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ubsec.c revision 1.43.18.3
      1  1.43.18.2    martin /*	$NetBSD: ubsec.c,v 1.43.18.3 2020/04/13 08:04:45 martin Exp $	*/
      2        1.1  jonathan /* $FreeBSD: src/sys/dev/ubsec/ubsec.c,v 1.6.2.6 2003/01/23 21:06:43 sam Exp $ */
      3       1.40       bad /*	$OpenBSD: ubsec.c,v 1.143 2009/03/27 13:31:30 reyk Exp$	*/
      4        1.1  jonathan 
      5        1.1  jonathan /*
      6        1.1  jonathan  * Copyright (c) 2000 Jason L. Wright (jason (at) thought.net)
      7        1.1  jonathan  * Copyright (c) 2000 Theo de Raadt (deraadt (at) openbsd.org)
      8        1.1  jonathan  * Copyright (c) 2001 Patrik Lindergren (patrik (at) ipunplugged.com)
      9        1.5     perry  *
     10        1.1  jonathan  * Redistribution and use in source and binary forms, with or without
     11        1.1  jonathan  * modification, are permitted provided that the following conditions
     12        1.1  jonathan  * are met:
     13        1.1  jonathan  * 1. Redistributions of source code must retain the above copyright
     14        1.1  jonathan  *    notice, this list of conditions and the following disclaimer.
     15        1.1  jonathan  * 2. Redistributions in binary form must reproduce the above copyright
     16        1.1  jonathan  *    notice, this list of conditions and the following disclaimer in the
     17        1.1  jonathan  *    documentation and/or other materials provided with the distribution.
     18        1.1  jonathan  *
     19        1.1  jonathan  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     20        1.1  jonathan  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     21        1.1  jonathan  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     22        1.1  jonathan  * DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
     23        1.1  jonathan  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     24        1.1  jonathan  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     25        1.1  jonathan  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26        1.1  jonathan  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
     27        1.1  jonathan  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
     28        1.1  jonathan  * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29        1.1  jonathan  * POSSIBILITY OF SUCH DAMAGE.
     30        1.1  jonathan  *
     31        1.1  jonathan  * Effort sponsored in part by the Defense Advanced Research Projects
     32        1.1  jonathan  * Agency (DARPA) and Air Force Research Laboratory, Air Force
     33        1.1  jonathan  * Materiel Command, USAF, under agreement number F30602-01-2-0537.
     34        1.1  jonathan  *
     35        1.1  jonathan  */
     36        1.1  jonathan 
     37       1.14     lukem #include <sys/cdefs.h>
     38  1.43.18.2    martin __KERNEL_RCSID(0, "$NetBSD: ubsec.c,v 1.43.18.3 2020/04/13 08:04:45 martin Exp $");
     39       1.14     lukem 
     40        1.1  jonathan #undef UBSEC_DEBUG
     41        1.1  jonathan 
     42        1.1  jonathan /*
     43       1.40       bad  * uBsec 5[56]01, 58xx hardware crypto accelerator
     44        1.1  jonathan  */
     45        1.1  jonathan 
     46        1.1  jonathan #include <sys/param.h>
     47        1.1  jonathan #include <sys/systm.h>
     48        1.1  jonathan #include <sys/proc.h>
     49        1.1  jonathan #include <sys/endian.h>
     50        1.1  jonathan #ifdef __NetBSD__
     51       1.29       tls   #define UBSEC_NO_RNG	/* hangs on attach */
     52        1.1  jonathan   #define letoh16 htole16
     53        1.1  jonathan   #define letoh32 htole32
     54        1.1  jonathan #endif
     55        1.1  jonathan #include <sys/errno.h>
     56        1.1  jonathan #include <sys/malloc.h>
     57        1.1  jonathan #include <sys/kernel.h>
     58        1.1  jonathan #include <sys/mbuf.h>
     59        1.1  jonathan #include <sys/device.h>
     60       1.32       bad #include <sys/module.h>
     61        1.1  jonathan #include <sys/queue.h>
     62       1.33       bad #include <sys/sysctl.h>
     63        1.1  jonathan 
     64        1.1  jonathan #include <opencrypto/cryptodev.h>
     65        1.8   thorpej #include <opencrypto/xform.h>
     66        1.1  jonathan #ifdef __OpenBSD__
     67        1.1  jonathan  #include <dev/rndvar.h>
     68        1.1  jonathan  #include <sys/md5k.h>
     69        1.1  jonathan #else
     70       1.26       tls  #include <sys/cprng.h>
     71        1.1  jonathan  #include <sys/md5.h>
     72       1.42  riastrad  #include <sys/rndpool.h>
     73       1.42  riastrad  #include <sys/rndsource.h>
     74        1.1  jonathan #endif
     75        1.1  jonathan #include <sys/sha1.h>
     76        1.1  jonathan 
     77        1.1  jonathan #include <dev/pci/pcireg.h>
     78        1.1  jonathan #include <dev/pci/pcivar.h>
     79        1.1  jonathan #include <dev/pci/pcidevs.h>
     80        1.1  jonathan 
     81        1.1  jonathan #include <dev/pci/ubsecreg.h>
     82        1.1  jonathan #include <dev/pci/ubsecvar.h>
     83        1.1  jonathan 
     84        1.1  jonathan /*
     85        1.1  jonathan  * Prototypes and count for the pci_device structure
     86        1.1  jonathan  */
     87       1.43   msaitoh static	int  ubsec_probe(device_t, cfdata_t, void *);
     88       1.22    cegger static	void ubsec_attach(device_t, device_t, void *);
     89       1.32       bad static	int  ubsec_detach(device_t, int);
     90        1.1  jonathan static	void ubsec_reset_board(struct ubsec_softc *);
     91        1.1  jonathan static	void ubsec_init_board(struct ubsec_softc *);
     92        1.1  jonathan static	void ubsec_init_pciregs(struct pci_attach_args *pa);
     93        1.1  jonathan static	void ubsec_cleanchip(struct ubsec_softc *);
     94        1.1  jonathan static	void ubsec_totalreset(struct ubsec_softc *);
     95        1.1  jonathan static	int  ubsec_free_q(struct ubsec_softc*, struct ubsec_q *);
     96        1.1  jonathan 
     97        1.1  jonathan #ifdef __OpenBSD__
     98        1.1  jonathan struct cfattach ubsec_ca = {
     99        1.1  jonathan 	sizeof(struct ubsec_softc), ubsec_probe, ubsec_attach,
    100        1.1  jonathan };
    101        1.1  jonathan 
    102        1.1  jonathan struct cfdriver ubsec_cd = {
    103        1.1  jonathan 	0, "ubsec", DV_DULL
    104        1.1  jonathan };
    105        1.1  jonathan #else
    106       1.28       chs CFATTACH_DECL_NEW(ubsec, sizeof(struct ubsec_softc), ubsec_probe, ubsec_attach,
    107       1.32       bad 	      ubsec_detach, NULL);
    108        1.1  jonathan extern struct cfdriver ubsec_cd;
    109        1.1  jonathan #endif
    110        1.1  jonathan 
    111        1.1  jonathan /* patchable */
    112        1.1  jonathan #ifdef	UBSEC_DEBUG
    113        1.1  jonathan extern int ubsec_debug;
    114        1.1  jonathan int ubsec_debug=1;
    115        1.1  jonathan #endif
    116        1.1  jonathan 
    117        1.1  jonathan static	int	ubsec_intr(void *);
    118        1.1  jonathan static	int	ubsec_newsession(void*, u_int32_t *, struct cryptoini *);
    119        1.1  jonathan static	int	ubsec_freesession(void*, u_int64_t);
    120        1.1  jonathan static	int	ubsec_process(void*, struct cryptop *, int hint);
    121        1.1  jonathan static	void	ubsec_callback(struct ubsec_softc *, struct ubsec_q *);
    122        1.1  jonathan static	void	ubsec_feed(struct ubsec_softc *);
    123        1.1  jonathan static	void	ubsec_mcopy(struct mbuf *, struct mbuf *, int, int);
    124        1.1  jonathan static	void	ubsec_callback2(struct ubsec_softc *, struct ubsec_q2 *);
    125        1.1  jonathan static	void	ubsec_feed2(struct ubsec_softc *);
    126       1.34       bad static	void	ubsec_feed4(struct ubsec_softc *);
    127        1.1  jonathan #ifndef UBSEC_NO_RNG
    128       1.29       tls static  void	ubsec_rng(void *);
    129       1.29       tls static  void	ubsec_rng_locked(void *);
    130       1.29       tls static  void	ubsec_rng_get(size_t, void *);
    131        1.1  jonathan #endif /* UBSEC_NO_RNG */
    132        1.1  jonathan static	int 	ubsec_dma_malloc(struct ubsec_softc *, bus_size_t,
    133        1.1  jonathan 				 struct ubsec_dma_alloc *, int);
    134        1.1  jonathan static	void	ubsec_dma_free(struct ubsec_softc *, struct ubsec_dma_alloc *);
    135        1.1  jonathan static	int	ubsec_dmamap_aligned(bus_dmamap_t);
    136        1.1  jonathan 
    137        1.1  jonathan static	int	ubsec_kprocess(void*, struct cryptkop *, int);
    138        1.1  jonathan static	int	ubsec_kprocess_modexp_sw(struct ubsec_softc *,
    139        1.1  jonathan 					 struct cryptkop *, int);
    140        1.1  jonathan static	int	ubsec_kprocess_modexp_hw(struct ubsec_softc *,
    141        1.1  jonathan 					 struct cryptkop *, int);
    142        1.1  jonathan static	int	ubsec_kprocess_rsapriv(struct ubsec_softc *,
    143        1.1  jonathan 				       struct cryptkop *, int);
    144        1.1  jonathan static	void	ubsec_kfree(struct ubsec_softc *, struct ubsec_q2 *);
    145        1.1  jonathan static	int	ubsec_ksigbits(struct crparam *);
    146        1.1  jonathan static	void	ubsec_kshift_r(u_int, u_int8_t *, u_int, u_int8_t *, u_int);
    147        1.1  jonathan static	void	ubsec_kshift_l(u_int, u_int8_t *, u_int, u_int8_t *, u_int);
    148        1.1  jonathan 
    149        1.1  jonathan #ifdef UBSEC_DEBUG
    150        1.1  jonathan static void	ubsec_dump_pb(volatile struct ubsec_pktbuf *);
    151        1.1  jonathan static void	ubsec_dump_mcr(struct ubsec_mcr *);
    152        1.1  jonathan static	void	ubsec_dump_ctx2(volatile struct ubsec_ctx_keyop *);
    153        1.1  jonathan #endif
    154        1.1  jonathan 
    155        1.1  jonathan #define	READ_REG(sc,r) \
    156        1.1  jonathan 	bus_space_read_4((sc)->sc_st, (sc)->sc_sh, (r))
    157        1.1  jonathan 
    158        1.1  jonathan #define WRITE_REG(sc,reg,val) \
    159        1.1  jonathan 	bus_space_write_4((sc)->sc_st, (sc)->sc_sh, reg, val)
    160        1.1  jonathan 
    161        1.1  jonathan #define	SWAP32(x) (x) = htole32(ntohl((x)))
    162        1.1  jonathan #ifndef HTOLE32
    163        1.1  jonathan  #define	HTOLE32(x) (x) = htole32(x)
    164        1.1  jonathan #endif
    165        1.1  jonathan 
    166        1.1  jonathan struct ubsec_stats ubsecstats;
    167        1.1  jonathan 
    168        1.1  jonathan /*
    169        1.5     perry  * ubsec_maxbatch controls the number of crypto ops to voluntarily
    170        1.1  jonathan  * collect into one submission to the hardware.  This batching happens
    171        1.1  jonathan  * when ops are dispatched from the crypto subsystem with a hint that
    172        1.1  jonathan  * more are to follow immediately.  These ops must also not be marked
    173        1.1  jonathan  * with a ``no delay'' flag.
    174        1.1  jonathan  */
    175        1.1  jonathan static	int ubsec_maxbatch = 1;
    176        1.1  jonathan 
    177        1.1  jonathan /*
    178        1.1  jonathan  * ubsec_maxaggr controls the number of crypto ops to submit to the
    179        1.1  jonathan  * hardware as a unit.  This aggregation reduces the number of interrupts
    180        1.1  jonathan  * to the host at the expense of increased latency (for all but the last
    181        1.1  jonathan  * operation).  For network traffic setting this to one yields the highest
    182        1.1  jonathan  * performance but at the expense of more interrupt processing.
    183        1.1  jonathan  */
    184        1.1  jonathan static	int ubsec_maxaggr = 1;
    185        1.1  jonathan 
    186        1.4   thorpej static const struct ubsec_product {
    187        1.4   thorpej 	pci_vendor_id_t		ubsec_vendor;
    188        1.4   thorpej 	pci_product_id_t	ubsec_product;
    189        1.4   thorpej 	int			ubsec_flags;
    190        1.4   thorpej 	int			ubsec_statmask;
    191       1.34       bad 	int			ubsec_maxaggr;
    192        1.4   thorpej 	const char		*ubsec_name;
    193        1.4   thorpej } ubsec_products[] = {
    194        1.4   thorpej 	{ PCI_VENDOR_BLUESTEEL,	PCI_PRODUCT_BLUESTEEL_5501,
    195        1.4   thorpej 	  0,
    196        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR,
    197       1.34       bad 	  UBS_MIN_AGGR,
    198        1.4   thorpej 	  "Bluesteel 5501"
    199        1.4   thorpej 	},
    200        1.4   thorpej 	{ PCI_VENDOR_BLUESTEEL,	PCI_PRODUCT_BLUESTEEL_5601,
    201        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG,
    202        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR,
    203       1.34       bad 	  UBS_MIN_AGGR,
    204        1.4   thorpej 	  "Bluesteel 5601"
    205        1.4   thorpej 	},
    206        1.4   thorpej 
    207        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5801,
    208        1.4   thorpej 	  0,
    209        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR,
    210       1.34       bad 	  UBS_MIN_AGGR,
    211        1.4   thorpej 	  "Broadcom BCM5801"
    212        1.4   thorpej 	},
    213        1.4   thorpej 
    214        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5802,
    215        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG,
    216        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR,
    217       1.34       bad 	  UBS_MIN_AGGR,
    218        1.4   thorpej 	  "Broadcom BCM5802"
    219        1.4   thorpej 	},
    220        1.4   thorpej 
    221        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5805,
    222        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG,
    223        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR,
    224       1.34       bad 	  UBS_MIN_AGGR,
    225        1.4   thorpej 	  "Broadcom BCM5805"
    226        1.4   thorpej 	},
    227        1.4   thorpej 
    228        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5820,
    229        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    230        1.4   thorpej 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY,
    231        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR,
    232       1.34       bad 	  UBS_MIN_AGGR,
    233        1.4   thorpej 	  "Broadcom BCM5820"
    234        1.4   thorpej 	},
    235        1.4   thorpej 
    236        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5821,
    237        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    238        1.4   thorpej 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY,
    239        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    240        1.4   thorpej 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY,
    241       1.34       bad 	  UBS_MIN_AGGR,
    242        1.4   thorpej 	  "Broadcom BCM5821"
    243        1.4   thorpej 	},
    244        1.4   thorpej 	{ PCI_VENDOR_SUN,	PCI_PRODUCT_SUN_SCA1K,
    245        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    246        1.4   thorpej 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY,
    247        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    248        1.4   thorpej 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY,
    249       1.34       bad 	  UBS_MIN_AGGR,
    250        1.4   thorpej 	  "Sun Crypto Accelerator 1000"
    251        1.4   thorpej 	},
    252        1.4   thorpej 	{ PCI_VENDOR_SUN,	PCI_PRODUCT_SUN_5821,
    253        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    254        1.4   thorpej 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY,
    255        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    256        1.4   thorpej 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY,
    257       1.34       bad 	  UBS_MIN_AGGR,
    258        1.4   thorpej 	  "Broadcom BCM5821 (Sun)"
    259        1.4   thorpej 	},
    260        1.4   thorpej 
    261        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5822,
    262        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    263        1.4   thorpej 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY,
    264        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    265        1.4   thorpej 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY,
    266       1.34       bad 	  UBS_MIN_AGGR,
    267        1.4   thorpej 	  "Broadcom BCM5822"
    268        1.4   thorpej 	},
    269        1.4   thorpej 
    270        1.4   thorpej 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5823,
    271        1.4   thorpej 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    272       1.40       bad 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY | UBS_FLAGS_AES,
    273        1.4   thorpej 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    274        1.4   thorpej 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY,
    275       1.34       bad 	  UBS_MIN_AGGR,
    276        1.4   thorpej 	  "Broadcom BCM5823"
    277        1.4   thorpej 	},
    278        1.4   thorpej 
    279       1.34       bad 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5825,
    280       1.34       bad 	  UBS_FLAGS_KEY | UBS_FLAGS_RNG | UBS_FLAGS_LONGCTX |
    281       1.40       bad 	      UBS_FLAGS_HWNORM | UBS_FLAGS_BIGKEY | UBS_FLAGS_AES,
    282       1.34       bad 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    283       1.34       bad 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY,
    284       1.34       bad 	  UBS_MIN_AGGR,
    285       1.34       bad 	  "Broadcom BCM5825"
    286       1.34       bad 	},
    287       1.34       bad 
    288       1.34       bad 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5860,
    289       1.34       bad 	  UBS_FLAGS_MULTIMCR | UBS_FLAGS_HWNORM |
    290       1.34       bad 	      UBS_FLAGS_LONGCTX |
    291       1.34       bad 	      UBS_FLAGS_RNG | UBS_FLAGS_RNG4 |
    292       1.40       bad 	      UBS_FLAGS_KEY | UBS_FLAGS_BIGKEY | UBS_FLAGS_AES,
    293       1.34       bad 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    294       1.34       bad 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY |
    295       1.34       bad 	      BS_STAT_MCR3_ALLEMPTY | BS_STAT_MCR4_ALLEMPTY,
    296       1.34       bad 	  UBS_MAX_AGGR,
    297       1.34       bad 	  "Broadcom BCM5860"
    298       1.34       bad 	},
    299       1.34       bad 
    300       1.34       bad 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5861,
    301       1.34       bad 	  UBS_FLAGS_MULTIMCR | UBS_FLAGS_HWNORM |
    302       1.34       bad 	      UBS_FLAGS_LONGCTX |
    303       1.34       bad 	      UBS_FLAGS_RNG | UBS_FLAGS_RNG4 |
    304       1.40       bad 	      UBS_FLAGS_KEY | UBS_FLAGS_BIGKEY | UBS_FLAGS_AES,
    305       1.34       bad 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    306       1.34       bad 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY |
    307       1.34       bad 	      BS_STAT_MCR3_ALLEMPTY | BS_STAT_MCR4_ALLEMPTY,
    308       1.34       bad 	  UBS_MAX_AGGR,
    309       1.34       bad 	  "Broadcom BCM5861"
    310       1.34       bad 	},
    311       1.34       bad 
    312       1.34       bad 	{ PCI_VENDOR_BROADCOM,	PCI_PRODUCT_BROADCOM_5862,
    313       1.34       bad 	  UBS_FLAGS_MULTIMCR | UBS_FLAGS_HWNORM |
    314       1.34       bad 	      UBS_FLAGS_LONGCTX |
    315       1.34       bad 	      UBS_FLAGS_RNG | UBS_FLAGS_RNG4 |
    316       1.40       bad 	      UBS_FLAGS_KEY | UBS_FLAGS_BIGKEY | UBS_FLAGS_AES,
    317       1.34       bad 	  BS_STAT_MCR1_DONE | BS_STAT_DMAERR |
    318       1.34       bad 	      BS_STAT_MCR1_ALLEMPTY | BS_STAT_MCR2_ALLEMPTY |
    319       1.34       bad 	      BS_STAT_MCR3_ALLEMPTY | BS_STAT_MCR4_ALLEMPTY,
    320       1.34       bad 	  UBS_MAX_AGGR,
    321       1.34       bad 	  "Broadcom BCM5862"
    322       1.34       bad 	},
    323       1.34       bad 
    324        1.4   thorpej 	{ 0,			0,
    325        1.4   thorpej 	  0,
    326        1.4   thorpej 	  0,
    327       1.34       bad 	  0,
    328        1.4   thorpej 	  NULL
    329        1.4   thorpej 	}
    330        1.4   thorpej };
    331        1.4   thorpej 
    332        1.4   thorpej static const struct ubsec_product *
    333        1.4   thorpej ubsec_lookup(const struct pci_attach_args *pa)
    334        1.4   thorpej {
    335        1.4   thorpej 	const struct ubsec_product *up;
    336        1.4   thorpej 
    337        1.4   thorpej 	for (up = ubsec_products; up->ubsec_name != NULL; up++) {
    338        1.4   thorpej 		if (PCI_VENDOR(pa->pa_id) == up->ubsec_vendor &&
    339        1.4   thorpej 		    PCI_PRODUCT(pa->pa_id) == up->ubsec_product)
    340        1.4   thorpej 			return (up);
    341        1.4   thorpej 	}
    342        1.4   thorpej 	return (NULL);
    343        1.4   thorpej }
    344        1.4   thorpej 
    345        1.1  jonathan static int
    346       1.22    cegger ubsec_probe(device_t parent, cfdata_t match, void *aux)
    347        1.1  jonathan {
    348        1.1  jonathan 	struct pci_attach_args *pa = (struct pci_attach_args *)aux;
    349        1.1  jonathan 
    350        1.4   thorpej 	if (ubsec_lookup(pa) != NULL)
    351        1.1  jonathan 		return (1);
    352        1.1  jonathan 
    353        1.1  jonathan 	return (0);
    354        1.1  jonathan }
    355        1.1  jonathan 
    356        1.7   thorpej static void
    357       1.22    cegger ubsec_attach(device_t parent, device_t self, void *aux)
    358        1.1  jonathan {
    359       1.23    cegger 	struct ubsec_softc *sc = device_private(self);
    360        1.1  jonathan 	struct pci_attach_args *pa = aux;
    361        1.4   thorpej 	const struct ubsec_product *up;
    362        1.1  jonathan 	pci_chipset_tag_t pc = pa->pa_pc;
    363        1.1  jonathan 	pci_intr_handle_t ih;
    364        1.1  jonathan 	const char *intrstr = NULL;
    365       1.34       bad 	pcireg_t memtype;
    366        1.1  jonathan 	struct ubsec_dma *dmap;
    367        1.1  jonathan 	u_int32_t cmd, i;
    368       1.38  christos 	char intrbuf[PCI_INTRSTR_LEN];
    369        1.1  jonathan 
    370       1.28       chs 	sc->sc_dev = self;
    371       1.32       bad 	sc->sc_pct = pc;
    372       1.32       bad 
    373        1.4   thorpej 	up = ubsec_lookup(pa);
    374        1.4   thorpej 	if (up == NULL) {
    375        1.4   thorpej 		printf("\n");
    376        1.4   thorpej 		panic("ubsec_attach: impossible");
    377        1.4   thorpej 	}
    378        1.4   thorpej 
    379       1.27  drochner 	pci_aprint_devinfo_fancy(pa, "Crypto processor", up->ubsec_name, 1);
    380        1.4   thorpej 
    381        1.1  jonathan 	SIMPLEQ_INIT(&sc->sc_queue);
    382        1.1  jonathan 	SIMPLEQ_INIT(&sc->sc_qchip);
    383        1.1  jonathan 	SIMPLEQ_INIT(&sc->sc_queue2);
    384        1.1  jonathan 	SIMPLEQ_INIT(&sc->sc_qchip2);
    385       1.34       bad 	SIMPLEQ_INIT(&sc->sc_queue4);
    386       1.34       bad 	SIMPLEQ_INIT(&sc->sc_qchip4);
    387        1.1  jonathan 	SIMPLEQ_INIT(&sc->sc_q2free);
    388        1.1  jonathan 
    389        1.4   thorpej 	sc->sc_flags = up->ubsec_flags;
    390        1.4   thorpej 	sc->sc_statmask = up->ubsec_statmask;
    391       1.34       bad 	sc->sc_maxaggr = up->ubsec_maxaggr;
    392        1.1  jonathan 
    393        1.1  jonathan 	cmd = pci_conf_read(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG);
    394        1.4   thorpej 	cmd |= PCI_COMMAND_MASTER_ENABLE;
    395        1.1  jonathan 	pci_conf_write(pc, pa->pa_tag, PCI_COMMAND_STATUS_REG, cmd);
    396        1.1  jonathan 
    397       1.34       bad 	memtype = pci_mapreg_type(pa->pa_pc, pa->pa_tag, BS_BAR);
    398       1.34       bad 	if (pci_mapreg_map(pa, BS_BAR, memtype, 0,
    399       1.32       bad 	    &sc->sc_st, &sc->sc_sh, NULL, &sc->sc_memsize)) {
    400       1.28       chs 		aprint_error_dev(self, "can't find mem space");
    401        1.1  jonathan 		return;
    402        1.1  jonathan 	}
    403        1.1  jonathan 
    404        1.1  jonathan 	sc->sc_dmat = pa->pa_dmat;
    405        1.1  jonathan 
    406        1.1  jonathan 	if (pci_intr_map(pa, &ih)) {
    407       1.28       chs 		aprint_error_dev(self, "couldn't map interrupt\n");
    408        1.1  jonathan 		return;
