Files
linux/crypto/shash.c
Linus Torvalds b85966adbf Merge tag 'net-next-7.2' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next
Pull networking updates from Jakub Kicinski:
 "Core & protocols:

   - Work on removing rtnl_lock protection throughout the stack
     continues. In this chapter:
       - don't use rtnl_lock for IPv6 multicast routing configuration
       - don't take rtnl_lock in ethtool for modern drivers
       - prepare Qdisc dump callbacks for rtnl_lock removal

   - Support dumping just ifindex + name of all interfaces, under RCU.
     It's a common operation for Netlink CLI tools (when translating
     names to ifindexes) and previously required full rtnl_lock.

   - Support dumping qdiscs and page pools for a specific netdev. Even
     tho user space wants a dump of all netdevs, most of the time, the
     OOO programming model results in repeating the dump for each
     netdev. Which, in absence of a cache, leads to a O(n^2) behavior.

   - Flush nexthops once on multi-nexthop removal (e.g. when device goes
     down), another O(n^2) -> O(n) improvement.

   - Rehash locally generated traffic to a different nexthop on
     retransmit timeout.

   - Honor oif when choosing nexthop for locally generated IPv6 traffic.

   - Convert TCP Auth Option to crypto library, and drop non-RFC algos.

   - Increase subflow limits in MPTCP to 64 and endpoint limit to 256.

   - Support MPTCP signaling of IPv6 address + port (ADD_ADDR). We need
     to selectively skip reporting of the standard TCP Timestamp option,
     because they won't fit into the header space together (12 + 30 >
     40).

   - Support using bridge neighbor suppression, Duplicate Address
     Detection, Gratuitous ARP and unsolicited NA forwarding - in EVPN
     deployments, e.g. VXLAN fabrics (IPv4 and IPv6).

   - Improve link state reporting for upper netdevs (e.g. macvlan) over
     tunnel devices (again, mostly for EVPN deployments).

   - Support binding GENEVE tunnels to a local address.

   - Speed up UDP tunnel destruction (remove one synchronize_rcu()).

   - Support exponential field encoding in multicast (IGMPv3 and MLDv2).

   - Support attaching PSP crypto offload to containers (veth, netkit).

   - Add a new IPSec Netlink message XFRM_MSG_MIGRATE_STATE that allows
     migrating individual IPsec SAs independently of their policies.

     The existing XFRM_MSG_MIGRATE is tightly coupled to policy+SA
     migration, lacks SPI for unique SA identification, and cannot
     express reqid changes or migrate Transport mode selectors.

     The new interface identifies the SA via SPI and mark, supports
     reqid changes, address family changes, encap removal, and uses an
     atomic create+install flow under x->lock to prevent SN/IV reuse
     during AEAD SA migration.

   - Implement GRO/GSO support for PPPoE.

   - Convert sockopt callbacks in a number of protocols to iov_iter.

  Cross-tree stuff:

   - Remove support for Crypto TFM cloning (unblocked after the TCP Auth
     Option rework). This feature regressed performance for all crypto
     API users, since it changed crypto transformation objects into
     reference-counted objects.

   - Add FCrypt-PCBC implementation to rxrpc and remove it from the
     global crypto API as obsolete and insecure.

  Wireless:

   - Major rework of station bandwidth handling, fixing issues with
     lower capability than AP.

   - Cleanups for EMLSR spec issues (drafts differed).

   - More Neighbor Awareness Networking (Wi-Fi Aware) work (multicast,
     schedule improvements, multi-station etc.)

   - Some Ultra High Reliability (UHR) / IEEE 802.11bn (D1.4) work
     (e.g. non-primary channel access, UHR DBE support).

   - Fine Timing Measurement ranging (i.e. distance measurement) APIs.

  Netfilter:

   - Use per-rule hash initval in nf_conncount. This avoids unnecessary
     lock contention with short keys (e.g. conntrack zones) in different
     namespaces.

