usb_mem.c revision 1.75 1 1.75 skrll /* $NetBSD: usb_mem.c,v 1.75 2020/03/15 14:19:04 skrll Exp $ */
2 1.1 augustss
3 1.1 augustss /*
4 1.1 augustss * Copyright (c) 1998 The NetBSD Foundation, Inc.
5 1.1 augustss * All rights reserved.
6 1.1 augustss *
7 1.2 augustss * This code is derived from software contributed to The NetBSD Foundation
8 1.20 augustss * by Lennart Augustsson (lennart (at) augustsson.net) at
9 1.2 augustss * Carlstedt Research & Technology.
10 1.1 augustss *
11 1.1 augustss * Redistribution and use in source and binary forms, with or without
12 1.1 augustss * modification, are permitted provided that the following conditions
13 1.1 augustss * are met:
14 1.1 augustss * 1. Redistributions of source code must retain the above copyright
15 1.1 augustss * notice, this list of conditions and the following disclaimer.
16 1.1 augustss * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 augustss * notice, this list of conditions and the following disclaimer in the
18 1.1 augustss * documentation and/or other materials provided with the distribution.
19 1.1 augustss *
20 1.1 augustss * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
21 1.1 augustss * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.1 augustss * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.1 augustss * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
24 1.1 augustss * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25 1.1 augustss * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26 1.1 augustss * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27 1.1 augustss * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 augustss * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 augustss * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 augustss * POSSIBILITY OF SUCH DAMAGE.
31 1.1 augustss */
32 1.1 augustss
33 1.1 augustss /*
34 1.1 augustss * USB DMA memory allocation.
35 1.1 augustss * We need to allocate a lot of small (many 8 byte, some larger)
36 1.1 augustss * memory blocks that can be used for DMA. Using the bus_dma
37 1.3 augustss * routines directly would incur large overheads in space and time.
38 1.1 augustss */
39 1.22 lukem
40 1.22 lukem #include <sys/cdefs.h>
41 1.75 skrll __KERNEL_RCSID(0, "$NetBSD: usb_mem.c,v 1.75 2020/03/15 14:19:04 skrll Exp $");
42 1.65 skrll
43 1.65 skrll #ifdef _KERNEL_OPT
44 1.65 skrll #include "opt_usb.h"
45 1.65 skrll #endif
46 1.1 augustss
47 1.1 augustss #include <sys/param.h>
48 1.74 skrll #include <sys/bus.h>
49 1.75 skrll #include <sys/cpu.h>
50 1.74 skrll #include <sys/device.h> /* for usbdivar.h */
51 1.1 augustss #include <sys/kernel.h>
52 1.55 prlw1 #include <sys/kmem.h>
53 1.74 skrll #include <sys/once.h>
54 1.1 augustss #include <sys/queue.h>
55 1.74 skrll #include <sys/systm.h>
56 1.53 mrg
57 1.1 augustss #include <dev/usb/usb.h>
58 1.1 augustss #include <dev/usb/usbdi.h>
59 1.12 augustss #include <dev/usb/usbdivar.h> /* just for usb_dma_t */
60 1.74 skrll #include <dev/usb/usbhist.h>
61 1.1 augustss #include <dev/usb/usb_mem.h>
62 1.1 augustss
63 1.67 skrll #define DPRINTF(FMT,A,B,C,D) USBHIST_LOG(usbdebug,FMT,A,B,C,D)
