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cgd.c revision 1.128
      1  1.128  riastrad /* $NetBSD: cgd.c,v 1.128 2020/06/13 18:36:07 riastradh Exp $ */
      2    1.1     elric 
      3    1.1     elric /*-
      4    1.1     elric  * Copyright (c) 2002 The NetBSD Foundation, Inc.
      5    1.1     elric  * All rights reserved.
      6    1.1     elric  *
      7    1.1     elric  * This code is derived from software contributed to The NetBSD Foundation
      8    1.1     elric  * by Roland C. Dowdeswell.
      9    1.1     elric  *
     10    1.1     elric  * Redistribution and use in source and binary forms, with or without
     11    1.1     elric  * modification, are permitted provided that the following conditions
     12    1.1     elric  * are met:
     13    1.1     elric  * 1. Redistributions of source code must retain the above copyright
     14    1.1     elric  *    notice, this list of conditions and the following disclaimer.
     15    1.1     elric  * 2. Redistributions in binary form must reproduce the above copyright
     16    1.1     elric  *    notice, this list of conditions and the following disclaimer in the
     17    1.1     elric  *    documentation and/or other materials provided with the distribution.
     18    1.1     elric  *
     19    1.1     elric  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20    1.1     elric  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21    1.1     elric  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22    1.1     elric  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23    1.1     elric  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24    1.1     elric  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25    1.1     elric  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26    1.1     elric  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27    1.1     elric  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28    1.1     elric  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29    1.1     elric  * POSSIBILITY OF SUCH DAMAGE.
     30    1.1     elric  */
     31    1.1     elric 
     32    1.1     elric #include <sys/cdefs.h>
     33  1.128  riastrad __KERNEL_RCSID(0, "$NetBSD: cgd.c,v 1.128 2020/06/13 18:36:07 riastradh Exp $");
     34    1.1     elric 
     35    1.1     elric #include <sys/types.h>
     36    1.1     elric #include <sys/param.h>
     37    1.1     elric #include <sys/systm.h>
     38    1.1     elric #include <sys/proc.h>
     39    1.1     elric #include <sys/errno.h>
     40    1.1     elric #include <sys/buf.h>
     41   1.21      yamt #include <sys/bufq.h>
     42  1.122   mlelstv #include <sys/kmem.h>
     43   1.74    jruoho #include <sys/module.h>
     44    1.1     elric #include <sys/pool.h>
     45    1.1     elric #include <sys/ioctl.h>
     46    1.1     elric #include <sys/device.h>
     47    1.1     elric #include <sys/disk.h>
     48    1.1     elric #include <sys/disklabel.h>
     49    1.1     elric #include <sys/fcntl.h>
     50   1.71  dholland #include <sys/namei.h> /* for pathbuf */
     51    1.1     elric #include <sys/vnode.h>
     52    1.1     elric #include <sys/conf.h>
     53   1.62  christos #include <sys/syslog.h>
     54  1.122   mlelstv #include <sys/workqueue.h>
     55  1.122   mlelstv #include <sys/cpu.h>
     56    1.1     elric 
     57    1.1     elric #include <dev/dkvar.h>
     58    1.1     elric #include <dev/cgdvar.h>
     59    1.1     elric 
     60   1.88   hannken #include <miscfs/specfs/specdev.h> /* for v_rdev */
     61   1.88   hannken 
     62  1.102  christos #include "ioconf.h"
     63  1.102  christos 
     64  1.112     alnsn struct selftest_params {
     65  1.112     alnsn 	const char *alg;
     66  1.112     alnsn 	int blocksize;	/* number of bytes */
     67  1.112     alnsn 	int secsize;
     68  1.112     alnsn 	daddr_t blkno;
     69  1.112     alnsn 	int keylen;	/* number of bits */
     70  1.112     alnsn 	int txtlen;	/* number of bytes */
     71  1.112     alnsn 	const uint8_t *key;
     72  1.112     alnsn 	const uint8_t *ptxt;
     73  1.112     alnsn 	const uint8_t *ctxt;
     74  1.112     alnsn };
     75  1.112     alnsn 
     76    1.1     elric /* Entry Point Functions */
     77    1.1     elric 
     78   1.18   thorpej static dev_type_open(cgdopen);
     79   1.18   thorpej static dev_type_close(cgdclose);
     80   1.18   thorpej static dev_type_read(cgdread);
     81   1.18   thorpej static dev_type_write(cgdwrite);
     82   1.18   thorpej static dev_type_ioctl(cgdioctl);
     83   1.18   thorpej static dev_type_strategy(cgdstrategy);
     84   1.18   thorpej static dev_type_dump(cgddump);
     85   1.18   thorpej static dev_type_size(cgdsize);
     86    1.1     elric 
     87    1.1     elric const struct bdevsw cgd_bdevsw = {
     88   1.84  dholland 	.d_open = cgdopen,
     89   1.84  dholland 	.d_close = cgdclose,
     90   1.84  dholland 	.d_strategy = cgdstrategy,
     91   1.84  dholland 	.d_ioctl = cgdioctl,
     92   1.84  dholland 	.d_dump = cgddump,
     93   1.84  dholland 	.d_psize = cgdsize,
     94   1.89  dholland 	.d_discard = nodiscard,
     95  1.122   mlelstv 	.d_flag = D_DISK | D_MPSAFE
     96    1.1     elric };
     97    1.1     elric 
     98    1.1     elric const struct cdevsw cgd_cdevsw = {
     99   1.84  dholland 	.d_open = cgdopen,
    100   1.84  dholland 	.d_close = cgdclose,
    101   1.84  dholland 	.d_read = cgdread,
    102   1.84  dholland 	.d_write = cgdwrite,
    103   1.84  dholland 	.d_ioctl = cgdioctl,
    104   1.84  dholland 	.d_stop = nostop,
    105   1.84  dholland 	.d_tty = notty,
    106   1.84  dholland 	.d_poll = nopoll,
    107   1.84  dholland 	.d_mmap = nommap,
    108   1.84  dholland 	.d_kqfilter = nokqfilter,
    109   1.90  dholland 	.d_discard = nodiscard,
    110  1.122   mlelstv 	.d_flag = D_DISK | D_MPSAFE
    111    1.1     elric };
    112    1.1     elric 
    113  1.112     alnsn /*
    114  1.112     alnsn  * Vector 5 from IEEE 1619/D16 truncated to 64 bytes, blkno 1.
    115  1.112     alnsn  */
    116  1.112     alnsn static const uint8_t selftest_aes_xts_256_ptxt[64] = {
    117  1.112     alnsn 	0x27, 0xa7, 0x47, 0x9b, 0xef, 0xa1, 0xd4, 0x76,
    118  1.112     alnsn 	0x48, 0x9f, 0x30, 0x8c, 0xd4, 0xcf, 0xa6, 0xe2,
    119  1.112     alnsn 	0xa9, 0x6e, 0x4b, 0xbe, 0x32, 0x08, 0xff, 0x25,
    120  1.112     alnsn 	0x28, 0x7d, 0xd3, 0x81, 0x96, 0x16, 0xe8, 0x9c,
    121  1.112     alnsn 	0xc7, 0x8c, 0xf7, 0xf5, 0xe5, 0x43, 0x44, 0x5f,
    122  1.112     alnsn 	0x83, 0x33, 0xd8, 0xfa, 0x7f, 0x56, 0x00, 0x00,
    123  1.112     alnsn 	0x05, 0x27, 0x9f, 0xa5, 0xd8, 0xb5, 0xe4, 0xad,
    124  1.112     alnsn 	0x40, 0xe7, 0x36, 0xdd, 0xb4, 0xd3, 0x54, 0x12,
    125  1.112     alnsn };
    126  1.112     alnsn 
    127  1.112     alnsn static const uint8_t selftest_aes_xts_256_ctxt[512] = {
    128  1.112     alnsn 	0x26, 0x4d, 0x3c, 0xa8, 0x51, 0x21, 0x94, 0xfe,
    129  1.112     alnsn 	0xc3, 0x12, 0xc8, 0xc9, 0x89, 0x1f, 0x27, 0x9f,
    130  1.112     alnsn 	0xef, 0xdd, 0x60, 0x8d, 0x0c, 0x02, 0x7b, 0x60,
    131  1.112     alnsn 	0x48, 0x3a, 0x3f, 0xa8, 0x11, 0xd6, 0x5e, 0xe5,
    132  1.112     alnsn 	0x9d, 0x52, 0xd9, 0xe4, 0x0e, 0xc5, 0x67, 0x2d,
    133  1.112     alnsn 	0x81, 0x53, 0x2b, 0x38, 0xb6, 0xb0, 0x89, 0xce,
    134  1.112     alnsn 	0x95, 0x1f, 0x0f, 0x9c, 0x35, 0x59, 0x0b, 0x8b,
    135  1.112     alnsn 	0x97, 0x8d, 0x17, 0x52, 0x13, 0xf3, 0x29, 0xbb,
    136  1.112     alnsn };
    137  1.112     alnsn 
    138  1.112     alnsn static const uint8_t selftest_aes_xts_256_key[33] = {
    139  1.112     alnsn 	0x27, 0x18, 0x28, 0x18, 0x28, 0x45, 0x90, 0x45,
    140  1.112     alnsn 	0x23, 0x53, 0x60, 0x28, 0x74, 0x71, 0x35, 0x26,
    141  1.112     alnsn 	0x31, 0x41, 0x59, 0x26, 0x53, 0x58, 0x97, 0x93,
    142  1.112     alnsn 	0x23, 0x84, 0x62, 0x64, 0x33, 0x83, 0x27, 0x95,
    143  1.112     alnsn 	0
    144  1.112     alnsn };
    145  1.112     alnsn 
    146  1.112     alnsn /*
    147  1.112     alnsn  * Vector 11 from IEEE 1619/D16 truncated to 64 bytes, blkno 0xffff.
    148  1.112     alnsn  */
    149  1.112     alnsn static const uint8_t selftest_aes_xts_512_ptxt[64] = {
    150  1.112     alnsn 	0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
    151  1.112     alnsn 	0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
    152  1.112     alnsn 	0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17,
    153  1.112     alnsn 	0x18, 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f,
    154  1.112     alnsn 	0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27,
    155  1.112     alnsn 	0x28, 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f,
    156  1.112     alnsn 	0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37,
    157  1.112     alnsn 	0x38, 0x39, 0x3a, 0x3b, 0x3c, 0x3d, 0x3e, 0x3f,
    158  1.112     alnsn };
    159  1.112     alnsn 
    160  1.112     alnsn static const uint8_t selftest_aes_xts_512_ctxt[64] = {
    161  1.112     alnsn 	0x77, 0xa3, 0x12, 0x51, 0x61, 0x8a, 0x15, 0xe6,
    162  1.112     alnsn 	0xb9, 0x2d, 0x1d, 0x66, 0xdf, 0xfe, 0x7b, 0x50,
    163  1.112     alnsn 	0xb5, 0x0b, 0xad, 0x55, 0x23, 0x05, 0xba, 0x02,
    164  1.112     alnsn 	0x17, 0xa6, 0x10, 0x68, 0x8e, 0xff, 0x7e, 0x11,
    165  1.112     alnsn 	0xe1, 0xd0, 0x22, 0x54, 0x38, 0xe0, 0x93, 0x24,
    166  1.112     alnsn 	0x2d, 0x6d, 0xb2, 0x74, 0xfd, 0xe8, 0x01, 0xd4,
    167  1.112     alnsn 	0xca, 0xe0, 0x6f, 0x20, 0x92, 0xc7, 0x28, 0xb2,
    168  1.112     alnsn 	0x47, 0x85, 0x59, 0xdf, 0x58, 0xe8, 0x37, 0xc2,
    169  1.112     alnsn };
    170  1.112     alnsn 
    171  1.112     alnsn static const uint8_t selftest_aes_xts_512_key[65] = {
    172  1.112     alnsn 	0x27, 0x18, 0x28, 0x18, 0x28, 0x45, 0x90, 0x45,
    173  1.112     alnsn 	0x23, 0x53, 0x60, 0x28, 0x74, 0x71, 0x35, 0x26,
    174  1.112     alnsn 	0x62, 0x49, 0x77, 0x57, 0x24, 0x70, 0x93, 0x69,
    175  1.112     alnsn 	0x99, 0x59, 0x57, 0x49, 0x66, 0x96, 0x76, 0x27,
    176  1.112     alnsn 	0x31, 0x41, 0x59, 0x26, 0x53, 0x58, 0x97, 0x93,
    177  1.112     alnsn 	0x23, 0x84, 0x62, 0x64, 0x33, 0x83, 0x27, 0x95,
    178  1.112     alnsn 	0x02, 0x88, 0x41, 0x97, 0x16, 0x93, 0x99, 0x37,
    179  1.112     alnsn 	0x51, 0x05, 0x82, 0x09, 0x74, 0x94, 0x45, 0x92,
    180  1.112     alnsn 	0
    181  1.112     alnsn };
    182  1.112     alnsn 
    183  1.126  riastrad static const uint8_t selftest_aes_cbc_key[32] = {
    184  1.126  riastrad 	0x27, 0x18, 0x28, 0x18, 0x28, 0x45, 0x90, 0x45,
    185  1.126  riastrad 	0x23, 0x53, 0x60, 0x28, 0x74, 0x71, 0x35, 0x26,
    186  1.126  riastrad 	0x62, 0x49, 0x77, 0x57, 0x24, 0x70, 0x93, 0x69,
    187  1.126  riastrad 	0x99, 0x59, 0x57, 0x49, 0x66, 0x96, 0x76, 0x27,
    188  1.126  riastrad };