   - Various safety improvements, both in packet parsing and object
     lifetimes. Notably add refcounts to conntrack timeout policy.

  Deletions:

   - Remove TLS + sockmap integration. TLS wants to pin user pages to
     avoid a copy, and sockmap wants to write to the input stream. More
     work on this integration is clearly needed, and we can't find any
     users (original author admitted that they never deployed it).

   - Remove support for TLS offload with TCP Offload Engine (the far
     more common opportunistic offload is retained). The locking looks
     unfixable (driver sleeps under TCP spin locks) and people from the
     vendor that added this are AWOL.

   - Remove more ATM code, trying to leave behind only what PPPoATM
     needs, AAL5 and br2684 with permanent circuits.

   - Remove AppleTalk. Let it join hamradio in our out of tree protocol
     graveyard, I mean, repository.

   - Disable 32-bit x_tables compatibility (32bit binaries on 64bit
     kernel) interface in user namespaces. To be deleted completely,
     soon.

   - Remove 5/10 MHz support from cfg80211/mac80211.

  Drivers:

   - Software:
       - Support DEVMEM/DMABUF Tx over NETMEM_TX_NO_DMA devices (netkit)
       - bonding: add knob to strictly follow 802.3ad for link state

   - New drivers:
       - Alibaba Elastic Ethernet Adaptor (cloud vNIC).
       - NXP NETC switch within i.MX94.

   - DPLL:
       - Add operational state to pins (implement in zl3073x).
       - Add generic DPLL type, for daisy-chaining DPLLs (implement in ice).

   - Ethernet high-speed NICs:
       - Huawei (hinic3):
           - enhance tc flow offload support with queue selection,
             tunnels
       - nVidia/Mellanox:
           - avoid over-copying payload to the skb's linear part (up to
             60% win for LRO on slow CPUs like ARM64 V2)
           - expose more per-queue stats over the standard API
           - support additional, unprivileged PFs in the DPU
             configuration
           - support Socket Direct (multi-PF) with switchdev offloads
           - add a pool / frag allocator for DMA mapped buffers for
             control objects, save memory on systems with 64kB page size
           - take advantage of the ability to dynamically change RSS
             table size, even when table is configured by the user
           - increase the max RSS table size for even traffic
             distribution

   - Ethernet NICs:
       - Marvell/Aquantia:
           - AQC113 PTP support
       - Realtek USB (r8152):
           - support 10Gbit Link Speeds and Energy-Efficient Ethernet
             (EEE)
           - support firmware loaded (for RTL8157/RTL8159)
           - support for the RTL8159
       - Intel (ixgbe):
           - support Energy-Efficient Ethernet (EEE) on E610 devices

   - Ethernet switches:
       - Airoha:
           - support multiple netdevs on a single GDM block / port
       - Marvell (mv88e6xxx):
           - support SERDES of mv88e6321
       - Microchip (ksz8/9):
           - rework the driver callbacks to remove one indirection layer
       - Motorcomm (yt921x):
           - support port rate policing
           - support TBF qdisc offload
           - support ACL/flower offload
       - nVidia/Mellanox:
           - expose per-PG rx_discards
       - Realtek:
           - rtl8365mb: bridge offloading and VLAN support

   - Ethernet PHYs:
       - Airoha:
           - support Airoha AN8801R Gigabit PHYs.
       - Micrel:
           - implement 3 low-loss cable tunables
       - Realtek:
           - support MDI swapping for RTL8226-CG
           - support MDIO for RTL931x
       - Qualcomm:
           - at803x: Rx and Tx clock management for IPQ5018 PHY
       - Motorcomm:
           - support YT8522 100M RMII PHY
           - set drive strength in YT8531s RGMII
       - TI:
           - dp83822: add optional external PHY clock

