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bus_dma.c revision 1.38
      1 /*	$NetBSD: bus_dma.c,v 1.38 2003/10/30 08:44:13 scw Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1996, 1997, 1998 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9  * NASA Ames Research Center.
     10  *
     11  * Redistribution and use in source and binary forms, with or without
     12  * modification, are permitted provided that the following conditions
     13  * are met:
     14  * 1. Redistributions of source code must retain the above copyright
     15  *    notice, this list of conditions and the following disclaimer.
     16  * 2. Redistributions in binary form must reproduce the above copyright
     17  *    notice, this list of conditions and the following disclaimer in the
     18  *    documentation and/or other materials provided with the distribution.
     19  * 3. All advertising materials mentioning features or use of this software
     20  *    must display the following acknowledgement:
     21  *	This product includes software developed by the NetBSD
     22  *	Foundation, Inc. and its contributors.
     23  * 4. Neither the name of The NetBSD Foundation nor the names of its
     24  *    contributors may be used to endorse or promote products derived
     25  *    from this software without specific prior written permission.
     26  *
     27  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     28  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     29  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     30  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     31  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     32  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     33  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     34  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     35  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     36  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     37  * POSSIBILITY OF SUCH DAMAGE.
     38  */
     39 
     40 #define _ARM32_BUS_DMA_PRIVATE
     41 
     42 #include <sys/cdefs.h>
     43 __KERNEL_RCSID(0, "$NetBSD: bus_dma.c,v 1.38 2003/10/30 08:44:13 scw Exp $");
     44 
     45 #include <sys/param.h>
     46 #include <sys/systm.h>
     47 #include <sys/kernel.h>
     48 #include <sys/proc.h>
     49 #include <sys/buf.h>
     50 #include <sys/reboot.h>
     51 #include <sys/conf.h>
     52 #include <sys/file.h>
     53 #include <sys/malloc.h>
     54 #include <sys/mbuf.h>
     55 #include <sys/vnode.h>
     56 #include <sys/device.h>
     57 
     58 #include <uvm/uvm_extern.h>
     59 
     60 #include <machine/bus.h>
     61 #include <machine/cpu.h>
     62 
     63 #include <arm/cpufunc.h>
     64 
     65 int	_bus_dmamap_load_buffer(bus_dma_tag_t, bus_dmamap_t, void *,
     66 	    bus_size_t, struct proc *, int, paddr_t *, int *, int);
     67 struct arm32_dma_range *_bus_dma_inrange(struct arm32_dma_range *,
     68 	    int, bus_addr_t);
     69 
     70 /*
     71  * Check to see if the specified page is in an allowed DMA range.
     72  */
     73 __inline struct arm32_dma_range *
     74 _bus_dma_inrange(struct arm32_dma_range *ranges, int nranges,
     75     bus_addr_t curaddr)
     76 {
     77 	struct arm32_dma_range *dr;
     78 	int i;
     79 
     80 	for (i = 0, dr = ranges; i < nranges; i++, dr++) {
     81 		if (curaddr >= dr->dr_sysbase &&
     82 		    round_page(curaddr) <= (dr->dr_sysbase + dr->dr_len))
     83 			return (dr);
     84 	}
     85 
     86 	return (NULL);
     87 }
     88 
     89 /*
     90  * Common function for DMA map creation.  May be called by bus-specific
     91  * DMA map creation functions.
     92  */
     93 int
     94 _bus_dmamap_create(bus_dma_tag_t t, bus_size_t size, int nsegments,
     95     bus_size_t maxsegsz, bus_size_t boundary, int flags, bus_dmamap_t *dmamp)
     96 {
     97 	struct arm32_bus_dmamap *map;
     98 	void *mapstore;
     99 	size_t mapsize;
    100 
    101 #ifdef DEBUG_DMA
    102 	printf("dmamap_create: t=%p size=%lx nseg=%x msegsz=%lx boundary=%lx flags=%x\n",
    103 	    t, size, nsegments, maxsegsz, boundary, flags);
    104 #endif	/* DEBUG_DMA */
    105 
    106 	/*
    107 	 * Allocate and initialize the DMA map.  The end of the map
    108 	 * is a variable-sized array of segments, so we allocate enough
    109 	 * room for them in one shot.
    110 	 *
    111 	 * Note we don't preserve the WAITOK or NOWAIT flags.  Preservation
    112 	 * of ALLOCNOW notifies others that we've reserved these resources,
    113 	 * and they are not to be freed.
    114 	 *
    115 	 * The bus_dmamap_t includes one bus_dma_segment_t, hence
    116 	 * the (nsegments - 1).
    117 	 */
    118 	mapsize = sizeof(struct arm32_bus_dmamap) +
    119 	    (sizeof(bus_dma_segment_t) * (nsegments - 1));
    120 	if ((mapstore = malloc(mapsize, M_DMAMAP,
    121 	    (flags & BUS_DMA_NOWAIT) ? M_NOWAIT : M_WAITOK)) == NULL)
    122 		return (ENOMEM);
    123 
    124 	memset(mapstore, 0, mapsize);
    125 	map = (struct arm32_bus_dmamap *)mapstore;
    126 	map->_dm_size = size;
    127 	map->_dm_segcnt = nsegments;
    128 	map->_dm_maxsegsz = maxsegsz;
    129 	map->_dm_boundary = boundary;
    130 	map->_dm_flags = flags & ~(BUS_DMA_WAITOK|BUS_DMA_NOWAIT);
    131 	map->_dm_origbuf = NULL;
    132 	map->_dm_buftype = ARM32_BUFTYPE_INVALID;
    133 	map->_dm_proc = NULL;
    134 	map->dm_mapsize = 0;		/* no valid mappings */
    135 	map->dm_nsegs = 0;
    136 
    137 	*dmamp = map;
    138 #ifdef DEBUG_DMA
    139 	printf("dmamap_create:map=%p\n", map);
    140 #endif	/* DEBUG_DMA */
    141 	return (0);
    142 }
    143 
    144 /*
    145  * Common function for DMA map destruction.  May be called by bus-specific
    146  * DMA map destruction functions.