    189  1.126  riastrad 
    190  1.126  riastrad static const uint8_t selftest_aes_cbc_128_ptxt[64] = {
    191  1.126  riastrad 	0x27, 0xa7, 0x47, 0x9b, 0xef, 0xa1, 0xd4, 0x76,
    192  1.126  riastrad 	0x48, 0x9f, 0x30, 0x8c, 0xd4, 0xcf, 0xa6, 0xe2,
    193  1.126  riastrad 	0xa9, 0x6e, 0x4b, 0xbe, 0x32, 0x08, 0xff, 0x25,
    194  1.126  riastrad 	0x28, 0x7d, 0xd3, 0x81, 0x96, 0x16, 0xe8, 0x9c,
    195  1.126  riastrad 	0xc7, 0x8c, 0xf7, 0xf5, 0xe5, 0x43, 0x44, 0x5f,
    196  1.126  riastrad 	0x83, 0x33, 0xd8, 0xfa, 0x7f, 0x56, 0x00, 0x00,
    197  1.126  riastrad 	0x05, 0x27, 0x9f, 0xa5, 0xd8, 0xb5, 0xe4, 0xad,
    198  1.126  riastrad 	0x40, 0xe7, 0x36, 0xdd, 0xb4, 0xd3, 0x54, 0x12,
    199  1.126  riastrad };
    200  1.126  riastrad 
    201  1.126  riastrad static const uint8_t selftest_aes_cbc_128_ctxt[64] = { /* blkno=1 */
    202  1.126  riastrad 	0x93, 0x94, 0x56, 0x36, 0x83, 0xbc, 0xff, 0xa4,
    203  1.126  riastrad 	0xe0, 0x24, 0x34, 0x12, 0xbe, 0xfa, 0xb0, 0x7d,
    204  1.126  riastrad 	0x88, 0x1e, 0xc5, 0x57, 0x55, 0x23, 0x05, 0x0c,
    205  1.126  riastrad 	0x69, 0xa5, 0xc1, 0xda, 0x64, 0xee, 0x74, 0x10,
    206  1.126  riastrad 	0xc2, 0xc5, 0xe6, 0x66, 0xd6, 0xa7, 0x49, 0x1c,
    207  1.126  riastrad 	0x9d, 0x40, 0xb5, 0x0c, 0x9b, 0x6e, 0x1c, 0xe6,
    208  1.126  riastrad 	0xb1, 0x7a, 0x1c, 0xe7, 0x5a, 0xfe, 0xf9, 0x2a,
    209  1.126  riastrad 	0x78, 0xfa, 0xb7, 0x7b, 0x08, 0xdf, 0x8e, 0x51,
    210  1.126  riastrad };
    211  1.126  riastrad 
    212  1.126  riastrad static const uint8_t selftest_aes_cbc_256_ptxt[64] = {
    213  1.126  riastrad 	0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
    214  1.126  riastrad 	0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
    215  1.126  riastrad 	0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17,
    216  1.126  riastrad 	0x18, 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f,
    217  1.126  riastrad 	0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27,
    218  1.126  riastrad 	0x28, 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f,
    219  1.126  riastrad 	0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37,
    220  1.126  riastrad 	0x38, 0x39, 0x3a, 0x3b, 0x3c, 0x3d, 0x3e, 0x3f,
    221  1.126  riastrad };
    222  1.126  riastrad 
    223  1.126  riastrad static const uint8_t selftest_aes_cbc_256_ctxt[64] = { /* blkno=0xffff */
    224  1.126  riastrad 	0x6c, 0xa3, 0x15, 0x17, 0x51, 0x90, 0xe9, 0x69,
    225  1.126  riastrad 	0x08, 0x36, 0x7b, 0xa6, 0xbb, 0xd1, 0x0b, 0x9e,
    226  1.126  riastrad 	0xcd, 0x6b, 0x1e, 0xaf, 0xb6, 0x2e, 0x62, 0x7d,
    227  1.126  riastrad 	0x8e, 0xde, 0xf0, 0xed, 0x0d, 0x44, 0xe7, 0x31,
    228  1.126  riastrad 	0x26, 0xcf, 0xd5, 0x0b, 0x3e, 0x95, 0x59, 0x89,
    229  1.126  riastrad 	0xdf, 0x5d, 0xd6, 0x9a, 0x00, 0x66, 0xcc, 0x7f,
    230  1.126  riastrad 	0x45, 0xd3, 0x06, 0x58, 0xed, 0xef, 0x49, 0x47,
    231  1.126  riastrad 	0x87, 0x89, 0x17, 0x7d, 0x08, 0x56, 0x50, 0xe1,
    232  1.126  riastrad };
    233  1.126  riastrad 
    234  1.126  riastrad static const uint8_t selftest_3des_cbc_key[24] = {
    235  1.126  riastrad 	0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
    236  1.126  riastrad 	0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
    237  1.126  riastrad 	0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17,
    238  1.126  riastrad };
    239  1.126  riastrad 
    240  1.126  riastrad static const uint8_t selftest_3des_cbc_ptxt[64] = {
    241  1.126  riastrad 	0x27, 0xa7, 0x47, 0x9b, 0xef, 0xa1, 0xd4, 0x76,
    242  1.126  riastrad 	0x48, 0x9f, 0x30, 0x8c, 0xd4, 0xcf, 0xa6, 0xe2,
    243  1.126  riastrad 	0xa9, 0x6e, 0x4b, 0xbe, 0x32, 0x08, 0xff, 0x25,
    244  1.126  riastrad 	0x28, 0x7d, 0xd3, 0x81, 0x96, 0x16, 0xe8, 0x9c,
    245  1.126  riastrad 	0xc7, 0x8c, 0xf7, 0xf5, 0xe5, 0x43, 0x44, 0x5f,
    246  1.126  riastrad 	0x83, 0x33, 0xd8, 0xfa, 0x7f, 0x56, 0x00, 0x00,
    247  1.126  riastrad 	0x05, 0x27, 0x9f, 0xa5, 0xd8, 0xb5, 0xe4, 0xad,
    248  1.126  riastrad 	0x40, 0xe7, 0x36, 0xdd, 0xb4, 0xd3, 0x54, 0x12,
    249  1.126  riastrad };
    250  1.126  riastrad 
    251  1.126  riastrad static const uint8_t selftest_3des_cbc_ctxt[64] = {
    252  1.126  riastrad 	0xa2, 0xfe, 0x81, 0xaa, 0x10, 0x6c, 0xea, 0xb9,
    253  1.126  riastrad 	0x11, 0x58, 0x1f, 0x29, 0xb5, 0x86, 0x71, 0x56,
    254  1.126  riastrad 	0xe9, 0x25, 0x1d, 0x07, 0xb1, 0x69, 0x59, 0x6c,
    255  1.126  riastrad 	0x96, 0x80, 0xf7, 0x54, 0x38, 0xaa, 0xa7, 0xe4,
    256  1.126  riastrad 	0xe8, 0x81, 0xf5, 0x00, 0xbb, 0x1c, 0x00, 0x3c,
    257  1.126  riastrad 	0xba, 0x38, 0x45, 0x97, 0x4c, 0xcf, 0x84, 0x14,
    258  1.126  riastrad 	0x46, 0x86, 0xd9, 0xf4, 0xc5, 0xe2, 0xf0, 0x54,
    259  1.126  riastrad 	0xde, 0x41, 0xf6, 0xa1, 0xef, 0x1b, 0x0a, 0xea,
    260  1.126  riastrad };
    261  1.126  riastrad 
    262  1.126  riastrad static const uint8_t selftest_bf_cbc_key[56] = {
    263  1.126  riastrad 	0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
    264  1.126  riastrad 	0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f,
    265  1.126  riastrad 	0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17,
    266  1.126  riastrad 	0x18, 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f,
    267  1.126  riastrad 	0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27,
    268  1.126  riastrad 	0x28, 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f,
    269  1.126  riastrad 	0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36, 0x37,
    270  1.126  riastrad };
    271  1.126  riastrad 
    272  1.126  riastrad static const uint8_t selftest_bf_cbc_ptxt[64] = {
    273  1.126  riastrad 	0x27, 0xa7, 0x47, 0x9b, 0xef, 0xa1, 0xd4, 0x76,
    274  1.126  riastrad 	0x48, 0x9f, 0x30, 0x8c, 0xd4, 0xcf, 0xa6, 0xe2,
    275  1.126  riastrad 	0xa9, 0x6e, 0x4b, 0xbe, 0x32, 0x08, 0xff, 0x25,
    276  1.126  riastrad 	0x28, 0x7d, 0xd3, 0x81, 0x96, 0x16, 0xe8, 0x9c,
    277  1.126  riastrad 	0xc7, 0x8c, 0xf7, 0xf5, 0xe5, 0x43, 0x44, 0x5f,
    278  1.126  riastrad 	0x83, 0x33, 0xd8, 0xfa, 0x7f, 0x56, 0x00, 0x00,
    279  1.126  riastrad 	0x05, 0x27, 0x9f, 0xa5, 0xd8, 0xb5, 0xe4, 0xad,
    280  1.126  riastrad 	0x40, 0xe7, 0x36, 0xdd, 0xb4, 0xd3, 0x54, 0x12,
    281  1.126  riastrad };
    282  1.126  riastrad 
    283  1.126  riastrad static const uint8_t selftest_bf_cbc_ctxt[64] = {
    284  1.126  riastrad 	0xec, 0xa2, 0xc0, 0x0e, 0xa9, 0x7f, 0x04, 0x1e,
    285  1.126  riastrad 	0x2e, 0x4f, 0x64, 0x07, 0x67, 0x3e, 0xf4, 0x58,
    286  1.126  riastrad 	0x61, 0x5f, 0xd3, 0x50, 0x5e, 0xd3, 0x4d, 0x34,
    287  1.126  riastrad 	0xa0, 0x53, 0xbe, 0x47, 0x75, 0x69, 0x3b, 0x1f,
    288  1.126  riastrad 	0x86, 0xf2, 0xae, 0x8b, 0xb7, 0x91, 0xda, 0xd4,
    289  1.126  riastrad 	0x2b, 0xa5, 0x47, 0x9b, 0x7d, 0x13, 0x30, 0xdd,
    290  1.126  riastrad 	0x7b, 0xad, 0x86, 0x57, 0x51, 0x11, 0x74, 0x42,
    291  1.126  riastrad 	0xb8, 0xbf, 0x69, 0x17, 0x20, 0x0a, 0xf7, 0xda,
    292  1.126  riastrad };
    293  1.126  riastrad 
    294  1.112     alnsn const struct selftest_params selftests[] = {
    295  1.112     alnsn 	{
    296  1.112     alnsn 		.alg = "aes-xts",
    297  1.112     alnsn 		.blocksize = 16,
    298  1.112     alnsn 		.secsize = 512,
    299  1.112     alnsn 		.blkno = 1,
    300  1.112     alnsn 		.keylen = 256,
    301  1.112     alnsn 		.txtlen = sizeof(selftest_aes_xts_256_ptxt),
    302  1.112     alnsn 		.key  = selftest_aes_xts_256_key,
    303  1.112     alnsn 		.ptxt = selftest_aes_xts_256_ptxt,
    304  1.112     alnsn 		.ctxt = selftest_aes_xts_256_ctxt
    305  1.112     alnsn 	},
    306  1.112     alnsn 	{
    307  1.112     alnsn 		.alg = "aes-xts",
    308  1.112     alnsn 		.blocksize = 16,
    309  1.112     alnsn 		.secsize = 512,
    310  1.112     alnsn 		.blkno = 0xffff,
    311  1.112     alnsn 		.keylen = 512,
    312  1.112     alnsn 		.txtlen = sizeof(selftest_aes_xts_512_ptxt),
    313  1.112     alnsn 		.key  = selftest_aes_xts_512_key,
    314  1.112     alnsn 		.ptxt = selftest_aes_xts_512_ptxt,
    315  1.112     alnsn 		.ctxt = selftest_aes_xts_512_ctxt
    316  1.126  riastrad 	},
    317  1.126  riastrad 	{
    318  1.126  riastrad 		.alg = "aes-cbc",
    319  1.126  riastrad 		.blocksize = 16,
    320  1.126  riastrad 		.secsize = 512,
    321  1.126  riastrad 		.blkno = 1,
    322  1.126  riastrad 		.keylen = 128,
    323  1.126  riastrad 		.txtlen = sizeof(selftest_aes_cbc_128_ptxt),
    324  1.126  riastrad 		.key  = selftest_aes_cbc_key,
    325  1.126  riastrad 		.ptxt = selftest_aes_cbc_128_ptxt,
    326  1.126  riastrad 		.ctxt = selftest_aes_cbc_128_ctxt,
    327  1.126  riastrad 	},
    328  1.126  riastrad 	{
    329  1.126  riastrad 		.alg = "aes-cbc",
    330  1.126  riastrad 		.blocksize = 16,
    331  1.126  riastrad 		.secsize = 512,
    332  1.126  riastrad 		.blkno = 0xffff,
    333  1.126  riastrad 		.keylen = 256,
    334  1.126  riastrad 		.txtlen = sizeof(selftest_aes_cbc_256_ptxt),
    335  1.126  riastrad 		.key  = selftest_aes_cbc_key,
    336  1.126  riastrad 		.ptxt = selftest_aes_cbc_256_ptxt,
    337  1.126  riastrad 		.ctxt = selftest_aes_cbc_256_ctxt,
    338  1.126  riastrad 	},
    339  1.126  riastrad 	{
    340  1.126  riastrad 		.alg = "3des-cbc",
    341  1.126  riastrad 		.blocksize = 8,
    342  1.126  riastrad 		.secsize = 512,
    343  1.126  riastrad 		.blkno = 1,
    344  1.126  riastrad 		.keylen = 192,	/* 168 + 3*8 parity bits */
    345  1.126  riastrad 		.txtlen = sizeof(selftest_3des_cbc_ptxt),
    346  1.126  riastrad 		.key  = selftest_3des_cbc_key,
    347  1.126  riastrad 		.ptxt = selftest_3des_cbc_ptxt,
    348  1.126  riastrad 		.ctxt = selftest_3des_cbc_ctxt,
    349  1.126  riastrad 	},
    350  1.126  riastrad 	{
    351  1.126  riastrad 		.alg = "blowfish-cbc",
    352  1.126  riastrad 		.blocksize = 8,
    353  1.126  riastrad 		.secsize = 512,
    354  1.126  riastrad 		.blkno = 1,
    355  1.126  riastrad 		.keylen = 448,
    356  1.126  riastrad 		.txtlen = sizeof(selftest_bf_cbc_ptxt),
    357  1.126  riastrad 		.key  = selftest_bf_cbc_key,
    358  1.126  riastrad 		.ptxt = selftest_bf_cbc_ptxt,
    359  1.126  riastrad 		.ctxt = selftest_bf_cbc_ctxt,
    360  1.126  riastrad 	},
    361  1.112     alnsn };
    362  1.112     alnsn 
    363   1.65    dyoung static int cgd_match(device_t, cfdata_t, void *);
    364   1.65    dyoung static void cgd_attach(device_t, device_t, void *);
    365   1.65    dyoung static int cgd_detach(device_t, int);
    366   1.65    dyoung static struct cgd_softc	*cgd_spawn(int);
    367  1.122   mlelstv static struct cgd_worker *cgd_create_one_worker(void);
    368  1.122   mlelstv static void cgd_destroy_one_worker(struct cgd_worker *);
    369  1.122   mlelstv static struct cgd_worker *cgd_create_worker(void);
