crypto: caam - improve key inlining
For authenc / stitched AEAD algorithms, check independently each of the two (authentication, encryption) keys whether inlining is possible. Prioritize the inlining of the authentication key, since the length of the (split) key is bigger than that of the encryption key. For the other algorithms, compute only once per tfm the remaining available bytes and decide whether key inlining is possible based on this. Signed-off-by: Horia Geantă <horia.geanta@nxp.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
This commit is contained in:
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488ebc3a41
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4cbe79ccb5
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@ -224,7 +224,7 @@ struct caam_ctx {
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};
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static void init_sh_desc_key_aead(u32 *desc, struct caam_ctx *ctx,
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int keys_fit_inline, bool is_rfc3686)
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bool is_rfc3686)
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{
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u32 *key_jump_cmd;
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unsigned int enckeylen = ctx->cdata.keylen;
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@ -244,18 +244,20 @@ static void init_sh_desc_key_aead(u32 *desc, struct caam_ctx *ctx,
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if (is_rfc3686)
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enckeylen -= CTR_RFC3686_NONCE_SIZE;
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if (keys_fit_inline) {
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if (ctx->adata.key_inline)
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append_key_as_imm(desc, (void *)ctx->adata.key,
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ctx->adata.keylen_pad, ctx->adata.keylen,
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CLASS_2 | KEY_DEST_MDHA_SPLIT | KEY_ENC);
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append_key_as_imm(desc, (void *)ctx->cdata.key, enckeylen,
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enckeylen, CLASS_1 | KEY_DEST_CLASS_REG);
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} else {
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else
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append_key(desc, ctx->adata.key, ctx->adata.keylen, CLASS_2 |
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KEY_DEST_MDHA_SPLIT | KEY_ENC);
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if (ctx->cdata.key_inline)
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append_key_as_imm(desc, (void *)ctx->cdata.key, enckeylen,
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enckeylen, CLASS_1 | KEY_DEST_CLASS_REG);
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else
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append_key(desc, ctx->cdata.key, enckeylen, CLASS_1 |
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KEY_DEST_CLASS_REG);
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}
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/* Load Counter into CONTEXT1 reg */
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if (is_rfc3686) {
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@ -282,13 +284,14 @@ static int aead_null_set_sh_desc(struct crypto_aead *aead)
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struct device *jrdev = ctx->jrdev;
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u32 *key_jump_cmd, *jump_cmd, *read_move_cmd, *write_move_cmd;
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u32 *desc;
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int rem_bytes = CAAM_DESC_BYTES_MAX - AEAD_DESC_JOB_IO_LEN -
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ctx->adata.keylen_pad;
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/*
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_AEAD_NULL_ENC_LEN + AEAD_DESC_JOB_IO_LEN +
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ctx->adata.keylen_pad <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_AEAD_NULL_ENC_LEN) {
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ctx->adata.key_inline = true;
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ctx->adata.key = (uintptr_t)ctx->key;
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} else {
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@ -368,8 +371,7 @@ static int aead_null_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_AEAD_NULL_DEC_LEN + DESC_JOB_IO_LEN +
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ctx->adata.keylen_pad <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_AEAD_NULL_DEC_LEN) {
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ctx->adata.key_inline = true;
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ctx->adata.key = (uintptr_t)ctx->key;
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} else {
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@ -463,10 +465,11 @@ static int aead_set_sh_desc(struct crypto_aead *aead)
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unsigned int ivsize = crypto_aead_ivsize(aead);
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struct caam_ctx *ctx = crypto_aead_ctx(aead);
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struct device *jrdev = ctx->jrdev;
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bool keys_fit_inline;
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u32 geniv, moveiv;
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u32 ctx1_iv_off = 0;
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u32 *desc;
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u32 inl_mask;
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unsigned int data_len[2];
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const bool ctr_mode = ((ctx->cdata.algtype & OP_ALG_AAI_MASK) ==
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OP_ALG_AAI_CTR_MOD128);
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const bool is_rfc3686 = alg->caam.rfc3686;
