procfs_subr.c revision 1.1 1 1.1 pk /*
2 1.1 pk * %W% (Erasmus) %G% - pk (at) cs.few.eur.nl
3 1.1 pk */
4 1.1 pk
5 1.1 pk #include "param.h"
6 1.1 pk #include "systm.h"
7 1.1 pk #include "time.h"
8 1.1 pk #include "kernel.h"
9 1.1 pk #include "ioctl.h"
10 1.1 pk #include "proc.h"
11 1.1 pk #include "buf.h"
12 1.1 pk #include "vnode.h"
13 1.1 pk #include "file.h"
14 1.1 pk #include "resourcevar.h"
15 1.1 pk #include "vm/vm.h"
16 1.1 pk #include "vm/vm_page.h"
17 1.1 pk #include "vm/vm_kern.h"
18 1.1 pk #include "kinfo.h"
19 1.1 pk #include "kinfo_proc.h"
20 1.1 pk
21 1.1 pk #include "procfs.h"
22 1.1 pk #include "pfsnode.h"
23 1.1 pk
24 1.1 pk #include "machine/vmparam.h"
25 1.1 pk
26 1.1 pk /*
27 1.1 pk * Get process address map (PIOCGMAP)
28 1.1 pk */
29 1.1 pk int
30 1.1 pk pfs_vmmap(procp, pfsp, pmapp)
31 1.1 pk struct proc *procp;
32 1.1 pk struct nfsnode *pfsp;
33 1.1 pk struct procmap *pmapp;
34 1.1 pk {
35 1.1 pk int error = 0;
36 1.1 pk vm_map_t map;
37 1.1 pk vm_map_entry_t entry;
38 1.1 pk struct procmap prmap;
39 1.1 pk
40 1.1 pk map = &procp->p_vmspace->vm_map;
41 1.1 pk vm_map_lock(map);
42 1.1 pk entry = map->header.next;
43 1.1 pk
44 1.1 pk while (entry != &map->header) {
45 1.1 pk if (entry->is_a_map) {
46 1.1 pk vm_map_t submap = entry->object.share_map;
47 1.1 pk vm_map_entry_t subentry;
48 1.1 pk
49 1.1 pk vm_map_lock(submap);
50 1.1 pk subentry = submap->header.next;
51 1.1 pk while (subentry != &submap->header) {
52 1.1 pk prmap.vaddr = subentry->start;
53 1.1 pk prmap.size = subentry->end - subentry->start;
54 1.1 pk prmap.offset = subentry->offset;
55 1.1 pk prmap.prot = subentry->protection;
56 1.1 pk error = copyout(&prmap, pmapp, sizeof(prmap));
57 1.1 pk if (error)
58 1.1 pk break;
59 1.1 pk pmapp++;
60 1.1 pk subentry = subentry->next;
61 1.1 pk }
62 1.1 pk vm_map_unlock(submap);
63 1.1 pk if (error)
64 1.1 pk break;
65 1.1 pk }
66 1.1 pk prmap.vaddr = entry->start;
67 1.1 pk prmap.size = entry->end - entry->start;
68 1.1 pk prmap.offset = entry->offset;
69 1.1 pk prmap.prot = entry->protection;
70 1.1 pk error = copyout(&prmap, pmapp, sizeof(prmap));
71 1.1 pk if (error)
72 1.1 pk break;
73 1.1 pk pmapp++;
74 1.1 pk entry = entry->next;
75 1.1 pk }
76 1.1 pk
77 1.1 pk vm_map_unlock(map);
78 1.1 pk return error;
79 1.1 pk }
80 1.1 pk
81 1.1 pk /*
82 1.1 pk * Count number of VM entries of process (PIOCNMAP)
83 1.1 pk */
84 1.1 pk int
85 1.1 pk pfs_vm_nentries(procp, pfsp)
86 1.1 pk struct proc *procp;