    370  1.122   mlelstv static void cgd_destroy_worker(struct cgd_worker *);
    371   1.65    dyoung static int cgd_destroy(device_t);
    372   1.65    dyoung 
    373    1.1     elric /* Internal Functions */
    374    1.1     elric 
    375   1.99   mlelstv static int	cgd_diskstart(device_t, struct buf *);
    376  1.122   mlelstv static void	cgd_diskstart2(struct cgd_softc *, struct cgd_xfer *);
    377    1.1     elric static void	cgdiodone(struct buf *);
    378  1.122   mlelstv static void	cgd_iodone2(struct cgd_softc *, struct cgd_xfer *);
    379  1.122   mlelstv static void	cgd_enqueue(struct cgd_softc *, struct cgd_xfer *);
    380  1.122   mlelstv static void	cgd_process(struct work *, void *);
    381  1.108  riastrad static int	cgd_dumpblocks(device_t, void *, daddr_t, int);
    382    1.1     elric 
    383   1.32  christos static int	cgd_ioctl_set(struct cgd_softc *, void *, struct lwp *);
    384   1.65    dyoung static int	cgd_ioctl_clr(struct cgd_softc *, struct lwp *);
    385   1.78  christos static int	cgd_ioctl_get(dev_t, void *, struct lwp *);
    386   1.27  drochner static int	cgdinit(struct cgd_softc *, const char *, struct vnode *,
    387   1.32  christos 			struct lwp *);
    388   1.44  christos static void	cgd_cipher(struct cgd_softc *, void *, void *,
    389    1.1     elric 			   size_t, daddr_t, size_t, int);
    390    1.1     elric 
    391  1.125      maxv static const struct dkdriver cgddkdriver = {
    392   1.98   mlelstv         .d_minphys  = minphys,
    393   1.98   mlelstv         .d_open = cgdopen,
    394   1.98   mlelstv         .d_close = cgdclose,
    395   1.98   mlelstv         .d_strategy = cgdstrategy,
    396   1.98   mlelstv         .d_iosize = NULL,
    397   1.99   mlelstv         .d_diskstart = cgd_diskstart,
    398  1.108  riastrad         .d_dumpblocks = cgd_dumpblocks,
    399   1.98   mlelstv         .d_lastclose = NULL
    400   1.29      yamt };
    401   1.29      yamt 
    402   1.65    dyoung CFATTACH_DECL3_NEW(cgd, sizeof(struct cgd_softc),
    403   1.65    dyoung     cgd_match, cgd_attach, cgd_detach, NULL, NULL, NULL, DVF_DETACH_SHUTDOWN);
    404   1.65    dyoung 
    405    1.1     elric /* DIAGNOSTIC and DEBUG definitions */
    406    1.1     elric 
    407    1.1     elric #if defined(CGDDEBUG) && !defined(DEBUG)
    408    1.1     elric #define DEBUG
    409    1.1     elric #endif
    410    1.1     elric 
    411    1.1     elric #ifdef DEBUG
    412    1.1     elric int cgddebug = 0;
    413    1.1     elric 
    414    1.1     elric #define CGDB_FOLLOW	0x1
    415    1.1     elric #define CGDB_IO	0x2
    416    1.1     elric #define CGDB_CRYPTO	0x4
    417    1.1     elric 
    418    1.1     elric #define IFDEBUG(x,y)		if (cgddebug & (x)) y
    419    1.1     elric #define DPRINTF(x,y)		IFDEBUG(x, printf y)
    420    1.1     elric #define DPRINTF_FOLLOW(y)	DPRINTF(CGDB_FOLLOW, y)
    421    1.1     elric 
    422   1.26  drochner static void	hexprint(const char *, void *, int);
    423    1.1     elric 
    424    1.1     elric #else
    425    1.1     elric #define IFDEBUG(x,y)
    426    1.1     elric #define DPRINTF(x,y)
    427    1.1     elric #define DPRINTF_FOLLOW(y)
    428    1.1     elric #endif
    429    1.1     elric 
    430    1.1     elric /* Global variables */
    431    1.1     elric 
    432  1.122   mlelstv static kmutex_t cgd_spawning_mtx;
    433  1.122   mlelstv static kcondvar_t cgd_spawning_cv;
    434  1.122   mlelstv static bool cgd_spawning;
    435  1.122   mlelstv static struct cgd_worker *cgd_worker;
    436  1.122   mlelstv static u_int cgd_refcnt;	/* number of users of cgd_worker */
    437  1.122   mlelstv 
    438    1.1     elric /* Utility Functions */
    439    1.1     elric 
    440    1.1     elric #define CGDUNIT(x)		DISKUNIT(x)
    441    1.1     elric 
    442   1.65    dyoung /* The code */
    443   1.65    dyoung 
    444  1.122   mlelstv static int
    445  1.122   mlelstv cgd_lock(bool intr)
    446  1.122   mlelstv {
    447  1.122   mlelstv 	int error = 0;
    448  1.122   mlelstv 
    449  1.122   mlelstv 	mutex_enter(&cgd_spawning_mtx);
    450  1.122   mlelstv 	while (cgd_spawning) {
    451  1.122   mlelstv 		if (intr)
    452  1.122   mlelstv 			error = cv_wait_sig(&cgd_spawning_cv, &cgd_spawning_mtx);
    453  1.122   mlelstv 		else
    454  1.122   mlelstv 			cv_wait(&cgd_spawning_cv, &cgd_spawning_mtx);
    455  1.122   mlelstv 	}
    456  1.122   mlelstv 	if (error == 0)
    457  1.122   mlelstv 		cgd_spawning = true;
    458  1.122   mlelstv 	mutex_exit(&cgd_spawning_mtx);
    459  1.122   mlelstv 	return error;
    460  1.122   mlelstv }
    461  1.122   mlelstv 
    462  1.122   mlelstv static void
    463  1.122   mlelstv cgd_unlock(void)
    464  1.122   mlelstv {
    465  1.122   mlelstv 	mutex_enter(&cgd_spawning_mtx);
    466  1.122   mlelstv 	cgd_spawning = false;
    467  1.122   mlelstv 	cv_broadcast(&cgd_spawning_cv);
    468  1.122   mlelstv 	mutex_exit(&cgd_spawning_mtx);
    469  1.122   mlelstv }
    470  1.122   mlelstv 
    471    1.1     elric static struct cgd_softc *
    472    1.1     elric getcgd_softc(dev_t dev)
    473    1.1     elric {
    474  1.122   mlelstv 	return device_lookup_private(&cgd_cd, CGDUNIT(dev));
    475    1.1     elric }
    476    1.1     elric 
    477   1.65    dyoung static int
    478   1.65    dyoung cgd_match(device_t self, cfdata_t cfdata, void *aux)
    479   1.65    dyoung {
    480   1.65    dyoung 
    481   1.65    dyoung 	return 1;
    482   1.65    dyoung }
    483    1.1     elric 
    484    1.1     elric static void
    485   1.65    dyoung cgd_attach(device_t parent, device_t self, void *aux)
    486    1.1     elric {
    487   1.65    dyoung 	struct cgd_softc *sc = device_private(self);
    488    1.1     elric 
    489   1.85     skrll 	mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_BIO);
    490  1.122   mlelstv 	cv_init(&sc->sc_cv, "cgdcv");
    491   1.98   mlelstv 	dk_init(&sc->sc_dksc, self, DKTYPE_CGD);
    492   1.65    dyoung 	disk_init(&sc->sc_dksc.sc_dkdev, sc->sc_dksc.sc_xname, &cgddkdriver);
    493   1.70     joerg 
    494   1.98   mlelstv 	if (!pmf_device_register(self, NULL, NULL))
    495  1.107   msaitoh 		aprint_error_dev(self,
    496  1.107   msaitoh 		    "unable to register power management hooks\n");
    497   1.65    dyoung }
    498   1.65    dyoung 
    499   1.65    dyoung 
    500   1.65    dyoung static int
    501   1.65    dyoung cgd_detach(device_t self, int flags)
    502   1.65    dyoung {
    503   1.67    dyoung 	int ret;
    504   1.67    dyoung 	const int pmask = 1 << RAW_PART;
    505   1.65    dyoung 	struct cgd_softc *sc = device_private(self);
    506   1.67    dyoung 	struct dk_softc *dksc = &sc->sc_dksc;
    507   1.67    dyoung 
    508   1.67    dyoung 	if (DK_BUSY(dksc, pmask))
    509   1.67    dyoung 		return EBUSY;
    510   1.65    dyoung 
    511   1.98   mlelstv 	if (DK_ATTACHED(dksc) &&
    512   1.67    dyoung 	    (ret = cgd_ioctl_clr(sc, curlwp)) != 0)
    513   1.67    dyoung 		return ret;
    514   1.65    dyoung 
    515   1.67    dyoung 	disk_destroy(&dksc->sc_dkdev);
    516  1.122   mlelstv 	cv_destroy(&sc->sc_cv);
    517   1.86  christos 	mutex_destroy(&sc->sc_lock);
    518   1.65    dyoung 
    519   1.67    dyoung 	return 0;
    520    1.1     elric }
    521    1.1     elric 
    522    1.1     elric void
    523    1.1     elric cgdattach(int num)
    524    1.1     elric {
    525  1.122   mlelstv #ifndef _MODULE
    526   1.65    dyoung 	int error;
    527   1.65    dyoung 
    528  1.122   mlelstv 	mutex_init(&cgd_spawning_mtx, MUTEX_DEFAULT, IPL_NONE);
    529  1.122   mlelstv 	cv_init(&cgd_spawning_cv, "cgspwn");
    530  1.122   mlelstv 
    531   1.65    dyoung 	error = config_cfattach_attach(cgd_cd.cd_name, &cgd_ca);
    532   1.65    dyoung 	if (error != 0)
    533   1.65    dyoung 		aprint_error("%s: unable to register cfattach\n",
    534   1.65    dyoung 		    cgd_cd.cd_name);
    535  1.122   mlelstv #endif
    536   1.65    dyoung }
    537   1.65    dyoung 
    538   1.65    dyoung static struct cgd_softc *
    539   1.65    dyoung cgd_spawn(int unit)
    540   1.65    dyoung {
    541   1.65    dyoung 	cfdata_t cf;
    542  1.122   mlelstv 	struct cgd_worker *cw;
    543  1.122   mlelstv 	struct cgd_softc *sc;
    544   1.65    dyoung 
    545  1.122   mlelstv 	cf = kmem_alloc(sizeof(*cf), KM_SLEEP);
    546   1.65    dyoung 	cf->cf_name = cgd_cd.cd_name;
    547   1.65    dyoung 	cf->cf_atname = cgd_cd.cd_name;
    548   1.65    dyoung 	cf->cf_unit = unit;
    549   1.65    dyoung 	cf->cf_fstate = FSTATE_STAR;
    550   1.65    dyoung 
    551  1.122   mlelstv 	cw = cgd_create_one_worker();
    552  1.122   mlelstv 	if (cw == NULL) {
    553  1.122   mlelstv 		kmem_free(cf, sizeof(*cf));
    554  1.122   mlelstv 		return NULL;
    555  1.122   mlelstv 	}
    556  1.122   mlelstv 
    557  1.122   mlelstv 	sc = device_private(config_attach_pseudo(cf));
    558  1.122   mlelstv 	if (sc == NULL) {
    559  1.122   mlelstv 		cgd_destroy_one_worker(cw);
    560  1.122   mlelstv 		return NULL;
    561  1.122   mlelstv 	}
    562  1.122   mlelstv 
    563  1.122   mlelstv 	sc->sc_worker = cw;
    564  1.122   mlelstv 
    565  1.122   mlelstv 	return sc;
    566   1.65    dyoung }
    567   1.65    dyoung 
    568   1.65    dyoung static int
    569   1.65    dyoung cgd_destroy(device_t dev)
    570   1.65    dyoung {
    571  1.122   mlelstv 	struct cgd_softc *sc = device_private(dev);
    572  1.122   mlelstv 	struct cgd_worker *cw = sc->sc_worker;
    573  1.122   mlelstv 	cfdata_t cf;
    574   1.65    dyoung 	int error;
    575    1.1     elric 
    576   1.65    dyoung 	cf = device_cfdata(dev);
    577   1.65    dyoung 	error = config_detach(dev, DETACH_QUIET);
    578   1.65    dyoung 	if (error)
    579   1.65    dyoung 		return error;
    580  1.122   mlelstv 
    581  1.122   mlelstv 	cgd_destroy_one_worker(cw);
    582  1.122   mlelstv 
    583  1.122   mlelstv 	kmem_free(cf, sizeof(*cf));
    584   1.65    dyoung 	return 0;
    585    1.1     elric }
    586    1.1     elric 
    587  1.122   mlelstv static void
    588  1.122   mlelstv cgd_busy(struct cgd_softc *sc)
    589  1.122   mlelstv {
    590  1.122   mlelstv 
    591  1.122   mlelstv 	mutex_enter(&sc->sc_lock);
    592  1.122   mlelstv 	while (sc->sc_busy)
    593  1.122   mlelstv 		cv_wait(&sc->sc_cv, &sc->sc_lock);
    594  1.122   mlelstv 	sc->sc_busy = true;
    595  1.122   mlelstv 	mutex_exit(&sc->sc_lock);
    596  1.122   mlelstv }
    597  1.122   mlelstv 
    598  1.122   mlelstv static void
    599  1.122   mlelstv cgd_unbusy(struct cgd_softc *sc)
    600  1.122   mlelstv {
    601  1.122   mlelstv 
    602  1.122   mlelstv 	mutex_enter(&sc->sc_lock);
