iommu.c revision 1.44.4.6 1 1.44.4.6 nathanw /* $NetBSD: iommu.c,v 1.44.4.6 2002/09/17 21:17:56 nathanw Exp $ */
2 1.44.4.2 nathanw
3 1.44.4.2 nathanw /*
4 1.44.4.2 nathanw * Copyright (c) 2001, 2002 Eduardo Horvath
5 1.44.4.2 nathanw * Copyright (c) 1999, 2000 Matthew R. Green
6 1.44.4.2 nathanw * All rights reserved.
7 1.44.4.2 nathanw *
8 1.44.4.2 nathanw * Redistribution and use in source and binary forms, with or without
9 1.44.4.2 nathanw * modification, are permitted provided that the following conditions
10 1.44.4.2 nathanw * are met:
11 1.44.4.2 nathanw * 1. Redistributions of source code must retain the above copyright
12 1.44.4.2 nathanw * notice, this list of conditions and the following disclaimer.
13 1.44.4.2 nathanw * 2. Redistributions in binary form must reproduce the above copyright
14 1.44.4.2 nathanw * notice, this list of conditions and the following disclaimer in the
15 1.44.4.2 nathanw * documentation and/or other materials provided with the distribution.
16 1.44.4.2 nathanw * 3. The name of the author may not be used to endorse or promote products
17 1.44.4.2 nathanw * derived from this software without specific prior written permission.
18 1.44.4.2 nathanw *
19 1.44.4.2 nathanw * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 1.44.4.2 nathanw * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.44.4.2 nathanw * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.44.4.2 nathanw * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.44.4.2 nathanw * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
24 1.44.4.2 nathanw * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
25 1.44.4.2 nathanw * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
26 1.44.4.2 nathanw * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
27 1.44.4.2 nathanw * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.44.4.2 nathanw * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.44.4.2 nathanw * SUCH DAMAGE.
30 1.44.4.2 nathanw */
31 1.44.4.2 nathanw
32 1.44.4.2 nathanw /*
33 1.44.4.2 nathanw * UltraSPARC IOMMU support; used by both the sbus and pci code.
34 1.44.4.2 nathanw */
35 1.44.4.2 nathanw #include "opt_ddb.h"
36 1.44.4.2 nathanw
37 1.44.4.2 nathanw #include <sys/param.h>
38 1.44.4.2 nathanw #include <sys/extent.h>
39 1.44.4.2 nathanw #include <sys/malloc.h>
40 1.44.4.2 nathanw #include <sys/systm.h>
41 1.44.4.2 nathanw #include <sys/device.h>
42 1.44.4.2 nathanw #include <sys/proc.h>
43 1.44.4.2 nathanw
44 1.44.4.2 nathanw #include <uvm/uvm_extern.h>
45 1.44.4.2 nathanw
46 1.44.4.2 nathanw #include <machine/bus.h>
47 1.44.4.2 nathanw #include <sparc64/sparc64/cache.h>
48 1.44.4.2 nathanw #include <sparc64/dev/iommureg.h>
49 1.44.4.2 nathanw #include <sparc64/dev/iommuvar.h>
50 1.44.4.2 nathanw
51 1.44.4.2 nathanw #include <machine/autoconf.h>
52 1.44.4.2 nathanw #include <machine/cpu.h>
53 1.44.4.2 nathanw
54 1.44.4.2 nathanw #ifdef DEBUG
55 1.44.4.2 nathanw #define IDB_BUSDMA 0x1
56 1.44.4.2 nathanw #define IDB_IOMMU 0x2
57 1.44.4.2 nathanw #define IDB_INFO 0x4
58 1.44.4.2 nathanw #define IDB_SYNC 0x8
59 1.44.4.2 nathanw int iommudebug = 0x0;
60 1.44.4.2 nathanw #define DPRINTF(l, s) do { if (iommudebug & l) printf s; } while (0)
61 1.44.4.2 nathanw #else
62 1.44.4.2 nathanw #define DPRINTF(l, s)
63 1.44.4.2 nathanw #endif
64 1.44.4.2 nathanw
65 1.44.4.5 nathanw #define iommu_strbuf_flush(i, v) do { \
66 1.44.4.5 nathanw if ((i)->sb_flush) \
67 1.44.4.5 nathanw bus_space_write_8((i)->sb_is->is_bustag, (i)->sb_sb, \
68 1.44.4.3 nathanw STRBUFREG(strbuf_pgflush), (v)); \
69 1.44.4.2 nathanw } while (0)
70 1.44.4.2 nathanw
71 1.44.4.5 nathanw static int iommu_strbuf_flush_done __P((struct strbuf_ctl *));
72 1.44.4.2 nathanw
73 1.44.4.2 nathanw /*
74 1.44.4.2 nathanw * initialise the UltraSPARC IOMMU (SBUS or PCI):
75 1.44.4.2 nathanw * - allocate and setup the iotsb.
76 1.44.4.2 nathanw * - enable the IOMMU
77 1.44.4.2 nathanw * - initialise the streaming buffers (if they exist)
78 1.44.4.2 nathanw * - create a private DVMA map.
79 1.44.4.2 nathanw */
80 1.44.4.2 nathanw void
81 1.44.4.2 nathanw iommu_init(name, is, tsbsize, iovabase)
82 1.44.4.2 nathanw char *name;
83 1.44.4.2 nathanw struct iommu_state *is;
84 1.44.4.2 nathanw int tsbsize;
85 1.44.4.2 nathanw u_int32_t iovabase;
86 1.44.4.2 nathanw {
87 1.44.4.2 nathanw psize_t size;
88 1.44.4.2 nathanw vaddr_t va;
89 1.44.4.2 nathanw paddr_t pa;
90 1.44.4.2 nathanw struct vm_page *m;
91 1.44.4.2 nathanw struct pglist mlist;
92 1.44.4.2 nathanw
93 1.44.4.2 nathanw /*
94 1.44.4.2 nathanw * Setup the iommu.
95 1.44.4.2 nathanw *
96 1.44.4.2 nathanw * The sun4u iommu is part of the SBUS or PCI controller so we will
97 1.44.4.2 nathanw * deal with it here..
98 1.44.4.2 nathanw *
99 1.44.4.2 nathanw * For sysio and psycho/psycho+ the IOMMU address space always ends at
100 1.44.4.2 nathanw * 0xffffe000, but the starting address depends on the size of the
101 1.44.4.2 nathanw * map. The map size is 1024 * 2 ^ is->is_tsbsize entries, where each
102 1.44.4.2 nathanw * entry is 8 bytes. The start of the map can be calculated by
103 1.44.4.2 nathanw * (0xffffe000 << (8 + is->is_tsbsize)).
104 1.44.4.2 nathanw *
105 1.44.4.2 nathanw * But sabre and hummingbird use a different scheme that seems to
106 1.44.4.2 nathanw * be hard-wired, so we read the start and size from the PROM and
107 1.44.4.2 nathanw * just use those values.
108 1.44.4.2 nathanw */
109 1.44.4.2 nathanw is->is_cr = (tsbsize << 16) | IOMMUCR_EN;
110 1.44.4.2 nathanw is->is_tsbsize = tsbsize;
111 1.44.4.2 nathanw if (iovabase == -1) {
112 1.44.4.2 nathanw is->is_dvmabase = IOTSB_VSTART(is->is_tsbsize);
113 1.44.4.2 nathanw is->is_dvmaend = IOTSB_VEND;
114 1.44.4.2 nathanw } else {
115 1.44.4.2 nathanw is->is_dvmabase = iovabase;
116 1.44.4.2 nathanw is->is_dvmaend = iovabase + IOTSB_VSIZE(tsbsize);
117 1.44.4.2 nathanw }
118 1.44.4.2 nathanw
119 1.44.4.2 nathanw /*
120 1.44.4.2 nathanw * Allocate memory for I/O pagetables. They need to be physically
121 1.44.4.2 nathanw * contiguous.
