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bus_dma.c revision 1.73
      1  1.73  macallan /*	$NetBSD: bus_dma.c,v 1.73 2013/02/04 13:26:19 macallan Exp $	*/
      2   1.1     chris 
      3   1.1     chris /*-
      4   1.1     chris  * Copyright (c) 1996, 1997, 1998 The NetBSD Foundation, Inc.
      5   1.1     chris  * All rights reserved.
      6   1.1     chris  *
      7   1.1     chris  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1     chris  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9   1.1     chris  * NASA Ames Research Center.
     10   1.1     chris  *
     11   1.1     chris  * Redistribution and use in source and binary forms, with or without
     12   1.1     chris  * modification, are permitted provided that the following conditions
     13   1.1     chris  * are met:
     14   1.1     chris  * 1. Redistributions of source code must retain the above copyright
     15   1.1     chris  *    notice, this list of conditions and the following disclaimer.
     16   1.1     chris  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1     chris  *    notice, this list of conditions and the following disclaimer in the
     18   1.1     chris  *    documentation and/or other materials provided with the distribution.
     19   1.1     chris  *
     20   1.1     chris  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21   1.1     chris  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22   1.1     chris  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23   1.1     chris  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24   1.1     chris  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25   1.1     chris  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26   1.1     chris  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27   1.1     chris  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28   1.1     chris  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29   1.1     chris  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30   1.1     chris  * POSSIBILITY OF SUCH DAMAGE.
     31   1.1     chris  */
     32  1.33     lukem 
     33  1.35  rearnsha #define _ARM32_BUS_DMA_PRIVATE
     34  1.35  rearnsha 
     35  1.33     lukem #include <sys/cdefs.h>
     36  1.73  macallan __KERNEL_RCSID(0, "$NetBSD: bus_dma.c,v 1.73 2013/02/04 13:26:19 macallan Exp $");
     37   1.1     chris 
     38   1.1     chris #include <sys/param.h>
     39   1.1     chris #include <sys/systm.h>
     40   1.1     chris #include <sys/kernel.h>
     41   1.1     chris #include <sys/proc.h>
     42   1.1     chris #include <sys/buf.h>
     43   1.1     chris #include <sys/reboot.h>
     44   1.1     chris #include <sys/conf.h>
     45   1.1     chris #include <sys/file.h>
     46   1.1     chris #include <sys/malloc.h>
     47   1.1     chris #include <sys/mbuf.h>
     48   1.1     chris #include <sys/vnode.h>
     49   1.1     chris #include <sys/device.h>
     50   1.1     chris 
     51  1.53  uebayasi #include <uvm/uvm.h>
     52   1.1     chris 
     53  1.54    dyoung #include <sys/bus.h>
     54   1.1     chris #include <machine/cpu.h>
     55   1.4   thorpej 
     56   1.4   thorpej #include <arm/cpufunc.h>
     57   1.1     chris 
     58  1.58      matt static struct evcnt bus_dma_creates =
     59  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "creates");
     60  1.58      matt static struct evcnt bus_dma_bounced_creates =
     61  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "bounced creates");
     62  1.58      matt static struct evcnt bus_dma_loads =
     63  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "loads");
     64  1.58      matt static struct evcnt bus_dma_bounced_loads =
     65  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "bounced loads");
     66  1.58      matt static struct evcnt bus_dma_read_bounces =
     67  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "read bounces");
     68  1.58      matt static struct evcnt bus_dma_write_bounces =
     69  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "write bounces");
     70  1.58      matt static struct evcnt bus_dma_bounced_unloads =
     71  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "bounced unloads");
     72  1.58      matt static struct evcnt bus_dma_unloads =
     73  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "unloads");
     74  1.58      matt static struct evcnt bus_dma_bounced_destroys =
     75  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "bounced destroys");
     76  1.58      matt static struct evcnt bus_dma_destroys =
     77  1.58      matt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "busdma", "destroys");
     78  1.58      matt 
     79  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_creates);
     80  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_bounced_creates);
     81  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_loads);
     82  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_bounced_loads);
     83  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_read_bounces);
     84  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_write_bounces);
     85  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_unloads);
     86  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_bounced_unloads);
     87  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_destroys);
     88  1.58      matt EVCNT_ATTACH_STATIC(bus_dma_bounced_destroys);
     89  1.58      matt 
     90  1.58      matt #define	STAT_INCR(x)	(bus_dma_ ## x.ev_count++)
     91  1.58      matt 
     92   1.7   thorpej int	_bus_dmamap_load_buffer(bus_dma_tag_t, bus_dmamap_t, void *,
     93  1.48      yamt 	    bus_size_t, struct vmspace *, int);
     94  1.58      matt static struct arm32_dma_range *
     95  1.59      matt 	_bus_dma_paddr_inrange(struct arm32_dma_range *, int, paddr_t);
     96   1.1     chris 
     97   1.1     chris /*
     98  1.19    briggs  * Check to see if the specified page is in an allowed DMA range.
     99  1.19    briggs  */
    100  1.47     perry inline struct arm32_dma_range *
    101  1.59      matt _bus_dma_paddr_inrange(struct arm32_dma_range *ranges, int nranges,
    102  1.19    briggs     bus_addr_t curaddr)
    103  1.19    briggs {
    104  1.19    briggs 	struct arm32_dma_range *dr;
    105  1.19    briggs 	int i;
    106  1.19    briggs 
    107  1.19    briggs 	for (i = 0, dr = ranges; i < nranges; i++, dr++) {
    108  1.19    briggs 		if (curaddr >= dr->dr_sysbase &&
    109  1.19    briggs 		    round_page(curaddr) <= (dr->dr_sysbase + dr->dr_len))
    110  1.19    briggs 			return (dr);
    111  1.19    briggs 	}
    112  1.19    briggs 
    113  1.19    briggs 	return (NULL);
    114  1.19    briggs }
    115  1.19    briggs 
    116  1.19    briggs /*
    117  1.59      matt  * Check to see if the specified busaddr is in an allowed DMA range.
    118  1.59      matt  */
    119  1.59      matt static inline paddr_t
    120  1.59      matt _bus_dma_busaddr_to_paddr(bus_dma_tag_t t, bus_addr_t curaddr)
    121  1.59      matt {
    122  1.59      matt 	struct arm32_dma_range *dr;
    123  1.59      matt 	u_int i;
    124  1.59      matt 
    125  1.59      matt 	if (t->_nranges == 0)
    126  1.59      matt 		return curaddr;
    127  1.59      matt 
    128  1.59      matt 	for (i = 0, dr = t->_ranges; i < t->_nranges; i++, dr++) {
    129  1.59      matt 		if (dr->dr_busbase <= curaddr
    130  1.59      matt 		    && round_page(curaddr) <= dr->dr_busbase + dr->dr_len)
    131  1.59      matt 			return curaddr - dr->dr_busbase + dr->dr_sysbase;
    132  1.59      matt 	}
    133  1.59      matt 	panic("%s: curaddr %#lx not in range", __func__, curaddr);
    134  1.59      matt }
    135  1.59      matt 
    136  1.59      matt /*
    137  1.41   thorpej  * Common function to load the specified physical address into the
    138  1.41   thorpej  * DMA map, coalescing segments and boundary checking as necessary.
    139  1.41   thorpej  */
    140  1.41   thorpej static int
    141  1.41   thorpej _bus_dmamap_load_paddr(bus_dma_tag_t t, bus_dmamap_t map,
    142  1.61      matt     bus_addr_t paddr, bus_size_t size, bool coherent)
    143  1.41   thorpej {
    144  1.41   thorpej 	bus_dma_segment_t * const segs = map->dm_segs;
    145  1.41   thorpej 	int nseg = map->dm_nsegs;
    146  1.58      matt 	bus_addr_t lastaddr;
    147  1.41   thorpej 	bus_addr_t bmask = ~(map->_dm_boundary - 1);
    148  1.41   thorpej 	bus_addr_t curaddr;
    149  1.41   thorpej 	bus_size_t sgsize;
    150  1.61      matt 	uint32_t _ds_flags = coherent ? _BUS_DMAMAP_COHERENT : 0;
    151  1.41   thorpej 
    152  1.41   thorpej 	if (nseg > 0)
    153  1.41   thorpej 		lastaddr = segs[nseg-1].ds_addr + segs[nseg-1].ds_len;
    154  1.58      matt 	else
    155  1.58      matt 		lastaddr = 0xdead;
    156  1.58      matt 
    157  1.41   thorpej  again:
    158  1.41   thorpej 	sgsize = size;
    159  1.41   thorpej 
    160  1.41   thorpej 	/* Make sure we're in an allowed DMA range. */
    161  1.41   thorpej 	if (t->_ranges != NULL) {
    162  1.41   thorpej 		/* XXX cache last result? */
    163  1.41   thorpej 		const struct arm32_dma_range * const dr =
    164  1.59      matt 		    _bus_dma_paddr_inrange(t->_ranges, t->_nranges, paddr);
    165  1.41   thorpej 		if (dr == NULL)
    166  1.41   thorpej 			return (EINVAL);
    167  1.61      matt 
    168  1.61      matt 		/*
    169  1.61      matt 		 * If this region is coherent, mark the segment as coherent.
    170  1.61      matt 		 */
    171  1.61      matt 		_ds_flags |= dr->dr_flags & _BUS_DMAMAP_COHERENT;
    172  1.72     skrll 
    173  1.41   thorpej 		/*
    174  1.41   thorpej 		 * In a valid DMA range.  Translate the physical
    175  1.41   thorpej 		 * memory address to an address in the DMA window.
    176  1.41   thorpej 		 */
    177  1.41   thorpej 		curaddr = (paddr - dr->dr_sysbase) + dr->dr_busbase;
    178  1.72     skrll #if 0
    179  1.72     skrll 		printf("%p: %#lx: range %#lx/%#lx/%#lx/%#x: %#x <-- %#lx\n",
    180  1.72     skrll 		    t, paddr, dr->dr_sysbase, dr->dr_busbase,
    181  1.72     skrll 		    dr->dr_len, dr->dr_flags, _ds_flags, curaddr);
    182  1.72     skrll #endif
    183  1.41   thorpej 	} else
    184  1.41   thorpej 		curaddr = paddr;
    185  1.41   thorpej 
    186  1.41   thorpej 	/*
    187  1.41   thorpej 	 * Make sure we don't cross any boundaries.
    188  1.41   thorpej 	 */
    189  1.41   thorpej 	if (map->_dm_boundary > 0) {
    190  1.41   thorpej 		bus_addr_t baddr;	/* next boundary address */
    191  1.41   thorpej 
    192  1.41   thorpej 		baddr = (curaddr + map->_dm_boundary) & bmask;
    193  1.41   thorpej 		if (sgsize > (baddr - curaddr))
    194  1.41   thorpej 			sgsize = (baddr - curaddr);
    195  1.41   thorpej 	}
    196  1.41   thorpej 
    197  1.41   thorpej 	/*
    198  1.41   thorpej 	 * Insert chunk into a segment, coalescing with the
    199  1.41   thorpej 	 * previous segment if possible.
    200  1.41   thorpej 	 */
    201  1.41   thorpej 	if (nseg > 0 && curaddr == lastaddr &&
    202  1.43      matt 	    segs[nseg-1].ds_len + sgsize <= map->dm_maxsegsz &&
    203  1.61      matt 	    ((segs[nseg-1]._ds_flags ^ _ds_flags) & _BUS_DMAMAP_COHERENT) == 0 &&
    204  1.41   thorpej 	    (map->_dm_boundary == 0 ||
    205  1.41   thorpej 	     (segs[nseg-1].ds_addr & bmask) == (curaddr & bmask))) {
    206  1.41   thorpej 	     	/* coalesce */
    207  1.41   thorpej 		segs[nseg-1].ds_len += sgsize;
    208  1.41   thorpej 	} else if (nseg >= map->_dm_segcnt) {
    209  1.41   thorpej 		return (EFBIG);
    210  1.41   thorpej 	} else {
    211  1.41   thorpej 		/* new segment */
    212  1.41   thorpej 		segs[nseg].ds_addr = curaddr;
    213  1.41   thorpej 		segs[nseg].ds_len = sgsize;
    214  1.61      matt 		segs[nseg]._ds_flags = _ds_flags;
    215  1.41   thorpej 		nseg++;
    216  1.41   thorpej 	}
    217  1.41   thorpej 
    218  1.41   thorpej 	lastaddr = curaddr + sgsize;
    219  1.41   thorpej 
    220  1.41   thorpej 	paddr += sgsize;
    221  1.41   thorpej 	size -= sgsize;
    222  1.41   thorpej 	if (size > 0)
    223  1.41   thorpej 		goto again;
    224  1.61      matt 
    225  1.61      matt 	map->_dm_flags &= (_ds_flags & _BUS_DMAMAP_COHERENT);
    226  1.41   thorpej 	map->dm_nsegs = nseg;
    227  1.41   thorpej 	return (0);
    228  1.41   thorpej }
    229  1.41   thorpej 
    230  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    231  1.58      matt static int _bus_dma_alloc_bouncebuf(bus_dma_tag_t t, bus_dmamap_t map,
    232  1.58      matt 	    bus_size_t size, int flags);
    233  1.58      matt static void _bus_dma_free_bouncebuf(bus_dma_tag_t t, bus_dmamap_t map);
    234  1.58      matt static int _bus_dma_uiomove(void *buf, struct uio *uio, size_t n,
    235  1.58      matt 	    int direction);
    236  1.58      matt 
    237  1.58      matt static int
    238  1.58      matt _bus_dma_load_bouncebuf(bus_dma_tag_t t, bus_dmamap_t map, void *buf,
    239  1.58      matt 	size_t buflen, int buftype, int flags)
    240  1.58      matt {
    241  1.58      matt 	struct arm32_bus_dma_cookie * const cookie = map->_dm_cookie;
    242  1.58      matt 	struct vmspace * const vm = vmspace_kernel();
    243  1.58      matt 	int error;
    244  1.58      matt 
    245  1.58      matt 	KASSERT(cookie != NULL);
    246  1.58      matt 	KASSERT(cookie->id_flags & _BUS_DMA_MIGHT_NEED_BOUNCE);
    247  1.58      matt 
    248  1.58      matt 	/*
    249  1.58      matt 	 * Allocate bounce pages, if necessary.