    603  1.122   mlelstv 	sc->sc_busy = false;
    604  1.122   mlelstv 	cv_broadcast(&sc->sc_cv);
    605  1.122   mlelstv 	mutex_exit(&sc->sc_lock);
    606  1.122   mlelstv }
    607  1.122   mlelstv 
    608  1.122   mlelstv static struct cgd_worker *
    609  1.122   mlelstv cgd_create_one_worker(void)
    610  1.122   mlelstv {
    611  1.122   mlelstv 	KASSERT(cgd_spawning);
    612  1.122   mlelstv 
    613  1.122   mlelstv 	if (cgd_refcnt++ == 0) {
    614  1.122   mlelstv 		KASSERT(cgd_worker == NULL);
    615  1.122   mlelstv 		cgd_worker = cgd_create_worker();
    616  1.122   mlelstv 	}
    617  1.122   mlelstv 
    618  1.122   mlelstv 	KASSERT(cgd_worker != NULL);
    619  1.122   mlelstv 	return cgd_worker;
    620  1.122   mlelstv }
    621  1.122   mlelstv 
    622  1.122   mlelstv static void
    623  1.122   mlelstv cgd_destroy_one_worker(struct cgd_worker *cw)
    624  1.122   mlelstv {
    625  1.122   mlelstv 	KASSERT(cgd_spawning);
    626  1.122   mlelstv 	KASSERT(cw == cgd_worker);
    627  1.122   mlelstv 
    628  1.122   mlelstv 	if (--cgd_refcnt == 0) {
    629  1.122   mlelstv 		cgd_destroy_worker(cgd_worker);
    630  1.122   mlelstv 		cgd_worker = NULL;
    631  1.122   mlelstv 	}
    632  1.122   mlelstv }
    633  1.122   mlelstv 
    634  1.122   mlelstv static struct cgd_worker *
    635  1.122   mlelstv cgd_create_worker(void)
    636  1.122   mlelstv {
    637  1.122   mlelstv 	struct cgd_worker *cw;
    638  1.122   mlelstv 	struct workqueue *wq;
    639  1.122   mlelstv 	struct pool *cp;
    640  1.122   mlelstv 	int error;
    641  1.122   mlelstv 
    642  1.122   mlelstv 	cw = kmem_alloc(sizeof(struct cgd_worker), KM_SLEEP);
    643  1.122   mlelstv 	cp = kmem_alloc(sizeof(struct pool), KM_SLEEP);
    644  1.122   mlelstv 
    645  1.122   mlelstv 	error = workqueue_create(&wq, "cgd", cgd_process, NULL,
    646  1.122   mlelstv 	                         PRI_BIO, IPL_BIO, WQ_MPSAFE | WQ_PERCPU);
    647  1.122   mlelstv 	if (error) {
    648  1.122   mlelstv 		kmem_free(cp, sizeof(struct pool));
    649  1.122   mlelstv 		kmem_free(cw, sizeof(struct cgd_worker));
    650  1.122   mlelstv 		return NULL;
    651  1.122   mlelstv 	}
    652  1.122   mlelstv 
    653  1.122   mlelstv 	cw->cw_cpool = cp;
    654  1.122   mlelstv 	cw->cw_wq = wq;
    655  1.122   mlelstv 	pool_init(cw->cw_cpool, sizeof(struct cgd_xfer), 0,
    656  1.122   mlelstv 	    0, 0, "cgdcpl", NULL, IPL_BIO);
    657  1.122   mlelstv 
    658  1.122   mlelstv 	mutex_init(&cw->cw_lock, MUTEX_DEFAULT, IPL_BIO);
    659  1.122   mlelstv 
    660  1.122   mlelstv 	return cw;
    661  1.122   mlelstv }
    662  1.122   mlelstv 
    663  1.122   mlelstv static void
    664  1.122   mlelstv cgd_destroy_worker(struct cgd_worker *cw)
    665  1.122   mlelstv {
    666  1.122   mlelstv 	mutex_destroy(&cw->cw_lock);
    667  1.122   mlelstv 
    668  1.122   mlelstv 	if (cw->cw_cpool) {
    669  1.122   mlelstv 		pool_destroy(cw->cw_cpool);
    670  1.122   mlelstv 		kmem_free(cw->cw_cpool, sizeof(struct pool));
    671  1.122   mlelstv 	}
    672  1.122   mlelstv 	if (cw->cw_wq)
    673  1.122   mlelstv 		workqueue_destroy(cw->cw_wq);
    674  1.122   mlelstv 
    675  1.122   mlelstv 	kmem_free(cw, sizeof(struct cgd_worker));
    676  1.122   mlelstv }
    677  1.122   mlelstv 
    678   1.18   thorpej static int
    679   1.32  christos cgdopen(dev_t dev, int flags, int fmt, struct lwp *l)
    680    1.1     elric {
    681  1.122   mlelstv 	struct	cgd_softc *sc;
    682  1.122   mlelstv 	int error;
    683    1.1     elric 
    684   1.56    cegger 	DPRINTF_FOLLOW(("cgdopen(0x%"PRIx64", %d)\n", dev, flags));
    685  1.122   mlelstv 
    686  1.122   mlelstv 	error = cgd_lock(true);
    687  1.122   mlelstv 	if (error)
    688  1.122   mlelstv 		return error;
    689  1.122   mlelstv 	sc = getcgd_softc(dev);
    690  1.122   mlelstv 	if (sc == NULL)
    691  1.122   mlelstv 		sc = cgd_spawn(CGDUNIT(dev));
    692  1.122   mlelstv 	cgd_unlock();
    693  1.122   mlelstv 	if (sc == NULL)
    694  1.122   mlelstv 		return ENXIO;
    695  1.122   mlelstv 
    696  1.122   mlelstv 	return dk_open(&sc->sc_dksc, dev, flags, fmt, l);
    697    1.1     elric }
    698    1.1     elric 
    699   1.18   thorpej static int
    700   1.32  christos cgdclose(dev_t dev, int flags, int fmt, struct lwp *l)
    701    1.1     elric {
    702  1.122   mlelstv 	struct	cgd_softc *sc;
    703  1.122   mlelstv 	struct	dk_softc *dksc;
    704   1.65    dyoung 	int error;
    705    1.1     elric 
    706   1.56    cegger 	DPRINTF_FOLLOW(("cgdclose(0x%"PRIx64", %d)\n", dev, flags));
    707  1.122   mlelstv 
    708  1.122   mlelstv 	error = cgd_lock(false);
    709  1.122   mlelstv 	if (error)
    710  1.122   mlelstv 		return error;
    711  1.122   mlelstv 	sc = getcgd_softc(dev);
    712  1.122   mlelstv 	if (sc == NULL) {
    713  1.122   mlelstv 		error = ENXIO;
    714  1.122   mlelstv 		goto done;
    715  1.122   mlelstv 	}
    716  1.122   mlelstv 
    717  1.122   mlelstv 	dksc = &sc->sc_dksc;
    718   1.98   mlelstv 	if ((error =  dk_close(dksc, dev, flags, fmt, l)) != 0)
    719  1.122   mlelstv 		goto done;
    720   1.65    dyoung 
    721   1.98   mlelstv 	if (!DK_ATTACHED(dksc)) {
    722  1.122   mlelstv 		if ((error = cgd_destroy(sc->sc_dksc.sc_dev)) != 0) {
    723  1.122   mlelstv 			device_printf(dksc->sc_dev,
    724   1.65    dyoung 			    "unable to detach instance\n");
    725  1.122   mlelstv 			goto done;
    726   1.65    dyoung 		}
    727   1.65    dyoung 	}
    728  1.122   mlelstv 
    729  1.122   mlelstv done:
    730  1.122   mlelstv 	cgd_unlock();
    731  1.122   mlelstv 
    732  1.122   mlelstv 	return error;
    733    1.1     elric }
    734    1.1     elric 
    735   1.18   thorpej static void
    736    1.1     elric cgdstrategy(struct buf *bp)
    737    1.1     elric {
    738  1.122   mlelstv 	struct	cgd_softc *sc = getcgd_softc(bp->b_dev);
    739    1.1     elric 
    740    1.1     elric 	DPRINTF_FOLLOW(("cgdstrategy(%p): b_bcount = %ld\n", bp,
    741    1.1     elric 	    (long)bp->b_bcount));
    742   1.72  riastrad 
    743   1.72  riastrad 	/*
    744  1.111   mlelstv 	 * Reject unaligned writes.
    745   1.72  riastrad 	 */
    746  1.111   mlelstv 	if (((uintptr_t)bp->b_data & 3) != 0) {
    747   1.72  riastrad 		bp->b_error = EINVAL;
    748  1.111   mlelstv 		goto bail;
    749   1.72  riastrad 	}
    750   1.72  riastrad 
    751  1.122   mlelstv 	dk_strategy(&sc->sc_dksc, bp);
    752    1.1     elric 	return;
    753  1.111   mlelstv 
    754  1.111   mlelstv bail:
    755  1.111   mlelstv 	bp->b_resid = bp->b_bcount;
    756  1.111   mlelstv 	biodone(bp);
    757  1.111   mlelstv 	return;
    758    1.1     elric }
    759    1.1     elric 
    760   1.18   thorpej static int
    761    1.1     elric cgdsize(dev_t dev)
    762    1.1     elric {
    763  1.122   mlelstv 	struct cgd_softc *sc = getcgd_softc(dev);
    764    1.1     elric 
    765   1.56    cegger 	DPRINTF_FOLLOW(("cgdsize(0x%"PRIx64")\n", dev));
    766  1.122   mlelstv 	if (!sc)
    767    1.1     elric 		return -1;
    768  1.122   mlelstv 	return dk_size(&sc->sc_dksc, dev);
    769    1.1     elric }
    770    1.1     elric 
    771   1.16     elric /*
    772   1.16     elric  * cgd_{get,put}data are functions that deal with getting a buffer
    773  1.122   mlelstv  * for the new encrypted data.
    774  1.122   mlelstv  * We can no longer have a buffer per device, we need a buffer per
    775  1.122   mlelstv  * work queue...
    776   1.16     elric  */
    777   1.16     elric 
    778   1.16     elric static void *
    779  1.122   mlelstv cgd_getdata(struct cgd_softc *sc, unsigned long size)
    780   1.16     elric {
    781  1.122   mlelstv 	void *data = NULL;
    782   1.16     elric 
    783  1.122   mlelstv 	mutex_enter(&sc->sc_lock);
    784  1.122   mlelstv 	if (!sc->sc_data_used) {
    785  1.122   mlelstv 		sc->sc_data_used = true;
    786  1.122   mlelstv 		data = sc->sc_data;
    787   1.16     elric 	}
    788  1.122   mlelstv 	mutex_exit(&sc->sc_lock);
    789   1.16     elric 
    790   1.16     elric 	if (data)
    791   1.16     elric 		return data;
    792   1.16     elric 
    793  1.124       tnn 	return kmem_intr_alloc(size, KM_NOSLEEP);
    794   1.16     elric }
    795   1.16     elric 
    796    1.1     elric static void
    797  1.124       tnn cgd_putdata(struct cgd_softc *sc, void *data, unsigned long size)
    798   1.16     elric {
    799   1.16     elric 
    800  1.122   mlelstv 	if (data == sc->sc_data) {
    801  1.122   mlelstv 		mutex_enter(&sc->sc_lock);
    802  1.122   mlelstv 		sc->sc_data_used = false;
    803  1.122   mlelstv 		mutex_exit(&sc->sc_lock);
    804  1.122   mlelstv 	} else
    805  1.124       tnn 		kmem_intr_free(data, size);
    806   1.16     elric }
    807   1.16     elric 
    808   1.99   mlelstv static int
    809   1.99   mlelstv cgd_diskstart(device_t dev, struct buf *bp)
    810    1.1     elric {
    811  1.122   mlelstv 	struct	cgd_softc *sc = device_private(dev);
    812  1.122   mlelstv 	struct	cgd_worker *cw = sc->sc_worker;
    813  1.122   mlelstv 	struct	dk_softc *dksc = &sc->sc_dksc;
    814  1.105   mlelstv 	struct	disk_geom *dg = &dksc->sc_dkdev.dk_geom;
    815  1.122   mlelstv 	struct	cgd_xfer *cx;
    816   1.99   mlelstv 	struct	buf *nbp;
    817   1.44  christos 	void *	newaddr;
    818    1.1     elric 	daddr_t	bn;
    819    1.1     elric 
    820   1.99   mlelstv 	DPRINTF_FOLLOW(("cgd_diskstart(%p, %p)\n", dksc, bp));
    821    1.1     elric 
    822   1.99   mlelstv 	bn = bp->b_rawblkno;
    823   1.22     perry 
    824   1.99   mlelstv 	/*
    825   1.99   mlelstv 	 * We attempt to allocate all of our resources up front, so that
    826   1.99   mlelstv 	 * we can fail quickly if they are unavailable.
    827   1.99   mlelstv 	 */
    828  1.122   mlelstv 	nbp = getiobuf(sc->sc_tvn, false);
    829   1.99   mlelstv 	if (nbp == NULL)
    830   1.99   mlelstv 		return EAGAIN;
    831   1.16     elric 
    832  1.122   mlelstv 	cx = pool_get(cw->cw_cpool, PR_NOWAIT);
    833  1.122   mlelstv 	if (cx == NULL) {
    834  1.122   mlelstv 		putiobuf(nbp);
    835  1.122   mlelstv 		return EAGAIN;
    836  1.122   mlelstv 	}
    837  1.122   mlelstv 
    838  1.122   mlelstv 	cx->cx_sc = sc;
    839  1.122   mlelstv 	cx->cx_obp = bp;
    840  1.122   mlelstv 	cx->cx_nbp = nbp;
    841  1.122   mlelstv 	cx->cx_srcv = cx->cx_dstv = bp->b_data;
    842  1.122   mlelstv 	cx->cx_blkno = bn;
    843  1.122   mlelstv 	cx->cx_secsize = dg->dg_secsize;
    844  1.122   mlelstv 
    845   1.99   mlelstv 	/*
    846   1.99   mlelstv 	 * If we are writing, then we need to encrypt the outgoing
    847   1.99   mlelstv 	 * block into a new block of memory.