    409        1.1  jonathan 	}
    410       1.38  christos 	intrstr = pci_intr_string(pc, ih, intrbuf, sizeof(intrbuf));
    411  1.43.18.1  christos 	sc->sc_ih = pci_intr_establish_xname(pc, ih, IPL_NET, ubsec_intr, sc,
    412  1.43.18.1  christos 	    device_xname(self));
    413        1.1  jonathan 	if (sc->sc_ih == NULL) {
    414       1.28       chs 		aprint_error_dev(self, "couldn't establish interrupt");
    415        1.1  jonathan 		if (intrstr != NULL)
    416       1.24     njoly 			aprint_error(" at %s", intrstr);
    417       1.24     njoly 		aprint_error("\n");
    418        1.1  jonathan 		return;
    419        1.1  jonathan 	}
    420       1.28       chs 	aprint_normal_dev(self, "interrupting at %s\n", intrstr);
    421        1.1  jonathan 
    422        1.1  jonathan 	sc->sc_cid = crypto_get_driverid(0);
    423        1.1  jonathan 	if (sc->sc_cid < 0) {
    424       1.28       chs 		aprint_error_dev(self, "couldn't get crypto driver id\n");
    425        1.1  jonathan 		pci_intr_disestablish(pc, sc->sc_ih);
    426        1.1  jonathan 		return;
    427        1.1  jonathan 	}
    428        1.1  jonathan 
    429       1.29       tls 	sc->sc_rng_need = RND_POOLBITS / NBBY;
    430       1.29       tls 	mutex_init(&sc->sc_mtx, MUTEX_DEFAULT, IPL_VM);
    431       1.29       tls 
    432        1.1  jonathan 	SIMPLEQ_INIT(&sc->sc_freequeue);
    433        1.1  jonathan 	dmap = sc->sc_dmaa;
    434        1.1  jonathan 	for (i = 0; i < UBS_MAX_NQUEUE; i++, dmap++) {
    435        1.1  jonathan 		struct ubsec_q *q;
    436        1.1  jonathan 
    437  1.43.18.3    martin 		q = malloc(sizeof(struct ubsec_q), M_DEVBUF, M_ZERO|M_WAITOK);
    438        1.1  jonathan 
    439        1.1  jonathan 		if (ubsec_dma_malloc(sc, sizeof(struct ubsec_dmachunk),
    440        1.1  jonathan 		    &dmap->d_alloc, 0)) {
    441       1.28       chs 			aprint_error_dev(self, "can't allocate dma buffers\n");
    442        1.1  jonathan 			free(q, M_DEVBUF);
    443        1.1  jonathan 			break;
    444        1.1  jonathan 		}
    445        1.1  jonathan 		dmap->d_dma = (struct ubsec_dmachunk *)dmap->d_alloc.dma_vaddr;
    446        1.1  jonathan 
    447        1.1  jonathan 		q->q_dma = dmap;
    448        1.1  jonathan 		sc->sc_queuea[i] = q;
    449        1.1  jonathan 
    450        1.1  jonathan 		SIMPLEQ_INSERT_TAIL(&sc->sc_freequeue, q, q_next);
    451        1.1  jonathan 	}
    452        1.1  jonathan 
    453        1.1  jonathan 	crypto_register(sc->sc_cid, CRYPTO_3DES_CBC, 0, 0,
    454        1.1  jonathan 	    ubsec_newsession, ubsec_freesession, ubsec_process, sc);
    455        1.1  jonathan 	crypto_register(sc->sc_cid, CRYPTO_DES_CBC, 0, 0,
    456        1.1  jonathan 	    ubsec_newsession, ubsec_freesession, ubsec_process, sc);
    457       1.15       tls 	crypto_register(sc->sc_cid, CRYPTO_MD5_HMAC_96, 0, 0,
    458        1.1  jonathan 	    ubsec_newsession, ubsec_freesession, ubsec_process, sc);
    459       1.15       tls 	crypto_register(sc->sc_cid, CRYPTO_SHA1_HMAC_96, 0, 0,
    460        1.1  jonathan 	    ubsec_newsession, ubsec_freesession, ubsec_process, sc);
    461       1.40       bad 	if (sc->sc_flags & UBS_FLAGS_AES) {
    462       1.40       bad 		crypto_register(sc->sc_cid, CRYPTO_AES_CBC, 0, 0,
    463       1.40       bad 		    ubsec_newsession, ubsec_freesession, ubsec_process, sc);
    464       1.40       bad 	}
    465        1.1  jonathan 
    466        1.1  jonathan 	/*
    467        1.1  jonathan 	 * Reset Broadcom chip
    468        1.1  jonathan 	 */
    469        1.1  jonathan 	ubsec_reset_board(sc);
    470        1.1  jonathan 
    471        1.1  jonathan 	/*
    472        1.1  jonathan 	 * Init Broadcom specific PCI settings
    473        1.1  jonathan 	 */
    474        1.1  jonathan 	ubsec_init_pciregs(pa);
    475        1.1  jonathan 
    476        1.1  jonathan 	/*
    477        1.1  jonathan 	 * Init Broadcom chip
    478        1.1  jonathan 	 */
    479        1.1  jonathan 	ubsec_init_board(sc);
    480        1.1  jonathan 
    481        1.1  jonathan #ifndef UBSEC_NO_RNG
    482        1.1  jonathan 	if (sc->sc_flags & UBS_FLAGS_RNG) {
    483       1.34       bad 		if (sc->sc_flags & UBS_FLAGS_RNG4)
    484       1.34       bad 			sc->sc_statmask |= BS_STAT_MCR4_DONE;
    485       1.34       bad 		else
    486       1.34       bad 			sc->sc_statmask |= BS_STAT_MCR2_DONE;
    487        1.1  jonathan 
    488        1.1  jonathan 		if (ubsec_dma_malloc(sc, sizeof(struct ubsec_mcr),
    489        1.1  jonathan 		    &sc->sc_rng.rng_q.q_mcr, 0))
    490        1.1  jonathan 			goto skip_rng;
    491        1.1  jonathan 
    492        1.1  jonathan 		if (ubsec_dma_malloc(sc, sizeof(struct ubsec_ctx_rngbypass),
    493        1.1  jonathan 		    &sc->sc_rng.rng_q.q_ctx, 0)) {
    494        1.1  jonathan 			ubsec_dma_free(sc, &sc->sc_rng.rng_q.q_mcr);
    495        1.1  jonathan 			goto skip_rng;
    496        1.1  jonathan 		}
    497        1.1  jonathan 
    498        1.1  jonathan 		if (ubsec_dma_malloc(sc, sizeof(u_int32_t) *
    499        1.1  jonathan 		    UBSEC_RNG_BUFSIZ, &sc->sc_rng.rng_buf, 0)) {
    500        1.1  jonathan 			ubsec_dma_free(sc, &sc->sc_rng.rng_q.q_ctx);
    501        1.1  jonathan 			ubsec_dma_free(sc, &sc->sc_rng.rng_q.q_mcr);
    502        1.1  jonathan 			goto skip_rng;
    503        1.1  jonathan 		}
    504        1.1  jonathan 
    505       1.29       tls 		rndsource_setcb(&sc->sc_rnd_source, ubsec_rng_get, sc);
    506       1.29       tls 		rnd_attach_source(&sc->sc_rnd_source, device_xname(sc->sc_dev),
    507       1.29       tls 				  RND_TYPE_RNG,
    508       1.41       tls 				  RND_FLAG_COLLECT_VALUE|RND_FLAG_HASCB);
    509        1.1  jonathan 		if (hz >= 100)
    510        1.1  jonathan 			sc->sc_rnghz = hz / 100;
    511        1.1  jonathan 		else
    512        1.1  jonathan 			sc->sc_rnghz = 1;
    513        1.1  jonathan #ifdef __OpenBSD__
    514        1.1  jonathan 		timeout_set(&sc->sc_rngto, ubsec_rng, sc);
    515        1.1  jonathan 		timeout_add(&sc->sc_rngto, sc->sc_rnghz);
    516        1.1  jonathan #else
    517       1.13        ad 		callout_init(&sc->sc_rngto, 0);
    518       1.30       bad 		callout_setfunc(&sc->sc_rngto, ubsec_rng, sc);
    519       1.30       bad 		callout_schedule(&sc->sc_rngto, sc->sc_rnghz);
    520        1.5     perry #endif
    521        1.4   thorpej  skip_rng:
    522        1.4   thorpej 		if (sc->sc_rnghz)
    523       1.43   msaitoh 			aprint_normal_dev(self,
    524       1.43   msaitoh 			    "random number generator enabled\n");
    525        1.4   thorpej 		else
    526       1.43   msaitoh 			aprint_error_dev(self,
    527       1.43   msaitoh 			    "WARNING: random number generator disabled\n");
    528        1.1  jonathan 	}
    529        1.1  jonathan #endif /* UBSEC_NO_RNG */
    530        1.1  jonathan 
    531        1.1  jonathan 	if (sc->sc_flags & UBS_FLAGS_KEY) {
    532        1.1  jonathan 		sc->sc_statmask |= BS_STAT_MCR2_DONE;
    533        1.1  jonathan 
    534        1.1  jonathan 		crypto_kregister(sc->sc_cid, CRK_MOD_EXP, 0,
    535        1.1  jonathan 				 ubsec_kprocess, sc);
    536        1.1  jonathan #if 0
    537        1.1  jonathan 		crypto_kregister(sc->sc_cid, CRK_MOD_EXP_CRT, 0,
    538        1.1  jonathan 				 ubsec_kprocess, sc);
    539        1.1  jonathan #endif
    540        1.1  jonathan 	}
    541        1.1  jonathan }
    542        1.1  jonathan 
    543       1.32       bad static int
    544       1.32       bad ubsec_detach(device_t self, int flags)
    545       1.32       bad {
    546       1.32       bad 	struct ubsec_softc *sc = device_private(self);
    547       1.32       bad 	struct ubsec_q *q, *qtmp;
    548       1.35       bad 	volatile u_int32_t ctrl;
    549       1.32       bad 
    550       1.32       bad 	/* disable interrupts */
    551       1.32       bad 	/* XXX wait/abort current ops? where is DMAERR enabled? */
    552       1.35       bad 	ctrl = READ_REG(sc, BS_CTRL);
    553       1.35       bad 
    554       1.35       bad 	ctrl &= ~(BS_CTRL_MCR2INT | BS_CTRL_MCR1INT | BS_CTRL_DMAERR);
    555       1.35       bad 	if (sc->sc_flags & UBS_FLAGS_MULTIMCR)
    556       1.35       bad 		ctrl &= ~BS_CTRL_MCR4INT;
    557       1.35       bad 
    558       1.35       bad 	WRITE_REG(sc, BS_CTRL, ctrl);
    559       1.32       bad 
    560       1.32       bad #ifndef UBSEC_NO_RNG
    561       1.32       bad 	if (sc->sc_flags & UBS_FLAGS_RNG) {
    562       1.32       bad 		callout_halt(&sc->sc_rngto, NULL);
    563       1.32       bad 		ubsec_dma_free(sc, &sc->sc_rng.rng_buf);
    564       1.32       bad 		ubsec_dma_free(sc, &sc->sc_rng.rng_q.q_ctx);
    565       1.32       bad 		ubsec_dma_free(sc, &sc->sc_rng.rng_q.q_mcr);
    566       1.32       bad 		rnd_detach_source(&sc->sc_rnd_source);
    567       1.32       bad 	}
    568       1.32       bad #endif /* UBSEC_NO_RNG */
    569       1.32       bad 
    570       1.32       bad 	crypto_unregister_all(sc->sc_cid);
    571       1.32       bad 
    572       1.32       bad 	mutex_spin_enter(&sc->sc_mtx);
    573       1.32       bad 
    574       1.32       bad 	ubsec_totalreset(sc);  /* XXX leaves the chip running */
    575       1.32       bad 
    576       1.32       bad 	SIMPLEQ_FOREACH_SAFE(q, &sc->sc_freequeue, q_next, qtmp) {
    577       1.32       bad 		ubsec_dma_free(sc, &q->q_dma->d_alloc);
    578       1.39       bad 		if (q->q_src_map != NULL)
    579       1.39       bad 			bus_dmamap_destroy(sc->sc_dmat, q->q_src_map);
    580       1.39       bad 		if (q->q_cached_dst_map != NULL)
    581       1.39       bad 			bus_dmamap_destroy(sc->sc_dmat, q->q_cached_dst_map);
    582       1.32       bad 		free(q, M_DEVBUF);
    583       1.32       bad 	}
    584       1.32       bad 
    585       1.32       bad 	mutex_spin_exit(&sc->sc_mtx);
    586       1.32       bad 
    587       1.32       bad 	if (sc->sc_ih != NULL) {
    588       1.32       bad 		pci_intr_disestablish(sc->sc_pct, sc->sc_ih);
    589       1.32       bad 		sc->sc_ih = NULL;
    590       1.32       bad 	}
    591       1.32       bad 
    592       1.32       bad 	if (sc->sc_memsize != 0) {
    593       1.32       bad 		bus_space_unmap(sc->sc_st, sc->sc_sh, sc->sc_memsize);
    594       1.32       bad 		sc->sc_memsize = 0;
    595       1.32       bad 	}
    596       1.32       bad 
    597       1.32       bad 	return 0;
    598       1.32       bad }
    599       1.32       bad 
    600       1.36  pgoyette MODULE(MODULE_CLASS_DRIVER, ubsec, "pci,opencrypto");
    601       1.32       bad 
    602       1.32       bad #ifdef _MODULE
    603       1.32       bad #include "ioconf.c"
    604       1.32       bad #endif
    605       1.32       bad 
    606       1.32       bad static int
    607       1.32       bad ubsec_modcmd(modcmd_t cmd, void *data)
    608       1.32       bad {
    609       1.32       bad 	int error = 0;
    610       1.32       bad 
    611       1.32       bad 	switch (cmd) {
    612       1.32       bad 	case MODULE_CMD_INIT:
    613       1.32       bad #ifdef _MODULE
    614       1.32       bad 		error = config_init_component(cfdriver_ioconf_ubsec,
    615       1.32       bad 		    cfattach_ioconf_ubsec, cfdata_ioconf_ubsec);
    616       1.32       bad #endif
    617       1.32       bad 		return error;
    618       1.32       bad 	case MODULE_CMD_FINI:
    619       1.32       bad #ifdef _MODULE
    620       1.32       bad 		error = config_fini_component(cfdriver_ioconf_ubsec,
    621       1.32       bad 		    cfattach_ioconf_ubsec, cfdata_ioconf_ubsec);
    622       1.32       bad #endif
    623       1.32       bad 		return error;
    624       1.32       bad 	default:
    625       1.32       bad 		return ENOTTY;
    626       1.32       bad 	}
    627       1.32       bad }
    628       1.32       bad 
    629  1.43.18.2    martin SYSCTL_SETUP(ubsec_sysctl_init, "ubsec sysctl")
    630       1.33       bad {
    631       1.33       bad 	const struct sysctlnode *node = NULL;
    632       1.33       bad 
    633  1.43.18.2    martin 	sysctl_createv(clog, 0, NULL, &node,
    634       1.33       bad 		CTLFLAG_PERMANENT,
    635       1.33       bad 		CTLTYPE_NODE, "ubsec",
    636       1.33       bad 		SYSCTL_DESCR("ubsec opetions"),
    637       1.33       bad 		NULL, 0, NULL, 0,
    638       1.33       bad 		CTL_HW, CTL_CREATE, CTL_EOL);
    639  1.43.18.2    martin 	sysctl_createv(clog, 0, &node, NULL,
    640       1.33       bad 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
    641       1.33       bad 		CTLTYPE_INT, "maxbatch",
    642       1.33       bad 		SYSCTL_DESCR("max ops to batch w/o interrupt"),
    643       1.33       bad 		NULL, 0, &ubsec_maxbatch, 0,
    644       1.33       bad 		CTL_CREATE, CTL_EOL);
    645  1.43.18.2    martin 	sysctl_createv(clog, 0, &node, NULL,
    646       1.33       bad 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
    647       1.33       bad 		CTLTYPE_INT, "maxaggr",
    648       1.33       bad 		SYSCTL_DESCR("max ops to aggregate under one interrupt"),
    649       1.33       bad 		NULL, 0, &ubsec_maxaggr, 0,
    650       1.33       bad 		CTL_CREATE, CTL_EOL);
    651       1.33       bad 
    652  1.43.18.2    martin 	return;
    653       1.33       bad }
    654       1.33       bad 
    655        1.1  jonathan /*
    656        1.1  jonathan  * UBSEC Interrupt routine
    657        1.1  jonathan  */
    658        1.7   thorpej static int
    659        1.1  jonathan ubsec_intr(void *arg)
    660        1.1  jonathan {
    661        1.1  jonathan 	struct ubsec_softc *sc = arg;
    662        1.1  jonathan 	volatile u_int32_t stat;
    663        1.1  jonathan 	struct ubsec_q *q;
    664        1.1  jonathan 	struct ubsec_dma *dmap;
    665       1.34       bad 	int flags;
    666        1.1  jonathan 	int npkts = 0, i;
    667        1.1  jonathan 
    668       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
    669        1.1  jonathan 	stat = READ_REG(sc, BS_STAT);
    670        1.1  jonathan 	stat &= sc->sc_statmask;
    671        1.1  jonathan 	if (stat == 0) {
    672       1.29       tls 		mutex_spin_exit(&sc->sc_mtx);
    673        1.1  jonathan 		return (0);
    674        1.1  jonathan 	}
    675        1.1  jonathan 
    676        1.1  jonathan 	WRITE_REG(sc, BS_STAT, stat);		/* IACK */
    677        1.1  jonathan 
    678        1.1  jonathan 	/*
    679        1.1  jonathan 	 * Check to see if we have any packets waiting for us
    680        1.1  jonathan 	 */
    681        1.1  jonathan 	if ((stat & BS_STAT_MCR1_DONE)) {
    682        1.1  jonathan 		while (!SIMPLEQ_EMPTY(&sc->sc_qchip)) {
    683        1.1  jonathan 			q = SIMPLEQ_FIRST(&sc->sc_qchip);
    684        1.1  jonathan 			dmap = q->q_dma;
    685        1.1  jonathan 
    686       1.43   msaitoh 			if ((dmap->d_dma->d_mcr.mcr_flags
    687       1.43   msaitoh 			    & htole16(UBS_MCR_DONE)) == 0)
    688        1.1  jonathan 				break;
    689        1.1  jonathan 
    690        1.1  jonathan 			q = SIMPLEQ_FIRST(&sc->sc_qchip);
    691        1.1  jonathan 			SIMPLEQ_REMOVE_HEAD(&sc->sc_qchip, /*q,*/ q_next);
    692        1.1  jonathan 
    693        1.1  jonathan 			npkts = q->q_nstacked_mcrs;
    694        1.1  jonathan 			sc->sc_nqchip -= 1+npkts;
    695        1.1  jonathan 			/*
    696        1.1  jonathan 			 * search for further sc_qchip ubsec_q's that share
    697        1.1  jonathan 			 * the same MCR, and complete them too, they must be
    698        1.1  jonathan 			 * at the top.
    699        1.1  jonathan 			 */
    700        1.1  jonathan 			for (i = 0; i < npkts; i++) {
    701        1.1  jonathan 				if(q->q_stacked_mcr[i])
    702        1.1  jonathan 					ubsec_callback(sc, q->q_stacked_mcr[i]);
    703        1.1  jonathan 				else
    704        1.1  jonathan 					break;
    705        1.1  jonathan 			}
    706        1.1  jonathan 			ubsec_callback(sc, q);
    707        1.1  jonathan 		}
    708        1.1  jonathan 
    709        1.1  jonathan 		/*
    710        1.1  jonathan 		 * Don't send any more packet to chip if there has been
    711        1.1  jonathan 		 * a DMAERR.
    712        1.1  jonathan 		 */
    713        1.1  jonathan 		if (!(stat & BS_STAT_DMAERR))
    714        1.1  jonathan 			ubsec_feed(sc);
    715        1.1  jonathan 	}
    716        1.1  jonathan 
    717        1.1  jonathan 	/*
    718        1.1  jonathan 	 * Check to see if we have any key setups/rng's waiting for us
    719        1.1  jonathan 	 */
    720        1.1  jonathan 	if ((sc->sc_flags & (UBS_FLAGS_KEY|UBS_FLAGS_RNG)) &&
    721        1.1  jonathan 	    (stat & BS_STAT_MCR2_DONE)) {
    722        1.1  jonathan 		struct ubsec_q2 *q2;
    723        1.1  jonathan 		struct ubsec_mcr *mcr;
    724        1.1  jonathan 
    725        1.1  jonathan 		while (!SIMPLEQ_EMPTY(&sc->sc_qchip2)) {
    726        1.1  jonathan 			q2 = SIMPLEQ_FIRST(&sc->sc_qchip2);
    727        1.1  jonathan 
    728        1.1  jonathan 			bus_dmamap_sync(sc->sc_dmat, q2->q_mcr.dma_map,
    729        1.1  jonathan 			    0, q2->q_mcr.dma_map->dm_mapsize,
    730        1.1  jonathan 			    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
    731        1.1  jonathan 
    732        1.1  jonathan 			mcr = (struct ubsec_mcr *)q2->q_mcr.dma_vaddr;
    733       1.34       bad 
    734       1.34       bad 			/* A bug in new devices requires to swap this field */
    735       1.34       bad 			if (sc->sc_flags & UBS_FLAGS_MULTIMCR)
    736       1.34       bad 				flags = htole16(mcr->mcr_flags);
    737       1.34       bad 			else
    738       1.34       bad 				flags = mcr->mcr_flags;
    739       1.34       bad 			if ((flags & htole16(UBS_MCR_DONE)) == 0) {
    740        1.1  jonathan 				bus_dmamap_sync(sc->sc_dmat,
    741        1.1  jonathan 				    q2->q_mcr.dma_map, 0,
    742        1.1  jonathan 				    q2->q_mcr.dma_map->dm_mapsize,
    743        1.1  jonathan 				    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    744        1.1  jonathan 				break;
    745        1.1  jonathan 			}
    746        1.1  jonathan 			q2 = SIMPLEQ_FIRST(&sc->sc_qchip2);
    747        1.1  jonathan 			SIMPLEQ_REMOVE_HEAD(&sc->sc_qchip2, /*q2,*/ q_next);
    748        1.1  jonathan 			ubsec_callback2(sc, q2);
    749        1.1  jonathan 			/*
    750        1.1  jonathan 			 * Don't send any more packet to chip if there has been
    751        1.1  jonathan 			 * a DMAERR.
    752        1.1  jonathan 			 */
    753        1.1  jonathan 			if (!(stat & BS_STAT_DMAERR))
    754        1.1  jonathan 				ubsec_feed2(sc);
    755        1.1  jonathan 		}
    756        1.1  jonathan 	}
    757       1.34       bad 	if ((sc->sc_flags & UBS_FLAGS_RNG4) && (stat & BS_STAT_MCR4_DONE)) {
    758       1.34       bad 		struct ubsec_q2 *q2;
    759       1.34       bad 		struct ubsec_mcr *mcr;
    760       1.34       bad 
    761       1.34       bad 		while (!SIMPLEQ_EMPTY(&sc->sc_qchip4)) {
    762       1.34       bad 			q2 = SIMPLEQ_FIRST(&sc->sc_qchip4);
    763       1.34       bad 
    764       1.34       bad 			bus_dmamap_sync(sc->sc_dmat, q2->q_mcr.dma_map,
    765       1.34       bad 			    0, q2->q_mcr.dma_map->dm_mapsize,
    766       1.34       bad 			    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
    767       1.34       bad 
    768       1.34       bad 			mcr = (struct ubsec_mcr *)q2->q_mcr.dma_vaddr;
    769       1.34       bad 
    770       1.34       bad 			/* A bug in new devices requires to swap this field */
    771       1.34       bad 			flags = htole16(mcr->mcr_flags);
    772       1.34       bad 
    773       1.34       bad 			if ((flags & htole16(UBS_MCR_DONE)) == 0) {
    774       1.34       bad 				bus_dmamap_sync(sc->sc_dmat,
    775       1.34       bad 				    q2->q_mcr.dma_map, 0,
    776       1.34       bad 				    q2->q_mcr.dma_map->dm_mapsize,
    777       1.34       bad 				    BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
    778       1.34       bad 				break;
    779       1.34       bad 			}
    780       1.34       bad 			SIMPLEQ_REMOVE_HEAD(&sc->sc_qchip4, q_next);
    781       1.34       bad 			ubsec_callback2(sc, q2);
    782       1.34       bad 			/*
    783       1.34       bad 			 * Don't send any more packet to chip if there has been
    784       1.34       bad 			 * a DMAERR.
    785       1.34       bad 			 */
    786       1.34       bad 			if (!(stat & BS_STAT_DMAERR))
    787       1.34       bad 				ubsec_feed4(sc);
    788       1.34       bad 		}
    789       1.34       bad 	}
    790        1.1  jonathan 
    791        1.1  jonathan 	/*
    792        1.1  jonathan 	 * Check to see if we got any DMA Error
    793        1.1  jonathan 	 */
    794        1.1  jonathan 	if (stat & BS_STAT_DMAERR) {
    795        1.1  jonathan #ifdef UBSEC_DEBUG
    796        1.1  jonathan 		if (ubsec_debug) {
    797        1.1  jonathan 			volatile u_int32_t a = READ_REG(sc, BS_ERR);
    798        1.1  jonathan 
    799       1.28       chs 			printf("%s: dmaerr %s@%08x\n", device_xname(sc->sc_dev),
    800        1.1  jonathan 			    (a & BS_ERR_READ) ? "read" : "write",
    801        1.1  jonathan 			       a & BS_ERR_ADDR);
    802        1.1  jonathan 		}
    803        1.1  jonathan #endif /* UBSEC_DEBUG */
    804        1.1  jonathan 		ubsecstats.hst_dmaerr++;
    805        1.1  jonathan 		ubsec_totalreset(sc);
    806        1.1  jonathan 		ubsec_feed(sc);
    807        1.1  jonathan 	}
    808        1.1  jonathan 
    809        1.1  jonathan 	if (sc->sc_needwakeup) {		/* XXX check high watermark */
    810        1.6  christos 		int wkeup = sc->sc_needwakeup & (CRYPTO_SYMQ|CRYPTO_ASYMQ);
    811        1.1  jonathan #ifdef UBSEC_DEBUG
    812        1.1  jonathan 		if (ubsec_debug)
    813       1.43   msaitoh 			printf("%s: wakeup crypto (%x)\n",
    814       1.43   msaitoh 			    device_xname(sc->sc_dev), sc->sc_needwakeup);
    815        1.1  jonathan #endif /* UBSEC_DEBUG */
    816        1.6  christos 		sc->sc_needwakeup &= ~wkeup;
    817        1.6  christos 		crypto_unblock(sc->sc_cid, wkeup);
    818        1.1  jonathan 	}
    819       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
    820        1.1  jonathan 	return (1);
    821        1.1  jonathan }
    822        1.1  jonathan 
    823        1.1  jonathan /*
    824        1.1  jonathan  * ubsec_feed() - aggregate and post requests to chip
    825        1.1  jonathan  * OpenBSD comments:
    826        1.1  jonathan  *		  It is assumed that the caller set splnet()
    827        1.1  jonathan  */
    828        1.1  jonathan static void
    829        1.1  jonathan ubsec_feed(struct ubsec_softc *sc)
    830        1.1  jonathan {
    831        1.1  jonathan 	struct ubsec_q *q, *q2;
    832        1.1  jonathan 	int npkts, i;
    833        1.1  jonathan 	void *v;
    834        1.1  jonathan 	u_int32_t stat;
    835        1.1  jonathan #ifdef UBSEC_DEBUG
    836        1.1  jonathan 	static int max;
    837        1.1  jonathan #endif /* UBSEC_DEBUG */
    838        1.1  jonathan 
    839        1.1  jonathan 	npkts = sc->sc_nqueue;
    840        1.1  jonathan 	if (npkts > ubsecstats.hst_maxqueue)
    841        1.1  jonathan 		ubsecstats.hst_maxqueue = npkts;
    842        1.1  jonathan 	if (npkts < 2)
    843        1.1  jonathan 		goto feed1;
    844        1.1  jonathan 
    845        1.1  jonathan 	/*
    846        1.1  jonathan 	 * Decide how many ops to combine in a single MCR.  We cannot
    847        1.1  jonathan 	 * aggregate more than UBS_MAX_AGGR because this is the number
    848        1.1  jonathan 	 * of slots defined in the data structure.  Otherwise we clamp
    849        1.1  jonathan 	 * based on the tunable parameter ubsec_maxaggr.  Note that
    850        1.1  jonathan 	 * aggregation can happen in two ways: either by batching ops
    851        1.5     perry 	 * from above or because the h/w backs up and throttles us.
    852        1.1  jonathan 	 * Aggregating ops reduces the number of interrupts to the host
    853        1.1  jonathan 	 * but also (potentially) increases the latency for processing
    854        1.1  jonathan 	 * completed ops as we only get an interrupt when all aggregated
    855        1.1  jonathan 	 * ops have completed.