122 1.44.4.2 nathanw */
123 1.44.4.2 nathanw
124 1.44.4.2 nathanw size = NBPG<<(is->is_tsbsize);
125 1.44.4.2 nathanw if (uvm_pglistalloc((psize_t)size, (paddr_t)0, (paddr_t)-1,
126 1.44.4.2 nathanw (paddr_t)NBPG, (paddr_t)0, &mlist, 1, 0) != 0)
127 1.44.4.2 nathanw panic("iommu_init: no memory");
128 1.44.4.2 nathanw
129 1.44.4.2 nathanw va = uvm_km_valloc(kernel_map, size);
130 1.44.4.2 nathanw if (va == 0)
131 1.44.4.2 nathanw panic("iommu_init: no memory");
132 1.44.4.2 nathanw is->is_tsb = (int64_t *)va;
133 1.44.4.2 nathanw
134 1.44.4.2 nathanw m = TAILQ_FIRST(&mlist);
135 1.44.4.2 nathanw is->is_ptsb = VM_PAGE_TO_PHYS(m);
136 1.44.4.2 nathanw
137 1.44.4.2 nathanw /* Map the pages */
138 1.44.4.2 nathanw for (; m != NULL; m = TAILQ_NEXT(m,pageq)) {
139 1.44.4.2 nathanw pa = VM_PAGE_TO_PHYS(m);
140 1.44.4.2 nathanw pmap_enter(pmap_kernel(), va, pa | PMAP_NVC,
141 1.44.4.2 nathanw VM_PROT_READ|VM_PROT_WRITE,
142 1.44.4.2 nathanw VM_PROT_READ|VM_PROT_WRITE|PMAP_WIRED);
143 1.44.4.2 nathanw va += NBPG;
144 1.44.4.2 nathanw }
145 1.44.4.2 nathanw pmap_update(pmap_kernel());
146 1.44.4.2 nathanw bzero(is->is_tsb, size);
147 1.44.4.2 nathanw
148 1.44.4.2 nathanw #ifdef DEBUG
149 1.44.4.2 nathanw if (iommudebug & IDB_INFO)
150 1.44.4.2 nathanw {
151 1.44.4.2 nathanw /* Probe the iommu */
152 1.44.4.2 nathanw
153 1.44.4.2 nathanw printf("iommu regs at: cr=%lx tsb=%lx flush=%lx\n",
154 1.44.4.3 nathanw (u_long)bus_space_read_8(is->is_bustag, is->is_iommu,
155 1.44.4.3 nathanw offsetof (struct iommureg, iommu_cr)),
156 1.44.4.3 nathanw (u_long)bus_space_read_8(is->is_bustag, is->is_iommu,
157 1.44.4.3 nathanw offsetof (struct iommureg, iommu_tsb)),
158 1.44.4.3 nathanw (u_long)bus_space_read_8(is->is_bustag, is->is_iommu,
159 1.44.4.3 nathanw offsetof (struct iommureg, iommu_flush)));
160 1.44.4.3 nathanw printf("iommu cr=%llx tsb=%llx\n",
161 1.44.4.3 nathanw (unsigned long long)bus_space_read_8(is->is_bustag,
162 1.44.4.3 nathanw is->is_iommu,
163 1.44.4.3 nathanw offsetof (struct iommureg, iommu_cr)),
164 1.44.4.3 nathanw (unsigned long long)bus_space_read_8(is->is_bustag,
165 1.44.4.3 nathanw is->is_iommu,
166 1.44.4.3 nathanw offsetof (struct iommureg, iommu_tsb)));
167 1.44.4.3 nathanw printf("TSB base %p phys %llx\n", (void *)is->is_tsb,
168 1.44.4.3 nathanw (unsigned long long)is->is_ptsb);
169 1.44.4.2 nathanw delay(1000000); /* 1 s */
170 1.44.4.2 nathanw }
171 1.44.4.2 nathanw #endif
172 1.44.4.2 nathanw
173 1.44.4.2 nathanw /*
174 1.44.4.2 nathanw * now actually start up the IOMMU
175 1.44.4.2 nathanw */
176 1.44.4.2 nathanw iommu_reset(is);
177 1.44.4.2 nathanw
178 1.44.4.2 nathanw /*
179 1.44.4.2 nathanw * Now all the hardware's working we need to allocate a dvma map.
180 1.44.4.2 nathanw */
181 1.44.4.2 nathanw printf("DVMA map: %x to %x\n",
182 1.44.4.2 nathanw (unsigned int)is->is_dvmabase,
183 1.44.4.2 nathanw (unsigned int)is->is_dvmaend);
184 1.44.4.2 nathanw printf("IOTSB: %llx to %llx\n",
185 1.44.4.2 nathanw (unsigned long long)is->is_ptsb,
186 1.44.4.2 nathanw (unsigned long long)(is->is_ptsb + size));
187 1.44.4.2 nathanw is->is_dvmamap = extent_create(name,
188 1.44.4.2 nathanw is->is_dvmabase, is->is_dvmaend - NBPG,
189 1.44.4.2 nathanw M_DEVBUF, 0, 0, EX_NOWAIT);
190 1.44.4.2 nathanw }
191 1.44.4.2 nathanw
192 1.44.4.2 nathanw /*
193 1.44.4.2 nathanw * Streaming buffers don't exist on the UltraSPARC IIi; we should have
194 1.44.4.2 nathanw * detected that already and disabled them. If not, we will notice that
195 1.44.4.2 nathanw * they aren't there when the STRBUF_EN bit does not remain.
196 1.44.4.2 nathanw */
197 1.44.4.2 nathanw void
198 1.44.4.2 nathanw iommu_reset(is)
199 1.44.4.2 nathanw struct iommu_state *is;
200 1.44.4.2 nathanw {
201 1.44.4.2 nathanw int i;
202 1.44.4.5 nathanw struct strbuf_ctl *sb;
203 1.44.4.2 nathanw
204 1.44.4.2 nathanw /* Need to do 64-bit stores */
205 1.44.4.3 nathanw bus_space_write_8(is->is_bustag, is->is_iommu, IOMMUREG(iommu_tsb),
206 1.44.4.3 nathanw is->is_ptsb);
207 1.44.4.3 nathanw
208 1.44.4.2 nathanw /* Enable IOMMU in diagnostic mode */
209 1.44.4.3 nathanw bus_space_write_8(is->is_bustag, is->is_iommu, IOMMUREG(iommu_cr),
210 1.44.4.3 nathanw is->is_cr|IOMMUCR_DE);
211 1.44.4.2 nathanw
212 1.44.4.2 nathanw for (i=0; i<2; i++) {
213 1.44.4.5 nathanw if ((sb = is->is_sb[i])) {
214 1.44.4.2 nathanw
215 1.44.4.2 nathanw /* Enable diagnostics mode? */
216 1.44.4.5 nathanw bus_space_write_8(is->is_bustag, is->is_sb[i]->sb_sb,
217 1.44.4.3 nathanw STRBUFREG(strbuf_ctl), STRBUF_EN);
218 1.44.4.2 nathanw
219 1.44.4.2 nathanw /* No streaming buffers? Disable them */
220 1.44.4.5 nathanw if (bus_space_read_8(is->is_bustag,
221 1.44.4.5 nathanw is->is_sb[i]->sb_sb,
222 1.44.4.5 nathanw STRBUFREG(strbuf_ctl)) == 0) {
223 1.44.4.5 nathanw is->is_sb[i]->sb_flush = NULL;
224 1.44.4.5 nathanw } else {
225 1.44.4.5 nathanw /*
226 1.44.4.5 nathanw * locate the pa of the flush buffer.
227 1.44.4.5 nathanw */
228 1.44.4.5 nathanw (void)pmap_extract(pmap_kernel(),
229 1.44.4.5 nathanw (vaddr_t)is->is_sb[i]->sb_flush,
230 1.44.4.5 nathanw &is->is_sb[i]->sb_flushpa);
231 1.44.4.5 nathanw }
232 1.44.4.2 nathanw }
233 1.44.4.2 nathanw }
234 1.44.4.2 nathanw }
235 1.44.4.2 nathanw
236 1.44.4.2 nathanw /*
237 1.44.4.2 nathanw * Here are the iommu control routines.
238 1.44.4.2 nathanw */
239 1.44.4.2 nathanw void
240 1.44.4.5 nathanw iommu_enter(sb, va, pa, flags)
241 1.44.4.5 nathanw struct strbuf_ctl *sb;
242 1.44.4.2 nathanw vaddr_t va;
243 1.44.4.2 nathanw int64_t pa;
244 1.44.4.2 nathanw int flags;
245 1.44.4.2 nathanw {
246 1.44.4.5 nathanw struct iommu_state *is = sb->sb_is;
247 1.44.4.5 nathanw int strbuf = (flags & BUS_DMA_STREAMING);
248 1.44.4.2 nathanw int64_t tte;
249 1.44.4.2 nathanw
250 1.44.4.2 nathanw #ifdef DIAGNOSTIC
251 1.44.4.2 nathanw if (va < is->is_dvmabase || va > is->is_dvmaend)
252 1.44.4.2 nathanw panic("iommu_enter: va %#lx not in DVMA space", va);
253 1.44.4.2 nathanw #endif
254 1.44.4.2 nathanw
255 1.44.4.5 nathanw /* Is the streamcache flush really needed? */
256 1.44.4.5 nathanw if (sb->sb_flush) {
257 1.44.4.5 nathanw iommu_strbuf_flush(sb, va);
258 1.44.4.5 nathanw iommu_strbuf_flush_done(sb);
259 1.44.4.5 nathanw } else
260 1.44.4.5 nathanw /* If we can't flush the strbuf don't enable it. */
261 1.44.4.5 nathanw strbuf = 0;
262 1.44.4.5 nathanw
263 1.44.4.4 nathanw tte = MAKEIOTTE(pa, !(flags & BUS_DMA_NOWRITE),
264 1.44.4.5 nathanw !(flags & BUS_DMA_NOCACHE), (strbuf));
265 1.44.4.3 nathanw #ifdef DEBUG
266 1.44.4.3 nathanw tte |= (flags & 0xff000LL)<<(4*8);
267 1.44.4.3 nathanw #endif
268 1.44.4.2 nathanw
269 1.44.4.2 nathanw DPRINTF(IDB_IOMMU, ("Clearing TSB slot %d for va %p\n",
270 1.44.4.2 nathanw (int)IOTSBSLOT(va,is->is_tsbsize), (void *)(u_long)va));
271 1.44.4.2 nathanw is->is_tsb[IOTSBSLOT(va,is->is_tsbsize)] = tte;
272 1.44.4.3 nathanw bus_space_write_8(is->is_bustag, is->is_iommu,
273 1.44.4.3 nathanw IOMMUREG(iommu_flush), va);
274 1.44.4.2 nathanw DPRINTF(IDB_IOMMU, ("iommu_enter: va %lx pa %lx TSB[%lx]@%p=%lx\n",
275 1.44.4.3 nathanw va, (long)pa, (u_long)IOTSBSLOT(va,is->is_tsbsize),
276 1.44.4.3 nathanw (void *)(u_long)&is->is_tsb[IOTSBSLOT(va,is->is_tsbsize)],
277 1.44.4.3 nathanw (u_long)tte));
278 1.44.4.2 nathanw }
279 1.44.4.2 nathanw
280 1.44.4.2 nathanw
281 1.44.4.2 nathanw /*
282 1.44.4.2 nathanw * Find the value of a DVMA address (debug routine).
