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5a8a076506
The current codebase makes use of the zero-length array language
extension to the C90 standard, but the preferred mechanism to declare
variable-length types such as these ones is a flexible array member[1][2],
introduced in C99:
struct foo {
int stuff;
struct boo array[];
};
By making use of the mechanism above, we will get a compiler warning
in case the flexible array does not occur last in the structure, which
will help us prevent some kind of undefined behavior bugs from being
inadvertently introduced[3] to the codebase from now on.
Also, notice that, dynamic memory allocations won't be affected by
this change:
"Flexible array members have incomplete type, and so the sizeof operator
may not be applied. As a quirk of the original implementation of
zero-length arrays, sizeof evaluates to zero."[1]
This issue was found with the help of Coccinelle.
[1] https://gcc.gnu.org/onlinedocs/gcc/Zero-Length.html
[2] https://github.com/KSPP/linux/issues/21
[3] commit 7649773293
("cxgb3/l2t: Fix undefined behaviour")
Signed-off-by: Gustavo A. R. Silva <gustavo@embeddedor.com>
Reviewed-by: Horia Geantă <horia.geanta@nxp.com>
Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
196 lines
5.0 KiB
C
196 lines
5.0 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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#ifndef __NX_H__
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#define __NX_H__
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#include <crypto/ctr.h>
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#define NX_NAME "nx-crypto"
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#define NX_STRING "IBM Power7+ Nest Accelerator Crypto Driver"
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#define NX_VERSION "1.0"
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/* a scatterlist in the format PHYP is expecting */
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struct nx_sg {
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u64 addr;
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u32 rsvd;
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u32 len;
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} __attribute((packed));
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#define NX_PAGE_SIZE (4096)
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#define NX_MAX_SG_ENTRIES (NX_PAGE_SIZE/(sizeof(struct nx_sg)))
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enum nx_status {
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NX_DISABLED,
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NX_WAITING,
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NX_OKAY
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};
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/* msc_triplet and max_sync_cop are used only to assist in parsing the
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* openFirmware property */
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struct msc_triplet {
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u32 keybitlen;
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u32 databytelen;
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u32 sglen;
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} __packed;
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struct max_sync_cop {
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u32 fc;
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u32 mode;
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u32 triplets;
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struct msc_triplet trip[];
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} __packed;
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struct alg_props {
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u32 databytelen;
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u32 sglen;
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};
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#define NX_OF_FLAG_MAXSGLEN_SET (1)
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#define NX_OF_FLAG_STATUS_SET (2)
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#define NX_OF_FLAG_MAXSYNCCOP_SET (4)
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#define NX_OF_FLAG_MASK_READY (NX_OF_FLAG_MAXSGLEN_SET | \
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NX_OF_FLAG_STATUS_SET | \
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NX_OF_FLAG_MAXSYNCCOP_SET)
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struct nx_of {
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u32 flags;
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u32 max_sg_len;
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enum nx_status status;
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struct alg_props ap[NX_MAX_FC][NX_MAX_MODE][3];
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};
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struct nx_stats {
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atomic_t aes_ops;
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atomic64_t aes_bytes;
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atomic_t sha256_ops;
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atomic64_t sha256_bytes;
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atomic_t sha512_ops;
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atomic64_t sha512_bytes;
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atomic_t sync_ops;
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atomic_t errors;
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atomic_t last_error;
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atomic_t last_error_pid;
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};
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struct nx_crypto_driver {
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struct nx_stats stats;
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struct nx_of of;
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struct vio_dev *viodev;
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struct vio_driver viodriver;
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struct dentry *dfs_root;
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};
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#define NX_GCM4106_NONCE_LEN (4)
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#define NX_GCM_CTR_OFFSET (12)
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struct nx_gcm_rctx {
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u8 iv[16];
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};
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struct nx_gcm_priv {
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u8 iauth_tag[16];
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u8 nonce[NX_GCM4106_NONCE_LEN];
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};
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#define NX_CCM_AES_KEY_LEN (16)
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#define NX_CCM4309_AES_KEY_LEN (19)
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#define NX_CCM4309_NONCE_LEN (3)
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struct nx_ccm_rctx {
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u8 iv[16];