    250  1.58      matt 	 */
    251  1.58      matt 	if ((cookie->id_flags & _BUS_DMA_HAS_BOUNCE) == 0) {
    252  1.58      matt 		error = _bus_dma_alloc_bouncebuf(t, map, buflen, flags);
    253  1.58      matt 		if (error)
    254  1.58      matt 			return (error);
    255  1.58      matt 	}
    256  1.58      matt 
    257  1.58      matt 	/*
    258  1.58      matt 	 * Cache a pointer to the caller's buffer and load the DMA map
    259  1.58      matt 	 * with the bounce buffer.
    260  1.58      matt 	 */
    261  1.58      matt 	cookie->id_origbuf = buf;
    262  1.58      matt 	cookie->id_origbuflen = buflen;
    263  1.58      matt 	error = _bus_dmamap_load_buffer(t, map, cookie->id_bouncebuf,
    264  1.58      matt 	    buflen, vm, flags);
    265  1.58      matt 	if (error)
    266  1.58      matt 		return (error);
    267  1.58      matt 
    268  1.58      matt 	STAT_INCR(bounced_loads);
    269  1.58      matt 	map->dm_mapsize = buflen;
    270  1.58      matt 	map->_dm_vmspace = vm;
    271  1.58      matt 	map->_dm_buftype = buftype;
    272  1.58      matt 
    273  1.58      matt 	/* ...so _bus_dmamap_sync() knows we're bouncing */
    274  1.63      matt 	map->_dm_flags |= _BUS_DMAMAP_IS_BOUNCING;
    275  1.58      matt 	cookie->id_flags |= _BUS_DMA_IS_BOUNCING;
    276  1.58      matt 	return 0;
    277  1.58      matt }
    278  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
    279  1.58      matt 
    280  1.41   thorpej /*
    281   1.1     chris  * Common function for DMA map creation.  May be called by bus-specific
    282   1.1     chris  * DMA map creation functions.
    283   1.1     chris  */
    284   1.1     chris int
    285   1.7   thorpej _bus_dmamap_create(bus_dma_tag_t t, bus_size_t size, int nsegments,
    286   1.7   thorpej     bus_size_t maxsegsz, bus_size_t boundary, int flags, bus_dmamap_t *dmamp)
    287   1.1     chris {
    288   1.1     chris 	struct arm32_bus_dmamap *map;
    289   1.1     chris 	void *mapstore;
    290   1.1     chris 	size_t mapsize;
    291   1.1     chris 
    292   1.1     chris #ifdef DEBUG_DMA
    293   1.1     chris 	printf("dmamap_create: t=%p size=%lx nseg=%x msegsz=%lx boundary=%lx flags=%x\n",
    294   1.1     chris 	    t, size, nsegments, maxsegsz, boundary, flags);
    295   1.1     chris #endif	/* DEBUG_DMA */
    296   1.1     chris 
    297   1.1     chris 	/*
    298   1.1     chris 	 * Allocate and initialize the DMA map.  The end of the map
    299   1.1     chris 	 * is a variable-sized array of segments, so we allocate enough
    300   1.1     chris 	 * room for them in one shot.
    301   1.1     chris 	 *
    302   1.1     chris 	 * Note we don't preserve the WAITOK or NOWAIT flags.  Preservation
    303   1.1     chris 	 * of ALLOCNOW notifies others that we've reserved these resources,
    304   1.1     chris 	 * and they are not to be freed.
    305   1.1     chris 	 *
    306   1.1     chris 	 * The bus_dmamap_t includes one bus_dma_segment_t, hence
    307   1.1     chris 	 * the (nsegments - 1).
    308   1.1     chris 	 */
    309   1.1     chris 	mapsize = sizeof(struct arm32_bus_dmamap) +
    310   1.1     chris 	    (sizeof(bus_dma_segment_t) * (nsegments - 1));
    311  1.58      matt 	const int mallocflags = M_ZERO|(flags & BUS_DMA_NOWAIT) ? M_NOWAIT : M_WAITOK;
    312  1.58      matt 	if ((mapstore = malloc(mapsize, M_DMAMAP, mallocflags)) == NULL)
    313   1.1     chris 		return (ENOMEM);
    314   1.1     chris 
    315   1.1     chris 	map = (struct arm32_bus_dmamap *)mapstore;
    316   1.1     chris 	map->_dm_size = size;
    317   1.1     chris 	map->_dm_segcnt = nsegments;
    318  1.43      matt 	map->_dm_maxmaxsegsz = maxsegsz;
    319   1.1     chris 	map->_dm_boundary = boundary;
    320   1.1     chris 	map->_dm_flags = flags & ~(BUS_DMA_WAITOK|BUS_DMA_NOWAIT);
    321  1.14   thorpej 	map->_dm_origbuf = NULL;
    322  1.58      matt 	map->_dm_buftype = _BUS_DMA_BUFTYPE_INVALID;
    323  1.48      yamt 	map->_dm_vmspace = vmspace_kernel();
    324  1.58      matt 	map->_dm_cookie = NULL;
    325  1.43      matt 	map->dm_maxsegsz = maxsegsz;
    326   1.1     chris 	map->dm_mapsize = 0;		/* no valid mappings */
    327   1.1     chris 	map->dm_nsegs = 0;
    328   1.1     chris 
    329   1.1     chris 	*dmamp = map;
    330  1.58      matt 
    331  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    332  1.58      matt 	struct arm32_bus_dma_cookie *cookie;
    333  1.58      matt 	int cookieflags;
    334  1.58      matt 	void *cookiestore;
    335  1.58      matt 	size_t cookiesize;
    336  1.58      matt 	int error;
    337  1.58      matt 
    338  1.58      matt 	cookieflags = 0;
    339  1.58      matt 
    340  1.58      matt 	if (t->_may_bounce != NULL) {
    341  1.58      matt 		error = (*t->_may_bounce)(t, map, flags, &cookieflags);
    342  1.58      matt 		if (error != 0)
    343  1.58      matt 			goto out;
    344  1.58      matt 	}
    345  1.58      matt 
    346  1.58      matt 	if (t->_ranges != NULL)
    347  1.58      matt 		cookieflags |= _BUS_DMA_MIGHT_NEED_BOUNCE;
    348  1.58      matt 
    349  1.58      matt 	if ((cookieflags & _BUS_DMA_MIGHT_NEED_BOUNCE) == 0) {
    350  1.58      matt 		STAT_INCR(creates);
    351  1.58      matt 		return 0;
    352  1.58      matt 	}
    353  1.58      matt 
    354  1.58      matt 	cookiesize = sizeof(struct arm32_bus_dma_cookie) +
    355  1.58      matt 	    (sizeof(bus_dma_segment_t) * map->_dm_segcnt);
    356  1.58      matt 
    357  1.58      matt 	/*
    358  1.58      matt 	 * Allocate our cookie.
    359  1.58      matt 	 */
    360  1.58      matt 	if ((cookiestore = malloc(cookiesize, M_DMAMAP, mallocflags)) == NULL) {
    361  1.58      matt 		error = ENOMEM;
    362  1.58      matt 		goto out;
    363  1.58      matt 	}
    364  1.58      matt 	cookie = (struct arm32_bus_dma_cookie *)cookiestore;
    365  1.58      matt 	cookie->id_flags = cookieflags;
    366  1.58      matt 	map->_dm_cookie = cookie;
    367  1.58      matt 	STAT_INCR(bounced_creates);
    368  1.58      matt 
    369  1.58      matt 	error = _bus_dma_alloc_bouncebuf(t, map, size, flags);
    370  1.58      matt  out:
    371  1.58      matt 	if (error)
    372  1.58      matt 		_bus_dmamap_destroy(t, map);
    373  1.58      matt #else
    374  1.58      matt 	STAT_INCR(creates);
    375  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
    376  1.58      matt 
    377   1.1     chris #ifdef DEBUG_DMA
    378   1.1     chris 	printf("dmamap_create:map=%p\n", map);
    379   1.1     chris #endif	/* DEBUG_DMA */
    380   1.1     chris 	return (0);
    381   1.1     chris }
    382   1.1     chris 
    383   1.1     chris /*
    384   1.1     chris  * Common function for DMA map destruction.  May be called by bus-specific
    385   1.1     chris  * DMA map destruction functions.
    386   1.1     chris  */
    387   1.1     chris void
    388   1.7   thorpej _bus_dmamap_destroy(bus_dma_tag_t t, bus_dmamap_t map)
    389   1.1     chris {
    390   1.1     chris 
    391   1.1     chris #ifdef DEBUG_DMA
    392   1.1     chris 	printf("dmamap_destroy: t=%p map=%p\n", t, map);
    393   1.1     chris #endif	/* DEBUG_DMA */
    394  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    395  1.58      matt 	struct arm32_bus_dma_cookie *cookie = map->_dm_cookie;
    396  1.13    briggs 
    397  1.13    briggs 	/*
    398  1.58      matt 	 * Free any bounce pages this map might hold.
    399  1.13    briggs 	 */
    400  1.58      matt 	if (cookie != NULL) {
    401  1.58      matt 		if (cookie->id_flags & _BUS_DMA_IS_BOUNCING)
    402  1.58      matt 			STAT_INCR(bounced_unloads);
    403  1.58      matt 		map->dm_nsegs = 0;
    404  1.58      matt 		if (cookie->id_flags & _BUS_DMA_HAS_BOUNCE)
    405  1.58      matt 			_bus_dma_free_bouncebuf(t, map);
    406  1.58      matt 		STAT_INCR(bounced_destroys);
    407  1.58      matt 		free(cookie, M_DMAMAP);
    408  1.58      matt 	} else
    409  1.58      matt #endif
    410  1.58      matt 	STAT_INCR(destroys);
    411  1.58      matt 
    412  1.58      matt 	if (map->dm_nsegs > 0)
    413  1.58      matt 		STAT_INCR(unloads);
    414  1.13    briggs 
    415  1.25     chris 	free(map, M_DMAMAP);
    416   1.1     chris }
    417   1.1     chris 
    418   1.1     chris /*
    419   1.1     chris  * Common function for loading a DMA map with a linear buffer.  May
    420   1.1     chris  * be called by bus-specific DMA map load functions.
    421   1.1     chris  */
    422   1.1     chris int
    423   1.7   thorpej _bus_dmamap_load(bus_dma_tag_t t, bus_dmamap_t map, void *buf,
    424   1.7   thorpej     bus_size_t buflen, struct proc *p, int flags)
    425   1.1     chris {
    426  1.58      matt 	struct vmspace *vm;
    427  1.41   thorpej 	int error;
    428   1.1     chris 
    429   1.1     chris #ifdef DEBUG_DMA
    430   1.1     chris 	printf("dmamap_load: t=%p map=%p buf=%p len=%lx p=%p f=%d\n",
    431   1.1     chris 	    t, map, buf, buflen, p, flags);
    432   1.1     chris #endif	/* DEBUG_DMA */
    433   1.1     chris 
    434  1.58      matt 	if (map->dm_nsegs > 0) {
    435  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    436  1.58      matt 		struct arm32_bus_dma_cookie *cookie = map->_dm_cookie;
    437  1.58      matt 		if (cookie != NULL) {
    438  1.58      matt 			if (cookie->id_flags & _BUS_DMA_IS_BOUNCING) {
    439  1.58      matt 				STAT_INCR(bounced_unloads);
    440  1.58      matt 				cookie->id_flags &= ~_BUS_DMA_IS_BOUNCING;
    441  1.63      matt 				map->_dm_flags &= ~_BUS_DMAMAP_IS_BOUNCING;
    442  1.58      matt 			}
    443  1.58      matt 		} else
    444  1.58      matt #endif
    445  1.58      matt 		STAT_INCR(unloads);
    446  1.58      matt 	}
    447  1.58      matt 
    448   1.1     chris 	/*
    449   1.1     chris 	 * Make sure that on error condition we return "no valid mappings".