   - Bluetooth:
       - hci_sync: add support for HCI_LE_Set_Host_Feature [v2]
       - SMP: use AES-CMAC library API
       - Intel:
           - support Product level reset
           - support smart trigger dump
       - Mediatek:
           - add event filter to filter specific event
       - Realtek:
           - fix RTL8761B/BU broken LE extended scan

   - WiFi:
       - Broadcom (b43):
           - new support for a 11n device
       - MediaTek (mt76):
           - support mt7927
           - mt792x: broken usb transport detection
           - mt7921: regulatory improvements
       - Qualcomm (ath9k):
           - GPIO interface improvements
       - Qualcomm (ath12k):
           - WDS support
           - replace dynamic memory allocation in WMI Rx path
           - thermal throttling/cooling device support
           - 6 GHz incumbent interference detection
           - channel 177 in 5 GHz
       - Realtek (rt89):
           - RTL8922AU support
           - USB 3 mode switch for performance
           - better monitor radiotap support
           - RTL8922DE preparations"

* tag 'net-next-7.2' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next: (1778 commits)
  ipv4: fib_rule: Move fib4_rules_exit() to ->exit().
  net: serialize netif_running() check in enqueue_to_backlog()
  net: skmsg: preserve sg.copy across SG transforms
  appletalk: move the protocol out of tree
  appletalk: stop storing per-interface state in struct net_device
  selftests/bpf: test that TLS crypto is rejected on a sockmap socket
  selftests/bpf: drop the unused kTLS program from test_sockmap
  selftests/bpf: remove sockmap + ktls tests
  tls: remove dead sockmap (psock) handling from the SW path
  tls: reject the combination of TLS and sockmap
  atm: remove orphaned uAPI for deleted drivers, protocols and SVCs
  atm: remove unused ATM PHY operations
  atm: remove the unused pre_send and send_bh device operations
  atm: remove the unused change_qos device operation
  atm: remove SVC socket support and the signaling daemon interface
  atm: remove the local ATM (NSAP) address registry
  atm: remove dead SONET PHY ioctls
  atm: remove the unused send_oam / push_oam callbacks
  atm: remove AAL3/4 transport support
  net: dsa: sja1105: fix lastused timestamp in flower stats
  ...
2026-06-17 08:17:00 +01:00

