diff options
author | 2023-02-21 18:24:12 -0800 | |
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committer | 2023-02-21 18:24:12 -0800 | |
commit | 5b7c4cabbb65f5c469464da6c5f614cbd7f730f2 (patch) | |
tree | cc5c2d0a898769fd59549594fedb3ee6f84e59a0 /crypto/rsa-pkcs1pad.c | |
download | linux-5b7c4cabbb65f5c469464da6c5f614cbd7f730f2.tar.gz linux-5b7c4cabbb65f5c469464da6c5f614cbd7f730f2.zip |
Merge tag 'net-next-6.3' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-nextgrafted
Pull networking updates from Jakub Kicinski:
"Core:
- Add dedicated kmem_cache for typical/small skb->head, avoid having
to access struct page at kfree time, and improve memory use.
- Introduce sysctl to set default RPS configuration for new netdevs.
- Define Netlink protocol specification format which can be used to
describe messages used by each family and auto-generate parsers.
Add tools for generating kernel data structures and uAPI headers.
- Expose all net/core sysctls inside netns.
- Remove 4s sleep in netpoll if carrier is instantly detected on
boot.
- Add configurable limit of MDB entries per port, and port-vlan.
- Continue populating drop reasons throughout the stack.
- Retire a handful of legacy Qdiscs and classifiers.
Protocols:
- Support IPv4 big TCP (TSO frames larger than 64kB).
- Add IP_LOCAL_PORT_RANGE socket option, to control local port range
on socket by socket basis.
- Track and report in procfs number of MPTCP sockets used.
- Support mixing IPv4 and IPv6 flows in the in-kernel MPTCP path
manager.
- IPv6: don't check net.ipv6.route.max_size and rely on garbage
collection to free memory (similarly to IPv4).
- Support Penultimate Segment Pop (PSP) flavor in SRv6 (RFC8986).
- ICMP: add per-rate limit counters.
- Add support for user scanning requests in ieee802154.
- Remove static WEP support.
- Support minimal Wi-Fi 7 Extremely High Throughput (EHT) rate
reporting.
- WiFi 7 EHT channel puncturing support (client & AP).
BPF:
- Add a rbtree data structure following the "next-gen data structure"
precedent set by recently added linked list, that is, by using
kfunc + kptr instead of adding a new BPF map type.
- Expose XDP hints via kfuncs with initial support for RX hash and
timestamp metadata.
- Add BPF_F_NO_TUNNEL_KEY extension to bpf_skb_set_tunnel_key to
better support decap on GRE tunnel devices not operating in collect
metadata.
- Improve x86 JIT's codegen for PROBE_MEM runtime error checks.
- Remove the need for trace_printk_lock for bpf_trace_printk and
bpf_trace_vprintk helpers.
- Extend libbpf's bpf_tracing.h support for tracing arguments of
kprobes/uprobes and syscall as a special case.
- Significantly reduce the search time for module symbols by
livepatch and BPF.
- Enable cpumasks to be used as kptrs, which is useful for tracing
programs tracking which tasks end up running on which CPUs in
different time intervals.
- Add support for BPF trampoline on s390x and riscv64.
- Add capability to export the XDP features supported by the NIC.
- Add __bpf_kfunc tag for marking kernel functions as kfuncs.
- Add cgroup.memory=nobpf kernel parameter option to disable BPF
memory accounting for container environments.
Netfilter:
- Remove the CLUSTERIP target. It has been marked as obsolete for
years, and we still have WARN splats wrt races of the out-of-band
/proc interface installed by this target.
- Add 'destroy' commands to nf_tables. They are identical to the
existing 'delete' commands, but do not return an error if the
referenced object (set, chain, rule...) did not exist.
Driver API:
- Improve cpumask_local_spread() locality to help NICs set the right
IRQ affinity on AMD platforms.
- Separate C22 and C45 MDIO bus transactions more clearly.
- Introduce new DCB table to control DSCP rewrite on egress.
- Support configuration of Physical Layer Collision Avoidance (PLCA)
Reconciliation Sublayer (RS) (802.3cg-2019). Modern version of
shared medium Ethernet.
