crypto: nx - Moving NX-AES-GCM to be processed logic
The previous limits were estimated locally in a single step basead on bound values, however it was not correct since when given certain scatterlist the function nx_build_sg_lists was consuming more sg entries than allocated causing a memory corruption and crashes. This patch removes the old logic and replace it into nx_sg_build_lists in order to build a correct nx_sg list using the correct sg_max limit and bounds. Signed-off-by: Leonidas S. Barbosa <leosilva@linux.vnet.ibm.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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Родитель
c7b675de39
Коммит
e13a79acf9
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@ -131,7 +131,7 @@ static int nx_gca(struct nx_crypto_ctx *nx_ctx,
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struct nx_sg *nx_sg = nx_ctx->in_sg;
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unsigned int nbytes = req->assoclen;
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unsigned int processed = 0, to_process;
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u32 max_sg_len;
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unsigned int max_sg_len;
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if (nbytes <= AES_BLOCK_SIZE) {
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scatterwalk_start(&walk, req->assoc);
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@ -143,8 +143,10 @@ static int nx_gca(struct nx_crypto_ctx *nx_ctx,
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NX_CPB_FDM(csbcpb_aead) &= ~NX_FDM_CONTINUATION;
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/* page_limit: number of sg entries that fit on one page */
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max_sg_len = min_t(u32, nx_driver.of.max_sg_len/sizeof(struct nx_sg),
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max_sg_len = min_t(u64, nx_driver.of.max_sg_len/sizeof(struct nx_sg),
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nx_ctx->ap->sglen);
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max_sg_len = min_t(u64, max_sg_len,
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nx_ctx->ap->databytelen/NX_PAGE_SIZE);
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do {
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/*
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@ -156,13 +158,14 @@ static int nx_gca(struct nx_crypto_ctx *nx_ctx,
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to_process = min_t(u64, to_process,
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NX_PAGE_SIZE * (max_sg_len - 1));
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nx_sg = nx_walk_and_build(nx_ctx->in_sg, max_sg_len,
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req->assoc, processed, &to_process);
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if ((to_process + processed) < nbytes)
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NX_CPB_FDM(csbcpb_aead) |= NX_FDM_INTERMEDIATE;
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else
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NX_CPB_FDM(csbcpb_aead) &= ~NX_FDM_INTERMEDIATE;
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nx_sg = nx_walk_and_build(nx_ctx->in_sg, nx_ctx->ap->sglen,
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req->assoc, processed, to_process);
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nx_ctx->op_aead.inlen = (nx_ctx->in_sg - nx_sg)
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* sizeof(struct nx_sg);
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@ -195,7 +198,7 @@ static int gmac(struct aead_request *req, struct blkcipher_desc *desc)
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struct nx_sg *nx_sg;
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unsigned int nbytes = req->assoclen;
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unsigned int processed = 0, to_process;
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u32 max_sg_len;
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unsigned int max_sg_len;
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/* Set GMAC mode */
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csbcpb->cpb.hdr.mode = NX_MODE_AES_GMAC;
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@ -203,8 +206,10 @@ static int gmac(struct aead_request *req, struct blkcipher_desc *desc)
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NX_CPB_FDM(csbcpb) &= ~NX_FDM_CONTINUATION;
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/* page_limit: number of sg entries that fit on one page */
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max_sg_len = min_t(u32, nx_driver.of.max_sg_len/sizeof(struct nx_sg),
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max_sg_len = min_t(u64, nx_driver.of.max_sg_len/sizeof(struct nx_sg),
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nx_ctx->ap->sglen);
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max_sg_len = min_t(u64, max_sg_len,
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nx_ctx->ap->databytelen/NX_PAGE_SIZE);
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/* Copy IV */
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memcpy(csbcpb->cpb.aes_gcm.iv_or_cnt, desc->info, AES_BLOCK_SIZE);
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@ -219,13 +224,14 @@ static int gmac(struct aead_request *req, struct blkcipher_desc *desc)
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to_process = min_t(u64, to_process,
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NX_PAGE_SIZE * (max_sg_len - 1));
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nx_sg = nx_walk_and_build(nx_ctx->in_sg, max_sg_len,
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req->assoc, processed, &to_process);
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if ((to_process + processed) < nbytes)
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NX_CPB_FDM(csbcpb) |= NX_FDM_INTERMEDIATE;
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else
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NX_CPB_FDM(csbcpb) &= ~NX_FDM_INTERMEDIATE;
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nx_sg = nx_walk_and_build(nx_ctx->in_sg, nx_ctx->ap->sglen,
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req->assoc, processed, to_process);