549 lines
14 KiB
C

// SPDX-License-Identifier: GPL-2.0-or-later
/*
* Synchronous Cryptographic Hash operations.
*
* Copyright (c) 2008 Herbert Xu <herbert@gondor.apana.org.au>
*/
#include <crypto/scatterwalk.h>
#include <linux/cryptouser.h>
#include <linux/err.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/seq_file.h>
#include <linux/string.h>
#include <net/netlink.h>
#include "hash.h"
static inline bool crypto_shash_block_only(struct crypto_shash *tfm)
{
return crypto_shash_alg(tfm)->base.cra_flags &
CRYPTO_AHASH_ALG_BLOCK_ONLY;
}
static inline bool crypto_shash_final_nonzero(struct crypto_shash *tfm)
{
return crypto_shash_alg(tfm)->base.cra_flags &
CRYPTO_AHASH_ALG_FINAL_NONZERO;
}
static inline bool crypto_shash_finup_max(struct crypto_shash *tfm)
{
return crypto_shash_alg(tfm)->base.cra_flags &
CRYPTO_AHASH_ALG_FINUP_MAX;
}
int shash_no_setkey(struct crypto_shash *tfm, const u8 *key,
unsigned int keylen)
{
return -ENOSYS;
}
EXPORT_SYMBOL_GPL(shash_no_setkey);
static void shash_set_needkey(struct crypto_shash *tfm, struct shash_alg *alg)
{
if (crypto_shash_alg_needs_key(alg))
crypto_shash_set_flags(tfm, CRYPTO_TFM_NEED_KEY);
}
int crypto_shash_setkey(struct crypto_shash *tfm, const u8 *key,
unsigned int keylen)
{
struct shash_alg *shash = crypto_shash_alg(tfm);
int err;
err = shash->setkey(tfm, key, keylen);
if (unlikely(err)) {
shash_set_needkey(tfm, shash);
return err;
}
crypto_shash_clear_flags(tfm, CRYPTO_TFM_NEED_KEY);
return 0;
}
EXPORT_SYMBOL_GPL(crypto_shash_setkey);
static int __crypto_shash_init(struct shash_desc *desc)
{
struct crypto_shash *tfm = desc->tfm;
if (crypto_shash_block_only(tfm)) {
u8 *buf = shash_desc_ctx(desc);
buf += crypto_shash_descsize(tfm) - 1;
*buf = 0;
}
return crypto_shash_alg(tfm)->init(desc);
}
int crypto_shash_init(struct shash_desc *desc)
{
if (crypto_shash_get_flags(desc->tfm) & CRYPTO_TFM_NEED_KEY)
return -ENOKEY;
return __crypto_shash_init(desc);
}
EXPORT_SYMBOL_GPL(crypto_shash_init);
static int shash_default_finup(struct shash_desc *desc, const u8 *data,
unsigned int len, u8 *out)
{
struct shash_alg *shash = crypto_shash_alg(desc->tfm);
return shash->update(desc, data, len) ?:
shash->final(desc, out);
}
static int crypto_shash_op_and_zero(
int (*op)(struct shash_desc *desc, const u8 *data,
unsigned int len, u8 *out),
struct shash_desc *desc, const u8 *data, unsigned int len, u8 *out)
{
int err;
err = op(desc, data, len, out);
memset(shash_desc_ctx(desc), 0, crypto_shash_descsize(desc->tfm));
return err;
}
int crypto_shash_finup(struct shash_desc *restrict desc, const u8 *data,
unsigned int len, u8 *restrict out)
{
struct crypto_shash *tfm = desc->tfm;
u8 *blenp = shash_desc_ctx(desc);
bool finup_max, nonzero;
unsigned int bs;
int err;
u8 *buf;
if (!crypto_shash_block_only(tfm)) {
if (out)
goto finup;
return crypto_shash_alg(tfm)->update(desc, data, len);
}
finup_max = out && crypto_shash_finup_max(tfm);
/* Retain extra block for final nonzero algorithms. */
nonzero = crypto_shash_final_nonzero(tfm);
/*
* The partial block buffer follows the algorithm desc context.
* The byte following that contains the length.
*/
blenp += crypto_shash_descsize(tfm) - 1;
bs = crypto_shash_blocksize(tfm);
buf = blenp - bs;
if (likely(!*blenp && finup_max))
goto finup;
while ((*blenp + len) >= bs + nonzero) {
