mirror of https://gitee.com/openkylin/linux.git
crypto: bcm-iproc - remove ecb(arc4) support
Signed-off-by: Ard Biesheuvel <ardb@kernel.org> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
This commit is contained in:
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b2ba047684
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1dbab6b162
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@ -165,10 +165,6 @@ spu_skcipher_rx_sg_create(struct brcm_message *mssg,
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return -EFAULT;
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}
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if (ctx->cipher.alg == CIPHER_ALG_RC4)
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/* Add buffer to catch 260-byte SUPDT field for RC4 */
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sg_set_buf(sg++, rctx->msg_buf.c.supdt_tweak, SPU_SUPDT_LEN);
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if (stat_pad_len)
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sg_set_buf(sg++, rctx->msg_buf.rx_stat_pad, stat_pad_len);
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@ -317,7 +313,6 @@ static int handle_skcipher_req(struct iproc_reqctx_s *rctx)
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u8 local_iv_ctr[MAX_IV_SIZE];
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u32 stat_pad_len; /* num bytes to align status field */
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u32 pad_len; /* total length of all padding */
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bool update_key = false;
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struct brcm_message *mssg; /* mailbox message */
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/* number of entries in src and dst sg in mailbox message. */
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@ -391,28 +386,6 @@ static int handle_skcipher_req(struct iproc_reqctx_s *rctx)
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}
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}
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if (ctx->cipher.alg == CIPHER_ALG_RC4) {
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rx_frag_num++;
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if (chunk_start) {
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/*
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* for non-first RC4 chunks, use SUPDT from previous
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* response as key for this chunk.
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*/
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cipher_parms.key_buf = rctx->msg_buf.c.supdt_tweak;
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update_key = true;
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cipher_parms.type = CIPHER_TYPE_UPDT;
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} else if (!rctx->is_encrypt) {
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/*
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* First RC4 chunk. For decrypt, key in pre-built msg
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* header may have been changed if encrypt required
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* multiple chunks. So revert the key to the
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* ctx->enckey value.
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*/
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update_key = true;
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cipher_parms.type = CIPHER_TYPE_INIT;
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}
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}
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if (ctx->max_payload == SPU_MAX_PAYLOAD_INF)
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flow_log("max_payload infinite\n");
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else
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@ -425,14 +398,9 @@ static int handle_skcipher_req(struct iproc_reqctx_s *rctx)
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memcpy(rctx->msg_buf.bcm_spu_req_hdr, ctx->bcm_spu_req_hdr,
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sizeof(rctx->msg_buf.bcm_spu_req_hdr));
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/*
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* Pass SUPDT field as key. Key field in finish() call is only used
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* when update_key has been set above for RC4. Will be ignored in
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* all other cases.
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*/
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spu->spu_cipher_req_finish(rctx->msg_buf.bcm_spu_req_hdr + BCM_HDR_LEN,
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ctx->spu_req_hdr_len, !(rctx->is_encrypt),
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&cipher_parms, update_key, chunksize);
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&cipher_parms, chunksize);
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atomic64_add(chunksize, &iproc_priv.bytes_out);
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@ -527,9 +495,6 @@ static void handle_skcipher_resp(struct iproc_reqctx_s *rctx)
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__func__, rctx->total_received, payload_len);
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dump_sg(req->dst, rctx->total_received, payload_len);
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if (ctx->cipher.alg == CIPHER_ALG_RC4)
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packet_dump(" supdt ", rctx->msg_buf.c.supdt_tweak,
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SPU_SUPDT_LEN);
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rctx->total_received += payload_len;
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if (rctx->total_received == rctx->total_todo) {
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@ -1853,26 +1818,6 @@ static int aes_setkey(struct crypto_skcipher *cipher, const u8 *key,
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return 0;
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}
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static int rc4_setkey(struct crypto_skcipher *cipher, const u8 *key,
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unsigned int keylen)
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{
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struct iproc_ctx_s *ctx = crypto_skcipher_ctx(cipher);
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int i;
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ctx->enckeylen = ARC4_MAX_KEY_SIZE + ARC4_STATE_SIZE;
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ctx->enckey[0] = 0x00; /* 0x00 */
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ctx->enckey[1] = 0x00; /* i */
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ctx->enckey[2] = 0x00; /* 0x00 */
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ctx->enckey[3] = 0x00; /* j */
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for (i = 0; i < ARC4_MAX_KEY_SIZE; i++)
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ctx->enckey[i + ARC4_STATE_SIZE] = key[i % keylen];
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ctx->cipher_type = CIPHER_TYPE_INIT;
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return 0;
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}
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static int skcipher_setkey(struct crypto_skcipher *cipher, const u8 *key,
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unsigned int keylen)
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{
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@ -1895,9 +1840,6 @@ static int skcipher_setkey(struct crypto_skcipher *cipher, const u8 *key,
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case CIPHER_ALG_AES:
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err = aes_setkey(cipher, key, keylen);
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break;
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case CIPHER_ALG_RC4:
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err = rc4_setkey(cipher, key, keylen);
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break;
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default:
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pr_err("%s() Error: unknown cipher alg\n", __func__);
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err = -EINVAL;
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@ -1905,11 +1847,9 @@ static int skcipher_setkey(struct crypto_skcipher *cipher, const u8 *key,
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if (err)
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return err;
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/* RC4 already populated ctx->enkey */
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if (ctx->cipher.alg != CIPHER_ALG_RC4) {
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memcpy(ctx->enckey, key, keylen);
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ctx->enckeylen = keylen;
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}
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memcpy(ctx->enckey, key, keylen);
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ctx->enckeylen = keylen;
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/* SPU needs XTS keys in the reverse order the crypto API presents */
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if ((ctx->cipher.alg == CIPHER_ALG_AES) &&
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(ctx->cipher.mode == CIPHER_MODE_XTS)) {
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@ -2872,9 +2812,6 @@ static int aead_authenc_setkey(struct crypto_aead *cipher,
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goto badkey;
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}
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break;
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case CIPHER_ALG_RC4:
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ctx->cipher_type = CIPHER_TYPE_INIT;
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break;
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default:
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pr_err("%s() Error: Unknown cipher alg\n", __func__);
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return -EINVAL;
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@ -3603,25 +3540,6 @@ static struct iproc_alg_s driver_algs[] = {
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},
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/* SKCIPHER algorithms. */
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{
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.type = CRYPTO_ALG_TYPE_SKCIPHER,
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.alg.skcipher = {
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.base.cra_name = "ecb(arc4)",
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.base.cra_driver_name = "ecb-arc4-iproc",
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.base.cra_blocksize = ARC4_BLOCK_SIZE,
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.min_keysize = ARC4_MIN_KEY_SIZE,
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.max_keysize = ARC4_MAX_KEY_SIZE,
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.ivsize = 0,
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},
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.cipher_info = {
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.alg = CIPHER_ALG_RC4,
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.mode = CIPHER_MODE_NONE,
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},
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.auth_info = {
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.alg = HASH_ALG_NONE,
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.mode = HASH_MODE_NONE,
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},
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},
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{
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.type = CRYPTO_ALG_TYPE_SKCIPHER,
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.alg.skcipher = {
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@ -4526,15 +4444,9 @@ static void spu_counters_init(void)
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static int spu_register_skcipher(struct iproc_alg_s *driver_alg)
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{
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struct spu_hw *spu = &iproc_priv.spu;
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struct skcipher_alg *crypto = &driver_alg->alg.skcipher;
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int err;
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/* SPU2 does not support RC4 */
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if ((driver_alg->cipher_info.alg == CIPHER_ALG_RC4) &&
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(spu->spu_type == SPU_TYPE_SPU2))
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return 0;
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crypto->base.cra_module = THIS_MODULE;
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crypto->base.cra_priority = cipher_pri;
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crypto->base.cra_alignmask = 0;
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@ -388,7 +388,6 @@ struct spu_hw {
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u16 spu_req_hdr_len,
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unsigned int is_inbound,
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struct spu_cipher_parms *cipher_parms,
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bool update_key,
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unsigned int data_size);
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void (*spu_request_pad)(u8 *pad_start, u32 gcm_padding,
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u32 hash_pad_len, enum hash_alg auth_alg,
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@ -222,10 +222,6 @@ void spum_dump_msg_hdr(u8 *buf, unsigned int buf_len)
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cipher_key_len = 24;
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name = "3DES";
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break;
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case CIPHER_ALG_RC4:
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cipher_key_len = 260;
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name = "ARC4";
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break;
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case CIPHER_ALG_AES:
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switch (cipher_type) {
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case CIPHER_TYPE_AES128:
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@ -919,21 +915,16 @@ u16 spum_cipher_req_init(u8 *spu_hdr, struct spu_cipher_parms *cipher_parms)
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* @spu_req_hdr_len: Length in bytes of the SPU request header
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* @isInbound: 0 encrypt, 1 decrypt
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* @cipher_parms: Parameters describing cipher operation to be performed
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* @update_key: If true, rewrite the cipher key in SCTX
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* @data_size: Length of the data in the BD field
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*
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* Assumes much of the header was already filled in at setkey() time in
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* spum_cipher_req_init().