283 1.44.4.2 nathanw */
284 1.44.4.2 nathanw paddr_t
285 1.44.4.2 nathanw iommu_extract(is, dva)
286 1.44.4.2 nathanw struct iommu_state *is;
287 1.44.4.2 nathanw vaddr_t dva;
288 1.44.4.2 nathanw {
289 1.44.4.2 nathanw int64_t tte = 0;
290 1.44.4.2 nathanw
291 1.44.4.2 nathanw if (dva >= is->is_dvmabase && dva < is->is_dvmaend)
292 1.44.4.5 nathanw tte = is->is_tsb[IOTSBSLOT(dva, is->is_tsbsize)];
293 1.44.4.2 nathanw
294 1.44.4.4 nathanw if ((tte & IOTTE_V) == 0)
295 1.44.4.2 nathanw return ((paddr_t)-1L);
296 1.44.4.4 nathanw return (tte & IOTTE_PAMASK);
297 1.44.4.2 nathanw }
298 1.44.4.2 nathanw
299 1.44.4.2 nathanw /*
300 1.44.4.2 nathanw * iommu_remove: removes mappings created by iommu_enter
301 1.44.4.2 nathanw *
302 1.44.4.2 nathanw * Only demap from IOMMU if flag is set.
303 1.44.4.2 nathanw *
304 1.44.4.2 nathanw * XXX: this function needs better internal error checking.
305 1.44.4.2 nathanw */
306 1.44.4.2 nathanw void
307 1.44.4.2 nathanw iommu_remove(is, va, len)
308 1.44.4.2 nathanw struct iommu_state *is;
309 1.44.4.2 nathanw vaddr_t va;
310 1.44.4.2 nathanw size_t len;
311 1.44.4.2 nathanw {
312 1.44.4.2 nathanw
313 1.44.4.2 nathanw #ifdef DIAGNOSTIC
314 1.44.4.2 nathanw if (va < is->is_dvmabase || va > is->is_dvmaend)
315 1.44.4.2 nathanw panic("iommu_remove: va 0x%lx not in DVMA space", (u_long)va);
316 1.44.4.2 nathanw if ((long)(va + len) < (long)va)
317 1.44.4.2 nathanw panic("iommu_remove: va 0x%lx + len 0x%lx wraps",
318 1.44.4.2 nathanw (long) va, (long) len);
319 1.44.4.2 nathanw if (len & ~0xfffffff)
320 1.44.4.2 nathanw panic("iommu_remove: rediculous len 0x%lx", (u_long)len);
321 1.44.4.2 nathanw #endif
322 1.44.4.2 nathanw
323 1.44.4.2 nathanw va = trunc_page(va);
324 1.44.4.2 nathanw DPRINTF(IDB_IOMMU, ("iommu_remove: va %lx TSB[%lx]@%p\n",
325 1.44.4.3 nathanw va, (u_long)IOTSBSLOT(va, is->is_tsbsize),
326 1.44.4.3 nathanw &is->is_tsb[IOTSBSLOT(va, is->is_tsbsize)]));
327 1.44.4.2 nathanw while (len > 0) {
328 1.44.4.3 nathanw DPRINTF(IDB_IOMMU, ("iommu_remove: clearing TSB slot %d "
329 1.44.4.3 nathanw "for va %p size %lx\n",
330 1.44.4.3 nathanw (int)IOTSBSLOT(va,is->is_tsbsize), (void *)(u_long)va,
331 1.44.4.3 nathanw (u_long)len));
332 1.44.4.2 nathanw if (len <= NBPG)
333 1.44.4.2 nathanw len = 0;
334 1.44.4.2 nathanw else
335 1.44.4.2 nathanw len -= NBPG;
336 1.44.4.2 nathanw
337 1.44.4.2 nathanw /* XXX Zero-ing the entry would not require RMW */
338 1.44.4.2 nathanw is->is_tsb[IOTSBSLOT(va,is->is_tsbsize)] &= ~IOTTE_V;
339 1.44.4.3 nathanw bus_space_write_8(is->is_bustag, is->is_iommu,
340 1.44.4.3 nathanw IOMMUREG(iommu_flush), va);
341 1.44.4.2 nathanw va += NBPG;
342 1.44.4.2 nathanw }
343 1.44.4.2 nathanw }
344 1.44.4.2 nathanw
345 1.44.4.2 nathanw static int
346 1.44.4.5 nathanw iommu_strbuf_flush_done(sb)
347 1.44.4.5 nathanw struct strbuf_ctl *sb;
348 1.44.4.2 nathanw {
349 1.44.4.5 nathanw struct iommu_state *is = sb->sb_is;
350 1.44.4.2 nathanw struct timeval cur, flushtimeout;
351 1.44.4.2 nathanw
352 1.44.4.2 nathanw #define BUMPTIME(t, usec) { \
353 1.44.4.2 nathanw register volatile struct timeval *tp = (t); \
354 1.44.4.2 nathanw register long us; \
355 1.44.4.2 nathanw \
356 1.44.4.2 nathanw tp->tv_usec = us = tp->tv_usec + (usec); \
357 1.44.4.2 nathanw if (us >= 1000000) { \
358 1.44.4.2 nathanw tp->tv_usec = us - 1000000; \
359 1.44.4.2 nathanw tp->tv_sec++; \
360 1.44.4.2 nathanw } \
361 1.44.4.2 nathanw }
362 1.44.4.2 nathanw
363 1.44.4.5 nathanw if (!sb->sb_flush)
364 1.44.4.2 nathanw return (0);
365 1.44.4.2 nathanw
366 1.44.4.2 nathanw /*
367 1.44.4.2 nathanw * Streaming buffer flushes:
368 1.44.4.2 nathanw *
369 1.44.4.2 nathanw * 1 Tell strbuf to flush by storing va to strbuf_pgflush. If
370 1.44.4.2 nathanw * we're not on a cache line boundary (64-bits):
371 1.44.4.2 nathanw * 2 Store 0 in flag
372 1.44.4.2 nathanw * 3 Store pointer to flag in flushsync
373 1.44.4.2 nathanw * 4 wait till flushsync becomes 0x1
374 1.44.4.2 nathanw *
375 1.44.4.2 nathanw * If it takes more than .5 sec, something
376 1.44.4.2 nathanw * went wrong.
377 1.44.4.2 nathanw */
378 1.44.4.2 nathanw
379 1.44.4.5 nathanw *sb->sb_flush = 0;
380 1.44.4.5 nathanw bus_space_write_8(is->is_bustag, sb->sb_sb,
381 1.44.4.5 nathanw STRBUFREG(strbuf_flushsync), sb->sb_flushpa);
382 1.44.4.2 nathanw
383 1.44.4.2 nathanw microtime(&flushtimeout);
384 1.44.4.2 nathanw cur = flushtimeout;
385 1.44.4.2 nathanw BUMPTIME(&flushtimeout, 500000); /* 1/2 sec */
386 1.44.4.2 nathanw
387 1.44.4.5 nathanw DPRINTF(IDB_IOMMU, ("iommu_strbuf_flush_done: flush = %lx "
388 1.44.4.2 nathanw "at va = %lx pa = %lx now=%lx:%lx until = %lx:%lx\n",
389 1.44.4.5 nathanw (long)*sb->sb_flush, (long)sb->sb_flush, (long)sb->sb_flushpa,
390 1.44.4.2 nathanw cur.tv_sec, cur.tv_usec,
391 1.44.4.2 nathanw flushtimeout.tv_sec, flushtimeout.tv_usec));
392 1.44.4.2 nathanw
393 1.44.4.2 nathanw /* Bypass non-coherent D$ */
394 1.44.4.5 nathanw while ((!ldxa(sb->sb_flushpa, ASI_PHYS_CACHED)) &&
395 1.44.4.2 nathanw ((cur.tv_sec <= flushtimeout.tv_sec) &&
396 1.44.4.2 nathanw (cur.tv_usec <= flushtimeout.tv_usec)))
397 1.44.4.2 nathanw microtime(&cur);
398 1.44.4.2 nathanw
399 1.44.4.2 nathanw #ifdef DIAGNOSTIC
400 1.44.4.5 nathanw if (!ldxa(sb->sb_flushpa, ASI_PHYS_CACHED)) {
401 1.44.4.5 nathanw printf("iommu_strbuf_flush_done: flush timeout %p, at %p\n",
402 1.44.4.5 nathanw (void *)(u_long)*sb->sb_flush,
403 1.44.4.5 nathanw (void *)(u_long)sb->sb_flushpa); /* panic? */
404 1.44.4.2 nathanw #ifdef DDB
405 1.44.4.2 nathanw Debugger();
406 1.44.4.2 nathanw #endif
407 1.44.4.2 nathanw }
408 1.44.4.2 nathanw #endif
409 1.44.4.2 nathanw DPRINTF(IDB_IOMMU, ("iommu_strbuf_flush_done: flushed\n"));
410 1.44.4.5 nathanw return (*sb->sb_flush);
411 1.44.4.2 nathanw }
412 1.44.4.2 nathanw
413 1.44.4.2 nathanw /*
414 1.44.4.2 nathanw * IOMMU DVMA operations, common to SBUS and PCI.