    856        1.1  jonathan 	 */
    857       1.34       bad 	if (npkts > sc->sc_maxaggr)
    858       1.34       bad 		npkts = sc->sc_maxaggr;
    859        1.1  jonathan 	if (npkts > ubsec_maxaggr)
    860        1.1  jonathan 		npkts = ubsec_maxaggr;
    861        1.1  jonathan 	if (npkts > ubsecstats.hst_maxbatch)
    862        1.1  jonathan 		ubsecstats.hst_maxbatch = npkts;
    863        1.1  jonathan 	if (npkts < 2)
    864        1.1  jonathan 		goto feed1;
    865        1.1  jonathan 	ubsecstats.hst_totbatch += npkts-1;
    866        1.1  jonathan 
    867       1.43   msaitoh 	if ((stat = READ_REG(sc, BS_STAT))
    868       1.43   msaitoh 	    & (BS_STAT_MCR1_FULL | BS_STAT_DMAERR)) {
    869        1.1  jonathan 		if (stat & BS_STAT_DMAERR) {
    870        1.1  jonathan 			ubsec_totalreset(sc);
    871        1.1  jonathan 			ubsecstats.hst_dmaerr++;
    872        1.1  jonathan 		} else {
    873        1.1  jonathan 			ubsecstats.hst_mcr1full++;
    874        1.1  jonathan 		}
    875        1.1  jonathan 		return;
    876        1.1  jonathan 	}
    877        1.1  jonathan 
    878        1.1  jonathan #ifdef UBSEC_DEBUG
    879        1.1  jonathan 	if (ubsec_debug)
    880        1.1  jonathan 	    printf("merging %d records\n", npkts);
    881        1.1  jonathan 	/* XXX temporary aggregation statistics reporting code */
    882        1.1  jonathan 	if (max < npkts) {
    883        1.1  jonathan 		max = npkts;
    884       1.43   msaitoh 		printf("%s: new max aggregate %d\n", device_xname(sc->sc_dev),
    885       1.43   msaitoh 		    max);
    886        1.1  jonathan 	}
    887        1.1  jonathan #endif /* UBSEC_DEBUG */
    888        1.1  jonathan 
    889        1.1  jonathan 	q = SIMPLEQ_FIRST(&sc->sc_queue);
    890        1.1  jonathan 	SIMPLEQ_REMOVE_HEAD(&sc->sc_queue, /*q,*/ q_next);
    891        1.1  jonathan 	--sc->sc_nqueue;
    892        1.1  jonathan 
    893        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, q->q_src_map,
    894        1.1  jonathan 	    0, q->q_src_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
    895        1.1  jonathan 	if (q->q_dst_map != NULL)
    896        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q->q_dst_map,
    897        1.1  jonathan 		    0, q->q_dst_map->dm_mapsize, BUS_DMASYNC_PREREAD);
    898        1.1  jonathan 
    899        1.1  jonathan 	q->q_nstacked_mcrs = npkts - 1;		/* Number of packets stacked */
    900        1.1  jonathan 
    901        1.1  jonathan 	for (i = 0; i < q->q_nstacked_mcrs; i++) {
    902        1.1  jonathan 		q2 = SIMPLEQ_FIRST(&sc->sc_queue);
    903        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q2->q_src_map,
    904        1.1  jonathan 		    0, q2->q_src_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
    905        1.1  jonathan 		if (q2->q_dst_map != NULL)
    906        1.1  jonathan 			bus_dmamap_sync(sc->sc_dmat, q2->q_dst_map,
    907        1.1  jonathan 			    0, q2->q_dst_map->dm_mapsize, BUS_DMASYNC_PREREAD);
    908        1.1  jonathan 		q2= SIMPLEQ_FIRST(&sc->sc_queue);
    909        1.1  jonathan 		SIMPLEQ_REMOVE_HEAD(&sc->sc_queue, /*q2,*/ q_next);
    910        1.1  jonathan 		--sc->sc_nqueue;
    911        1.1  jonathan 
    912        1.1  jonathan 		v = ((void *)&q2->q_dma->d_dma->d_mcr);
    913        1.1  jonathan 		v = (char*)v + (sizeof(struct ubsec_mcr) -
    914        1.1  jonathan 				 sizeof(struct ubsec_mcr_add));
    915       1.43   msaitoh 		memcpy(&q->q_dma->d_dma->d_mcradd[i], v,
    916       1.43   msaitoh 		    sizeof(struct ubsec_mcr_add));
    917        1.1  jonathan 		q->q_stacked_mcr[i] = q2;
    918        1.1  jonathan 	}
    919        1.1  jonathan 	q->q_dma->d_dma->d_mcr.mcr_pkts = htole16(npkts);
    920        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_qchip, q, q_next);
    921        1.1  jonathan 	sc->sc_nqchip += npkts;
    922        1.1  jonathan 	if (sc->sc_nqchip > ubsecstats.hst_maxqchip)
    923        1.1  jonathan 		ubsecstats.hst_maxqchip = sc->sc_nqchip;
    924        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, q->q_dma->d_alloc.dma_map,
    925        1.1  jonathan 	    0, q->q_dma->d_alloc.dma_map->dm_mapsize,
    926        1.1  jonathan 	    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
    927        1.1  jonathan 	WRITE_REG(sc, BS_MCR1, q->q_dma->d_alloc.dma_paddr +
    928        1.1  jonathan 	    offsetof(struct ubsec_dmachunk, d_mcr));
    929        1.1  jonathan 	return;
    930        1.1  jonathan 
    931        1.1  jonathan feed1:
    932        1.1  jonathan 	while (!SIMPLEQ_EMPTY(&sc->sc_queue)) {
    933       1.43   msaitoh 		if ((stat = READ_REG(sc, BS_STAT))
    934       1.43   msaitoh 		    & (BS_STAT_MCR1_FULL | BS_STAT_DMAERR)) {
    935        1.1  jonathan 			if (stat & BS_STAT_DMAERR) {
    936        1.1  jonathan 				ubsec_totalreset(sc);
    937        1.1  jonathan 				ubsecstats.hst_dmaerr++;
    938        1.1  jonathan 			} else {
    939        1.1  jonathan 				ubsecstats.hst_mcr1full++;
    940        1.1  jonathan 			}
    941        1.1  jonathan 			break;
    942        1.1  jonathan 		}
    943        1.1  jonathan 
    944        1.1  jonathan 		q = SIMPLEQ_FIRST(&sc->sc_queue);
    945        1.1  jonathan 
    946        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q->q_src_map,
    947        1.1  jonathan 		    0, q->q_src_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
    948        1.1  jonathan 		if (q->q_dst_map != NULL)
    949        1.1  jonathan 			bus_dmamap_sync(sc->sc_dmat, q->q_dst_map,
    950        1.1  jonathan 			    0, q->q_dst_map->dm_mapsize, BUS_DMASYNC_PREREAD);
    951        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q->q_dma->d_alloc.dma_map,
    952        1.1  jonathan 		    0, q->q_dma->d_alloc.dma_map->dm_mapsize,
    953        1.1  jonathan 		    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
    954        1.1  jonathan 
    955        1.1  jonathan 		WRITE_REG(sc, BS_MCR1, q->q_dma->d_alloc.dma_paddr +
    956        1.1  jonathan 		    offsetof(struct ubsec_dmachunk, d_mcr));
    957        1.1  jonathan #ifdef UBSEC_DEBUG
    958        1.1  jonathan 		if (ubsec_debug)
    959        1.1  jonathan 			printf("feed: q->chip %p %08x stat %08x\n",
    960        1.1  jonathan  		    	       q, (u_int32_t)q->q_dma->d_alloc.dma_paddr,
    961        1.1  jonathan 			       stat);
    962        1.1  jonathan #endif /* UBSEC_DEBUG */
    963        1.1  jonathan 		q = SIMPLEQ_FIRST(&sc->sc_queue);
    964        1.1  jonathan 		SIMPLEQ_REMOVE_HEAD(&sc->sc_queue, /*q,*/ q_next);
    965        1.1  jonathan 		--sc->sc_nqueue;
    966        1.1  jonathan 		SIMPLEQ_INSERT_TAIL(&sc->sc_qchip, q, q_next);
    967        1.1  jonathan 		sc->sc_nqchip++;
    968        1.1  jonathan 	}
    969        1.1  jonathan 	if (sc->sc_nqchip > ubsecstats.hst_maxqchip)
    970        1.1  jonathan 		ubsecstats.hst_maxqchip = sc->sc_nqchip;
    971        1.1  jonathan }
    972        1.1  jonathan 
    973        1.1  jonathan /*
    974        1.1  jonathan  * Allocate a new 'session' and return an encoded session id.  'sidp'
    975        1.1  jonathan  * contains our registration id, and should contain an encoded session
    976        1.1  jonathan  * id on successful allocation.
    977        1.1  jonathan  */
    978        1.1  jonathan static int
    979        1.1  jonathan ubsec_newsession(void *arg, u_int32_t *sidp, struct cryptoini *cri)
    980        1.1  jonathan {
    981        1.1  jonathan 	struct cryptoini *c, *encini = NULL, *macini = NULL;
    982        1.1  jonathan 	struct ubsec_softc *sc;
    983        1.1  jonathan 	struct ubsec_session *ses = NULL;
    984        1.1  jonathan 	MD5_CTX md5ctx;
    985        1.1  jonathan 	SHA1_CTX sha1ctx;
    986        1.1  jonathan 	int i, sesn;
    987        1.1  jonathan 
    988        1.2  jonathan 	sc = arg;
    989        1.2  jonathan 	KASSERT(sc != NULL /*, ("ubsec_newsession: null softc")*/);
    990        1.2  jonathan 
    991        1.1  jonathan 	if (sidp == NULL || cri == NULL || sc == NULL)
    992        1.1  jonathan 		return (EINVAL);
    993        1.1  jonathan 
    994        1.1  jonathan 	for (c = cri; c != NULL; c = c->cri_next) {
    995       1.15       tls 		if (c->cri_alg == CRYPTO_MD5_HMAC_96 ||
    996       1.15       tls 		    c->cri_alg == CRYPTO_SHA1_HMAC_96) {
    997        1.1  jonathan 			if (macini)
    998        1.1  jonathan 				return (EINVAL);
    999        1.1  jonathan 			macini = c;
   1000        1.1  jonathan 		} else if (c->cri_alg == CRYPTO_DES_CBC ||
   1001       1.40       bad 		    c->cri_alg == CRYPTO_3DES_CBC ||
   1002       1.40       bad 		    c->cri_alg == CRYPTO_AES_CBC) {
   1003        1.1  jonathan 			if (encini)
   1004        1.1  jonathan 				return (EINVAL);
   1005        1.1  jonathan 			encini = c;
   1006        1.1  jonathan 		} else
   1007        1.1  jonathan 			return (EINVAL);
   1008        1.1  jonathan 	}
   1009        1.1  jonathan 	if (encini == NULL && macini == NULL)
   1010        1.1  jonathan 		return (EINVAL);
   1011        1.1  jonathan 
   1012       1.40       bad 	if (encini && encini->cri_alg == CRYPTO_AES_CBC) {
   1013       1.40       bad 		switch (encini->cri_klen) {
   1014       1.40       bad 		case 128:
   1015       1.40       bad 		case 192:
   1016       1.40       bad 		case 256:
   1017       1.40       bad 			break;
   1018       1.40       bad 		default:
   1019       1.40       bad 			return (EINVAL);
   1020       1.40       bad 		}
   1021       1.40       bad 	}
   1022       1.40       bad 
   1023        1.1  jonathan 	if (sc->sc_sessions == NULL) {
   1024        1.1  jonathan 		ses = sc->sc_sessions = (struct ubsec_session *)malloc(
   1025        1.1  jonathan 		    sizeof(struct ubsec_session), M_DEVBUF, M_NOWAIT);
   1026        1.1  jonathan 		if (ses == NULL)
   1027        1.1  jonathan 			return (ENOMEM);
   1028        1.1  jonathan 		sesn = 0;
   1029        1.1  jonathan 		sc->sc_nsessions = 1;
   1030        1.1  jonathan 	} else {
   1031        1.1  jonathan 		for (sesn = 0; sesn < sc->sc_nsessions; sesn++) {
   1032        1.1  jonathan 			if (sc->sc_sessions[sesn].ses_used == 0) {
   1033        1.1  jonathan 				ses = &sc->sc_sessions[sesn];
   1034        1.1  jonathan 				break;
   1035        1.1  jonathan 			}
   1036        1.1  jonathan 		}
   1037        1.1  jonathan 
   1038        1.1  jonathan 		if (ses == NULL) {
   1039        1.1  jonathan 			sesn = sc->sc_nsessions;
   1040        1.1  jonathan 			ses = (struct ubsec_session *)malloc((sesn + 1) *
   1041        1.1  jonathan 			    sizeof(struct ubsec_session), M_DEVBUF, M_NOWAIT);
   1042        1.1  jonathan 			if (ses == NULL)
   1043        1.1  jonathan 				return (ENOMEM);
   1044       1.20   tsutsui 			memcpy(ses, sc->sc_sessions, sesn *
   1045        1.1  jonathan 			    sizeof(struct ubsec_session));
   1046       1.18    cegger 			memset(sc->sc_sessions, 0, sesn *
   1047        1.1  jonathan 			    sizeof(struct ubsec_session));
   1048        1.1  jonathan 			free(sc->sc_sessions, M_DEVBUF);
   1049        1.1  jonathan 			sc->sc_sessions = ses;
   1050        1.1  jonathan 			ses = &sc->sc_sessions[sesn];
   1051        1.1  jonathan 			sc->sc_nsessions++;
   1052        1.1  jonathan 		}
   1053        1.1  jonathan 	}
   1054        1.1  jonathan 
   1055       1.18    cegger 	memset(ses, 0, sizeof(struct ubsec_session));
   1056        1.1  jonathan 	ses->ses_used = 1;
   1057        1.1  jonathan 	if (encini) {
   1058        1.1  jonathan 		/* get an IV, network byte order */
   1059        1.1  jonathan #ifdef __NetBSD__
   1060       1.26       tls 		cprng_fast(ses->ses_iv, sizeof(ses->ses_iv));
   1061        1.1  jonathan #else
   1062        1.1  jonathan 		get_random_bytes(ses->ses_iv, sizeof(ses->ses_iv));
   1063        1.1  jonathan #endif
   1064        1.1  jonathan 
   1065        1.1  jonathan 		/* Go ahead and compute key in ubsec's byte order */
   1066       1.40       bad 		if (encini->cri_alg == CRYPTO_AES_CBC) {
   1067       1.40       bad 			memcpy(ses->ses_key, encini->cri_key,
   1068       1.40       bad 			    encini->cri_klen / 8);
   1069       1.40       bad 		}
   1070        1.1  jonathan 		if (encini->cri_alg == CRYPTO_DES_CBC) {
   1071       1.40       bad 			memcpy(&ses->ses_key[0], encini->cri_key, 8);
   1072       1.40       bad 			memcpy(&ses->ses_key[2], encini->cri_key, 8);
   1073       1.40       bad 			memcpy(&ses->ses_key[4], encini->cri_key, 8);
   1074        1.1  jonathan 		} else
   1075       1.40       bad 			memcpy(ses->ses_key, encini->cri_key, 24);
   1076        1.1  jonathan 
   1077       1.40       bad 		SWAP32(ses->ses_key[0]);
   1078       1.40       bad 		SWAP32(ses->ses_key[1]);
   1079       1.40       bad 		SWAP32(ses->ses_key[2]);
   1080       1.40       bad 		SWAP32(ses->ses_key[3]);
   1081       1.40       bad 		SWAP32(ses->ses_key[4]);
   1082       1.40       bad 		SWAP32(ses->ses_key[5]);
   1083        1.1  jonathan 	}
   1084        1.1  jonathan 
   1085        1.1  jonathan 	if (macini) {
   1086        1.1  jonathan 		for (i = 0; i < macini->cri_klen / 8; i++)
   1087        1.1  jonathan 			macini->cri_key[i] ^= HMAC_IPAD_VAL;
   1088        1.1  jonathan 
   1089       1.15       tls 		if (macini->cri_alg == CRYPTO_MD5_HMAC_96) {
   1090        1.1  jonathan 			MD5Init(&md5ctx);
   1091        1.1  jonathan 			MD5Update(&md5ctx, macini->cri_key,
   1092        1.1  jonathan 			    macini->cri_klen / 8);
   1093        1.1  jonathan 			MD5Update(&md5ctx, hmac_ipad_buffer,
   1094        1.1  jonathan 			    HMAC_BLOCK_LEN - (macini->cri_klen / 8));
   1095       1.20   tsutsui 			memcpy(ses->ses_hminner, md5ctx.state,
   1096        1.1  jonathan 			    sizeof(md5ctx.state));
   1097        1.1  jonathan 		} else {
   1098        1.1  jonathan 			SHA1Init(&sha1ctx);
   1099        1.1  jonathan 			SHA1Update(&sha1ctx, macini->cri_key,
   1100        1.1  jonathan 			    macini->cri_klen / 8);
   1101        1.1  jonathan 			SHA1Update(&sha1ctx, hmac_ipad_buffer,
   1102        1.1  jonathan 			    HMAC_BLOCK_LEN - (macini->cri_klen / 8));
   1103       1.20   tsutsui 			memcpy(ses->ses_hminner, sha1ctx.state,
   1104        1.1  jonathan 			    sizeof(sha1ctx.state));
   1105        1.1  jonathan 		}
   1106        1.1  jonathan 
   1107        1.1  jonathan 		for (i = 0; i < macini->cri_klen / 8; i++)
   1108        1.1  jonathan 			macini->cri_key[i] ^= (HMAC_IPAD_VAL ^ HMAC_OPAD_VAL);
   1109        1.1  jonathan 
   1110       1.15       tls 		if (macini->cri_alg == CRYPTO_MD5_HMAC_96) {
   1111        1.1  jonathan 			MD5Init(&md5ctx);
   1112        1.1  jonathan 			MD5Update(&md5ctx, macini->cri_key,
   1113        1.1  jonathan 			    macini->cri_klen / 8);
   1114        1.1  jonathan 			MD5Update(&md5ctx, hmac_opad_buffer,
   1115        1.1  jonathan 			    HMAC_BLOCK_LEN - (macini->cri_klen / 8));
   1116       1.20   tsutsui 			memcpy(ses->ses_hmouter, md5ctx.state,
   1117        1.1  jonathan 			    sizeof(md5ctx.state));
   1118        1.1  jonathan 		} else {
   1119        1.1  jonathan 			SHA1Init(&sha1ctx);
   1120        1.1  jonathan 			SHA1Update(&sha1ctx, macini->cri_key,
   1121        1.1  jonathan 			    macini->cri_klen / 8);
   1122        1.1  jonathan 			SHA1Update(&sha1ctx, hmac_opad_buffer,
   1123        1.1  jonathan 			    HMAC_BLOCK_LEN - (macini->cri_klen / 8));
   1124       1.20   tsutsui 			memcpy(ses->ses_hmouter, sha1ctx.state,
   1125        1.1  jonathan 			    sizeof(sha1ctx.state));
   1126        1.1  jonathan 		}
   1127        1.1  jonathan 
   1128        1.1  jonathan 		for (i = 0; i < macini->cri_klen / 8; i++)
   1129        1.1  jonathan 			macini->cri_key[i] ^= HMAC_OPAD_VAL;
   1130        1.1  jonathan 	}
   1131        1.1  jonathan 
   1132       1.28       chs 	*sidp = UBSEC_SID(device_unit(sc->sc_dev), sesn);
   1133        1.1  jonathan 	return (0);
   1134        1.1  jonathan }
   1135        1.1  jonathan 
   1136        1.1  jonathan /*
   1137        1.1  jonathan  * Deallocate a session.
