1*1b191cb5SApple OSS Distributions /*
2*1b191cb5SApple OSS Distributions * Copyright (c) 2000-2006 Apple Computer, Inc. All rights reserved.
3*1b191cb5SApple OSS Distributions *
4*1b191cb5SApple OSS Distributions * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5*1b191cb5SApple OSS Distributions *
6*1b191cb5SApple OSS Distributions * This file contains Original Code and/or Modifications of Original Code
7*1b191cb5SApple OSS Distributions * as defined in and that are subject to the Apple Public Source License
8*1b191cb5SApple OSS Distributions * Version 2.0 (the 'License'). You may not use this file except in
9*1b191cb5SApple OSS Distributions * compliance with the License. The rights granted to you under the License
10*1b191cb5SApple OSS Distributions * may not be used to create, or enable the creation or redistribution of,
11*1b191cb5SApple OSS Distributions * unlawful or unlicensed copies of an Apple operating system, or to
12*1b191cb5SApple OSS Distributions * circumvent, violate, or enable the circumvention or violation of, any
13*1b191cb5SApple OSS Distributions * terms of an Apple operating system software license agreement.
14*1b191cb5SApple OSS Distributions *
15*1b191cb5SApple OSS Distributions * Please obtain a copy of the License at
16*1b191cb5SApple OSS Distributions * http://www.opensource.apple.com/apsl/ and read it before using this file.
17*1b191cb5SApple OSS Distributions *
18*1b191cb5SApple OSS Distributions * The Original Code and all software distributed under the License are
19*1b191cb5SApple OSS Distributions * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20*1b191cb5SApple OSS Distributions * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21*1b191cb5SApple OSS Distributions * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22*1b191cb5SApple OSS Distributions * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23*1b191cb5SApple OSS Distributions * Please see the License for the specific language governing rights and
24*1b191cb5SApple OSS Distributions * limitations under the License.
25*1b191cb5SApple OSS Distributions *
26*1b191cb5SApple OSS Distributions * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27*1b191cb5SApple OSS Distributions */
28*1b191cb5SApple OSS Distributions
29*1b191cb5SApple OSS Distributions #include <sys/types.h>
30*1b191cb5SApple OSS Distributions #include <sys/proc.h>
31*1b191cb5SApple OSS Distributions #include <sys/proc_internal.h>
32*1b191cb5SApple OSS Distributions #include <sys/systm.h>
33*1b191cb5SApple OSS Distributions #include <sys/user.h>
34*1b191cb5SApple OSS Distributions #include <sys/dtrace_ptss.h>
35*1b191cb5SApple OSS Distributions
36*1b191cb5SApple OSS Distributions #include <mach/vm_map.h>
37*1b191cb5SApple OSS Distributions #include <mach/vm_param.h>
38*1b191cb5SApple OSS Distributions #include <mach/mach_vm.h>
39*1b191cb5SApple OSS Distributions
40*1b191cb5SApple OSS Distributions #include <kern/task.h>
41*1b191cb5SApple OSS Distributions
42*1b191cb5SApple OSS Distributions #include <vm/vm_map.h>
43*1b191cb5SApple OSS Distributions
44*1b191cb5SApple OSS Distributions /*
45*1b191cb5SApple OSS Distributions * This function requires the sprlock to be held
46*1b191cb5SApple OSS Distributions *
47*1b191cb5SApple OSS Distributions * In general, it will not block. If it needs to allocate a new
48*1b191cb5SApple OSS Distributions * page of memory, the underlying kernel kalloc may block.
49*1b191cb5SApple OSS Distributions */
50*1b191cb5SApple OSS Distributions struct dtrace_ptss_page_entry*
dtrace_ptss_claim_entry_locked(struct proc * p)51*1b191cb5SApple OSS Distributions dtrace_ptss_claim_entry_locked(struct proc* p)
52*1b191cb5SApple OSS Distributions {
53*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_dtrace_sprlock, LCK_MTX_ASSERT_OWNED);
54*1b191cb5SApple OSS Distributions
55*1b191cb5SApple OSS Distributions struct dtrace_ptss_page_entry* entry = NULL;
56*1b191cb5SApple OSS Distributions
57*1b191cb5SApple OSS Distributions while (TRUE) {
58*1b191cb5SApple OSS Distributions struct dtrace_ptss_page_entry* temp = p->p_dtrace_ptss_free_list;
59*1b191cb5SApple OSS Distributions
60*1b191cb5SApple OSS Distributions if (temp == NULL) {
61*1b191cb5SApple OSS Distributions // Nothing on the free list. Allocate a new page, its okay if multiple threads race here.