415 1.44.4.2 nathanw */
416 1.44.4.2 nathanw int
417 1.44.4.5 nathanw iommu_dvmamap_load(t, sb, map, buf, buflen, p, flags)
418 1.44.4.2 nathanw bus_dma_tag_t t;
419 1.44.4.5 nathanw struct strbuf_ctl *sb;
420 1.44.4.2 nathanw bus_dmamap_t map;
421 1.44.4.2 nathanw void *buf;
422 1.44.4.2 nathanw bus_size_t buflen;
423 1.44.4.2 nathanw struct proc *p;
424 1.44.4.2 nathanw int flags;
425 1.44.4.2 nathanw {
426 1.44.4.5 nathanw struct iommu_state *is = sb->sb_is;
427 1.44.4.2 nathanw int s;
428 1.44.4.2 nathanw int err;
429 1.44.4.2 nathanw bus_size_t sgsize;
430 1.44.4.2 nathanw paddr_t curaddr;
431 1.44.4.2 nathanw u_long dvmaddr, sgstart, sgend;
432 1.44.4.2 nathanw bus_size_t align, boundary;
433 1.44.4.2 nathanw vaddr_t vaddr = (vaddr_t)buf;
434 1.44.4.2 nathanw int seg;
435 1.44.4.2 nathanw pmap_t pmap;
436 1.44.4.2 nathanw
437 1.44.4.2 nathanw if (map->dm_nsegs) {
438 1.44.4.2 nathanw /* Already in use?? */
439 1.44.4.2 nathanw #ifdef DIAGNOSTIC
440 1.44.4.2 nathanw printf("iommu_dvmamap_load: map still in use\n");
441 1.44.4.2 nathanw #endif
442 1.44.4.2 nathanw bus_dmamap_unload(t, map);
443 1.44.4.2 nathanw }
444 1.44.4.2 nathanw /*
445 1.44.4.2 nathanw * Make sure that on error condition we return "no valid mappings".
446 1.44.4.2 nathanw */
447 1.44.4.2 nathanw map->dm_nsegs = 0;
448 1.44.4.2 nathanw
449 1.44.4.2 nathanw if (buflen > map->_dm_size) {
450 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA,
451 1.44.4.2 nathanw ("iommu_dvmamap_load(): error %d > %d -- "
452 1.44.4.2 nathanw "map size exceeded!\n", (int)buflen, (int)map->_dm_size));
453 1.44.4.2 nathanw return (EINVAL);
454 1.44.4.2 nathanw }
455 1.44.4.2 nathanw
456 1.44.4.2 nathanw sgsize = round_page(buflen + ((int)vaddr & PGOFSET));
457 1.44.4.2 nathanw
458 1.44.4.2 nathanw /*
459 1.44.4.2 nathanw * A boundary presented to bus_dmamem_alloc() takes precedence
460 1.44.4.2 nathanw * over boundary in the map.
461 1.44.4.2 nathanw */
462 1.44.4.2 nathanw if ((boundary = (map->dm_segs[0]._ds_boundary)) == 0)
463 1.44.4.2 nathanw boundary = map->_dm_boundary;
464 1.44.4.2 nathanw align = max(map->dm_segs[0]._ds_align, NBPG);
465 1.44.4.2 nathanw s = splhigh();
466 1.44.4.2 nathanw /*
467 1.44.4.2 nathanw * If our segment size is larger than the boundary we need to
468 1.44.4.2 nathanw * split the transfer up int little pieces ourselves.
469 1.44.4.2 nathanw */
470 1.44.4.2 nathanw err = extent_alloc(is->is_dvmamap, sgsize, align,
471 1.44.4.2 nathanw (sgsize > boundary) ? 0 : boundary,
472 1.44.4.4 nathanw EX_NOWAIT|EX_BOUNDZERO, &dvmaddr);
473 1.44.4.2 nathanw splx(s);
474 1.44.4.2 nathanw
475 1.44.4.2 nathanw #ifdef DEBUG
476 1.44.4.2 nathanw if (err || (dvmaddr == (bus_addr_t)-1))
477 1.44.4.2 nathanw {
478 1.44.4.2 nathanw printf("iommu_dvmamap_load(): extent_alloc(%d, %x) failed!\n",
479 1.44.4.2 nathanw (int)sgsize, flags);
480 1.44.4.2 nathanw #ifdef DDB
481 1.44.4.2 nathanw Debugger();
482 1.44.4.2 nathanw #endif
483 1.44.4.2 nathanw }
484 1.44.4.2 nathanw #endif
485 1.44.4.2 nathanw if (err != 0)
486 1.44.4.2 nathanw return (err);
487 1.44.4.2 nathanw
488 1.44.4.2 nathanw if (dvmaddr == (bus_addr_t)-1)
489 1.44.4.2 nathanw return (ENOMEM);
490 1.44.4.2 nathanw
491 1.44.4.2 nathanw /* Set the active DVMA map */
492 1.44.4.2 nathanw map->_dm_dvmastart = dvmaddr;
493 1.44.4.2 nathanw map->_dm_dvmasize = sgsize;
494 1.44.4.2 nathanw
495 1.44.4.2 nathanw /*
496 1.44.4.2 nathanw * Now split the DVMA range into segments, not crossing
497 1.44.4.2 nathanw * the boundary.
498 1.44.4.2 nathanw */
499 1.44.4.2 nathanw seg = 0;
500 1.44.4.2 nathanw sgstart = dvmaddr + (vaddr & PGOFSET);
501 1.44.4.2 nathanw sgend = sgstart + buflen - 1;
502 1.44.4.2 nathanw map->dm_segs[seg].ds_addr = sgstart;
503 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load: boundary %lx boundary-1 %lx "
504 1.44.4.2 nathanw "~(boundary-1) %lx\n", boundary, (boundary-1), ~(boundary-1)));
505 1.44.4.2 nathanw while ((sgstart & ~(boundary - 1)) != (sgend & ~(boundary - 1))) {
506 1.44.4.2 nathanw /* Oops. We crossed a boundary. Split the xfer. */
507 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load: "
508 1.44.4.2 nathanw "seg %d start %lx size %lx\n", seg,
509 1.44.4.2 nathanw (long)map->dm_segs[seg].ds_addr,
510 1.44.4.2 nathanw map->dm_segs[seg].ds_len));
511 1.44.4.3 nathanw map->dm_segs[seg].ds_len =
512 1.44.4.3 nathanw boundary - (sgstart & (boundary - 1));
513 1.44.4.4 nathanw if (++seg >= map->_dm_segcnt) {
514 1.44.4.2 nathanw /* Too many segments. Fail the operation. */
515 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load: "
516 1.44.4.2 nathanw "too many segments %d\n", seg));
517 1.44.4.2 nathanw s = splhigh();
518 1.44.4.2 nathanw /* How can this fail? And if it does what can we do? */
519 1.44.4.2 nathanw err = extent_free(is->is_dvmamap,
520 1.44.4.2 nathanw dvmaddr, sgsize, EX_NOWAIT);
521 1.44.4.2 nathanw map->_dm_dvmastart = 0;
522 1.44.4.2 nathanw map->_dm_dvmasize = 0;
523 1.44.4.2 nathanw splx(s);
524 1.44.4.2 nathanw return (E2BIG);
525 1.44.4.2 nathanw }
526 1.44.4.2 nathanw sgstart = roundup(sgstart, boundary);
527 1.44.4.2 nathanw map->dm_segs[seg].ds_addr = sgstart;
528 1.44.4.2 nathanw }
529 1.44.4.2 nathanw map->dm_segs[seg].ds_len = sgend - sgstart + 1;
530 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load: "
531 1.44.4.2 nathanw "seg %d start %lx size %lx\n", seg,
532 1.44.4.2 nathanw (long)map->dm_segs[seg].ds_addr, map->dm_segs[seg].ds_len));
533 1.44.4.2 nathanw map->dm_nsegs = seg+1;
534 1.44.4.2 nathanw map->dm_mapsize = buflen;
535 1.44.4.2 nathanw
536 1.44.4.2 nathanw if (p != NULL)
537 1.44.4.2 nathanw pmap = p->p_vmspace->vm_map.pmap;
538 1.44.4.2 nathanw else
539 1.44.4.2 nathanw pmap = pmap_kernel();
540 1.44.4.2 nathanw
541 1.44.4.2 nathanw for (; buflen > 0; ) {
542 1.44.4.2 nathanw /*
543 1.44.4.2 nathanw * Get the physical address for this page.
544 1.44.4.2 nathanw */
545 1.44.4.2 nathanw if (pmap_extract(pmap, (vaddr_t)vaddr, &curaddr) == FALSE) {
546 1.44.4.2 nathanw bus_dmamap_unload(t, map);
547 1.44.4.2 nathanw return (-1);
548 1.44.4.2 nathanw }
549 1.44.4.2 nathanw
550 1.44.4.2 nathanw /*
551 1.44.4.2 nathanw * Compute the segment size, and adjust counts.