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nx_ctx->op.inlen = (nx_ctx->in_sg - nx_sg)
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* sizeof(struct nx_sg);
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@ -264,6 +270,7 @@ static int gcm_empty(struct aead_request *req, struct blkcipher_desc *desc,
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struct nx_csbcpb *csbcpb = nx_ctx->csbcpb;
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char out[AES_BLOCK_SIZE];
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struct nx_sg *in_sg, *out_sg;
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int len;
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/* For scenarios where the input message is zero length, AES CTR mode
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* may be used. Set the source data to be a single block (16B) of all
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@ -279,11 +286,22 @@ static int gcm_empty(struct aead_request *req, struct blkcipher_desc *desc,
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else
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NX_CPB_FDM(csbcpb) &= ~NX_FDM_ENDE_ENCRYPT;
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len = AES_BLOCK_SIZE;
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/* Encrypt the counter/IV */
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in_sg = nx_build_sg_list(nx_ctx->in_sg, (u8 *) desc->info,
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AES_BLOCK_SIZE, nx_ctx->ap->sglen);
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out_sg = nx_build_sg_list(nx_ctx->out_sg, (u8 *) out, sizeof(out),
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&len, nx_ctx->ap->sglen);
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if (len != AES_BLOCK_SIZE)
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return -EINVAL;
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len = sizeof(out);
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out_sg = nx_build_sg_list(nx_ctx->out_sg, (u8 *) out, &len,
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nx_ctx->ap->sglen);
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if (len != sizeof(out))
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return -EINVAL;
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nx_ctx->op.inlen = (nx_ctx->in_sg - in_sg) * sizeof(struct nx_sg);
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nx_ctx->op.outlen = (nx_ctx->out_sg - out_sg) * sizeof(struct nx_sg);
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@ -317,7 +335,6 @@ static int gcm_aes_nx_crypt(struct aead_request *req, int enc)
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unsigned int nbytes = req->cryptlen;
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unsigned int processed = 0, to_process;
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unsigned long irq_flags;
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u32 max_sg_len;
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int rc = -EINVAL;
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spin_lock_irqsave(&nx_ctx->lock, irq_flags);
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@ -354,32 +371,23 @@ static int gcm_aes_nx_crypt(struct aead_request *req, int enc)
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nbytes -= crypto_aead_authsize(crypto_aead_reqtfm(req));
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}
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/* page_limit: number of sg entries that fit on one page */
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max_sg_len = min_t(u32, nx_driver.of.max_sg_len/sizeof(struct nx_sg),
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nx_ctx->ap->sglen);
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do {
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/*
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* to_process: the data chunk to process in this update.
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* This value is bound by sg list limits.
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*/
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to_process = min_t(u64, nbytes - processed,
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nx_ctx->ap->databytelen);
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to_process = min_t(u64, to_process,
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NX_PAGE_SIZE * (max_sg_len - 1));
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to_process = nbytes - processed;
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csbcpb->cpb.aes_gcm.bit_length_data = nbytes * 8;
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desc.tfm = (struct crypto_blkcipher *) req->base.tfm;
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rc = nx_build_sg_lists(nx_ctx, &desc, req->dst,
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req->src, &to_process, processed,
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csbcpb->cpb.aes_gcm.iv_or_cnt);
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if (rc)
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goto out;
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if ((to_process + processed) < nbytes)
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NX_CPB_FDM(csbcpb) |= NX_FDM_INTERMEDIATE;
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else
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NX_CPB_FDM(csbcpb) &= ~NX_FDM_INTERMEDIATE;
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csbcpb->cpb.aes_gcm.bit_length_data = nbytes * 8;
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desc.tfm = (struct crypto_blkcipher *) req->base.tfm;
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rc = nx_build_sg_lists(nx_ctx, &desc, req->dst,
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req->src, to_process, processed,
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csbcpb->cpb.aes_gcm.iv_or_cnt);
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if (rc)
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goto out;
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rc = nx_hcall_sync(nx_ctx, &nx_ctx->op,
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req->base.flags & CRYPTO_TFM_REQ_MAY_SLEEP);
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