62*1b191cb5SApple OSS Distributions struct dtrace_ptss_page* page = dtrace_ptss_allocate_page(p);
63*1b191cb5SApple OSS Distributions
64*1b191cb5SApple OSS Distributions // Make sure we actually got a page
65*1b191cb5SApple OSS Distributions if (page == NULL) {
66*1b191cb5SApple OSS Distributions return NULL;
67*1b191cb5SApple OSS Distributions }
68*1b191cb5SApple OSS Distributions
69*1b191cb5SApple OSS Distributions // Add the page to the page list
70*1b191cb5SApple OSS Distributions page->next = p->p_dtrace_ptss_pages;
71*1b191cb5SApple OSS Distributions p->p_dtrace_ptss_pages = page;
72*1b191cb5SApple OSS Distributions
73*1b191cb5SApple OSS Distributions // CAS the entries onto the free list.
74*1b191cb5SApple OSS Distributions do {
75*1b191cb5SApple OSS Distributions page->entries[DTRACE_PTSS_ENTRIES_PER_PAGE - 1].next = p->p_dtrace_ptss_free_list;
76*1b191cb5SApple OSS Distributions } while (!OSCompareAndSwapPtr((void *)page->entries[DTRACE_PTSS_ENTRIES_PER_PAGE - 1].next,
77*1b191cb5SApple OSS Distributions (void *)&page->entries[0],
78*1b191cb5SApple OSS Distributions (void * volatile *)&p->p_dtrace_ptss_free_list));
79*1b191cb5SApple OSS Distributions
80*1b191cb5SApple OSS Distributions // Now that we've added to the free list, try again.
81*1b191cb5SApple OSS Distributions continue;
82*1b191cb5SApple OSS Distributions }
83*1b191cb5SApple OSS Distributions
84*1b191cb5SApple OSS Distributions // Claim temp
85*1b191cb5SApple OSS Distributions if (!OSCompareAndSwapPtr((void *)temp, (void *)temp->next, (void * volatile *)&p->p_dtrace_ptss_free_list)) {
86*1b191cb5SApple OSS Distributions continue;
87*1b191cb5SApple OSS Distributions }
88*1b191cb5SApple OSS Distributions
89*1b191cb5SApple OSS Distributions // At this point, we own temp.
90*1b191cb5SApple OSS Distributions entry = temp;
91*1b191cb5SApple OSS Distributions
92*1b191cb5SApple OSS Distributions break;
93*1b191cb5SApple OSS Distributions }
94*1b191cb5SApple OSS Distributions
95*1b191cb5SApple OSS Distributions return entry;
96*1b191cb5SApple OSS Distributions }
97*1b191cb5SApple OSS Distributions
98*1b191cb5SApple OSS Distributions /*
99*1b191cb5SApple OSS Distributions * This function does not require any locks to be held on entry.