    147  */
    148 void
    149 _bus_dmamap_destroy(bus_dma_tag_t t, bus_dmamap_t map)
    150 {
    151 
    152 #ifdef DEBUG_DMA
    153 	printf("dmamap_destroy: t=%p map=%p\n", t, map);
    154 #endif	/* DEBUG_DMA */
    155 
    156 	/*
    157 	 * Explicit unload.
    158 	 */
    159 	map->dm_mapsize = 0;
    160 	map->dm_nsegs = 0;
    161 	map->_dm_origbuf = NULL;
    162 	map->_dm_buftype = ARM32_BUFTYPE_INVALID;
    163 	map->_dm_proc = NULL;
    164 
    165 	free(map, M_DMAMAP);
    166 }
    167 
    168 /*
    169  * Common function for loading a DMA map with a linear buffer.  May
    170  * be called by bus-specific DMA map load functions.
    171  */
    172 int
    173 _bus_dmamap_load(bus_dma_tag_t t, bus_dmamap_t map, void *buf,
    174     bus_size_t buflen, struct proc *p, int flags)
    175 {
    176 	paddr_t lastaddr;
    177 	int seg, error;
    178 
    179 #ifdef DEBUG_DMA
    180 	printf("dmamap_load: t=%p map=%p buf=%p len=%lx p=%p f=%d\n",
    181 	    t, map, buf, buflen, p, flags);
    182 #endif	/* DEBUG_DMA */
    183 
    184 	/*
    185 	 * Make sure that on error condition we return "no valid mappings".
    186 	 */
    187 	map->dm_mapsize = 0;
    188 	map->dm_nsegs = 0;
    189 
    190 	if (buflen > map->_dm_size)
    191 		return (EINVAL);
    192 
    193 	/* _bus_dmamap_load_buffer() clears this if we're not... */
    194 	map->_dm_flags |= ARM32_DMAMAP_COHERENT;
    195 
    196 	seg = 0;
    197 	error = _bus_dmamap_load_buffer(t, map, buf, buflen, p, flags,
    198 	    &lastaddr, &seg, 1);
    199 	if (error == 0) {
    200 		map->dm_mapsize = buflen;
    201 		map->dm_nsegs = seg + 1;
    202 		map->_dm_origbuf = buf;
    203 		map->_dm_buftype = ARM32_BUFTYPE_LINEAR;
    204 		map->_dm_proc = p;
    205 	}
    206 #ifdef DEBUG_DMA
    207 	printf("dmamap_load: error=%d\n", error);
    208 #endif	/* DEBUG_DMA */
    209 	return (error);
    210 }
    211 
    212 /*
    213  * Like _bus_dmamap_load(), but for mbufs.
    214  */
    215 int
    216 _bus_dmamap_load_mbuf(bus_dma_tag_t t, bus_dmamap_t map, struct mbuf *m0,
    217     int flags)
    218 {
    219 	struct arm32_dma_range *dr;
    220 	paddr_t lastaddr;
    221 	int seg, error, first;
    222 	struct mbuf *m;
    223 
    224 #ifdef DEBUG_DMA
    225 	printf("dmamap_load_mbuf: t=%p map=%p m0=%p f=%d\n",
    226 	    t, map, m0, flags);
    227 #endif	/* DEBUG_DMA */
    228 
    229 	/*
    230 	 * Make sure that on error condition we return "no valid mappings."
    231 	 */
    232 	map->dm_mapsize = 0;
    233 	map->dm_nsegs = 0;
    234 
    235 #ifdef DIAGNOSTIC
    236 	if ((m0->m_flags & M_PKTHDR) == 0)
    237 		panic("_bus_dmamap_load_mbuf: no packet header");
    238 #endif	/* DIAGNOSTIC */
    239 
    240 	if (m0->m_pkthdr.len > map->_dm_size)
    241 		return (EINVAL);
    242 
    243 	/*
    244 	 * Mbuf chains should almost never have coherent (i.e.
    245 	 * un-cached) mappings, so clear that flag now.
    246 	 */
    247 	map->_dm_flags &= ~ARM32_DMAMAP_COHERENT;
    248 
    249 	first = 1;
    250 	seg = 0;
    251 	error = 0;
    252 	for (m = m0; m != NULL && error == 0; m = m->m_next) {
    253 		if (m->m_len == 0)
    254 			continue;
    255 		/* XXX Could be better about coalescing. */
    256 		/* XXX Doesn't check boundaries. */
    257 		switch (m->m_flags & (M_EXT|M_CLUSTER)) {
    258 		case M_EXT|M_CLUSTER:
    259 			/* XXX KDASSERT */
    260 			KASSERT(m->m_ext.ext_paddr != M_PADDR_INVALID);
    261 			lastaddr = m->m_ext.ext_paddr +
    262 			    (m->m_data - m->m_ext.ext_buf);
    263  have_addr:
    264 			if (first == 0 &&
    265 			    ++seg >= map->_dm_segcnt) {
    266 				error = EFBIG;
    267 				break;
    268 			}
    269 			/*
    270 			 * Make sure we're in an allowed DMA range.