    450   1.1     chris 	 */
    451   1.1     chris 	map->dm_mapsize = 0;
    452   1.1     chris 	map->dm_nsegs = 0;
    453  1.58      matt 	map->_dm_buftype = _BUS_DMA_BUFTYPE_INVALID;
    454  1.43      matt 	KASSERT(map->dm_maxsegsz <= map->_dm_maxmaxsegsz);
    455   1.1     chris 
    456   1.1     chris 	if (buflen > map->_dm_size)
    457   1.1     chris 		return (EINVAL);
    458   1.1     chris 
    459  1.48      yamt 	if (p != NULL) {
    460  1.48      yamt 		vm = p->p_vmspace;
    461  1.48      yamt 	} else {
    462  1.48      yamt 		vm = vmspace_kernel();
    463  1.48      yamt 	}
    464  1.48      yamt 
    465  1.17   thorpej 	/* _bus_dmamap_load_buffer() clears this if we're not... */
    466  1.58      matt 	map->_dm_flags |= _BUS_DMAMAP_COHERENT;
    467  1.17   thorpej 
    468  1.48      yamt 	error = _bus_dmamap_load_buffer(t, map, buf, buflen, vm, flags);
    469   1.1     chris 	if (error == 0) {
    470   1.1     chris 		map->dm_mapsize = buflen;
    471  1.58      matt 		map->_dm_vmspace = vm;
    472  1.14   thorpej 		map->_dm_origbuf = buf;
    473  1.58      matt 		map->_dm_buftype = _BUS_DMA_BUFTYPE_LINEAR;
    474  1.58      matt 		return 0;
    475   1.1     chris 	}
    476  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    477  1.58      matt 	struct arm32_bus_dma_cookie * const cookie = map->_dm_cookie;
    478  1.58      matt 	if (cookie != NULL && (cookie->id_flags & _BUS_DMA_MIGHT_NEED_BOUNCE)) {
    479  1.58      matt 		error = _bus_dma_load_bouncebuf(t, map, buf, buflen,
    480  1.58      matt 		    _BUS_DMA_BUFTYPE_LINEAR, flags);
    481  1.58      matt 	}
    482  1.58      matt #endif
    483   1.1     chris 	return (error);
    484   1.1     chris }
    485   1.1     chris 
    486   1.1     chris /*
    487   1.1     chris  * Like _bus_dmamap_load(), but for mbufs.
    488   1.1     chris  */
    489   1.1     chris int
    490   1.7   thorpej _bus_dmamap_load_mbuf(bus_dma_tag_t t, bus_dmamap_t map, struct mbuf *m0,
    491   1.7   thorpej     int flags)
    492   1.1     chris {
    493  1.41   thorpej 	int error;
    494   1.1     chris 	struct mbuf *m;
    495   1.1     chris 
    496   1.1     chris #ifdef DEBUG_DMA
    497   1.1     chris 	printf("dmamap_load_mbuf: t=%p map=%p m0=%p f=%d\n",
    498   1.1     chris 	    t, map, m0, flags);
    499   1.1     chris #endif	/* DEBUG_DMA */
    500   1.1     chris 
    501  1.58      matt 	if (map->dm_nsegs > 0) {
    502  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    503  1.58      matt 		struct arm32_bus_dma_cookie *cookie = map->_dm_cookie;
    504  1.58      matt 		if (cookie != NULL) {
    505  1.58      matt 			if (cookie->id_flags & _BUS_DMA_IS_BOUNCING) {
    506  1.58      matt 				STAT_INCR(bounced_unloads);
    507  1.58      matt 				cookie->id_flags &= ~_BUS_DMA_IS_BOUNCING;
    508  1.63      matt 				map->_dm_flags &= ~_BUS_DMAMAP_IS_BOUNCING;
    509  1.58      matt 			}
    510  1.58      matt 		} else
    511  1.58      matt #endif
    512  1.58      matt 		STAT_INCR(unloads);
    513  1.58      matt 	}
    514  1.58      matt 
    515   1.1     chris 	/*
    516   1.1     chris 	 * Make sure that on error condition we return "no valid mappings."
    517   1.1     chris 	 */
    518   1.1     chris 	map->dm_mapsize = 0;
    519   1.1     chris 	map->dm_nsegs = 0;
    520  1.58      matt 	map->_dm_buftype = _BUS_DMA_BUFTYPE_INVALID;
    521  1.43      matt 	KASSERT(map->dm_maxsegsz <= map->_dm_maxmaxsegsz);
    522   1.1     chris 
    523   1.1     chris #ifdef DIAGNOSTIC
    524   1.1     chris 	if ((m0->m_flags & M_PKTHDR) == 0)
    525   1.1     chris 		panic("_bus_dmamap_load_mbuf: no packet header");
    526   1.1     chris #endif	/* DIAGNOSTIC */
    527   1.1     chris 
    528   1.1     chris 	if (m0->m_pkthdr.len > map->_dm_size)
    529   1.1     chris 		return (EINVAL);
    530   1.1     chris 
    531  1.61      matt 	/* _bus_dmamap_load_paddr() clears this if we're not... */
    532  1.61      matt 	map->_dm_flags |= _BUS_DMAMAP_COHERENT;
    533  1.17   thorpej 
    534   1.1     chris 	error = 0;
    535   1.1     chris 	for (m = m0; m != NULL && error == 0; m = m->m_next) {
    536  1.41   thorpej 		int offset;
    537  1.41   thorpej 		int remainbytes;
    538  1.41   thorpej 		const struct vm_page * const *pgs;
    539  1.41   thorpej 		paddr_t paddr;
    540  1.41   thorpej 		int size;
    541  1.41   thorpej 
    542  1.28   thorpej 		if (m->m_len == 0)
    543  1.28   thorpej 			continue;
    544  1.57      matt 		/*
    545  1.57      matt 		 * Don't allow reads in read-only mbufs.
    546  1.57      matt 		 */
    547  1.57      matt 		if (M_ROMAP(m) && (flags & BUS_DMA_READ)) {
    548  1.57      matt 			error = EFAULT;
    549  1.57      matt 			break;
    550  1.57      matt 		}
    551  1.41   thorpej 		switch (m->m_flags & (M_EXT|M_CLUSTER|M_EXT_PAGES)) {
    552  1.28   thorpej 		case M_EXT|M_CLUSTER:
    553  1.28   thorpej 			/* XXX KDASSERT */
    554  1.28   thorpej 			KASSERT(m->m_ext.ext_paddr != M_PADDR_INVALID);
    555  1.41   thorpej 			paddr = m->m_ext.ext_paddr +
    556  1.28   thorpej 			    (m->m_data - m->m_ext.ext_buf);
    557  1.41   thorpej 			size = m->m_len;
    558  1.61      matt 			error = _bus_dmamap_load_paddr(t, map, paddr, size,
    559  1.61      matt 			    false);
    560  1.41   thorpej 			break;
    561  1.41   thorpej 
    562  1.41   thorpej 		case M_EXT|M_EXT_PAGES:
    563  1.41   thorpej 			KASSERT(m->m_ext.ext_buf <= m->m_data);
    564  1.41   thorpej 			KASSERT(m->m_data <=
    565  1.41   thorpej 			    m->m_ext.ext_buf + m->m_ext.ext_size);
    566  1.41   thorpej 
    567  1.41   thorpej 			offset = (vaddr_t)m->m_data -
    568  1.41   thorpej 			    trunc_page((vaddr_t)m->m_ext.ext_buf);
    569  1.41   thorpej 			remainbytes = m->m_len;
    570  1.41   thorpej 
    571  1.41   thorpej 			/* skip uninteresting pages */
    572  1.41   thorpej 			pgs = (const struct vm_page * const *)
    573  1.41   thorpej 			    m->m_ext.ext_pgs + (offset >> PAGE_SHIFT);
    574  1.41   thorpej 
    575  1.41   thorpej 			offset &= PAGE_MASK;	/* offset in the first page */
    576  1.41   thorpej 
    577  1.41   thorpej 			/* load each page */
    578  1.41   thorpej 			while (remainbytes > 0) {
    579  1.41   thorpej 				const struct vm_page *pg;
    580  1.41   thorpej 
    581  1.41   thorpej 				size = MIN(remainbytes, PAGE_SIZE - offset);
    582  1.41   thorpej 
    583  1.41   thorpej 				pg = *pgs++;
    584  1.41   thorpej 				KASSERT(pg);
    585  1.41   thorpej 				paddr = VM_PAGE_TO_PHYS(pg) + offset;
    586  1.41   thorpej 
    587  1.41   thorpej 				error = _bus_dmamap_load_paddr(t, map,
    588  1.61      matt 				    paddr, size, false);
    589  1.41   thorpej 				if (error)
    590  1.28   thorpej 					break;
    591  1.41   thorpej 				offset = 0;
    592  1.41   thorpej 				remainbytes -= size;
    593  1.28   thorpej 			}
    594  1.28   thorpej 			break;
    595  1.28   thorpej 
    596  1.28   thorpej 		case 0:
    597  1.41   thorpej 			paddr = m->m_paddr + M_BUFOFFSET(m) +
    598  1.28   thorpej 			    (m->m_data - M_BUFADDR(m));
    599  1.41   thorpej 			size = m->m_len;
    600  1.61      matt 			error = _bus_dmamap_load_paddr(t, map, paddr, size,
    601  1.61      matt 			    false);
    602  1.41   thorpej 			break;
    603  1.28   thorpej 
    604  1.28   thorpej 		default:
    605  1.28   thorpej 			error = _bus_dmamap_load_buffer(t, map, m->m_data,
    606  1.48      yamt 			    m->m_len, vmspace_kernel(), flags);
    607  1.28   thorpej 		}
    608   1.1     chris 	}
    609   1.1     chris 	if (error == 0) {
    610   1.1     chris 		map->dm_mapsize = m0->m_pkthdr.len;
    611  1.14   thorpej 		map->_dm_origbuf = m0;
    612  1.58      matt 		map->_dm_buftype = _BUS_DMA_BUFTYPE_MBUF;
    613  1.48      yamt 		map->_dm_vmspace = vmspace_kernel();	/* always kernel */
    614  1.58      matt 		return 0;
    615   1.1     chris 	}
    616  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    617  1.58      matt 	struct arm32_bus_dma_cookie * const cookie = map->_dm_cookie;
    618  1.58      matt 	if (cookie != NULL && (cookie->id_flags & _BUS_DMA_MIGHT_NEED_BOUNCE)) {
    619  1.58      matt 		error = _bus_dma_load_bouncebuf(t, map, m0, m0->m_pkthdr.len,
    620  1.58      matt 		    _BUS_DMA_BUFTYPE_MBUF, flags);
    621  1.58      matt 	}
    622  1.58      matt #endif
    623   1.1     chris 	return (error);
    624   1.1     chris }
    625   1.1     chris 
    626   1.1     chris /*
    627   1.1     chris  * Like _bus_dmamap_load(), but for uios.
    628   1.1     chris  */
    629   1.1     chris int
    630   1.7   thorpej _bus_dmamap_load_uio(bus_dma_tag_t t, bus_dmamap_t map, struct uio *uio,
    631   1.7   thorpej     int flags)
    632   1.1     chris {
    633  1.41   thorpej 	int i, error;
    634   1.1     chris 	bus_size_t minlen, resid;
    635   1.1     chris 	struct iovec *iov;
    636  1.50  christos 	void *addr;
    637   1.1     chris 
    638   1.1     chris 	/*
    639   1.1     chris 	 * Make sure that on error condition we return "no valid mappings."
    640   1.1     chris 	 */
    641   1.1     chris 	map->dm_mapsize = 0;
    642   1.1     chris 	map->dm_nsegs = 0;
    643  1.43      matt 	KASSERT(map->dm_maxsegsz <= map->_dm_maxmaxsegsz);
    644   1.1     chris 
    645   1.1     chris 	resid = uio->uio_resid;
    646   1.1     chris 	iov = uio->uio_iov;
    647   1.1     chris 
    648  1.17   thorpej 	/* _bus_dmamap_load_buffer() clears this if we're not... */
    649  1.58      matt 	map->_dm_flags |= _BUS_DMAMAP_COHERENT;
    650  1.17   thorpej 
    651   1.1     chris 	error = 0;
    652   1.1     chris 	for (i = 0; i < uio->uio_iovcnt && resid != 0 && error == 0; i++) {
    653   1.1     chris 		/*
    654   1.1     chris 		 * Now at the first iovec to load.  Load each iovec
    655   1.1     chris 		 * until we have exhausted the residual count.
    656   1.1     chris 		 */
    657   1.1     chris 		minlen = resid < iov[i].iov_len ? resid : iov[i].iov_len;
    658  1.50  christos 		addr = (void *)iov[i].iov_base;
    659   1.1     chris 
    660   1.1     chris 		error = _bus_dmamap_load_buffer(t, map, addr, minlen,
    661  1.48      yamt 		    uio->uio_vmspace, flags);
    662   1.1     chris 
    663   1.1     chris 		resid -= minlen;
    664   1.1     chris 	}
    665   1.1     chris 	if (error == 0) {
    666   1.1     chris 		map->dm_mapsize = uio->uio_resid;
    667  1.14   thorpej 		map->_dm_origbuf = uio;
    668  1.58      matt 		map->_dm_buftype = _BUS_DMA_BUFTYPE_UIO;
    669  1.48      yamt 		map->_dm_vmspace = uio->uio_vmspace;
    670   1.1     chris 	}
    671   1.1     chris 	return (error);
    672   1.1     chris }
    673   1.1     chris 
    674   1.1     chris /*
    675   1.1     chris  * Like _bus_dmamap_load(), but for raw memory allocated with
    676   1.1     chris  * bus_dmamem_alloc().