100*1b191cb5SApple OSS Distributions */
101*1b191cb5SApple OSS Distributions struct dtrace_ptss_page_entry*
dtrace_ptss_claim_entry(struct proc * p)102*1b191cb5SApple OSS Distributions dtrace_ptss_claim_entry(struct proc* p)
103*1b191cb5SApple OSS Distributions {
104*1b191cb5SApple OSS Distributions // Verify no locks held on entry
105*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_dtrace_sprlock, LCK_MTX_ASSERT_NOTOWNED);
106*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_mlock, LCK_MTX_ASSERT_NOTOWNED);
107*1b191cb5SApple OSS Distributions
108*1b191cb5SApple OSS Distributions struct dtrace_ptss_page_entry* entry = NULL;
109*1b191cb5SApple OSS Distributions
110*1b191cb5SApple OSS Distributions while (TRUE) {
111*1b191cb5SApple OSS Distributions struct dtrace_ptss_page_entry* temp = p->p_dtrace_ptss_free_list;
112*1b191cb5SApple OSS Distributions
113*1b191cb5SApple OSS Distributions if (temp == NULL) {
114*1b191cb5SApple OSS Distributions lck_mtx_lock(&p->p_dtrace_sprlock);
115*1b191cb5SApple OSS Distributions temp = dtrace_ptss_claim_entry_locked(p);
116*1b191cb5SApple OSS Distributions lck_mtx_unlock(&p->p_dtrace_sprlock);
117*1b191cb5SApple OSS Distributions return temp;
118*1b191cb5SApple OSS Distributions }
119*1b191cb5SApple OSS Distributions
120*1b191cb5SApple OSS Distributions // Claim temp
121*1b191cb5SApple OSS Distributions if (!OSCompareAndSwapPtr((void *)temp, (void *)temp->next, (void * volatile *)&p->p_dtrace_ptss_free_list)) {
122*1b191cb5SApple OSS Distributions continue;
123*1b191cb5SApple OSS Distributions }
124*1b191cb5SApple OSS Distributions
125*1b191cb5SApple OSS Distributions // At this point, we own temp.
126*1b191cb5SApple OSS Distributions entry = temp;
127*1b191cb5SApple OSS Distributions
128*1b191cb5SApple OSS Distributions break;
129*1b191cb5SApple OSS Distributions }
130*1b191cb5SApple OSS Distributions
131*1b191cb5SApple OSS Distributions return entry;
132*1b191cb5SApple OSS Distributions }
133*1b191cb5SApple OSS Distributions
134*1b191cb5SApple OSS Distributions /*
135*1b191cb5SApple OSS Distributions * This function does not require any locks to be held on entry.
136*1b191cb5SApple OSS Distributions *
137*1b191cb5SApple OSS Distributions * (PR-11138709) A NULL p->p_dtrace_ptss_pages means the entry can
138*1b191cb5SApple OSS Distributions * no longer be referenced safely. When found in this state, the chore
139*1b191cb5SApple OSS Distributions * of releasing an entry to the free list is ignored.
140*1b191cb5SApple OSS Distributions */
141*1b191cb5SApple OSS Distributions void
dtrace_ptss_release_entry(struct proc * p,struct dtrace_ptss_page_entry * e)142*1b191cb5SApple OSS Distributions dtrace_ptss_release_entry(struct proc* p, struct dtrace_ptss_page_entry* e)
143*1b191cb5SApple OSS Distributions {
144*1b191cb5SApple OSS Distributions if (p && p->p_dtrace_ptss_pages && e) {
145*1b191cb5SApple OSS Distributions do {
146*1b191cb5SApple OSS Distributions e->next = p->p_dtrace_ptss_free_list;
147*1b191cb5SApple OSS Distributions } while (!OSCompareAndSwapPtr((void *)e->next, (void *)e, (void * volatile *)&p->p_dtrace_ptss_free_list));
148*1b191cb5SApple OSS Distributions }
149*1b191cb5SApple OSS Distributions }
150*1b191cb5SApple OSS Distributions
151*1b191cb5SApple OSS Distributions /*
152*1b191cb5SApple OSS Distributions * This function allocates a new page in the target process's address space.
153*1b191cb5SApple OSS Distributions *
154*1b191cb5SApple OSS Distributions * It returns a dtrace_ptss_page that has its entries chained, with the last
155*1b191cb5SApple OSS Distributions * entries next field set to NULL. It does not add the page or the entries to
156*1b191cb5SApple OSS Distributions * the process's page/entry lists.
157*1b191cb5SApple OSS Distributions *
158*1b191cb5SApple OSS Distributions * This function does not require that any locks be held when it is invoked.
159*1b191cb5SApple OSS Distributions */
160*1b191cb5SApple OSS Distributions struct dtrace_ptss_page*
dtrace_ptss_allocate_page(struct proc * p)161*1b191cb5SApple OSS Distributions dtrace_ptss_allocate_page(struct proc* p)
162*1b191cb5SApple OSS Distributions {
163*1b191cb5SApple OSS Distributions // Allocate the kernel side data
164*1b191cb5SApple OSS Distributions struct dtrace_ptss_page* ptss_page = kalloc_type(struct dtrace_ptss_page, Z_ZERO | Z_WAITOK);
165*1b191cb5SApple OSS Distributions if (ptss_page == NULL) {
166*1b191cb5SApple OSS Distributions return NULL;
167*1b191cb5SApple OSS Distributions }
168*1b191cb5SApple OSS Distributions
169*1b191cb5SApple OSS Distributions // Now allocate a page in user space and set its protections to allow execute.