- Support for MAC Merge layer (IEEE 802.3-2018 clause 99). Allowing
preemption of low priority frames by high priority frames.
- Add support for controlling MACSec offload using netlink SET.
- Rework devlink instance refcounts to allow registration and
de-registration under the instance lock. Split the code into
multiple files, drop some of the unnecessarily granular locks and
factor out common parts of netlink operation handling.
- Add TX frame aggregation parameters (for USB drivers).
- Add a new attr TCA_EXT_WARN_MSG to report TC (offload) warning
messages with notifications for debug.
- Allow offloading of UDP NEW connections via act_ct.
- Add support for per action HW stats in TC.
- Support hardware miss to TC action (continue processing in SW from
a specific point in the action chain).
- Warn if old Wireless Extension user space interface is used with
modern cfg80211/mac80211 drivers. Do not support Wireless
Extensions for Wi-Fi 7 devices at all. Everyone should switch to
using nl80211 interface instead.
- Improve the CAN bit timing configuration. Use extack to return
error messages directly to user space, update the SJW handling,
including the definition of a new default value that will benefit
CAN-FD controllers, by increasing their oscillator tolerance.
New hardware / drivers:
- Ethernet:
- nVidia BlueField-3 support (control traffic driver)
- Ethernet support for imx93 SoCs
- Motorcomm yt8531 gigabit Ethernet PHY
- onsemi NCN26000 10BASE-T1S PHY (with support for PLCA)
- Microchip LAN8841 PHY (incl. cable diagnostics and PTP)
- Amlogic gxl MDIO mux
- WiFi:
- RealTek RTL8188EU (rtl8xxxu)
- Qualcomm Wi-Fi 7 devices (ath12k)
- CAN:
- Renesas R-Car V4H
Drivers:
- Bluetooth:
- Set Per Platform Antenna Gain (PPAG) for Intel controllers.
- Ethernet NICs:
- Intel (1G, igc):
- support TSN / Qbv / packet scheduling features of i226 model
- Intel (100G, ice):
- use GNSS subsystem instead of TTY
- multi-buffer XDP support
- extend support for GPIO pins to E823 devices
- nVidia/Mellanox:
- update the shared buffer configuration on PFC commands
- implement PTP adjphase function for HW offset control
- TC support for Geneve and GRE with VF tunnel offload
- more efficient crypto key management method
- multi-port eswitch support
- Netronome/Corigine:
- add DCB IEEE support
- support IPsec offloading for NFP3800
- Freescale/NXP (enetc):
- support XDP_REDIRECT for XDP non-linear buffers
- improve reconfig, avoid link flap and waiting for idle
- support MAC Merge layer
- Other NICs:
- sfc/ef100: add basic devlink support for ef100
- ionic: rx_push mode operation (writing descriptors via MMIO)
- bnxt: use the auxiliary bus abstraction for RDMA
- r8169: disable ASPM and reset bus in case of tx timeout
- cpsw: support QSGMII mode for J721e CPSW9G
- cpts: support pulse-per-second output
- ngbe: add an mdio bus driver
- usbnet: optimize usbnet_bh() by avoiding unnecessary queuing
- r8152: handle devices with FW with NCM support
- amd-xgbe: support 10Mbps, 2.5GbE speeds and rx-adaptation
- virtio-net: support multi buffer XDP
- virtio/vsock: replace virtio_vsock_pkt with sk_buff
- tsnep: XDP support
- Ethernet high-speed switches:
- nVidia/Mellanox (mlxsw):
- add support for latency TLV (in FW control messages)
- Microchip (sparx5):
- separate explicit and implicit traffic forwarding rules, make
the implicit rules always active
- add support for egress DSCP rewrite
- IS0 VCAP support (Ingress Classification)
- IS2 VCAP filters (protos, L3 addrs, L4 ports, flags, ToS
etc.)