    848   1.99   mlelstv 	 */
    849   1.99   mlelstv 	if ((bp->b_flags & B_READ) == 0) {
    850  1.122   mlelstv 		newaddr = cgd_getdata(sc, bp->b_bcount);
    851   1.99   mlelstv 		if (!newaddr) {
    852  1.122   mlelstv 			pool_put(cw->cw_cpool, cx);
    853   1.99   mlelstv 			putiobuf(nbp);
    854   1.99   mlelstv 			return EAGAIN;
    855   1.16     elric 		}
    856  1.122   mlelstv 
    857  1.122   mlelstv 		cx->cx_dstv = newaddr;
    858  1.122   mlelstv 		cx->cx_len = bp->b_bcount;
    859  1.122   mlelstv 		cx->cx_dir = CGD_CIPHER_ENCRYPT;
    860  1.122   mlelstv 
    861  1.122   mlelstv 		cgd_enqueue(sc, cx);
    862  1.122   mlelstv 		return 0;
    863   1.99   mlelstv 	}
    864    1.1     elric 
    865  1.122   mlelstv 	cgd_diskstart2(sc, cx);
    866  1.122   mlelstv 	return 0;
    867  1.122   mlelstv }
    868  1.122   mlelstv 
    869  1.122   mlelstv static void
    870  1.122   mlelstv cgd_diskstart2(struct cgd_softc *sc, struct cgd_xfer *cx)
    871  1.122   mlelstv {
    872  1.122   mlelstv 	struct	vnode *vp;
    873  1.122   mlelstv 	struct	buf *bp;
    874  1.122   mlelstv 	struct	buf *nbp;
    875  1.122   mlelstv 
    876  1.122   mlelstv 	bp = cx->cx_obp;
    877  1.122   mlelstv 	nbp = cx->cx_nbp;
    878  1.122   mlelstv 
    879  1.122   mlelstv 	nbp->b_data = cx->cx_dstv;
    880   1.99   mlelstv 	nbp->b_flags = bp->b_flags;
    881   1.99   mlelstv 	nbp->b_oflags = bp->b_oflags;
    882   1.99   mlelstv 	nbp->b_cflags = bp->b_cflags;
    883   1.99   mlelstv 	nbp->b_iodone = cgdiodone;
    884   1.99   mlelstv 	nbp->b_proc = bp->b_proc;
    885  1.122   mlelstv 	nbp->b_blkno = btodb(cx->cx_blkno * cx->cx_secsize);
    886   1.99   mlelstv 	nbp->b_bcount = bp->b_bcount;
    887  1.122   mlelstv 	nbp->b_private = cx;
    888   1.99   mlelstv 
    889   1.99   mlelstv 	BIO_COPYPRIO(nbp, bp);
    890   1.99   mlelstv 
    891   1.99   mlelstv 	if ((nbp->b_flags & B_READ) == 0) {
    892   1.99   mlelstv 		vp = nbp->b_vp;
    893   1.99   mlelstv 		mutex_enter(vp->v_interlock);
    894   1.99   mlelstv 		vp->v_numoutput++;
    895   1.99   mlelstv 		mutex_exit(vp->v_interlock);
    896   1.17       dbj 	}
    897  1.122   mlelstv 	VOP_STRATEGY(sc->sc_tvn, nbp);
    898    1.1     elric }
    899    1.1     elric 
    900   1.18   thorpej static void
    901   1.17       dbj cgdiodone(struct buf *nbp)
    902    1.1     elric {
    903  1.122   mlelstv 	struct	cgd_xfer *cx = nbp->b_private;
    904  1.122   mlelstv 	struct	buf *obp = cx->cx_obp;
    905  1.122   mlelstv 	struct	cgd_softc *sc = getcgd_softc(obp->b_dev);
    906  1.122   mlelstv 	struct	dk_softc *dksc = &sc->sc_dksc;
    907  1.105   mlelstv 	struct	disk_geom *dg = &dksc->sc_dkdev.dk_geom;
    908  1.105   mlelstv 	daddr_t	bn;
    909   1.22     perry 
    910  1.122   mlelstv 	KDASSERT(sc);
    911    1.1     elric 
    912   1.17       dbj 	DPRINTF_FOLLOW(("cgdiodone(%p)\n", nbp));
    913   1.20      yamt 	DPRINTF(CGDB_IO, ("cgdiodone: bp %p bcount %d resid %d\n",
    914    1.1     elric 	    obp, obp->b_bcount, obp->b_resid));
    915  1.107   msaitoh 	DPRINTF(CGDB_IO, (" dev 0x%"PRIx64", nbp %p bn %" PRId64
    916  1.107   msaitoh 	    " addr %p bcnt %d\n", nbp->b_dev, nbp, nbp->b_blkno, nbp->b_data,
    917  1.107   msaitoh 		nbp->b_bcount));
    918   1.46        ad 	if (nbp->b_error != 0) {
    919   1.46        ad 		obp->b_error = nbp->b_error;
    920   1.62  christos 		DPRINTF(CGDB_IO, ("%s: error %d\n", dksc->sc_xname,
    921   1.62  christos 		    obp->b_error));
    922    1.1     elric 	}
    923    1.1     elric 
    924   1.16     elric 	/* Perform the decryption if we are reading.
    925    1.1     elric 	 *
    926    1.1     elric 	 * Note: use the blocknumber from nbp, since it is what
    927    1.1     elric 	 *       we used to encrypt the blocks.
    928    1.1     elric 	 */
    929    1.1     elric 
    930  1.105   mlelstv 	if (nbp->b_flags & B_READ) {
    931  1.105   mlelstv 		bn = dbtob(nbp->b_blkno) / dg->dg_secsize;
    932  1.122   mlelstv 
    933  1.122   mlelstv 		cx->cx_obp     = obp;
    934  1.122   mlelstv 		cx->cx_nbp     = nbp;
    935  1.122   mlelstv 		cx->cx_dstv    = obp->b_data;
    936  1.122   mlelstv 		cx->cx_srcv    = obp->b_data;
    937  1.122   mlelstv 		cx->cx_len     = obp->b_bcount;
    938  1.122   mlelstv 		cx->cx_blkno   = bn;
    939  1.122   mlelstv 		cx->cx_secsize = dg->dg_secsize;
    940  1.122   mlelstv 		cx->cx_dir     = CGD_CIPHER_DECRYPT;
    941  1.122   mlelstv 
    942  1.122   mlelstv 		cgd_enqueue(sc, cx);
    943  1.122   mlelstv 		return;
    944  1.105   mlelstv 	}
    945    1.1     elric 
    946  1.122   mlelstv 	cgd_iodone2(sc, cx);
    947  1.122   mlelstv }
    948  1.122   mlelstv 
    949  1.122   mlelstv static void
    950  1.122   mlelstv cgd_iodone2(struct cgd_softc *sc, struct cgd_xfer *cx)
    951  1.122   mlelstv {
    952  1.122   mlelstv 	struct cgd_worker *cw = sc->sc_worker;
    953  1.122   mlelstv 	struct buf *obp = cx->cx_obp;
    954  1.122   mlelstv 	struct buf *nbp = cx->cx_nbp;
    955  1.122   mlelstv 	struct dk_softc *dksc = &sc->sc_dksc;
    956  1.122   mlelstv 
    957  1.122   mlelstv 	pool_put(cw->cw_cpool, cx);
    958  1.122   mlelstv 
    959   1.16     elric 	/* If we allocated memory, free it now... */
    960    1.1     elric 	if (nbp->b_data != obp->b_data)
    961  1.124       tnn 		cgd_putdata(sc, nbp->b_data, nbp->b_bcount);
    962    1.1     elric 
    963   1.33      yamt 	putiobuf(nbp);
    964    1.1     elric 
    965  1.100   mlelstv 	/* Request is complete for whatever reason */
    966  1.100   mlelstv 	obp->b_resid = 0;
    967  1.100   mlelstv 	if (obp->b_error != 0)
    968  1.100   mlelstv 		obp->b_resid = obp->b_bcount;
    969  1.100   mlelstv 
    970   1.99   mlelstv 	dk_done(dksc, obp);
    971  1.101   mlelstv 	dk_start(dksc, NULL);
    972    1.1     elric }
    973    1.1     elric 
    974  1.108  riastrad static int
    975  1.108  riastrad cgd_dumpblocks(device_t dev, void *va, daddr_t blkno, int nblk)
    976  1.108  riastrad {
    977  1.108  riastrad 	struct cgd_softc *sc = device_private(dev);
    978  1.108  riastrad 	struct dk_softc *dksc = &sc->sc_dksc;
    979  1.108  riastrad 	struct disk_geom *dg = &dksc->sc_dkdev.dk_geom;
    980  1.108  riastrad 	size_t nbytes, blksize;
    981  1.108  riastrad 	void *buf;
    982  1.108  riastrad 	int error;
    983  1.108  riastrad 
    984  1.108  riastrad 	/*
    985  1.108  riastrad 	 * dk_dump gives us units of disklabel sectors.  Everything
    986  1.108  riastrad 	 * else in cgd uses units of diskgeom sectors.  These had
    987  1.108  riastrad 	 * better agree; otherwise we need to figure out how to convert
    988  1.108  riastrad 	 * between them.
    989  1.108  riastrad 	 */
    990  1.108  riastrad 	KASSERTMSG((dg->dg_secsize == dksc->sc_dkdev.dk_label->d_secsize),
    991  1.108  riastrad 	    "diskgeom secsize %"PRIu32" != disklabel secsize %"PRIu32,
    992  1.108  riastrad 	    dg->dg_secsize, dksc->sc_dkdev.dk_label->d_secsize);
    993  1.108  riastrad 	blksize = dg->dg_secsize;
    994  1.108  riastrad 
    995  1.108  riastrad 	/*
    996  1.108  riastrad 	 * Compute the number of bytes in this request, which dk_dump
    997  1.108  riastrad 	 * has `helpfully' converted to a number of blocks for us.
    998  1.108  riastrad 	 */
    999  1.108  riastrad 	nbytes = nblk*blksize;
   1000  1.108  riastrad 
   1001  1.108  riastrad 	/* Try to acquire a buffer to store the ciphertext.  */
   1002  1.122   mlelstv 	buf = cgd_getdata(sc, nbytes);
   1003  1.108  riastrad 	if (buf == NULL)
   1004  1.108  riastrad 		/* Out of memory: give up.  */
   1005  1.108  riastrad 		return ENOMEM;
   1006  1.108  riastrad 
   1007  1.108  riastrad 	/* Encrypt the caller's data into the temporary buffer.  */
   1008  1.108  riastrad 	cgd_cipher(sc, buf, va, nbytes, blkno, blksize, CGD_CIPHER_ENCRYPT);
   1009  1.108  riastrad 
   1010  1.108  riastrad 	/* Pass it on to the underlying disk device.  */
   1011  1.108  riastrad 	error = bdev_dump(sc->sc_tdev, blkno, buf, nbytes);
   1012  1.108  riastrad 
   1013  1.108  riastrad 	/* Release the buffer.  */
   1014  1.124       tnn 	cgd_putdata(sc, buf, nbytes);
   1015  1.108  riastrad 
   1016  1.108  riastrad 	/* Return any error from the underlying disk device.  */
   1017  1.108  riastrad 	return error;
   1018  1.108  riastrad }
   1019  1.108  riastrad 
   1020    1.1     elric /* XXX: we should probably put these into dksubr.c, mostly */
   1021   1.18   thorpej static int
   1022   1.40  christos cgdread(dev_t dev, struct uio *uio, int flags)
   1023    1.1     elric {
   1024  1.122   mlelstv 	struct	cgd_softc *sc;
   1025    1.1     elric 	struct	dk_softc *dksc;
   1026    1.1     elric 
   1027   1.56    cegger 	DPRINTF_FOLLOW(("cgdread(0x%llx, %p, %d)\n",
   1028   1.56    cegger 	    (unsigned long long)dev, uio, flags));
   1029  1.122   mlelstv 	sc = getcgd_softc(dev);
   1030  1.122   mlelstv 	if (sc == NULL)
   1031  1.122   mlelstv 		return ENXIO;
   1032  1.122   mlelstv 	dksc = &sc->sc_dksc;
   1033   1.98   mlelstv 	if (!DK_ATTACHED(dksc))
   1034    1.1     elric 		return ENXIO;
   1035    1.1     elric 	return physio(cgdstrategy, NULL, dev, B_READ, minphys, uio);
   1036    1.1     elric }
   1037    1.1     elric 
   1038    1.1     elric /* XXX: we should probably put these into dksubr.c, mostly */
   1039   1.18   thorpej static int
   1040   1.40  christos cgdwrite(dev_t dev, struct uio *uio, int flags)
   1041    1.1     elric {
   1042  1.122   mlelstv 	struct	cgd_softc *sc;
   1043    1.1     elric 	struct	dk_softc *dksc;
   1044    1.1     elric 
   1045   1.56    cegger 	DPRINTF_FOLLOW(("cgdwrite(0x%"PRIx64", %p, %d)\n", dev, uio, flags));
   1046  1.122   mlelstv 	sc = getcgd_softc(dev);
   1047  1.122   mlelstv 	if (sc == NULL)
   1048  1.122   mlelstv 		return ENXIO;
   1049  1.122   mlelstv 	dksc = &sc->sc_dksc;
   1050   1.98   mlelstv 	if (!DK_ATTACHED(dksc))
   1051    1.1     elric 		return ENXIO;
   1052    1.1     elric 	return physio(cgdstrategy, NULL, dev, B_WRITE, minphys, uio);
   1053    1.1     elric }
   1054    1.1     elric 
   1055   1.18   thorpej static int
   1056   1.44  christos cgdioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l)
   1057    1.1     elric {
   1058  1.122   mlelstv 	struct	cgd_softc *sc;
   1059    1.1     elric 	struct	dk_softc *dksc;
   1060    1.1     elric 	int	part = DISKPART(dev);
   1061    1.1     elric 	int	pmask = 1 << part;
   1062  1.122   mlelstv 	int	error;
   1063    1.1     elric 
   1064   1.56    cegger 	DPRINTF_FOLLOW(("cgdioctl(0x%"PRIx64", %ld, %p, %d, %p)\n",
   1065   1.32  christos 	    dev, cmd, data, flag, l));
   1066   1.78  christos 
   1067    1.1     elric 	switch (cmd) {
   1068   1.93  christos 	case CGDIOCGET:
   1069   1.93  christos 		return cgd_ioctl_get(dev, data, l);
   1070    1.1     elric 	case CGDIOCSET:
   1071    1.1     elric 	case CGDIOCCLR:
   1072    1.1     elric 		if ((flag & FWRITE) == 0)
   1073    1.1     elric 			return EBADF;
   1074   1.78  christos 		/* FALLTHROUGH */
   1075   1.78  christos 	default:
   1076  1.122   mlelstv 		sc = getcgd_softc(dev);
   1077  1.122   mlelstv 		if (sc == NULL)
   1078  1.122   mlelstv 			return ENXIO;
   1079  1.122   mlelstv 		dksc = &sc->sc_dksc;
   1080   1.78  christos 		break;
   1081    1.1     elric 	}
   1082    1.1     elric 
   1083    1.1     elric 	switch (cmd) {
   1084    1.1     elric 	case CGDIOCSET:
   1085  1.122   mlelstv 		cgd_busy(sc);
   1086   1.98   mlelstv 		if (DK_ATTACHED(dksc))
   1087  1.122   mlelstv 			error = EBUSY;
   1088  1.122   mlelstv 		else
   1089  1.122   mlelstv 			error = cgd_ioctl_set(sc, data, l);
   1090  1.122   mlelstv 		cgd_unbusy(sc);
   1091  1.122   mlelstv 		break;
   1092    1.1     elric 	case CGDIOCCLR:
   1093  1.122   mlelstv 		cgd_busy(sc);
   1094  1.122   mlelstv 		if (DK_BUSY(&sc->sc_dksc, pmask))
   1095  1.122   mlelstv 			error = EBUSY;
   1096  1.122   mlelstv 		else
   1097  1.122   mlelstv 			error = cgd_ioctl_clr(sc, l);
   1098  1.122   mlelstv 		cgd_unbusy(sc);
   1099  1.122   mlelstv 		break;
   1100  1.114  jdolecek 	case DIOCGCACHE:
   1101   1.57       apb 	case DIOCCACHESYNC:
   1102  1.122   mlelstv 		cgd_busy(sc);
   1103  1.122   mlelstv 		if (!DK_ATTACHED(dksc)) {
   1104  1.122   mlelstv 			cgd_unbusy(sc);
   1105  1.122   mlelstv 			error = ENOENT;
   1106  1.122   mlelstv 			break;
   1107  1.122   mlelstv 		}
   1108   1.57       apb 		/*
   1109   1.57       apb 		 * We pass this call down to the underlying disk.