552 1.44.4.2 nathanw */
553 1.44.4.2 nathanw sgsize = NBPG - ((u_long)vaddr & PGOFSET);
554 1.44.4.2 nathanw if (buflen < sgsize)
555 1.44.4.2 nathanw sgsize = buflen;
556 1.44.4.2 nathanw
557 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA,
558 1.44.4.2 nathanw ("iommu_dvmamap_load: map %p loading va %p "
559 1.44.4.2 nathanw "dva %lx at pa %lx\n",
560 1.44.4.2 nathanw map, (void *)vaddr, (long)dvmaddr,
561 1.44.4.4 nathanw (long)(curaddr & ~(NBPG-1))));
562 1.44.4.5 nathanw iommu_enter(sb, trunc_page(dvmaddr), trunc_page(curaddr),
563 1.44.4.2 nathanw flags|0x4000);
564 1.44.4.2 nathanw
565 1.44.4.2 nathanw dvmaddr += PAGE_SIZE;
566 1.44.4.2 nathanw vaddr += sgsize;
567 1.44.4.2 nathanw buflen -= sgsize;
568 1.44.4.2 nathanw }
569 1.44.4.2 nathanw #ifdef DIAGNOSTIC
570 1.44.4.2 nathanw for (seg = 0; seg < map->dm_nsegs; seg++) {
571 1.44.4.2 nathanw if (map->dm_segs[seg].ds_addr < is->is_dvmabase ||
572 1.44.4.2 nathanw map->dm_segs[seg].ds_addr > is->is_dvmaend) {
573 1.44.4.2 nathanw printf("seg %d dvmaddr %lx out of range %x - %x\n",
574 1.44.4.2 nathanw seg, (long)map->dm_segs[seg].ds_addr,
575 1.44.4.2 nathanw is->is_dvmabase, is->is_dvmaend);
576 1.44.4.6 nathanw #ifdef DDB
577 1.44.4.2 nathanw Debugger();
578 1.44.4.6 nathanw #endif
579 1.44.4.2 nathanw }
580 1.44.4.2 nathanw }
581 1.44.4.2 nathanw #endif
582 1.44.4.2 nathanw return (0);
583 1.44.4.2 nathanw }
584 1.44.4.2 nathanw
585 1.44.4.2 nathanw
586 1.44.4.2 nathanw void
587 1.44.4.5 nathanw iommu_dvmamap_unload(t, sb, map)
588 1.44.4.2 nathanw bus_dma_tag_t t;
589 1.44.4.5 nathanw struct strbuf_ctl *sb;
590 1.44.4.2 nathanw bus_dmamap_t map;
591 1.44.4.2 nathanw {
592 1.44.4.5 nathanw struct iommu_state *is = sb->sb_is;
593 1.44.4.2 nathanw int error, s;
594 1.44.4.2 nathanw bus_size_t sgsize;
595 1.44.4.2 nathanw
596 1.44.4.2 nathanw /* Flush the iommu */
597 1.44.4.2 nathanw #ifdef DEBUG
598 1.44.4.2 nathanw if (!map->_dm_dvmastart) {
599 1.44.4.2 nathanw printf("iommu_dvmamap_unload: No dvmastart is zero\n");
600 1.44.4.2 nathanw #ifdef DDB
601 1.44.4.2 nathanw Debugger();
602 1.44.4.2 nathanw #endif
603 1.44.4.2 nathanw }
604 1.44.4.2 nathanw #endif
605 1.44.4.2 nathanw iommu_remove(is, map->_dm_dvmastart, map->_dm_dvmasize);
606 1.44.4.2 nathanw
607 1.44.4.2 nathanw /* Flush the caches */
608 1.44.4.2 nathanw bus_dmamap_unload(t->_parent, map);
609 1.44.4.2 nathanw
610 1.44.4.2 nathanw /* Mark the mappings as invalid. */
611 1.44.4.2 nathanw map->dm_mapsize = 0;
612 1.44.4.2 nathanw map->dm_nsegs = 0;
613 1.44.4.2 nathanw
614 1.44.4.2 nathanw s = splhigh();
615 1.44.4.2 nathanw error = extent_free(is->is_dvmamap, map->_dm_dvmastart,
616 1.44.4.2 nathanw map->_dm_dvmasize, EX_NOWAIT);
617 1.44.4.2 nathanw map->_dm_dvmastart = 0;
618 1.44.4.2 nathanw map->_dm_dvmasize = 0;
619 1.44.4.2 nathanw splx(s);
620 1.44.4.2 nathanw if (error != 0)
621 1.44.4.2 nathanw printf("warning: %qd of DVMA space lost\n", (long long)sgsize);
622 1.44.4.2 nathanw
623 1.44.4.2 nathanw /* Clear the map */
624 1.44.4.2 nathanw }
625 1.44.4.2 nathanw
626 1.44.4.2 nathanw
627 1.44.4.2 nathanw int
628 1.44.4.5 nathanw iommu_dvmamap_load_raw(t, sb, map, segs, nsegs, flags, size)
629 1.44.4.2 nathanw bus_dma_tag_t t;
630 1.44.4.5 nathanw struct strbuf_ctl *sb;
631 1.44.4.2 nathanw bus_dmamap_t map;
632 1.44.4.2 nathanw bus_dma_segment_t *segs;
633 1.44.4.2 nathanw int nsegs;
634 1.44.4.2 nathanw int flags;
635 1.44.4.2 nathanw bus_size_t size;
636 1.44.4.2 nathanw {
637 1.44.4.5 nathanw struct iommu_state *is = sb->sb_is;
638 1.44.4.2 nathanw struct vm_page *m;
639 1.44.4.2 nathanw int i, j, s;
640 1.44.4.2 nathanw int left;
641 1.44.4.2 nathanw int err;
642 1.44.4.2 nathanw bus_size_t sgsize;
643 1.44.4.2 nathanw paddr_t pa;
644 1.44.4.2 nathanw bus_size_t boundary, align;
645 1.44.4.2 nathanw u_long dvmaddr, sgstart, sgend;
646 1.44.4.2 nathanw struct pglist *mlist;
647 1.44.4.2 nathanw int pagesz = PAGE_SIZE;
648 1.44.4.2 nathanw int npg = 0; /* DEBUG */
649 1.44.4.2 nathanw
650 1.44.4.2 nathanw if (map->dm_nsegs) {
651 1.44.4.2 nathanw /* Already in use?? */
652 1.44.4.2 nathanw #ifdef DIAGNOSTIC
653 1.44.4.2 nathanw printf("iommu_dvmamap_load_raw: map still in use\n");
654 1.44.4.2 nathanw #endif
655 1.44.4.2 nathanw bus_dmamap_unload(t, map);
656 1.44.4.2 nathanw }
657 1.44.4.2 nathanw
658 1.44.4.2 nathanw /*
659 1.44.4.2 nathanw * A boundary presented to bus_dmamem_alloc() takes precedence
660 1.44.4.2 nathanw * over boundary in the map.
661 1.44.4.2 nathanw */
662 1.44.4.2 nathanw if ((boundary = segs[0]._ds_boundary) == 0)
663 1.44.4.2 nathanw boundary = map->_dm_boundary;
664 1.44.4.2 nathanw
665 1.44.4.2 nathanw align = max(segs[0]._ds_align, pagesz);
666 1.44.4.2 nathanw
667 1.44.4.2 nathanw /*
668 1.44.4.2 nathanw * Make sure that on error condition we return "no valid mappings".
669 1.44.4.2 nathanw */
670 1.44.4.2 nathanw map->dm_nsegs = 0;
671 1.44.4.2 nathanw /* Count up the total number of pages we need */
672 1.44.4.2 nathanw pa = segs[0].ds_addr;
673 1.44.4.2 nathanw sgsize = 0;
674 1.44.4.2 nathanw left = size;
675 1.44.4.2 nathanw for (i=0; left && i<nsegs; i++) {
676 1.44.4.2 nathanw if (round_page(pa) != round_page(segs[i].ds_addr))
677 1.44.4.2 nathanw sgsize = round_page(sgsize);
678 1.44.4.2 nathanw sgsize += min(left, segs[i].ds_len);
679 1.44.4.2 nathanw left -= segs[i].ds_len;
680 1.44.4.2 nathanw pa = segs[i].ds_addr + segs[i].ds_len;
681 1.44.4.2 nathanw }
682 1.44.4.2 nathanw sgsize = round_page(sgsize);
683 1.44.4.2 nathanw
684 1.44.4.2 nathanw s = splhigh();
685 1.44.4.2 nathanw /*
686 1.44.4.2 nathanw * If our segment size is larger than the boundary we need to
687 1.44.4.2 nathanw * split the transfer up into little pieces ourselves.