- ES2 VCAP support (Egress Access Control)
- support for Per-Stream Filtering and Policing (802.1Q,
8.6.5.1)
- Ethernet embedded switches:
- Marvell (mv88e6xxx):
- add MAB (port auth) offload support
- enable PTP receive for mv88e6390
- NXP (ocelot):
- support MAC Merge layer
- support for the the vsc7512 internal copper phys
- Microchip:
- lan9303: convert to PHYLINK
- lan966x: support TC flower filter statistics
- lan937x: PTP support for KSZ9563/KSZ8563 and LAN937x
- lan937x: support Credit Based Shaper configuration
- ksz9477: support Energy Efficient Ethernet
- other:
- qca8k: convert to regmap read/write API, use bulk operations
- rswitch: Improve TX timestamp accuracy
- Intel WiFi (iwlwifi):
- EHT (Wi-Fi 7) rate reporting
- STEP equalizer support: transfer some STEP (connection to radio
on platforms with integrated wifi) related parameters from the
BIOS to the firmware.
- Qualcomm 802.11ax WiFi (ath11k):
- IPQ5018 support
- Fine Timing Measurement (FTM) responder role support
- channel 177 support
- MediaTek WiFi (mt76):
- per-PHY LED support
- mt7996: EHT (Wi-Fi 7) support
- Wireless Ethernet Dispatch (WED) reset support
- switch to using page pool allocator
- RealTek WiFi (rtw89):
- support new version of Bluetooth co-existance
- Mobile:
- rmnet: support TX aggregation"
* tag 'net-next-6.3' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next: (1872 commits)
page_pool: add a comment explaining the fragment counter usage
net: ethtool: fix __ethtool_dev_mm_supported() implementation
ethtool: pse-pd: Fix double word in comments
xsk: add linux/vmalloc.h to xsk.c
sefltests: netdevsim: wait for devlink instance after netns removal
selftest: fib_tests: Always cleanup before exit
net/mlx5e: Align IPsec ASO result memory to be as required by hardware
net/mlx5e: TC, Set CT miss to the specific ct action instance
net/mlx5e: Rename CHAIN_TO_REG to MAPPED_OBJ_TO_REG
net/mlx5: Refactor tc miss handling to a single function
net/mlx5: Kconfig: Make tc offload depend on tc skb extension
net/sched: flower: Support hardware miss to tc action
net/sched: flower: Move filter handle initialization earlier
net/sched: cls_api: Support hardware miss to tc action
net/sched: Rename user cookie and act cookie
sfc: fix builds without CONFIG_RTC_LIB
sfc: clean up some inconsistent indentings
net/mlx4_en: Introduce flexible array to silence overflow warning
net: lan966x: Fix possible deadlock inside PTP
net/ulp: Remove redundant ->clone() test in inet_clone_ulp().
...
Diffstat (limited to 'crypto/rsa-pkcs1pad.c')
-rw-r--r-- | crypto/rsa-pkcs1pad.c | 689 |
1 files changed, 689 insertions, 0 deletions
diff --git a/crypto/rsa-pkcs1pad.c b/crypto/rsa-pkcs1pad.c new file mode 100644 index 000000000..d2e5e104f --- /dev/null +++ b/crypto/rsa-pkcs1pad.c @@ -0,0 +1,689 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * RSA padding templates. + * + * Copyright (c) 2015 Intel Corporation + */ + +#include <crypto/algapi.h> +#include <crypto/akcipher.h> +#include <crypto/internal/akcipher.h> +#include <crypto/internal/rsa.h> +#include <linux/err.h> +#include <linux/init.h> +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/random.h> +#include <linux/scatterlist.h> + +/* + * Hash algorithm OIDs plus ASN.1 DER wrappings [RFC4880 sec 5.2.2]. + */ +static const