe_post_sstep_notifier(struct pt_regs *regs)
1642{
1643 struct uprobe_task *utask = current->utask;
1644
1645 if (!current->mm || !utask || !utask->active_uprobe)
1646 /* task is currently not uprobed */
1647 return 0;
1648
1649 utask->state = UTASK_SSTEP_ACK;
1650 set_thread_flag(TIF_UPROBE);
1651 return 1;
1652}
1653
1654static struct notifier_block uprobe_exception_nb = {
1655 .notifier_call = arch_uprobe_exception_notify,
1656 .priority = INT_MAX-1, /* notified after kprobes, kgdb */
1657};
1658
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301659static int __init init_uprobes(void)
1660{
1661 int i;
1662
1663 for (i = 0; i < UPROBES_HASH_SZ; i++) {
1664 mutex_init(&uprobes_mutex[i]);
1665 mutex_init(&uprobes_mmap_mutex[i]);
1666 }
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301667
1668 return register_die_notifier(&uprobe_exception_nb);
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301669}
Srikar Dronamraju0326f5a2012-03-13 23:30:11 +05301670module_init(init_uprobes);
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301671
1672static void __exit exit_uprobes(void)
1673{
1674}
Srikar Dronamraju2b144492012-02-09 14:56:42 +05301675module_exit(exit_uprobes);