512 lines
11 KiB
C
512 lines
11 KiB
C
/*-
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* Copyright (c) 2015 Marcel Moolenaar
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <sys/cdefs.h>
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__FBSDID("$FreeBSD$");
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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#include <assert.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <limits.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include "busdma.h"
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#include "../../sys/dev/proto/proto_dev.h"
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struct obj {
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int oid;
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u_int type;
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#define OBJ_TYPE_NONE 0
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#define OBJ_TYPE_TAG 1
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#define OBJ_TYPE_MD 2
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#define OBJ_TYPE_SEG 3
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u_int refcnt;
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int fd;
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struct obj *parent;
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u_long key;
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union {
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struct {
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unsigned long align;
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unsigned long bndry;
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unsigned long maxaddr;
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unsigned long maxsz;
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unsigned long maxsegsz;
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unsigned long nsegs;
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unsigned long datarate;
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} tag;
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struct {
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struct obj *seg[3];
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int nsegs[3];
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#define BUSDMA_MD_BUS 0
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#define BUSDMA_MD_PHYS 1
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#define BUSDMA_MD_VIRT 2
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} md;
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struct {
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struct obj *next;
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unsigned long address;
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unsigned long size;
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} seg;
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} u;
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};
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static struct obj **oidtbl = NULL;
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static int noids = 0;
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static struct obj *
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obj_alloc(u_int type)
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{
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struct obj **newtbl, *obj;
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int oid;
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obj = calloc(1, sizeof(struct obj));
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obj->type = type;
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for (oid = 0; oid < noids; oid++) {
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if (oidtbl[oid] == 0)
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break;
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}
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if (oid == noids) {
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newtbl = realloc(oidtbl, sizeof(struct obj *) * (noids + 1));
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if (newtbl == NULL) {
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free(obj);
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return (NULL);
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}
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oidtbl = newtbl;
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noids++;
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}
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oidtbl[oid] = obj;
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obj->oid = oid;
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return (obj);
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}
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static int
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obj_free(struct obj *obj)
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{
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oidtbl[obj->oid] = NULL;
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free(obj);
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return (0);
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}
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static struct obj *
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obj_lookup(int oid, u_int type)
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{
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struct obj *obj;
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if (oid < 0 || oid >= noids) {
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errno = EINVAL;
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return (NULL);
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}
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obj = oidtbl[oid];
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if (obj->refcnt == 0) {
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errno = ENXIO;
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return (NULL);
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}
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if (type != OBJ_TYPE_NONE && obj->type != type) {
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errno = ENODEV;
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return (NULL);
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}
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return (obj);
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}
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static struct obj *
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bd_tag_new(struct obj *ptag, int fd, u_long align, u_long bndry,
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u_long maxaddr, u_long maxsz, u_int nsegs, u_long maxsegsz,
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u_int datarate, u_int flags)
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{
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struct proto_ioc_busdma ioc;
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struct obj *tag;
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tag = obj_alloc(OBJ_TYPE_TAG);
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if (tag == NULL)
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return (NULL);
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = (ptag != NULL) ? PROTO_IOC_BUSDMA_TAG_DERIVE :
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PROTO_IOC_BUSDMA_TAG_CREATE;
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ioc.key = (ptag != NULL) ? ptag->key : 0;
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ioc.u.tag.align = align;
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ioc.u.tag.bndry = bndry;
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ioc.u.tag.maxaddr = maxaddr;
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ioc.u.tag.maxsz = maxsz;
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ioc.u.tag.nsegs = nsegs;
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ioc.u.tag.maxsegsz = maxsegsz;
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ioc.u.tag.datarate = datarate;
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ioc.u.tag.flags = flags;
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if (ioctl(fd, PROTO_IOC_BUSDMA, &ioc) == -1) {
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obj_free(tag);
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return (NULL);
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}
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tag->refcnt = 1;
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tag->fd = fd;
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tag->parent = ptag;
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tag->key = ioc.result;
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tag->u.tag.align = ioc.u.tag.align;
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tag->u.tag.bndry = ioc.u.tag.bndry;
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tag->u.tag.maxaddr = ioc.u.tag.maxaddr;
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tag->u.tag.maxsz = ioc.u.tag.maxsz;
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tag->u.tag.maxsegsz = ioc.u.tag.maxsegsz;
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tag->u.tag.nsegs = ioc.u.tag.nsegs;
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tag->u.tag.datarate = ioc.u.tag.datarate;
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return (tag);
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}
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int
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bd_tag_create(const char *dev, u_long align, u_long bndry, u_long maxaddr,
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u_long maxsz, u_int nsegs, u_long maxsegsz, u_int datarate, u_int flags)