u8 rsa_digest_info_md5[] = { + 0x30, 0x20, 0x30, 0x0c, 0x06, 0x08, + 0x2a, 0x86, 0x48, 0x86, 0xf7, 0x0d, 0x02, 0x05, /* OID */ + 0x05, 0x00, 0x04, 0x10 +}; + +static const u8 rsa_digest_info_sha1[] = { + 0x30, 0x21, 0x30, 0x09, 0x06, 0x05, + 0x2b, 0x0e, 0x03, 0x02, 0x1a, + 0x05, 0x00, 0x04, 0x14 +}; + +static const u8 rsa_digest_info_rmd160[] = { + 0x30, 0x21, 0x30, 0x09, 0x06, 0x05, + 0x2b, 0x24, 0x03, 0x02, 0x01, + 0x05, 0x00, 0x04, 0x14 +}; + +static const u8 rsa_digest_info_sha224[] = { + 0x30, 0x2d, 0x30, 0x0d, 0x06, 0x09, + 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x04, + 0x05, 0x00, 0x04, 0x1c +}; + +static const u8 rsa_digest_info_sha256[] = { + 0x30, 0x31, 0x30, 0x0d, 0x06, 0x09, + 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x01, + 0x05, 0x00, 0x04, 0x20 +}; + +static const u8 rsa_digest_info_sha384[] = { + 0x30, 0x41, 0x30, 0x0d, 0x06, 0x09, + 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x02, + 0x05, 0x00, 0x04, 0x30 +}; + +static const u8 rsa_digest_info_sha512[] = { + 0x30, 0x51, 0x30, 0x0d, 0x06, 0x09, + 0x60, 0x86, 0x48, 0x01, 0x65, 0x03, 0x04, 0x02, 0x03, + 0x05, 0x00, 0x04, 0x40 +}; + +static const struct rsa_asn1_template { + const char *name; + const u8 *data; + size_t size; +} rsa_asn1_templates[] = { +#define _(X) { #X, rsa_digest_info_##X, sizeof(rsa_digest_info_##X) } + _(md5), + _(sha1), + _(rmd160), + _(sha256), + _(sha384), + _(sha512), + _(sha224), + { NULL } +#undef _ +}; + +static const struct rsa_asn1_template *rsa_lookup_asn1(const char *name) +{ + const struct rsa_asn1_template *p; + + for (p = rsa_asn1_templates; p->name; p++) + if (strcmp(name, p->name) == 0) + return p; + return NULL; +} + +struct pkcs1pad_ctx { + struct crypto_akcipher *child; + unsigned int key_size; +}; + +struct pkcs1pad_inst_ctx { + struct crypto_akcipher_spawn spawn; + const struct rsa_asn1_template *digest_info; +}; + +struct pkcs1pad_request { + struct scatterlist in_sg[2], out_sg[1]; + uint8_t *in_buf, *out_buf; + struct akcipher_request child_req; +}; + +static int pkcs1pad_set_pub_key(struct crypto_akcipher *tfm, const void *key, + unsigned int keylen) +{ + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + int err; + + ctx->key_size = 0; + + err = crypto_akcipher_set_pub_key(ctx->child, key, keylen); + if (err) + return err; + + /* Find out new modulus size from rsa implementation */ + err = crypto_akcipher_maxsize(ctx->child); + if (err > PAGE_SIZE) + return -ENOTSUPP; + + ctx->key_size = err; + return 0; +} + +static int pkcs1pad_set_priv_key(struct crypto_akcipher *tfm, const void *key, + unsigned int keylen) +{ + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + int err; + + ctx->key_size = 0; + + err = crypto_akcipher_set_priv_key(ctx->child, key, keylen); + if (err) + return err; + + /* Find out new modulus size from rsa implementation */ + err = crypto_akcipher_maxsize(ctx->child); + if (err > PAGE_SIZE) + return -ENOTSUPP; + + ctx->key_size = err; + return 0; +} + +static unsigned int pkcs1pad_get_max_size(struct crypto_akcipher *tfm) +{ + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + + /* + * The maximum destination buffer size for the encrypt/sign operations + * will be the same as for RSA, even though it's smaller for + * decrypt/verify. + */ + + return ctx->key_size; +} + +static void pkcs1pad_sg_set_buf(struct scatterlist *sg, void *buf, size_t len, + struct scatterlist *next) +{ + int nsegs = next ? 