87 1.1 pk struct nfsnode *pfsp;
88 1.1 pk {
89 1.1 pk int count = 0;
90 1.1 pk vm_map_t map;
91 1.1 pk vm_map_entry_t entry;
92 1.1 pk
93 1.1 pk map = &procp->p_vmspace->vm_map;
94 1.1 pk vm_map_lock(map);
95 1.1 pk entry = map->header.next;
96 1.1 pk
97 1.1 pk while (entry != &map->header) {
98 1.1 pk if (entry->is_a_map)
99 1.1 pk count += entry->object.share_map->nentries;
100 1.1 pk else
101 1.1 pk count++;
102 1.1 pk entry = entry->next;
103 1.1 pk }
104 1.1 pk
105 1.1 pk vm_map_unlock(map);
106 1.1 pk return count;
107 1.1 pk }
108 1.1 pk
109 1.1 pk /*
110 1.1 pk * Map process mapped file to file descriptor (PIOCGMAPFD)
111 1.1 pk */
112 1.1 pk int
113 1.1 pk pfs_vmfd(procp, pfsp, vmfdp, p)
114 1.1 pk struct proc *procp;
115 1.1 pk struct pfsnode *pfsp;
116 1.1 pk struct vmfd *vmfdp;
117 1.1 pk struct proc *p;
118 1.1 pk {
119 1.1 pk int rv;
120 1.1 pk vm_map_t map;
121 1.1 pk vm_offset_t addr;
122 1.1 pk vm_size_t size;
123 1.1 pk vm_prot_t prot, maxprot;
124 1.1 pk vm_inherit_t inherit;
125 1.1 pk boolean_t shared;
126 1.1 pk vm_object_t object;
127 1.1 pk vm_offset_t objoff;
128 1.1 pk struct vnode *vp;
129 1.1 pk struct file *fp;
130 1.1 pk extern struct fileops vnops;
131 1.1 pk
132 1.1 pk map = &procp->p_vmspace->vm_map;
133 1.1 pk
134 1.1 pk addr = vmfdp->vaddr;
135 1.1 pk rv = vm_region(map, &addr, &size, &prot, &maxprot,
136 1.1 pk &inherit, &shared, &object, &objoff);
137 1.1 pk
138 1.1 pk if (rv != KERN_SUCCESS)
139 1.1 pk return EINVAL;
140 1.1 pk
141 1.1 pk while (object != NULL && object->pager == NULL)
142 1.1 pk object = object->shadow;
143 1.1 pk
144 1.1 pk if (object == NULL || object->pager == NULL
145 1.1 pk /* Nobody seems to care || !object->pager_ready */ )
146 1.1 pk return ENOENT;
147 1.1 pk
148 1.1 pk if (object->pager->pg_type != PG_VNODE)
149 1.1 pk return ENOENT;
150 1.1 pk
151 1.1 pk /* We have a vnode pager, allocate file descriptor */
152 1.1 pk vp = (struct vnode *)object->pager->pg_handle;
153 1.1 pk if (VOP_ACCESS(vp, VREAD, p->p_ucred, p)) {
154 1.1 pk rv = EACCES;
155 1.1 pk goto out;
156 1.1 pk }
157 1.1 pk rv = falloc(p, &fp, &vmfdp->fd);
158 1.1 pk if (rv)
159 1.1 pk goto out;
160 1.1 pk
161 1.1 pk VREF(vp);
162 1.1 pk fp->f_type = DTYPE_VNODE;
163 1.1 pk fp->f_ops = &vnops;
164 1.1 pk fp->f_data = (caddr_t)vp;
165 1.1 pk fp->f_flag = FREAD;
166 1.1 pk
167 1.1 pk out:
168 1.1 pk vm_object_unlock(object);
169 1.1 pk return rv;
170 1.1 pk }
171 1.1 pk
172 1.1 pk /*
173 1.1 pk * Vnode op for reading/writing.