   1138        1.1  jonathan  */
   1139        1.1  jonathan static int
   1140        1.1  jonathan ubsec_freesession(void *arg, u_int64_t tid)
   1141        1.1  jonathan {
   1142        1.1  jonathan 	struct ubsec_softc *sc;
   1143        1.1  jonathan 	int session;
   1144        1.1  jonathan 	u_int32_t sid = ((u_int32_t) tid) & 0xffffffff;
   1145        1.1  jonathan 
   1146        1.1  jonathan 	sc = arg;
   1147        1.1  jonathan 	KASSERT(sc != NULL /*, ("ubsec_freesession: null softc")*/);
   1148        1.1  jonathan 
   1149        1.1  jonathan 	session = UBSEC_SESSION(sid);
   1150        1.1  jonathan 	if (session >= sc->sc_nsessions)
   1151        1.1  jonathan 		return (EINVAL);
   1152        1.1  jonathan 
   1153       1.18    cegger 	memset(&sc->sc_sessions[session], 0, sizeof(sc->sc_sessions[session]));
   1154        1.1  jonathan 	return (0);
   1155        1.1  jonathan }
   1156        1.1  jonathan 
   1157        1.1  jonathan #ifdef __FreeBSD__ /* Ugly gratuitous changes to bus_dma */
   1158        1.1  jonathan static void
   1159       1.43   msaitoh ubsec_op_cb(void *arg, bus_dma_segment_t *seg, int nsegs, bus_size_t mapsize,
   1160       1.43   msaitoh     int error)
   1161        1.1  jonathan {
   1162        1.1  jonathan 	struct ubsec_operand *op = arg;
   1163        1.1  jonathan 
   1164        1.5     perry 	KASSERT(nsegs <= UBS_MAX_SCATTER
   1165        1.1  jonathan 		/*, ("Too many DMA segments returned when mapping operand")*/);
   1166        1.1  jonathan #ifdef UBSEC_DEBUG
   1167        1.1  jonathan 	if (ubsec_debug)
   1168        1.1  jonathan 		printf("ubsec_op_cb: mapsize %u nsegs %d\n",
   1169        1.1  jonathan 			(u_int) mapsize, nsegs);
   1170        1.1  jonathan #endif
   1171        1.1  jonathan 	op->mapsize = mapsize;
   1172        1.1  jonathan 	op->nsegs = nsegs;
   1173       1.20   tsutsui 	memcpy(op->segs, seg, nsegs * sizeof (seg[0]));
   1174        1.1  jonathan }
   1175        1.1  jonathan #endif
   1176        1.1  jonathan 
   1177        1.1  jonathan static int
   1178        1.1  jonathan ubsec_process(void *arg, struct cryptop *crp, int hint)
   1179        1.1  jonathan {
   1180        1.1  jonathan 	struct ubsec_q *q = NULL;
   1181        1.1  jonathan #ifdef	__OpenBSD__
   1182        1.1  jonathan 	int card;
   1183        1.1  jonathan #endif
   1184       1.29       tls 	int err = 0, i, j, nicealign;
   1185        1.1  jonathan 	struct ubsec_softc *sc;
   1186        1.1  jonathan 	struct cryptodesc *crd1, *crd2, *maccrd, *enccrd;
   1187        1.1  jonathan 	int encoffset = 0, macoffset = 0, cpskip, cpoffset;
   1188        1.1  jonathan 	int sskip, dskip, stheend, dtheend;
   1189        1.1  jonathan 	int16_t coffset;
   1190       1.40       bad 	struct ubsec_session *ses, key;
   1191        1.1  jonathan 	struct ubsec_dma *dmap = NULL;
   1192       1.40       bad 	u_int16_t flags = 0;
   1193       1.40       bad 	int ivlen = 0, keylen = 0;
   1194        1.1  jonathan 
   1195        1.2  jonathan 	sc = arg;
   1196        1.2  jonathan 	KASSERT(sc != NULL /*, ("ubsec_process: null softc")*/);
   1197        1.2  jonathan 
   1198        1.1  jonathan 	if (crp == NULL || crp->crp_callback == NULL || sc == NULL) {
   1199        1.1  jonathan 		ubsecstats.hst_invalid++;
   1200        1.1  jonathan 		return (EINVAL);
   1201        1.1  jonathan 	}
   1202        1.1  jonathan 	if (UBSEC_SESSION(crp->crp_sid) >= sc->sc_nsessions) {
   1203        1.1  jonathan 		ubsecstats.hst_badsession++;
   1204        1.1  jonathan 		return (EINVAL);
   1205        1.1  jonathan 	}
   1206        1.1  jonathan 
   1207       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   1208        1.1  jonathan 
   1209        1.1  jonathan 	if (SIMPLEQ_EMPTY(&sc->sc_freequeue)) {
   1210        1.1  jonathan 		ubsecstats.hst_queuefull++;
   1211        1.1  jonathan 		sc->sc_needwakeup |= CRYPTO_SYMQ;
   1212       1.29       tls 		mutex_spin_exit(&sc->sc_mtx);
   1213        1.1  jonathan 		return(ERESTART);
   1214        1.1  jonathan 	}
   1215        1.1  jonathan 
   1216        1.1  jonathan 	q = SIMPLEQ_FIRST(&sc->sc_freequeue);
   1217        1.1  jonathan 	SIMPLEQ_REMOVE_HEAD(&sc->sc_freequeue, /*q,*/ q_next);
   1218       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   1219        1.1  jonathan 
   1220        1.1  jonathan 	dmap = q->q_dma; /* Save dma pointer */
   1221       1.39       bad 	/* don't lose the cached dmamaps q_src_map and q_cached_dst_map */
   1222       1.39       bad 	memset(q, 0, offsetof(struct ubsec_q, q_src_map));
   1223       1.40       bad 	memset(&key, 0, sizeof(key));
   1224        1.1  jonathan 
   1225        1.1  jonathan 	q->q_sesn = UBSEC_SESSION(crp->crp_sid);
   1226        1.1  jonathan 	q->q_dma = dmap;
   1227        1.1  jonathan 	ses = &sc->sc_sessions[q->q_sesn];
   1228        1.1  jonathan 
   1229        1.1  jonathan 	if (crp->crp_flags & CRYPTO_F_IMBUF) {
   1230        1.1  jonathan 		q->q_src_m = (struct mbuf *)crp->crp_buf;
   1231        1.1  jonathan 		q->q_dst_m = (struct mbuf *)crp->crp_buf;
   1232        1.1  jonathan 	} else if (crp->crp_flags & CRYPTO_F_IOV) {
   1233        1.1  jonathan 		q->q_src_io = (struct uio *)crp->crp_buf;
   1234        1.1  jonathan 		q->q_dst_io = (struct uio *)crp->crp_buf;
   1235        1.1  jonathan 	} else {
   1236        1.1  jonathan 		ubsecstats.hst_badflags++;
   1237        1.1  jonathan 		err = EINVAL;
   1238        1.1  jonathan 		goto errout;	/* XXX we don't handle contiguous blocks! */
   1239        1.1  jonathan 	}
   1240        1.1  jonathan 
   1241       1.18    cegger 	memset(&dmap->d_dma->d_mcr, 0, sizeof(struct ubsec_mcr));
   1242        1.1  jonathan 
   1243        1.1  jonathan 	dmap->d_dma->d_mcr.mcr_pkts = htole16(1);
   1244        1.1  jonathan 	dmap->d_dma->d_mcr.mcr_flags = 0;
   1245        1.1  jonathan 	q->q_crp = crp;
   1246        1.1  jonathan 
   1247        1.1  jonathan 	crd1 = crp->crp_desc;
   1248        1.1  jonathan 	if (crd1 == NULL) {
   1249        1.1  jonathan 		ubsecstats.hst_nodesc++;
   1250        1.1  jonathan 		err = EINVAL;
   1251        1.1  jonathan 		goto errout;
   1252        1.1  jonathan 	}
   1253        1.1  jonathan 	crd2 = crd1->crd_next;
   1254        1.1  jonathan 
   1255        1.1  jonathan 	if (crd2 == NULL) {
   1256       1.15       tls 		if (crd1->crd_alg == CRYPTO_MD5_HMAC_96 ||
   1257       1.15       tls 		    crd1->crd_alg == CRYPTO_SHA1_HMAC_96) {
   1258        1.1  jonathan 			maccrd = crd1;
   1259        1.1  jonathan 			enccrd = NULL;
   1260        1.1  jonathan 		} else if (crd1->crd_alg == CRYPTO_DES_CBC ||
   1261       1.40       bad 		    crd1->crd_alg == CRYPTO_3DES_CBC ||
   1262       1.40       bad 		    crd1->crd_alg == CRYPTO_AES_CBC) {
   1263        1.1  jonathan 			maccrd = NULL;
   1264        1.1  jonathan 			enccrd = crd1;
   1265        1.1  jonathan 		} else {
   1266        1.1  jonathan 			ubsecstats.hst_badalg++;
   1267        1.1  jonathan 			err = EINVAL;
   1268        1.1  jonathan 			goto errout;
   1269        1.1  jonathan 		}
   1270        1.1  jonathan 	} else {
   1271       1.15       tls 		if ((crd1->crd_alg == CRYPTO_MD5_HMAC_96 ||
   1272       1.15       tls 		    crd1->crd_alg == CRYPTO_SHA1_HMAC_96) &&
   1273        1.1  jonathan 		    (crd2->crd_alg == CRYPTO_DES_CBC ||
   1274       1.40       bad 		    crd2->crd_alg == CRYPTO_3DES_CBC ||
   1275       1.40       bad 		    crd2->crd_alg == CRYPTO_AES_CBC) &&
   1276        1.1  jonathan 		    ((crd2->crd_flags & CRD_F_ENCRYPT) == 0)) {
   1277        1.1  jonathan 			maccrd = crd1;
   1278        1.1  jonathan 			enccrd = crd2;
   1279        1.1  jonathan 		} else if ((crd1->crd_alg == CRYPTO_DES_CBC ||
   1280       1.40       bad 		    crd1->crd_alg == CRYPTO_3DES_CBC ||
   1281       1.40       bad 		    crd1->crd_alg == CRYPTO_AES_CBC) &&
   1282       1.15       tls 		    (crd2->crd_alg == CRYPTO_MD5_HMAC_96 ||
   1283       1.40       bad 		    crd2->crd_alg == CRYPTO_SHA1_HMAC_96) &&
   1284        1.1  jonathan 		    (crd1->crd_flags & CRD_F_ENCRYPT)) {
   1285        1.1  jonathan 			enccrd = crd1;
   1286        1.1  jonathan 			maccrd = crd2;
   1287        1.1  jonathan 		} else {
   1288        1.1  jonathan 			/*
   1289        1.1  jonathan 			 * We cannot order the ubsec as requested
   1290        1.1  jonathan 			 */
   1291        1.1  jonathan 			ubsecstats.hst_badalg++;
   1292        1.1  jonathan 			err = EINVAL;
   1293        1.1  jonathan 			goto errout;
   1294        1.1  jonathan 		}
   1295        1.1  jonathan 	}
   1296        1.1  jonathan 
   1297        1.1  jonathan 	if (enccrd) {
   1298       1.40       bad 		if (enccrd->crd_alg == CRYPTO_AES_CBC) {
   1299       1.40       bad 			if ((sc->sc_flags & UBS_FLAGS_AES) == 0) {
   1300       1.40       bad 				/*
   1301       1.40       bad 				 * We cannot order the ubsec as requested
   1302       1.40       bad 				 */
   1303       1.40       bad 				ubsecstats.hst_badalg++;
   1304       1.40       bad 				err = EINVAL;
   1305       1.40       bad 				goto errout;
   1306       1.40       bad 			}
   1307       1.40       bad 			flags |= htole16(UBS_PKTCTX_ENC_AES);
   1308       1.40       bad 			switch (enccrd->crd_klen) {
   1309       1.40       bad 			case 128:
   1310       1.40       bad 			case 192:
   1311       1.40       bad 			case 256:
   1312       1.40       bad 				keylen = enccrd->crd_klen / 8;
   1313       1.40       bad 				break;
   1314       1.40       bad 			default:
   1315       1.40       bad 				err = EINVAL;
   1316       1.40       bad 				goto errout;
   1317       1.40       bad 			}
   1318       1.40       bad 			ivlen = 16;
   1319       1.40       bad 		} else {
   1320       1.40       bad 			flags |= htole16(UBS_PKTCTX_ENC_3DES);
   1321       1.40       bad 			ivlen = 8;
   1322       1.40       bad 			keylen = 24;
   1323       1.40       bad 		}
   1324       1.40       bad 
   1325        1.1  jonathan 		encoffset = enccrd->crd_skip;
   1326        1.1  jonathan 
   1327        1.1  jonathan 		if (enccrd->crd_flags & CRD_F_ENCRYPT) {
   1328        1.1  jonathan 			q->q_flags |= UBSEC_QFLAGS_COPYOUTIV;
   1329        1.1  jonathan 
   1330        1.1  jonathan 			if (enccrd->crd_flags & CRD_F_IV_EXPLICIT)
   1331       1.40       bad 				memcpy(key.ses_iv, enccrd->crd_iv, ivlen);
   1332        1.1  jonathan 			else {
   1333       1.40       bad 				for (i = 0; i < (ivlen / 4); i++)
   1334       1.40       bad 					key.ses_iv[i] = ses->ses_iv[i];
   1335        1.1  jonathan 			}
   1336        1.1  jonathan 
   1337        1.1  jonathan 			if ((enccrd->crd_flags & CRD_F_IV_PRESENT) == 0) {
   1338        1.1  jonathan 				if (crp->crp_flags & CRYPTO_F_IMBUF)
   1339        1.1  jonathan 					m_copyback(q->q_src_m,
   1340        1.1  jonathan 					    enccrd->crd_inject,
   1341       1.40       bad 					    ivlen, (void *)key.ses_iv);
   1342        1.1  jonathan 				else if (crp->crp_flags & CRYPTO_F_IOV)
   1343        1.1  jonathan 					cuio_copyback(q->q_src_io,
   1344        1.1  jonathan 					    enccrd->crd_inject,
   1345       1.40       bad 					    ivlen, (void *)key.ses_iv);
   1346        1.1  jonathan 			}
   1347        1.1  jonathan 		} else {
   1348       1.40       bad 			flags |= htole16(UBS_PKTCTX_INBOUND);
   1349        1.1  jonathan 
   1350        1.1  jonathan 			if (enccrd->crd_flags & CRD_F_IV_EXPLICIT)
   1351       1.40       bad 				memcpy(key.ses_iv, enccrd->crd_iv, ivlen);
   1352        1.1  jonathan 			else if (crp->crp_flags & CRYPTO_F_IMBUF)
   1353        1.1  jonathan 				m_copydata(q->q_src_m, enccrd->crd_inject,
   1354       1.40       bad 				    ivlen, (void *)key.ses_iv);
   1355        1.1  jonathan 			else if (crp->crp_flags & CRYPTO_F_IOV)
   1356        1.1  jonathan 				cuio_copydata(q->q_src_io,
   1357        1.1  jonathan 				    enccrd->crd_inject, 8,
   1358       1.40       bad 				    (void *)key.ses_iv);
   1359        1.1  jonathan 		}
   1360        1.1  jonathan 
   1361       1.40       bad 		for (i = 0; i < (keylen / 4); i++)
   1362       1.40       bad 			key.ses_key[i] = ses->ses_key[i];
   1363       1.40       bad 		for (i = 0; i < (ivlen / 4); i++)
   1364       1.40       bad 			SWAP32(key.ses_iv[i]);
   1365        1.1  jonathan 	}
   1366        1.1  jonathan 
   1367        1.1  jonathan 	if (maccrd) {
   1368        1.1  jonathan 		macoffset = maccrd->crd_skip;
   1369        1.1  jonathan 
   1370       1.15       tls 		if (maccrd->crd_alg == CRYPTO_MD5_HMAC_96)
   1371       1.40       bad 			flags |= htole16(UBS_PKTCTX_AUTH_MD5);
   1372        1.1  jonathan 		else
   1373       1.40       bad 			flags |= htole16(UBS_PKTCTX_AUTH_SHA1);
   1374        1.1  jonathan 
   1375        1.1  jonathan 		for (i = 0; i < 5; i++) {
   1376       1.40       bad 			key.ses_hminner[i] = ses->ses_hminner[i];
   1377       1.40       bad 			key.ses_hmouter[i] = ses->ses_hmouter[i];
   1378        1.1  jonathan 
   1379       1.40       bad 			HTOLE32(key.ses_hminner[i]);
   1380       1.40       bad 			HTOLE32(key.ses_hmouter[i]);
   1381        1.1  jonathan 		}
   1382        1.1  jonathan 	}
   1383        1.1  jonathan 
   1384        1.1  jonathan 	if (enccrd && maccrd) {
   1385        1.1  jonathan 		/*
   1386        1.1  jonathan 		 * ubsec cannot handle packets where the end of encryption
   1387        1.1  jonathan 		 * and authentication are not the same, or where the
   1388        1.1  jonathan 		 * encrypted part begins before the authenticated part.
   1389        1.1  jonathan 		 */
   1390        1.1  jonathan 		if ((encoffset + enccrd->crd_len) !=
   1391        1.1  jonathan 		    (macoffset + maccrd->crd_len)) {
   1392        1.1  jonathan 			ubsecstats.hst_lenmismatch++;
   1393        1.1  jonathan 			err = EINVAL;
   1394        1.1  jonathan 			goto errout;
   1395        1.1  jonathan 		}
   1396        1.1  jonathan 		if (enccrd->crd_skip < maccrd->crd_skip) {
   1397        1.1  jonathan 			ubsecstats.hst_skipmismatch++;
   1398        1.1  jonathan 			err = EINVAL;
   1399        1.1  jonathan 			goto errout;
   1400        1.1  jonathan 		}
   1401        1.1  jonathan 		sskip = maccrd->crd_skip;
   1402        1.1  jonathan 		cpskip = dskip = enccrd->crd_skip;
   1403        1.1  jonathan 		stheend = maccrd->crd_len;
   1404        1.1  jonathan 		dtheend = enccrd->crd_len;
   1405        1.1  jonathan 		coffset = enccrd->crd_skip - maccrd->crd_skip;
   1406        1.1  jonathan 		cpoffset = cpskip + dtheend;
   1407        1.1  jonathan #ifdef UBSEC_DEBUG
   1408        1.1  jonathan 		if (ubsec_debug) {
   1409        1.1  jonathan 			printf("mac: skip %d, len %d, inject %d\n",
   1410       1.43   msaitoh 			    maccrd->crd_skip, maccrd->crd_len,
   1411       1.43   msaitoh 			    maccrd->crd_inject);
   1412        1.1  jonathan 			printf("enc: skip %d, len %d, inject %d\n",
   1413       1.43   msaitoh 			    enccrd->crd_skip, enccrd->crd_len,
   1414       1.43   msaitoh 			    enccrd->crd_inject);
   1415        1.1  jonathan 			printf("src: skip %d, len %d\n", sskip, stheend);
   1416        1.1  jonathan 			printf("dst: skip %d, len %d\n", dskip, dtheend);
   1417        1.1  jonathan 			printf("ubs: coffset %d, pktlen %d, cpskip %d, cpoffset %d\n",
   1418        1.1  jonathan 			       coffset, stheend, cpskip, cpoffset);
   1419        1.1  jonathan 		}
   1420        1.1  jonathan #endif
   1421        1.1  jonathan 	} else {
   1422        1.1  jonathan 		cpskip = dskip = sskip = macoffset + encoffset;
   1423        1.1  jonathan 		dtheend = stheend = (enccrd)?enccrd->crd_len:maccrd->crd_len;
   1424        1.1  jonathan 		cpoffset = cpskip + dtheend;
   1425        1.1  jonathan 		coffset = 0;
   1426        1.1  jonathan 	}
   1427        1.1  jonathan 
   1428       1.39       bad 	if (q->q_src_map == NULL) {
   1429       1.39       bad 		/* XXX FIXME: jonathan asks, what the heck's that 0xfff0?  */
   1430       1.39       bad 		if (bus_dmamap_create(sc->sc_dmat, 0xfff0, UBS_MAX_SCATTER,
   1431       1.39       bad 			0xfff0, 0, BUS_DMA_NOWAIT, &q->q_src_map) != 0) {
   1432       1.39       bad 			err = ENOMEM;
   1433       1.39       bad 			goto errout;
   1434       1.39       bad 		}
   1435        1.1  jonathan 	}
   1436        1.1  jonathan 	if (crp->crp_flags & CRYPTO_F_IMBUF) {
   1437        1.1  jonathan 		if (bus_dmamap_load_mbuf(sc->sc_dmat, q->q_src_map,
   1438        1.1  jonathan 		    q->q_src_m, BUS_DMA_NOWAIT) != 0) {
   1439        1.1  jonathan 			ubsecstats.hst_noload++;
   1440        1.1  jonathan 			err = ENOMEM;
   1441        1.1  jonathan 			goto errout;
   1442        1.1  jonathan 		}
   1443        1.1  jonathan 	} else if (crp->crp_flags & CRYPTO_F_IOV) {
   1444        1.1  jonathan 		if (bus_dmamap_load_uio(sc->sc_dmat, q->q_src_map,
   1445        1.1  jonathan 		    q->q_src_io, BUS_DMA_NOWAIT) != 0) {
   1446        1.1  jonathan 			ubsecstats.hst_noload++;
   1447        1.1  jonathan 			err = ENOMEM;
   1448        1.1  jonathan 			goto errout;
   1449        1.1  jonathan 		}
   1450        1.1  jonathan 	}
   1451        1.1  jonathan 	nicealign = ubsec_dmamap_aligned(q->q_src_map);
   1452        1.1  jonathan 
   1453        1.1  jonathan 	dmap->d_dma->d_mcr.mcr_pktlen = htole16(stheend);
   1454        1.1  jonathan 
   1455        1.1  jonathan #ifdef UBSEC_DEBUG
   1456        1.1  jonathan 	if (ubsec_debug)
   1457        1.1  jonathan 		printf("src skip: %d nicealign: %u\n", sskip, nicealign);
   1458        1.1  jonathan #endif
   1459        1.1  jonathan 	for (i = j = 0; i < q->q_src_map->dm_nsegs; i++) {
   1460        1.1  jonathan 		struct ubsec_pktbuf *pb;
   1461        1.1  jonathan 		bus_size_t packl = q->q_src_map->dm_segs[i].ds_len;
   1462        1.1  jonathan 		bus_addr_t packp = q->q_src_map->dm_segs[i].ds_addr;
   1463        1.1  jonathan 
   1464        1.1  jonathan 		if (sskip >= packl) {
   1465        1.1  jonathan 			sskip -= packl;
   1466        1.1  jonathan 			continue;
   1467        1.1  jonathan 		}
   1468        1.1  jonathan 
   1469        1.1  jonathan 		packl -= sskip;
   1470        1.1  jonathan 		packp += sskip;
   1471        1.1  jonathan 		sskip = 0;
   1472        1.1  jonathan 
   1473        1.1  jonathan 		if (packl > 0xfffc) {
   1474        1.1  jonathan 			err = EIO;
   1475        1.1  jonathan 			goto errout;
   1476        1.1  jonathan 		}
   1477        1.1  jonathan 
   1478        1.1  jonathan 		if (j == 0)
   1479        1.1  jonathan 			pb = &dmap->d_dma->d_mcr.mcr_ipktbuf;
   1480        1.1  jonathan 		else
   1481        1.1  jonathan 			pb = &dmap->d_dma->d_sbuf[j - 1];
   1482        1.1  jonathan 
   1483        1.1  jonathan 		pb->pb_addr = htole32(packp);
   1484        1.1  jonathan 
   1485        1.1  jonathan 		if (stheend) {
   1486        1.1  jonathan 			if (packl > stheend) {
   1487        1.1  jonathan 				pb->pb_len = htole32(stheend);
   1488        1.1  jonathan 				stheend = 0;
   1489        1.1  jonathan 			} else {
   1490        1.1  jonathan 				pb->pb_len = htole32(packl);
   1491        1.1  jonathan 				stheend -= packl;
   1492        1.1  jonathan 			}
   1493        1.1  jonathan 		} else
   1494        1.1  jonathan 			pb->pb_len = htole32(packl);
   1495        1.1  jonathan 
   1496        1.1  jonathan 		if ((i + 1) == q->q_src_map->dm_nsegs)
   1497        1.1  jonathan 			pb->pb_next = 0;
   1498        1.1  jonathan 		else
   1499        1.1  jonathan 			pb->pb_next = htole32(dmap->d_alloc.dma_paddr +
   1500        1.1  jonathan 			    offsetof(struct ubsec_dmachunk, d_sbuf[j]));
   1501        1.1  jonathan 		j++;
   1502        1.1  jonathan 	}
   1503        1.1  jonathan 
   1504        1.1  jonathan 	if (enccrd == NULL && maccrd != NULL) {
   1505        1.1  jonathan 		dmap->d_dma->d_mcr.mcr_opktbuf.pb_addr = 0;
   1506        1.1  jonathan 		dmap->d_dma->d_mcr.mcr_opktbuf.pb_len = 0;
   1507        1.1  jonathan 		dmap->d_dma->d_mcr.mcr_opktbuf.pb_next = htole32(dmap->d_alloc.dma_paddr +
   1508        1.1  jonathan 		    offsetof(struct ubsec_dmachunk, d_macbuf[0]));
   1509        1.1  jonathan #ifdef UBSEC_DEBUG
   1510        1.1  jonathan 		if (ubsec_debug)
   1511        1.1  jonathan 			printf("opkt: %x %x %x\n",
   1512        1.1  jonathan 	 		    dmap->d_dma->d_mcr.mcr_opktbuf.pb_addr,
   1513        1.1  jonathan 	 		    dmap->d_dma->d_mcr.mcr_opktbuf.pb_len,
   1514        1.1  jonathan 	 		    dmap->d_dma->d_mcr.mcr_opktbuf.pb_next);
   1515        1.1  jonathan 
   1516        1.1  jonathan #endif
   1517        1.1  jonathan 	} else {
   1518        1.1  jonathan 		if (crp->crp_flags & CRYPTO_F_IOV) {
   1519        1.1  jonathan 			if (!nicealign) {
   1520        1.1  jonathan 				ubsecstats.hst_iovmisaligned++;
   1521        1.1  jonathan 				err = EINVAL;
   1522        1.1  jonathan 				goto errout;
   1523        1.1  jonathan 			}
   1524       1.39       bad 			if (q->q_dst_map == NULL) {
   1525       1.39       bad 				if (q->q_cached_dst_map == NULL) {
   1526       1.43   msaitoh 					/*
   1527       1.43   msaitoh 					 * XXX: ``what the heck's that''
   1528       1.43   msaitoh 					 * 0xfff0?
   1529       1.43   msaitoh 					 */
   1530       1.43   msaitoh 					if (bus_dmamap_create(sc->sc_dmat,
   1531       1.43   msaitoh 					    0xfff0, UBS_MAX_SCATTER, 0xfff0, 0,
   1532       1.43   msaitoh 					    BUS_DMA_NOWAIT,
   1533       1.39       bad 					    &q->q_cached_dst_map) != 0) {
   1534       1.39       bad 						ubsecstats.hst_nomap++;
   1535       1.39       bad 						err = ENOMEM;
   1536       1.39       bad 						goto errout;
   1537       1.39       bad 					}
   1538       1.39       bad 				}
   1539       1.39       bad 				q->q_dst_map = q->q_cached_dst_map;
   1540        1.1  jonathan 			}
   1541        1.1  jonathan 			if (bus_dmamap_load_uio(sc->sc_dmat, q->q_dst_map,
   1542        1.1  jonathan 			    q->q_dst_io, BUS_DMA_NOWAIT) != 0) {
   1543        1.1  jonathan 				ubsecstats.hst_noload++;
   1544        1.1  jonathan 				err = ENOMEM;