2 : 1; + + sg_init_table(sg, nsegs); + sg_set_buf(sg, buf, len); + + if (next) + sg_chain(sg, nsegs, next); +} + +static int pkcs1pad_encrypt_sign_complete(struct akcipher_request *req, int err) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + unsigned int pad_len; + unsigned int len; + u8 *out_buf; + + if (err) + goto out; + + len = req_ctx->child_req.dst_len; + pad_len = ctx->key_size - len; + + /* Four billion to one */ + if (likely(!pad_len)) + goto out; + + out_buf = kzalloc(ctx->key_size, GFP_ATOMIC); + err = -ENOMEM; + if (!out_buf) + goto out; + + sg_copy_to_buffer(req->dst, sg_nents_for_len(req->dst, len), + out_buf + pad_len, len); + sg_copy_from_buffer(req->dst, + sg_nents_for_len(req->dst, ctx->key_size), + out_buf, ctx->key_size); + kfree_sensitive(out_buf); + +out: + req->dst_len = ctx->key_size; + + kfree(req_ctx->in_buf); + + return err; +} + +static void pkcs1pad_encrypt_sign_complete_cb(void *data, int err) +{ + struct akcipher_request *req = data; + + if (err == -EINPROGRESS) + goto out; + + err = pkcs1pad_encrypt_sign_complete(req, err); + +out: + akcipher_request_complete(req, err); +} + +static int pkcs1pad_encrypt(struct akcipher_request *req) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + int err; + unsigned int i, ps_end; + + if (!ctx->key_size) + return -EINVAL; + + if (req->src_len > ctx->key_size - 11) + return -EOVERFLOW; + + if (req->dst_len < ctx->key_size) { + req->dst_len = ctx->key_size; + return -EOVERFLOW; + } + + req_ctx->in_buf = kmalloc(ctx->key_size - 1 - req->src_len, + GFP_KERNEL); + if (!req_ctx->in_buf) + return -ENOMEM; + + ps_end = ctx->key_size - req->src_len - 2; + req_ctx->in_buf[0] = 0x02; + for (i = 1; i < ps_end; i++) + req_ctx->in_buf[i] = get_random_u32_inclusive(1, 255); + req_ctx->in_buf[ps_end] = 0x00; + + pkcs1pad_sg_set_buf(req_ctx->in_sg, req_ctx->in_buf, + ctx->key_size - 1 - req->src_len, req->src); + + akcipher_request_set_tfm(&req_ctx->child_req, ctx->child); + akcipher_request_set_callback(&req_ctx->child_req, req->base.flags, + pkcs1pad_encrypt_sign_complete_cb, req); + + /* Reuse output buffer */ + akcipher_request_set_crypt(&req_ctx->child_req, req_ctx->in_sg, + req->dst, ctx->key_size - 1, req->dst_len); + + err = crypto_akcipher_encrypt(&req_ctx->child_req); + if (err != -EINPROGRESS && err != -EBUSY) + return pkcs1pad_encrypt_sign_complete(req, err); + + return err; +} + +static int pkcs1pad_decrypt_complete(struct akcipher_request *req, int err) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + unsigned int dst_len; + unsigned int pos; + u8 *out_buf; + + if (err) + goto done; + + err = -EINVAL; + dst_len = req_ctx->child_req.dst_len; + if (dst_len < ctx->key_size - 1) + goto done; + + out_buf = req_ctx->out_buf; + if (dst_len == ctx->key_size) { + if (out_buf[0] != 0x00) + /* Decrypted value had no leading 0 byte */ + goto done; + + dst_len--; + out_buf++; + } + + if (out_buf[0] != 0x02) + goto done; + + for (pos = 1; pos < dst_len; pos++) + if (out_buf[pos] == 0x00) + break; + if (pos < 9 || pos == dst_len) + goto done; + pos++; + + err = 0; + + if (req->dst_len < dst_len - pos) + err = -EOVERFLOW; + req->dst_len = dst_len - pos; + + if (!err) + sg_copy_from_buffer(req->dst, + sg_nents_for_len(req->dst, req->dst_len), + out_buf + pos, req->dst_len); + +done: + kfree_sensitive(req_ctx->out_buf); + + return err; +} + +static void pkcs1pad_decrypt_complete_cb(void *data, int err) +{ + struct akcipher_request *req = data; + + if (err == -EINPROGRESS) + goto out; + + err = pkcs1pad_decrypt_complete(req, err); + +out: + akcipher_request_complete(req, err); +} + +static int pkcs1pad_decrypt(struct akcipher_request *req) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + int err; + + if (!ctx->key_size || req->src_len != ctx->key_size) + return -EINVAL; + + req_ctx->out_buf = kmalloc(ctx->key_size, GFP_KERNEL); + if (!req_ctx->out_buf) + return -ENOMEM; + + pkcs1pad_sg_set_buf(req_ctx->out_sg, req_ctx->out_buf, + ctx->key_size, NULL); + + akcipher_request_set_tfm(&req_ctx->child_req, ctx->child); + akcipher_request_set_callback(&req_ctx->child_req, req->base.flags, + pkcs1pad_decrypt_complete_cb, req); + + /* Reuse input buffer, output to a new buffer */ + akcipher_request_set_crypt(&req_ctx->child_req, req->src, + req_ctx->out_sg, req->src_len, + ctx->key_size); + + err = crypto_akcipher_decrypt(&req_ctx->child_req); + if (err != -EINPROGRESS && err != -EBUSY) + return pkcs1pad_decrypt_complete(req, err); + + return err; +} + +static int pkcs1pad_sign(struct akcipher_request *req) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + struct akcipher_instance *inst = akcipher_alg_instance(tfm); + struct pkcs1pad_inst_ctx *ictx = akcipher_instance_ctx(inst); + const struct rsa_asn1_template *digest_info = ictx->digest_info; + int err; + unsigned int ps_end, digest_info_size = 0; + + if (!ctx->key_size) + return -EINVAL; + + if (digest_info) + digest_info_size = digest_info->size; + + if (req->src_len + digest_info_size > ctx->key_size - 11) + return -EOVERFLOW; + + if (req->dst_len < ctx->key_size) { + req->dst_len = ctx->key_size; + return -EOVERFLOW; + } + + req_ctx->in_buf = kmalloc(ctx->key_size - 1 - req->src_len, + GFP_KERNEL); + if (!req_ctx->in_buf) + return -ENOMEM; + + ps_end = ctx->key_size - digest_info_size - req->src_len - 2; + req_ctx->in_buf[0] = 0x01; + memset(req_ctx->in_buf + 1, 0xff, ps_end - 1); + req_ctx->in_buf[ps_end] = 0x00; + + if (digest_info) + memcpy(req_ctx->in_buf + ps_end + 1, digest_info->data, + digest_info->size); + + pkcs1pad_sg_set_buf(req_ctx->in_sg, req_ctx->in_buf, + ctx->key_size - 1 - req->src_len, req->src); + + akcipher_request_set_tfm(&req_ctx->child_req, ctx->child); + akcipher_request_set_callback(&req_ctx->child_req, req->base.flags, + pkcs1pad_encrypt_sign_complete_cb, req); + + /* Reuse output buffer */ + akcipher_request_set_crypt(&req_ctx->child_req, req_ctx->in_sg, + req->dst, ctx->key_size - 1, req->dst_len); + + err = crypto_akcipher_decrypt(&req_ctx->child_req); + if (err != -EINPROGRESS && err != -EBUSY) + return pkcs1pad_encrypt_sign_complete(req, err); + + return err; +} + +static int pkcs1pad_verify_complete(struct akcipher_request *req, int err) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + struct akcipher_instance *inst = akcipher_alg_instance(tfm); + struct pkcs1pad_inst_ctx *ictx = akcipher_instance_ctx(inst); + const struct rsa_asn1_template *digest_info = ictx->digest_info; + const