174 1.1 pk */
175 1.1 pk /* ARGSUSED */
176 1.1 pk pfs_doio(vp, uio, ioflag, cred)
177 1.1 pk struct vnode *vp;
178 1.1 pk register struct uio *uio;
179 1.1 pk int ioflag;
180 1.1 pk struct ucred *cred;
181 1.1 pk {
182 1.1 pk struct pfsnode *pfsp = VTOPFS(vp);
183 1.1 pk struct proc *procp;
184 1.1 pk int error = 0;
185 1.1 pk long n, on;
186 1.1 pk
187 1.1 pk #ifdef DEBUG
188 1.1 pk if (pfs_debug)
189 1.1 pk printf("pfs_doio(%s): vp 0x%x, proc %x\n",
190 1.1 pk uio->uio_rw==UIO_READ?"R":"W", vp, uio->uio_procp);
191 1.1 pk #endif
192 1.1 pk
193 1.1 pk #ifdef DIAGNOSTIC
194 1.1 pk if (vp->v_type != VPROC)
195 1.1 pk panic("pfs_doio vtype");
196 1.1 pk #endif
197 1.1 pk procp = pfsp->pfs_pid?pfind(pfsp->pfs_pid):&proc0;
198 1.1 pk if (!procp)
199 1.1 pk return ESRCH;
200 1.1 pk
201 1.1 pk if (procp->p_flag & SSYS)
202 1.1 pk return EACCES;
203 1.1 pk
204 1.1 pk if (uio->uio_resid == 0)
205 1.1 pk return (0);
206 1.1 pk if (uio->uio_offset < 0)
207 1.1 pk return (EINVAL);
208 1.1 pk
209 1.1 pk do { /* One page at a time */
210 1.1 pk int rv;
211 1.1 pk vm_map_t map;
212 1.1 pk vm_offset_t offset;
213 1.1 pk vm_size_t size;
214 1.1 pk vm_prot_t oldprot = 0, prot, maxprot;
215 1.1 pk vm_inherit_t inherit;
216 1.1 pk boolean_t shared;
217 1.1 pk vm_object_t object;
218 1.1 pk vm_offset_t objoff;
219 1.1 pk vm_page_t m;
220 1.1 pk vm_offset_t kva;
221 1.1 pk
222 1.1 pk on = uio->uio_offset - trunc_page(uio->uio_offset);
223 1.1 pk n = MIN(PAGE_SIZE-on, uio->uio_resid);
224 1.1 pk
225 1.1 pk /* Map page into kernel space */
226 1.1 pk
227 1.1 pk map = &procp->p_vmspace->vm_map;
228 1.1 pk #if 0
229 1.1 pk vm_map_print(map, 1);
230 1.1 pk #endif
231 1.1 pk
232 1.1 pk offset = trunc_page(uio->uio_offset);
233 1.1 pk
234 1.1 pk rv = vm_region(map, &offset, &size, &prot, &maxprot,
235 1.1 pk &inherit, &shared, &object, &objoff);
236 1.1 pk if (rv != KERN_SUCCESS)
237 1.1 pk return EINVAL;
238 1.1 pk
239 1.1 pk vm_object_unlock(object);
240 1.1 pk
241 1.1 pk if (uio->uio_rw == UIO_WRITE && (prot & VM_PROT_WRITE) == 0) {
242 1.1 pk oldprot = prot;
243 1.1 pk prot |= VM_PROT_WRITE;
244 1.1 pk rv = vm_protect(map, offset, PAGE_SIZE, FALSE, prot);
245 1.1 pk if (rv != KERN_SUCCESS)
246 1.1 pk return EPERM;
247 1.1 pk }
248 1.1 pk /* Just fault the page */
249 1.1 pk rv = vm_fault(map, offset, prot, FALSE);
250 1.1 pk if (rv != KERN_SUCCESS)
251 1.1 pk return EFAULT;
252 1.1 pk
253 1.1 pk /* Look up again as vm_fault() may have inserted a shadow object */
254 1.1 pk rv = vm_region(map, &offset, &size, &prot, &maxprot,
255 1.1 pk &inherit, &shared, &object, &objoff);
256 1.1 pk if (rv != KERN_SUCCESS)
257 1.1 pk return EINVAL;
258 1.1 pk
259 1.1 pk /* Now find the page */
260 1.1 pk /* XXX hope it's still there, should we have wired it? */
261 1.1 pk m = vm_page_lookup(object, objoff);
262 1.1 pk if (m == NULL)