688 1.44.4.2 nathanw */
689 1.44.4.2 nathanw err = extent_alloc(is->is_dvmamap, sgsize, align,
690 1.44.4.2 nathanw (sgsize > boundary) ? 0 : boundary,
691 1.44.4.2 nathanw ((flags & BUS_DMA_NOWAIT) == 0 ? EX_WAITOK : EX_NOWAIT) |
692 1.44.4.4 nathanw EX_BOUNDZERO, &dvmaddr);
693 1.44.4.2 nathanw splx(s);
694 1.44.4.2 nathanw
695 1.44.4.2 nathanw if (err != 0)
696 1.44.4.2 nathanw return (err);
697 1.44.4.2 nathanw
698 1.44.4.2 nathanw #ifdef DEBUG
699 1.44.4.2 nathanw if (dvmaddr == (bus_addr_t)-1)
700 1.44.4.2 nathanw {
701 1.44.4.2 nathanw printf("iommu_dvmamap_load_raw(): extent_alloc(%d, %x) failed!\n",
702 1.44.4.2 nathanw (int)sgsize, flags);
703 1.44.4.6 nathanw #ifdef DDB
704 1.44.4.2 nathanw Debugger();
705 1.44.4.6 nathanw #endif
706 1.44.4.2 nathanw }
707 1.44.4.2 nathanw #endif
708 1.44.4.2 nathanw if (dvmaddr == (bus_addr_t)-1)
709 1.44.4.2 nathanw return (ENOMEM);
710 1.44.4.2 nathanw
711 1.44.4.2 nathanw /* Set the active DVMA map */
712 1.44.4.2 nathanw map->_dm_dvmastart = dvmaddr;
713 1.44.4.2 nathanw map->_dm_dvmasize = sgsize;
714 1.44.4.2 nathanw
715 1.44.4.2 nathanw if ((mlist = segs[0]._ds_mlist) == NULL) {
716 1.44.4.2 nathanw u_long prev_va = NULL;
717 1.44.4.2 nathanw paddr_t prev_pa = 0;
718 1.44.4.2 nathanw int end = 0, offset;
719 1.44.4.2 nathanw
720 1.44.4.2 nathanw /*
721 1.44.4.2 nathanw * This segs is made up of individual physical
722 1.44.4.2 nathanw * segments, probably by _bus_dmamap_load_uio() or
723 1.44.4.2 nathanw * _bus_dmamap_load_mbuf(). Ignore the mlist and
724 1.44.4.2 nathanw * load each one individually.
725 1.44.4.2 nathanw */
726 1.44.4.2 nathanw map->dm_mapsize = size;
727 1.44.4.2 nathanw
728 1.44.4.2 nathanw j = 0;
729 1.44.4.2 nathanw for (i = 0; i < nsegs ; i++) {
730 1.44.4.2 nathanw
731 1.44.4.2 nathanw pa = segs[i].ds_addr;
732 1.44.4.2 nathanw offset = (pa & PGOFSET);
733 1.44.4.2 nathanw pa = trunc_page(pa);
734 1.44.4.2 nathanw dvmaddr = trunc_page(dvmaddr);
735 1.44.4.2 nathanw left = min(size, segs[i].ds_len);
736 1.44.4.2 nathanw
737 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load_raw: converting "
738 1.44.4.2 nathanw "physseg %d start %lx size %lx\n", i,
739 1.44.4.2 nathanw (long)segs[i].ds_addr, segs[i].ds_len));
740 1.44.4.2 nathanw
741 1.44.4.2 nathanw if ((pa == prev_pa) &&
742 1.44.4.2 nathanw ((offset != 0) || (end != offset))) {
743 1.44.4.2 nathanw /* We can re-use this mapping */
744 1.44.4.2 nathanw dvmaddr = prev_va;
745 1.44.4.2 nathanw }
746 1.44.4.2 nathanw
747 1.44.4.2 nathanw sgstart = dvmaddr + offset;
748 1.44.4.2 nathanw sgend = sgstart + left - 1;
749 1.44.4.2 nathanw
750 1.44.4.2 nathanw /* Are the segments virtually adjacent? */
751 1.44.4.2 nathanw if ((j > 0) && (end == offset) &&
752 1.44.4.2 nathanw ((offset == 0) || (pa == prev_pa))) {
753 1.44.4.2 nathanw /* Just append to the previous segment. */
754 1.44.4.2 nathanw map->dm_segs[--j].ds_len += left;
755 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load_raw: "
756 1.44.4.2 nathanw "appending seg %d start %lx size %lx\n", j,
757 1.44.4.2 nathanw (long)map->dm_segs[j].ds_addr,
758 1.44.4.2 nathanw map->dm_segs[j].ds_len));
759 1.44.4.2 nathanw } else {
760 1.44.4.4 nathanw if (j >= map->_dm_segcnt) {
761 1.44.4.5 nathanw iommu_dvmamap_unload(t, sb, map);
762 1.44.4.4 nathanw return (E2BIG);
763 1.44.4.4 nathanw }
764 1.44.4.2 nathanw map->dm_segs[j].ds_addr = sgstart;
765 1.44.4.2 nathanw map->dm_segs[j].ds_len = left;
766 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load_raw: "
767 1.44.4.2 nathanw "seg %d start %lx size %lx\n", j,
768 1.44.4.2 nathanw (long)map->dm_segs[j].ds_addr,
769 1.44.4.2 nathanw map->dm_segs[j].ds_len));
770 1.44.4.2 nathanw }
771 1.44.4.2 nathanw end = (offset + left) & PGOFSET;
772 1.44.4.2 nathanw
773 1.44.4.2 nathanw /* Check for boundary issues */
774 1.44.4.2 nathanw while ((sgstart & ~(boundary - 1)) !=
775 1.44.4.2 nathanw (sgend & ~(boundary - 1))) {
776 1.44.4.2 nathanw /* Need a new segment. */
777 1.44.4.2 nathanw map->dm_segs[j].ds_len =
778 1.44.4.4 nathanw boundary - (sgstart & (boundary - 1));
779 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load_raw: "
780 1.44.4.2 nathanw "seg %d start %lx size %lx\n", j,
781 1.44.4.2 nathanw (long)map->dm_segs[j].ds_addr,
782 1.44.4.2 nathanw map->dm_segs[j].ds_len));
783 1.44.4.4 nathanw if (++j >= map->_dm_segcnt) {
784 1.44.4.5 nathanw iommu_dvmamap_unload(t, sb, map);
785 1.44.4.2 nathanw return (E2BIG);
786 1.44.4.2 nathanw }
787 1.44.4.2 nathanw sgstart = roundup(sgstart, boundary);
788 1.44.4.2 nathanw map->dm_segs[j].ds_addr = sgstart;
789 1.44.4.2 nathanw map->dm_segs[j].ds_len = sgend - sgstart + 1;
790 1.44.4.2 nathanw }
791 1.44.4.2 nathanw
792 1.44.4.2 nathanw if (sgsize == 0)
793 1.44.4.2 nathanw panic("iommu_dmamap_load_raw: size botch");
794 1.44.4.2 nathanw
795 1.44.4.2 nathanw /* Now map a series of pages. */
796 1.44.4.4 nathanw while (dvmaddr <= sgend) {
797 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA,
798 1.44.4.2 nathanw ("iommu_dvmamap_load_raw: map %p "
799 1.44.4.2 nathanw "loading va %lx at pa %lx\n",
800 1.44.4.2 nathanw map, (long)dvmaddr,
801 1.44.4.2 nathanw (long)(pa)));
802 1.44.4.2 nathanw /* Enter it if we haven't before. */
803 1.44.4.2 nathanw if (prev_va != dvmaddr)
804 1.44.4.5 nathanw iommu_enter(sb, prev_va = dvmaddr,
805 1.44.4.2 nathanw prev_pa = pa,
806 1.44.4.2 nathanw flags|(++npg<<12));
807 1.44.4.2 nathanw dvmaddr += pagesz;
808 1.44.4.2 nathanw pa += pagesz;
809 1.44.4.2 nathanw }
810 1.44.4.2 nathanw
811 1.44.4.2 nathanw size -= left;
812 1.44.4.2 nathanw ++j;
813 1.44.4.2 nathanw }
814 1.44.4.2 nathanw
815 1.44.4.2 nathanw map->dm_nsegs = j;
816 1.44.4.2 nathanw #ifdef DIAGNOSTIC
817 1.44.4.2 nathanw { int seg;
818 1.44.4.2 nathanw for (seg = 0; seg < map->dm_nsegs; seg++) {
819 1.44.4.2 nathanw if (map->dm_segs[seg].ds_addr < is->is_dvmabase ||
820 1.44.4.2 nathanw map->dm_segs[seg].ds_addr > is->is_dvmaend) {
821 1.44.4.2 nathanw printf("seg %d dvmaddr %lx out of range %x - %x\n",
822 1.44.4.2 nathanw seg, (long)map->dm_segs[seg].ds_addr,
823 1.44.4.2 nathanw is->is_dvmabase, is->is_dvmaend);
824 1.44.4.6 nathanw #ifdef DDB
825 1.44.4.2 nathanw Debugger();
826 1.44.4.6 nathanw #endif
827 1.44.4.2 nathanw }
828 1.44.4.2 nathanw }
829 1.44.4.2 nathanw }
830 1.44.4.2 nathanw #endif
831 1.44.4.2 nathanw return (0);
832 1.44.4.2 nathanw }
833 1.44.4.2 nathanw /*
834 1.44.4.2 nathanw * This was allocated with bus_dmamem_alloc.
835 1.44.4.2 nathanw * The pages are on an `mlist'.