64 1.67 skrll #define DPRINTFN(N,FMT,A,B,C,D) USBHIST_LOGN(usbdebug,N,FMT,A,B,C,D)
65 1.26 thorpej
66 1.56 matt #define USB_MEM_SMALL roundup(64, CACHE_LINE_SIZE)
67 1.1 augustss #define USB_MEM_CHUNKS 64
68 1.1 augustss #define USB_MEM_BLOCK (USB_MEM_SMALL * USB_MEM_CHUNKS)
69 1.1 augustss
70 1.1 augustss /* This struct is overlayed on free fragments. */
71 1.1 augustss struct usb_frag_dma {
72 1.67 skrll usb_dma_block_t *ufd_block;
73 1.67 skrll u_int ufd_offs;
74 1.67 skrll LIST_ENTRY(usb_frag_dma) ufd_next;
75 1.1 augustss };
76 1.1 augustss
77 1.21 augustss Static usbd_status usb_block_allocmem(bus_dma_tag_t, size_t, size_t,
78 1.55 prlw1 usb_dma_block_t **, bool);
79 1.21 augustss Static void usb_block_freemem(usb_dma_block_t *);
80 1.1 augustss
81 1.48 matt LIST_HEAD(usb_dma_block_qh, usb_dma_block);
82 1.48 matt Static struct usb_dma_block_qh usb_blk_freelist =
83 1.1 augustss LIST_HEAD_INITIALIZER(usb_blk_freelist);
84 1.53 mrg kmutex_t usb_blk_lock;
85 1.53 mrg
86 1.48 matt #ifdef DEBUG
87 1.48 matt Static struct usb_dma_block_qh usb_blk_fraglist =
88 1.48 matt LIST_HEAD_INITIALIZER(usb_blk_fraglist);
89 1.48 matt Static struct usb_dma_block_qh usb_blk_fulllist =
90 1.48 matt LIST_HEAD_INITIALIZER(usb_blk_fulllist);
91 1.48 matt #endif
92 1.48 matt Static u_int usb_blk_nfree = 0;
93 1.11 augustss /* XXX should have different free list for different tags (for speed) */
94 1.19 augustss Static LIST_HEAD(, usb_frag_dma) usb_frag_freelist =
95 1.1 augustss LIST_HEAD_INITIALIZER(usb_frag_freelist);
96 1.1 augustss
97 1.53 mrg Static int usb_mem_init(void);
98 1.53 mrg
99 1.53 mrg Static int
100 1.53 mrg usb_mem_init(void)
101 1.53 mrg {
102 1.53 mrg
103 1.53 mrg mutex_init(&usb_blk_lock, MUTEX_DEFAULT, IPL_NONE);
104 1.53 mrg return 0;
105 1.53 mrg }
106 1.53 mrg
107 1.19 augustss Static usbd_status
108 1.21 augustss usb_block_allocmem(bus_dma_tag_t tag, size_t size, size_t align,
109 1.55 prlw1 usb_dma_block_t **dmap, bool multiseg)
110 1.1 augustss {
111 1.48 matt usb_dma_block_t *b;
112 1.1 augustss int error;
113 1.1 augustss
114 1.71 mrg USBHIST_FUNC();
115 1.71 mrg USBHIST_CALLARGS(usbdebug, "size=%ju align=%ju", size, align, 0, 0);
116 1.3 augustss
117 1.67 skrll ASSERT_SLEEPABLE();
118 1.67 skrll KASSERT(size != 0);
119 1.53 mrg KASSERT(mutex_owned(&usb_blk_lock));
120 1.53 mrg
121 1.1 augustss /* First check the free list. */
122 1.48 matt LIST_FOREACH(b, &usb_blk_freelist, next) {
123 1.55 prlw1 /* Don't allocate multiple segments to unwilling callers */
124 1.55 prlw1 if (b->nsegs != 1 && !multiseg)
125 1.55 prlw1 continue;
126 1.48 matt if (b->tag == tag && b->size >= size && b->align >= align) {
127 1.48 matt LIST_REMOVE(b, next);
128 1.18 augustss usb_blk_nfree--;
129 1.48 matt *dmap = b;
130 1.70 pgoyette DPRINTFN(6, "free list size=%ju", b->size, 0, 0, 0);
131 1.67 skrll return USBD_NORMAL_COMPLETION;
132 1.1 augustss }
133 1.1 augustss }
134 1.9 augustss
135 1.72 mrg DPRINTFN(6, "no freelist entry", 0, 0, 0, 0);
136 1.67 skrll mutex_exit(&usb_blk_lock);
137 1.67 skrll
138 1.67 skrll b = kmem_zalloc(sizeof(*b), KM_SLEEP);
139 1.48 matt b->tag = tag;
140 1.48 matt b->size = size;
141 1.48 matt b->align = align;
142 1.55 prlw1