    677   1.1     chris  */
    678   1.1     chris int
    679   1.7   thorpej _bus_dmamap_load_raw(bus_dma_tag_t t, bus_dmamap_t map,
    680   1.7   thorpej     bus_dma_segment_t *segs, int nsegs, bus_size_t size, int flags)
    681   1.1     chris {
    682   1.1     chris 
    683   1.1     chris 	panic("_bus_dmamap_load_raw: not implemented");
    684   1.1     chris }
    685   1.1     chris 
    686   1.1     chris /*
    687   1.1     chris  * Common function for unloading a DMA map.  May be called by
    688   1.1     chris  * bus-specific DMA map unload functions.
    689   1.1     chris  */
    690   1.1     chris void
    691   1.7   thorpej _bus_dmamap_unload(bus_dma_tag_t t, bus_dmamap_t map)
    692   1.1     chris {
    693   1.1     chris 
    694   1.1     chris #ifdef DEBUG_DMA
    695   1.1     chris 	printf("dmamap_unload: t=%p map=%p\n", t, map);
    696   1.1     chris #endif	/* DEBUG_DMA */
    697   1.1     chris 
    698   1.1     chris 	/*
    699   1.1     chris 	 * No resources to free; just mark the mappings as
    700   1.1     chris 	 * invalid.
    701   1.1     chris 	 */
    702   1.1     chris 	map->dm_mapsize = 0;
    703   1.1     chris 	map->dm_nsegs = 0;
    704  1.14   thorpej 	map->_dm_origbuf = NULL;
    705  1.58      matt 	map->_dm_buftype = _BUS_DMA_BUFTYPE_INVALID;
    706  1.48      yamt 	map->_dm_vmspace = NULL;
    707   1.1     chris }
    708   1.1     chris 
    709  1.57      matt static void
    710  1.57      matt _bus_dmamap_sync_segment(vaddr_t va, paddr_t pa, vsize_t len, int ops, bool readonly_p)
    711  1.14   thorpej {
    712  1.57      matt 	KASSERT((va & PAGE_MASK) == (pa & PAGE_MASK));
    713  1.62      matt #if 0
    714  1.62      matt 	printf("sync_segment: va=%#lx pa=%#lx len=%#lx ops=%#x ro=%d\n",
    715  1.62      matt 	    va, pa, len, ops, readonly_p);
    716  1.62      matt #endif
    717  1.14   thorpej 
    718  1.14   thorpej 	switch (ops) {
    719  1.14   thorpej 	case BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE:
    720  1.57      matt 		if (!readonly_p) {
    721  1.57      matt 			cpu_dcache_wbinv_range(va, len);
    722  1.57      matt 			cpu_sdcache_wbinv_range(va, pa, len);
    723  1.57      matt 			break;
    724  1.57      matt 		}
    725  1.57      matt 		/* FALLTHROUGH */
    726  1.14   thorpej 
    727  1.57      matt 	case BUS_DMASYNC_PREREAD: {
    728  1.59      matt 		const size_t line_size = arm_dcache_align;
    729  1.59      matt 		const size_t line_mask = arm_dcache_align_mask;
    730  1.59      matt 		vsize_t misalignment = va & line_mask;
    731  1.57      matt 		if (misalignment) {
    732  1.59      matt 			va -= misalignment;
    733  1.59      matt 			pa -= misalignment;
    734  1.59      matt 			len += misalignment;
    735  1.59      matt 			cpu_dcache_wbinv_range(va, line_size);
    736  1.59      matt 			cpu_sdcache_wbinv_range(va, pa, line_size);
    737  1.59      matt 			if (len <= line_size)
    738  1.57      matt 				break;
    739  1.59      matt 			va += line_size;
    740  1.59      matt 			pa += line_size;
    741  1.59      matt 			len -= line_size;
    742  1.57      matt 		}
    743  1.59      matt 		misalignment = len & line_mask;
    744  1.57      matt 		len -= misalignment;
    745  1.65      matt 		if (len > 0) {
    746  1.65      matt 			cpu_dcache_inv_range(va, len);
    747  1.65      matt 			cpu_sdcache_inv_range(va, pa, len);
    748  1.65      matt 		}
    749  1.57      matt 		if (misalignment) {
    750  1.57      matt 			va += len;
    751  1.57      matt 			pa += len;
    752  1.59      matt 			cpu_dcache_wbinv_range(va, line_size);
    753  1.59      matt 			cpu_sdcache_wbinv_range(va, pa, line_size);
    754  1.57      matt 		}
    755  1.14   thorpej 		break;
    756  1.57      matt 	}
    757  1.14   thorpej 
    758  1.14   thorpej 	case BUS_DMASYNC_PREWRITE:
    759  1.57      matt 		cpu_dcache_wb_range(va, len);
    760  1.57      matt 		cpu_sdcache_wb_range(va, pa, len);
    761  1.14   thorpej 		break;
    762  1.67      matt 
    763  1.67      matt #ifdef CPU_CORTEX
    764  1.67      matt 	/*
    765  1.67      matt 	 * Cortex CPUs can do speculative loads so we need to clean the cache
    766  1.67      matt 	 * after a DMA read to deal with any speculatively loaded cache lines.
    767  1.67      matt 	 * Since these can't be dirty, we can just invalidate them and don't
    768  1.67      matt 	 * have to worry about having to write back their contents.
    769  1.67      matt 	 */
    770  1.67      matt 	case BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE:
    771  1.67      matt 	case BUS_DMASYNC_POSTREAD:
    772  1.67      matt 		cpu_dcache_inv_range(va, len);
    773  1.67      matt 		cpu_sdcache_inv_range(va, pa, len);
    774  1.67      matt 		break;
    775  1.67      matt #endif
    776  1.14   thorpej 	}
    777  1.14   thorpej }
    778  1.14   thorpej 
    779  1.47     perry static inline void
    780  1.57      matt _bus_dmamap_sync_linear(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    781  1.14   thorpej     bus_size_t len, int ops)
    782  1.14   thorpej {
    783  1.57      matt 	bus_dma_segment_t *ds = map->dm_segs;
    784  1.57      matt 	vaddr_t va = (vaddr_t) map->_dm_origbuf;
    785  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    786  1.63      matt 	if (map->_dm_flags & _BUS_DMAMAP_IS_BOUNCING) {
    787  1.63      matt 		struct arm32_bus_dma_cookie * const cookie = map->_dm_cookie;
    788  1.58      matt 		va = (vaddr_t) cookie->id_bouncebuf;
    789  1.58      matt 	}
    790  1.58      matt #endif
    791  1.57      matt 
    792  1.57      matt 	while (len > 0) {
    793  1.57      matt 		while (offset >= ds->ds_len) {
    794  1.57      matt 			offset -= ds->ds_len;
    795  1.57      matt 			va += ds->ds_len;
    796  1.57      matt 			ds++;
    797  1.57      matt 		}
    798  1.57      matt 
    799  1.59      matt 		paddr_t pa = _bus_dma_busaddr_to_paddr(t, ds->ds_addr + offset);
    800  1.57      matt 		size_t seglen = min(len, ds->ds_len - offset);
    801  1.57      matt 
    802  1.61      matt 		if ((ds->_ds_flags & _BUS_DMAMAP_COHERENT) == 0)
    803  1.61      matt 			_bus_dmamap_sync_segment(va + offset, pa, seglen, ops,
    804  1.67      matt 			    false);
    805  1.57      matt 
    806  1.57      matt 		offset += seglen;
    807  1.57      matt 		len -= seglen;
    808  1.57      matt 	}
    809  1.57      matt }
    810  1.57      matt 
    811  1.57      matt static inline void
    812  1.57      matt _bus_dmamap_sync_mbuf(bus_dma_tag_t t, bus_dmamap_t map, bus_size_t offset,
    813  1.57      matt     bus_size_t len, int ops)
    814  1.57      matt {
    815  1.57      matt 	bus_dma_segment_t *ds = map->dm_segs;
    816  1.57      matt 	struct mbuf *m = map->_dm_origbuf;
    817  1.57      matt 	bus_size_t voff = offset;
    818  1.57      matt 	bus_size_t ds_off = offset;
    819  1.57      matt 
    820  1.57      matt 	while (len > 0) {
    821  1.57      matt 		/* Find the current dma segment */
    822  1.57      matt 		while (ds_off >= ds->ds_len) {
    823  1.57      matt 			ds_off -= ds->ds_len;
    824  1.57      matt 			ds++;
    825  1.57      matt 		}
    826  1.57      matt 		/* Find the current mbuf. */
    827  1.57      matt 		while (voff >= m->m_len) {
    828  1.57      matt 			voff -= m->m_len;
    829  1.57      matt 			m = m->m_next;
    830  1.14   thorpej 		}
    831  1.14   thorpej 
    832  1.14   thorpej 		/*
    833  1.14   thorpej 		 * Now at the first mbuf to sync; nail each one until
    834  1.14   thorpej 		 * we have exhausted the length.
    835  1.14   thorpej 		 */
    836  1.57      matt 		vsize_t seglen = min(len, min(m->m_len - voff, ds->ds_len - ds_off));
    837  1.57      matt 		vaddr_t va = mtod(m, vaddr_t) + voff;
    838  1.59      matt 		paddr_t pa = _bus_dma_busaddr_to_paddr(t, ds->ds_addr + ds_off);
    839  1.14   thorpej 
    840  1.28   thorpej 		/*
    841  1.28   thorpej 		 * We can save a lot of work here if we know the mapping
    842  1.28   thorpej 		 * is read-only at the MMU:
    843  1.28   thorpej 		 *
    844  1.28   thorpej 		 * If a mapping is read-only, no dirty cache blocks will
    845  1.28   thorpej 		 * exist for it.  If a writable mapping was made read-only,
    846  1.28   thorpej 		 * we know any dirty cache lines for the range will have
    847  1.28   thorpej 		 * been cleaned for us already.  Therefore, if the upper
    848  1.28   thorpej 		 * layer can tell us we have a read-only mapping, we can
    849  1.28   thorpej 		 * skip all cache cleaning.
    850  1.28   thorpej 		 *
    851  1.28   thorpej 		 * NOTE: This only works if we know the pmap cleans pages
    852  1.28   thorpej 		 * before making a read-write -> read-only transition.  If
    853  1.28   thorpej 		 * this ever becomes non-true (e.g. Physically Indexed
    854  1.28   thorpej 		 * cache), this will have to be revisited.
    855  1.28   thorpej 		 */
    856  1.14   thorpej 
    857  1.61      matt 		if ((ds->_ds_flags & _BUS_DMAMAP_COHERENT) == 0)
    858  1.61      matt 			_bus_dmamap_sync_segment(va, pa, seglen, ops,
    859  1.61      matt 			    M_ROMAP(m));
    860  1.57      matt 		voff += seglen;
    861  1.57      matt 		ds_off += seglen;
    862  1.57      matt 		len -= seglen;
    863  1.14   thorpej 	}
    864  1.14   thorpej }
    865  1.14   thorpej 
    866  1.47     perry static inline void
    867  1.14   thorpej _bus_dmamap_sync_uio(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    868  1.14   thorpej     bus_size_t len, int ops)
    869  1.14   thorpej {
    870  1.57      matt 	bus_dma_segment_t *ds = map->dm_segs;
    871  1.14   thorpej 	struct uio *uio = map->_dm_origbuf;
    872  1.57      matt 	struct iovec *iov = uio->uio_iov;
    873  1.57      matt 	bus_size_t voff = offset;
    874  1.57      matt 	bus_size_t ds_off = offset;
    875  1.57      matt 
    876  1.57      matt 	while (len > 0) {
    877  1.57      matt 		/* Find the current dma segment */
    878  1.57      matt 		while (ds_off >= ds->ds_len) {
    879  1.57      matt 			ds_off -= ds->ds_len;
    880  1.57      matt 			ds++;
    881  1.57      matt 		}
    882  1.14   thorpej 
    883  1.57      matt 		/* Find the current iovec. */
    884  1.57      matt 		while (voff >= iov->iov_len) {
    885  1.57      matt 			voff -= iov->iov_len;
    886  1.57      matt 			iov++;
    887  1.14   thorpej 		}
    888  1.14   thorpej 
    889  1.14   thorpej 		/*
    890  1.14   thorpej 		 * Now at the first iovec to sync; nail each one until
    891  1.14   thorpej 		 * we have exhausted the length.
    892  1.14   thorpej 		 */
    893  1.57      matt 		vsize_t seglen = min(len, min(iov->iov_len - voff, ds->ds_len - ds_off));
    894  1.57      matt 		vaddr_t va = (vaddr_t) iov->iov_base + voff;
    895  1.59      matt 		paddr_t pa = _bus_dma_busaddr_to_paddr(t, ds->ds_addr + ds_off);
    896  1.57      matt 
    897  1.61      matt 		if ((ds->_ds_flags & _BUS_DMAMAP_COHERENT) == 0)
    898  1.61      matt 			_bus_dmamap_sync_segment(va, pa, seglen, ops, false);
    899  1.57      matt 
    900  1.57      matt 		voff += seglen;
    901  1.57      matt 		ds_off += seglen;
    902  1.57      matt 		len -= seglen;
    903  1.14   thorpej 	}
    904  1.14   thorpej }
    905  1.14   thorpej 
    906   1.1     chris /*
    907   1.1     chris  * Common function for DMA map synchronization.  May be called
    908   1.1     chris  * by bus-specific DMA map synchronization functions.
    909   1.8   thorpej  *
    910   1.8   thorpej  * This version works for the Virtually Indexed Virtually Tagged
    911   1.8   thorpej  * cache found on 32-bit ARM processors.