   1545        1.1  jonathan 				goto errout;
   1546        1.1  jonathan 			}
   1547        1.1  jonathan 		} else if (crp->crp_flags & CRYPTO_F_IMBUF) {
   1548        1.1  jonathan 			if (nicealign) {
   1549        1.1  jonathan 				q->q_dst_m = q->q_src_m;
   1550        1.1  jonathan 				q->q_dst_map = q->q_src_map;
   1551        1.1  jonathan 			} else {
   1552        1.1  jonathan 				int totlen, len;
   1553        1.1  jonathan 				struct mbuf *m, *top, **mp;
   1554        1.1  jonathan 
   1555        1.1  jonathan 				ubsecstats.hst_unaligned++;
   1556        1.1  jonathan 				totlen = q->q_src_map->dm_mapsize;
   1557        1.1  jonathan 				if (q->q_src_m->m_flags & M_PKTHDR) {
   1558        1.1  jonathan 					len = MHLEN;
   1559        1.1  jonathan 					MGETHDR(m, M_DONTWAIT, MT_DATA);
   1560        1.1  jonathan 					/*XXX FIXME: m_dup_pkthdr */
   1561        1.1  jonathan 					if (m && 1 /*!m_dup_pkthdr(m, q->q_src_m, M_DONTWAIT)*/) {
   1562        1.1  jonathan 						m_free(m);
   1563        1.1  jonathan 						m = NULL;
   1564        1.1  jonathan 					}
   1565        1.1  jonathan 				} else {
   1566        1.1  jonathan 					len = MLEN;
   1567        1.1  jonathan 					MGET(m, M_DONTWAIT, MT_DATA);
   1568        1.1  jonathan 				}
   1569        1.1  jonathan 				if (m == NULL) {
   1570        1.1  jonathan 					ubsecstats.hst_nombuf++;
   1571        1.1  jonathan 					err = sc->sc_nqueue ? ERESTART : ENOMEM;
   1572        1.1  jonathan 					goto errout;
   1573        1.1  jonathan 				}
   1574        1.1  jonathan 				if (len == MHLEN)
   1575        1.1  jonathan 				  /*XXX was M_DUP_PKTHDR*/
   1576  1.43.18.1  christos 				  m_copy_pkthdr(m, q->q_src_m);
   1577        1.1  jonathan 				if (totlen >= MINCLSIZE) {
   1578        1.1  jonathan 					MCLGET(m, M_DONTWAIT);
   1579        1.1  jonathan 					if ((m->m_flags & M_EXT) == 0) {
   1580        1.1  jonathan 						m_free(m);
   1581        1.1  jonathan 						ubsecstats.hst_nomcl++;
   1582       1.43   msaitoh 						err = sc->sc_nqueue
   1583       1.43   msaitoh 						    ? ERESTART : ENOMEM;
   1584        1.1  jonathan 						goto errout;
   1585        1.1  jonathan 					}
   1586        1.1  jonathan 					len = MCLBYTES;
   1587        1.1  jonathan 				}
   1588        1.1  jonathan 				m->m_len = len;
   1589        1.1  jonathan 				top = NULL;
   1590        1.1  jonathan 				mp = &top;
   1591        1.1  jonathan 
   1592        1.1  jonathan 				while (totlen > 0) {
   1593        1.1  jonathan 					if (top) {
   1594        1.1  jonathan 						MGET(m, M_DONTWAIT, MT_DATA);
   1595        1.1  jonathan 						if (m == NULL) {
   1596        1.1  jonathan 							m_freem(top);
   1597        1.1  jonathan 							ubsecstats.hst_nombuf++;
   1598        1.1  jonathan 							err = sc->sc_nqueue ? ERESTART : ENOMEM;
   1599        1.1  jonathan 							goto errout;
   1600        1.1  jonathan 						}
   1601        1.1  jonathan 						len = MLEN;
   1602        1.1  jonathan 					}
   1603        1.1  jonathan 					if (top && totlen >= MINCLSIZE) {
   1604        1.1  jonathan 						MCLGET(m, M_DONTWAIT);
   1605        1.1  jonathan 						if ((m->m_flags & M_EXT) == 0) {
   1606        1.1  jonathan 							*mp = m;
   1607        1.1  jonathan 							m_freem(top);
   1608        1.1  jonathan 							ubsecstats.hst_nomcl++;
   1609        1.1  jonathan 							err = sc->sc_nqueue ? ERESTART : ENOMEM;
   1610        1.1  jonathan 							goto errout;
   1611        1.1  jonathan 						}
   1612        1.1  jonathan 						len = MCLBYTES;
   1613        1.1  jonathan 					}
   1614  1.43.18.1  christos 					m->m_len = len = uimin(totlen, len);
   1615        1.1  jonathan 					totlen -= len;
   1616        1.1  jonathan 					*mp = m;
   1617        1.1  jonathan 					mp = &m->m_next;
   1618        1.1  jonathan 				}
   1619        1.1  jonathan 				q->q_dst_m = top;
   1620        1.1  jonathan 				ubsec_mcopy(q->q_src_m, q->q_dst_m,
   1621        1.1  jonathan 				    cpskip, cpoffset);
   1622       1.39       bad 				if (q->q_dst_map == NULL) {
   1623       1.39       bad 					if (q->q_cached_dst_map == NULL) {
   1624       1.39       bad 						/* XXX again, what the heck is that 0xfff0? */
   1625       1.39       bad 						if (bus_dmamap_create(sc->sc_dmat, 0xfff0,
   1626       1.39       bad 						    UBS_MAX_SCATTER, 0xfff0, 0, BUS_DMA_NOWAIT,
   1627       1.39       bad 						    &q->q_cached_dst_map) != 0) {
   1628       1.39       bad 							ubsecstats.hst_nomap++;
   1629       1.39       bad 							err = ENOMEM;
   1630       1.39       bad 							goto errout;
   1631       1.39       bad 						}
   1632       1.39       bad 					}
   1633       1.39       bad 					q->q_dst_map = q->q_cached_dst_map;
   1634        1.1  jonathan 				}
   1635        1.1  jonathan 				if (bus_dmamap_load_mbuf(sc->sc_dmat,
   1636        1.1  jonathan 				    q->q_dst_map, q->q_dst_m,
   1637        1.1  jonathan 				    BUS_DMA_NOWAIT) != 0) {
   1638        1.1  jonathan 					ubsecstats.hst_noload++;
   1639        1.1  jonathan 					err = ENOMEM;
   1640        1.1  jonathan 					goto errout;
   1641        1.1  jonathan 				}
   1642        1.1  jonathan 			}
   1643        1.1  jonathan 		} else {
   1644        1.1  jonathan 			ubsecstats.hst_badflags++;
   1645        1.1  jonathan 			err = EINVAL;
   1646        1.1  jonathan 			goto errout;
   1647        1.1  jonathan 		}
   1648        1.1  jonathan 
   1649        1.1  jonathan #ifdef UBSEC_DEBUG
   1650        1.1  jonathan 		if (ubsec_debug)
   1651        1.1  jonathan 			printf("dst skip: %d\n", dskip);
   1652        1.1  jonathan #endif
   1653        1.1  jonathan 		for (i = j = 0; i < q->q_dst_map->dm_nsegs; i++) {
   1654        1.1  jonathan 			struct ubsec_pktbuf *pb;
   1655        1.1  jonathan 			bus_size_t packl = q->q_dst_map->dm_segs[i].ds_len;
   1656        1.1  jonathan 			bus_addr_t packp = q->q_dst_map->dm_segs[i].ds_addr;
   1657        1.1  jonathan 
   1658        1.1  jonathan 			if (dskip >= packl) {
   1659        1.1  jonathan 				dskip -= packl;
   1660        1.1  jonathan 				continue;
   1661        1.1  jonathan 			}
   1662        1.1  jonathan 
   1663        1.1  jonathan 			packl -= dskip;
   1664        1.1  jonathan 			packp += dskip;
   1665        1.1  jonathan 			dskip = 0;
   1666        1.1  jonathan 
   1667        1.1  jonathan 			if (packl > 0xfffc) {
   1668        1.1  jonathan 				err = EIO;
   1669        1.1  jonathan 				goto errout;
   1670        1.1  jonathan 			}
   1671        1.1  jonathan 
   1672        1.1  jonathan 			if (j == 0)
   1673        1.1  jonathan 				pb = &dmap->d_dma->d_mcr.mcr_opktbuf;
   1674        1.1  jonathan 			else
   1675        1.1  jonathan 				pb = &dmap->d_dma->d_dbuf[j - 1];
   1676        1.1  jonathan 
   1677        1.1  jonathan 			pb->pb_addr = htole32(packp);
   1678        1.1  jonathan 
   1679        1.1  jonathan 			if (dtheend) {
   1680        1.1  jonathan 				if (packl > dtheend) {
   1681        1.1  jonathan 					pb->pb_len = htole32(dtheend);
   1682        1.1  jonathan 					dtheend = 0;
   1683        1.1  jonathan 				} else {
   1684        1.1  jonathan 					pb->pb_len = htole32(packl);
   1685        1.1  jonathan 					dtheend -= packl;
   1686        1.1  jonathan 				}
   1687        1.1  jonathan 			} else
   1688        1.1  jonathan 				pb->pb_len = htole32(packl);
   1689        1.1  jonathan 
   1690        1.1  jonathan 			if ((i + 1) == q->q_dst_map->dm_nsegs) {
   1691        1.1  jonathan 				if (maccrd)
   1692        1.1  jonathan 					pb->pb_next = htole32(dmap->d_alloc.dma_paddr +
   1693        1.1  jonathan 					    offsetof(struct ubsec_dmachunk, d_macbuf[0]));
   1694        1.1  jonathan 				else
   1695        1.1  jonathan 					pb->pb_next = 0;
   1696        1.1  jonathan 			} else
   1697        1.1  jonathan 				pb->pb_next = htole32(dmap->d_alloc.dma_paddr +
   1698        1.1  jonathan 				    offsetof(struct ubsec_dmachunk, d_dbuf[j]));
   1699        1.1  jonathan 			j++;
   1700        1.1  jonathan 		}
   1701        1.1  jonathan 	}
   1702        1.1  jonathan 
   1703        1.1  jonathan 	dmap->d_dma->d_mcr.mcr_cmdctxp = htole32(dmap->d_alloc.dma_paddr +
   1704        1.1  jonathan 	    offsetof(struct ubsec_dmachunk, d_ctx));
   1705        1.1  jonathan 
   1706       1.40       bad 	if (enccrd && enccrd->crd_alg == CRYPTO_AES_CBC) {
   1707       1.40       bad 		struct ubsec_pktctx_aes128	*aes128;
   1708       1.40       bad 		struct ubsec_pktctx_aes192	*aes192;
   1709       1.40       bad 		struct ubsec_pktctx_aes256	*aes256;
   1710       1.40       bad 		struct ubsec_pktctx_hdr		*ph;
   1711       1.40       bad 		u_int8_t			*ctx;
   1712       1.40       bad 
   1713       1.40       bad 		ctx = (u_int8_t *)(dmap->d_alloc.dma_vaddr) +
   1714       1.40       bad 		    offsetof(struct ubsec_dmachunk, d_ctx);
   1715       1.40       bad 
   1716       1.40       bad 		ph = (struct ubsec_pktctx_hdr *)ctx;
   1717       1.40       bad 		ph->ph_type = htole16(UBS_PKTCTX_TYPE_IPSEC_AES);
   1718       1.40       bad 		ph->ph_flags = flags;
   1719       1.40       bad 		ph->ph_offset = htole16(coffset >> 2);
   1720       1.40       bad 
   1721       1.40       bad 		switch (enccrd->crd_klen) {
   1722       1.40       bad 		case 128:
   1723       1.40       bad 			aes128 = (struct ubsec_pktctx_aes128 *)ctx;
   1724       1.40       bad  			ph->ph_len = htole16(sizeof(*aes128));
   1725       1.40       bad 			ph->ph_flags |= htole16(UBS_PKTCTX_KEYSIZE_128);
   1726       1.40       bad 			for (i = 0; i < 4; i++)
   1727       1.40       bad 				aes128->pc_aeskey[i] = key.ses_key[i];
   1728       1.40       bad 			for (i = 0; i < 5; i++)
   1729       1.40       bad 				aes128->pc_hminner[i] = key.ses_hminner[i];
   1730       1.40       bad 			for (i = 0; i < 5; i++)
   1731       1.40       bad 				aes128->pc_hmouter[i] = key.ses_hmouter[i];
   1732       1.40       bad 			for (i = 0; i < 4; i++)
   1733       1.40       bad 				aes128->pc_iv[i] = key.ses_iv[i];
   1734       1.40       bad 			break;
   1735       1.40       bad 		case 192:
   1736       1.40       bad 			aes192 = (struct ubsec_pktctx_aes192 *)ctx;
   1737       1.40       bad 			ph->ph_len = htole16(sizeof(*aes192));
   1738       1.40       bad 			ph->ph_flags |= htole16(UBS_PKTCTX_KEYSIZE_192);
   1739       1.40       bad 			for (i = 0; i < 6; i++)
   1740       1.40       bad 				aes192->pc_aeskey[i] = key.ses_key[i];
   1741       1.40       bad 			for (i = 0; i < 5; i++)
   1742       1.40       bad 				aes192->pc_hminner[i] = key.ses_hminner[i];
   1743       1.40       bad 			for (i = 0; i < 5; i++)
   1744       1.40       bad 				aes192->pc_hmouter[i] = key.ses_hmouter[i];
   1745       1.40       bad 			for (i = 0; i < 4; i++)
   1746       1.40       bad 				aes192->pc_iv[i] = key.ses_iv[i];
   1747       1.40       bad 			break;
   1748       1.40       bad 		case 256:
   1749       1.40       bad 			aes256 = (struct ubsec_pktctx_aes256 *)ctx;
   1750       1.40       bad 			ph->ph_len = htole16(sizeof(*aes256));
   1751       1.40       bad 			ph->ph_flags |= htole16(UBS_PKTCTX_KEYSIZE_256);
   1752       1.40       bad 			for (i = 0; i < 8; i++)
   1753       1.40       bad 				aes256->pc_aeskey[i] = key.ses_key[i];
   1754       1.40       bad 			for (i = 0; i < 5; i++)
   1755       1.40       bad 				aes256->pc_hminner[i] = key.ses_hminner[i];
   1756       1.40       bad 			for (i = 0; i < 5; i++)
   1757       1.40       bad 				aes256->pc_hmouter[i] = key.ses_hmouter[i];
   1758       1.40       bad 			for (i = 0; i < 4; i++)
   1759       1.40       bad 				aes256->pc_iv[i] = key.ses_iv[i];
   1760       1.40       bad 			break;
   1761       1.40       bad 		}
   1762       1.40       bad 	} else if (sc->sc_flags & UBS_FLAGS_LONGCTX) {
   1763       1.40       bad 		struct ubsec_pktctx_3des	*ctx;
   1764       1.40       bad 		struct ubsec_pktctx_hdr		*ph;
   1765        1.1  jonathan 
   1766       1.40       bad 		ctx = (struct ubsec_pktctx_3des *)
   1767       1.40       bad 		    ((u_int8_t *)(dmap->d_alloc.dma_vaddr) +
   1768        1.1  jonathan 		    offsetof(struct ubsec_dmachunk, d_ctx));
   1769        1.5     perry 
   1770       1.40       bad 		ph = (struct ubsec_pktctx_hdr *)ctx;
   1771       1.40       bad 		ph->ph_len = htole16(sizeof(*ctx));
   1772       1.40       bad 		ph->ph_type = htole16(UBS_PKTCTX_TYPE_IPSEC_3DES);
   1773       1.40       bad 		ph->ph_flags = flags;
   1774       1.40       bad 		ph->ph_offset = htole16(coffset >> 2);
   1775       1.40       bad 
   1776        1.1  jonathan 		for (i = 0; i < 6; i++)
   1777       1.40       bad 			ctx->pc_deskey[i] = key.ses_key[i];
   1778        1.1  jonathan 		for (i = 0; i < 5; i++)
   1779       1.40       bad 			ctx->pc_hminner[i] = key.ses_hminner[i];
   1780        1.1  jonathan 		for (i = 0; i < 5; i++)
   1781       1.40       bad 			ctx->pc_hmouter[i] = key.ses_hmouter[i];
   1782       1.40       bad 		for (i = 0; i < 2; i++)
   1783       1.40       bad 			ctx->pc_iv[i] = key.ses_iv[i];
   1784       1.40       bad 	} else {
   1785       1.40       bad 		struct ubsec_pktctx *ctx = (struct ubsec_pktctx *)
   1786       1.40       bad 		    ((u_int8_t *)dmap->d_alloc.dma_vaddr +
   1787       1.40       bad 		    offsetof(struct ubsec_dmachunk, d_ctx));
   1788       1.40       bad 
   1789       1.40       bad 		ctx->pc_flags = flags;
   1790       1.40       bad 		ctx->pc_offset = htole16(coffset >> 2);
   1791       1.40       bad 		for (i = 0; i < 6; i++)
   1792       1.40       bad 			ctx->pc_deskey[i] = key.ses_key[i];
   1793       1.40       bad 		for (i = 0; i < 5; i++)
   1794       1.40       bad 			ctx->pc_hminner[i] = key.ses_hminner[i];
   1795       1.40       bad 		for (i = 0; i < 5; i++)
   1796       1.40       bad 			ctx->pc_hmouter[i] = key.ses_hmouter[i];
   1797       1.40       bad 		for (i = 0; i < 2; i++)
   1798       1.40       bad 			ctx->pc_iv[i] = key.ses_iv[i];
   1799       1.40       bad 	}
   1800        1.1  jonathan 
   1801       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   1802        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_queue, q, q_next);
   1803        1.1  jonathan 	sc->sc_nqueue++;
   1804        1.1  jonathan 	ubsecstats.hst_ipackets++;
   1805        1.1  jonathan 	ubsecstats.hst_ibytes += dmap->d_alloc.dma_map->dm_mapsize;
   1806        1.1  jonathan 	if ((hint & CRYPTO_HINT_MORE) == 0 || sc->sc_nqueue >= ubsec_maxbatch)
   1807        1.1  jonathan 		ubsec_feed(sc);
   1808       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   1809        1.1  jonathan 	return (0);
   1810        1.1  jonathan 
   1811        1.1  jonathan errout:
   1812        1.1  jonathan 	if (q != NULL) {
   1813        1.1  jonathan 		if ((q->q_dst_m != NULL) && (q->q_src_m != q->q_dst_m))
   1814        1.1  jonathan 			m_freem(q->q_dst_m);
   1815        1.1  jonathan 
   1816        1.1  jonathan 		if (q->q_dst_map != NULL && q->q_dst_map != q->q_src_map) {
   1817        1.1  jonathan 			bus_dmamap_unload(sc->sc_dmat, q->q_dst_map);
   1818        1.1  jonathan 		}
   1819        1.1  jonathan 		if (q->q_src_map != NULL) {
   1820        1.1  jonathan 			bus_dmamap_unload(sc->sc_dmat, q->q_src_map);
   1821        1.1  jonathan 		}
   1822        1.1  jonathan 
   1823       1.29       tls 		mutex_spin_enter(&sc->sc_mtx);
   1824        1.1  jonathan 		SIMPLEQ_INSERT_TAIL(&sc->sc_freequeue, q, q_next);
   1825       1.29       tls 		mutex_spin_exit(&sc->sc_mtx);
   1826        1.1  jonathan 	}
   1827        1.1  jonathan #if 0 /* jonathan says: this openbsd code seems to be subsumed elsewhere */
   1828        1.1  jonathan 	if (err == EINVAL)
   1829        1.1  jonathan 		ubsecstats.hst_invalid++;
   1830        1.1  jonathan 	else
   1831        1.1  jonathan 		ubsecstats.hst_nomem++;
   1832        1.5     perry #endif
   1833        1.1  jonathan 	if (err != ERESTART) {
   1834        1.1  jonathan 		crp->crp_etype = err;
   1835        1.1  jonathan 		crypto_done(crp);
   1836        1.1  jonathan 	} else {
   1837        1.1  jonathan 		sc->sc_needwakeup |= CRYPTO_SYMQ;
   1838        1.1  jonathan 	}
   1839        1.1  jonathan 	return (err);
   1840        1.1  jonathan }
   1841        1.1  jonathan 
   1842        1.7   thorpej static void
   1843        1.7   thorpej ubsec_callback(struct ubsec_softc *sc, struct ubsec_q *q)
   1844        1.1  jonathan {
   1845        1.1  jonathan 	struct cryptop *crp = (struct cryptop *)q->q_crp;
   1846        1.1  jonathan 	struct cryptodesc *crd;
   1847        1.1  jonathan 	struct ubsec_dma *dmap = q->q_dma;
   1848        1.1  jonathan 
   1849        1.1  jonathan 	ubsecstats.hst_opackets++;
   1850        1.1  jonathan 	ubsecstats.hst_obytes += dmap->d_alloc.dma_size;
   1851        1.1  jonathan 
   1852        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, dmap->d_alloc.dma_map, 0,
   1853        1.1  jonathan 	    dmap->d_alloc.dma_map->dm_mapsize,
   1854        1.1  jonathan 	    BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
   1855        1.1  jonathan 	if (q->q_dst_map != NULL && q->q_dst_map != q->q_src_map) {
   1856        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q->q_dst_map,
   1857        1.1  jonathan 		    0, q->q_dst_map->dm_mapsize, BUS_DMASYNC_POSTREAD);
   1858        1.1  jonathan 		bus_dmamap_unload(sc->sc_dmat, q->q_dst_map);
   1859        1.1  jonathan 	}
   1860        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, q->q_src_map,
   1861        1.1  jonathan 	    0, q->q_src_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   1862        1.1  jonathan 	bus_dmamap_unload(sc->sc_dmat, q->q_src_map);
   1863        1.1  jonathan 
   1864        1.1  jonathan 	if ((crp->crp_flags & CRYPTO_F_IMBUF) && (q->q_src_m != q->q_dst_m)) {
   1865        1.1  jonathan 		m_freem(q->q_src_m);
   1866       1.12  christos 		crp->crp_buf = (void *)q->q_dst_m;
   1867        1.1  jonathan 	}
   1868        1.1  jonathan 
   1869        1.1  jonathan 	/* copy out IV for future use */
   1870        1.1  jonathan 	if (q->q_flags & UBSEC_QFLAGS_COPYOUTIV) {
   1871        1.1  jonathan 		for (crd = crp->crp_desc; crd; crd = crd->crd_next) {
   1872        1.1  jonathan 			if (crd->crd_alg != CRYPTO_DES_CBC &&
   1873       1.40       bad 			    crd->crd_alg != CRYPTO_3DES_CBC &&
   1874       1.40       bad 			    crd->crd_alg != CRYPTO_AES_CBC)
   1875        1.1  jonathan 				continue;
   1876        1.1  jonathan 			if (crp->crp_flags & CRYPTO_F_IMBUF)
   1877        1.1  jonathan 				m_copydata((struct mbuf *)crp->crp_buf,
   1878        1.1  jonathan 				    crd->crd_skip + crd->crd_len - 8, 8,
   1879       1.12  christos 				    (void *)sc->sc_sessions[q->q_sesn].ses_iv);
   1880        1.1  jonathan 			else if (crp->crp_flags & CRYPTO_F_IOV) {
   1881        1.1  jonathan 				cuio_copydata((struct uio *)crp->crp_buf,
   1882        1.1  jonathan 				    crd->crd_skip + crd->crd_len - 8, 8,
   1883       1.12  christos 				    (void *)sc->sc_sessions[q->q_sesn].ses_iv);
   1884        1.1  jonathan 			}
   1885        1.1  jonathan 			break;
   1886        1.1  jonathan 		}
   1887        1.1  jonathan 	}
   1888        1.1  jonathan 
   1889        1.1  jonathan 	for (crd = crp->crp_desc; crd; crd = crd->crd_next) {
   1890       1.15       tls 		if (crd->crd_alg != CRYPTO_MD5_HMAC_96 &&
   1891       1.15       tls 		    crd->crd_alg != CRYPTO_SHA1_HMAC_96)
   1892        1.1  jonathan 			continue;
   1893        1.1  jonathan 		if (crp->crp_flags & CRYPTO_F_IMBUF)
   1894        1.1  jonathan 			m_copyback((struct mbuf *)crp->crp_buf,
   1895        1.1  jonathan 			    crd->crd_inject, 12,
   1896       1.12  christos 			    (void *)dmap->d_dma->d_macbuf);
   1897        1.1  jonathan 		else if (crp->crp_flags & CRYPTO_F_IOV && crp->crp_mac)
   1898       1.12  christos 			bcopy((void *)dmap->d_dma->d_macbuf,
   1899        1.1  jonathan 			    crp->crp_mac, 12);
   1900        1.1  jonathan 		break;
   1901        1.1  jonathan 	}
   1902        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_freequeue, q, q_next);
   1903        1.1  jonathan 	crypto_done(crp);
   1904        1.1  jonathan }
   1905        1.1  jonathan 
   1906        1.1  jonathan static void
   1907        1.1  jonathan ubsec_mcopy(struct mbuf *srcm, struct mbuf *dstm, int hoffset, int toffset)
   1908        1.1  jonathan {
   1909        1.1  jonathan 	int i, j, dlen, slen;
   1910       1.12  christos 	char *dptr, *sptr;
   1911        1.1  jonathan 
   1912        1.1  jonathan 	j = 0;
   1913        1.1  jonathan 	sptr = srcm->m_data;
   1914        1.1  jonathan 	slen = srcm->m_len;
   1915        1.1  jonathan 	dptr = dstm->m_data;
   1916        1.1  jonathan 	dlen = dstm->m_len;
   1917        1.1  jonathan 
   1918        1.1  jonathan 	while (1) {
   1919  1.43.18.1  christos 		for (i = 0; i < uimin(slen, dlen); i++) {
   1920        1.1  jonathan 			if (j < hoffset || j >= toffset)
   1921        1.1  jonathan 				*dptr++ = *sptr++;
   1922        1.1  jonathan 			slen--;
   1923        1.1  jonathan 			dlen--;
   1924        1.1  jonathan 			j++;
   1925        1.1  jonathan 		}
   1926        1.1  jonathan 		if (slen == 0) {
   1927        1.1  jonathan 			srcm = srcm->m_next;
   1928        1.1  jonathan 			if (srcm == NULL)
   1929        1.1  jonathan 				return;
   1930        1.1  jonathan 			sptr = srcm->m_data;
   1931        1.1  jonathan 			slen = srcm->m_len;
   1932        1.1  jonathan 		}
   1933        1.1  jonathan 		if (dlen == 0) {
   1934        1.1  jonathan 			dstm = dstm->m_next;
   1935        1.1  jonathan 			if (dstm == NULL)
   1936        1.1  jonathan 				return;
   1937        1.1  jonathan 			dptr = dstm->m_data;
   1938        1.1  jonathan 			dlen = dstm->m_len;
   1939        1.1  jonathan 		}
   1940        1.1  jonathan 	}
   1941        1.1  jonathan }
   1942        1.1  jonathan 
   1943        1.1  jonathan /*
   1944        1.1  jonathan  * feed the key generator, must be called at splnet() or higher.