unsigned int nbytes = len - nonzero;
const u8 *src = data;
if (*blenp) {
memcpy(buf + *blenp, data, bs - *blenp);
nbytes = bs;
src = buf;
}
err = crypto_shash_alg(tfm)->update(desc, src, nbytes);
if (err < 0)
return err;
data += nbytes - err - *blenp;
len -= nbytes - err - *blenp;
*blenp = 0;
}
if (*blenp || !out) {
memcpy(buf + *blenp, data, len);
*blenp += len;
if (!out)
return 0;
data = buf;
len = *blenp;
}
finup:
return crypto_shash_op_and_zero(crypto_shash_alg(tfm)->finup, desc,
data, len, out);
}
EXPORT_SYMBOL_GPL(crypto_shash_finup);
static int shash_default_digest(struct shash_desc *desc, const u8 *data,
unsigned int len, u8 *out)
{
return __crypto_shash_init(desc) ?:
crypto_shash_finup(desc, data, len, out);
}
int crypto_shash_digest(struct shash_desc *desc, const u8 *data,
unsigned int len, u8 *out)
{
struct crypto_shash *tfm = desc->tfm;
if (crypto_shash_get_flags(tfm) & CRYPTO_TFM_NEED_KEY)
return -ENOKEY;
return crypto_shash_op_and_zero(crypto_shash_alg(tfm)->digest, desc,
data, len, out);
}
EXPORT_SYMBOL_GPL(crypto_shash_digest);
int crypto_shash_tfm_digest(struct crypto_shash *tfm, const u8 *data,
unsigned int len, u8 *out)
{
SHASH_DESC_ON_STACK(desc, tfm);
desc->tfm = tfm;
return crypto_shash_digest(desc, data, len, out);
}
EXPORT_SYMBOL_GPL(crypto_shash_tfm_digest);
static int __crypto_shash_export(struct shash_desc *desc, void *out,
int (*export)(struct shash_desc *desc,
void *out))
{
struct crypto_shash *tfm = desc->tfm;
u8 *buf = shash_desc_ctx(desc);
unsigned int plen, ss;
plen = crypto_shash_blocksize(tfm) + 1;
ss = crypto_shash_statesize(tfm);
if (crypto_shash_block_only(tfm))
ss -= plen;
if (!export) {
memcpy(out, buf, ss);
return 0;
}
return export(desc, out);
}
int crypto_shash_export_core(struct shash_desc *desc, void *out)
{
return __crypto_shash_export(desc, out,
crypto_shash_alg(desc->tfm)->export_core);
}
EXPORT_SYMBOL_GPL(crypto_shash_export_core);
int crypto_shash_export(struct shash_desc *desc, void *out)
{
struct crypto_shash *tfm = desc->tfm;
if (crypto_shash_block_only(tfm)) {
unsigned int plen = crypto_shash_blocksize(tfm) + 1;
unsigned int descsize = crypto_shash_descsize(tfm);
unsigned int ss = crypto_shash_statesize(tfm);
u8 *buf = shash_desc_ctx(desc);
memcpy(out + ss - plen, buf + descsize - plen, plen);
}
return __crypto_shash_export(desc, out, crypto_shash_alg(tfm)->export);
}
EXPORT_SYMBOL_GPL(crypto_shash_export);
static int __crypto_shash_import(struct shash_desc *desc, const void *in,
int (*import)(struct shash_desc *desc,
const void *in))
{
struct crypto_shash *tfm = desc->tfm;
unsigned int descsize, plen, ss;
u8 *buf = shash_desc_ctx(desc);
if (crypto_shash_get_flags(tfm) & CRYPTO_TFM_NEED_KEY)
return -ENOKEY;
ss = crypto_shash_statesize(tfm);
if (crypto_shash_block_only(tfm)) {
plen = crypto_shash_blocksize(tfm) + 1;
ss -= plen;
descsize = crypto_shash_descsize(tfm);
buf[descsize - 1] = 0;
}
if (!import) {
memcpy(buf, in, ss);
return 0;
}
return import(desc, in);
}
int crypto_shash_import_core(struct shash_desc *desc, const void *in)
{
return __crypto_shash_import(desc, in,
crypto_shash_alg(desc->tfm)->import_core);
}
EXPORT_SYMBOL_GPL(crypto_shash_import_core);
int crypto_shash_import(struct shash_desc *desc, const void *in)
{
struct crypto_shash *tfm = desc->tfm;
