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65 * from: @(#)kern_physio.c 8.1 (Berkeley) 6/10/93
69 * 27-July-97 Umesh Vaishampayan (umeshv@apple.com)
70 * Allow physio() to kernel space.
73 #include <sys/param.h>
74 #include <sys/systm.h>
75 #include <sys/buf_internal.h>
77 #include <sys/proc_internal.h>
78 #include <sys/uio_internal.h>
79 #include <kern/assert.h>
82 physio( void (*f_strategy
)(buf_t
),
86 u_int (*f_minphys
)(buf_t
),
90 struct proc
*p
= current_proc();
91 int error
, i
, buf_allocated
, todo
, iosize
;
96 flags
&= B_READ
| B_WRITE
;
100 * [check user read/write access to the data buffer]
102 * Check each iov one by one. Note that we know if we're reading or
103 * writing, so we ignore the uio's rw parameter. Also note that if
104 * we're doing a read, that's a *write* to user-space.
106 for (i
= 0; i
< uio
->uio_iovcnt
; i
++) {
107 if (UIO_SEG_IS_USER_SPACE(uio
->uio_segflg
)) {
111 if (uio_getiov(uio
, i
, &base
, &len
) ||
114 (flags
== B_READ
) ? B_WRITE
: B_READ
))
119 * Make sure we have a buffer, creating one if necessary.
122 bp
= buf_alloc((vnode_t
)0);
125 orig_bflags
= buf_flags(bp
);
127 * at this point we should have a buffer
128 * that is marked BL_BUSY... we either
129 * acquired it via buf_alloc, or it was
130 * passed into us... if it was passed
131 * in, it needs to already be owned by
132 * the caller (i.e. BL_BUSY is set)
134 assert(bp
->b_lflags
& BL_BUSY
);
137 * [set up the fixed part of the buffer for a transfer]
143 * [mark the buffer busy for physical I/O]
144 * (i.e. set B_PHYS (because it's an I/O to user
145 * memory, and B_RAW, because B_RAW is to be
146 * "Set by physio for raw transfers.", in addition
147 * to the read/write flag.)
149 buf_setflags(bp
, B_PHYS
| B_RAW
);
152 * [while there is data to transfer and no I/O error]
153 * Note that I/O errors are handled with a 'goto' at the bottom
154 * of the 'while' loop.
156 while (uio_resid(uio
) > 0) {
158 if ( (iosize
= uio_curriovlen(uio
)) > MAXPHYSIO_WIRED
)
159 iosize
= MAXPHYSIO_WIRED
;
161 * make sure we're set to issue a fresh I/O
162 * in the right direction
164 buf_reset(bp
, flags
);
166 /* [set up the buffer for a maximum-sized transfer] */
167 buf_setblkno(bp
, uio_offset(uio
) / blocksize
);
168 buf_setcount(bp
, iosize
);
169 buf_setdataptr(bp
, (uintptr_t)CAST_DOWN(caddr_t
, uio_curriovbase(uio
)));
172 * [call f_minphys to bound the tranfer size]
173 * and remember the amount of data to transfer,
174 * for later comparison.
177 todo
= buf_count(bp
);
180 * [lock the part of the user address space involved
184 if(UIO_SEG_IS_USER_SPACE(uio
->uio_segflg
)) {
185 error
= vslock(CAST_USER_ADDR_T(buf_dataptr(bp
)),
191 /* [call f_strategy to start the transfer] */
195 /* [wait for the transfer to complete] */
196 error
= (int)buf_biowait(bp
);
199 * [unlock the part of the address space previously
202 if(UIO_SEG_IS_USER_SPACE(uio
->uio_segflg
))
203 vsunlock(CAST_USER_ADDR_T(buf_dataptr(bp
)),
208 * [deduct the transfer size from the total number
209 * of data to transfer]
211 done
= buf_count(bp
) - buf_resid(bp
);
212 uio_update(uio
, done
);
215 * Now, check for an error.
216 * Also, handle weird end-of-disk semantics.
218 if (error
|| done
< todo
)
226 buf_setflags(bp
, orig_bflags
);
232 * Leffler, et al., says on p. 231:
233 * "The minphys() routine is called by physio() to adjust the
234 * size of each I/O transfer before the latter is passed to
235 * the strategy routine..."
237 * so, just adjust the buffer's count accounting to MAXPHYS here,
238 * and return the new count;
241 minphys(struct buf
*bp
)
244 buf_setcount(bp
, min(MAXPHYS
, buf_count(bp
)));
245 return buf_count(bp
);