   1945        1.1  jonathan  */
   1946        1.1  jonathan static void
   1947        1.1  jonathan ubsec_feed2(struct ubsec_softc *sc)
   1948        1.1  jonathan {
   1949        1.1  jonathan 	struct ubsec_q2 *q;
   1950        1.1  jonathan 
   1951        1.1  jonathan 	while (!SIMPLEQ_EMPTY(&sc->sc_queue2)) {
   1952        1.1  jonathan 		if (READ_REG(sc, BS_STAT) & BS_STAT_MCR2_FULL)
   1953        1.1  jonathan 			break;
   1954        1.1  jonathan 		q = SIMPLEQ_FIRST(&sc->sc_queue2);
   1955        1.1  jonathan 
   1956        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q->q_mcr.dma_map, 0,
   1957        1.1  jonathan 		    q->q_mcr.dma_map->dm_mapsize,
   1958        1.1  jonathan 		    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
   1959        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, q->q_ctx.dma_map, 0,
   1960        1.1  jonathan 		    q->q_ctx.dma_map->dm_mapsize,
   1961        1.1  jonathan 		    BUS_DMASYNC_PREWRITE);
   1962        1.1  jonathan 
   1963        1.1  jonathan 		WRITE_REG(sc, BS_MCR2, q->q_mcr.dma_paddr);
   1964        1.1  jonathan 		q = SIMPLEQ_FIRST(&sc->sc_queue2);
   1965        1.1  jonathan 		SIMPLEQ_REMOVE_HEAD(&sc->sc_queue2, /*q,*/ q_next);
   1966        1.1  jonathan 		--sc->sc_nqueue2;
   1967        1.1  jonathan 		SIMPLEQ_INSERT_TAIL(&sc->sc_qchip2, q, q_next);
   1968        1.1  jonathan 	}
   1969        1.1  jonathan }
   1970        1.1  jonathan 
   1971        1.1  jonathan /*
   1972       1.34       bad  * feed the RNG (used instead of ubsec_feed2() on 5827+ devices)
   1973       1.34       bad  */
   1974       1.34       bad void
   1975       1.34       bad ubsec_feed4(struct ubsec_softc *sc)
   1976       1.34       bad {
   1977       1.34       bad 	struct ubsec_q2 *q;
   1978       1.34       bad 
   1979       1.34       bad 	while (!SIMPLEQ_EMPTY(&sc->sc_queue4)) {
   1980       1.34       bad 		if (READ_REG(sc, BS_STAT) & BS_STAT_MCR4_FULL)
   1981       1.34       bad 			break;
   1982       1.34       bad 		q = SIMPLEQ_FIRST(&sc->sc_queue4);
   1983       1.34       bad 
   1984       1.34       bad 		bus_dmamap_sync(sc->sc_dmat, q->q_mcr.dma_map, 0,
   1985       1.34       bad 		    q->q_mcr.dma_map->dm_mapsize,
   1986       1.34       bad 		    BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
   1987       1.34       bad 		bus_dmamap_sync(sc->sc_dmat, q->q_ctx.dma_map, 0,
   1988       1.34       bad 		    q->q_ctx.dma_map->dm_mapsize,
   1989       1.34       bad 		    BUS_DMASYNC_PREWRITE);
   1990       1.34       bad 
   1991       1.34       bad 		WRITE_REG(sc, BS_MCR4, q->q_mcr.dma_paddr);
   1992       1.34       bad 		SIMPLEQ_REMOVE_HEAD(&sc->sc_queue4, q_next);
   1993       1.34       bad 		--sc->sc_nqueue4;
   1994       1.34       bad 		SIMPLEQ_INSERT_TAIL(&sc->sc_qchip4, q, q_next);
   1995       1.34       bad 	}
   1996       1.34       bad }
   1997       1.34       bad 
   1998       1.34       bad /*
   1999        1.1  jonathan  * Callback for handling random numbers
   2000        1.1  jonathan  */
   2001        1.1  jonathan static void
   2002        1.1  jonathan ubsec_callback2(struct ubsec_softc *sc, struct ubsec_q2 *q)
   2003        1.1  jonathan {
   2004        1.1  jonathan 	struct cryptkop *krp;
   2005        1.1  jonathan 	struct ubsec_ctx_keyop *ctx;
   2006        1.1  jonathan 
   2007        1.1  jonathan 	ctx = (struct ubsec_ctx_keyop *)q->q_ctx.dma_vaddr;
   2008        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, q->q_ctx.dma_map, 0,
   2009        1.1  jonathan 	    q->q_ctx.dma_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   2010        1.1  jonathan 
   2011        1.1  jonathan 	switch (q->q_type) {
   2012        1.1  jonathan #ifndef UBSEC_NO_RNG
   2013        1.1  jonathan 	case UBS_CTXOP_RNGSHA1:
   2014        1.1  jonathan 	case UBS_CTXOP_RNGBYPASS: {
   2015        1.1  jonathan 		struct ubsec_q2_rng *rng = (struct ubsec_q2_rng *)q;
   2016        1.1  jonathan 		u_int32_t *p;
   2017        1.1  jonathan 		int i;
   2018        1.1  jonathan 
   2019        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, rng->rng_buf.dma_map, 0,
   2020        1.1  jonathan 		    rng->rng_buf.dma_map->dm_mapsize, BUS_DMASYNC_POSTREAD);
   2021        1.1  jonathan 		p = (u_int32_t *)rng->rng_buf.dma_vaddr;
   2022        1.1  jonathan #ifndef __NetBSD__
   2023        1.1  jonathan 		for (i = 0; i < UBSEC_RNG_BUFSIZ; p++, i++)
   2024        1.1  jonathan 			add_true_randomness(letoh32(*p));
   2025        1.1  jonathan #else
   2026       1.29       tls 		i = UBSEC_RNG_BUFSIZ * sizeof(u_int32_t);
   2027       1.29       tls 		rnd_add_data(&sc->sc_rnd_source, (char *)p, i, i * NBBY);
   2028       1.29       tls 		sc->sc_rng_need -= i;
   2029       1.34       bad #endif
   2030       1.29       tls 		rng->rng_used = 0;
   2031        1.1  jonathan #ifdef __OpenBSD__
   2032        1.1  jonathan 		timeout_add(&sc->sc_rngto, sc->sc_rnghz);
   2033        1.1  jonathan #else
   2034       1.29       tls 		if (sc->sc_rng_need > 0) {
   2035       1.30       bad 			callout_schedule(&sc->sc_rngto, sc->sc_rnghz);
   2036       1.29       tls 		}
   2037        1.1  jonathan #endif
   2038        1.1  jonathan 		break;
   2039        1.1  jonathan 	}
   2040        1.1  jonathan #endif
   2041        1.1  jonathan 	case UBS_CTXOP_MODEXP: {
   2042        1.1  jonathan 		struct ubsec_q2_modexp *me = (struct ubsec_q2_modexp *)q;
   2043        1.1  jonathan 		u_int rlen, clen;
   2044        1.1  jonathan 
   2045        1.1  jonathan 		krp = me->me_krp;
   2046        1.1  jonathan 		rlen = (me->me_modbits + 7) / 8;
   2047        1.1  jonathan 		clen = (krp->krp_param[krp->krp_iparams].crp_nbits + 7) / 8;
   2048        1.1  jonathan 
   2049        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, me->me_M.dma_map,
   2050        1.1  jonathan 		    0, me->me_M.dma_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   2051        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, me->me_E.dma_map,
   2052        1.1  jonathan 		    0, me->me_E.dma_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   2053        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, me->me_C.dma_map,
   2054        1.1  jonathan 		    0, me->me_C.dma_map->dm_mapsize, BUS_DMASYNC_POSTREAD);
   2055        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, me->me_epb.dma_map,
   2056        1.1  jonathan 		    0, me->me_epb.dma_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   2057        1.1  jonathan 
   2058        1.1  jonathan 		if (clen < rlen)
   2059        1.1  jonathan 			krp->krp_status = E2BIG;
   2060        1.1  jonathan 		else {
   2061        1.1  jonathan 			if (sc->sc_flags & UBS_FLAGS_HWNORM) {
   2062       1.18    cegger 				memset(krp->krp_param[krp->krp_iparams].crp_p, 0,
   2063        1.1  jonathan 				    (krp->krp_param[krp->krp_iparams].crp_nbits
   2064        1.1  jonathan 					+ 7) / 8);
   2065        1.1  jonathan 				bcopy(me->me_C.dma_vaddr,
   2066        1.1  jonathan 				    krp->krp_param[krp->krp_iparams].crp_p,
   2067        1.1  jonathan 				    (me->me_modbits + 7) / 8);
   2068        1.1  jonathan 			} else
   2069        1.1  jonathan 				ubsec_kshift_l(me->me_shiftbits,
   2070        1.1  jonathan 				    me->me_C.dma_vaddr, me->me_normbits,
   2071        1.1  jonathan 				    krp->krp_param[krp->krp_iparams].crp_p,
   2072        1.1  jonathan 				    krp->krp_param[krp->krp_iparams].crp_nbits);
   2073        1.1  jonathan 		}
   2074        1.1  jonathan 
   2075        1.1  jonathan 		crypto_kdone(krp);
   2076        1.1  jonathan 
   2077        1.1  jonathan 		/* bzero all potentially sensitive data */
   2078       1.18    cegger 		memset(me->me_E.dma_vaddr, 0, me->me_E.dma_size);
   2079       1.18    cegger 		memset(me->me_M.dma_vaddr, 0, me->me_M.dma_size);
   2080       1.18    cegger 		memset(me->me_C.dma_vaddr, 0, me->me_C.dma_size);
   2081       1.18    cegger 		memset(me->me_q.q_ctx.dma_vaddr, 0, me->me_q.q_ctx.dma_size);
   2082        1.1  jonathan 
   2083        1.1  jonathan 		/* Can't free here, so put us on the free list. */
   2084        1.1  jonathan 		SIMPLEQ_INSERT_TAIL(&sc->sc_q2free, &me->me_q, q_next);
   2085        1.1  jonathan 		break;
   2086        1.1  jonathan 	}
   2087        1.1  jonathan 	case UBS_CTXOP_RSAPRIV: {
   2088        1.1  jonathan 		struct ubsec_q2_rsapriv *rp = (struct ubsec_q2_rsapriv *)q;
   2089        1.1  jonathan 		u_int len;
   2090        1.1  jonathan 
   2091        1.1  jonathan 		krp = rp->rpr_krp;
   2092        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, rp->rpr_msgin.dma_map, 0,
   2093        1.1  jonathan 		    rp->rpr_msgin.dma_map->dm_mapsize, BUS_DMASYNC_POSTWRITE);
   2094        1.1  jonathan 		bus_dmamap_sync(sc->sc_dmat, rp->rpr_msgout.dma_map, 0,
   2095        1.1  jonathan 		    rp->rpr_msgout.dma_map->dm_mapsize, BUS_DMASYNC_POSTREAD);
   2096        1.1  jonathan 
   2097       1.43   msaitoh 		len = (krp->krp_param[UBS_RSAPRIV_PAR_MSGOUT].crp_nbits + 7)
   2098       1.43   msaitoh 		    / 8;
   2099        1.1  jonathan 		bcopy(rp->rpr_msgout.dma_vaddr,
   2100        1.1  jonathan 		    krp->krp_param[UBS_RSAPRIV_PAR_MSGOUT].crp_p, len);
   2101        1.1  jonathan 
   2102        1.1  jonathan 		crypto_kdone(krp);
   2103        1.1  jonathan 
   2104       1.18    cegger 		memset(rp->rpr_msgin.dma_vaddr, 0, rp->rpr_msgin.dma_size);
   2105       1.18    cegger 		memset(rp->rpr_msgout.dma_vaddr, 0, rp->rpr_msgout.dma_size);
   2106       1.18    cegger 		memset(rp->rpr_q.q_ctx.dma_vaddr, 0, rp->rpr_q.q_ctx.dma_size);
   2107        1.1  jonathan 
   2108        1.1  jonathan 		/* Can't free here, so put us on the free list. */
   2109        1.1  jonathan 		SIMPLEQ_INSERT_TAIL(&sc->sc_q2free, &rp->rpr_q, q_next);
   2110        1.1  jonathan 		break;
   2111        1.1  jonathan 	}
   2112        1.1  jonathan 	default:
   2113       1.28       chs 		printf("%s: unknown ctx op: %x\n", device_xname(sc->sc_dev),
   2114        1.1  jonathan 		    letoh16(ctx->ctx_op));
   2115        1.1  jonathan 		break;
   2116        1.1  jonathan 	}
   2117        1.1  jonathan }
   2118        1.1  jonathan 
   2119        1.1  jonathan #ifndef UBSEC_NO_RNG
   2120       1.29       tls 
   2121       1.29       tls static void
   2122       1.29       tls ubsec_rng_get(size_t bytes, void *vsc)
   2123       1.29       tls {
   2124       1.29       tls 	struct ubsec_softc *sc = vsc;
   2125       1.29       tls 
   2126       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   2127       1.29       tls 	sc->sc_rng_need = bytes;
   2128       1.29       tls 	ubsec_rng_locked(sc);
   2129       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   2130       1.29       tls 
   2131       1.29       tls }
   2132       1.29       tls 
   2133        1.1  jonathan static void
   2134        1.1  jonathan ubsec_rng(void *vsc)
   2135        1.1  jonathan {
   2136        1.1  jonathan 	struct ubsec_softc *sc = vsc;
   2137       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   2138       1.29       tls 	ubsec_rng_locked(sc);
   2139       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   2140       1.29       tls }
   2141       1.29       tls 
   2142       1.29       tls static void
   2143       1.29       tls ubsec_rng_locked(void *vsc)
   2144       1.29       tls {
   2145       1.29       tls 	struct ubsec_softc *sc = vsc;
   2146        1.1  jonathan 	struct ubsec_q2_rng *rng = &sc->sc_rng;
   2147        1.1  jonathan 	struct ubsec_mcr *mcr;
   2148        1.1  jonathan 	struct ubsec_ctx_rngbypass *ctx;
   2149       1.34       bad 	int *nqueue;
   2150        1.1  jonathan 
   2151       1.31       bad 	/* Caller is responsible to lock and release sc_mtx. */
   2152       1.31       bad 	KASSERT(mutex_owned(&sc->sc_mtx));
   2153       1.31       bad 
   2154        1.1  jonathan 	if (rng->rng_used) {
   2155        1.1  jonathan 		return;
   2156        1.1  jonathan 	}
   2157       1.29       tls 
   2158       1.29       tls 	if (sc->sc_rng_need < 1) {
   2159       1.29       tls 		callout_stop(&sc->sc_rngto);
   2160       1.29       tls 		return;
   2161       1.29       tls 	}
   2162       1.29       tls 
   2163       1.34       bad 	if (sc->sc_flags & UBS_FLAGS_RNG4)
   2164       1.34       bad 		nqueue = &sc->sc_nqueue4;
   2165       1.34       bad 	else
   2166       1.34       bad 		nqueue = &sc->sc_nqueue2;
   2167       1.34       bad 
   2168       1.34       bad 	(*nqueue)++;
   2169       1.34       bad 	if (*nqueue >= UBS_MAX_NQUEUE)
   2170       1.34       bad  		goto out;
   2171        1.1  jonathan 
   2172        1.1  jonathan 	mcr = (struct ubsec_mcr *)rng->rng_q.q_mcr.dma_vaddr;
   2173        1.1  jonathan 	ctx = (struct ubsec_ctx_rngbypass *)rng->rng_q.q_ctx.dma_vaddr;
   2174        1.1  jonathan 
   2175        1.1  jonathan 	mcr->mcr_pkts = htole16(1);
   2176        1.1  jonathan 	mcr->mcr_flags = 0;
   2177        1.1  jonathan 	mcr->mcr_cmdctxp = htole32(rng->rng_q.q_ctx.dma_paddr);
   2178        1.1  jonathan 	mcr->mcr_ipktbuf.pb_addr = mcr->mcr_ipktbuf.pb_next = 0;
   2179        1.1  jonathan 	mcr->mcr_ipktbuf.pb_len = 0;
   2180        1.1  jonathan 	mcr->mcr_reserved = mcr->mcr_pktlen = 0;
   2181        1.1  jonathan 	mcr->mcr_opktbuf.pb_addr = htole32(rng->rng_buf.dma_paddr);
   2182        1.1  jonathan 	mcr->mcr_opktbuf.pb_len = htole32(((sizeof(u_int32_t) * UBSEC_RNG_BUFSIZ)) &
   2183        1.1  jonathan 	    UBS_PKTBUF_LEN);
   2184        1.1  jonathan 	mcr->mcr_opktbuf.pb_next = 0;
   2185        1.1  jonathan 
   2186        1.1  jonathan 	ctx->rbp_len = htole16(sizeof(struct ubsec_ctx_rngbypass));
   2187        1.1  jonathan 	ctx->rbp_op = htole16(UBS_CTXOP_RNGSHA1);
   2188        1.1  jonathan 	rng->rng_q.q_type = UBS_CTXOP_RNGSHA1;
   2189        1.1  jonathan 
   2190        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, rng->rng_buf.dma_map, 0,
   2191        1.1  jonathan 	    rng->rng_buf.dma_map->dm_mapsize, BUS_DMASYNC_PREREAD);
   2192        1.1  jonathan 
   2193       1.34       bad 	if (sc->sc_flags & UBS_FLAGS_RNG4) {
   2194       1.34       bad 		SIMPLEQ_INSERT_TAIL(&sc->sc_queue4, &rng->rng_q, q_next);
   2195       1.34       bad 		ubsec_feed4(sc);
   2196       1.34       bad 	} else {
   2197       1.34       bad 		SIMPLEQ_INSERT_TAIL(&sc->sc_queue2, &rng->rng_q, q_next);
   2198       1.34       bad 		ubsec_feed2(sc);
   2199       1.34       bad 	}
   2200        1.1  jonathan 	rng->rng_used = 1;
   2201        1.1  jonathan 	ubsecstats.hst_rng++;
   2202        1.1  jonathan 
   2203        1.1  jonathan 	return;
   2204        1.1  jonathan 
   2205        1.1  jonathan out:
   2206        1.1  jonathan 	/*
   2207        1.1  jonathan 	 * Something weird happened, generate our own call back.
   2208        1.1  jonathan 	 */
   2209       1.34       bad 	(*nqueue)--;
   2210        1.1  jonathan #ifdef __OpenBSD__
   2211        1.1  jonathan 	timeout_add(&sc->sc_rngto, sc->sc_rnghz);
   2212        1.1  jonathan #else
   2213       1.30       bad 	callout_schedule(&sc->sc_rngto, sc->sc_rnghz);
   2214        1.1  jonathan #endif
   2215        1.1  jonathan }
   2216        1.1  jonathan #endif /* UBSEC_NO_RNG */
   2217        1.1  jonathan 
   2218        1.1  jonathan static int
   2219        1.1  jonathan ubsec_dma_malloc(struct ubsec_softc *sc, bus_size_t size,
   2220        1.1  jonathan 		 struct ubsec_dma_alloc *dma,int mapflags)
   2221        1.1  jonathan {
   2222        1.1  jonathan 	int r;
   2223        1.1  jonathan 
   2224        1.1  jonathan 	if ((r = bus_dmamem_alloc(sc->sc_dmat, size, PAGE_SIZE, 0,
   2225        1.1  jonathan 	    &dma->dma_seg, 1, &dma->dma_nseg, BUS_DMA_NOWAIT)) != 0)
   2226        1.1  jonathan 		goto fail_0;
   2227        1.1  jonathan 
   2228        1.1  jonathan 	if ((r = bus_dmamem_map(sc->sc_dmat, &dma->dma_seg, dma->dma_nseg,
   2229        1.1  jonathan 	    size, &dma->dma_vaddr, mapflags | BUS_DMA_NOWAIT)) != 0)
   2230        1.1  jonathan 		goto fail_1;
   2231        1.1  jonathan 
   2232        1.1  jonathan 	if ((r = bus_dmamap_create(sc->sc_dmat, size, 1, size, 0,
   2233        1.1  jonathan 	    BUS_DMA_NOWAIT, &dma->dma_map)) != 0)
   2234        1.1  jonathan 		goto fail_2;
   2235        1.1  jonathan 
   2236        1.1  jonathan 	if ((r = bus_dmamap_load(sc->sc_dmat, dma->dma_map, dma->dma_vaddr,
   2237        1.1  jonathan 	    size, NULL, BUS_DMA_NOWAIT)) != 0)
   2238        1.1  jonathan 		goto fail_3;
   2239        1.1  jonathan 
   2240        1.1  jonathan 	dma->dma_paddr = dma->dma_map->dm_segs[0].ds_addr;
   2241        1.1  jonathan 	dma->dma_size = size;
   2242        1.1  jonathan 	return (0);
   2243        1.1  jonathan 
   2244        1.1  jonathan fail_3:
   2245        1.1  jonathan 	bus_dmamap_destroy(sc->sc_dmat, dma->dma_map);
   2246        1.1  jonathan fail_2:
   2247        1.1  jonathan 	bus_dmamem_unmap(sc->sc_dmat, dma->dma_vaddr, size);
   2248        1.1  jonathan fail_1:
   2249        1.1  jonathan 	bus_dmamem_free(sc->sc_dmat, &dma->dma_seg, dma->dma_nseg);
   2250        1.1  jonathan fail_0:
   2251        1.1  jonathan 	dma->dma_map = NULL;
   2252        1.1  jonathan 	return (r);
   2253        1.1  jonathan }
   2254        1.1  jonathan 
   2255        1.1  jonathan static void
   2256        1.1  jonathan ubsec_dma_free(struct ubsec_softc *sc, struct ubsec_dma_alloc *dma)
   2257        1.1  jonathan {
   2258        1.1  jonathan 	bus_dmamap_unload(sc->sc_dmat, dma->dma_map);
   2259        1.1  jonathan 	bus_dmamem_unmap(sc->sc_dmat, dma->dma_vaddr, dma->dma_size);
   2260        1.1  jonathan 	bus_dmamem_free(sc->sc_dmat, &dma->dma_seg, dma->dma_nseg);
   2261        1.1  jonathan 	bus_dmamap_destroy(sc->sc_dmat, dma->dma_map);
   2262        1.1  jonathan }
   2263        1.1  jonathan 
   2264        1.1  jonathan /*
   2265        1.1  jonathan  * Resets the board.  Values in the regesters are left as is
   2266        1.1  jonathan  * from the reset (i.e. initial values are assigned elsewhere).
   2267        1.1  jonathan  */
   2268        1.1  jonathan static void
   2269        1.1  jonathan ubsec_reset_board(struct ubsec_softc *sc)
   2270        1.1  jonathan {
   2271       1.34       bad 	volatile u_int32_t ctrl;
   2272       1.34       bad 
   2273       1.34       bad 	ctrl = READ_REG(sc, BS_CTRL);
   2274       1.34       bad 	ctrl |= BS_CTRL_RESET;
   2275       1.34       bad 	WRITE_REG(sc, BS_CTRL, ctrl);
   2276       1.34       bad 
   2277       1.34       bad 	/*
   2278       1.34       bad 	* Wait aprox. 30 PCI clocks = 900 ns = 0.9 us
   2279       1.34       bad 	*/
   2280       1.34       bad 	DELAY(10);
   2281        1.1  jonathan 
   2282       1.34       bad 	/* Enable RNG and interrupts on newer devices */
   2283       1.34       bad 	if (sc->sc_flags & UBS_FLAGS_MULTIMCR) {
   2284       1.34       bad #ifndef UBSEC_NO_RNG
   2285       1.34       bad 		WRITE_REG(sc, BS_CFG, BS_CFG_RNG);
   2286       1.34       bad #endif
   2287       1.34       bad 		WRITE_REG(sc, BS_INT, BS_INT_DMAINT);
   2288       1.34       bad 	}
   2289        1.1  jonathan }
   2290        1.1  jonathan 
   2291        1.1  jonathan /*
   2292        1.1  jonathan  * Init Broadcom registers
   2293        1.1  jonathan  */
   2294        1.1  jonathan static void
   2295        1.1  jonathan ubsec_init_board(struct ubsec_softc *sc)
   2296        1.1  jonathan {
   2297        1.1  jonathan 	u_int32_t ctrl;
   2298        1.1  jonathan 
   2299        1.1  jonathan 	ctrl = READ_REG(sc, BS_CTRL);
   2300        1.1  jonathan 	ctrl &= ~(BS_CTRL_BE32 | BS_CTRL_BE64);
   2301        1.1  jonathan 	ctrl |= BS_CTRL_LITTLE_ENDIAN | BS_CTRL_MCR1INT;
   2302        1.1  jonathan 
   2303        1.1  jonathan 	/*
   2304        1.1  jonathan 	 * XXX: Sam Leffler's code has (UBS_FLAGS_KEY|UBS_FLAGS_RNG)).
   2305        1.1  jonathan 	 * anyone got hw docs?
   2306        1.1  jonathan 	 */
   2307        1.1  jonathan 	if (sc->sc_flags & UBS_FLAGS_KEY)
   2308        1.1  jonathan 		ctrl |= BS_CTRL_MCR2INT;
   2309        1.1  jonathan 	else
   2310        1.1  jonathan 		ctrl &= ~BS_CTRL_MCR2INT;
   2311        1.1  jonathan 
   2312        1.1  jonathan 	if (sc->sc_flags & UBS_FLAGS_HWNORM)
   2313        1.1  jonathan 		ctrl &= ~BS_CTRL_SWNORM;
   2314        1.1  jonathan 
   2315       1.34       bad 	if (sc->sc_flags & UBS_FLAGS_MULTIMCR) {
   2316       1.34       bad 		ctrl |= BS_CTRL_BSIZE240;
   2317       1.34       bad 		ctrl &= ~BS_CTRL_MCR3INT; /* MCR3 is reserved for SSL */
   2318       1.34       bad 
   2319       1.34       bad 		if (sc->sc_flags & UBS_FLAGS_RNG4)
   2320       1.34       bad 			ctrl |= BS_CTRL_MCR4INT;
   2321       1.34       bad 		else
   2322       1.34       bad 			ctrl &= ~BS_CTRL_MCR4INT;
   2323       1.34       bad 	}
   2324       1.34       bad 
   2325        1.1  jonathan 	WRITE_REG(sc, BS_CTRL, ctrl);
   2326        1.1  jonathan }
   2327        1.1  jonathan 
   2328        1.1  jonathan /*
   2329        1.1  jonathan  * Init Broadcom PCI registers
   2330        1.1  jonathan  */
   2331        1.1  jonathan static void
   2332        1.7   thorpej ubsec_init_pciregs(struct pci_attach_args *pa)
   2333        1.1  jonathan {
   2334        1.1  jonathan 	pci_chipset_tag_t pc = pa->pa_pc;
   2335        1.1  jonathan 	u_int32_t misc;
   2336        1.1  jonathan 
   2337        1.1  jonathan 	/*
   2338        1.1  jonathan 	 * This will set the cache line size to 1, this will
   2339        1.1  jonathan 	 * force the BCM58xx chip just to do burst read/writes.
   2340        1.1  jonathan 	 * Cache line read/writes are to slow
   2341        1.1  jonathan 	 */
   2342        1.1  jonathan 	misc = pci_conf_read(pc, pa->pa_tag, PCI_BHLC_REG);
   2343        1.1  jonathan 	misc = (misc & ~(PCI_CACHELINE_MASK << PCI_CACHELINE_SHIFT))
   2344        1.1  jonathan 	    | ((UBS_DEF_CACHELINE & 0xff) << PCI_CACHELINE_SHIFT);
   2345        1.1  jonathan 	pci_conf_write(pc, pa->pa_tag, PCI_BHLC_REG, misc);
   2346        1.1  jonathan }
   2347        1.1  jonathan 
   2348        1.1  jonathan /*
   2349        1.1  jonathan  * Clean up after a chip crash.
   2350        1.1  jonathan  * It is assumed that the caller in splnet()
   2351        1.1  jonathan  */
   2352        1.1  jonathan static void
   2353        1.1  jonathan ubsec_cleanchip(struct ubsec_softc *sc)
   2354        1.1  jonathan {
   2355        1.1  jonathan 	struct ubsec_q *q;
   2356        1.1  jonathan 
   2357        1.1  jonathan 	while (!SIMPLEQ_EMPTY(&sc->sc_qchip)) {
   2358        1.1  jonathan 		q = SIMPLEQ_FIRST(&sc->sc_qchip);
   2359        1.1  jonathan 		SIMPLEQ_REMOVE_HEAD(&sc->sc_qchip, /*q,*/ q_next);
   2360        1.1  jonathan 		ubsec_free_q(sc, q);
   2361        1.1  jonathan 	}
   2362        1.1  jonathan 	sc->sc_nqchip = 0;
   2363        1.1  jonathan }
   2364        1.1  jonathan 
   2365        1.1  jonathan /*
   2366        1.1  jonathan  * free a ubsec_q
   2367        1.1  jonathan  * It is assumed that the caller is within splnet()
   2368        1.1  jonathan  */
   2369        1.1  jonathan static int
   2370        1.1  jonathan ubsec_free_q(struct ubsec_softc *sc, struct ubsec_q *q)
   2371        1.1  jonathan {
   2372        1.1  jonathan 	struct ubsec_q *q2;
   2373        1.1  jonathan 	struct cryptop *crp;
   2374        1.1  jonathan 	int npkts;
   2375        1.1  jonathan 	int i;
   2376        1.1  jonathan 
   2377        1.1  jonathan 	npkts = q->q_nstacked_mcrs;
   2378        1.1  jonathan 
   2379        1.1  jonathan 	for (i = 0; i < npkts; i++) {
   2380        1.1  jonathan 		if(q->q_stacked_mcr[i]) {
   2381        1.1  jonathan 			q2 = q->q_stacked_mcr[i];
   2382        1.1  jonathan 
   2383       1.43   msaitoh 			if ((q2->q_dst_m != NULL)
   2384       1.43   msaitoh 			    && (q2->q_src_m != q2->q_dst_m))
   2385        1.1  jonathan 				m_freem(q2->q_dst_m);
   2386        1.1  jonathan 
   2387        1.1  jonathan 			crp = (struct cryptop *)q2->q_crp;
   2388        1.5     perry 
   2389        1.1  jonathan 			SIMPLEQ_INSERT_TAIL(&sc->sc_freequeue, q2, q_next);
   2390        1.5     perry 
   2391        1.1  jonathan 			crp->crp_etype = EFAULT;
   2392        1.1  jonathan 			crypto_done(crp);
   2393        1.1  jonathan 		} else {
   2394        1.1  jonathan 			break;
   2395        1.1  jonathan 		}
   2396        1.1  jonathan 	}
   2397        1.1  jonathan 
   2398        1.1  jonathan 	/*
   2399        1.1  jonathan 	 * Free header MCR
   2400        1.1  jonathan 	 */
   2401        1.1  jonathan 	if ((q->q_dst_m != NULL) && (q->q_src_m != q->q_dst_m))
   2402        1.1  jonathan 		m_freem(q->q_dst_m);
   2403        1.1  jonathan 
   2404        1.1  jonathan 	crp = (struct cryptop *)q->q_crp;
   2405        1.5     perry 
   2406        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_freequeue, q, q_next);
   2407        1.5     perry 
   2408        1.1  jonathan 	crp->crp_etype = EFAULT;
   2409        1.1  jonathan 	crypto_done(crp);
   2410        1.1  jonathan 	return(0);
   2411        1.1  jonathan }
   2412        1.1  jonathan 
   2413        1.1  jonathan /*
   2414        1.1  jonathan  * Routine to reset the chip and clean up.