unsigned int sig_size = req->src_len; + const unsigned int digest_size = req->dst_len; + unsigned int dst_len; + unsigned int pos; + u8 *out_buf; + + if (err) + goto done; + + err = -EINVAL; + dst_len = req_ctx->child_req.dst_len; + if (dst_len < ctx->key_size - 1) + goto done; + + out_buf = req_ctx->out_buf; + if (dst_len == ctx->key_size) { + if (out_buf[0] != 0x00) + /* Decrypted value had no leading 0 byte */ + goto done; + + dst_len--; + out_buf++; + } + + err = -EBADMSG; + if (out_buf[0] != 0x01) + goto done; + + for (pos = 1; pos < dst_len; pos++) + if (out_buf[pos] != 0xff) + break; + + if (pos < 9 || pos == dst_len || out_buf[pos] != 0x00) + goto done; + pos++; + + if (digest_info) { + if (digest_info->size > dst_len - pos) + goto done; + if (crypto_memneq(out_buf + pos, digest_info->data, + digest_info->size)) + goto done; + + pos += digest_info->size; + } + + err = 0; + + if (digest_size != dst_len - pos) { + err = -EKEYREJECTED; + req->dst_len = dst_len - pos; + goto done; + } + /* Extract appended digest. */ + sg_pcopy_to_buffer(req->src, + sg_nents_for_len(req->src, sig_size + digest_size), + req_ctx->out_buf + ctx->key_size, + digest_size, sig_size); + /* Do the actual verification step. */ + if (memcmp(req_ctx->out_buf + ctx->key_size, out_buf + pos, + digest_size) != 0) + err = -EKEYREJECTED; +done: + kfree_sensitive(req_ctx->out_buf); + + return err; +} + +static void pkcs1pad_verify_complete_cb(void *data, int err) +{ + struct akcipher_request *req = data; + + if (err == -EINPROGRESS) + goto out; + + err = pkcs1pad_verify_complete(req, err); + +out: + akcipher_request_complete(req, err); +} + +/* + * The verify operation is here for completeness similar to the verification + * defined in RFC2313 section 10.2 except that block type 0 is not accepted, + * as in RFC2437. RFC2437 section 9.2 doesn't define any operation to + * retrieve the DigestInfo from a signature, instead the user is expected + * to call the sign operation to generate the expected signature and compare + * signatures instead of the message-digests. + */ +static int pkcs1pad_verify(struct akcipher_request *req) +{ + struct crypto_akcipher *tfm = crypto_akcipher_reqtfm(req); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct pkcs1pad_request *req_ctx = akcipher_request_ctx(req); + const unsigned int sig_size = req->src_len; + const unsigned int digest_size = req->dst_len; + int err; + + if (WARN_ON(req->dst) || WARN_ON(!digest_size) || + !ctx->key_size || sig_size != ctx->key_size) + return -EINVAL; + + req_ctx->out_buf = kmalloc(ctx->key_size + digest_size, GFP_KERNEL); + if (!req_ctx->out_buf) + return -ENOMEM; + + pkcs1pad_sg_set_buf(req_ctx->out_sg, req_ctx->out_buf, + ctx->key_size, NULL); + + akcipher_request_set_tfm(&req_ctx->child_req, ctx->child); + akcipher_request_set_callback(&req_ctx->child_req, req->base.flags, + pkcs1pad_verify_complete_cb, req); + + /* Reuse input buffer, output to a new buffer */ + akcipher_request_set_crypt(&req_ctx->child_req, req->src, + req_ctx->out_sg, sig_size, ctx->key_size); + + err = crypto_akcipher_encrypt(&req_ctx->child_req); + if (err != -EINPROGRESS && err != -EBUSY) + return pkcs1pad_verify_complete(req, err); + + return err; +} + +static int pkcs1pad_init_tfm(struct crypto_akcipher *tfm) +{ + struct