    912   1.8   thorpej  *
    913   1.8   thorpej  * XXX Should have separate versions for write-through vs.
    914   1.8   thorpej  * XXX write-back caches.  We currently assume write-back
    915   1.8   thorpej  * XXX here, which is not as efficient as it could be for
    916   1.8   thorpej  * XXX the write-through case.
    917   1.1     chris  */
    918   1.1     chris void
    919   1.7   thorpej _bus_dmamap_sync(bus_dma_tag_t t, bus_dmamap_t map, bus_addr_t offset,
    920   1.7   thorpej     bus_size_t len, int ops)
    921   1.1     chris {
    922   1.1     chris #ifdef DEBUG_DMA
    923   1.1     chris 	printf("dmamap_sync: t=%p map=%p offset=%lx len=%lx ops=%x\n",
    924   1.1     chris 	    t, map, offset, len, ops);
    925   1.1     chris #endif	/* DEBUG_DMA */
    926   1.1     chris 
    927   1.8   thorpej 	/*
    928   1.8   thorpej 	 * Mixing of PRE and POST operations is not allowed.
    929   1.8   thorpej 	 */
    930   1.8   thorpej 	if ((ops & (BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE)) != 0 &&
    931   1.8   thorpej 	    (ops & (BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE)) != 0)
    932   1.8   thorpej 		panic("_bus_dmamap_sync: mix PRE and POST");
    933   1.8   thorpej 
    934   1.8   thorpej #ifdef DIAGNOSTIC
    935   1.8   thorpej 	if (offset >= map->dm_mapsize)
    936   1.8   thorpej 		panic("_bus_dmamap_sync: bad offset %lu (map size is %lu)",
    937   1.8   thorpej 		    offset, map->dm_mapsize);
    938   1.8   thorpej 	if (len == 0 || (offset + len) > map->dm_mapsize)
    939   1.8   thorpej 		panic("_bus_dmamap_sync: bad length");
    940   1.8   thorpej #endif
    941   1.8   thorpej 
    942   1.8   thorpej 	/*
    943   1.8   thorpej 	 * For a virtually-indexed write-back cache, we need
    944   1.8   thorpej 	 * to do the following things:
    945   1.8   thorpej 	 *
    946   1.8   thorpej 	 *	PREREAD -- Invalidate the D-cache.  We do this
    947   1.8   thorpej 	 *	here in case a write-back is required by the back-end.
    948   1.8   thorpej 	 *
    949   1.8   thorpej 	 *	PREWRITE -- Write-back the D-cache.  Note that if
    950   1.8   thorpej 	 *	we are doing a PREREAD|PREWRITE, we can collapse
    951   1.8   thorpej 	 *	the whole thing into a single Wb-Inv.
    952   1.8   thorpej 	 *
    953  1.67      matt 	 *	POSTREAD -- Re-invalidate the D-cache in case speculative
    954  1.67      matt 	 *	memory accesses caused cachelines to become valid with now
    955  1.67      matt 	 *	invalid data.
    956   1.8   thorpej 	 *
    957   1.8   thorpej 	 *	POSTWRITE -- Nothing.
    958   1.8   thorpej 	 */
    959  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    960  1.63      matt 	const bool bouncing = (map->_dm_flags & _BUS_DMA_IS_BOUNCING);
    961  1.63      matt #else
    962  1.63      matt 	const bool bouncing = false;
    963  1.58      matt #endif
    964   1.8   thorpej 
    965  1.58      matt 	const int pre_ops = ops & (BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    966  1.67      matt #ifdef CPU_CORTEX
    967  1.67      matt 	const int post_ops = ops & (BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
    968  1.67      matt #else
    969  1.67      matt 	const int post_ops = 0;
    970  1.67      matt #endif
    971  1.67      matt 	if (!bouncing && pre_ops == 0 && post_ops == BUS_DMASYNC_POSTWRITE) {
    972   1.8   thorpej 		return;
    973  1.61      matt 	}
    974  1.68      matt 	KASSERT(pre_ops != 0 || (post_ops & BUS_DMASYNC_POSTREAD));
    975  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
    976  1.58      matt 	if (bouncing && (ops & BUS_DMASYNC_PREWRITE)) {
    977  1.63      matt 		struct arm32_bus_dma_cookie * const cookie = map->_dm_cookie;
    978  1.58      matt 		STAT_INCR(write_bounces);
    979  1.58      matt 		char * const dataptr = (char *)cookie->id_bouncebuf + offset;
    980  1.58      matt 		/*
    981  1.58      matt 		 * Copy the caller's buffer to the bounce buffer.
    982  1.58      matt 		 */
    983  1.58      matt 		switch (map->_dm_buftype) {
    984  1.58      matt 		case _BUS_DMA_BUFTYPE_LINEAR:
    985  1.58      matt 			memcpy(dataptr, cookie->id_origlinearbuf + offset, len);
    986  1.58      matt 			break;
    987  1.58      matt 		case _BUS_DMA_BUFTYPE_MBUF:
    988  1.58      matt 			m_copydata(cookie->id_origmbuf, offset, len, dataptr);
    989  1.58      matt 			break;
    990  1.58      matt 		case _BUS_DMA_BUFTYPE_UIO:
    991  1.58      matt 			_bus_dma_uiomove(dataptr, cookie->id_origuio, len, UIO_WRITE);
    992  1.58      matt 			break;
    993  1.58      matt #ifdef DIAGNOSTIC
    994  1.58      matt 		case _BUS_DMA_BUFTYPE_RAW:
    995  1.58      matt 			panic("_bus_dmamap_sync(pre): _BUS_DMA_BUFTYPE_RAW");
    996  1.58      matt 			break;
    997  1.58      matt 
    998  1.58      matt 		case _BUS_DMA_BUFTYPE_INVALID:
    999  1.58      matt 			panic("_bus_dmamap_sync(pre): _BUS_DMA_BUFTYPE_INVALID");
   1000  1.58      matt 			break;
   1001  1.58      matt 
   1002  1.58      matt 		default:
   1003  1.58      matt 			panic("_bus_dmamap_sync(pre): map %p: unknown buffer type %d\n",
   1004  1.58      matt 			    map, map->_dm_buftype);
   1005  1.58      matt 			break;
   1006  1.58      matt #endif /* DIAGNOSTIC */
   1007  1.58      matt 		}
   1008  1.58      matt 	}
   1009  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
   1010  1.58      matt 
   1011  1.17   thorpej 	/* Skip cache frobbing if mapping was COHERENT. */
   1012  1.58      matt 	if (!bouncing && (map->_dm_flags & _BUS_DMAMAP_COHERENT)) {
   1013  1.17   thorpej 		/* Drain the write buffer. */
   1014  1.17   thorpej 		cpu_drain_writebuf();
   1015  1.17   thorpej 		return;
   1016  1.17   thorpej 	}
   1017   1.8   thorpej 
   1018  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
   1019  1.58      matt 	if (bouncing && ((map->_dm_flags & _BUS_DMAMAP_COHERENT) || pre_ops == 0)) {
   1020  1.58      matt 		goto bounce_it;
   1021  1.58      matt 	}
   1022  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
   1023  1.58      matt 
   1024   1.8   thorpej 	/*
   1025  1.38       scw 	 * If the mapping belongs to a non-kernel vmspace, and the
   1026  1.38       scw 	 * vmspace has not been active since the last time a full
   1027  1.38       scw 	 * cache flush was performed, we don't need to do anything.
   1028   1.8   thorpej 	 */
   1029  1.48      yamt 	if (__predict_false(!VMSPACE_IS_KERNEL_P(map->_dm_vmspace) &&
   1030  1.48      yamt 	    vm_map_pmap(&map->_dm_vmspace->vm_map)->pm_cstate.cs_cache_d == 0))
   1031   1.8   thorpej 		return;
   1032   1.8   thorpej 
   1033  1.58      matt 	int buftype = map->_dm_buftype;
   1034  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
   1035  1.58      matt 	if (bouncing) {
   1036  1.58      matt 		buftype = _BUS_DMA_BUFTYPE_LINEAR;
   1037  1.58      matt 	}
   1038  1.58      matt #endif
   1039  1.58      matt 
   1040  1.58      matt 	switch (buftype) {
   1041  1.58      matt 	case _BUS_DMA_BUFTYPE_LINEAR:
   1042  1.14   thorpej 		_bus_dmamap_sync_linear(t, map, offset, len, ops);
   1043  1.14   thorpej 		break;
   1044  1.14   thorpej 
   1045  1.58      matt 	case _BUS_DMA_BUFTYPE_MBUF:
   1046  1.14   thorpej 		_bus_dmamap_sync_mbuf(t, map, offset, len, ops);
   1047  1.14   thorpej 		break;
   1048  1.14   thorpej 
   1049  1.58      matt 	case _BUS_DMA_BUFTYPE_UIO:
   1050  1.14   thorpej 		_bus_dmamap_sync_uio(t, map, offset, len, ops);
   1051  1.14   thorpej 		break;
   1052  1.14   thorpej 
   1053  1.58      matt 	case _BUS_DMA_BUFTYPE_RAW:
   1054  1.58      matt 		panic("_bus_dmamap_sync: _BUS_DMA_BUFTYPE_RAW");
   1055  1.14   thorpej 		break;
   1056  1.14   thorpej 
   1057  1.58      matt 	case _BUS_DMA_BUFTYPE_INVALID:
   1058  1.58      matt 		panic("_bus_dmamap_sync: _BUS_DMA_BUFTYPE_INVALID");
   1059  1.14   thorpej 		break;
   1060  1.14   thorpej 
   1061  1.14   thorpej 	default:
   1062  1.58      matt 		panic("_bus_dmamap_sync: map %p: unknown buffer type %d\n",
   1063  1.58      matt 		    map, map->_dm_buftype);
   1064   1.8   thorpej 	}
   1065   1.1     chris 
   1066   1.8   thorpej 	/* Drain the write buffer. */
   1067   1.8   thorpej 	cpu_drain_writebuf();
   1068  1.58      matt 
   1069  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
   1070  1.58      matt   bounce_it:
   1071  1.58      matt 	if ((ops & BUS_DMASYNC_POSTREAD) == 0
   1072  1.63      matt 	    || (map->_dm_flags & _BUS_DMAMAP_IS_BOUNCING) == 0)
   1073  1.58      matt 		return;
   1074  1.58      matt 
   1075  1.63      matt 	struct arm32_bus_dma_cookie * const cookie = map->_dm_cookie;
   1076  1.58      matt 	char * const dataptr = (char *)cookie->id_bouncebuf + offset;
   1077  1.58      matt 	STAT_INCR(read_bounces);
   1078  1.58      matt 	/*
   1079  1.58      matt 	 * Copy the bounce buffer to the caller's buffer.
   1080  1.58      matt 	 */
   1081  1.58      matt 	switch (map->_dm_buftype) {
   1082  1.58      matt 	case _BUS_DMA_BUFTYPE_LINEAR:
   1083  1.58      matt 		memcpy(cookie->id_origlinearbuf + offset, dataptr, len);
   1084  1.58      matt 		break;
   1085  1.58      matt 
   1086  1.58      matt 	case _BUS_DMA_BUFTYPE_MBUF:
   1087  1.58      matt 		m_copyback(cookie->id_origmbuf, offset, len, dataptr);
   1088  1.58      matt 		break;
   1089  1.58      matt 
   1090  1.58      matt 	case _BUS_DMA_BUFTYPE_UIO:
   1091  1.58      matt 		_bus_dma_uiomove(dataptr, cookie->id_origuio, len, UIO_READ);
   1092  1.58      matt 		break;
   1093  1.58      matt #ifdef DIAGNOSTIC
   1094  1.58      matt 	case _BUS_DMA_BUFTYPE_RAW:
   1095  1.58      matt 		panic("_bus_dmamap_sync(post): _BUS_DMA_BUFTYPE_RAW");
   1096  1.58      matt 		break;
   1097  1.58      matt 
   1098  1.58      matt 	case _BUS_DMA_BUFTYPE_INVALID:
   1099  1.58      matt 		panic("_bus_dmamap_sync(post): _BUS_DMA_BUFTYPE_INVALID");
   1100  1.58      matt 		break;
   1101  1.58      matt 
   1102  1.58      matt 	default:
   1103  1.58      matt 		panic("_bus_dmamap_sync(post): map %p: unknown buffer type %d\n",
   1104  1.58      matt 		    map, map->_dm_buftype);
   1105  1.58      matt 		break;
   1106  1.58      matt #endif
   1107  1.58      matt 	}
   1108  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
   1109   1.1     chris }
   1110   1.1     chris 
   1111   1.1     chris /*
   1112   1.1     chris  * Common function for DMA-safe memory allocation.  May be called
   1113   1.1     chris  * by bus-specific DMA memory allocation functions.