   2415        1.1  jonathan  * It is assumed that the caller is in splnet()
   2416        1.1  jonathan  */
   2417        1.1  jonathan static void
   2418        1.1  jonathan ubsec_totalreset(struct ubsec_softc *sc)
   2419        1.1  jonathan {
   2420        1.1  jonathan 	ubsec_reset_board(sc);
   2421        1.1  jonathan 	ubsec_init_board(sc);
   2422        1.1  jonathan 	ubsec_cleanchip(sc);
   2423        1.1  jonathan }
   2424        1.1  jonathan 
   2425        1.1  jonathan static int
   2426        1.1  jonathan ubsec_dmamap_aligned(bus_dmamap_t map)
   2427        1.1  jonathan {
   2428        1.1  jonathan 	int i;
   2429        1.1  jonathan 
   2430        1.1  jonathan 	for (i = 0; i < map->dm_nsegs; i++) {
   2431        1.1  jonathan 		if (map->dm_segs[i].ds_addr & 3)
   2432        1.1  jonathan 			return (0);
   2433        1.1  jonathan 		if ((i != (map->dm_nsegs - 1)) &&
   2434        1.1  jonathan 		    (map->dm_segs[i].ds_len & 3))
   2435        1.1  jonathan 			return (0);
   2436        1.1  jonathan 	}
   2437        1.1  jonathan 	return (1);
   2438        1.1  jonathan }
   2439        1.1  jonathan 
   2440        1.1  jonathan #ifdef __OpenBSD__
   2441        1.1  jonathan struct ubsec_softc *
   2442        1.7   thorpej ubsec_kfind(struct cryptkop *krp)
   2443        1.1  jonathan {
   2444        1.1  jonathan 	struct ubsec_softc *sc;
   2445        1.1  jonathan 	int i;
   2446        1.1  jonathan 
   2447        1.1  jonathan 	for (i = 0; i < ubsec_cd.cd_ndevs; i++) {
   2448        1.1  jonathan 		sc = ubsec_cd.cd_devs[i];
   2449        1.1  jonathan 		if (sc == NULL)
   2450        1.1  jonathan 			continue;
   2451        1.1  jonathan 		if (sc->sc_cid == krp->krp_hid)
   2452        1.1  jonathan 			return (sc);
   2453        1.1  jonathan 	}
   2454        1.1  jonathan 	return (NULL);
   2455        1.1  jonathan }
   2456        1.1  jonathan #endif
   2457        1.1  jonathan 
   2458        1.1  jonathan static void
   2459        1.1  jonathan ubsec_kfree(struct ubsec_softc *sc, struct ubsec_q2 *q)
   2460        1.1  jonathan {
   2461        1.1  jonathan 	switch (q->q_type) {
   2462        1.1  jonathan 	case UBS_CTXOP_MODEXP: {
   2463        1.1  jonathan 		struct ubsec_q2_modexp *me = (struct ubsec_q2_modexp *)q;
   2464        1.1  jonathan 
   2465        1.1  jonathan 		ubsec_dma_free(sc, &me->me_q.q_mcr);
   2466        1.1  jonathan 		ubsec_dma_free(sc, &me->me_q.q_ctx);
   2467        1.1  jonathan 		ubsec_dma_free(sc, &me->me_M);
   2468        1.1  jonathan 		ubsec_dma_free(sc, &me->me_E);
   2469        1.1  jonathan 		ubsec_dma_free(sc, &me->me_C);
   2470        1.1  jonathan 		ubsec_dma_free(sc, &me->me_epb);
   2471        1.1  jonathan 		free(me, M_DEVBUF);
   2472        1.1  jonathan 		break;
   2473        1.1  jonathan 	}
   2474        1.1  jonathan 	case UBS_CTXOP_RSAPRIV: {
   2475        1.1  jonathan 		struct ubsec_q2_rsapriv *rp = (struct ubsec_q2_rsapriv *)q;
   2476        1.1  jonathan 
   2477        1.1  jonathan 		ubsec_dma_free(sc, &rp->rpr_q.q_mcr);
   2478        1.1  jonathan 		ubsec_dma_free(sc, &rp->rpr_q.q_ctx);
   2479        1.1  jonathan 		ubsec_dma_free(sc, &rp->rpr_msgin);
   2480        1.1  jonathan 		ubsec_dma_free(sc, &rp->rpr_msgout);
   2481        1.1  jonathan 		free(rp, M_DEVBUF);
   2482        1.1  jonathan 		break;
   2483        1.1  jonathan 	}
   2484        1.1  jonathan 	default:
   2485       1.28       chs 		printf("%s: invalid kfree 0x%x\n", device_xname(sc->sc_dev),
   2486        1.1  jonathan 		    q->q_type);
   2487        1.1  jonathan 		break;
   2488        1.1  jonathan 	}
   2489        1.1  jonathan }
   2490        1.1  jonathan 
   2491        1.1  jonathan static int
   2492        1.1  jonathan ubsec_kprocess(void *arg, struct cryptkop *krp, int hint)
   2493        1.1  jonathan {
   2494        1.1  jonathan 	struct ubsec_softc *sc;
   2495        1.1  jonathan 	int r;
   2496        1.1  jonathan 
   2497        1.1  jonathan 	if (krp == NULL || krp->krp_callback == NULL)
   2498        1.1  jonathan 		return (EINVAL);
   2499        1.1  jonathan #ifdef __OpenBSD__
   2500        1.1  jonathan 	if ((sc = ubsec_kfind(krp)) == NULL)
   2501        1.1  jonathan 		return (EINVAL);
   2502        1.1  jonathan #else
   2503        1.1  jonathan 	sc = arg;
   2504        1.1  jonathan 	KASSERT(sc != NULL /*, ("ubsec_kprocess: null softc")*/);
   2505        1.1  jonathan #endif
   2506        1.1  jonathan 
   2507        1.1  jonathan 	while (!SIMPLEQ_EMPTY(&sc->sc_q2free)) {
   2508        1.1  jonathan 		struct ubsec_q2 *q;
   2509        1.1  jonathan 
   2510        1.1  jonathan 		q = SIMPLEQ_FIRST(&sc->sc_q2free);
   2511        1.1  jonathan 		SIMPLEQ_REMOVE_HEAD(&sc->sc_q2free, /*q,*/ q_next);
   2512        1.1  jonathan 		ubsec_kfree(sc, q);
   2513        1.1  jonathan 	}
   2514        1.1  jonathan 
   2515        1.1  jonathan 	switch (krp->krp_op) {
   2516        1.1  jonathan 	case CRK_MOD_EXP:
   2517        1.1  jonathan 		if (sc->sc_flags & UBS_FLAGS_HWNORM)
   2518        1.1  jonathan 			r = ubsec_kprocess_modexp_hw(sc, krp, hint);
   2519        1.1  jonathan 		else
   2520        1.1  jonathan 			r = ubsec_kprocess_modexp_sw(sc, krp, hint);
   2521        1.1  jonathan 		break;
   2522        1.1  jonathan 	case CRK_MOD_EXP_CRT:
   2523        1.1  jonathan 		r = ubsec_kprocess_rsapriv(sc, krp, hint);
   2524        1.1  jonathan 		break;
   2525        1.1  jonathan 	default:
   2526        1.1  jonathan 		printf("%s: kprocess: invalid op 0x%x\n",
   2527       1.28       chs 		    device_xname(sc->sc_dev), krp->krp_op);
   2528        1.1  jonathan 		krp->krp_status = EOPNOTSUPP;
   2529        1.1  jonathan 		crypto_kdone(krp);
   2530        1.1  jonathan 		r = 0;
   2531        1.1  jonathan 	}
   2532        1.1  jonathan 	return (r);
   2533        1.1  jonathan }
   2534        1.1  jonathan 
   2535        1.1  jonathan /*
   2536        1.1  jonathan  * Start computation of cr[C] = (cr[M] ^ cr[E]) mod cr[N] (sw normalization)
   2537        1.1  jonathan  */
   2538        1.1  jonathan static int
   2539        1.1  jonathan ubsec_kprocess_modexp_sw(struct ubsec_softc *sc, struct cryptkop *krp,
   2540       1.11  christos 			 int hint)
   2541        1.1  jonathan {
   2542        1.1  jonathan 	struct ubsec_q2_modexp *me;
   2543        1.1  jonathan 	struct ubsec_mcr *mcr;
   2544        1.1  jonathan 	struct ubsec_ctx_modexp *ctx;
   2545        1.1  jonathan 	struct ubsec_pktbuf *epb;
   2546       1.29       tls 	int err = 0;
   2547        1.1  jonathan 	u_int nbits, normbits, mbits, shiftbits, ebits;
   2548        1.1  jonathan 
   2549        1.1  jonathan 	me = (struct ubsec_q2_modexp *)malloc(sizeof *me, M_DEVBUF, M_NOWAIT);
   2550        1.1  jonathan 	if (me == NULL) {
   2551        1.1  jonathan 		err = ENOMEM;
   2552        1.1  jonathan 		goto errout;
   2553        1.1  jonathan 	}
   2554       1.18    cegger 	memset(me, 0, sizeof *me);
   2555        1.1  jonathan 	me->me_krp = krp;
   2556        1.1  jonathan 	me->me_q.q_type = UBS_CTXOP_MODEXP;
   2557        1.1  jonathan 
   2558        1.1  jonathan 	nbits = ubsec_ksigbits(&krp->krp_param[UBS_MODEXP_PAR_N]);
   2559        1.1  jonathan 	if (nbits <= 512)
   2560        1.1  jonathan 		normbits = 512;
   2561        1.1  jonathan 	else if (nbits <= 768)
   2562        1.1  jonathan 		normbits = 768;
   2563        1.1  jonathan 	else if (nbits <= 1024)
   2564        1.1  jonathan 		normbits = 1024;
   2565        1.1  jonathan 	else if (sc->sc_flags & UBS_FLAGS_BIGKEY && nbits <= 1536)
   2566        1.1  jonathan 		normbits = 1536;
   2567        1.1  jonathan 	else if (sc->sc_flags & UBS_FLAGS_BIGKEY && nbits <= 2048)
   2568        1.1  jonathan 		normbits = 2048;
   2569        1.1  jonathan 	else {
   2570        1.1  jonathan 		err = E2BIG;
   2571        1.1  jonathan 		goto errout;
   2572        1.1  jonathan 	}
   2573        1.1  jonathan 
   2574        1.1  jonathan 	shiftbits = normbits - nbits;
   2575        1.1  jonathan 
   2576        1.1  jonathan 	me->me_modbits = nbits;
   2577        1.1  jonathan 	me->me_shiftbits = shiftbits;
   2578        1.1  jonathan 	me->me_normbits = normbits;
   2579        1.1  jonathan 
   2580        1.1  jonathan 	/* Sanity check: result bits must be >= true modulus bits. */
   2581        1.1  jonathan 	if (krp->krp_param[krp->krp_iparams].crp_nbits < nbits) {
   2582        1.1  jonathan 		err = ERANGE;
   2583        1.1  jonathan 		goto errout;
   2584        1.1  jonathan 	}
   2585        1.1  jonathan 
   2586        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_mcr),
   2587        1.1  jonathan 	    &me->me_q.q_mcr, 0)) {
   2588        1.1  jonathan 		err = ENOMEM;
   2589        1.1  jonathan 		goto errout;
   2590        1.1  jonathan 	}
   2591        1.1  jonathan 	mcr = (struct ubsec_mcr *)me->me_q.q_mcr.dma_vaddr;
   2592        1.1  jonathan 
   2593        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_ctx_modexp),
   2594        1.1  jonathan 	    &me->me_q.q_ctx, 0)) {
   2595        1.1  jonathan 		err = ENOMEM;
   2596        1.1  jonathan 		goto errout;
   2597        1.1  jonathan 	}
   2598        1.1  jonathan 
   2599        1.1  jonathan 	mbits = ubsec_ksigbits(&krp->krp_param[UBS_MODEXP_PAR_M]);
   2600        1.1  jonathan 	if (mbits > nbits) {
   2601        1.1  jonathan 		err = E2BIG;
   2602        1.1  jonathan 		goto errout;
   2603        1.1  jonathan 	}
   2604        1.1  jonathan 	if (ubsec_dma_malloc(sc, normbits / 8, &me->me_M, 0)) {
   2605        1.1  jonathan 		err = ENOMEM;
   2606        1.1  jonathan 		goto errout;
   2607        1.1  jonathan 	}
   2608        1.1  jonathan 	ubsec_kshift_r(shiftbits,
   2609        1.1  jonathan 	    krp->krp_param[UBS_MODEXP_PAR_M].crp_p, mbits,
   2610        1.1  jonathan 	    me->me_M.dma_vaddr, normbits);
   2611        1.1  jonathan 
   2612        1.1  jonathan 	if (ubsec_dma_malloc(sc, normbits / 8, &me->me_C, 0)) {
   2613        1.1  jonathan 		err = ENOMEM;
   2614        1.1  jonathan 		goto errout;
   2615        1.1  jonathan 	}
   2616       1.18    cegger 	memset(me->me_C.dma_vaddr, 0, me->me_C.dma_size);
   2617        1.1  jonathan 
   2618        1.1  jonathan 	ebits = ubsec_ksigbits(&krp->krp_param[UBS_MODEXP_PAR_E]);
   2619        1.1  jonathan 	if (ebits > nbits) {
   2620        1.1  jonathan 		err = E2BIG;
   2621        1.1  jonathan 		goto errout;
   2622        1.1  jonathan 	}
   2623        1.1  jonathan 	if (ubsec_dma_malloc(sc, normbits / 8, &me->me_E, 0)) {
   2624        1.1  jonathan 		err = ENOMEM;
   2625        1.1  jonathan 		goto errout;
   2626        1.1  jonathan 	}
   2627        1.1  jonathan 	ubsec_kshift_r(shiftbits,
   2628        1.1  jonathan 	    krp->krp_param[UBS_MODEXP_PAR_E].crp_p, ebits,
   2629        1.1  jonathan 	    me->me_E.dma_vaddr, normbits);
   2630        1.1  jonathan 
   2631        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_pktbuf),
   2632        1.1  jonathan 	    &me->me_epb, 0)) {
   2633        1.1  jonathan 		err = ENOMEM;
   2634        1.1  jonathan 		goto errout;
   2635        1.1  jonathan 	}
   2636        1.1  jonathan 	epb = (struct ubsec_pktbuf *)me->me_epb.dma_vaddr;
   2637        1.1  jonathan 	epb->pb_addr = htole32(me->me_E.dma_paddr);
   2638        1.1  jonathan 	epb->pb_next = 0;
   2639        1.1  jonathan 	epb->pb_len = htole32(normbits / 8);
   2640        1.1  jonathan 
   2641        1.1  jonathan #ifdef UBSEC_DEBUG
   2642        1.1  jonathan 	if (ubsec_debug) {
   2643        1.1  jonathan 		printf("Epb ");
   2644        1.1  jonathan 		ubsec_dump_pb(epb);
   2645        1.1  jonathan 	}
   2646        1.1  jonathan #endif
   2647        1.1  jonathan 
   2648        1.1  jonathan 	mcr->mcr_pkts = htole16(1);
   2649        1.1  jonathan 	mcr->mcr_flags = 0;
   2650        1.1  jonathan 	mcr->mcr_cmdctxp = htole32(me->me_q.q_ctx.dma_paddr);
   2651        1.1  jonathan 	mcr->mcr_reserved = 0;
   2652        1.1  jonathan 	mcr->mcr_pktlen = 0;
   2653        1.1  jonathan 
   2654        1.1  jonathan 	mcr->mcr_ipktbuf.pb_addr = htole32(me->me_M.dma_paddr);
   2655        1.1  jonathan 	mcr->mcr_ipktbuf.pb_len = htole32(normbits / 8);
   2656        1.1  jonathan 	mcr->mcr_ipktbuf.pb_next = htole32(me->me_epb.dma_paddr);
   2657        1.1  jonathan 
   2658        1.1  jonathan 	mcr->mcr_opktbuf.pb_addr = htole32(me->me_C.dma_paddr);
   2659        1.1  jonathan 	mcr->mcr_opktbuf.pb_next = 0;
   2660        1.1  jonathan 	mcr->mcr_opktbuf.pb_len = htole32(normbits / 8);
   2661        1.1  jonathan 
   2662        1.1  jonathan #ifdef DIAGNOSTIC
   2663        1.1  jonathan 	/* Misaligned output buffer will hang the chip. */
   2664        1.1  jonathan 	if ((letoh32(mcr->mcr_opktbuf.pb_addr) & 3) != 0)
   2665       1.43   msaitoh 		panic("%s: modexp invalid addr 0x%x", device_xname(sc->sc_dev),
   2666       1.43   msaitoh 		    letoh32(mcr->mcr_opktbuf.pb_addr));
   2667        1.1  jonathan 	if ((letoh32(mcr->mcr_opktbuf.pb_len) & 3) != 0)
   2668       1.43   msaitoh 		panic("%s: modexp invalid len 0x%x",  device_xname(sc->sc_dev),
   2669       1.43   msaitoh 		    letoh32(mcr->mcr_opktbuf.pb_len));
   2670        1.1  jonathan #endif
   2671        1.1  jonathan 
   2672        1.1  jonathan 	ctx = (struct ubsec_ctx_modexp *)me->me_q.q_ctx.dma_vaddr;
   2673       1.18    cegger 	memset(ctx, 0, sizeof(*ctx));
   2674        1.1  jonathan 	ubsec_kshift_r(shiftbits,
   2675        1.1  jonathan 	    krp->krp_param[UBS_MODEXP_PAR_N].crp_p, nbits,
   2676        1.1  jonathan 	    ctx->me_N, normbits);
   2677        1.1  jonathan 	ctx->me_len = htole16((normbits / 8) + (4 * sizeof(u_int16_t)));
   2678        1.1  jonathan 	ctx->me_op = htole16(UBS_CTXOP_MODEXP);
   2679        1.1  jonathan 	ctx->me_E_len = htole16(nbits);
   2680        1.1  jonathan 	ctx->me_N_len = htole16(nbits);
   2681        1.1  jonathan 
   2682        1.1  jonathan #ifdef UBSEC_DEBUG
   2683        1.1  jonathan 	if (ubsec_debug) {
   2684        1.1  jonathan 		ubsec_dump_mcr(mcr);
   2685        1.1  jonathan 		ubsec_dump_ctx2((struct ubsec_ctx_keyop *)ctx);
   2686        1.1  jonathan 	}
   2687        1.1  jonathan #endif
   2688        1.1  jonathan 
   2689        1.1  jonathan 	/*
   2690        1.1  jonathan 	 * ubsec_feed2 will sync mcr and ctx, we just need to sync
   2691        1.1  jonathan 	 * everything else.
   2692        1.1  jonathan 	 */
   2693        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_M.dma_map,
   2694        1.1  jonathan 	    0, me->me_M.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2695        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_E.dma_map,
   2696        1.1  jonathan 	    0, me->me_E.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2697        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_C.dma_map,
   2698        1.1  jonathan 	    0, me->me_C.dma_map->dm_mapsize, BUS_DMASYNC_PREREAD);
   2699        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_epb.dma_map,
   2700        1.1  jonathan 	    0, me->me_epb.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2701        1.1  jonathan 
   2702        1.1  jonathan 	/* Enqueue and we're done... */
   2703       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   2704        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_queue2, &me->me_q, q_next);
   2705        1.1  jonathan 	ubsec_feed2(sc);
   2706        1.1  jonathan 	ubsecstats.hst_modexp++;
   2707       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   2708        1.1  jonathan 
   2709        1.1  jonathan 	return (0);
   2710        1.1  jonathan 
   2711        1.1  jonathan errout:
   2712        1.1  jonathan 	if (me != NULL) {
   2713        1.1  jonathan 		if (me->me_q.q_mcr.dma_map != NULL)
   2714        1.1  jonathan 			ubsec_dma_free(sc, &me->me_q.q_mcr);
   2715        1.1  jonathan 		if (me->me_q.q_ctx.dma_map != NULL) {
   2716       1.43   msaitoh 			memset(me->me_q.q_ctx.dma_vaddr, 0,
   2717       1.43   msaitoh 			    me->me_q.q_ctx.dma_size);
   2718        1.1  jonathan 			ubsec_dma_free(sc, &me->me_q.q_ctx);
   2719        1.1  jonathan 		}
   2720        1.1  jonathan 		if (me->me_M.dma_map != NULL) {
   2721       1.18    cegger 			memset(me->me_M.dma_vaddr, 0, me->me_M.dma_size);
   2722        1.1  jonathan 			ubsec_dma_free(sc, &me->me_M);
   2723        1.1  jonathan 		}
   2724        1.1  jonathan 		if (me->me_E.dma_map != NULL) {
   2725       1.18    cegger 			memset(me->me_E.dma_vaddr, 0, me->me_E.dma_size);
   2726        1.1  jonathan 			ubsec_dma_free(sc, &me->me_E);
   2727        1.1  jonathan 		}
   2728        1.1  jonathan 		if (me->me_C.dma_map != NULL) {
   2729       1.18    cegger 			memset(me->me_C.dma_vaddr, 0, me->me_C.dma_size);
   2730        1.1  jonathan 			ubsec_dma_free(sc, &me->me_C);
   2731        1.1  jonathan 		}
   2732        1.1  jonathan 		if (me->me_epb.dma_map != NULL)
   2733        1.1  jonathan 			ubsec_dma_free(sc, &me->me_epb);
   2734        1.1  jonathan 		free(me, M_DEVBUF);
   2735        1.1  jonathan 	}
   2736        1.1  jonathan 	krp->krp_status = err;
   2737        1.1  jonathan 	crypto_kdone(krp);
   2738        1.1  jonathan 	return (0);
   2739        1.1  jonathan }
   2740        1.1  jonathan 
   2741        1.1  jonathan /*
   2742        1.1  jonathan  * Start computation of cr[C] = (cr[M] ^ cr[E]) mod cr[N] (hw normalization)
   2743        1.1  jonathan  */
   2744        1.1  jonathan static int
   2745        1.1  jonathan ubsec_kprocess_modexp_hw(struct ubsec_softc *sc, struct cryptkop *krp,
   2746       1.11  christos 			 int hint)
   2747        1.1  jonathan {
   2748        1.1  jonathan 	struct ubsec_q2_modexp *me;
   2749        1.1  jonathan 	struct ubsec_mcr *mcr;
   2750        1.1  jonathan 	struct ubsec_ctx_modexp *ctx;
   2751        1.1  jonathan 	struct ubsec_pktbuf *epb;
   2752       1.29       tls 	int err = 0;
   2753        1.1  jonathan 	u_int nbits, normbits, mbits, shiftbits, ebits;
   2754        1.1  jonathan 
   2755        1.1  jonathan 	me = (struct ubsec_q2_modexp *)malloc(sizeof *me, M_DEVBUF, M_NOWAIT);
   2756        1.1  jonathan 	if (me == NULL) {
   2757        1.1  jonathan 		err = ENOMEM;
   2758        1.1  jonathan 		goto errout;
   2759        1.1  jonathan 	}
   2760       1.18    cegger 	memset(me, 0, sizeof *me);
   2761        1.1  jonathan 	me->me_krp = krp;
   2762        1.1  jonathan 	me->me_q.q_type = UBS_CTXOP_MODEXP;
   2763        1.1  jonathan 
   2764        1.1  jonathan 	nbits = ubsec_ksigbits(&krp->krp_param[UBS_MODEXP_PAR_N]);
   2765        1.1  jonathan 	if (nbits <= 512)
   2766        1.1  jonathan 		normbits = 512;
   2767        1.1  jonathan 	else if (nbits <= 768)
   2768        1.1  jonathan 		normbits = 768;
   2769        1.1  jonathan 	else if (nbits <= 1024)
   2770        1.1  jonathan 		normbits = 1024;
   2771        1.1  jonathan 	else if (sc->sc_flags & UBS_FLAGS_BIGKEY && nbits <= 1536)
   2772        1.1  jonathan 		normbits = 1536;
   2773        1.1  jonathan 	else if (sc->sc_flags & UBS_FLAGS_BIGKEY && nbits <= 2048)
   2774        1.1  jonathan 		normbits = 2048;
   2775        1.1  jonathan 	else {
   2776        1.1  jonathan 		err = E2BIG;
   2777        1.1  jonathan 		goto errout;
   2778        1.1  jonathan 	}
   2779        1.1  jonathan 
   2780        1.1  jonathan 	shiftbits = normbits - nbits;
   2781        1.1  jonathan 
   2782        1.1  jonathan 	/* XXX ??? */
   2783        1.1  jonathan 	me->me_modbits = nbits;
   2784        1.1  jonathan 	me->me_shiftbits = shiftbits;
   2785        1.1  jonathan 	me->me_normbits = normbits;
   2786        1.1  jonathan 
   2787        1.1  jonathan 	/* Sanity check: result bits must be >= true modulus bits. */
   2788        1.1  jonathan 	if (krp->krp_param[krp->krp_iparams].crp_nbits < nbits) {
   2789        1.1  jonathan 		err = ERANGE;
   2790        1.1  jonathan 		goto errout;
   2791        1.1  jonathan 	}
   2792        1.1  jonathan 
   2793        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_mcr),
   2794        1.1  jonathan 	    &me->me_q.q_mcr, 0)) {
   2795        1.1  jonathan 		err = ENOMEM;
   2796        1.1  jonathan 		goto errout;
   2797        1.1  jonathan 	}
   2798        1.1  jonathan 	mcr = (struct ubsec_mcr *)me->me_q.q_mcr.dma_vaddr;
   2799        1.1  jonathan 
   2800        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_ctx_modexp),
   2801        1.1  jonathan 	    &me->me_q.q_ctx, 0)) {
   2802        1.1  jonathan 		err = ENOMEM;
   2803        1.1  jonathan 		goto errout;
   2804        1.1  jonathan 	}
   2805        1.1  jonathan 
   2806        1.1  jonathan 	mbits = ubsec_ksigbits(&krp->krp_param[UBS_MODEXP_PAR_M]);
   2807        1.1  jonathan 	if (mbits > nbits) {
   2808        1.1  jonathan 		err = E2BIG;
   2809        1.1  jonathan 		goto errout;
   2810        1.1  jonathan 	}
   2811        1.1  jonathan 	if (ubsec_dma_malloc(sc, normbits / 8, &me->me_M, 0)) {
   2812        1.1  jonathan 		err = ENOMEM;
   2813        1.1  jonathan 		goto errout;
   2814        1.1  jonathan 	}
   2815       1.18    cegger 	memset(me->me_M.dma_vaddr, 0, normbits / 8);
   2816        1.1  jonathan 	bcopy(krp->krp_param[UBS_MODEXP_PAR_M].crp_p,
   2817        1.1  jonathan 	    me->me_M.dma_vaddr, (mbits + 7) / 8);
   2818        1.1  jonathan 
   2819        1.1  jonathan 	if (ubsec_dma_malloc(sc, normbits / 8, &me->me_C, 0)) {
   2820        1.1  jonathan 		err = ENOMEM;
   2821        1.1  jonathan 		goto errout;
   2822        1.1  jonathan 	}
   2823       1.18    cegger 	memset(me->me_C.dma_vaddr, 0, me->me_C.dma_size);
   2824        1.1  jonathan 
   2825        1.1  jonathan 	ebits = ubsec_ksigbits(&krp->krp_param[UBS_MODEXP_PAR_E]);
   2826        1.1  jonathan 	if (ebits > nbits) {
   2827        1.1  jonathan 		err = E2BIG;
   2828        1.1  jonathan 		goto errout;
   2829        1.1  jonathan 	}
   2830        1.1  jonathan 	if (ubsec_dma_malloc(sc, normbits / 8, &me->me_E, 0)) {
   2831        1.1  jonathan 		err = ENOMEM;
   2832        1.1  jonathan 		goto errout;
   2833        1.1  jonathan 	}
   2834       1.18    cegger 	memset(me->me_E.dma_vaddr, 0, normbits / 8);
   2835        1.1  jonathan 	bcopy(krp->krp_param[UBS_MODEXP_PAR_E].crp_p,
   2836        1.1  jonathan 	    me->me_E.dma_vaddr, (ebits + 7) / 8);
   2837        1.1  jonathan 
   2838        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_pktbuf),
   2839        1.1  jonathan 	    &me->me_epb, 0)) {
   2840        1.1  jonathan 		err = ENOMEM;
   2841        1.1  jonathan 		goto errout;
   2842        1.1  jonathan 	}
   2843        1.1  jonathan 	epb = (struct ubsec_pktbuf *)me->me_epb.dma_vaddr;
   2844        1.1  jonathan 	epb->pb_addr = htole32(me->me_E.dma_paddr);
   2845        1.1  jonathan 	epb->pb_next = 0;
   2846        1.1  jonathan 	epb->pb_len = htole32((ebits + 7) / 8);
   2847        1.1  jonathan 
   2848        1.1  jonathan #ifdef UBSEC_DEBUG
   2849        1.1  jonathan 	if (ubsec_debug) {
   2850        1.1  jonathan 		printf("Epb ");
   2851        1.1  jonathan 		ubsec_dump_pb(epb);
   2852        1.1  jonathan 	}
   2853        1.1  jonathan #endif
   2854        1.1  jonathan 
   2855        1.1  jonathan 	mcr->mcr_pkts = htole16(1);
   2856        1.1  jonathan 	mcr->mcr_flags = 0;
   2857        1.1  jonathan 	mcr->mcr_cmdctxp = htole32(me->me_q.q_ctx.dma_paddr);
   2858        1.1  jonathan 	mcr->mcr_reserved = 0;
   2859        1.1  jonathan 	mcr->mcr_pktlen = 0;
   2860        1.1  jonathan 
   2861        1.1  jonathan 	mcr->mcr_ipktbuf.pb_addr = htole32(me->me_M.dma_paddr);
   2862        1.1  jonathan 	mcr->mcr_ipktbuf.pb_len = htole32(normbits / 8);
   2863        1.1  jonathan 	mcr->mcr_ipktbuf.pb_next = htole32(me->me_epb.dma_paddr);
   2864        1.1  jonathan 
   2865        1.1  jonathan 	mcr->mcr_opktbuf.pb_addr = htole32(me->me_C.dma_paddr);
   2866        1.1  jonathan 	mcr->mcr_opktbuf.pb_next = 0;
   2867        1.1  jonathan 	mcr->mcr_opktbuf.pb_len = htole32(normbits / 8);
   2868        1.1  jonathan 
   2869        1.1  jonathan #ifdef DIAGNOSTIC
   2870        1.1  jonathan 	/* Misaligned output buffer will hang the chip. */
   2871        1.1  jonathan 	if ((letoh32(mcr->mcr_opktbuf.pb_addr) & 3) != 0)
   2872       1.43   msaitoh 		panic("%s: modexp invalid addr 0x%x", device_xname(sc->sc_dev),
   2873       1.43   msaitoh 		    letoh32(mcr->mcr_opktbuf.pb_addr));
   2874        1.1  jonathan 	if ((letoh32(mcr->mcr_opktbuf.pb_len) & 3) != 0)
   2875       1.43   msaitoh 		panic("%s: modexp invalid len 0x%x", device_xname(sc->sc_dev),
   2876       1.43   msaitoh 		    letoh32(mcr->mcr_opktbuf.pb_len));
   2877        1.1  jonathan #endif
   2878        1.1  jonathan 
   2879        1.1  jonathan 	ctx = (struct ubsec_ctx_modexp *)me->me_q.q_ctx.dma_vaddr;
   2880       1.18    cegger 	memset(ctx, 0, sizeof(*ctx));
   2881       1.20   tsutsui 	memcpy(ctx->me_N, krp->krp_param[UBS_MODEXP_PAR_N].crp_p,
   2882        1.1  jonathan 	    (nbits + 7) / 8);
   2883        1.1  jonathan 	ctx->me_len = htole16((normbits / 8) + (4 * sizeof(u_int16_t)));
   2884        1.1  jonathan 	ctx->me_op = htole16(UBS_CTXOP_MODEXP);
   2885        1.1  jonathan 	ctx->me_E_len = htole16(ebits);
   2886        1.1  jonathan 	ctx->me_N_len = htole16(nbits);
   2887        1.1  jonathan 
   2888        1.1  jonathan #ifdef UBSEC_DEBUG
   2889        1.1  jonathan 	if (ubsec_debug) {
   2890        1.1  jonathan 		ubsec_dump_mcr(mcr);
   2891        1.1  jonathan 		ubsec_dump_ctx2((struct ubsec_ctx_keyop *)ctx);
   2892        1.1  jonathan 	}
   2893        1.1  jonathan #endif
   2894        1.1  jonathan 
   2895        1.1  jonathan 	/*
   2896        1.1  jonathan 	 * ubsec_feed2 will sync mcr and ctx, we just need to sync
   2897        1.1  jonathan 	 * everything else.