143 1.55 prlw1 if (!multiseg)
144 1.55 prlw1 /* Caller wants one segment */
145 1.55 prlw1 b->nsegs = 1;
146 1.58 christos else
147 1.58 christos b->nsegs = (size + (PAGE_SIZE-1)) / PAGE_SIZE;
148 1.55 prlw1
149 1.55 prlw1 b->segs = kmem_alloc(b->nsegs * sizeof(*b->segs), KM_SLEEP);
150 1.59 jmcneill b->nsegs_alloc = b->nsegs;
151 1.55 prlw1
152 1.48 matt error = bus_dmamem_alloc(tag, b->size, align, 0,
153 1.55 prlw1 b->segs, b->nsegs,
154 1.67 skrll &b->nsegs, BUS_DMA_WAITOK);
155 1.1 augustss if (error)
156 1.27 augustss goto free0;
157 1.1 augustss
158 1.48 matt error = bus_dmamem_map(tag, b->segs, b->nsegs, b->size,
159 1.67 skrll &b->kaddr, BUS_DMA_WAITOK|BUS_DMA_COHERENT);
160 1.1 augustss if (error)
161 1.27 augustss goto free1;
162 1.1 augustss
163 1.55 prlw1 error = bus_dmamap_create(tag, b->size, b->nsegs, b->size,
164 1.67 skrll 0, BUS_DMA_WAITOK, &b->map);
165 1.1 augustss if (error)
166 1.1 augustss goto unmap;
167 1.1 augustss
168 1.48 matt error = bus_dmamap_load(tag, b->map, b->kaddr, b->size, NULL,
169 1.67 skrll BUS_DMA_WAITOK);
170 1.1 augustss if (error)
171 1.1 augustss goto destroy;
172 1.27 augustss
173 1.48 matt *dmap = b;
174 1.41 matt #ifdef USB_FRAG_DMA_WORKAROUND
175 1.48 matt memset(b->kaddr, 0, b->size);
176 1.41 matt #endif
177 1.67 skrll mutex_enter(&usb_blk_lock);
178 1.55 prlw1
179 1.67 skrll return USBD_NORMAL_COMPLETION;
180 1.1 augustss
181 1.27 augustss destroy:
182 1.48 matt bus_dmamap_destroy(tag, b->map);
183 1.27 augustss unmap:
184 1.48 matt bus_dmamem_unmap(tag, b->kaddr, b->size);
185 1.27 augustss free1:
186 1.48 matt bus_dmamem_free(tag, b->segs, b->nsegs);
187 1.27 augustss free0:
188 1.59 jmcneill kmem_free(b->segs, b->nsegs_alloc * sizeof(*b->segs));
189 1.67 skrll kmem_free(b, sizeof(*b));
190 1.67 skrll mutex_enter(&usb_blk_lock);
191 1.67 skrll
192 1.67 skrll return USBD_NOMEM;
193 1.1 augustss }
194 1.1 augustss
195 1.11 augustss #if 0
196 1.1 augustss void
197 1.48 matt usb_block_real_freemem(usb_dma_block_t *b)
198 1.1 augustss {
199 1.3 augustss #ifdef DIAGNOSTIC
200 1.64 mlelstv if (cpu_softintr_p() || cpu_intr_p()) {
201 1.3 augustss printf("usb_block_real_freemem: in interrupt context\n");
202 1.3 augustss return;
203 1.3 augustss }
204 1.3 augustss #endif
205 1.48 matt bus_dmamap_unload(b->tag, b->map);
206 1.48 matt bus_dmamap_destroy(b->tag, b->map);
207 1.48 matt bus_dmamem_unmap(b->tag, b->kaddr, b->size);
208 1.48 matt bus_dmamem_free(b->tag, b->segs, b->nsegs);
209 1.59 jmcneill kmem_free(b->segs, b->nsegs_alloc * sizeof(*b->segs));
210 1.67 skrll kmem_free(b, sizeof(*b));
211 1.1 augustss }
212 1.11 augustss #endif
213 1.1 augustss
214 1.48 matt #ifdef DEBUG
215 1.49 rmind static bool
216 1.48 matt usb_valid_block_p(usb_dma_block_t *b, struct usb_dma_block_qh *qh)
217 1.48 matt {
218 1.48 matt usb_dma_block_t *xb;
219 1.48 matt LIST_FOREACH(xb, qh, next) {
220 1.48 matt if (xb == b)
221 1.48 matt return true;
222 1.48 matt }
223 1.48 matt return false;
224 1.48 matt }
225 1.48 matt #endif
226 1.48 matt
227 1.1 augustss /*
228 1.1 augustss * Do not free the memory unconditionally since we might be called
229 1.1 augustss * from an interrupt context and that is BAD.