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};
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struct nx_ccm_priv {
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u8 b0[16];
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u8 iauth_tag[16];
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u8 oauth_tag[16];
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u8 nonce[NX_CCM4309_NONCE_LEN];
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};
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struct nx_xcbc_priv {
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u8 key[16];
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};
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struct nx_ctr_priv {
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u8 nonce[CTR_RFC3686_NONCE_SIZE];
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};
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struct nx_crypto_ctx {
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spinlock_t lock; /* synchronize access to the context */
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void *kmem; /* unaligned, kmalloc'd buffer */
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size_t kmem_len; /* length of kmem */
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struct nx_csbcpb *csbcpb; /* aligned page given to phyp @ hcall time */
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struct vio_pfo_op op; /* operation struct with hcall parameters */
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struct nx_csbcpb *csbcpb_aead; /* secondary csbcpb used by AEAD algs */
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struct vio_pfo_op op_aead;/* operation struct for csbcpb_aead */
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struct nx_sg *in_sg; /* aligned pointer into kmem to an sg list */
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struct nx_sg *out_sg; /* aligned pointer into kmem to an sg list */
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struct alg_props *ap; /* pointer into props based on our key size */
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struct alg_props props[3];/* openFirmware properties for requests */
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struct nx_stats *stats; /* pointer into an nx_crypto_driver for stats
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reporting */
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union {
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struct nx_gcm_priv gcm;
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struct nx_ccm_priv ccm;
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struct nx_xcbc_priv xcbc;
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struct nx_ctr_priv ctr;
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} priv;
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};
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struct crypto_aead;
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/* prototypes */
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int nx_crypto_ctx_aes_ccm_init(struct crypto_aead *tfm);
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int nx_crypto_ctx_aes_gcm_init(struct crypto_aead *tfm);
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int nx_crypto_ctx_aes_xcbc_init(struct crypto_tfm *tfm);
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int nx_crypto_ctx_aes_ctr_init(struct crypto_skcipher *tfm);
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int nx_crypto_ctx_aes_cbc_init(struct crypto_skcipher *tfm);
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int nx_crypto_ctx_aes_ecb_init(struct crypto_skcipher *tfm);
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int nx_crypto_ctx_sha_init(struct crypto_tfm *tfm);
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void nx_crypto_ctx_exit(struct crypto_tfm *tfm);
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void nx_crypto_ctx_skcipher_exit(struct crypto_skcipher *tfm);
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void nx_crypto_ctx_aead_exit(struct crypto_aead *tfm);
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void nx_ctx_init(struct nx_crypto_ctx *nx_ctx, unsigned int function);
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int nx_hcall_sync(struct nx_crypto_ctx *ctx, struct vio_pfo_op *op,
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u32 may_sleep);
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struct nx_sg *nx_build_sg_list(struct nx_sg *, u8 *, unsigned int *, u32);
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int nx_build_sg_lists(struct nx_crypto_ctx *nx_ctx, const u8 *iv,
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struct scatterlist *dst, struct scatterlist *src,
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unsigned int *nbytes, unsigned int offset, u8 *oiv);
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struct nx_sg *nx_walk_and_build(struct nx_sg *, unsigned int,
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struct scatterlist *, unsigned int,
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unsigned int *);
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#ifdef CONFIG_DEBUG_FS
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#define NX_DEBUGFS_INIT(drv) nx_debugfs_init(drv)
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#define NX_DEBUGFS_FINI(drv) nx_debugfs_fini(drv)
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void nx_debugfs_init(struct nx_crypto_driver *);
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void nx_debugfs_fini(struct nx_crypto_driver *);
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#else
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#define NX_DEBUGFS_INIT(drv) (0)
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#define NX_DEBUGFS_FINI(drv) (0)
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#endif
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#define NX_PAGE_NUM(x) ((u64)(x) & 0xfffffffffffff000ULL)
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extern struct skcipher_alg nx_cbc_aes_alg;
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extern struct skcipher_alg nx_ecb_aes_alg;
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extern struct aead_alg nx_gcm_aes_alg;
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extern struct aead_alg nx_gcm4106_aes_alg;
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extern struct skcipher_alg nx_ctr3686_aes_alg;
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extern struct aead_alg nx_ccm_aes_alg;
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extern struct aead_alg nx_ccm4309_aes_alg;
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extern struct shash_alg nx_shash_aes_xcbc_alg;
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extern struct shash_alg nx_shash_sha512_alg;
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extern struct shash_alg nx_shash_sha256_alg;
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extern struct nx_crypto_driver nx_driver;
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#define SCATTERWALK_TO_SG 1
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#define SCATTERWALK_FROM_SG 0
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#endif
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