int err;
err = __crypto_shash_import(desc, in, crypto_shash_alg(tfm)->import);
if (crypto_shash_block_only(tfm)) {
unsigned int plen = crypto_shash_blocksize(tfm) + 1;
unsigned int descsize = crypto_shash_descsize(tfm);
unsigned int ss = crypto_shash_statesize(tfm);
u8 *buf = shash_desc_ctx(desc);
memcpy(buf + descsize - plen, in + ss - plen, plen);
if (buf[descsize - 1] >= plen)
err = -EOVERFLOW;
}
return err;
}
EXPORT_SYMBOL_GPL(crypto_shash_import);
static void crypto_shash_exit_tfm(struct crypto_tfm *tfm)
{
struct crypto_shash *hash = __crypto_shash_cast(tfm);
struct shash_alg *alg = crypto_shash_alg(hash);
alg->exit_tfm(hash);
}
static int crypto_shash_init_tfm(struct crypto_tfm *tfm)
{
struct crypto_shash *hash = __crypto_shash_cast(tfm);
struct shash_alg *alg = crypto_shash_alg(hash);
shash_set_needkey(hash, alg);
if (alg->exit_tfm)
tfm->exit = crypto_shash_exit_tfm;
if (!alg->init_tfm)
return 0;
return alg->init_tfm(hash);
}
static void crypto_shash_free_instance(struct crypto_instance *inst)
{
struct shash_instance *shash = shash_instance(inst);
shash->free(shash);
}
static int __maybe_unused crypto_shash_report(
struct sk_buff *skb, struct crypto_alg *alg)
{
struct shash_alg *salg = __crypto_shash_alg(alg);
struct crypto_report_hash rhash = {
.type = "shash",
};
rhash.blocksize = alg->cra_blocksize;
rhash.digestsize = salg->digestsize;
return nla_put(skb, CRYPTOCFGA_REPORT_HASH, sizeof(rhash), &rhash);
}
static void __maybe_unused crypto_shash_show(struct seq_file *m,
struct crypto_alg *alg)
{
struct shash_alg *salg = __crypto_shash_alg(alg);
seq_printf(m, "type : shash\n");
seq_printf(m, "blocksize : %u\n", alg->cra_blocksize);
seq_printf(m, "digestsize : %u\n", salg->digestsize);
}
const struct crypto_type crypto_shash_type = {
.extsize = crypto_alg_extsize,
.init_tfm = crypto_shash_init_tfm,
.free = crypto_shash_free_instance,
#ifdef CONFIG_PROC_FS
.show = crypto_shash_show,
#endif
#if IS_ENABLED(CONFIG_CRYPTO_USER)
.report = crypto_shash_report,
#endif
.maskclear = ~CRYPTO_ALG_TYPE_MASK,
.maskset = CRYPTO_ALG_TYPE_MASK,
.type = CRYPTO_ALG_TYPE_SHASH,
.tfmsize = offsetof(struct crypto_shash, base),
.algsize = offsetof(struct shash_alg, base),
};
int crypto_grab_shash(struct crypto_shash_spawn *spawn,
struct crypto_instance *inst,
const char *name, u32 type, u32 mask)
{
spawn->base.frontend = &crypto_shash_type;
return crypto_grab_spawn(&spawn->base, inst, name, type, mask);
}
EXPORT_SYMBOL_GPL(crypto_grab_shash);
struct crypto_shash *crypto_alloc_shash(const char *alg_name, u32 type,
u32 mask)
{
return crypto_alloc_tfm(alg_name, &crypto_shash_type, type, mask);
}
EXPORT_SYMBOL_GPL(crypto_alloc_shash);
int crypto_has_shash(const char *alg_name, u32 type, u32 mask)
{
return crypto_type_has_alg(alg_name, &crypto_shash_type, type, mask);
}
EXPORT_SYMBOL_GPL(crypto_has_shash);
int hash_prepare_alg(struct hash_alg_common *alg)
{
struct crypto_alg *base = &alg->base;
if (alg->digestsize > HASH_MAX_DIGESTSIZE)
return -EINVAL;
/* alignmask is not useful for hashes, so it is not supported. */
if (base->cra_alignmask)
return -EINVAL;
base->cra_flags &= ~CRYPTO_ALG_TYPE_MASK;
return 0;
}
static int shash_default_export_core(struct shash_desc *desc, void *out)
{
return -ENOSYS;
}
static int shash_default_import_core(struct shash_desc *desc, const void *in)