    271 			 */
    272 			if (t->_ranges != NULL) {
    273 				/* XXX cache last result? */
    274 				dr = _bus_dma_inrange(t->_ranges, t->_nranges,
    275 				    lastaddr);
    276 				if (dr == NULL) {
    277 					error = EINVAL;
    278 					break;
    279 				}
    280 
    281 				/*
    282 				 * In a valid DMA range.  Translate the
    283 				 * physical memory address to an address
    284 				 * in the DMA window.
    285 				 */
    286 				lastaddr = (lastaddr - dr->dr_sysbase) +
    287 				    dr->dr_busbase;
    288 			}
    289 			map->dm_segs[seg].ds_addr = lastaddr;
    290 			map->dm_segs[seg].ds_len = m->m_len;
    291 			lastaddr += m->m_len;
    292 			break;
    293 
    294 		case 0:
    295 			lastaddr = m->m_paddr + M_BUFOFFSET(m) +
    296 			    (m->m_data - M_BUFADDR(m));
    297 			goto have_addr;
    298 
    299 		default:
    300 			error = _bus_dmamap_load_buffer(t, map, m->m_data,
    301 			    m->m_len, NULL, flags, &lastaddr, &seg, first);
    302 		}
    303 		first = 0;
    304 	}
    305 	if (error == 0) {
    306 		map->dm_mapsize = m0->m_pkthdr.len;
    307 		map->dm_nsegs = seg + 1;
    308 		map->_dm_origbuf = m0;
    309 		map->_dm_buftype = ARM32_BUFTYPE_MBUF;
    310 		map->_dm_proc = NULL;	/* always kernel */
    311 	}
    312 #ifdef DEBUG_DMA
    313 	printf("dmamap_load_mbuf: error=%d\n", error);
    314 #endif	/* DEBUG_DMA */
    315 	return (error);
    316 }
    317 
    318 /*
    319  * Like _bus_dmamap_load(), but for uios.
    320  */
    321 int
    322 _bus_dmamap_load_uio(bus_dma_tag_t t, bus_dmamap_t map, struct uio *uio,
    323     int flags)
    324 {
    325 	paddr_t lastaddr;
    326 	int seg, i, error, first;
    327 	bus_size_t minlen, resid;
    328 	struct proc *p = NULL;
    329 	struct iovec *iov;
    330 	caddr_t addr;
    331 
    332 	/*
    333 	 * Make sure that on error condition we return "no valid mappings."
    334 	 */
    335 	map->dm_mapsize = 0;
    336 	map->dm_nsegs = 0;
    337 
    338 	resid = uio->uio_resid;
    339 	iov = uio->uio_iov;
    340 
    341 	if (uio->uio_segflg == UIO_USERSPACE) {
    342 		p = uio->uio_procp;
    343 #ifdef DIAGNOSTIC
    344 		if (p == NULL)
    345 			panic("_bus_dmamap_load_uio: USERSPACE but no proc");
    346 #endif
    347 	}
    348 
    349 	/* _bus_dmamap_load_buffer() clears this if we're not... */
    350 	map->_dm_flags |= ARM32_DMAMAP_COHERENT;
    351 
    352 	first = 1;
    353 	seg = 0;
    354 	error = 0;
    355 	for (i = 0; i < uio->uio_iovcnt && resid != 0 && error == 0; i++) {
    356 		/*
    357 		 * Now at the first iovec to load.  Load each iovec
    358 		 * until we have exhausted the residual count.
    359 		 */
    360 		minlen = resid < iov[i].iov_len ? resid : iov[i].iov_len;
    361 		addr = (caddr_t)iov[i].iov_base;
    362 
    363 		error = _bus_dmamap_load_buffer(t, map, addr, minlen,
    364 		    p, flags, &lastaddr, &seg, first);
    365 		first = 0;
    366 
    367 		resid -= minlen;
    368 	}
    369 	if (error == 0) {
    370 		map->dm_mapsize = uio->uio_resid;
    371 		map->dm_nsegs = seg + 1;
    372 		map->_dm_origbuf = uio;
    373 		map->_dm_buftype = ARM32_BUFTYPE_UIO;
    374 		map->_dm_proc = p;
    375 	}
    376 	return (error);
    377 }
    378 
    379 /*
    380  * Like _bus_dmamap_load(), but for raw memory allocated with
    381  * bus_dmamem_alloc().
    382  */
    383 int
    384 _bus_dmamap_load_raw(bus_dma_tag_t t, bus_dmamap_t map,
    385     bus_dma_segment_t *segs, int nsegs, bus_size_t size, int flags)
    386 {
    387 
    388 	panic("_bus_dmamap_load_raw: not implemented");
    389 }
    390 
    391 /*
    392  * Common function for unloading a DMA map.  May be called by
    393  * bus-specific DMA map unload functions.
    394  */
    395 void
    396 _bus_dmamap_unload(bus_dma_tag_t t, bus_dmamap_t map)
    397 {
    398 
    399 #ifdef DEBUG_DMA
    400 	printf("dmamap_unload: t=%p map=%p\n", t, map);
    401 #endif	/* DEBUG_DMA */
    402 
    403 	/*
    404 	 * No resources to free; just mark the mappings as
    405 	 * invalid.