   1114   1.1     chris  */
   1115   1.1     chris 
   1116  1.11   thorpej extern paddr_t physical_start;
   1117  1.11   thorpej extern paddr_t physical_end;
   1118   1.1     chris 
   1119   1.1     chris int
   1120   1.7   thorpej _bus_dmamem_alloc(bus_dma_tag_t t, bus_size_t size, bus_size_t alignment,
   1121   1.7   thorpej     bus_size_t boundary, bus_dma_segment_t *segs, int nsegs, int *rsegs,
   1122   1.7   thorpej     int flags)
   1123   1.1     chris {
   1124  1.15   thorpej 	struct arm32_dma_range *dr;
   1125  1.37   mycroft 	int error, i;
   1126  1.15   thorpej 
   1127   1.1     chris #ifdef DEBUG_DMA
   1128  1.15   thorpej 	printf("dmamem_alloc t=%p size=%lx align=%lx boundary=%lx "
   1129  1.15   thorpej 	    "segs=%p nsegs=%x rsegs=%p flags=%x\n", t, size, alignment,
   1130  1.15   thorpej 	    boundary, segs, nsegs, rsegs, flags);
   1131  1.15   thorpej #endif
   1132  1.15   thorpej 
   1133  1.15   thorpej 	if ((dr = t->_ranges) != NULL) {
   1134  1.37   mycroft 		error = ENOMEM;
   1135  1.15   thorpej 		for (i = 0; i < t->_nranges; i++, dr++) {
   1136  1.70      matt 			if (dr->dr_len == 0
   1137  1.70      matt 			    || (dr->dr_flags & _BUS_DMAMAP_NOALLOC))
   1138  1.15   thorpej 				continue;
   1139  1.15   thorpej 			error = _bus_dmamem_alloc_range(t, size, alignment,
   1140  1.15   thorpej 			    boundary, segs, nsegs, rsegs, flags,
   1141  1.15   thorpej 			    trunc_page(dr->dr_sysbase),
   1142  1.15   thorpej 			    trunc_page(dr->dr_sysbase + dr->dr_len));
   1143  1.15   thorpej 			if (error == 0)
   1144  1.15   thorpej 				break;
   1145  1.15   thorpej 		}
   1146  1.15   thorpej 	} else {
   1147  1.15   thorpej 		error = _bus_dmamem_alloc_range(t, size, alignment, boundary,
   1148  1.15   thorpej 		    segs, nsegs, rsegs, flags, trunc_page(physical_start),
   1149  1.15   thorpej 		    trunc_page(physical_end));
   1150  1.15   thorpej 	}
   1151  1.15   thorpej 
   1152   1.1     chris #ifdef DEBUG_DMA
   1153   1.1     chris 	printf("dmamem_alloc: =%d\n", error);
   1154  1.15   thorpej #endif
   1155  1.15   thorpej 
   1156   1.1     chris 	return(error);
   1157   1.1     chris }
   1158   1.1     chris 
   1159   1.1     chris /*
   1160   1.1     chris  * Common function for freeing DMA-safe memory.  May be called by
   1161   1.1     chris  * bus-specific DMA memory free functions.
   1162   1.1     chris  */
   1163   1.1     chris void
   1164   1.7   thorpej _bus_dmamem_free(bus_dma_tag_t t, bus_dma_segment_t *segs, int nsegs)
   1165   1.1     chris {
   1166   1.1     chris 	struct vm_page *m;
   1167   1.1     chris 	bus_addr_t addr;
   1168   1.1     chris 	struct pglist mlist;
   1169   1.1     chris 	int curseg;
   1170   1.1     chris 
   1171   1.1     chris #ifdef DEBUG_DMA
   1172   1.1     chris 	printf("dmamem_free: t=%p segs=%p nsegs=%x\n", t, segs, nsegs);
   1173   1.1     chris #endif	/* DEBUG_DMA */
   1174   1.1     chris 
   1175   1.1     chris 	/*
   1176   1.1     chris 	 * Build a list of pages to free back to the VM system.
   1177   1.1     chris 	 */
   1178   1.1     chris 	TAILQ_INIT(&mlist);
   1179   1.1     chris 	for (curseg = 0; curseg < nsegs; curseg++) {
   1180   1.1     chris 		for (addr = segs[curseg].ds_addr;
   1181   1.1     chris 		    addr < (segs[curseg].ds_addr + segs[curseg].ds_len);
   1182   1.1     chris 		    addr += PAGE_SIZE) {
   1183   1.1     chris 			m = PHYS_TO_VM_PAGE(addr);
   1184  1.52        ad 			TAILQ_INSERT_TAIL(&mlist, m, pageq.queue);
   1185   1.1     chris 		}
   1186   1.1     chris 	}
   1187   1.1     chris 	uvm_pglistfree(&mlist);
   1188   1.1     chris }
   1189   1.1     chris 
   1190   1.1     chris /*
   1191   1.1     chris  * Common function for mapping DMA-safe memory.  May be called by
   1192   1.1     chris  * bus-specific DMA memory map functions.
   1193   1.1     chris  */
   1194   1.1     chris int
   1195   1.7   thorpej _bus_dmamem_map(bus_dma_tag_t t, bus_dma_segment_t *segs, int nsegs,
   1196  1.50  christos     size_t size, void **kvap, int flags)
   1197   1.1     chris {
   1198  1.11   thorpej 	vaddr_t va;
   1199  1.57      matt 	paddr_t pa;
   1200   1.1     chris 	int curseg;
   1201  1.65      matt 	pt_entry_t *ptep;
   1202  1.65      matt 	const uvm_flag_t kmflags = UVM_KMF_VAONLY
   1203  1.65      matt 	    | ((flags & BUS_DMA_NOWAIT) != 0 ? UVM_KMF_NOWAIT : 0);
   1204  1.65      matt 	vsize_t align = 0;
   1205   1.1     chris 
   1206   1.1     chris #ifdef DEBUG_DMA
   1207   1.3  rearnsha 	printf("dmamem_map: t=%p segs=%p nsegs=%x size=%lx flags=%x\n", t,
   1208   1.3  rearnsha 	    segs, nsegs, (unsigned long)size, flags);
   1209   1.1     chris #endif	/* DEBUG_DMA */
   1210   1.1     chris 
   1211  1.62      matt #ifdef PMAP_MAP_POOLPAGE
   1212  1.62      matt 	/*
   1213  1.62      matt 	 * If all of memory is mapped, and we are mapping a single physically
   1214  1.62      matt 	 * contiguous area then this area is already mapped.  Let's see if we
   1215  1.62      matt 	 * avoid having a separate mapping for it.
   1216  1.62      matt 	 */
   1217  1.62      matt 	if (nsegs == 1) {
   1218  1.62      matt 		/*
   1219  1.62      matt 		 * If this is a non-COHERENT mapping, then the existing kernel
   1220  1.62      matt 		 * mapping is already compatible with it.
   1221  1.62      matt 		 */
   1222  1.68      matt 		bool direct_mapable = (flags & BUS_DMA_COHERENT) == 0;
   1223  1.68      matt 		pa = segs[0].ds_addr;
   1224  1.68      matt 
   1225  1.62      matt 		/*
   1226  1.68      matt 		 * This is a COHERENT mapping which, unless this address is in
   1227  1.62      matt 		 * a COHERENT dma range, will not be compatible.
   1228  1.62      matt 		 */
   1229  1.62      matt 		if (t->_ranges != NULL) {
   1230  1.62      matt 			const struct arm32_dma_range * const dr =
   1231  1.68      matt 			    _bus_dma_paddr_inrange(t->_ranges, t->_nranges, pa);
   1232  1.71      matt 			if (dr != NULL
   1233  1.71      matt 			    && (dr->dr_flags & _BUS_DMAMAP_COHERENT)) {
   1234  1.71      matt 				direct_mapable = true;
   1235  1.68      matt 			}
   1236  1.68      matt 		}
   1237  1.68      matt 
   1238  1.68      matt 		if (direct_mapable) {
   1239  1.68      matt 			*kvap = (void *)PMAP_MAP_POOLPAGE(pa);
   1240  1.64      matt #ifdef DEBUG_DMA
   1241  1.68      matt 			printf("dmamem_map: =%p\n", *kvap);
   1242  1.64      matt #endif	/* DEBUG_DMA */
   1243  1.68      matt 			return 0;
   1244  1.62      matt 		}
   1245  1.62      matt 	}
   1246  1.62      matt #endif
   1247  1.62      matt 
   1248   1.1     chris 	size = round_page(size);
   1249  1.65      matt 	if (__predict_true(size > L2_L_SIZE)) {
   1250  1.65      matt #if (ARM_MMU_V6 + ARM_MMU_V7) > 0
   1251  1.65      matt 		if (size >= L1_SS_SIZE)
   1252  1.65      matt 			align = L1_SS_SIZE;
   1253  1.65      matt 		else
   1254  1.65      matt #endif
   1255  1.65      matt 		if (size >= L1_S_SIZE)
   1256  1.65      matt 			align = L1_S_SIZE;
   1257  1.65      matt 		else
   1258  1.65      matt 			align = L2_S_SIZE;
   1259  1.65      matt 	}
   1260  1.65      matt 
   1261  1.65      matt 	va = uvm_km_alloc(kernel_map, size, align, kmflags);
   1262  1.65      matt 	if (__predict_false(va == 0 && align > 0)) {
   1263  1.65      matt 		align = 0;
   1264  1.65      matt 		va = uvm_km_alloc(kernel_map, size, 0, kmflags);
   1265  1.65      matt 	}
   1266   1.1     chris 
   1267   1.1     chris 	if (va == 0)
   1268   1.1     chris 		return (ENOMEM);
   1269   1.1     chris 
   1270  1.50  christos 	*kvap = (void *)va;
   1271   1.1     chris 
   1272   1.1     chris 	for (curseg = 0; curseg < nsegs; curseg++) {
   1273  1.57      matt 		for (pa = segs[curseg].ds_addr;
   1274  1.57      matt 		    pa < (segs[curseg].ds_addr + segs[curseg].ds_len);
   1275  1.57      matt 		    pa += PAGE_SIZE, va += PAGE_SIZE, size -= PAGE_SIZE) {
   1276  1.68      matt 			bool uncached = (flags & BUS_DMA_COHERENT);
   1277   1.1     chris #ifdef DEBUG_DMA
   1278  1.57      matt 			printf("wiring p%lx to v%lx", pa, va);
   1279   1.1     chris #endif	/* DEBUG_DMA */
   1280   1.1     chris 			if (size == 0)
   1281   1.1     chris 				panic("_bus_dmamem_map: size botch");
   1282  1.68      matt 
   1283  1.68      matt 			const struct arm32_dma_range * const dr =
   1284  1.68      matt 			    _bus_dma_paddr_inrange(t->_ranges, t->_nranges, pa);
   1285  1.68      matt 			/*
   1286  1.68      matt 			 * If this dma region is coherent then there is
   1287  1.68      matt 			 * no need for an uncached mapping.
   1288  1.68      matt 			 */
   1289  1.71      matt 			if (dr != NULL
   1290  1.71      matt 			    && (dr->dr_flags & _BUS_DMAMAP_COHERENT)) {
   1291  1.71      matt 				uncached = false;
   1292  1.68      matt 			}
   1293  1.71      matt 
   1294  1.65      matt 			pmap_kenter_pa(va, pa,
   1295  1.65      matt 			    VM_PROT_READ | VM_PROT_WRITE, PMAP_WIRED);
   1296  1.57      matt 
   1297   1.1     chris 			/*
   1298   1.1     chris 			 * If the memory must remain coherent with the
   1299   1.1     chris 			 * cache then we must make the memory uncacheable
   1300   1.1     chris 			 * in order to maintain virtual cache coherency.
   1301  1.24       wiz 			 * We must also guarantee the cache does not already
   1302   1.1     chris 			 * contain the virtal addresses we are making
   1303   1.1     chris 			 * uncacheable.
   1304   1.1     chris 			 */
   1305  1.62      matt 			if (uncached) {
   1306  1.27   thorpej 				cpu_dcache_wbinv_range(va, PAGE_SIZE);
   1307  1.57      matt 				cpu_sdcache_wbinv_range(va, pa, PAGE_SIZE);
   1308   1.1     chris 				cpu_drain_writebuf();
   1309   1.1     chris 				ptep = vtopte(va);
   1310  1.17   thorpej 				*ptep &= ~L2_S_CACHE_MASK;
   1311  1.21   thorpej 				PTE_SYNC(ptep);
   1312   1.1     chris 				tlb_flush();
   1313   1.1     chris 			}
   1314   1.1     chris #ifdef DEBUG_DMA
   1315   1.1     chris 			ptep = vtopte(va);
   1316   1.1     chris 			printf(" pte=v%p *pte=%x\n", ptep, *ptep);
   1317   1.1     chris #endif	/* DEBUG_DMA */
   1318   1.1     chris 		}
   1319   1.1     chris 	}
   1320   1.2     chris 	pmap_update(pmap_kernel());
   1321   1.1     chris #ifdef DEBUG_DMA
   1322   1.1     chris 	printf("dmamem_map: =%p\n", *kvap);
   1323   1.1     chris #endif	/* DEBUG_DMA */
   1324   1.1     chris 	return (0);
   1325   1.1     chris }
   1326   1.1     chris 
   1327   1.1     chris /*
   1328   1.1     chris  * Common function for unmapping DMA-safe memory.  May be called by
   1329   1.1     chris  * bus-specific DMA memory unmapping functions.