263 1.1 pk return ESRCH;
264 1.1 pk
265 1.1 pk kva = kmem_alloc_wait(kernel_map, PAGE_SIZE);
266 1.1 pk
267 1.1 pk pmap_enter(vm_map_pmap(kernel_map), kva, VM_PAGE_TO_PHYS(m),
268 1.1 pk VM_PROT_DEFAULT, TRUE);
269 1.1 pk
270 1.1 pk error = uiomove(kva + on, (int)n, uio);
271 1.1 pk
272 1.1 pk pmap_remove(vm_map_pmap(kernel_map), kva, kva + PAGE_SIZE);
273 1.1 pk kmem_free_wakeup(kernel_map, kva, PAGE_SIZE);
274 1.1 pk if (oldprot) {
275 1.1 pk rv = vm_protect(map, offset, PAGE_SIZE, FALSE, oldprot);
276 1.1 pk if (rv != KERN_SUCCESS)
277 1.1 pk return EPERM;
278 1.1 pk }
279 1.1 pk
280 1.1 pk } while (error == 0 && uio->uio_resid > 0);
281 1.1 pk
282 1.1 pk return (error);
283 1.1 pk }
284 1.1 pk
285 1.1 pk #if 00
286 1.1 pk int
287 1.1 pk pfs_map(procp, kva, rw, offset)
288 1.1 pk struct proc *procp;
289 1.1 pk int rw;
290 1.1 pk vm_offset_t *kva, offset;
291 1.1 pk {
292 1.1 pk int rv;
293 1.1 pk vm_map_t map;
294 1.1 pk vm_size_t size;
295 1.1 pk vm_prot_t prot, maxprot;
296 1.1 pk vm_inherit_t inherit;
297 1.1 pk boolean_t shared;
298 1.1 pk vm_object_t object;
299 1.1 pk vm_offset_t objoff;
300 1.1 pk vm_page_t m;
301 1.1 pk
302 1.1 pk map = &procp->p_vmspace->vm_map;
303 1.1 pk #if 0
304 1.1 pk vm_map_print(map, 1);
305 1.1 pk #endif
306 1.1 pk
307 1.1 pk offset = trunc_page(offset);
308 1.1 pk
309 1.1 pk rv = vm_region(map, &offset, &size, &prot, &maxprot,
310 1.1 pk &inherit, &shared, &object, &objoff);
311 1.1 pk if (rv != KERN_SUCCESS)
312 1.1 pk return EINVAL;
313 1.1 pk
314 1.1 pk vm_object_unlock(object);
315 1.1 pk
316 1.1 pk if (rw == UIO_WRITE && (prot & VM_PROT_WRITE) == 0) {
317 1.1 pk prot |= VM_PROT_WRITE;
318 1.1 pk rv = vm_protect(map, offset, PAGE_SIZE, FALSE, prot);
319 1.1 pk if (rv != KERN_SUCCESS)
320 1.1 pk return EPERM;
321 1.1 pk }
322 1.1 pk /* Just fault page */
323 1.1 pk rv = vm_fault(map, offset, prot, FALSE);
324 1.1 pk if (rv != KERN_SUCCESS)
325 1.1 pk return EFAULT;
326 1.1 pk
327 1.1 pk /* Look up again as vm_fault() may have inserted a shadow object */
328 1.1 pk rv = vm_region(map, &offset, &size, &prot, &maxprot,
329 1.1 pk &inherit, &shared, &object, &objoff);
330 1.1 pk if (rv != KERN_SUCCESS)
331 1.1 pk return EINVAL;
332 1.1 pk
333 1.1 pk m = vm_page_lookup(object, objoff);
334 1.1 pk if (m == NULL)
335 1.1 pk return ESRCH;
336 1.1 pk
337 1.1 pk *kva = kmem_alloc_wait(kernel_map, PAGE_SIZE);
338 1.1 pk
339 1.1 pk pmap_enter(vm_map_pmap(kernel_map), *kva, VM_PAGE_TO_PHYS(m),
340 1.1 pk VM_PROT_DEFAULT, TRUE);
341 1.1 pk
342 1.1 pk return 0;
343 1.1 pk }
344 1.1 pk
345 1.1 pk int
346 1.1 pk pfs_unmap(procp, kva)
347 1.1 pk struct proc *procp;
348 1.1 pk vm_offset_t kva;
349 1.1 pk {
350 1.1 pk pmap_remove(vm_map_pmap(kernel_map), kva, kva + PAGE_SIZE);
351 1.1 pk kmem_free_wakeup(kernel_map, kva, PAGE_SIZE);
352 1.1 pk }
353 1.1 pk #endif
354