    406 	 */
    407 	map->dm_mapsize = 0;
    408 	map->dm_nsegs = 0;
    409 	map->_dm_origbuf = NULL;
    410 	map->_dm_buftype = ARM32_BUFTYPE_INVALID;
    411 	map->_dm_proc = NULL;
    412 }
    413 
    414 static __inline void
    415 _bus_dmamap_sync_linear(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    416     bus_size_t len, int ops)
    417 {
    418 	vaddr_t addr = (vaddr_t) map->_dm_origbuf;
    419 
    420 	addr += offset;
    421 
    422 	switch (ops) {
    423 	case BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE:
    424 		cpu_dcache_wbinv_range(addr, len);
    425 		break;
    426 
    427 	case BUS_DMASYNC_PREREAD:
    428 		if (((addr | len) & arm_dcache_align_mask) == 0)
    429 			cpu_dcache_inv_range(addr, len);
    430 		else
    431 			cpu_dcache_wbinv_range(addr, len);
    432 		break;
    433 
    434 	case BUS_DMASYNC_PREWRITE:
    435 		cpu_dcache_wb_range(addr, len);
    436 		break;
    437 	}
    438 }
    439 
    440 static __inline void
    441 _bus_dmamap_sync_mbuf(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    442     bus_size_t len, int ops)
    443 {
    444 	struct mbuf *m, *m0 = map->_dm_origbuf;
    445 	bus_size_t minlen, moff;
    446 	vaddr_t maddr;
    447 
    448 	for (moff = offset, m = m0; m != NULL && len != 0;
    449 	     m = m->m_next) {
    450 		/* Find the beginning mbuf. */
    451 		if (moff >= m->m_len) {
    452 			moff -= m->m_len;
    453 			continue;
    454 		}
    455 
    456 		/*
    457 		 * Now at the first mbuf to sync; nail each one until
    458 		 * we have exhausted the length.
    459 		 */
    460 		minlen = m->m_len - moff;
    461 		if (len < minlen)
    462 			minlen = len;
    463 
    464 		maddr = mtod(m, vaddr_t);
    465 		maddr += moff;
    466 
    467 		/*
    468 		 * We can save a lot of work here if we know the mapping
    469 		 * is read-only at the MMU:
    470 		 *
    471 		 * If a mapping is read-only, no dirty cache blocks will
    472 		 * exist for it.  If a writable mapping was made read-only,
    473 		 * we know any dirty cache lines for the range will have
    474 		 * been cleaned for us already.  Therefore, if the upper
    475 		 * layer can tell us we have a read-only mapping, we can
    476 		 * skip all cache cleaning.
    477 		 *
    478 		 * NOTE: This only works if we know the pmap cleans pages
    479 		 * before making a read-write -> read-only transition.  If
    480 		 * this ever becomes non-true (e.g. Physically Indexed
    481 		 * cache), this will have to be revisited.
    482 		 */
    483 		switch (ops) {
    484 		case BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE:
    485 			if (! M_ROMAP(m)) {
    486 				cpu_dcache_wbinv_range(maddr, minlen);
    487 				break;
    488 			}
    489 			/* else FALLTHROUGH */
    490 
    491 		case BUS_DMASYNC_PREREAD:
    492 			if (((maddr | minlen) & arm_dcache_align_mask) == 0)
    493 				cpu_dcache_inv_range(maddr, minlen);
    494 			else
    495 				cpu_dcache_wbinv_range(maddr, minlen);
    496 			break;
    497 
    498 		case BUS_DMASYNC_PREWRITE:
    499 			if (! M_ROMAP(m))
    500 				cpu_dcache_wb_range(maddr, minlen);
    501 			break;
    502 		}
    503 		moff = 0;
    504 		len -= minlen;
    505 	}
    506 }
    507 
    508 static __inline void
    509 _bus_dmamap_sync_uio(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    510     bus_size_t len, int ops)
    511 {
    512 	struct uio *uio = map->_dm_origbuf;
    513 	struct iovec *iov;
    514 	bus_size_t minlen, ioff;
    515 	vaddr_t addr;
    516 
    517 	for (iov = uio->uio_iov, ioff = offset; len != 0; iov++) {
    518 		/* Find the beginning iovec. */
    519 		if (ioff >= iov->iov_len) {
    520 			ioff -= iov->iov_len;
    521 			continue;
    522 		}
    523 
    524 		/*
    525 		 * Now at the first iovec to sync; nail each one until
    526 		 * we have exhausted the length.
    527 		 */
    528 		minlen = iov->iov_len - ioff;
    529 		if (len < minlen)
    530 			minlen = len;
    531 
    532 		addr = (vaddr_t) iov->iov_base;
    533 		addr += ioff;
    534 
    535 		switch (ops) {
    536 		case BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE:
    537 			cpu_dcache_wbinv_range(addr, minlen);
    538 			break;
    539 
    540 		case BUS_DMASYNC_PREREAD:
    541 			if (((addr | minlen) & arm_dcache_align_mask) == 0)
    542 				cpu_dcache_inv_range(addr, minlen);
    543 			else
    544 				cpu_dcache_wbinv_range(addr, minlen);
    545 			break;
    546 
    547 		case BUS_DMASYNC_PREWRITE:
    548 			cpu_dcache_wb_range(addr, minlen);
    549 			break;
    550 		}
    551 		ioff = 0;
    552 		len -= minlen;
    553 	}
    554 }
    555 
    556 /*
    557  * Common function for DMA map synchronization.  May be called
    558  * by bus-specific DMA map synchronization functions.
    559  *
    560  * This version works for the Virtually Indexed Virtually Tagged
    561  * cache found on 32-bit ARM processors.
    562  *
    563  * XXX Should have separate versions for write-through vs.
    564  * XXX write-back caches.  We currently assume write-back
    565  * XXX here, which is not as efficient as it could be for
    566  * XXX the write-through case.
    567  */
    568 void
    569 _bus_dmamap_sync(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    570     bus_size_t len, int ops)
    571 {
    572 
    573 #ifdef DEBUG_DMA
    574 	printf("dmamap_sync: t=%p map=%p offset=%lx len=%lx ops=%x\n",
    575 	    t, map, offset, len, ops);
    576 #endif	/* DEBUG_DMA */
    577 
    578 	/*
    579 	 * Mixing of PRE and POST operations is not allowed.