   1110   1.57       apb 		 */
   1111  1.122   mlelstv 		error = VOP_IOCTL(sc->sc_tvn, cmd, data, flag, l->l_cred);
   1112  1.122   mlelstv 		cgd_unbusy(sc);
   1113  1.122   mlelstv 		break;
   1114  1.121  riastrad 	case DIOCGSECTORALIGN: {
   1115  1.121  riastrad 		struct disk_sectoralign *dsa = data;
   1116  1.121  riastrad 
   1117  1.122   mlelstv 		cgd_busy(sc);
   1118  1.122   mlelstv 		if (!DK_ATTACHED(dksc)) {
   1119  1.122   mlelstv 			cgd_unbusy(sc);
   1120  1.122   mlelstv 			error = ENOENT;
   1121  1.122   mlelstv 			break;
   1122  1.122   mlelstv 		}
   1123  1.121  riastrad 
   1124  1.121  riastrad 		/* Get the underlying disk's sector alignment.  */
   1125  1.122   mlelstv 		error = VOP_IOCTL(sc->sc_tvn, cmd, data, flag, l->l_cred);
   1126  1.122   mlelstv 		if (error) {
   1127  1.122   mlelstv 			cgd_unbusy(sc);
   1128  1.122   mlelstv 			break;
   1129  1.122   mlelstv 		}
   1130  1.121  riastrad 
   1131  1.121  riastrad 		/* Adjust for the disklabel partition if necessary.  */
   1132  1.121  riastrad 		if (part != RAW_PART) {
   1133  1.121  riastrad 			struct disklabel *lp = dksc->sc_dkdev.dk_label;
   1134  1.121  riastrad 			daddr_t offset = lp->d_partitions[part].p_offset;
   1135  1.121  riastrad 			uint32_t r = offset % dsa->dsa_alignment;
   1136  1.121  riastrad 
   1137  1.121  riastrad 			if (r < dsa->dsa_firstaligned)
   1138  1.121  riastrad 				dsa->dsa_firstaligned = dsa->dsa_firstaligned
   1139  1.121  riastrad 				    - r;
   1140  1.121  riastrad 			else
   1141  1.121  riastrad 				dsa->dsa_firstaligned = (dsa->dsa_firstaligned
   1142  1.121  riastrad 				    + dsa->dsa_alignment) - r;
   1143  1.121  riastrad 		}
   1144  1.122   mlelstv 		cgd_unbusy(sc);
   1145  1.122   mlelstv 		break;
   1146  1.121  riastrad 	}
   1147  1.103  christos 	case DIOCGSTRATEGY:
   1148  1.103  christos 	case DIOCSSTRATEGY:
   1149  1.122   mlelstv 		if (!DK_ATTACHED(dksc)) {
   1150  1.122   mlelstv 			error = ENOENT;
   1151  1.122   mlelstv 			break;
   1152  1.122   mlelstv 		}
   1153  1.103  christos 		/*FALLTHROUGH*/
   1154    1.1     elric 	default:
   1155  1.122   mlelstv 		error = dk_ioctl(dksc, dev, cmd, data, flag, l);
   1156  1.122   mlelstv 		break;
   1157   1.93  christos 	case CGDIOCGET:
   1158   1.93  christos 		KASSERT(0);
   1159  1.122   mlelstv 		error = EINVAL;
   1160    1.1     elric 	}
   1161  1.122   mlelstv 
   1162  1.122   mlelstv 	return error;
   1163    1.1     elric }
   1164    1.1     elric 
   1165   1.18   thorpej static int
   1166   1.44  christos cgddump(dev_t dev, daddr_t blkno, void *va, size_t size)
   1167    1.1     elric {
   1168  1.122   mlelstv 	struct	cgd_softc *sc;
   1169    1.1     elric 
   1170   1.56    cegger 	DPRINTF_FOLLOW(("cgddump(0x%"PRIx64", %" PRId64 ", %p, %lu)\n",
   1171   1.56    cegger 	    dev, blkno, va, (unsigned long)size));
   1172  1.122   mlelstv 	sc = getcgd_softc(dev);
   1173  1.122   mlelstv 	if (sc == NULL)
   1174  1.122   mlelstv 		return ENXIO;
   1175  1.122   mlelstv 	return dk_dump(&sc->sc_dksc, dev, blkno, va, size, DK_DUMP_RECURSIVE);
   1176    1.1     elric }
   1177    1.1     elric 
   1178    1.1     elric /*
   1179    1.1     elric  * XXXrcd:
   1180    1.1     elric  *  for now we hardcode the maximum key length.
   1181    1.1     elric  */
   1182    1.1     elric #define MAX_KEYSIZE	1024
   1183    1.1     elric 
   1184   1.53  christos static const struct {
   1185   1.53  christos 	const char *n;
   1186   1.53  christos 	int v;
   1187   1.53  christos 	int d;
   1188   1.53  christos } encblkno[] = {
   1189   1.53  christos 	{ "encblkno",  CGD_CIPHER_CBC_ENCBLKNO8, 1 },
   1190   1.53  christos 	{ "encblkno8", CGD_CIPHER_CBC_ENCBLKNO8, 1 },
   1191   1.53  christos 	{ "encblkno1", CGD_CIPHER_CBC_ENCBLKNO1, 8 },
   1192   1.53  christos };
   1193   1.53  christos 
   1194    1.1     elric /* ARGSUSED */
   1195    1.1     elric static int
   1196  1.122   mlelstv cgd_ioctl_set(struct cgd_softc *sc, void *data, struct lwp *l)
   1197    1.1     elric {
   1198    1.1     elric 	struct	 cgd_ioctl *ci = data;
   1199    1.1     elric 	struct	 vnode *vp;
   1200    1.1     elric 	int	 ret;
   1201   1.53  christos 	size_t	 i;
   1202   1.43    cbiere 	size_t	 keybytes;			/* key length in bytes */
   1203   1.27  drochner 	const char *cp;
   1204   1.71  dholland 	struct pathbuf *pb;
   1205   1.36  christos 	char	 *inbuf;
   1206  1.122   mlelstv 	struct dk_softc *dksc = &sc->sc_dksc;
   1207    1.1     elric 
   1208    1.1     elric 	cp = ci->ci_disk;
   1209   1.71  dholland 
   1210   1.71  dholland 	ret = pathbuf_copyin(ci->ci_disk, &pb);
   1211   1.71  dholland 	if (ret != 0) {
   1212   1.71  dholland 		return ret;
   1213   1.71  dholland 	}
   1214  1.117   mlelstv 	ret = vn_bdev_openpath(pb, &vp, l);
   1215   1.71  dholland 	pathbuf_destroy(pb);
   1216   1.71  dholland 	if (ret != 0) {
   1217    1.1     elric 		return ret;
   1218   1.71  dholland 	}
   1219    1.1     elric 
   1220  1.122   mlelstv 	inbuf = kmem_alloc(MAX_KEYSIZE, KM_SLEEP);
   1221   1.36  christos 
   1222  1.122   mlelstv 	if ((ret = cgdinit(sc, cp, vp, l)) != 0)
   1223    1.1     elric 		goto bail;
   1224    1.1     elric 
   1225   1.36  christos 	(void)memset(inbuf, 0, MAX_KEYSIZE);
   1226    1.1     elric 	ret = copyinstr(ci->ci_alg, inbuf, 256, NULL);
   1227    1.1     elric 	if (ret)
   1228    1.1     elric 		goto bail;
   1229  1.122   mlelstv 	sc->sc_cfuncs = cryptfuncs_find(inbuf);
   1230  1.122   mlelstv 	if (!sc->sc_cfuncs) {
   1231    1.1     elric 		ret = EINVAL;
   1232    1.1     elric 		goto bail;
   1233    1.1     elric 	}
   1234    1.1     elric 
   1235   1.43    cbiere 	(void)memset(inbuf, 0, MAX_KEYSIZE);
   1236   1.36  christos 	ret = copyinstr(ci->ci_ivmethod, inbuf, MAX_KEYSIZE, NULL);
   1237    1.1     elric 	if (ret)
   1238    1.1     elric 		goto bail;
   1239   1.53  christos 
   1240   1.53  christos 	for (i = 0; i < __arraycount(encblkno); i++)
   1241   1.53  christos 		if (strcmp(encblkno[i].n, inbuf) == 0)
   1242   1.53  christos 			break;
   1243   1.53  christos 
   1244   1.53  christos 	if (i == __arraycount(encblkno)) {
   1245    1.1     elric 		ret = EINVAL;
   1246    1.1     elric 		goto bail;
   1247    1.1     elric 	}
   1248    1.1     elric 
   1249   1.15       dan 	keybytes = ci->ci_keylen / 8 + 1;
   1250   1.15       dan 	if (keybytes > MAX_KEYSIZE) {
   1251    1.1     elric 		ret = EINVAL;
   1252    1.1     elric 		goto bail;
   1253    1.1     elric 	}
   1254   1.53  christos 
   1255   1.36  christos 	(void)memset(inbuf, 0, MAX_KEYSIZE);
   1256   1.15       dan 	ret = copyin(ci->ci_key, inbuf, keybytes);
   1257    1.1     elric 	if (ret)
   1258    1.1     elric 		goto bail;
   1259    1.1     elric 
   1260  1.122   mlelstv 	sc->sc_cdata.cf_blocksize = ci->ci_blocksize;
   1261  1.122   mlelstv 	sc->sc_cdata.cf_mode = encblkno[i].v;
   1262  1.122   mlelstv 	sc->sc_cdata.cf_keylen = ci->ci_keylen;
   1263  1.122   mlelstv 	sc->sc_cdata.cf_priv = sc->sc_cfuncs->cf_init(ci->ci_keylen, inbuf,
   1264  1.122   mlelstv 	    &sc->sc_cdata.cf_blocksize);
   1265  1.122   mlelstv 	if (sc->sc_cdata.cf_blocksize > CGD_MAXBLOCKSIZE) {
   1266   1.62  christos 	    log(LOG_WARNING, "cgd: Disallowed cipher with blocksize %zu > %u\n",
   1267  1.122   mlelstv 		sc->sc_cdata.cf_blocksize, CGD_MAXBLOCKSIZE);
   1268  1.122   mlelstv 	    sc->sc_cdata.cf_priv = NULL;
   1269   1.62  christos 	}
   1270   1.78  christos 
   1271   1.53  christos 	/*
   1272   1.53  christos 	 * The blocksize is supposed to be in bytes. Unfortunately originally
   1273   1.53  christos 	 * it was expressed in bits. For compatibility we maintain encblkno
   1274   1.53  christos 	 * and encblkno8.