836 1.44.4.2 nathanw */
837 1.44.4.2 nathanw map->dm_mapsize = size;
838 1.44.4.2 nathanw i = 0;
839 1.44.4.2 nathanw sgstart = dvmaddr;
840 1.44.4.2 nathanw sgend = sgstart + size - 1;
841 1.44.4.2 nathanw map->dm_segs[i].ds_addr = sgstart;
842 1.44.4.2 nathanw while ((sgstart & ~(boundary - 1)) != (sgend & ~(boundary - 1))) {
843 1.44.4.2 nathanw /* Oops. We crossed a boundary. Split the xfer. */
844 1.44.4.4 nathanw map->dm_segs[i].ds_len = boundary - (sgstart & (boundary - 1));
845 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load_raw: "
846 1.44.4.2 nathanw "seg %d start %lx size %lx\n", i,
847 1.44.4.2 nathanw (long)map->dm_segs[i].ds_addr,
848 1.44.4.2 nathanw map->dm_segs[i].ds_len));
849 1.44.4.4 nathanw if (++i >= map->_dm_segcnt) {
850 1.44.4.2 nathanw /* Too many segments. Fail the operation. */
851 1.44.4.2 nathanw s = splhigh();
852 1.44.4.2 nathanw /* How can this fail? And if it does what can we do? */
853 1.44.4.2 nathanw err = extent_free(is->is_dvmamap,
854 1.44.4.2 nathanw dvmaddr, sgsize, EX_NOWAIT);
855 1.44.4.2 nathanw map->_dm_dvmastart = 0;
856 1.44.4.2 nathanw map->_dm_dvmasize = 0;
857 1.44.4.2 nathanw splx(s);
858 1.44.4.2 nathanw return (E2BIG);
859 1.44.4.2 nathanw }
860 1.44.4.2 nathanw sgstart = roundup(sgstart, boundary);
861 1.44.4.2 nathanw map->dm_segs[i].ds_addr = sgstart;
862 1.44.4.2 nathanw }
863 1.44.4.2 nathanw DPRINTF(IDB_INFO, ("iommu_dvmamap_load_raw: "
864 1.44.4.2 nathanw "seg %d start %lx size %lx\n", i,
865 1.44.4.2 nathanw (long)map->dm_segs[i].ds_addr, map->dm_segs[i].ds_len));
866 1.44.4.2 nathanw map->dm_segs[i].ds_len = sgend - sgstart + 1;
867 1.44.4.2 nathanw
868 1.44.4.2 nathanw for (m = TAILQ_FIRST(mlist); m != NULL; m = TAILQ_NEXT(m,pageq)) {
869 1.44.4.2 nathanw if (sgsize == 0)
870 1.44.4.2 nathanw panic("iommu_dmamap_load_raw: size botch");
871 1.44.4.2 nathanw pa = VM_PAGE_TO_PHYS(m);
872 1.44.4.2 nathanw
873 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA,
874 1.44.4.2 nathanw ("iommu_dvmamap_load_raw: map %p loading va %lx at pa %lx\n",
875 1.44.4.2 nathanw map, (long)dvmaddr, (long)(pa)));
876 1.44.4.5 nathanw iommu_enter(sb, dvmaddr, pa, flags|0x8000);
877 1.44.4.2 nathanw
878 1.44.4.2 nathanw dvmaddr += pagesz;
879 1.44.4.2 nathanw sgsize -= pagesz;
880 1.44.4.2 nathanw }
881 1.44.4.2 nathanw map->dm_mapsize = size;
882 1.44.4.2 nathanw map->dm_nsegs = i+1;
883 1.44.4.2 nathanw #ifdef DIAGNOSTIC
884 1.44.4.2 nathanw { int seg;
885 1.44.4.2 nathanw for (seg = 0; seg < map->dm_nsegs; seg++) {
886 1.44.4.2 nathanw if (map->dm_segs[seg].ds_addr < is->is_dvmabase ||
887 1.44.4.2 nathanw map->dm_segs[seg].ds_addr > is->is_dvmaend) {
888 1.44.4.2 nathanw printf("seg %d dvmaddr %lx out of range %x - %x\n",
889 1.44.4.2 nathanw seg, (long)map->dm_segs[seg].ds_addr,
890 1.44.4.2 nathanw is->is_dvmabase, is->is_dvmaend);
891 1.44.4.6 nathanw #ifdef DDB
892 1.44.4.2 nathanw Debugger();
893 1.44.4.6 nathanw #endif
894 1.44.4.2 nathanw }
895 1.44.4.2 nathanw }
896 1.44.4.2 nathanw }
897 1.44.4.2 nathanw #endif
898 1.44.4.2 nathanw return (0);
899 1.44.4.2 nathanw }
900 1.44.4.2 nathanw
901 1.44.4.2 nathanw void
902 1.44.4.5 nathanw iommu_dvmamap_sync(t, sb, map, offset, len, ops)
903 1.44.4.2 nathanw bus_dma_tag_t t;
904 1.44.4.5 nathanw struct strbuf_ctl *sb;
905 1.44.4.2 nathanw bus_dmamap_t map;
906 1.44.4.2 nathanw bus_addr_t offset;
907 1.44.4.2 nathanw bus_size_t len;
908 1.44.4.2 nathanw int ops;
909 1.44.4.2 nathanw {
910 1.44.4.5 nathanw struct iommu_state *is = sb->sb_is;
911 1.44.4.2 nathanw vaddr_t va = map->dm_segs[0].ds_addr + offset;
912 1.44.4.5 nathanw int64_t tte;
913 1.44.4.2 nathanw
914 1.44.4.2 nathanw /*
915 1.44.4.2 nathanw * We only support one DMA segment; supporting more makes this code
916 1.44.4.2 nathanw * too unweildy.
917 1.44.4.2 nathanw */
918 1.44.4.2 nathanw
919 1.44.4.2 nathanw if (ops & BUS_DMASYNC_PREREAD) {
920 1.44.4.2 nathanw DPRINTF(IDB_SYNC,
921 1.44.4.2 nathanw ("iommu_dvmamap_sync: syncing va %p len %lu "
922 1.44.4.2 nathanw "BUS_DMASYNC_PREREAD\n", (void *)(u_long)va, (u_long)len));
923 1.44.4.2 nathanw
924 1.44.4.2 nathanw /* Nothing to do */;
925 1.44.4.2 nathanw }
926 1.44.4.2 nathanw if (ops & BUS_DMASYNC_POSTREAD) {
927 1.44.4.2 nathanw DPRINTF(IDB_SYNC,
928 1.44.4.2 nathanw ("iommu_dvmamap_sync: syncing va %p len %lu "
929 1.44.4.2 nathanw "BUS_DMASYNC_POSTREAD\n", (void *)(u_long)va, (u_long)len));
930 1.44.4.5 nathanw #ifdef DIAGNOSTIC
931 1.44.4.5 nathanw if (va < is->is_dvmabase || va >= is->is_dvmaend)
932 1.44.4.5 nathanw panic("iommu_dvmamap_sync: invalid dva %lx", va);
933 1.44.4.5 nathanw #endif
934 1.44.4.5 nathanw tte = is->is_tsb[IOTSBSLOT(va, is->is_tsbsize)];
935 1.44.4.5 nathanw
936 1.44.4.5 nathanw DPRINTF(IDB_SYNC,
937 1.44.4.5 nathanw ("iommu_dvmamap_sync: syncing va %p len %lu "
938 1.44.4.5 nathanw "BUS_DMASYNC_PREWRITE\n", (void *)(u_long)va, (u_long)len));
939 1.44.4.5 nathanw
940 1.44.4.2 nathanw /* if we have a streaming buffer, flush it here first */
941 1.44.4.5 nathanw if ((tte & IOTTE_STREAM) && sb->sb_flush)
942 1.44.4.2 nathanw while (len > 0) {
943 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA,
944 1.44.4.5 nathanw ("iommu_dvmamap_sync: flushing va %p, %lu "
945 1.44.4.5 nathanw "bytes left\n", (void *)(u_long)va,
946 1.44.4.5 nathanw (u_long)len));
947 1.44.4.5 nathanw iommu_strbuf_flush(sb, va);
948 1.44.4.2 nathanw if (len <= NBPG) {
949 1.44.4.5 nathanw iommu_strbuf_flush_done(sb);
950 1.44.4.2 nathanw len = 0;
951 1.44.4.2 nathanw } else
952 1.44.4.2 nathanw len -= NBPG;
953 1.44.4.2 nathanw va += NBPG;
954 1.44.4.2 nathanw }
955 1.44.4.2 nathanw }
956 1.44.4.2 nathanw if (ops & BUS_DMASYNC_PREWRITE) {
957 1.44.4.5 nathanw #ifdef DIAGNOSTIC
958 1.44.4.5 nathanw if (va < is->is_dvmabase || va >= is->is_dvmaend)
959 1.44.4.5 nathanw panic("iommu_dvmamap_sync: invalid dva %lx", va);
960 1.44.4.5 nathanw #endif
961 1.44.4.5 nathanw tte = is->is_tsb[IOTSBSLOT(va, is->is_tsbsize)];
962 1.44.4.5 nathanw
963 1.44.4.2 nathanw DPRINTF(IDB_SYNC,
964 1.44.4.2 nathanw ("iommu_dvmamap_sync: syncing va %p len %lu "
965 1.44.4.2 nathanw "BUS_DMASYNC_PREWRITE\n", (void *)(u_long)va, (u_long)len));
966 1.44.4.5 nathanw
967 1.44.4.2 nathanw /* if we have a streaming buffer, flush it here first */
968 1.44.4.5 nathanw if ((tte & IOTTE_STREAM) && sb->sb_flush)
969 1.44.4.2 nathanw while (len > 0) {
970 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA,