230 1.4 augustss * XXX when should we really free?
231 1.1 augustss */
232 1.19 augustss Static void
233 1.48 matt usb_block_freemem(usb_dma_block_t *b)
234 1.1 augustss {
235 1.71 mrg USBHIST_FUNC();
236 1.71 mrg USBHIST_CALLARGS(usbdebug, "size=%ju", b->size, 0, 0, 0);
237 1.53 mrg
238 1.53 mrg KASSERT(mutex_owned(&usb_blk_lock));
239 1.4 augustss
240 1.48 matt #ifdef DEBUG
241 1.48 matt LIST_REMOVE(b, next);
242 1.48 matt #endif
243 1.48 matt LIST_INSERT_HEAD(&usb_blk_freelist, b, next);
244 1.18 augustss usb_blk_nfree++;
245 1.1 augustss }
246 1.1 augustss
247 1.1 augustss usbd_status
248 1.67 skrll usb_allocmem(struct usbd_bus *bus, size_t size, size_t align, usb_dma_t *p)
249 1.1 augustss {
250 1.67 skrll
251 1.55 prlw1 return usb_allocmem_flags(bus, size, align, p, 0);
252 1.55 prlw1 }
253 1.55 prlw1
254 1.55 prlw1 usbd_status
255 1.67 skrll usb_allocmem_flags(struct usbd_bus *bus, size_t size, size_t align, usb_dma_t *p,
256 1.55 prlw1 int flags)
257 1.55 prlw1 {
258 1.67 skrll bus_dma_tag_t tag = bus->ub_dmatag;
259 1.16 augustss usbd_status err;
260 1.1 augustss struct usb_frag_dma *f;
261 1.1 augustss usb_dma_block_t *b;
262 1.1 augustss int i;
263 1.53 mrg static ONCE_DECL(init_control);
264 1.55 prlw1 bool frag;
265 1.53 mrg
266 1.67 skrll USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
267 1.67 skrll
268 1.67 skrll ASSERT_SLEEPABLE();
269 1.67 skrll
270 1.53 mrg RUN_ONCE(&init_control, usb_mem_init);
271 1.1 augustss
272 1.55 prlw1 frag = (flags & USBMALLOC_MULTISEG);
273 1.55 prlw1
274 1.1 augustss /* If the request is large then just use a full block. */
275 1.1 augustss if (size > USB_MEM_SMALL || align > USB_MEM_SMALL) {
276 1.70 pgoyette DPRINTFN(1, "large alloc %jd", size, 0, 0, 0);
277 1.1 augustss size = (size + USB_MEM_BLOCK - 1) & ~(USB_MEM_BLOCK - 1);
278 1.53 mrg mutex_enter(&usb_blk_lock);
279 1.67 skrll err = usb_block_allocmem(tag, size, align, &p->udma_block, frag);
280 1.16 augustss if (!err) {
281 1.48 matt #ifdef DEBUG
282 1.67 skrll LIST_INSERT_HEAD(&usb_blk_fulllist, p->udma_block, next);
283 1.48 matt #endif
284 1.67 skrll p->udma_block->flags = USB_DMA_FULLBLOCK;
285 1.67 skrll p->udma_offs = 0;
286 1.1 augustss }
287 1.53 mrg mutex_exit(&usb_blk_lock);
288 1.67 skrll return err;
289 1.1 augustss }
290 1.24 augustss
291 1.53 mrg mutex_enter(&usb_blk_lock);
292 1.1 augustss /* Check for free fragments. */
293 1.67 skrll LIST_FOREACH(f, &usb_frag_freelist, ufd_next) {