   1330   1.1     chris  */
   1331   1.1     chris void
   1332  1.50  christos _bus_dmamem_unmap(bus_dma_tag_t t, void *kva, size_t size)
   1333   1.1     chris {
   1334   1.1     chris 
   1335   1.1     chris #ifdef DEBUG_DMA
   1336  1.65      matt 	printf("dmamem_unmap: t=%p kva=%p size=%zx\n", t, kva, size);
   1337   1.1     chris #endif	/* DEBUG_DMA */
   1338   1.1     chris #ifdef DIAGNOSTIC
   1339   1.1     chris 	if ((u_long)kva & PGOFSET)
   1340   1.1     chris 		panic("_bus_dmamem_unmap");
   1341   1.1     chris #endif	/* DIAGNOSTIC */
   1342   1.1     chris 
   1343   1.1     chris 	size = round_page(size);
   1344  1.65      matt 	pmap_kremove((vaddr_t)kva, size);
   1345  1.44      yamt 	pmap_update(pmap_kernel());
   1346  1.44      yamt 	uvm_km_free(kernel_map, (vaddr_t)kva, size, UVM_KMF_VAONLY);
   1347   1.1     chris }
   1348   1.1     chris 
   1349   1.1     chris /*
   1350   1.1     chris  * Common functin for mmap(2)'ing DMA-safe memory.  May be called by
   1351   1.1     chris  * bus-specific DMA mmap(2)'ing functions.
   1352   1.1     chris  */
   1353   1.1     chris paddr_t
   1354   1.7   thorpej _bus_dmamem_mmap(bus_dma_tag_t t, bus_dma_segment_t *segs, int nsegs,
   1355   1.7   thorpej     off_t off, int prot, int flags)
   1356   1.1     chris {
   1357  1.73  macallan 	paddr_t map_flags;
   1358   1.1     chris 	int i;
   1359   1.1     chris 
   1360   1.1     chris 	for (i = 0; i < nsegs; i++) {
   1361   1.1     chris #ifdef DIAGNOSTIC
   1362   1.1     chris 		if (off & PGOFSET)
   1363   1.1     chris 			panic("_bus_dmamem_mmap: offset unaligned");
   1364   1.1     chris 		if (segs[i].ds_addr & PGOFSET)
   1365   1.1     chris 			panic("_bus_dmamem_mmap: segment unaligned");
   1366   1.1     chris 		if (segs[i].ds_len & PGOFSET)
   1367   1.1     chris 			panic("_bus_dmamem_mmap: segment size not multiple"
   1368   1.1     chris 			    " of page size");
   1369   1.1     chris #endif	/* DIAGNOSTIC */
   1370   1.1     chris 		if (off >= segs[i].ds_len) {
   1371   1.1     chris 			off -= segs[i].ds_len;
   1372   1.1     chris 			continue;
   1373   1.1     chris 		}
   1374   1.1     chris 
   1375  1.73  macallan 		map_flags = 0;
   1376  1.73  macallan 		if (flags & BUS_DMA_PREFETCHABLE)
   1377  1.73  macallan 			map_flags |= ARM32_MMAP_WRITECOMBINE;
   1378  1.73  macallan 
   1379  1.73  macallan 		return (arm_btop((u_long)segs[i].ds_addr + off) | map_flags);
   1380  1.73  macallan 
   1381   1.1     chris 	}
   1382   1.1     chris 
   1383   1.1     chris 	/* Page not found. */
   1384   1.1     chris 	return (-1);
   1385   1.1     chris }
   1386   1.1     chris 
   1387   1.1     chris /**********************************************************************
   1388   1.1     chris  * DMA utility functions
   1389   1.1     chris  **********************************************************************/
   1390   1.1     chris 
   1391   1.1     chris /*
   1392   1.1     chris  * Utility function to load a linear buffer.  lastaddrp holds state
   1393   1.1     chris  * between invocations (for multiple-buffer loads).  segp contains
   1394   1.1     chris  * the starting segment on entrace, and the ending segment on exit.
   1395   1.1     chris  * first indicates if this is the first invocation of this function.
   1396   1.1     chris  */
   1397   1.1     chris int
   1398   1.7   thorpej _bus_dmamap_load_buffer(bus_dma_tag_t t, bus_dmamap_t map, void *buf,
   1399  1.48      yamt     bus_size_t buflen, struct vmspace *vm, int flags)
   1400   1.1     chris {
   1401   1.1     chris 	bus_size_t sgsize;
   1402  1.41   thorpej 	bus_addr_t curaddr;
   1403  1.11   thorpej 	vaddr_t vaddr = (vaddr_t)buf;
   1404  1.41   thorpej 	int error;
   1405   1.1     chris 	pmap_t pmap;
   1406   1.1     chris 
   1407   1.1     chris #ifdef DEBUG_DMA
   1408  1.40       scw 	printf("_bus_dmamem_load_buffer(buf=%p, len=%lx, flags=%d)\n",
   1409  1.40       scw 	    buf, buflen, flags);
   1410   1.1     chris #endif	/* DEBUG_DMA */
   1411   1.1     chris 
   1412  1.48      yamt 	pmap = vm_map_pmap(&vm->vm_map);
   1413   1.1     chris 
   1414  1.41   thorpej 	while (buflen > 0) {
   1415   1.1     chris 		/*
   1416   1.1     chris 		 * Get the physical address for this segment.
   1417  1.17   thorpej 		 *
   1418  1.55      matt 		 * XXX Doesn't support checking for coherent mappings
   1419  1.17   thorpej 		 * XXX in user address space.
   1420   1.1     chris 		 */
   1421  1.61      matt 		bool coherent;
   1422  1.17   thorpej 		if (__predict_true(pmap == pmap_kernel())) {
   1423  1.61      matt 			pd_entry_t *pde;
   1424  1.61      matt 			pt_entry_t *ptep;
   1425  1.29       scw 			(void) pmap_get_pde_pte(pmap, vaddr, &pde, &ptep);
   1426  1.17   thorpej 			if (__predict_false(pmap_pde_section(pde))) {
   1427  1.55      matt 				paddr_t s_frame = L1_S_FRAME;
   1428  1.55      matt 				paddr_t s_offset = L1_S_OFFSET;
   1429  1.56      matt #if (ARM_MMU_V6 + ARM_MMU_V7) > 0
   1430  1.55      matt 				if (__predict_false(pmap_pde_supersection(pde))) {
   1431  1.55      matt 					s_frame = L1_SS_FRAME;
   1432  1.60      matt 					s_offset = L1_SS_OFFSET;
   1433  1.60      matt 				}
   1434  1.55      matt #endif
   1435  1.55      matt 				curaddr = (*pde & s_frame) | (vaddr & s_offset);
   1436  1.66     skrll 				coherent = (*pde & L1_S_CACHE_MASK) == 0;
   1437  1.17   thorpej 			} else {
   1438  1.61      matt 				pt_entry_t pte = *ptep;
   1439  1.65      matt 				KDASSERTMSG((pte & L2_TYPE_MASK) != L2_TYPE_INV,
   1440  1.65      matt 				    "va=%#"PRIxVADDR" pde=%#x ptep=%p pte=%#x",
   1441  1.65      matt 				    vaddr, *pde, ptep, pte);
   1442  1.17   thorpej 				if (__predict_false((pte & L2_TYPE_MASK)
   1443  1.17   thorpej 						    == L2_TYPE_L)) {
   1444  1.17   thorpej 					curaddr = (pte & L2_L_FRAME) |
   1445  1.17   thorpej 					    (vaddr & L2_L_OFFSET);
   1446  1.66     skrll 					coherent = (pte & L2_L_CACHE_MASK) == 0;
   1447  1.17   thorpej 				} else {
   1448  1.17   thorpej 					curaddr = (pte & L2_S_FRAME) |
   1449  1.17   thorpej 					    (vaddr & L2_S_OFFSET);
   1450  1.66     skrll 					coherent = (pte & L2_S_CACHE_MASK) == 0;
   1451  1.17   thorpej 				}
   1452  1.17   thorpej 			}
   1453  1.34    briggs 		} else {
   1454  1.17   thorpej 			(void) pmap_extract(pmap, vaddr, &curaddr);
   1455  1.61      matt 			coherent = false;
   1456  1.34    briggs 		}
   1457   1.1     chris 
   1458   1.1     chris 		/*
   1459   1.1     chris 		 * Compute the segment size, and adjust counts.
   1460   1.1     chris 		 */
   1461  1.27   thorpej 		sgsize = PAGE_SIZE - ((u_long)vaddr & PGOFSET);
   1462   1.1     chris 		if (buflen < sgsize)
   1463   1.1     chris 			sgsize = buflen;
   1464   1.1     chris 
   1465  1.61      matt 		error = _bus_dmamap_load_paddr(t, map, curaddr, sgsize,
   1466  1.61      matt 		    coherent);
   1467  1.41   thorpej 		if (error)
   1468  1.41   thorpej 			return (error);
   1469   1.1     chris 
   1470   1.1     chris 		vaddr += sgsize;
   1471   1.1     chris 		buflen -= sgsize;
   1472   1.1     chris 	}
   1473   1.1     chris 
   1474   1.1     chris 	return (0);
   1475   1.1     chris }
   1476   1.1     chris 
   1477   1.1     chris /*
   1478   1.1     chris  * Allocate physical memory from the given physical address range.
   1479   1.1     chris  * Called by DMA-safe memory allocation methods.
   1480   1.1     chris  */
   1481   1.1     chris int
   1482   1.7   thorpej _bus_dmamem_alloc_range(bus_dma_tag_t t, bus_size_t size, bus_size_t alignment,
   1483   1.7   thorpej     bus_size_t boundary, bus_dma_segment_t *segs, int nsegs, int *rsegs,
   1484  1.11   thorpej     int flags, paddr_t low, paddr_t high)
   1485   1.1     chris {
   1486  1.11   thorpej 	paddr_t curaddr, lastaddr;
   1487   1.1     chris 	struct vm_page *m;
   1488   1.1     chris 	struct pglist mlist;
   1489   1.1     chris 	int curseg, error;
   1490   1.1     chris 
   1491   1.1     chris #ifdef DEBUG_DMA
   1492   1.1     chris 	printf("alloc_range: t=%p size=%lx align=%lx boundary=%lx segs=%p nsegs=%x rsegs=%p flags=%x lo=%lx hi=%lx\n",
   1493   1.1     chris 	    t, size, alignment, boundary, segs, nsegs, rsegs, flags, low, high);
   1494   1.1     chris #endif	/* DEBUG_DMA */
   1495   1.1     chris 
   1496   1.1     chris 	/* Always round the size. */
   1497   1.1     chris 	size = round_page(size);
   1498   1.1     chris 
   1499   1.1     chris 	/*
   1500   1.1     chris 	 * Allocate pages from the VM system.
   1501   1.1     chris 	 */
   1502   1.1     chris 	error = uvm_pglistalloc(size, low, high, alignment, boundary,
   1503   1.1     chris 	    &mlist, nsegs, (flags & BUS_DMA_NOWAIT) == 0);
   1504   1.1     chris 	if (error)
   1505   1.1     chris 		return (error);
   1506   1.1     chris 
   1507   1.1     chris 	/*
   1508   1.1     chris 	 * Compute the location, size, and number of segments actually
   1509   1.1     chris 	 * returned by the VM code.
   1510   1.1     chris 	 */
   1511  1.42     chris 	m = TAILQ_FIRST(&mlist);
   1512   1.1     chris 	curseg = 0;
   1513   1.1     chris 	lastaddr = segs[curseg].ds_addr = VM_PAGE_TO_PHYS(m);
   1514   1.1     chris 	segs[curseg].ds_len = PAGE_SIZE;
   1515   1.1     chris #ifdef DEBUG_DMA
   1516   1.1     chris 		printf("alloc: page %lx\n", lastaddr);
   1517   1.1     chris #endif	/* DEBUG_DMA */
   1518  1.52        ad 	m = TAILQ_NEXT(m, pageq.queue);
   1519   1.1     chris 
   1520  1.52        ad 	for (; m != NULL; m = TAILQ_NEXT(m, pageq.queue)) {
   1521   1.1     chris 		curaddr = VM_PAGE_TO_PHYS(m);
   1522   1.1     chris #ifdef DIAGNOSTIC
   1523   1.1     chris 		if (curaddr < low || curaddr >= high) {
   1524   1.1     chris 			printf("uvm_pglistalloc returned non-sensical"
   1525   1.1     chris 			    " address 0x%lx\n", curaddr);
   1526   1.1     chris 			panic("_bus_dmamem_alloc_range");
   1527   1.1     chris 		}
   1528   1.1     chris #endif	/* DIAGNOSTIC */
   1529   1.1     chris #ifdef DEBUG_DMA
   1530   1.1     chris 		printf("alloc: page %lx\n", curaddr);
   1531   1.1     chris #endif	/* DEBUG_DMA */
   1532   1.1     chris 		if (curaddr == (lastaddr + PAGE_SIZE))
   1533   1.1     chris 			segs[curseg].ds_len += PAGE_SIZE;
   1534   1.1     chris 		else {
   1535   1.1     chris 			curseg++;
   1536   1.1     chris 			segs[curseg].ds_addr = curaddr;
   1537   1.1     chris 			segs[curseg].ds_len = PAGE_SIZE;
   1538   1.1     chris 		}
   1539   1.1     chris 		lastaddr = curaddr;
   1540   1.1     chris 	}
   1541   1.1     chris 
   1542   1.1     chris 	*rsegs = curseg + 1;
   1543   1.1     chris 
   1544  1.15   thorpej 	return (0);
   1545  1.15   thorpej }
   1546  1.15   thorpej 
   1547  1.15   thorpej /*
   1548  1.15   thorpej  * Check if a memory region intersects with a DMA range, and return the
   1549  1.15   thorpej  * page-rounded intersection if it does.