    580 	 */
    581 	if ((ops & (BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)) != 0 &&
    582 	    (ops & (BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)) != 0)
    583 		panic("_bus_dmamap_sync: mix PRE and POST");
    584 
    585 #ifdef DIAGNOSTIC
    586 	if (offset >= map->dm_mapsize)
    587 		panic("_bus_dmamap_sync: bad offset %lu (map size is %lu)",
    588 		    offset, map->dm_mapsize);
    589 	if (len == 0 || (offset + len) > map->dm_mapsize)
    590 		panic("_bus_dmamap_sync: bad length");
    591 #endif
    592 
    593 	/*
    594 	 * For a virtually-indexed write-back cache, we need
    595 	 * to do the following things:
    596 	 *
    597 	 *	PREREAD -- Invalidate the D-cache.  We do this
    598 	 *	here in case a write-back is required by the back-end.
    599 	 *
    600 	 *	PREWRITE -- Write-back the D-cache.  Note that if
    601 	 *	we are doing a PREREAD|PREWRITE, we can collapse
    602 	 *	the whole thing into a single Wb-Inv.
    603 	 *
    604 	 *	POSTREAD -- Nothing.
    605 	 *
    606 	 *	POSTWRITE -- Nothing.
    607 	 */
    608 
    609 	ops &= (BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    610 	if (ops == 0)
    611 		return;
    612 
    613 	/* Skip cache frobbing if mapping was COHERENT. */
    614 	if (map->_dm_flags & ARM32_DMAMAP_COHERENT) {
    615 		/* Drain the write buffer. */
    616 		cpu_drain_writebuf();
    617 		return;
    618 	}
    619 
    620 	/*
    621 	 * If the mapping belongs to a non-kernel vmspace, and the
    622 	 * vmspace has not been active since the last time a full
    623 	 * cache flush was performed, we don't need to do anything.
    624 	 */
    625 	if (__predict_false(map->_dm_proc != NULL &&
    626 	    map->_dm_proc->p_vmspace->vm_map.pmap->pm_cstate.cs_cache_d == 0))
    627 		return;
    628 
    629 	switch (map->_dm_buftype) {
    630 	case ARM32_BUFTYPE_LINEAR:
    631 		_bus_dmamap_sync_linear(t, map, offset, len, ops);
    632 		break;
    633 
    634 	case ARM32_BUFTYPE_MBUF:
    635 		_bus_dmamap_sync_mbuf(t, map, offset, len, ops);
    636 		break;
    637 
    638 	case ARM32_BUFTYPE_UIO:
    639 		_bus_dmamap_sync_uio(t, map, offset, len, ops);
    640 		break;
    641 
    642 	case ARM32_BUFTYPE_RAW:
    643 		panic("_bus_dmamap_sync: ARM32_BUFTYPE_RAW");
    644 		break;
    645 
    646 	case ARM32_BUFTYPE_INVALID:
    647 		panic("_bus_dmamap_sync: ARM32_BUFTYPE_INVALID");
    648 		break;
    649 
    650 	default:
    651 		printf("unknown buffer type %d\n", map->_dm_buftype);
    652 		panic("_bus_dmamap_sync");
    653 	}
    654 
    655 	/* Drain the write buffer. */
    656 	cpu_drain_writebuf();
    657 }
    658 
    659 /*
    660  * Common function for DMA-safe memory allocation.  May be called
    661  * by bus-specific DMA memory allocation functions.
    662  */
    663 
    664 extern paddr_t physical_start;
    665 extern paddr_t physical_end;
    666 
    667 int
    668 _bus_dmamem_alloc(bus_dma_tag_t t, bus_size_t size, bus_size_t alignment,
    669     bus_size_t boundary, bus_dma_segment_t *segs, int nsegs, int *rsegs,
    670     int flags)
    671 {
    672 	struct arm32_dma_range *dr;
    673 	int error, i;
    674 
    675 #ifdef DEBUG_DMA
    676 	printf("dmamem_alloc t=%p size=%lx align=%lx boundary=%lx "
    677 	    "segs=%p nsegs=%x rsegs=%p flags=%x\n", t, size, alignment,
    678 	    boundary, segs, nsegs, rsegs, flags);
    679 #endif
    680 
    681 	if ((dr = t->_ranges) != NULL) {
    682 		error = ENOMEM;
    683 		for (i = 0; i < t->_nranges; i++, dr++) {
    684 			if (dr->dr_len == 0)
    685 				continue;
    686 			error = _bus_dmamem_alloc_range(t, size, alignment,
    687 			    boundary, segs, nsegs, rsegs, flags,
    688 			    trunc_page(dr->dr_sysbase),
    689 			    trunc_page(dr->dr_sysbase + dr->dr_len));
    690 			if (error == 0)
    691 				break;
    692 		}
    693 	} else {
    694 		error = _bus_dmamem_alloc_range(t, size, alignment, boundary,
    695 		    segs, nsegs, rsegs, flags, trunc_page(physical_start),
    696 		    trunc_page(physical_end));
    697 	}
    698 
    699 #ifdef DEBUG_DMA
    700 	printf("dmamem_alloc: =%d\n", error);
    701 #endif
    702 
    703 	return(error);
    704 }
    705 
    706 /*
    707  * Common function for freeing DMA-safe memory.  May be called by
    708  * bus-specific DMA memory free functions.
    709  */
    710 void
    711 _bus_dmamem_free(bus_dma_tag_t t, bus_dma_segment_t *segs, int nsegs)
    712 {
    713 	struct vm_page *m;
    714 	bus_addr_t addr;
    715 	struct pglist mlist;
    716 	int curseg;
    717 
    718 #ifdef DEBUG_DMA
    719 	printf("dmamem_free: t=%p segs=%p nsegs=%x\n", t, segs, nsegs);
    720 #endif	/* DEBUG_DMA */
    721 
    722 	/*
    723 	 * Build a list of pages to free back to the VM system.