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@ -493,6 +496,9 @@ static int aead_set_sh_desc(struct crypto_aead *aead)
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if (is_rfc3686)
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ctx1_iv_off = 16 + CTR_RFC3686_NONCE_SIZE;
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data_len[0] = ctx->adata.keylen_pad;
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data_len[1] = ctx->cdata.keylen;
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if (alg->caam.geniv)
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goto skip_enc;
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@ -500,24 +506,30 @@ static int aead_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_AEAD_ENC_LEN + AUTHENC_DESC_JOB_IO_LEN +
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ctx->adata.keylen_pad + ctx->cdata.keylen +
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(is_rfc3686 ? DESC_AEAD_CTR_RFC3686_LEN : 0) <=
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CAAM_DESC_BYTES_MAX) {
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keys_fit_inline = true;
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if (desc_inline_query(DESC_AEAD_ENC_LEN +
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(is_rfc3686 ? DESC_AEAD_CTR_RFC3686_LEN : 0),
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AUTHENC_DESC_JOB_IO_LEN, data_len, &inl_mask,
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ARRAY_SIZE(data_len)) < 0)
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return -EINVAL;
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if (inl_mask & 1)
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ctx->adata.key = (uintptr_t)ctx->key;
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ctx->cdata.key = (uintptr_t)(ctx->key + ctx->adata.keylen_pad);
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} else {
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keys_fit_inline = false;
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else
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ctx->adata.key = ctx->key_dma;
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if (inl_mask & 2)
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ctx->cdata.key = (uintptr_t)(ctx->key + ctx->adata.keylen_pad);
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else
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ctx->cdata.key = ctx->key_dma + ctx->adata.keylen_pad;
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}
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ctx->adata.key_inline = !!(inl_mask & 1);
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ctx->cdata.key_inline = !!(inl_mask & 2);
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/* aead_encrypt shared descriptor */
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desc = ctx->sh_desc_enc;
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/* Note: Context registers are saved. */
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init_sh_desc_key_aead(desc, ctx, keys_fit_inline, is_rfc3686);
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init_sh_desc_key_aead(desc, ctx, is_rfc3686);
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/* Class 2 operation */
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append_operation(desc, ctx->adata.algtype | OP_ALG_AS_INITFINAL |
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@ -572,24 +584,30 @@ static int aead_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_AEAD_DEC_LEN + AUTHENC_DESC_JOB_IO_LEN +
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ctx->adata.keylen_pad + ctx->cdata.keylen +
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(is_rfc3686 ? DESC_AEAD_CTR_RFC3686_LEN : 0) <=
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CAAM_DESC_BYTES_MAX) {
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keys_fit_inline = true;
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if (desc_inline_query(DESC_AEAD_DEC_LEN +
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(is_rfc3686 ? DESC_AEAD_CTR_RFC3686_LEN : 0),
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AUTHENC_DESC_JOB_IO_LEN, data_len, &inl_mask,
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ARRAY_SIZE(data_len)) < 0)
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return -EINVAL;
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if (inl_mask & 1)
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ctx->adata.key = (uintptr_t)ctx->key;
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ctx->cdata.key = (uintptr_t)(ctx->key + ctx->adata.keylen_pad);
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} else {
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keys_fit_inline = false;
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else
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ctx->adata.key = ctx->key_dma;
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if (inl_mask & 2)
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ctx->cdata.key = (uintptr_t)(ctx->key + ctx->adata.keylen_pad);
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else
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ctx->cdata.key = ctx->key_dma + ctx->adata.keylen_pad;
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}
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ctx->adata.key_inline = !!(inl_mask & 1);
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ctx->cdata.key_inline = !!(inl_mask & 2);
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/* aead_decrypt shared descriptor */
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desc = ctx->sh_desc_dec;
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/* Note: Context registers are saved. */
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init_sh_desc_key_aead(desc, ctx, keys_fit_inline, is_rfc3686);
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init_sh_desc_key_aead(desc, ctx, is_rfc3686);
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/* Class 2 operation */
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append_operation(desc, ctx->adata.algtype | OP_ALG_AS_INITFINAL |