170*1b191cb5SApple OSS Distributions task_t task = proc_task(p);
171*1b191cb5SApple OSS Distributions vm_map_t map = get_task_map_reference(task);
172*1b191cb5SApple OSS Distributions if (map == NULL) {
173*1b191cb5SApple OSS Distributions goto err;
174*1b191cb5SApple OSS Distributions }
175*1b191cb5SApple OSS Distributions
176*1b191cb5SApple OSS Distributions mach_vm_size_t size = PAGE_MAX_SIZE;
177*1b191cb5SApple OSS Distributions mach_vm_offset_t addr = 0;
178*1b191cb5SApple OSS Distributions mach_vm_offset_t write_addr = 0;
179*1b191cb5SApple OSS Distributions /*
180*1b191cb5SApple OSS Distributions * The embedded OS has extra permissions for writable and executable pages.
181*1b191cb5SApple OSS Distributions * To ensure correct permissions, we must set the page protections separately.
182*1b191cb5SApple OSS Distributions */
183*1b191cb5SApple OSS Distributions vm_prot_t cur_protection = VM_PROT_READ | VM_PROT_EXECUTE;
184*1b191cb5SApple OSS Distributions vm_prot_t max_protection = VM_PROT_READ | VM_PROT_EXECUTE;
185*1b191cb5SApple OSS Distributions kern_return_t kr;
186*1b191cb5SApple OSS Distributions
187*1b191cb5SApple OSS Distributions kr = mach_vm_map_kernel(map, &addr, size, 0,
188*1b191cb5SApple OSS Distributions VM_MAP_KERNEL_FLAGS_ANYWHERE(), IPC_PORT_NULL, 0, FALSE,
189*1b191cb5SApple OSS Distributions cur_protection, max_protection, VM_INHERIT_DEFAULT);
190*1b191cb5SApple OSS Distributions if (kr != KERN_SUCCESS) {
191*1b191cb5SApple OSS Distributions goto err;
192*1b191cb5SApple OSS Distributions }
193*1b191cb5SApple OSS Distributions
194*1b191cb5SApple OSS Distributions /*
195*1b191cb5SApple OSS Distributions * To ensure the page is properly marked as user debug, temporarily change
196*1b191cb5SApple OSS Distributions * the permissions to rw and then back again to rx. The VM will keep track
197*1b191cb5SApple OSS Distributions * of this remapping and on fault will pass PMAP_OPTIONS_XNU_USER_DEBUG
198*1b191cb5SApple OSS Distributions * properly to the PMAP layer.
199*1b191cb5SApple OSS Distributions */
200*1b191cb5SApple OSS Distributions kr = mach_vm_protect(map, (mach_vm_offset_t)addr, (mach_vm_size_t)size, 0,
201*1b191cb5SApple OSS Distributions VM_PROT_READ | VM_PROT_WRITE | VM_PROT_COPY);
202*1b191cb5SApple OSS Distributions if (kr != KERN_SUCCESS) {
203*1b191cb5SApple OSS Distributions goto err;
204*1b191cb5SApple OSS Distributions }
205*1b191cb5SApple OSS Distributions
206*1b191cb5SApple OSS Distributions kr = mach_vm_protect(map, (mach_vm_offset_t)addr, (mach_vm_size_t)size, 0,
207*1b191cb5SApple OSS Distributions VM_PROT_READ | VM_PROT_EXECUTE);
208*1b191cb5SApple OSS Distributions if (kr != KERN_SUCCESS) {
209*1b191cb5SApple OSS Distributions goto err;
210*1b191cb5SApple OSS Distributions }
211*1b191cb5SApple OSS Distributions
212*1b191cb5SApple OSS Distributions /*
213*1b191cb5SApple OSS Distributions * If on embedded, remap the scratch space as writable at another
214*1b191cb5SApple OSS Distributions * virtual address
215*1b191cb5SApple OSS Distributions */
216*1b191cb5SApple OSS Distributions kr = mach_vm_remap_kernel(map, &write_addr, size, 0, VM_FLAGS_ANYWHERE, VM_KERN_MEMORY_NONE, map, addr, FALSE, &cur_protection, &max_protection, VM_INHERIT_DEFAULT);
217*1b191cb5SApple OSS Distributions if (kr != KERN_SUCCESS || !(max_protection & VM_PROT_WRITE)) {
218*1b191cb5SApple OSS Distributions goto err;
219*1b191cb5SApple OSS Distributions }
220*1b191cb5SApple OSS Distributions
221*1b191cb5SApple OSS Distributions kr = mach_vm_protect(map, (mach_vm_offset_t)write_addr, (mach_vm_size_t)size, 0, VM_PROT_READ | VM_PROT_WRITE);
222*1b191cb5SApple OSS Distributions if (kr != KERN_SUCCESS) {
223*1b191cb5SApple OSS Distributions goto err;
224*1b191cb5SApple OSS Distributions }
225*1b191cb5SApple OSS Distributions
226*1b191cb5SApple OSS Distributions // Chain the page entries.