{
return -ENOSYS;
}
static int shash_prepare_alg(struct shash_alg *alg)
{
struct crypto_alg *base = &alg->halg.base;
int err;
if ((alg->export && !alg->import) || (alg->import && !alg->export))
return -EINVAL;
err = hash_prepare_alg(&alg->halg);
if (err)
return err;
base->cra_type = &crypto_shash_type;
base->cra_flags |= CRYPTO_ALG_TYPE_SHASH;
base->cra_flags |= CRYPTO_ALG_REQ_VIRT;
/*
* Handle missing optional functions. For each one we can either
* install a default here, or we can leave the pointer as NULL and check
* the pointer for NULL in crypto_shash_*(), avoiding an indirect call
* when the default behavior is desired. For ->finup and ->digest we
* install defaults, since for optimal performance algorithms should
* implement these anyway. On the other hand, for ->import and
* ->export the common case and best performance comes from the simple
* memcpy of the shash_desc_ctx, so when those pointers are NULL we
* leave them NULL and provide the memcpy with no indirect call.
*/
if (!alg->finup)
alg->finup = shash_default_finup;
if (!alg->digest)
alg->digest = shash_default_digest;
if (!alg->export && !alg->halg.statesize)
alg->halg.statesize = alg->descsize;
if (!alg->setkey)
alg->setkey = shash_no_setkey;
if (base->cra_flags & CRYPTO_AHASH_ALG_BLOCK_ONLY) {
BUILD_BUG_ON(MAX_ALGAPI_BLOCKSIZE >= 256);
alg->descsize += base->cra_blocksize + 1;
alg->statesize += base->cra_blocksize + 1;
alg->export_core = alg->export;
alg->import_core = alg->import;
} else if (!alg->export_core || !alg->import_core) {
alg->export_core = shash_default_export_core;
alg->import_core = shash_default_import_core;
base->cra_flags |= CRYPTO_AHASH_ALG_NO_EXPORT_CORE;
}
if (alg->descsize > HASH_MAX_DESCSIZE)
return -EINVAL;
if (alg->statesize > HASH_MAX_STATESIZE)
return -EINVAL;
base->cra_reqsize = sizeof(struct shash_desc) + alg->descsize;
return 0;
}
int crypto_register_shash(struct shash_alg *alg)
{
struct crypto_alg *base = &alg->base;
int err;
err = shash_prepare_alg(alg);
if (err)
return err;
return crypto_register_alg(base);
}
EXPORT_SYMBOL_GPL(crypto_register_shash);
void crypto_unregister_shash(struct shash_alg *alg)
{
crypto_unregister_alg(&alg->base);
}
EXPORT_SYMBOL_GPL(crypto_unregister_shash);
int crypto_register_shashes(struct shash_alg *algs, int count)
{
int i, ret;
for (i = 0; i < count; i++) {
ret = crypto_register_shash(&algs[i]);
if (ret) {
crypto_unregister_shashes(algs, i);
return ret;
}
}
return 0;
}
EXPORT_SYMBOL_GPL(crypto_register_shashes);
void crypto_unregister_shashes(struct shash_alg *algs, int count)
{
int i;
for (i = count - 1; i >= 0; --i)
crypto_unregister_shash(&algs[i]);
}
EXPORT_SYMBOL_GPL(crypto_unregister_shashes);
int shash_register_instance(struct crypto_template *tmpl,
struct shash_instance *inst)
{
int err;
if (WARN_ON(!inst->free))
return -EINVAL;
err = shash_prepare_alg(&inst->alg);
if (err)
return err;
return crypto_register_instance(tmpl, shash_crypto_instance(inst));
}
EXPORT_SYMBOL_GPL(shash_register_instance);
void shash_free_singlespawn_instance(struct shash_instance *inst)
{
crypto_drop_spawn(shash_instance_ctx(inst));
kfree(inst);
}
EXPORT_SYMBOL_GPL(shash_free_singlespawn_instance);
MODULE_LICENSE("GPL");
MODULE_DESCRIPTION("Synchronous cryptographic hash type");