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@ -660,24 +678,30 @@ static int aead_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_AEAD_GIVENC_LEN + AUTHENC_DESC_JOB_IO_LEN +
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ctx->adata.keylen_pad + ctx->cdata.keylen +
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(is_rfc3686 ? DESC_AEAD_CTR_RFC3686_LEN : 0) <=
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CAAM_DESC_BYTES_MAX) {
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keys_fit_inline = true;
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if (desc_inline_query(DESC_AEAD_GIVENC_LEN +
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(is_rfc3686 ? DESC_AEAD_CTR_RFC3686_LEN : 0),
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AUTHENC_DESC_JOB_IO_LEN, data_len, &inl_mask,
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ARRAY_SIZE(data_len)) < 0)
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return -EINVAL;
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if (inl_mask & 1)
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ctx->adata.key = (uintptr_t)ctx->key;
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ctx->cdata.key = (uintptr_t)(ctx->key + ctx->adata.keylen_pad);
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} else {
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keys_fit_inline = false;
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else
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ctx->adata.key = ctx->key_dma;
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if (inl_mask & 2)
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ctx->cdata.key = (uintptr_t)(ctx->key + ctx->adata.keylen_pad);
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else
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ctx->cdata.key = ctx->key_dma + ctx->adata.keylen_pad;
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}
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ctx->adata.key_inline = !!(inl_mask & 1);
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ctx->cdata.key_inline = !!(inl_mask & 2);
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/* aead_givencrypt shared descriptor */
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desc = ctx->sh_desc_enc;
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/* Note: Context registers are saved. */
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init_sh_desc_key_aead(desc, ctx, keys_fit_inline, is_rfc3686);
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init_sh_desc_key_aead(desc, ctx, is_rfc3686);
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if (is_rfc3686)
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goto copy_iv;
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@ -787,6 +811,8 @@ static int gcm_set_sh_desc(struct crypto_aead *aead)
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u32 *key_jump_cmd, *zero_payload_jump_cmd,
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*zero_assoc_jump_cmd1, *zero_assoc_jump_cmd2;
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u32 *desc;
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int rem_bytes = CAAM_DESC_BYTES_MAX - GCM_DESC_JOB_IO_LEN -
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ctx->cdata.keylen;
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if (!ctx->cdata.keylen || !ctx->authsize)
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return 0;
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@ -796,8 +822,7 @@ static int gcm_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptor
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* must fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_GCM_ENC_LEN + GCM_DESC_JOB_IO_LEN +
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ctx->cdata.keylen <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_GCM_ENC_LEN) {
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ctx->cdata.key_inline = true;
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ctx->cdata.key = (uintptr_t)ctx->key;
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} else {
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@ -895,8 +920,7 @@ static int gcm_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_GCM_DEC_LEN + GCM_DESC_JOB_IO_LEN +
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ctx->cdata.keylen <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_GCM_DEC_LEN) {
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ctx->cdata.key_inline = true;
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ctx->cdata.key = (uintptr_t)ctx->key;
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} else {
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@ -996,6 +1020,8 @@ static int rfc4106_set_sh_desc(struct crypto_aead *aead)
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struct device *jrdev = ctx->jrdev;
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u32 *key_jump_cmd;
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u32 *desc;
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int rem_bytes = CAAM_DESC_BYTES_MAX - GCM_DESC_JOB_IO_LEN -
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ctx->cdata.keylen;
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if (!ctx->cdata.keylen || !ctx->authsize)
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return 0;
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@ -1005,8 +1031,7 @@ static int rfc4106_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptor
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* must fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_RFC4106_ENC_LEN + GCM_DESC_JOB_IO_LEN +
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ctx->cdata.keylen <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_RFC4106_ENC_LEN) {
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ctx->cdata.key_inline = true;
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ctx->cdata.key = (uintptr_t)ctx->key;
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} else {
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@ -1084,8 +1109,7 @@ static int rfc4106_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_RFC4106_DEC_LEN + DESC_JOB_IO_LEN +