   2898        1.1  jonathan 	 */
   2899        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_M.dma_map,
   2900        1.1  jonathan 	    0, me->me_M.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2901        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_E.dma_map,
   2902        1.1  jonathan 	    0, me->me_E.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2903        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_C.dma_map,
   2904        1.1  jonathan 	    0, me->me_C.dma_map->dm_mapsize, BUS_DMASYNC_PREREAD);
   2905        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, me->me_epb.dma_map,
   2906        1.1  jonathan 	    0, me->me_epb.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   2907        1.1  jonathan 
   2908        1.1  jonathan 	/* Enqueue and we're done... */
   2909       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   2910        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_queue2, &me->me_q, q_next);
   2911        1.1  jonathan 	ubsec_feed2(sc);
   2912       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   2913        1.1  jonathan 
   2914        1.1  jonathan 	return (0);
   2915        1.1  jonathan 
   2916        1.1  jonathan errout:
   2917        1.1  jonathan 	if (me != NULL) {
   2918        1.1  jonathan 		if (me->me_q.q_mcr.dma_map != NULL)
   2919        1.1  jonathan 			ubsec_dma_free(sc, &me->me_q.q_mcr);
   2920        1.1  jonathan 		if (me->me_q.q_ctx.dma_map != NULL) {
   2921       1.43   msaitoh 			memset(me->me_q.q_ctx.dma_vaddr, 0,
   2922       1.43   msaitoh 			    me->me_q.q_ctx.dma_size);
   2923        1.1  jonathan 			ubsec_dma_free(sc, &me->me_q.q_ctx);
   2924        1.1  jonathan 		}
   2925        1.1  jonathan 		if (me->me_M.dma_map != NULL) {
   2926       1.18    cegger 			memset(me->me_M.dma_vaddr, 0, me->me_M.dma_size);
   2927        1.1  jonathan 			ubsec_dma_free(sc, &me->me_M);
   2928        1.1  jonathan 		}
   2929        1.1  jonathan 		if (me->me_E.dma_map != NULL) {
   2930       1.18    cegger 			memset(me->me_E.dma_vaddr, 0, me->me_E.dma_size);
   2931        1.1  jonathan 			ubsec_dma_free(sc, &me->me_E);
   2932        1.1  jonathan 		}
   2933        1.1  jonathan 		if (me->me_C.dma_map != NULL) {
   2934       1.18    cegger 			memset(me->me_C.dma_vaddr, 0, me->me_C.dma_size);
   2935        1.1  jonathan 			ubsec_dma_free(sc, &me->me_C);
   2936        1.1  jonathan 		}
   2937        1.1  jonathan 		if (me->me_epb.dma_map != NULL)
   2938        1.1  jonathan 			ubsec_dma_free(sc, &me->me_epb);
   2939        1.1  jonathan 		free(me, M_DEVBUF);
   2940        1.1  jonathan 	}
   2941        1.1  jonathan 	krp->krp_status = err;
   2942        1.1  jonathan 	crypto_kdone(krp);
   2943        1.1  jonathan 	return (0);
   2944        1.1  jonathan }
   2945        1.1  jonathan 
   2946        1.1  jonathan static int
   2947        1.1  jonathan ubsec_kprocess_rsapriv(struct ubsec_softc *sc, struct cryptkop *krp,
   2948       1.11  christos 		       int hint)
   2949        1.1  jonathan {
   2950        1.1  jonathan 	struct ubsec_q2_rsapriv *rp = NULL;
   2951        1.1  jonathan 	struct ubsec_mcr *mcr;
   2952        1.1  jonathan 	struct ubsec_ctx_rsapriv *ctx;
   2953       1.29       tls 	int err = 0;
   2954        1.1  jonathan 	u_int padlen, msglen;
   2955        1.1  jonathan 
   2956        1.1  jonathan 	msglen = ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_P]);
   2957        1.1  jonathan 	padlen = ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_Q]);
   2958        1.1  jonathan 	if (msglen > padlen)
   2959        1.1  jonathan 		padlen = msglen;
   2960        1.1  jonathan 
   2961        1.1  jonathan 	if (padlen <= 256)
   2962        1.1  jonathan 		padlen = 256;
   2963        1.1  jonathan 	else if (padlen <= 384)
   2964        1.1  jonathan 		padlen = 384;
   2965        1.1  jonathan 	else if (padlen <= 512)
   2966        1.1  jonathan 		padlen = 512;
   2967        1.1  jonathan 	else if (sc->sc_flags & UBS_FLAGS_BIGKEY && padlen <= 768)
   2968        1.1  jonathan 		padlen = 768;
   2969        1.1  jonathan 	else if (sc->sc_flags & UBS_FLAGS_BIGKEY && padlen <= 1024)
   2970        1.1  jonathan 		padlen = 1024;
   2971        1.1  jonathan 	else {
   2972        1.1  jonathan 		err = E2BIG;
   2973        1.1  jonathan 		goto errout;
   2974        1.1  jonathan 	}
   2975        1.1  jonathan 
   2976        1.1  jonathan 	if (ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_DP]) > padlen) {
   2977        1.1  jonathan 		err = E2BIG;
   2978        1.1  jonathan 		goto errout;
   2979        1.1  jonathan 	}
   2980        1.1  jonathan 
   2981        1.1  jonathan 	if (ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_DQ]) > padlen) {
   2982        1.1  jonathan 		err = E2BIG;
   2983        1.1  jonathan 		goto errout;
   2984        1.1  jonathan 	}
   2985        1.1  jonathan 
   2986        1.1  jonathan 	if (ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_PINV]) > padlen) {
   2987        1.1  jonathan 		err = E2BIG;
   2988        1.1  jonathan 		goto errout;
   2989        1.1  jonathan 	}
   2990        1.1  jonathan 
   2991       1.17    cegger 	rp = malloc(sizeof *rp, M_DEVBUF, M_NOWAIT|M_ZERO);
   2992        1.1  jonathan 	if (rp == NULL)
   2993        1.1  jonathan 		return (ENOMEM);
   2994        1.1  jonathan 	rp->rpr_krp = krp;
   2995        1.1  jonathan 	rp->rpr_q.q_type = UBS_CTXOP_RSAPRIV;
   2996        1.1  jonathan 
   2997        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_mcr),
   2998        1.1  jonathan 	    &rp->rpr_q.q_mcr, 0)) {
   2999        1.1  jonathan 		err = ENOMEM;
   3000        1.1  jonathan 		goto errout;
   3001        1.1  jonathan 	}
   3002        1.1  jonathan 	mcr = (struct ubsec_mcr *)rp->rpr_q.q_mcr.dma_vaddr;
   3003        1.1  jonathan 
   3004        1.1  jonathan 	if (ubsec_dma_malloc(sc, sizeof(struct ubsec_ctx_rsapriv),
   3005        1.1  jonathan 	    &rp->rpr_q.q_ctx, 0)) {
   3006        1.1  jonathan 		err = ENOMEM;
   3007        1.1  jonathan 		goto errout;
   3008        1.1  jonathan 	}
   3009        1.1  jonathan 	ctx = (struct ubsec_ctx_rsapriv *)rp->rpr_q.q_ctx.dma_vaddr;
   3010       1.18    cegger 	memset(ctx, 0, sizeof *ctx);
   3011        1.1  jonathan 
   3012        1.1  jonathan 	/* Copy in p */
   3013        1.1  jonathan 	bcopy(krp->krp_param[UBS_RSAPRIV_PAR_P].crp_p,
   3014        1.1  jonathan 	    &ctx->rpr_buf[0 * (padlen / 8)],
   3015        1.1  jonathan 	    (krp->krp_param[UBS_RSAPRIV_PAR_P].crp_nbits + 7) / 8);
   3016        1.1  jonathan 
   3017        1.1  jonathan 	/* Copy in q */
   3018        1.1  jonathan 	bcopy(krp->krp_param[UBS_RSAPRIV_PAR_Q].crp_p,
   3019        1.1  jonathan 	    &ctx->rpr_buf[1 * (padlen / 8)],
   3020        1.1  jonathan 	    (krp->krp_param[UBS_RSAPRIV_PAR_Q].crp_nbits + 7) / 8);
   3021        1.1  jonathan 
   3022        1.1  jonathan 	/* Copy in dp */
   3023        1.1  jonathan 	bcopy(krp->krp_param[UBS_RSAPRIV_PAR_DP].crp_p,
   3024        1.1  jonathan 	    &ctx->rpr_buf[2 * (padlen / 8)],
   3025        1.1  jonathan 	    (krp->krp_param[UBS_RSAPRIV_PAR_DP].crp_nbits + 7) / 8);
   3026        1.1  jonathan 
   3027        1.1  jonathan 	/* Copy in dq */
   3028        1.1  jonathan 	bcopy(krp->krp_param[UBS_RSAPRIV_PAR_DQ].crp_p,
   3029        1.1  jonathan 	    &ctx->rpr_buf[3 * (padlen / 8)],
   3030        1.1  jonathan 	    (krp->krp_param[UBS_RSAPRIV_PAR_DQ].crp_nbits + 7) / 8);
   3031        1.1  jonathan 
   3032        1.1  jonathan 	/* Copy in pinv */
   3033        1.1  jonathan 	bcopy(krp->krp_param[UBS_RSAPRIV_PAR_PINV].crp_p,
   3034        1.1  jonathan 	    &ctx->rpr_buf[4 * (padlen / 8)],
   3035        1.1  jonathan 	    (krp->krp_param[UBS_RSAPRIV_PAR_PINV].crp_nbits + 7) / 8);
   3036        1.1  jonathan 
   3037        1.1  jonathan 	msglen = padlen * 2;
   3038        1.1  jonathan 
   3039        1.1  jonathan 	/* Copy in input message (aligned buffer/length). */
   3040        1.1  jonathan 	if (ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_MSGIN]) > msglen) {
   3041        1.1  jonathan 		/* Is this likely? */
   3042        1.1  jonathan 		err = E2BIG;
   3043        1.1  jonathan 		goto errout;
   3044        1.1  jonathan 	}
   3045        1.1  jonathan 	if (ubsec_dma_malloc(sc, (msglen + 7) / 8, &rp->rpr_msgin, 0)) {
   3046        1.1  jonathan 		err = ENOMEM;
   3047        1.1  jonathan 		goto errout;
   3048        1.1  jonathan 	}
   3049       1.18    cegger 	memset(rp->rpr_msgin.dma_vaddr, 0, (msglen + 7) / 8);
   3050        1.1  jonathan 	bcopy(krp->krp_param[UBS_RSAPRIV_PAR_MSGIN].crp_p,
   3051        1.1  jonathan 	    rp->rpr_msgin.dma_vaddr,
   3052        1.1  jonathan 	    (krp->krp_param[UBS_RSAPRIV_PAR_MSGIN].crp_nbits + 7) / 8);
   3053        1.1  jonathan 
   3054        1.1  jonathan 	/* Prepare space for output message (aligned buffer/length). */
   3055        1.1  jonathan 	if (ubsec_ksigbits(&krp->krp_param[UBS_RSAPRIV_PAR_MSGOUT]) < msglen) {
   3056        1.1  jonathan 		/* Is this likely? */
   3057        1.1  jonathan 		err = E2BIG;
   3058        1.1  jonathan 		goto errout;
   3059        1.1  jonathan 	}
   3060        1.1  jonathan 	if (ubsec_dma_malloc(sc, (msglen + 7) / 8, &rp->rpr_msgout, 0)) {
   3061        1.1  jonathan 		err = ENOMEM;
   3062        1.1  jonathan 		goto errout;
   3063        1.1  jonathan 	}
   3064       1.18    cegger 	memset(rp->rpr_msgout.dma_vaddr, 0, (msglen + 7) / 8);
   3065        1.1  jonathan 
   3066        1.1  jonathan 	mcr->mcr_pkts = htole16(1);
   3067        1.1  jonathan 	mcr->mcr_flags = 0;
   3068        1.1  jonathan 	mcr->mcr_cmdctxp = htole32(rp->rpr_q.q_ctx.dma_paddr);
   3069        1.1  jonathan 	mcr->mcr_ipktbuf.pb_addr = htole32(rp->rpr_msgin.dma_paddr);
   3070        1.1  jonathan 	mcr->mcr_ipktbuf.pb_next = 0;
   3071        1.1  jonathan 	mcr->mcr_ipktbuf.pb_len = htole32(rp->rpr_msgin.dma_size);
   3072        1.1  jonathan 	mcr->mcr_reserved = 0;
   3073        1.1  jonathan 	mcr->mcr_pktlen = htole16(msglen);
   3074        1.1  jonathan 	mcr->mcr_opktbuf.pb_addr = htole32(rp->rpr_msgout.dma_paddr);
   3075        1.1  jonathan 	mcr->mcr_opktbuf.pb_next = 0;
   3076        1.1  jonathan 	mcr->mcr_opktbuf.pb_len = htole32(rp->rpr_msgout.dma_size);
   3077        1.1  jonathan 
   3078        1.1  jonathan #ifdef DIAGNOSTIC
   3079        1.1  jonathan 	if (rp->rpr_msgin.dma_paddr & 3 || rp->rpr_msgin.dma_size & 3) {
   3080        1.3   thorpej 		panic("%s: rsapriv: invalid msgin 0x%lx(0x%lx)",
   3081       1.28       chs 		    device_xname(sc->sc_dev), (u_long) rp->rpr_msgin.dma_paddr,
   3082        1.3   thorpej 		    (u_long) rp->rpr_msgin.dma_size);
   3083        1.1  jonathan 	}
   3084        1.1  jonathan 	if (rp->rpr_msgout.dma_paddr & 3 || rp->rpr_msgout.dma_size & 3) {
   3085        1.3   thorpej 		panic("%s: rsapriv: invalid msgout 0x%lx(0x%lx)",
   3086       1.28       chs 		    device_xname(sc->sc_dev), (u_long) rp->rpr_msgout.dma_paddr,
   3087        1.3   thorpej 		    (u_long) rp->rpr_msgout.dma_size);
   3088        1.1  jonathan 	}
   3089        1.1  jonathan #endif
   3090        1.1  jonathan 
   3091        1.1  jonathan 	ctx->rpr_len = (sizeof(u_int16_t) * 4) + (5 * (padlen / 8));
   3092        1.1  jonathan 	ctx->rpr_op = htole16(UBS_CTXOP_RSAPRIV);
   3093        1.1  jonathan 	ctx->rpr_q_len = htole16(padlen);
   3094        1.1  jonathan 	ctx->rpr_p_len = htole16(padlen);
   3095        1.1  jonathan 
   3096        1.1  jonathan 	/*
   3097        1.1  jonathan 	 * ubsec_feed2 will sync mcr and ctx, we just need to sync
   3098        1.1  jonathan 	 * everything else.
   3099        1.1  jonathan 	 */
   3100        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, rp->rpr_msgin.dma_map,
   3101        1.1  jonathan 	    0, rp->rpr_msgin.dma_map->dm_mapsize, BUS_DMASYNC_PREWRITE);
   3102        1.1  jonathan 	bus_dmamap_sync(sc->sc_dmat, rp->rpr_msgout.dma_map,
   3103        1.1  jonathan 	    0, rp->rpr_msgout.dma_map->dm_mapsize, BUS_DMASYNC_PREREAD);
   3104        1.1  jonathan 
   3105        1.1  jonathan 	/* Enqueue and we're done... */
   3106       1.29       tls 	mutex_spin_enter(&sc->sc_mtx);
   3107        1.1  jonathan 	SIMPLEQ_INSERT_TAIL(&sc->sc_queue2, &rp->rpr_q, q_next);
   3108        1.1  jonathan 	ubsec_feed2(sc);
   3109        1.1  jonathan 	ubsecstats.hst_modexpcrt++;
   3110       1.29       tls 	mutex_spin_exit(&sc->sc_mtx);
   3111        1.1  jonathan 	return (0);
   3112        1.1  jonathan 
   3113        1.1  jonathan errout:
   3114        1.1  jonathan 	if (rp != NULL) {
   3115        1.1  jonathan 		if (rp->rpr_q.q_mcr.dma_map != NULL)
   3116        1.1  jonathan 			ubsec_dma_free(sc, &rp->rpr_q.q_mcr);
   3117        1.1  jonathan 		if (rp->rpr_msgin.dma_map != NULL) {
   3118       1.43   msaitoh 			memset(rp->rpr_msgin.dma_vaddr, 0,
   3119       1.43   msaitoh 			    rp->rpr_msgin.dma_size);
   3120        1.1  jonathan 			ubsec_dma_free(sc, &rp->rpr_msgin);
   3121        1.1  jonathan 		}
   3122        1.1  jonathan 		if (rp->rpr_msgout.dma_map != NULL) {
   3123       1.43   msaitoh 			memset(rp->rpr_msgout.dma_vaddr, 0,
   3124       1.43   msaitoh 			    rp->rpr_msgout.dma_size);
   3125        1.1  jonathan 			ubsec_dma_free(sc, &rp->rpr_msgout);
   3126        1.1  jonathan 		}
   3127        1.1  jonathan 		free(rp, M_DEVBUF);
   3128        1.1  jonathan 	}
   3129        1.1  jonathan 	krp->krp_status = err;
   3130        1.1  jonathan 	crypto_kdone(krp);
   3131        1.1  jonathan 	return (0);
   3132        1.1  jonathan }
   3133        1.1  jonathan 
   3134        1.1  jonathan #ifdef UBSEC_DEBUG
   3135        1.1  jonathan static void
   3136        1.1  jonathan ubsec_dump_pb(volatile struct ubsec_pktbuf *pb)
   3137        1.1  jonathan {
   3138        1.1  jonathan 	printf("addr 0x%x (0x%x) next 0x%x\n",
   3139        1.1  jonathan 	    pb->pb_addr, pb->pb_len, pb->pb_next);
   3140        1.1  jonathan }
   3141        1.1  jonathan 
   3142        1.1  jonathan static void
   3143        1.1  jonathan ubsec_dump_ctx2(volatile struct ubsec_ctx_keyop *c)
   3144        1.1  jonathan {
   3145        1.1  jonathan 	printf("CTX (0x%x):\n", c->ctx_len);
   3146        1.1  jonathan 	switch (letoh16(c->ctx_op)) {
   3147        1.1  jonathan 	case UBS_CTXOP_RNGBYPASS:
   3148        1.1  jonathan 	case UBS_CTXOP_RNGSHA1:
   3149        1.1  jonathan 		break;
   3150        1.1  jonathan 	case UBS_CTXOP_MODEXP:
   3151        1.1  jonathan 	{
   3152        1.1  jonathan 		struct ubsec_ctx_modexp *cx = (void *)c;
   3153        1.1  jonathan 		int i, len;
   3154        1.1  jonathan 
   3155        1.1  jonathan 		printf(" Elen %u, Nlen %u\n",
   3156        1.1  jonathan 		    letoh16(cx->me_E_len), letoh16(cx->me_N_len));
   3157        1.1  jonathan 		len = (cx->me_N_len + 7)/8;
   3158        1.1  jonathan 		for (i = 0; i < len; i++)
   3159        1.1  jonathan 			printf("%s%02x", (i == 0) ? " N: " : ":", cx->me_N[i]);
   3160        1.1  jonathan 		printf("\n");
   3161        1.1  jonathan 		break;
   3162        1.1  jonathan 	}
   3163        1.1  jonathan 	default:
   3164        1.1  jonathan 		printf("unknown context: %x\n", c->ctx_op);
   3165        1.1  jonathan 	}
   3166        1.1  jonathan 	printf("END CTX\n");
   3167        1.1  jonathan }
   3168        1.1  jonathan 
   3169        1.1  jonathan static void
   3170        1.1  jonathan ubsec_dump_mcr(struct ubsec_mcr *mcr)
   3171        1.1  jonathan {
   3172        1.1  jonathan 	volatile struct ubsec_mcr_add *ma;
   3173        1.1  jonathan 	int i;
   3174        1.1  jonathan 
   3175        1.1  jonathan 	printf("MCR:\n");
   3176        1.1  jonathan 	printf(" pkts: %u, flags 0x%x\n",
   3177        1.1  jonathan 	    letoh16(mcr->mcr_pkts), letoh16(mcr->mcr_flags));
   3178        1.1  jonathan 	ma = (volatile struct ubsec_mcr_add *)&mcr->mcr_cmdctxp;
   3179        1.1  jonathan 	for (i = 0; i < letoh16(mcr->mcr_pkts); i++) {
   3180        1.1  jonathan 		printf(" %d: ctx 0x%x len 0x%x rsvd 0x%x\n", i,
   3181        1.1  jonathan 		    letoh32(ma->mcr_cmdctxp), letoh16(ma->mcr_pktlen),
   3182        1.1  jonathan 		    letoh16(ma->mcr_reserved));
   3183        1.1  jonathan 		printf(" %d: ipkt ", i);
   3184        1.1  jonathan 		ubsec_dump_pb(&ma->mcr_ipktbuf);
   3185        1.1  jonathan 		printf(" %d: opkt ", i);
   3186        1.1  jonathan 		ubsec_dump_pb(&ma->mcr_opktbuf);
   3187        1.1  jonathan 		ma++;
   3188        1.1  jonathan 	}
   3189        1.1  jonathan 	printf("END MCR\n");
   3190        1.1  jonathan }
   3191        1.1  jonathan #endif /* UBSEC_DEBUG */
   3192        1.1  jonathan 
   3193        1.1  jonathan /*
   3194        1.1  jonathan  * Return the number of significant bits of a big number.
   3195        1.1  jonathan  */
   3196        1.1  jonathan static int
   3197        1.1  jonathan ubsec_ksigbits(struct crparam *cr)
   3198        1.1  jonathan {
   3199        1.1  jonathan 	u_int plen = (cr->crp_nbits + 7) / 8;
   3200        1.1  jonathan 	int i, sig = plen * 8;
   3201        1.1  jonathan 	u_int8_t c, *p = cr->crp_p;
   3202        1.1  jonathan 
   3203        1.1  jonathan 	for (i = plen - 1; i >= 0; i--) {
   3204        1.1  jonathan 		c = p[i];
   3205        1.1  jonathan 		if (c != 0) {
   3206        1.1  jonathan 			while ((c & 0x80) == 0) {
   3207        1.1  jonathan 				sig--;
   3208        1.1  jonathan 				c <<= 1;
   3209        1.1  jonathan 			}
   3210        1.1  jonathan 			break;
   3211        1.1  jonathan 		}
   3212        1.1  jonathan 		sig -= 8;
   3213        1.1  jonathan 	}
   3214        1.1  jonathan 	return (sig);
   3215        1.1  jonathan }
   3216        1.1  jonathan 
   3217        1.1  jonathan static void
   3218        1.7   thorpej ubsec_kshift_r(u_int shiftbits, u_int8_t *src, u_int srcbits,
   3219        1.7   thorpej     u_int8_t *dst, u_int dstbits)
   3220        1.1  jonathan {
   3221        1.1  jonathan 	u_int slen, dlen;
   3222        1.1  jonathan 	int i, si, di, n;
   3223        1.1  jonathan 
   3224        1.1  jonathan 	slen = (srcbits + 7) / 8;
   3225        1.1  jonathan 	dlen = (dstbits + 7) / 8;
   3226        1.1  jonathan 
   3227        1.1  jonathan 	for (i = 0; i < slen; i++)
   3228        1.1  jonathan 		dst[i] = src[i];
   3229        1.1  jonathan 	for (i = 0; i < dlen - slen; i++)
   3230        1.1  jonathan 		dst[slen + i] = 0;
   3231        1.1  jonathan 
   3232        1.1  jonathan 	n = shiftbits / 8;
   3233        1.1  jonathan 	if (n != 0) {
   3234        1.1  jonathan 		si = dlen - n - 1;
   3235        1.1  jonathan 		di = dlen - 1;
   3236        1.1  jonathan 		while (si >= 0)
   3237        1.1  jonathan 			dst[di--] = dst[si--];
   3238        1.1  jonathan 		while (di >= 0)
   3239        1.1  jonathan 			dst[di--] = 0;
   3240        1.1  jonathan 	}
   3241        1.1  jonathan 
   3242        1.1  jonathan 	n = shiftbits % 8;
   3243        1.1  jonathan 	if (n != 0) {
   3244        1.1  jonathan 		for (i = dlen - 1; i > 0; i--)
   3245        1.1  jonathan 			dst[i] = (dst[i] << n) |
   3246        1.1  jonathan 			    (dst[i - 1] >> (8 - n));
   3247        1.1  jonathan 		dst[0] = dst[0] << n;
   3248        1.1  jonathan 	}
   3249        1.1  jonathan }
   3250        1.1  jonathan 
   3251        1.1  jonathan static void
   3252        1.7   thorpej ubsec_kshift_l(u_int shiftbits, u_int8_t *src, u_int srcbits,
   3253        1.7   thorpej     u_int8_t *dst, u_int dstbits)
   3254        1.1  jonathan {
   3255        1.1  jonathan 	int slen, dlen, i, n;
   3256        1.1  jonathan 
   3257        1.1  jonathan 	slen = (srcbits + 7) / 8;
   3258        1.1  jonathan 	dlen = (dstbits + 7) / 8;
   3259        1.1  jonathan 
   3260        1.1  jonathan 	n = shiftbits / 8;
   3261        1.1  jonathan 	for (i = 0; i < slen; i++)
   3262        1.1  jonathan 		dst[i] = src[i + n];
   3263        1.1  jonathan 	for (i = 0; i < dlen - slen; i++)
   3264        1.1  jonathan 		dst[slen + i] = 0;
   3265        1.1  jonathan 
   3266        1.1  jonathan 	n = shiftbits % 8;
   3267        1.1  jonathan 	if (n != 0) {
   3268        1.1  jonathan 		for (i = 0; i < (dlen - 1); i++)
   3269        1.1  jonathan 			dst[i] = (dst[i] >> n) | (dst[i + 1] << (8 - n));
   3270        1.1  jonathan 		dst[dlen - 1] = dst[dlen - 1] >> n;
   3271        1.1  jonathan 	}
   3272        1.1  jonathan }
   3273