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{
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struct obj *tag;
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int fd;
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fd = open(dev, O_RDWR);
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if (fd == -1)
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return (-1);
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tag = bd_tag_new(NULL, fd, align, bndry, maxaddr, maxsz, nsegs,
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maxsegsz, datarate, flags);
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if (tag == NULL) {
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close(fd);
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return (-1);
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}
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return (tag->oid);
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}
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int
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bd_tag_derive(int ptid, u_long align, u_long bndry, u_long maxaddr,
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u_long maxsz, u_int nsegs, u_long maxsegsz, u_int datarate, u_int flags)
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{
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struct obj *ptag, *tag;
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ptag = obj_lookup(ptid, OBJ_TYPE_TAG);
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if (ptag == NULL)
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return (-1);
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tag = bd_tag_new(ptag, ptag->fd, align, bndry, maxaddr, maxsz, nsegs,
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maxsegsz, datarate, flags);
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if (tag == NULL)
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return (-1);
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ptag->refcnt++;
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return (tag->oid);
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}
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int
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bd_tag_destroy(int tid)
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{
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struct proto_ioc_busdma ioc;
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struct obj *ptag, *tag;
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tag = obj_lookup(tid, OBJ_TYPE_TAG);
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if (tag == NULL)
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return (errno);
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if (tag->refcnt > 1)
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return (EBUSY);
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_TAG_DESTROY;
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ioc.key = tag->key;
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if (ioctl(tag->fd, PROTO_IOC_BUSDMA, &ioc) == -1)
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return (errno);
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if (tag->parent != NULL)
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tag->parent->refcnt--;
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else
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close(tag->fd);
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obj_free(tag);
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return (0);
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}
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static int
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bd_md_add_seg(struct obj *md, int type, u_long addr, u_long size)
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{
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struct obj *seg;
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seg = obj_alloc(OBJ_TYPE_SEG);
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if (seg == NULL)
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return (errno);
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seg->refcnt = 1;
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seg->parent = md;
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seg->u.seg.address = addr;
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seg->u.seg.size = size;
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md->u.md.seg[type] = seg;
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md->u.md.nsegs[type] = 1;
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return (0);
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}
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int
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bd_md_create(int tid, u_int flags)
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{
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struct proto_ioc_busdma ioc;
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struct obj *md, *tag;
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tag = obj_lookup(tid, OBJ_TYPE_TAG);
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if (tag == NULL)
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return (-1);
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md = obj_alloc(OBJ_TYPE_MD);
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if (md == NULL)
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return (-1);
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_MD_CREATE;
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ioc.u.md.tag = tag->key;
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ioc.u.md.flags = flags;
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if (ioctl(tag->fd, PROTO_IOC_BUSDMA, &ioc) == -1) {
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obj_free(md);
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return (-1);
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}
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md->refcnt = 1;
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md->fd = tag->fd;
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md->parent = tag;
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tag->refcnt++;
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md->key = ioc.result;
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return (md->oid);
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}
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int
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bd_md_destroy(int mdid)
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{
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struct proto_ioc_busdma ioc;
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struct obj *md;
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md = obj_lookup(mdid, OBJ_TYPE_MD);
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if (md == NULL)
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return (errno);
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_MD_DESTROY;
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ioc.key = md->key;
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if (ioctl(md->fd, PROTO_IOC_BUSDMA, &ioc) == -1)
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return (errno);
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md->parent->refcnt--;
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obj_free(md);
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return (0);
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}
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int
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bd_md_load(int mdid, void *buf, u_long len, u_int flags)
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{
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struct proto_ioc_busdma ioc;
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struct obj *md;
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int error;
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md = obj_lookup(mdid, OBJ_TYPE_MD);
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if (md == NULL)
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return (errno);
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_MD_LOAD;
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ioc.key = md->key;
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ioc.u.md.flags = flags;
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ioc.u.md.virt_addr = (uintptr_t)buf;
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ioc.u.md.virt_size = len;
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if (ioctl(md->fd, PROTO_IOC_BUSDMA, &ioc) == -1)
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return (errno);
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printf("XXX: %s: phys(%d, %#lx), bus(%d, %#lx)\n", __func__,
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ioc.u.md.phys_nsegs, ioc.u.md.phys_addr,
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ioc.u.md.bus_nsegs, ioc.u.md.bus_addr);
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error = bd_md_add_seg(md, BUSDMA_MD_VIRT, ioc.u.md.virt_addr, len);
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error = bd_md_add_seg(md, BUSDMA_MD_PHYS, ioc.u.md.phys_addr, len);
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error = bd_md_add_seg(md, BUSDMA_MD_BUS, ioc.u.md.bus_addr, len);
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return (error);
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}
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int
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bd_mem_alloc(int tid, u_int flags)
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{
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struct proto_ioc_busdma ioc;