294 1.67 skrll KDASSERTMSG(usb_valid_block_p(f->ufd_block, &usb_blk_fraglist),
295 1.50 jym "%s: usb frag %p: unknown block pointer %p",
296 1.67 skrll __func__, f, f->ufd_block);
297 1.67 skrll if (f->ufd_block->tag == tag)
298 1.1 augustss break;
299 1.41 matt }
300 1.16 augustss if (f == NULL) {
301 1.67 skrll DPRINTFN(1, "adding fragments", 0, 0, 0, 0);
302 1.55 prlw1 err = usb_block_allocmem(tag, USB_MEM_BLOCK, USB_MEM_SMALL, &b,
303 1.55 prlw1 false);
304 1.16 augustss if (err) {
305 1.53 mrg mutex_exit(&usb_blk_lock);
306 1.67 skrll return err;
307 1.5 augustss }
308 1.48 matt #ifdef DEBUG
309 1.48 matt LIST_INSERT_HEAD(&usb_blk_fraglist, b, next);
310 1.48 matt #endif
311 1.28 fvdl b->flags = 0;
312 1.1 augustss for (i = 0; i < USB_MEM_BLOCK; i += USB_MEM_SMALL) {
313 1.32 christos f = (struct usb_frag_dma *)((char *)b->kaddr + i);
314 1.67 skrll f->ufd_block = b;
315 1.67 skrll f->ufd_offs = i;
316 1.67 skrll LIST_INSERT_HEAD(&usb_frag_freelist, f, ufd_next);
317 1.41 matt #ifdef USB_FRAG_DMA_WORKAROUND
318 1.41 matt i += 1 * USB_MEM_SMALL;
319 1.41 matt #endif
320 1.1 augustss }
321 1.1 augustss f = LIST_FIRST(&usb_frag_freelist);
322 1.1 augustss }
323 1.67 skrll p->udma_block = f->ufd_block;
324 1.67 skrll p->udma_offs = f->ufd_offs;
325 1.41 matt #ifdef USB_FRAG_DMA_WORKAROUND
326 1.68 skrll p->udma_offs += USB_MEM_SMALL;
327 1.41 matt #endif
328 1.67 skrll LIST_REMOVE(f, ufd_next);
329 1.53 mrg mutex_exit(&usb_blk_lock);
330 1.70 pgoyette DPRINTFN(5, "use frag=%#jx size=%jd", (uintptr_t)f, size, 0, 0);
331 1.55 prlw1
332 1.67 skrll return USBD_NORMAL_COMPLETION;
333 1.1 augustss }
334 1.1 augustss
335 1.1 augustss void
336 1.67 skrll usb_freemem(struct usbd_bus *bus, usb_dma_t *p)
337 1.1 augustss {
338 1.1 augustss struct usb_frag_dma *f;
339 1.1 augustss
340 1.67 skrll USBHIST_FUNC(); USBHIST_CALLED(usbdebug);
341 1.67 skrll
342 1.53 mrg mutex_enter(&usb_blk_lock);
343 1.67 skrll if (p->udma_block->flags & USB_DMA_FULLBLOCK) {
344 1.67 skrll KDASSERTMSG(usb_valid_block_p(p->udma_block, &usb_blk_fulllist),
345 1.50 jym "%s: dma %p: invalid block pointer %p",
346 1.67 skrll __func__, p, p->udma_block);
347 1.67 skrll DPRINTFN(1, "large free", 0, 0, 0, 0);
348 1.67 skrll usb_block_freemem(p->udma_block);
349 1.53 mrg mutex_exit(&usb_blk_lock);
350 1.1 augustss return;
351 1.1 augustss }
352 1.67 skrll KDASSERTMSG(usb_valid_block_p(p->udma_block, &usb_blk_fraglist),