   1550  1.15   thorpej  */
   1551  1.15   thorpej int
   1552  1.15   thorpej arm32_dma_range_intersect(struct arm32_dma_range *ranges, int nranges,
   1553  1.15   thorpej     paddr_t pa, psize_t size, paddr_t *pap, psize_t *sizep)
   1554  1.15   thorpej {
   1555  1.15   thorpej 	struct arm32_dma_range *dr;
   1556  1.15   thorpej 	int i;
   1557  1.15   thorpej 
   1558  1.15   thorpej 	if (ranges == NULL)
   1559  1.15   thorpej 		return (0);
   1560  1.15   thorpej 
   1561  1.15   thorpej 	for (i = 0, dr = ranges; i < nranges; i++, dr++) {
   1562  1.15   thorpej 		if (dr->dr_sysbase <= pa &&
   1563  1.15   thorpej 		    pa < (dr->dr_sysbase + dr->dr_len)) {
   1564  1.15   thorpej 			/*
   1565  1.15   thorpej 			 * Beginning of region intersects with this range.
   1566  1.15   thorpej 			 */
   1567  1.15   thorpej 			*pap = trunc_page(pa);
   1568  1.15   thorpej 			*sizep = round_page(min(pa + size,
   1569  1.15   thorpej 			    dr->dr_sysbase + dr->dr_len) - pa);
   1570  1.15   thorpej 			return (1);
   1571  1.15   thorpej 		}
   1572  1.15   thorpej 		if (pa < dr->dr_sysbase && dr->dr_sysbase < (pa + size)) {
   1573  1.15   thorpej 			/*
   1574  1.15   thorpej 			 * End of region intersects with this range.
   1575  1.15   thorpej 			 */
   1576  1.15   thorpej 			*pap = trunc_page(dr->dr_sysbase);
   1577  1.15   thorpej 			*sizep = round_page(min((pa + size) - dr->dr_sysbase,
   1578  1.15   thorpej 			    dr->dr_len));
   1579  1.15   thorpej 			return (1);
   1580  1.15   thorpej 		}
   1581  1.15   thorpej 	}
   1582  1.15   thorpej 
   1583  1.15   thorpej 	/* No intersection found. */
   1584   1.1     chris 	return (0);
   1585   1.1     chris }
   1586  1.58      matt 
   1587  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
   1588  1.58      matt static int
   1589  1.58      matt _bus_dma_alloc_bouncebuf(bus_dma_tag_t t, bus_dmamap_t map,
   1590  1.58      matt     bus_size_t size, int flags)
   1591  1.58      matt {
   1592  1.58      matt 	struct arm32_bus_dma_cookie *cookie = map->_dm_cookie;
   1593  1.58      matt 	int error = 0;
   1594  1.58      matt 
   1595  1.58      matt #ifdef DIAGNOSTIC
   1596  1.58      matt 	if (cookie == NULL)
   1597  1.58      matt 		panic("_bus_dma_alloc_bouncebuf: no cookie");
   1598  1.58      matt #endif
   1599  1.58      matt 
   1600  1.58      matt 	cookie->id_bouncebuflen = round_page(size);
   1601  1.58      matt 	error = _bus_dmamem_alloc(t, cookie->id_bouncebuflen,
   1602  1.58      matt 	    PAGE_SIZE, map->_dm_boundary, cookie->id_bouncesegs,
   1603  1.58      matt 	    map->_dm_segcnt, &cookie->id_nbouncesegs, flags);
   1604  1.58      matt 	if (error)
   1605  1.58      matt 		goto out;
   1606  1.58      matt 	error = _bus_dmamem_map(t, cookie->id_bouncesegs,
   1607  1.58      matt 	    cookie->id_nbouncesegs, cookie->id_bouncebuflen,
   1608  1.58      matt 	    (void **)&cookie->id_bouncebuf, flags);
   1609  1.58      matt 
   1610  1.58      matt  out:
   1611  1.58      matt 	if (error) {
   1612  1.58      matt 		_bus_dmamem_free(t, cookie->id_bouncesegs,
   1613  1.58      matt 		    cookie->id_nbouncesegs);
   1614  1.58      matt 		cookie->id_bouncebuflen = 0;
   1615  1.58      matt 		cookie->id_nbouncesegs = 0;
   1616  1.58      matt 	} else {
   1617  1.58      matt 		cookie->id_flags |= _BUS_DMA_HAS_BOUNCE;
   1618  1.58      matt 	}
   1619  1.58      matt 
   1620  1.58      matt 	return (error);
   1621  1.58      matt }
   1622  1.58      matt 
   1623  1.58      matt static void
   1624  1.58      matt _bus_dma_free_bouncebuf(bus_dma_tag_t t, bus_dmamap_t map)
   1625  1.58      matt {
   1626  1.58      matt 	struct arm32_bus_dma_cookie *cookie = map->_dm_cookie;
   1627  1.58      matt 
   1628  1.58      matt #ifdef DIAGNOSTIC
   1629  1.58      matt 	if (cookie == NULL)
   1630  1.58      matt 		panic("_bus_dma_alloc_bouncebuf: no cookie");
   1631  1.58      matt #endif
   1632  1.58      matt 
   1633  1.58      matt 	_bus_dmamem_unmap(t, cookie->id_bouncebuf, cookie->id_bouncebuflen);
   1634  1.58      matt 	_bus_dmamem_free(t, cookie->id_bouncesegs,
   1635  1.58      matt 	    cookie->id_nbouncesegs);
   1636  1.58      matt 	cookie->id_bouncebuflen = 0;
   1637  1.58      matt 	cookie->id_nbouncesegs = 0;
   1638  1.58      matt 	cookie->id_flags &= ~_BUS_DMA_HAS_BOUNCE;
   1639  1.58      matt }
   1640  1.58      matt 
   1641  1.58      matt /*
   1642  1.58      matt  * This function does the same as uiomove, but takes an explicit
   1643  1.58      matt  * direction, and does not update the uio structure.
   1644  1.58      matt  */
   1645  1.58      matt static int
   1646  1.58      matt _bus_dma_uiomove(void *buf, struct uio *uio, size_t n, int direction)
   1647  1.58      matt {
   1648  1.58      matt 	struct iovec *iov;
   1649  1.58      matt 	int error;
   1650  1.58      matt 	struct vmspace *vm;
   1651  1.58      matt 	char *cp;
   1652  1.58      matt 	size_t resid, cnt;
   1653  1.58      matt 	int i;
   1654  1.58      matt 
   1655  1.58      matt 	iov = uio->uio_iov;
   1656  1.58      matt 	vm = uio->uio_vmspace;
   1657  1.58      matt 	cp = buf;
   1658  1.58      matt 	resid = n;
   1659  1.58      matt 
   1660  1.58      matt 	for (i = 0; i < uio->uio_iovcnt && resid > 0; i++) {
   1661  1.58      matt 		iov = &uio->uio_iov[i];
   1662  1.58      matt 		if (iov->iov_len == 0)
   1663  1.58      matt 			continue;
   1664  1.58      matt 		cnt = MIN(resid, iov->iov_len);
   1665  1.58      matt 
   1666  1.58      matt 		if (!VMSPACE_IS_KERNEL_P(vm) &&
   1667  1.58      matt 		    (curlwp->l_cpu->ci_schedstate.spc_flags & SPCF_SHOULDYIELD)
   1668  1.58      matt 		    != 0) {
   1669  1.58      matt 			preempt();
   1670  1.58      matt 		}
   1671  1.58      matt 		if (direction == UIO_READ) {
   1672  1.58      matt 			error = copyout_vmspace(vm, cp, iov->iov_base, cnt);
   1673  1.58      matt 		} else {
   1674  1.58      matt 			error = copyin_vmspace(vm, iov->iov_base, cp, cnt);
   1675  1.58      matt 		}
   1676  1.58      matt 		if (error)
   1677  1.58      matt 			return (error);
   1678  1.58      matt 		cp += cnt;
   1679  1.58      matt 		resid -= cnt;
   1680  1.58      matt 	}
   1681  1.58      matt 	return (0);
   1682  1.58      matt }
   1683  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
   1684  1.58      matt 
   1685  1.58      matt int
   1686  1.58      matt _bus_dmatag_subregion(bus_dma_tag_t tag, bus_addr_t min_addr,
   1687  1.58      matt     bus_addr_t max_addr, bus_dma_tag_t *newtag, int flags)
   1688  1.58      matt {
   1689  1.58      matt 
   1690  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
   1691  1.58      matt 	struct arm32_dma_range *dr;
   1692  1.58      matt 	bool subset = false;
   1693  1.58      matt 	size_t nranges = 0;
   1694  1.58      matt 	size_t i;
   1695  1.58      matt 	for (i = 0, dr = tag->_ranges; i < tag->_nranges; i++, dr++) {
   1696  1.58      matt 		if (dr->dr_sysbase <= min_addr
   1697  1.58      matt 		    && max_addr <= dr->dr_sysbase + dr->dr_len - 1) {
   1698  1.58      matt 			subset = true;
   1699  1.58      matt 		}
   1700  1.58      matt 		if (min_addr <= dr->dr_sysbase + dr->dr_len
   1701  1.58      matt 		    && max_addr >= dr->dr_sysbase) {
   1702  1.58      matt 			nranges++;
   1703  1.58      matt 		}
   1704  1.58      matt 	}
   1705  1.58      matt 	if (subset) {
   1706  1.58      matt 		*newtag = tag;
   1707  1.58      matt 		/* if the tag must be freed, add a reference */
   1708  1.58      matt 		if (tag->_tag_needs_free)
   1709  1.58      matt 			(tag->_tag_needs_free)++;
   1710  1.58      matt 		return 0;
   1711  1.58      matt 	}
   1712  1.58      matt 	if (nranges == 0) {
   1713  1.58      matt 		nranges = 1;
   1714  1.58      matt 	}
   1715  1.58      matt 
   1716  1.58      matt 	size_t mallocsize = sizeof(*tag) + nranges * sizeof(*dr);
   1717  1.58      matt 	if ((*newtag = malloc(mallocsize, M_DMAMAP,
   1718  1.58      matt 	    (flags & BUS_DMA_NOWAIT) ? M_NOWAIT : M_WAITOK)) == NULL)
   1719  1.58      matt 		return ENOMEM;
   1720  1.58      matt 
   1721  1.58      matt 	dr = (void *)(*newtag + 1);
   1722  1.58      matt 	**newtag = *tag;
   1723  1.58      matt 	(*newtag)->_tag_needs_free = 1;
   1724  1.58      matt 	(*newtag)->_ranges = dr;
   1725  1.58      matt 	(*newtag)->_nranges = nranges;
   1726  1.58      matt 
   1727  1.58      matt 	if (tag->_ranges == NULL) {
   1728  1.58      matt 		dr->dr_sysbase = min_addr;
   1729  1.58      matt 		dr->dr_busbase = min_addr;
   1730  1.58      matt 		dr->dr_len = max_addr + 1 - min_addr;
   1731  1.58      matt 	} else {
   1732  1.58      matt 		for (i = 0; i < nranges; i++) {
   1733  1.58      matt 			if (min_addr > dr->dr_sysbase + dr->dr_len
   1734  1.58      matt 			    || max_addr < dr->dr_sysbase)
   1735  1.58      matt 				continue;
   1736  1.58      matt 			dr[0] = tag->_ranges[i];
   1737  1.58      matt 			if (dr->dr_sysbase < min_addr) {
   1738  1.58      matt 				psize_t diff = min_addr - dr->dr_sysbase;
   1739  1.58      matt 				dr->dr_busbase += diff;
   1740  1.58      matt 				dr->dr_len -= diff;
   1741  1.58      matt 				dr->dr_sysbase += diff;
   1742  1.58      matt 			}
   1743  1.58      matt 			if (max_addr != 0xffffffff
   1744  1.58      matt 			    && max_addr + 1 < dr->dr_sysbase + dr->dr_len) {
   1745  1.58      matt 				dr->dr_len = max_addr + 1 - dr->dr_sysbase;
   1746  1.58      matt 			}
   1747  1.58      matt 			dr++;
   1748  1.58      matt 		}
   1749  1.58      matt 	}
   1750  1.58      matt 
   1751  1.58      matt 	return 0;
   1752  1.58      matt #else
   1753  1.58      matt 	return EOPNOTSUPP;
   1754  1.58      matt #endif /* _ARM32_NEED_BUS_DMA_BOUNCE */
   1755  1.58      matt }
   1756  1.58      matt 
   1757  1.58      matt void
   1758  1.58      matt _bus_dmatag_destroy(bus_dma_tag_t tag)
   1759  1.58      matt {
   1760  1.58      matt #ifdef _ARM32_NEED_BUS_DMA_BOUNCE
   1761  1.58      matt 	switch (tag->_tag_needs_free) {
   1762  1.58      matt 	case 0:
   1763  1.58      matt 		break;				/* not allocated with malloc */
   1764  1.58      matt 	case 1:
   1765  1.58      matt 		free(tag, M_DMAMAP);		/* last reference to tag */
   1766  1.58      matt 		break;
   1767  1.58      matt 	default:
   1768  1.58      matt 		(tag->_tag_needs_free)--;	/* one less reference */
   1769  1.58      matt 	}
   1770  1.58      matt #endif
   1771  1.58      matt }
   1772