akcipher_instance *inst = akcipher_alg_instance(tfm); + struct pkcs1pad_inst_ctx *ictx = akcipher_instance_ctx(inst); + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + struct crypto_akcipher *child_tfm; + + child_tfm = crypto_spawn_akcipher(&ictx->spawn); + if (IS_ERR(child_tfm)) + return PTR_ERR(child_tfm); + + ctx->child = child_tfm; + + akcipher_set_reqsize(tfm, sizeof(struct pkcs1pad_request) + + crypto_akcipher_reqsize(child_tfm)); + + return 0; +} + +static void pkcs1pad_exit_tfm(struct crypto_akcipher *tfm) +{ + struct pkcs1pad_ctx *ctx = akcipher_tfm_ctx(tfm); + + crypto_free_akcipher(ctx->child); +} + +static void pkcs1pad_free(struct akcipher_instance *inst) +{ + struct pkcs1pad_inst_ctx *ctx = akcipher_instance_ctx(inst); + struct crypto_akcipher_spawn *spawn = &ctx->spawn; + + crypto_drop_akcipher(spawn); + kfree(inst); +} + +static int pkcs1pad_create(struct crypto_template *tmpl, struct rtattr **tb) +{ + u32 mask; + struct akcipher_instance *inst; + struct pkcs1pad_inst_ctx *ctx; + struct akcipher_alg *rsa_alg; + const char *hash_name; + int err; + + err = crypto_check_attr_type(tb, CRYPTO_ALG_TYPE_AKCIPHER, &mask); + if (err) + return err; + + inst = kzalloc(sizeof(*inst) + sizeof(*ctx), GFP_KERNEL); + if (!inst) + return -ENOMEM; + + ctx = akcipher_instance_ctx(inst); + + err = crypto_grab_akcipher(&ctx->spawn, akcipher_crypto_instance(inst), + crypto_attr_alg_name(tb[1]), 0, mask); + if (err) + goto err_free_inst; + + rsa_alg = crypto_spawn_akcipher_alg(&ctx->spawn); + + if (strcmp(rsa_alg->base.cra_name, "rsa") != 0) { + err = -EINVAL; + goto err_free_inst; + } + + err = -ENAMETOOLONG; + hash_name = crypto_attr_alg_name(tb[2]); + if (IS_ERR(hash_name)) { + if (snprintf(inst->alg.base.cra_name, + CRYPTO_MAX_ALG_NAME, "pkcs1pad(%s)", + rsa_alg->base.cra_name) >= CRYPTO_MAX_ALG_NAME) + goto err_free_inst; + + if (snprintf(inst->alg.base.cra_driver_name, + CRYPTO_MAX_ALG_NAME, "pkcs1pad(%s)", + rsa_alg->base.cra_driver_name) >= + CRYPTO_MAX_ALG_NAME) + goto err_free_inst; + } else { + ctx->digest_info = rsa_lookup_asn1(hash_name); + if (!ctx->digest_info) { + err = -EINVAL; + goto err_free_inst; + } + + if (snprintf(inst->alg.base.cra_name, CRYPTO_MAX_ALG_NAME, + "pkcs1pad(%s,%s)", rsa_alg->base.cra_name, + hash_name) >= CRYPTO_MAX_ALG_NAME) + goto err_free_inst; + + if (snprintf(inst->alg.base.cra_driver_name, + CRYPTO_MAX_ALG_NAME, "pkcs1pad(%s,%s)", + rsa_alg->base.cra_driver_name, + hash_name) >= CRYPTO_MAX_ALG_NAME) + goto err_free_inst; + } + + inst->alg.base.cra_priority = rsa_alg->base.cra_priority; + inst->alg.base.cra_ctxsize = sizeof(struct pkcs1pad_ctx); + + inst->alg.init = pkcs1pad_init_tfm; + inst->alg.exit = pkcs1pad_exit_tfm; + + inst->alg.encrypt = pkcs1pad_encrypt; + inst->alg.decrypt = pkcs1pad_decrypt; + inst->alg.sign = pkcs1pad_sign; + inst->alg.verify = pkcs1pad_verify; + inst->alg.set_pub_key = pkcs1pad_set_pub_key; + inst->alg.set_priv_key = pkcs1pad_set_priv_key; + inst->alg.max_size = pkcs1pad_get_max_size; + + inst->free = pkcs1pad_free; + + err = akcipher_register_instance(tmpl, inst); + if (err) { +err_free_inst: + pkcs1pad_free(inst); + } + return err; +} + +struct crypto_template rsa_pkcs1pad_tmpl = { + .name = "pkcs1pad", + .create = pkcs1pad_create, + .module = THIS_MODULE, +}; |