    724 	 */
    725 	TAILQ_INIT(&mlist);
    726 	for (curseg = 0; curseg < nsegs; curseg++) {
    727 		for (addr = segs[curseg].ds_addr;
    728 		    addr < (segs[curseg].ds_addr + segs[curseg].ds_len);
    729 		    addr += PAGE_SIZE) {
    730 			m = PHYS_TO_VM_PAGE(addr);
    731 			TAILQ_INSERT_TAIL(&mlist, m, pageq);
    732 		}
    733 	}
    734 	uvm_pglistfree(&mlist);
    735 }
    736 
    737 /*
    738  * Common function for mapping DMA-safe memory.  May be called by
    739  * bus-specific DMA memory map functions.
    740  */
    741 int
    742 _bus_dmamem_map(bus_dma_tag_t t, bus_dma_segment_t *segs, int nsegs,
    743     size_t size, caddr_t *kvap, int flags)
    744 {
    745 	vaddr_t va;
    746 	bus_addr_t addr;
    747 	int curseg;
    748 	pt_entry_t *ptep/*, pte*/;
    749 
    750 #ifdef DEBUG_DMA
    751 	printf("dmamem_map: t=%p segs=%p nsegs=%x size=%lx flags=%x\n", t,
    752 	    segs, nsegs, (unsigned long)size, flags);
    753 #endif	/* DEBUG_DMA */
    754 
    755 	size = round_page(size);
    756 	va = uvm_km_valloc(kernel_map, size);
    757 
    758 	if (va == 0)
    759 		return (ENOMEM);
    760 
    761 	*kvap = (caddr_t)va;
    762 
    763 	for (curseg = 0; curseg < nsegs; curseg++) {
    764 		for (addr = segs[curseg].ds_addr;
    765 		    addr < (segs[curseg].ds_addr + segs[curseg].ds_len);
    766 		    addr += PAGE_SIZE, va += PAGE_SIZE, size -= PAGE_SIZE) {
    767 #ifdef DEBUG_DMA
    768 			printf("wiring p%lx to v%lx", addr, va);
    769 #endif	/* DEBUG_DMA */
    770 			if (size == 0)
    771 				panic("_bus_dmamem_map: size botch");
    772 			pmap_enter(pmap_kernel(), va, addr,
    773 			    VM_PROT_READ | VM_PROT_WRITE,
    774 			    VM_PROT_READ | VM_PROT_WRITE | PMAP_WIRED);
    775 			/*
    776 			 * If the memory must remain coherent with the
    777 			 * cache then we must make the memory uncacheable
    778 			 * in order to maintain virtual cache coherency.
    779 			 * We must also guarantee the cache does not already
    780 			 * contain the virtal addresses we are making
    781 			 * uncacheable.
    782 			 */
    783 			if (flags & BUS_DMA_COHERENT) {
    784 				cpu_dcache_wbinv_range(va, PAGE_SIZE);
    785 				cpu_drain_writebuf();
    786 				ptep = vtopte(va);
    787 				*ptep &= ~L2_S_CACHE_MASK;
    788 				PTE_SYNC(ptep);
    789 				tlb_flush();
    790 			}
    791 #ifdef DEBUG_DMA
    792 			ptep = vtopte(va);
    793 			printf(" pte=v%p *pte=%x\n", ptep, *ptep);
    794 #endif	/* DEBUG_DMA */
    795 		}
    796 	}
    797 	pmap_update(pmap_kernel());
    798 #ifdef DEBUG_DMA
    799 	printf("dmamem_map: =%p\n", *kvap);
    800 #endif	/* DEBUG_DMA */
    801 	return (0);
    802 }
    803 
    804 /*
    805  * Common function for unmapping DMA-safe memory.  May be called by
    806  * bus-specific DMA memory unmapping functions.
    807  */
    808 void
    809 _bus_dmamem_unmap(bus_dma_tag_t t, caddr_t kva, size_t size)
    810 {
    811 
    812 #ifdef DEBUG_DMA
    813 	printf("dmamem_unmap: t=%p kva=%p size=%lx\n", t, kva,
    814 	    (unsigned long)size);
    815 #endif	/* DEBUG_DMA */
    816 #ifdef DIAGNOSTIC
    817 	if ((u_long)kva & PGOFSET)
    818 		panic("_bus_dmamem_unmap");
    819 #endif	/* DIAGNOSTIC */
    820 
    821 	size = round_page(size);
    822 	uvm_km_free(kernel_map, (vaddr_t)kva, size);
    823 }
    824 
    825 /*
    826  * Common functin for mmap(2)'ing DMA-safe memory.  May be called by
    827  * bus-specific DMA mmap(2)'ing functions.
    828  */
    829 paddr_t
    830 _bus_dmamem_mmap(bus_dma_tag_t t, bus_dma_segment_t *segs, int nsegs,
    831     off_t off, int prot, int flags)
    832 {
    833 	int i;
    834 
    835 	for (i = 0; i < nsegs; i++) {
    836 #ifdef DIAGNOSTIC
    837 		if (off & PGOFSET)
    838 			panic("_bus_dmamem_mmap: offset unaligned");
    839 		if (segs[i].ds_addr & PGOFSET)
    840 			panic("_bus_dmamem_mmap: segment unaligned");
    841 		if (segs[i].ds_len & PGOFSET)
    842 			panic("_bus_dmamem_mmap: segment size not multiple"
    843 			    " of page size");
    844 #endif	/* DIAGNOSTIC */
    845 		if (off >= segs[i].ds_len) {
    846 			off -= segs[i].ds_len;
    847 			continue;
    848 		}
    849 
    850 		return (arm_btop((u_long)segs[i].ds_addr + off));
    851 	}
    852 
    853 	/* Page not found. */
    854 	return (-1);
    855 }
    856 
    857 /**********************************************************************
    858  * DMA utility functions
    859  **********************************************************************/
    860 
    861 /*
    862  * Utility function to load a linear buffer.  lastaddrp holds state
    863  * between invocations (for multiple-buffer loads).  segp contains
    864  * the starting segment on entrace, and the ending segment on exit.