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ctx->cdata.keylen <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_RFC4106_DEC_LEN) {
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ctx->cdata.key_inline = true;
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ctx->cdata.key = (uintptr_t)ctx->key;
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} else {
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@ -1180,6 +1204,8 @@ static int rfc4543_set_sh_desc(struct crypto_aead *aead)
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u32 *key_jump_cmd;
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u32 *read_move_cmd, *write_move_cmd;
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u32 *desc;
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int rem_bytes = CAAM_DESC_BYTES_MAX - GCM_DESC_JOB_IO_LEN -
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ctx->cdata.keylen;
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if (!ctx->cdata.keylen || !ctx->authsize)
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return 0;
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@ -1189,8 +1215,7 @@ static int rfc4543_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptor
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* must fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_RFC4543_ENC_LEN + GCM_DESC_JOB_IO_LEN +
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ctx->cdata.keylen <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_RFC4543_ENC_LEN) {
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ctx->cdata.key_inline = true;
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ctx->cdata.key = (uintptr_t)ctx->key;
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} else {
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@ -1267,8 +1292,7 @@ static int rfc4543_set_sh_desc(struct crypto_aead *aead)
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* Job Descriptor and Shared Descriptors
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* must all fit into the 64-word Descriptor h/w Buffer
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*/
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if (DESC_RFC4543_DEC_LEN + GCM_DESC_JOB_IO_LEN +
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ctx->cdata.keylen <= CAAM_DESC_BYTES_MAX) {
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if (rem_bytes >= DESC_RFC4543_DEC_LEN) {
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ctx->cdata.key_inline = true;
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ctx->cdata.key = (uintptr_t)ctx->key;
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} else {
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@ -449,3 +449,42 @@ struct alginfo {
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u64 key;
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bool key_inline;
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};
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/**
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* desc_inline_query() - Provide indications on which data items can be inlined
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* and which shall be referenced in a shared descriptor.
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* @sd_base_len: Shared descriptor base length - bytes consumed by the commands,
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* excluding the data items to be inlined (or corresponding
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* pointer if an item is not inlined). Each cnstr_* function that
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* generates descriptors should have a define mentioning
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* corresponding length.
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* @jd_len: Maximum length of the job descriptor(s) that will be used
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* together with the shared descriptor.
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* @data_len: Array of lengths of the data items trying to be inlined
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* @inl_mask: 32bit mask with bit x = 1 if data item x can be inlined, 0
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* otherwise.
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* @count: Number of data items (size of @data_len array); must be <= 32
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*
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* Return: 0 if data can be inlined / referenced, negative value if not. If 0,
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* check @inl_mask for details.
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*/
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static inline int desc_inline_query(unsigned int sd_base_len,
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unsigned int jd_len, unsigned int *data_len,
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u32 *inl_mask, unsigned int count)
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{
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int rem_bytes = (int)(CAAM_DESC_BYTES_MAX - sd_base_len - jd_len);
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unsigned int i;
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*inl_mask = 0;
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for (i = 0; (i < count) && (rem_bytes > 0); i++) {
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if (rem_bytes - (int)(data_len[i] +
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(count - i - 1) * CAAM_PTR_SZ) >= 0) {
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rem_bytes -= data_len[i];
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*inl_mask |= (1 << i);
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} else {
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rem_bytes -= CAAM_PTR_SZ;
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}
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}
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return (rem_bytes >= 0) ? 0 : -1;
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}
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