971 1.44.4.2 nathanw ("iommu_dvmamap_sync: flushing va %p, %lu "
972 1.44.4.3 nathanw "bytes left\n", (void *)(u_long)va,
973 1.44.4.3 nathanw (u_long)len));
974 1.44.4.5 nathanw iommu_strbuf_flush(sb, va);
975 1.44.4.2 nathanw if (len <= NBPG) {
976 1.44.4.5 nathanw iommu_strbuf_flush_done(sb);
977 1.44.4.2 nathanw len = 0;
978 1.44.4.2 nathanw } else
979 1.44.4.2 nathanw len -= NBPG;
980 1.44.4.2 nathanw va += NBPG;
981 1.44.4.2 nathanw }
982 1.44.4.2 nathanw }
983 1.44.4.2 nathanw if (ops & BUS_DMASYNC_POSTWRITE) {
984 1.44.4.2 nathanw DPRINTF(IDB_SYNC,
985 1.44.4.2 nathanw ("iommu_dvmamap_sync: syncing va %p len %lu "
986 1.44.4.2 nathanw "BUS_DMASYNC_POSTWRITE\n", (void *)(u_long)va, (u_long)len));
987 1.44.4.2 nathanw /* Nothing to do */;
988 1.44.4.2 nathanw }
989 1.44.4.2 nathanw }
990 1.44.4.2 nathanw
991 1.44.4.2 nathanw int
992 1.44.4.5 nathanw iommu_dvmamem_alloc(t, sb, size, alignment, boundary, segs, nsegs, rsegs, flags)
993 1.44.4.2 nathanw bus_dma_tag_t t;
994 1.44.4.5 nathanw struct strbuf_ctl *sb;
995 1.44.4.2 nathanw bus_size_t size, alignment, boundary;
996 1.44.4.2 nathanw bus_dma_segment_t *segs;
997 1.44.4.2 nathanw int nsegs;
998 1.44.4.2 nathanw int *rsegs;
999 1.44.4.2 nathanw int flags;
1000 1.44.4.2 nathanw {
1001 1.44.4.2 nathanw
1002 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA, ("iommu_dvmamem_alloc: sz %llx align %llx bound %llx "
1003 1.44.4.2 nathanw "segp %p flags %d\n", (unsigned long long)size,
1004 1.44.4.2 nathanw (unsigned long long)alignment, (unsigned long long)boundary,
1005 1.44.4.2 nathanw segs, flags));
1006 1.44.4.2 nathanw return (bus_dmamem_alloc(t->_parent, size, alignment, boundary,
1007 1.44.4.2 nathanw segs, nsegs, rsegs, flags|BUS_DMA_DVMA));
1008 1.44.4.2 nathanw }
1009 1.44.4.2 nathanw
1010 1.44.4.2 nathanw void
1011 1.44.4.5 nathanw iommu_dvmamem_free(t, sb, segs, nsegs)
1012 1.44.4.2 nathanw bus_dma_tag_t t;
1013 1.44.4.5 nathanw struct strbuf_ctl *sb;
1014 1.44.4.2 nathanw bus_dma_segment_t *segs;
1015 1.44.4.2 nathanw int nsegs;
1016 1.44.4.2 nathanw {
1017 1.44.4.2 nathanw
1018 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA, ("iommu_dvmamem_free: segp %p nsegs %d\n",
1019 1.44.4.2 nathanw segs, nsegs));
1020 1.44.4.2 nathanw bus_dmamem_free(t->_parent, segs, nsegs);
1021 1.44.4.2 nathanw }
1022 1.44.4.2 nathanw
1023 1.44.4.2 nathanw /*
1024 1.44.4.2 nathanw * Map the DVMA mappings into the kernel pmap.
1025 1.44.4.2 nathanw * Check the flags to see whether we're streaming or coherent.
1026 1.44.4.2 nathanw */
1027 1.44.4.2 nathanw int
1028 1.44.4.5 nathanw iommu_dvmamem_map(t, sb, segs, nsegs, size, kvap, flags)
1029 1.44.4.2 nathanw bus_dma_tag_t t;
1030 1.44.4.5 nathanw struct strbuf_ctl *sb;
1031 1.44.4.2 nathanw bus_dma_segment_t *segs;
1032 1.44.4.2 nathanw int nsegs;
1033 1.44.4.2 nathanw size_t size;
1034 1.44.4.2 nathanw caddr_t *kvap;
1035 1.44.4.2 nathanw int flags;
1036 1.44.4.2 nathanw {
1037 1.44.4.2 nathanw struct vm_page *m;
1038 1.44.4.2 nathanw vaddr_t va;
1039 1.44.4.2 nathanw bus_addr_t addr;
1040 1.44.4.2 nathanw struct pglist *mlist;
1041 1.44.4.2 nathanw int cbit;
1042 1.44.4.2 nathanw
1043 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA, ("iommu_dvmamem_map: segp %p nsegs %d size %lx\n",
1044 1.44.4.2 nathanw segs, nsegs, size));
1045 1.44.4.2 nathanw
1046 1.44.4.2 nathanw /*
1047 1.44.4.2 nathanw * Allocate some space in the kernel map, and then map these pages
1048 1.44.4.2 nathanw * into this space.
1049 1.44.4.2 nathanw */
1050 1.44.4.2 nathanw size = round_page(size);
1051 1.44.4.2 nathanw va = uvm_km_valloc(kernel_map, size);
1052 1.44.4.2 nathanw if (va == 0)
1053 1.44.4.2 nathanw return (ENOMEM);
1054 1.44.4.2 nathanw
1055 1.44.4.2 nathanw *kvap = (caddr_t)va;
1056 1.44.4.2 nathanw
1057 1.44.4.2 nathanw /*
1058 1.44.4.2 nathanw * digest flags:
1059 1.44.4.2 nathanw */
1060 1.44.4.2 nathanw cbit = 0;
1061 1.44.4.2 nathanw if (flags & BUS_DMA_COHERENT) /* Disable vcache */
1062 1.44.4.2 nathanw cbit |= PMAP_NVC;
1063 1.44.4.2 nathanw if (flags & BUS_DMA_NOCACHE) /* sideffects */
1064 1.44.4.2 nathanw cbit |= PMAP_NC;
1065 1.44.4.2 nathanw
1066 1.44.4.2 nathanw /*
1067 1.44.4.2 nathanw * Now take this and map it into the CPU.
1068 1.44.4.2 nathanw */
1069 1.44.4.2 nathanw mlist = segs[0]._ds_mlist;
1070 1.44.4.2 nathanw for (m = mlist->tqh_first; m != NULL; m = m->pageq.tqe_next) {
1071 1.44.4.2 nathanw #ifdef DIAGNOSTIC
1072 1.44.4.2 nathanw if (size == 0)
1073 1.44.4.2 nathanw panic("iommu_dvmamem_map: size botch");
1074 1.44.4.2 nathanw #endif
1075 1.44.4.2 nathanw addr = VM_PAGE_TO_PHYS(m);
1076 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA, ("iommu_dvmamem_map: "
1077 1.44.4.2 nathanw "mapping va %lx at %llx\n", va, (unsigned long long)addr | cbit));
1078 1.44.4.2 nathanw pmap_enter(pmap_kernel(), va, addr | cbit,
1079 1.44.4.2 nathanw VM_PROT_READ | VM_PROT_WRITE,
1080 1.44.4.2 nathanw VM_PROT_READ | VM_PROT_WRITE | PMAP_WIRED);
1081 1.44.4.2 nathanw va += PAGE_SIZE;
1082 1.44.4.2 nathanw size -= PAGE_SIZE;
1083 1.44.4.2 nathanw }
1084 1.44.4.2 nathanw pmap_update(pmap_kernel());
1085 1.44.4.2 nathanw
1086 1.44.4.2 nathanw return (0);
1087 1.44.4.2 nathanw }
1088 1.44.4.2 nathanw
1089 1.44.4.2 nathanw /*
1090 1.44.4.2 nathanw * Unmap DVMA mappings from kernel
1091 1.44.4.2 nathanw */
1092 1.44.4.2 nathanw void
1093 1.44.4.5 nathanw iommu_dvmamem_unmap(t, sb, kva, size)
1094 1.44.4.2 nathanw bus_dma_tag_t t;
1095 1.44.4.5 nathanw struct strbuf_ctl *sb;
1096 1.44.4.2 nathanw caddr_t kva;
1097 1.44.4.2 nathanw size_t size;
1098 1.44.4.2 nathanw {
1099 1.44.4.2 nathanw
1100 1.44.4.2 nathanw DPRINTF(IDB_BUSDMA, ("iommu_dvmamem_unmap: kvm %p size %lx\n",
1101 1.44.4.2 nathanw kva, size));
1102 1.44.4.2 nathanw
1103 1.44.4.2 nathanw #ifdef DIAGNOSTIC
1104 1.44.4.2 nathanw if ((u_long)kva & PGOFSET)
1105 1.44.4.2 nathanw panic("iommu_dvmamem_unmap");
1106 1.44.4.2 nathanw #endif
1107 1.44.4.2 nathanw
1108 1.44.4.2 nathanw size = round_page(size);
1109 1.44.4.2 nathanw pmap_remove(pmap_kernel(), (vaddr_t)kva, size);
1110 1.44.4.2 nathanw pmap_update(pmap_kernel());
1111 1.44.4.2 nathanw #if 0
1112 1.44.4.2 nathanw /*
1113 1.44.4.2 nathanw * XXX ? is this necessary? i think so and i think other
1114 1.44.4.2 nathanw * implementations are missing it.
1115 1.44.4.2 nathanw */
1116 1.44.4.2 nathanw uvm_km_free(kernel_map, (vaddr_t)kva, size);
1117 1.44.4.2 nathanw #endif
1118 1.44.4.2 nathanw }
1119