227*1b191cb5SApple OSS Distributions int i;
228*1b191cb5SApple OSS Distributions for (i = 0; i < DTRACE_PTSS_ENTRIES_PER_PAGE; i++) {
229*1b191cb5SApple OSS Distributions ptss_page->entries[i].addr = addr + (i * DTRACE_PTSS_SCRATCH_SPACE_PER_THREAD);
230*1b191cb5SApple OSS Distributions ptss_page->entries[i].write_addr = write_addr + (i * DTRACE_PTSS_SCRATCH_SPACE_PER_THREAD);
231*1b191cb5SApple OSS Distributions ptss_page->entries[i].next = &ptss_page->entries[i + 1];
232*1b191cb5SApple OSS Distributions }
233*1b191cb5SApple OSS Distributions
234*1b191cb5SApple OSS Distributions // The last entry should point to NULL
235*1b191cb5SApple OSS Distributions ptss_page->entries[DTRACE_PTSS_ENTRIES_PER_PAGE - 1].next = NULL;
236*1b191cb5SApple OSS Distributions
237*1b191cb5SApple OSS Distributions vm_map_deallocate(map);
238*1b191cb5SApple OSS Distributions
239*1b191cb5SApple OSS Distributions return ptss_page;
240*1b191cb5SApple OSS Distributions
241*1b191cb5SApple OSS Distributions err:
242*1b191cb5SApple OSS Distributions kfree_type(struct dtrace_ptss_page, ptss_page);
243*1b191cb5SApple OSS Distributions
244*1b191cb5SApple OSS Distributions if (map) {
245*1b191cb5SApple OSS Distributions vm_map_deallocate(map);
246*1b191cb5SApple OSS Distributions }
247*1b191cb5SApple OSS Distributions
248*1b191cb5SApple OSS Distributions return NULL;
249*1b191cb5SApple OSS Distributions }
250*1b191cb5SApple OSS Distributions
251*1b191cb5SApple OSS Distributions /*
252*1b191cb5SApple OSS Distributions * This function frees an existing page in the target process's address space.
253*1b191cb5SApple OSS Distributions *
254*1b191cb5SApple OSS Distributions * It does not alter any of the process's page/entry lists.
255*1b191cb5SApple OSS Distributions *
256*1b191cb5SApple OSS Distributions * TODO: Inline in dtrace_ptrace_exec_exit?
257*1b191cb5SApple OSS Distributions */
258*1b191cb5SApple OSS Distributions void
dtrace_ptss_free_page(struct proc * p,struct dtrace_ptss_page * ptss_page)259*1b191cb5SApple OSS Distributions dtrace_ptss_free_page(struct proc* p, struct dtrace_ptss_page* ptss_page)
260*1b191cb5SApple OSS Distributions {
261*1b191cb5SApple OSS Distributions // Grab the task and get a reference to its vm_map
262*1b191cb5SApple OSS Distributions task_t task = proc_task(p);
263*1b191cb5SApple OSS Distributions vm_map_t map = get_task_map_reference(task);
264*1b191cb5SApple OSS Distributions
265*1b191cb5SApple OSS Distributions mach_vm_address_t addr = ptss_page->entries[0].addr;
266*1b191cb5SApple OSS Distributions mach_vm_size_t size = PAGE_SIZE; // We need some way to assert that this matches vm_map_round_page() !!!