353 1.50 jym "%s: dma %p: invalid block pointer %p",
354 1.67 skrll __func__, p, p->udma_block);
355 1.41 matt //usb_syncmem(p, 0, USB_MEM_SMALL, BUS_DMASYNC_POSTREAD);
356 1.23 augustss f = KERNADDR(p, 0);
357 1.41 matt #ifdef USB_FRAG_DMA_WORKAROUND
358 1.41 matt f = (void *)((uintptr_t)f - USB_MEM_SMALL);
359 1.41 matt #endif
360 1.67 skrll f->ufd_block = p->udma_block;
361 1.67 skrll f->ufd_offs = p->udma_offs;
362 1.42 matt #ifdef USB_FRAG_DMA_WORKAROUND
363 1.68 skrll f->ufd_offs -= USB_MEM_SMALL;
364 1.41 matt #endif
365 1.67 skrll LIST_INSERT_HEAD(&usb_frag_freelist, f, ufd_next);
366 1.53 mrg mutex_exit(&usb_blk_lock);
367 1.70 pgoyette DPRINTFN(5, "frag=%#jx", (uintptr_t)f, 0, 0, 0);
368 1.1 augustss }
369 1.28 fvdl
370 1.55 prlw1 bus_addr_t
371 1.55 prlw1 usb_dmaaddr(usb_dma_t *dma, unsigned int offset)
372 1.55 prlw1 {
373 1.55 prlw1 unsigned int i;
374 1.55 prlw1 bus_size_t seg_offs;
375 1.55 prlw1
376 1.67 skrll offset += dma->udma_offs;
377 1.55 prlw1
378 1.67 skrll KASSERTMSG(offset < dma->udma_block->size, "offset %d vs %zu", offset,
379 1.67 skrll dma->udma_block->size);
380 1.55 prlw1
381 1.67 skrll if (dma->udma_block->nsegs == 1) {
382 1.67 skrll KASSERT(dma->udma_block->map->dm_segs[0].ds_len > offset);
383 1.67 skrll return dma->udma_block->map->dm_segs[0].ds_addr + offset;
384 1.55 prlw1 }
385 1.55 prlw1
386 1.67 skrll /*
387 1.67 skrll * Search for a bus_segment_t corresponding to this offset. With no
388 1.55 prlw1 * record of the offset in the map to a particular dma_segment_t, we
389 1.55 prlw1 * have to iterate from the start of the list each time. Could be
390 1.67 skrll * improved
391 1.67 skrll */
392 1.55 prlw1 seg_offs = 0;
393 1.67 skrll for (i = 0; i < dma->udma_block->nsegs; i++) {
394 1.67 skrll if (seg_offs + dma->udma_block->map->dm_segs[i].ds_len > offset)
395 1.55 prlw1 break;
396 1.55 prlw1
397 1.67 skrll seg_offs += dma->udma_block->map->dm_segs[i].ds_len;
398 1.55 prlw1 }
399 1.55 prlw1
400 1.67 skrll KASSERT(i != dma->udma_block->nsegs);
401 1.55 prlw1 offset -= seg_offs;
402 1.67 skrll return dma->udma_block->map->dm_segs[i].ds_addr + offset;
403 1.55 prlw1 }
404 1.55 prlw1
405 1.37 bouyer void
406 1.37 bouyer usb_syncmem(usb_dma_t *p, bus_addr_t offset, bus_size_t len, int ops)
407 1.37 bouyer {
408 1.67 skrll
409 1.67 skrll bus_dmamap_sync(p->udma_block->tag, p->udma_block->map, p->udma_offs + offset,
410 1.37 bouyer len, ops);
411 1.37 bouyer }
412