    865  * first indicates if this is the first invocation of this function.
    866  */
    867 int
    868 _bus_dmamap_load_buffer(bus_dma_tag_t t, bus_dmamap_t map, void *buf,
    869     bus_size_t buflen, struct proc *p, int flags, paddr_t *lastaddrp,
    870     int *segp, int first)
    871 {
    872 	struct arm32_dma_range *dr;
    873 	bus_size_t sgsize;
    874 	bus_addr_t curaddr, lastaddr, baddr, bmask;
    875 	vaddr_t vaddr = (vaddr_t)buf;
    876 	pd_entry_t *pde;
    877 	pt_entry_t pte;
    878 	int seg;
    879 	pmap_t pmap;
    880 	pt_entry_t *ptep;
    881 
    882 #ifdef DEBUG_DMA
    883 	printf("_bus_dmamem_load_buffer(buf=%p, len=%lx, flags=%d, 1st=%d)\n",
    884 	    buf, buflen, flags, first);
    885 #endif	/* DEBUG_DMA */
    886 
    887 	if (p != NULL)
    888 		pmap = p->p_vmspace->vm_map.pmap;
    889 	else
    890 		pmap = pmap_kernel();
    891 
    892 	lastaddr = *lastaddrp;
    893 	bmask  = ~(map->_dm_boundary - 1);
    894 
    895 	for (seg = *segp; buflen > 0; ) {
    896 		/*
    897 		 * Get the physical address for this segment.
    898 		 *
    899 		 * XXX Don't support checking for coherent mappings
    900 		 * XXX in user address space.
    901 		 */
    902 		if (__predict_true(pmap == pmap_kernel())) {
    903 			(void) pmap_get_pde_pte(pmap, vaddr, &pde, &ptep);
    904 			if (__predict_false(pmap_pde_section(pde))) {
    905 				curaddr = (*pde & L1_S_FRAME) |
    906 				    (vaddr & L1_S_OFFSET);
    907 				if (*pde & L1_S_CACHE_MASK) {
    908 					map->_dm_flags &=
    909 					    ~ARM32_DMAMAP_COHERENT;
    910 				}
    911 			} else {
    912 				pte = *ptep;
    913 				KDASSERT((pte & L2_TYPE_MASK) != L2_TYPE_INV);
    914 				if (__predict_false((pte & L2_TYPE_MASK)
    915 						    == L2_TYPE_L)) {
    916 					curaddr = (pte & L2_L_FRAME) |
    917 					    (vaddr & L2_L_OFFSET);
    918 					if (pte & L2_L_CACHE_MASK) {
    919 						map->_dm_flags &=
    920 						    ~ARM32_DMAMAP_COHERENT;
    921 					}
    922 				} else {
    923 					curaddr = (pte & L2_S_FRAME) |
    924 					    (vaddr & L2_S_OFFSET);
    925 					if (pte & L2_S_CACHE_MASK) {
    926 						map->_dm_flags &=
    927 						    ~ARM32_DMAMAP_COHERENT;
    928 					}
    929 				}
    930 			}
    931 		} else {
    932 			(void) pmap_extract(pmap, vaddr, &curaddr);
    933 			map->_dm_flags &= ~ARM32_DMAMAP_COHERENT;
    934 		}
    935 
    936 		/*
    937 		 * Make sure we're in an allowed DMA range.
    938 		 */
    939 		if (t->_ranges != NULL) {
    940 			/* XXX cache last result? */
    941 			dr = _bus_dma_inrange(t->_ranges, t->_nranges,
    942 			    curaddr);
    943 			if (dr == NULL)
    944 				return (EINVAL);
    945 
    946 			/*
    947 			 * In a valid DMA range.  Translate the physical
    948 			 * memory address to an address in the DMA window.
    949 			 */
    950 			curaddr = (curaddr - dr->dr_sysbase) + dr->dr_busbase;
    951 		}
    952 
    953 		/*
    954 		 * Compute the segment size, and adjust counts.
    955 		 */
    956 		sgsize = PAGE_SIZE - ((u_long)vaddr & PGOFSET);
    957 		if (buflen < sgsize)
    958 			sgsize = buflen;
    959 
    960 		/*
    961 		 * Make sure we don't cross any boundaries.
    962 		 */
    963 		if (map->_dm_boundary > 0) {
    964 			baddr = (curaddr + map->_dm_boundary) & bmask;
    965 			if (sgsize > (baddr - curaddr))
    966 				sgsize = (baddr - curaddr);
    967 		}
    968 
    969 		/*
    970 		 * Insert chunk into a segment, coalescing with
    971 		 * previous segment if possible.