267*1b191cb5SApple OSS Distributions
268*1b191cb5SApple OSS Distributions // Silent failures, no point in checking return code.
269*1b191cb5SApple OSS Distributions mach_vm_deallocate(map, addr, size);
270*1b191cb5SApple OSS Distributions
271*1b191cb5SApple OSS Distributions mach_vm_address_t write_addr = ptss_page->entries[0].write_addr;
272*1b191cb5SApple OSS Distributions mach_vm_deallocate(map, write_addr, size);
273*1b191cb5SApple OSS Distributions
274*1b191cb5SApple OSS Distributions vm_map_deallocate(map);
275*1b191cb5SApple OSS Distributions }
276*1b191cb5SApple OSS Distributions
277*1b191cb5SApple OSS Distributions /*
278*1b191cb5SApple OSS Distributions * This function assumes that the target process has been
279*1b191cb5SApple OSS Distributions * suspended, and the proc_lock & sprlock is held
280*1b191cb5SApple OSS Distributions */
281*1b191cb5SApple OSS Distributions void
dtrace_ptss_enable(struct proc * p)282*1b191cb5SApple OSS Distributions dtrace_ptss_enable(struct proc* p)
283*1b191cb5SApple OSS Distributions {
284*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_dtrace_sprlock, LCK_MTX_ASSERT_OWNED);
285*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_mlock, LCK_MTX_ASSERT_OWNED);
286*1b191cb5SApple OSS Distributions
287*1b191cb5SApple OSS Distributions struct uthread* uth;
288*1b191cb5SApple OSS Distributions /*
289*1b191cb5SApple OSS Distributions * XXX There has been a concern raised about holding the proc_lock
290*1b191cb5SApple OSS Distributions * while calling dtrace_ptss_claim_entry(), due to the fact
291*1b191cb5SApple OSS Distributions * that dtrace_ptss_claim_entry() can potentially malloc.
292*1b191cb5SApple OSS Distributions */
293*1b191cb5SApple OSS Distributions TAILQ_FOREACH(uth, &p->p_uthlist, uu_list) {
294*1b191cb5SApple OSS Distributions uth->t_dtrace_scratch = dtrace_ptss_claim_entry_locked(p);
295*1b191cb5SApple OSS Distributions }
296*1b191cb5SApple OSS Distributions }
297*1b191cb5SApple OSS Distributions
298*1b191cb5SApple OSS Distributions /*
299*1b191cb5SApple OSS Distributions * This function is not thread safe.
300*1b191cb5SApple OSS Distributions *
301*1b191cb5SApple OSS Distributions * It assumes the sprlock is held, and the proc_lock is not.
302*1b191cb5SApple OSS Distributions */
303*1b191cb5SApple OSS Distributions void
dtrace_ptss_exec_exit(struct proc * p)304*1b191cb5SApple OSS Distributions dtrace_ptss_exec_exit(struct proc* p)
305*1b191cb5SApple OSS Distributions {
306*1b191cb5SApple OSS Distributions /*
307*1b191cb5SApple OSS Distributions * Should hold sprlock to touch the pages list. Must not
308*1b191cb5SApple OSS Distributions * hold the proc lock to avoid deadlock.
309*1b191cb5SApple OSS Distributions */
310*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_dtrace_sprlock, LCK_MTX_ASSERT_OWNED);
311*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&p->p_mlock, LCK_MTX_ASSERT_NOTOWNED);
312*1b191cb5SApple OSS Distributions
313*1b191cb5SApple OSS Distributions p->p_dtrace_ptss_free_list = NULL;
314*1b191cb5SApple OSS Distributions
315*1b191cb5SApple OSS Distributions struct dtrace_ptss_page* temp = p->p_dtrace_ptss_pages;
316*1b191cb5SApple OSS Distributions p->p_dtrace_ptss_pages = NULL;
317*1b191cb5SApple OSS Distributions
318*1b191cb5SApple OSS Distributions while (temp != NULL) {
319*1b191cb5SApple OSS Distributions struct dtrace_ptss_page* next = temp->next;
320*1b191cb5SApple OSS Distributions
321*1b191cb5SApple OSS Distributions // Do we need to specifically mach_vm_deallocate the user pages?