   1275   1.53  christos 	 */
   1276  1.122   mlelstv 	sc->sc_cdata.cf_blocksize /= encblkno[i].d;
   1277   1.97  riastrad 	(void)explicit_memset(inbuf, 0, MAX_KEYSIZE);
   1278  1.122   mlelstv 	if (!sc->sc_cdata.cf_priv) {
   1279    1.1     elric 		ret = EINVAL;		/* XXX is this the right error? */
   1280    1.1     elric 		goto bail;
   1281    1.1     elric 	}
   1282  1.122   mlelstv 	kmem_free(inbuf, MAX_KEYSIZE);
   1283    1.1     elric 
   1284   1.80  christos 	bufq_alloc(&dksc->sc_bufq, "fcfs", 0);
   1285   1.16     elric 
   1286  1.124       tnn 	sc->sc_data = kmem_alloc(MAXPHYS, KM_SLEEP);
   1287  1.122   mlelstv 	sc->sc_data_used = false;
   1288   1.16     elric 
   1289   1.98   mlelstv 	/* Attach the disk. */
   1290   1.98   mlelstv 	dk_attach(dksc);
   1291   1.98   mlelstv 	disk_attach(&dksc->sc_dkdev);
   1292    1.1     elric 
   1293   1.80  christos 	disk_set_info(dksc->sc_dev, &dksc->sc_dkdev, NULL);
   1294   1.77     elric 
   1295   1.29      yamt 	/* Discover wedges on this disk. */
   1296   1.80  christos 	dkwedge_discover(&dksc->sc_dkdev);
   1297   1.29      yamt 
   1298    1.1     elric 	return 0;
   1299    1.1     elric 
   1300    1.1     elric bail:
   1301  1.122   mlelstv 	kmem_free(inbuf, MAX_KEYSIZE);
   1302   1.51        ad 	(void)vn_close(vp, FREAD|FWRITE, l->l_cred);
   1303    1.1     elric 	return ret;
   1304    1.1     elric }
   1305    1.1     elric 
   1306    1.1     elric /* ARGSUSED */
   1307    1.1     elric static int
   1308  1.122   mlelstv cgd_ioctl_clr(struct cgd_softc *sc, struct lwp *l)
   1309    1.1     elric {
   1310  1.122   mlelstv 	struct	dk_softc *dksc = &sc->sc_dksc;
   1311   1.65    dyoung 
   1312   1.98   mlelstv 	if (!DK_ATTACHED(dksc))
   1313   1.65    dyoung 		return ENXIO;
   1314   1.16     elric 
   1315   1.29      yamt 	/* Delete all of our wedges. */
   1316   1.80  christos 	dkwedge_delall(&dksc->sc_dkdev);
   1317   1.29      yamt 
   1318   1.16     elric 	/* Kill off any queued buffers. */
   1319  1.104   mlelstv 	dk_drain(dksc);
   1320   1.80  christos 	bufq_free(dksc->sc_bufq);
   1321    1.1     elric 
   1322  1.122   mlelstv 	(void)vn_close(sc->sc_tvn, FREAD|FWRITE, l->l_cred);
   1323  1.122   mlelstv 	sc->sc_cfuncs->cf_destroy(sc->sc_cdata.cf_priv);
   1324  1.122   mlelstv 	kmem_free(sc->sc_tpath, sc->sc_tpathlen);
   1325  1.124       tnn 	kmem_free(sc->sc_data, MAXPHYS);
   1326  1.122   mlelstv 	sc->sc_data_used = false;
   1327   1.98   mlelstv 	dk_detach(dksc);
   1328   1.80  christos 	disk_detach(&dksc->sc_dkdev);
   1329    1.1     elric 
   1330    1.1     elric 	return 0;
   1331    1.1     elric }
   1332    1.1     elric 
   1333    1.1     elric static int
   1334   1.78  christos cgd_ioctl_get(dev_t dev, void *data, struct lwp *l)
   1335   1.78  christos {
   1336  1.122   mlelstv 	struct cgd_softc *sc;
   1337   1.78  christos 	struct cgd_user *cgu;
   1338  1.122   mlelstv 	int unit, error;
   1339   1.78  christos 
   1340   1.78  christos 	unit = CGDUNIT(dev);
   1341   1.78  christos 	cgu = (struct cgd_user *)data;
   1342   1.78  christos 
   1343   1.78  christos 	DPRINTF_FOLLOW(("cgd_ioctl_get(0x%"PRIx64", %d, %p, %p)\n",
   1344   1.78  christos 			   dev, unit, data, l));
   1345   1.78  christos 
   1346  1.122   mlelstv 	/* XXX, we always return this units data, so if cgu_unit is
   1347  1.122   mlelstv 	 * not -1, that field doesn't match the rest
   1348  1.122   mlelstv 	 */
   1349   1.78  christos 	if (cgu->cgu_unit == -1)
   1350   1.78  christos 		cgu->cgu_unit = unit;
   1351   1.78  christos 
   1352   1.78  christos 	if (cgu->cgu_unit < 0)
   1353   1.78  christos 		return EINVAL;	/* XXX: should this be ENXIO? */
   1354   1.78  christos 
   1355  1.122   mlelstv 	error = cgd_lock(false);
   1356  1.122   mlelstv 	if (error)
   1357  1.122   mlelstv 		return error;
   1358  1.122   mlelstv 
   1359  1.122   mlelstv 	sc = device_lookup_private(&cgd_cd, unit);
   1360  1.122   mlelstv 	if (sc == NULL || !DK_ATTACHED(&sc->sc_dksc)) {
   1361   1.78  christos 		cgu->cgu_dev = 0;
   1362   1.78  christos 		cgu->cgu_alg[0] = '\0';
   1363   1.78  christos 		cgu->cgu_blocksize = 0;
   1364   1.78  christos 		cgu->cgu_mode = 0;
   1365   1.78  christos 		cgu->cgu_keylen = 0;
   1366   1.78  christos 	}
   1367   1.78  christos 	else {
   1368  1.122   mlelstv 		mutex_enter(&sc->sc_lock);
   1369  1.122   mlelstv 		cgu->cgu_dev = sc->sc_tdev;
   1370  1.122   mlelstv 		strncpy(cgu->cgu_alg, sc->sc_cfuncs->cf_name,
   1371   1.78  christos 		    sizeof(cgu->cgu_alg));
   1372  1.122   mlelstv 		cgu->cgu_blocksize = sc->sc_cdata.cf_blocksize;
   1373  1.122   mlelstv 		cgu->cgu_mode = sc->sc_cdata.cf_mode;
   1374  1.122   mlelstv 		cgu->cgu_keylen = sc->sc_cdata.cf_keylen;
   1375  1.122   mlelstv 		mutex_exit(&sc->sc_lock);
   1376   1.78  christos 	}
   1377  1.122   mlelstv 
   1378  1.122   mlelstv 	cgd_unlock();
   1379   1.78  christos 	return 0;
   1380   1.78  christos }
   1381   1.78  christos 
   1382   1.78  christos static int
   1383  1.122   mlelstv cgdinit(struct cgd_softc *sc, const char *cpath, struct vnode *vp,
   1384   1.32  christos 	struct lwp *l)
   1385    1.1     elric {
   1386   1.80  christos 	struct	disk_geom *dg;
   1387    1.1     elric 	int	ret;
   1388   1.36  christos 	char	*tmppath;
   1389   1.76  christos 	uint64_t psize;
   1390   1.76  christos 	unsigned secsize;
   1391  1.122   mlelstv 	struct dk_softc *dksc = &sc->sc_dksc;
   1392    1.1     elric 
   1393  1.122   mlelstv 	sc->sc_tvn = vp;
   1394  1.122   mlelstv 	sc->sc_tpath = NULL;
   1395    1.1     elric 
   1396  1.122   mlelstv 	tmppath = kmem_alloc(MAXPATHLEN, KM_SLEEP);
   1397  1.122   mlelstv 	ret = copyinstr(cpath, tmppath, MAXPATHLEN, &sc->sc_tpathlen);
   1398    1.1     elric 	if (ret)
   1399    1.1     elric 		goto bail;
   1400  1.122   mlelstv 	sc->sc_tpath = kmem_alloc(sc->sc_tpathlen, KM_SLEEP);
   1401  1.122   mlelstv 	memcpy(sc->sc_tpath, tmppath, sc->sc_tpathlen);
   1402    1.1     elric 
   1403  1.122   mlelstv 	sc->sc_tdev = vp->v_rdev;
   1404    1.1     elric 
   1405   1.76  christos 	if ((ret = getdisksize(vp, &psize, &secsize)) != 0)
   1406    1.1     elric 		goto bail;
   1407    1.1     elric 
   1408   1.76  christos 	if (psize == 0) {
   1409    1.1     elric 		ret = ENODEV;
   1410    1.1     elric 		goto bail;
   1411    1.1     elric 	}
   1412    1.1     elric 
   1413    1.1     elric 	/*
   1414    1.1     elric 	 * XXX here we should probe the underlying device.  If we
   1415    1.1     elric 	 *     are accessing a partition of type RAW_PART, then
   1416    1.1     elric 	 *     we should populate our initial geometry with the
   1417    1.1     elric 	 *     geometry that we discover from the device.
   1418    1.1     elric 	 */
   1419   1.80  christos 	dg = &dksc->sc_dkdev.dk_geom;
   1420   1.80  christos 	memset(dg, 0, sizeof(*dg));
   1421   1.80  christos 	dg->dg_secperunit = psize;
   1422  1.105   mlelstv 	dg->dg_secsize = secsize;
   1423   1.80  christos 	dg->dg_ntracks = 1;
   1424  1.105   mlelstv 	dg->dg_nsectors = 1024 * 1024 / dg->dg_secsize;
   1425   1.80  christos 	dg->dg_ncylinders = dg->dg_secperunit / dg->dg_nsectors;
   1426    1.1     elric 
   1427    1.1     elric bail:
   1428  1.122   mlelstv 	kmem_free(tmppath, MAXPATHLEN);
   1429  1.122   mlelstv 	if (ret && sc->sc_tpath)
   1430  1.122   mlelstv 		kmem_free(sc->sc_tpath, sc->sc_tpathlen);
   1431    1.1     elric 	return ret;
   1432    1.1     elric }
   1433    1.1     elric 
   1434    1.1     elric /*
   1435    1.1     elric  * Our generic cipher entry point.  This takes care of the
   1436    1.1     elric  * IV mode and passes off the work to the specific cipher.
   1437    1.1     elric  * We implement here the IV method ``encrypted block
   1438    1.1     elric  * number''.
   1439   1.22     perry  *
   1440    1.1     elric  * XXXrcd: for now we rely on our own crypto framework defined
   1441    1.1     elric  *         in dev/cgd_crypto.c.  This will change when we
   1442    1.1     elric  *         get a generic kernel crypto framework.
   1443    1.1     elric  */
   1444    1.1     elric 
   1445    1.1     elric static void
   1446   1.25   xtraeme blkno2blkno_buf(char *sbuf, daddr_t blkno)
   1447    1.1     elric {
   1448    1.1     elric 	int	i;
   1449    1.1     elric 
   1450    1.1     elric 	/* Set up the blkno in blkno_buf, here we do not care much
   1451    1.1     elric 	 * about the final layout of the information as long as we
   1452    1.1     elric 	 * can guarantee that each sector will have a different IV
   1453    1.1     elric 	 * and that the endianness of the machine will not affect
   1454    1.1     elric 	 * the representation that we have chosen.
   1455    1.1     elric 	 *
   1456    1.1     elric 	 * We choose this representation, because it does not rely
   1457    1.1     elric 	 * on the size of buf (which is the blocksize of the cipher),
   1458    1.1     elric 	 * but allows daddr_t to grow without breaking existing
   1459    1.1     elric 	 * disks.
   1460    1.1     elric 	 *
   1461    1.1     elric 	 * Note that blkno2blkno_buf does not take a size as input,
   1462    1.1     elric 	 * and hence must be called on a pre-zeroed buffer of length
   1463    1.1     elric 	 * greater than or equal to sizeof(daddr_t).