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struct obj *md, *tag;
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uintptr_t addr;
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int error;
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tag = obj_lookup(tid, OBJ_TYPE_TAG);
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if (tag == NULL)
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return (-1);
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md = obj_alloc(OBJ_TYPE_MD);
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if (md == NULL)
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return (-1);
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_MEM_ALLOC;
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ioc.u.md.tag = tag->key;
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ioc.u.md.flags = flags;
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if (ioctl(tag->fd, PROTO_IOC_BUSDMA, &ioc) == -1) {
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obj_free(md);
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return (-1);
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}
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md->refcnt = 1;
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md->fd = tag->fd;
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md->parent = tag;
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tag->refcnt++;
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md->key = ioc.result;
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printf("XXX: %s: phys(%d, %#lx), bus(%d, %#lx)\n", __func__,
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ioc.u.md.phys_nsegs, ioc.u.md.phys_addr,
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ioc.u.md.bus_nsegs, ioc.u.md.bus_addr);
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/* XXX we need to support multiple segments */
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assert(ioc.u.md.phys_nsegs == 1);
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assert(ioc.u.md.bus_nsegs == 1);
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error = bd_md_add_seg(md, BUSDMA_MD_PHYS, ioc.u.md.phys_addr,
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tag->u.tag.maxsz);
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error = bd_md_add_seg(md, BUSDMA_MD_BUS, ioc.u.md.bus_addr,
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tag->u.tag.maxsz);
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addr = (uintptr_t)mmap(NULL, tag->u.tag.maxsz, PROT_READ | PROT_WRITE,
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MAP_NOCORE | MAP_SHARED, md->fd, ioc.u.md.phys_addr);
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if (addr == (uintptr_t)MAP_FAILED)
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goto fail;
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error = bd_md_add_seg(md, BUSDMA_MD_VIRT, addr, tag->u.tag.maxsz);
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return (md->oid);
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fail:
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_MEM_FREE;
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ioc.key = md->key;
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ioctl(md->fd, PROTO_IOC_BUSDMA, &ioc);
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md->parent->refcnt--;
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obj_free(md);
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return (-1);
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}
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int
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bd_mem_free(int mdid)
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{
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struct proto_ioc_busdma ioc;
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struct obj *md, *seg, *seg0;
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md = obj_lookup(mdid, OBJ_TYPE_MD);
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if (md == NULL)
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return (errno);
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for (seg = md->u.md.seg[BUSDMA_MD_VIRT]; seg != NULL; seg = seg0) {
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munmap((void *)seg->u.seg.address, seg->u.seg.size);
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seg0 = seg->u.seg.next;
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obj_free(seg);
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}
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for (seg = md->u.md.seg[BUSDMA_MD_PHYS]; seg != NULL; seg = seg0) {
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seg0 = seg->u.seg.next;
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obj_free(seg);
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}
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for (seg = md->u.md.seg[BUSDMA_MD_BUS]; seg != NULL; seg = seg0) {
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seg0 = seg->u.seg.next;
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obj_free(seg);
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}
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memset(&ioc, 0, sizeof(ioc));
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ioc.request = PROTO_IOC_BUSDMA_MEM_FREE;
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ioc.key = md->key;
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if (ioctl(md->fd, PROTO_IOC_BUSDMA, &ioc) == -1)
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return (errno);
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md->parent->refcnt--;
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obj_free(md);
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return (0);
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}
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int
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bd_md_first_seg(int mdid, int space)
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{
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struct obj *md, *seg;
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md = obj_lookup(mdid, OBJ_TYPE_MD);
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if (md == NULL)
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return (-1);
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if (space != BUSDMA_MD_BUS && space != BUSDMA_MD_PHYS &&
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space != BUSDMA_MD_VIRT) {
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errno = EINVAL;
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return (-1);
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}
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seg = md->u.md.seg[space];
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if (seg == NULL) {
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errno = ENXIO;
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return (-1);
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}
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return (seg->oid);
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}
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int
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bd_md_next_seg(int mdid, int sid)
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{
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struct obj *seg;
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seg = obj_lookup(sid, OBJ_TYPE_SEG);
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if (seg == NULL)
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return (-1);
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seg = seg->u.seg.next;
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if (seg == NULL) {
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errno = ENXIO;
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return (-1);
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}
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return (seg->oid);
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}
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int
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bd_seg_get_addr(int sid, u_long *addr_p)
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{
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struct obj *seg;
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if (addr_p == NULL)
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return (EINVAL);
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seg = obj_lookup(sid, OBJ_TYPE_SEG);
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if (seg == NULL)
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return (errno);
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*addr_p = seg->u.seg.address;
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return (0);
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}
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int
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bd_seg_get_size(int sid, u_long *size_p)
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{
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struct obj *seg;
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if (size_p == NULL)
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return (EINVAL);
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seg = obj_lookup(sid, OBJ_TYPE_SEG);
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if (seg == NULL)
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return (errno);
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*size_p = seg->u.seg.size;
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return (0);
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}
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