322*1b191cb5SApple OSS Distributions // This can be called when the process is exiting, I believe the proc's
323*1b191cb5SApple OSS Distributions // vm_map_t may already be toast.
324*1b191cb5SApple OSS Distributions
325*1b191cb5SApple OSS Distributions // Must be certain to free the kernel memory!
326*1b191cb5SApple OSS Distributions kfree_type(struct dtrace_ptss_page, temp);
327*1b191cb5SApple OSS Distributions temp = next;
328*1b191cb5SApple OSS Distributions }
329*1b191cb5SApple OSS Distributions }
330*1b191cb5SApple OSS Distributions
331*1b191cb5SApple OSS Distributions /*
332*1b191cb5SApple OSS Distributions * This function is not thread safe.
333*1b191cb5SApple OSS Distributions *
334*1b191cb5SApple OSS Distributions * The child proc ptss fields are initialized to NULL at fork time.
335*1b191cb5SApple OSS Distributions * Pages allocated in the parent are copied as part of the vm_map copy, though.
336*1b191cb5SApple OSS Distributions * We need to deallocate those pages.
337*1b191cb5SApple OSS Distributions *
338*1b191cb5SApple OSS Distributions * Parent and child sprlock should be held, and proc_lock must NOT be held.
339*1b191cb5SApple OSS Distributions */
340*1b191cb5SApple OSS Distributions void
dtrace_ptss_fork(struct proc * parent,struct proc * child)341*1b191cb5SApple OSS Distributions dtrace_ptss_fork(struct proc* parent, struct proc* child)
342*1b191cb5SApple OSS Distributions {
343*1b191cb5SApple OSS Distributions // The child should not have any pages/entries allocated at this point.
344*1b191cb5SApple OSS Distributions // ASSERT(child->p_dtrace_ptss_pages == NULL);
345*1b191cb5SApple OSS Distributions // ASSERT(child->p_dtrace_ptss_free_list == NULL);
346*1b191cb5SApple OSS Distributions
347*1b191cb5SApple OSS Distributions /*
348*1b191cb5SApple OSS Distributions * The parent's sprlock should be held, to protect its pages list
349*1b191cb5SApple OSS Distributions * from changing while the child references it. The child's sprlock
350*1b191cb5SApple OSS Distributions * must also be held, because we are modifying its pages list.
351*1b191cb5SApple OSS Distributions * Finally, to prevent a deadlock with the fasttrap cleanup code,
352*1b191cb5SApple OSS Distributions * neither the parent or child proc_lock should be held.
353*1b191cb5SApple OSS Distributions */
354*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&parent->p_dtrace_sprlock, LCK_MTX_ASSERT_OWNED);
355*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&parent->p_mlock, LCK_MTX_ASSERT_NOTOWNED);
356*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&child->p_dtrace_sprlock, LCK_MTX_ASSERT_OWNED);
357*1b191cb5SApple OSS Distributions LCK_MTX_ASSERT(&child->p_mlock, LCK_MTX_ASSERT_NOTOWNED);
358*1b191cb5SApple OSS Distributions
359*1b191cb5SApple OSS Distributions // Get page list from *PARENT*
360*1b191cb5SApple OSS Distributions struct dtrace_ptss_page* temp = parent->p_dtrace_ptss_pages;
361*1b191cb5SApple OSS Distributions
362*1b191cb5SApple OSS Distributions while (temp != NULL) {
363*1b191cb5SApple OSS Distributions // Freeing the page in the *CHILD*
364*1b191cb5SApple OSS Distributions dtrace_ptss_free_page(child, temp);
365*1b191cb5SApple OSS Distributions
366*1b191cb5SApple OSS Distributions // Do not free the kernel memory, it belong to the parent.
367*1b191cb5SApple OSS Distributions temp = temp->next;
368*1b191cb5SApple OSS Distributions }
369*1b191cb5SApple OSS Distributions }
370