   1464    1.1     elric 	 */
   1465    1.1     elric 	for (i=0; i < sizeof(daddr_t); i++) {
   1466   1.25   xtraeme 		*sbuf++ = blkno & 0xff;
   1467    1.1     elric 		blkno >>= 8;
   1468    1.1     elric 	}
   1469    1.1     elric }
   1470    1.1     elric 
   1471  1.122   mlelstv static struct cpu_info *
   1472  1.122   mlelstv cgd_cpu(struct cgd_softc *sc)
   1473  1.122   mlelstv {
   1474  1.122   mlelstv 	struct cgd_worker *cw = sc->sc_worker;
   1475  1.122   mlelstv 	struct cpu_info *ci = NULL;
   1476  1.122   mlelstv 	u_int cidx, i;
   1477  1.122   mlelstv 
   1478  1.122   mlelstv 	if (cw->cw_busy == 0) {
   1479  1.122   mlelstv 		cw->cw_last = cpu_index(curcpu());
   1480  1.122   mlelstv 		return NULL;
   1481  1.122   mlelstv 	}
   1482  1.122   mlelstv 
   1483  1.122   mlelstv 	for (i=0, cidx = cw->cw_last+1; i<maxcpus; ++i, ++cidx) {
   1484  1.122   mlelstv 		if (cidx >= maxcpus)
   1485  1.122   mlelstv 			cidx = 0;
   1486  1.122   mlelstv 		ci = cpu_lookup(cidx);
   1487  1.122   mlelstv 		if (ci) {
   1488  1.122   mlelstv 			cw->cw_last = cidx;
   1489  1.122   mlelstv 			break;
   1490  1.122   mlelstv 		}
   1491  1.122   mlelstv 	}
   1492  1.122   mlelstv 
   1493  1.122   mlelstv 	return ci;
   1494  1.122   mlelstv }
   1495  1.122   mlelstv 
   1496  1.122   mlelstv static void
   1497  1.122   mlelstv cgd_enqueue(struct cgd_softc *sc, struct cgd_xfer *cx)
   1498  1.122   mlelstv {
   1499  1.122   mlelstv 	struct cgd_worker *cw = sc->sc_worker;
   1500  1.122   mlelstv 	struct cpu_info *ci;
   1501  1.122   mlelstv 
   1502  1.122   mlelstv 	mutex_enter(&cw->cw_lock);
   1503  1.122   mlelstv 	ci = cgd_cpu(sc);
   1504  1.122   mlelstv 	cw->cw_busy++;
   1505  1.122   mlelstv 	mutex_exit(&cw->cw_lock);
   1506  1.122   mlelstv 
   1507  1.122   mlelstv 	workqueue_enqueue(cw->cw_wq, &cx->cx_work, ci);
   1508  1.122   mlelstv }
   1509  1.122   mlelstv 
   1510  1.122   mlelstv static void
   1511  1.122   mlelstv cgd_process(struct work *wk, void *arg)
   1512  1.122   mlelstv {
   1513  1.122   mlelstv 	struct cgd_xfer *cx = (struct cgd_xfer *)wk;
   1514  1.122   mlelstv 	struct cgd_softc *sc = cx->cx_sc;
   1515  1.122   mlelstv 	struct cgd_worker *cw = sc->sc_worker;
   1516  1.122   mlelstv 
   1517  1.122   mlelstv 	cgd_cipher(sc, cx->cx_dstv, cx->cx_srcv, cx->cx_len,
   1518  1.122   mlelstv 	    cx->cx_blkno, cx->cx_secsize, cx->cx_dir);
   1519  1.122   mlelstv 
   1520  1.122   mlelstv 	if (cx->cx_dir == CGD_CIPHER_ENCRYPT) {
   1521  1.122   mlelstv 		cgd_diskstart2(sc, cx);
   1522  1.122   mlelstv 	} else {
   1523  1.122   mlelstv 		cgd_iodone2(sc, cx);
   1524  1.122   mlelstv 	}
   1525  1.122   mlelstv 
   1526  1.122   mlelstv 	mutex_enter(&cw->cw_lock);
   1527  1.122   mlelstv 	if (cw->cw_busy > 0)
   1528  1.122   mlelstv 		cw->cw_busy--;
   1529  1.122   mlelstv 	mutex_exit(&cw->cw_lock);
   1530  1.122   mlelstv }
   1531  1.122   mlelstv 
   1532    1.1     elric static void
   1533  1.122   mlelstv cgd_cipher(struct cgd_softc *sc, void *dstv, void *srcv,
   1534   1.44  christos     size_t len, daddr_t blkno, size_t secsize, int dir)
   1535    1.1     elric {
   1536   1.44  christos 	char		*dst = dstv;
   1537  1.112     alnsn 	char		*src = srcv;
   1538  1.122   mlelstv 	cfunc_cipher	*cipher = sc->sc_cfuncs->cf_cipher;
   1539    1.1     elric 	struct uio	dstuio;
   1540    1.1     elric 	struct uio	srcuio;
   1541    1.1     elric 	struct iovec	dstiov[2];
   1542    1.1     elric 	struct iovec	srciov[2];
   1543  1.122   mlelstv 	size_t		blocksize = sc->sc_cdata.cf_blocksize;
   1544  1.105   mlelstv 	size_t		todo;
   1545  1.127  riastrad 	char		blkno_buf[CGD_MAXBLOCKSIZE];
   1546    1.1     elric 
   1547    1.1     elric 	DPRINTF_FOLLOW(("cgd_cipher() dir=%d\n", dir));
   1548    1.1     elric 
   1549  1.118  riastrad 	KASSERTMSG(len % blocksize == 0,
   1550  1.118  riastrad 	    "cgd_cipher: len %% blocksize != 0");
   1551    1.1     elric 
   1552    1.1     elric 	/* ensure that sizeof(daddr_t) <= blocksize (for encblkno IVing) */
   1553  1.118  riastrad 	KASSERTMSG(sizeof(daddr_t) <= blocksize,
   1554  1.118  riastrad 	    "cgd_cipher: sizeof(daddr_t) > blocksize");
   1555    1.1     elric 
   1556  1.118  riastrad 	KASSERTMSG(blocksize <= CGD_MAXBLOCKSIZE,
   1557  1.118  riastrad 	    "cgd_cipher: blocksize > CGD_MAXBLOCKSIZE");
   1558    1.1     elric 
   1559    1.1     elric 	dstuio.uio_iov = dstiov;
   1560  1.112     alnsn 	dstuio.uio_iovcnt = 1;
   1561    1.1     elric 
   1562    1.1     elric 	srcuio.uio_iov = srciov;
   1563  1.112     alnsn 	srcuio.uio_iovcnt = 1;
   1564    1.1     elric 
   1565  1.105   mlelstv 	for (; len > 0; len -= todo) {
   1566  1.105   mlelstv 		todo = MIN(len, secsize);
   1567  1.105   mlelstv 
   1568  1.112     alnsn 		dstiov[0].iov_base = dst;
   1569  1.112     alnsn 		srciov[0].iov_base = src;
   1570  1.112     alnsn 		dstiov[0].iov_len  = todo;
   1571  1.112     alnsn 		srciov[0].iov_len  = todo;
   1572    1.1     elric 
   1573   1.64  christos 		memset(blkno_buf, 0x0, blocksize);
   1574    1.1     elric 		blkno2blkno_buf(blkno_buf, blkno);
   1575    1.1     elric 		IFDEBUG(CGDB_CRYPTO, hexprint("step 1: blkno_buf",
   1576   1.64  christos 		    blkno_buf, blocksize));
   1577  1.112     alnsn 
   1578  1.127  riastrad 		cipher(sc->sc_cdata.cf_priv, &dstuio, &srcuio, blkno_buf, dir);
   1579    1.1     elric 
   1580  1.105   mlelstv 		dst += todo;
   1581  1.105   mlelstv 		src += todo;
   1582    1.1     elric 		blkno++;
   1583    1.1     elric 	}
   1584    1.1     elric }
   1585    1.1     elric 
   1586    1.1     elric #ifdef DEBUG
   1587    1.1     elric static void
   1588   1.26  drochner hexprint(const char *start, void *buf, int len)
   1589    1.1     elric {
   1590    1.1     elric 	char	*c = buf;
   1591    1.1     elric 
   1592  1.118  riastrad 	KASSERTMSG(len >= 0, "hexprint: called with len < 0");
   1593    1.1     elric 	printf("%s: len=%06d 0x", start, len);
   1594    1.1     elric 	while (len--)
   1595   1.43    cbiere 		printf("%02x", (unsigned char) *c++);
   1596    1.1     elric }
   1597    1.1     elric #endif
   1598   1.58      haad 
   1599  1.112     alnsn static void
   1600  1.112     alnsn selftest(void)
   1601  1.112     alnsn {
   1602  1.122   mlelstv 	struct cgd_softc sc;
   1603  1.112     alnsn 	void *buf;
   1604  1.112     alnsn 
   1605  1.112     alnsn 	for (size_t i = 0; i < __arraycount(selftests); i++) {
   1606  1.112     alnsn 		const char *alg = selftests[i].alg;
   1607  1.112     alnsn 		const uint8_t *key = selftests[i].key;
   1608  1.112     alnsn 		int keylen = selftests[i].keylen;
   1609  1.112     alnsn 		int txtlen = selftests[i].txtlen;
   1610  1.112     alnsn 
   1611  1.128  riastrad 		aprint_verbose("cgd: self-test %s-%d\n", alg, keylen);
   1612  1.112     alnsn 
   1613  1.122   mlelstv 		memset(&sc, 0, sizeof(sc));
   1614  1.112     alnsn 
   1615  1.122   mlelstv 		sc.sc_cfuncs = cryptfuncs_find(alg);
   1616  1.122   mlelstv 		if (sc.sc_cfuncs == NULL)
   1617  1.112     alnsn 			panic("%s not implemented", alg);
   1618  1.112     alnsn 
   1619  1.122   mlelstv 		sc.sc_cdata.cf_blocksize = 8 * selftests[i].blocksize;
   1620  1.122   mlelstv 		sc.sc_cdata.cf_mode = CGD_CIPHER_CBC_ENCBLKNO1;
   1621  1.122   mlelstv 		sc.sc_cdata.cf_keylen = keylen;
   1622  1.122   mlelstv 
   1623  1.122   mlelstv 		sc.sc_cdata.cf_priv = sc.sc_cfuncs->cf_init(keylen,
   1624  1.122   mlelstv 		    key, &sc.sc_cdata.cf_blocksize);
   1625  1.122   mlelstv 		if (sc.sc_cdata.cf_priv == NULL)
   1626  1.112     alnsn 			panic("cf_priv is NULL");
   1627  1.122   mlelstv 		if (sc.sc_cdata.cf_blocksize > CGD_MAXBLOCKSIZE)
   1628  1.122   mlelstv 			panic("bad block size %zu", sc.sc_cdata.cf_blocksize);
   1629  1.112     alnsn 
   1630  1.122   mlelstv 		sc.sc_cdata.cf_blocksize /= 8;
   1631  1.112     alnsn 
   1632  1.124       tnn 		buf = kmem_alloc(txtlen, KM_SLEEP);
   1633  1.112     alnsn 		memcpy(buf, selftests[i].ptxt, txtlen);
   1634  1.112     alnsn 
   1635  1.122   mlelstv 		cgd_cipher(&sc, buf, buf, txtlen, selftests[i].blkno,
   1636  1.112     alnsn 				selftests[i].secsize, CGD_CIPHER_ENCRYPT);
   1637  1.112     alnsn 		if (memcmp(buf, selftests[i].ctxt, txtlen) != 0)
   1638  1.112     alnsn 			panic("encryption is broken");
   1639  1.112     alnsn 
   1640  1.122   mlelstv 		cgd_cipher(&sc, buf, buf, txtlen, selftests[i].blkno,
   1641  1.112     alnsn 				selftests[i].secsize, CGD_CIPHER_DECRYPT);
   1642  1.112     alnsn 		if (memcmp(buf, selftests[i].ptxt, txtlen) != 0)
   1643  1.112     alnsn 			panic("decryption is broken");
   1644  1.112     alnsn 
   1645  1.124       tnn 		kmem_free(buf, txtlen);
   1646  1.122   mlelstv 		sc.sc_cfuncs->cf_destroy(sc.sc_cdata.cf_priv);
   1647  1.112     alnsn 	}
   1648  1.112     alnsn 
   1649  1.128  riastrad 	aprint_verbose("cgd: self-tests passed\n");
   1650  1.112     alnsn }
   1651  1.112     alnsn 
   1652  1.116  pgoyette MODULE(MODULE_CLASS_DRIVER, cgd, "blowfish,des,dk_subr,bufq_fcfs");
   1653   1.74    jruoho 
   1654   1.58      haad #ifdef _MODULE
   1655   1.66    dyoung CFDRIVER_DECL(cgd, DV_DISK, NULL);
   1656  1.109  pgoyette 
   1657  1.109  pgoyette devmajor_t cgd_bmajor = -1, cgd_cmajor = -1;
   1658   1.74    jruoho #endif
   1659   1.58      haad 
   1660   1.58      haad static int
   1661   1.58      haad cgd_modcmd(modcmd_t cmd, void *arg)
   1662   1.58      haad {
   1663   1.82    martin 	int error = 0;
   1664   1.74    jruoho 
   1665   1.58      haad 	switch (cmd) {
   1666   1.58      haad 	case MODULE_CMD_INIT:
   1667  1.112     alnsn 		selftest();
   1668   1.74    jruoho #ifdef _MODULE
   1669  1.122   mlelstv 		mutex_init(&cgd_spawning_mtx, MUTEX_DEFAULT, IPL_NONE);
   1670  1.122   mlelstv 		cv_init(&cgd_spawning_cv, "cgspwn");
   1671  1.122   mlelstv 
   1672   1.66    dyoung 		error = config_cfdriver_attach(&cgd_cd);
   1673   1.66    dyoung 		if (error)
   1674   1.66    dyoung 			break;
   1675   1.66    dyoung 
   1676   1.66    dyoung 		error = config_cfattach_attach(cgd_cd.cd_name, &cgd_ca);
   1677   1.66    dyoung 	        if (error) {
   1678   1.66    dyoung 			config_cfdriver_detach(&cgd_cd);
   1679  1.109  pgoyette 			aprint_error("%s: unable to register cfattach for"
   1680  1.109  pgoyette 			    "%s, error %d\n", __func__, cgd_cd.cd_name, error);
   1681   1.66    dyoung 			break;
   1682   1.66    dyoung 		}
   1683  1.109  pgoyette 		/*
   1684  1.109  pgoyette 		 * Attach the {b,c}devsw's
   1685  1.109  pgoyette 		 */
   1686  1.109  pgoyette 		error = devsw_attach("cgd", &cgd_bdevsw, &cgd_bmajor,
   1687  1.109  pgoyette 		    &cgd_cdevsw, &cgd_cmajor);
   1688   1.74    jruoho 
   1689  1.109  pgoyette 		/*
   1690  1.109  pgoyette 		 * If devsw_attach fails, remove from autoconf database
   1691  1.109  pgoyette 		 */
   1692   1.66    dyoung 		if (error) {
   1693   1.66    dyoung 			config_cfattach_detach(cgd_cd.cd_name, &cgd_ca);
   1694   1.66    dyoung 			config_cfdriver_detach(&cgd_cd);
   1695  1.109  pgoyette 			aprint_error("%s: unable to attach %s devsw, "
   1696  1.109  pgoyette 			    "error %d", __func__, cgd_cd.cd_name, error);
   1697   1.66    dyoung 			break;
   1698   1.66    dyoung 		}
   1699   1.74    jruoho #endif
   1700   1.58      haad 		break;
   1701   1.58      haad 
   1702   1.58      haad 	case MODULE_CMD_FINI:
   1703   1.74    jruoho #ifdef _MODULE
   1704  1.109  pgoyette 		/*
   1705  1.109  pgoyette 		 * Remove {b,c}devsw's
   1706  1.109  pgoyette 		 */
   1707  1.109  pgoyette 		devsw_detach(&cgd_bdevsw, &cgd_cdevsw);
   1708  1.109  pgoyette 
   1709  1.109  pgoyette 		/*
   1710  1.109  pgoyette 		 * Now remove device from autoconf database
   1711  1.109  pgoyette 		 */
   1712   1.66    dyoung 		error = config_cfattach_detach(cgd_cd.cd_name, &cgd_ca);
   1713  1.109  pgoyette 		if (error) {
   1714  1.110  pgoyette 			(void)devsw_attach("cgd", &cgd_bdevsw, &cgd_bmajor,
   1715  1.109  pgoyette 			    &cgd_cdevsw, &cgd_cmajor);
   1716  1.109  pgoyette 			aprint_error("%s: failed to detach %s cfattach, "
   1717  1.109  pgoyette 			    "error %d\n", __func__, cgd_cd.cd_name, error);
   1718  1.109  pgoyette  			break;
   1719  1.109  pgoyette 		}
   1720  1.109  pgoyette 		error = config_cfdriver_detach(&cgd_cd);
   1721  1.109  pgoyette 		if (error) {
   1722  1.110  pgoyette 			(void)config_cfattach_attach(cgd_cd.cd_name, &cgd_ca);
   1723  1.110  pgoyette 			(void)devsw_attach("cgd", &cgd_bdevsw, &cgd_bmajor,
   1724  1.109  pgoyette 			    &cgd_cdevsw, &cgd_cmajor);
   1725  1.109  pgoyette 			aprint_error("%s: failed to detach %s cfdriver, "
   1726  1.109  pgoyette 			    "error %d\n", __func__, cgd_cd.cd_name, error);
   1727   1.66    dyoung 			break;
   1728  1.109  pgoyette 		}
   1729  1.122   mlelstv 
   1730  1.122   mlelstv 		cv_destroy(&cgd_spawning_cv);
   1731  1.122   mlelstv 		mutex_destroy(&cgd_spawning_mtx);
   1732   1.74    jruoho #endif
   1733   1.58      haad 		break;
   1734   1.58      haad 
   1735   1.58      haad 	case MODULE_CMD_STAT:
   1736  1.109  pgoyette 		error = ENOTTY;
   1737  1.109  pgoyette 		break;
   1738   1.58      haad 	default:
   1739  1.109  pgoyette 		error = ENOTTY;
   1740  1.109  pgoyette 		break;
   1741   1.58      haad 	}
   1742   1.58      haad 
   1743   1.58      haad 	return error;
   1744   1.58      haad }
   1745