    972 		 */
    973 		if (first) {
    974 			map->dm_segs[seg].ds_addr = curaddr;
    975 			map->dm_segs[seg].ds_len = sgsize;
    976 			first = 0;
    977 		} else {
    978 			if (curaddr == lastaddr &&
    979 			    (map->dm_segs[seg].ds_len + sgsize) <=
    980 			     map->_dm_maxsegsz &&
    981 			    (map->_dm_boundary == 0 ||
    982 			     (map->dm_segs[seg].ds_addr & bmask) ==
    983 			     (curaddr & bmask)))
    984 				map->dm_segs[seg].ds_len += sgsize;
    985 			else {
    986 				if (++seg >= map->_dm_segcnt)
    987 					break;
    988 				map->dm_segs[seg].ds_addr = curaddr;
    989 				map->dm_segs[seg].ds_len = sgsize;
    990 			}
    991 		}
    992 
    993 		lastaddr = curaddr + sgsize;
    994 		vaddr += sgsize;
    995 		buflen -= sgsize;
    996 	}
    997 
    998 	*segp = seg;
    999 	*lastaddrp = lastaddr;
   1000 
   1001 	/*
   1002 	 * Did we fit?
   1003 	 */
   1004 	if (buflen != 0)
   1005 		return (EFBIG);		/* XXX better return value here? */
   1006 	return (0);
   1007 }
   1008 
   1009 /*
   1010  * Allocate physical memory from the given physical address range.
   1011  * Called by DMA-safe memory allocation methods.
   1012  */
   1013 int
   1014 _bus_dmamem_alloc_range(bus_dma_tag_t t, bus_size_t size, bus_size_t alignment,
   1015     bus_size_t boundary, bus_dma_segment_t *segs, int nsegs, int *rsegs,
   1016     int flags, paddr_t low, paddr_t high)
   1017 {
   1018 	paddr_t curaddr, lastaddr;
   1019 	struct vm_page *m;
   1020 	struct pglist mlist;
   1021 	int curseg, error;
   1022 
   1023 #ifdef DEBUG_DMA
   1024 	printf("alloc_range: t=%p size=%lx align=%lx boundary=%lx segs=%p nsegs=%x rsegs=%p flags=%x lo=%lx hi=%lx\n",
   1025 	    t, size, alignment, boundary, segs, nsegs, rsegs, flags, low, high);
   1026 #endif	/* DEBUG_DMA */
   1027 
   1028 	/* Always round the size. */
   1029 	size = round_page(size);
   1030 
   1031 	/*
   1032 	 * Allocate pages from the VM system.
   1033 	 */
   1034 	error = uvm_pglistalloc(size, low, high, alignment, boundary,
   1035 	    &mlist, nsegs, (flags & BUS_DMA_NOWAIT) == 0);
   1036 	if (error)
   1037 		return (error);
   1038 
   1039 	/*
   1040 	 * Compute the location, size, and number of segments actually
   1041 	 * returned by the VM code.
   1042 	 */
   1043 	m = mlist.tqh_first;
   1044 	curseg = 0;
   1045 	lastaddr = segs[curseg].ds_addr = VM_PAGE_TO_PHYS(m);
   1046 	segs[curseg].ds_len = PAGE_SIZE;
   1047 #ifdef DEBUG_DMA
   1048 		printf("alloc: page %lx\n", lastaddr);
   1049 #endif	/* DEBUG_DMA */
   1050 	m = m->pageq.tqe_next;
   1051 
   1052 	for (; m != NULL; m = m->pageq.tqe_next) {
   1053 		curaddr = VM_PAGE_TO_PHYS(m);
   1054 #ifdef DIAGNOSTIC
   1055 		if (curaddr < low || curaddr >= high) {
   1056 			printf("uvm_pglistalloc returned non-sensical"
   1057 			    " address 0x%lx\n", curaddr);
   1058 			panic("_bus_dmamem_alloc_range");
   1059 		}
   1060 #endif	/* DIAGNOSTIC */
   1061 #ifdef DEBUG_DMA
   1062 		printf("alloc: page %lx\n", curaddr);
   1063 #endif	/* DEBUG_DMA */
   1064 		if (curaddr == (lastaddr + PAGE_SIZE))
   1065 			segs[curseg].ds_len += PAGE_SIZE;
   1066 		else {
   1067 			curseg++;
   1068 			segs[curseg].ds_addr = curaddr;
   1069 			segs[curseg].ds_len = PAGE_SIZE;
   1070 		}
   1071 		lastaddr = curaddr;
   1072 	}
   1073 
   1074 	*rsegs = curseg + 1;
   1075 
   1076 	return (0);
   1077 }
   1078 
   1079 /*
   1080  * Check if a memory region intersects with a DMA range, and return the
   1081  * page-rounded intersection if it does.
   1082  */
   1083 int
   1084 arm32_dma_range_intersect(struct arm32_dma_range *ranges, int nranges,
   1085     paddr_t pa, psize_t size, paddr_t *pap, psize_t *sizep)
   1086 {
   1087 	struct arm32_dma_range *dr;
   1088 	int i;
   1089 
   1090 	if (ranges == NULL)
   1091 		return (0);
   1092 
   1093 	for (i = 0, dr = ranges; i < nranges; i++, dr++) {
   1094 		if (dr->dr_sysbase <= pa &&
   1095 		    pa < (dr->dr_sysbase + dr->dr_len)) {
   1096 			/*
   1097 			 * Beginning of region intersects with this range.
   1098 			 */
   1099 			*pap = trunc_page(pa);
   1100 			*sizep = round_page(min(pa + size,
   1101 			    dr->dr_sysbase + dr->dr_len) - pa);
   1102 			return (1);
   1103 		}
   1104 		if (pa < dr->dr_sysbase && dr->dr_sysbase < (pa + size)) {
   1105 			/*
   1106 			 * End of region intersects with this range.
   1107 			 */
   1108 			*pap = trunc_page(dr->dr_sysbase);
   1109 			*sizep = round_page(min((pa + size) - dr->dr_sysbase,
   1110 			    dr->dr_len));
   1111 			return (1);
   1112 		}
   1113 	}
   1114 
   1115 	/* No intersection found. */
   1116 	return (0);
   1117 }
   1118