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* spum_cipher_req_init() fills in the encryption key. For RC4, when submitting
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* a request for a non-first chunk, we use the 260-byte SUPDT field from the
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* previous response as the key. update_key is true for this case. Unused in all
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* other cases.
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* spum_cipher_req_init() fills in the encryption key.
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*/
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void spum_cipher_req_finish(u8 *spu_hdr,
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u16 spu_req_hdr_len,
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unsigned int is_inbound,
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struct spu_cipher_parms *cipher_parms,
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bool update_key,
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unsigned int data_size)
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{
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struct SPUHEADER *spuh;
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@ -948,11 +939,6 @@ void spum_cipher_req_finish(u8 *spu_hdr,
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flow_log(" in: %u\n", is_inbound);
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flow_log(" cipher alg: %u, cipher_type: %u\n", cipher_parms->alg,
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cipher_parms->type);
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if (update_key) {
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flow_log(" cipher key len: %u\n", cipher_parms->key_len);
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flow_dump(" key: ", cipher_parms->key_buf,
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cipher_parms->key_len);
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}
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/*
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* In XTS mode, API puts "i" parameter (block tweak) in IV. For
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@ -981,13 +967,6 @@ void spum_cipher_req_finish(u8 *spu_hdr,
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else
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cipher_bits &= ~CIPHER_INBOUND;
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/* update encryption key for RC4 on non-first chunk */
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if (update_key) {
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spuh->sa.cipher_flags |=
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cipher_parms->type << CIPHER_TYPE_SHIFT;
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memcpy(spuh + 1, cipher_parms->key_buf, cipher_parms->key_len);
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}
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if (cipher_parms->alg && cipher_parms->iv_buf && cipher_parms->iv_len)
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/* cipher iv provided so put it in here */
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memcpy(bdesc_ptr - cipher_parms->iv_len, cipher_parms->iv_buf,
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@ -251,7 +251,6 @@ void spum_cipher_req_finish(u8 *spu_hdr,
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u16 spu_req_hdr_len,
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unsigned int is_inbound,
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struct spu_cipher_parms *cipher_parms,
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bool update_key,
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unsigned int data_size);
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void spum_request_pad(u8 *pad_start,
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@ -1170,21 +1170,16 @@ u16 spu2_cipher_req_init(u8 *spu_hdr, struct spu_cipher_parms *cipher_parms)
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* @spu_req_hdr_len: Length in bytes of the SPU request header
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* @isInbound: 0 encrypt, 1 decrypt
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* @cipher_parms: Parameters describing cipher operation to be performed
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* @update_key: If true, rewrite the cipher key in SCTX
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* @data_size: Length of the data in the BD field
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*
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* Assumes much of the header was already filled in at setkey() time in
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* spu_cipher_req_init().
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* spu_cipher_req_init() fills in the encryption key. For RC4, when submitting a
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* request for a non-first chunk, we use the 260-byte SUPDT field from the
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* previous response as the key. update_key is true for this case. Unused in all
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* other cases.
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* spu_cipher_req_init() fills in the encryption key.
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*/
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void spu2_cipher_req_finish(u8 *spu_hdr,
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u16 spu_req_hdr_len,
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unsigned int is_inbound,
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struct spu_cipher_parms *cipher_parms,
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bool update_key,
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unsigned int data_size)
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{
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struct SPU2_FMD *fmd;
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flow_log(" in: %u\n", is_inbound);
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flow_log(" cipher alg: %u, cipher_type: %u\n", cipher_parms->alg,
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cipher_parms->type);
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if (update_key) {
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flow_log(" cipher key len: %u\n", cipher_parms->key_len);
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flow_dump(" key: ", cipher_parms->key_buf,
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cipher_parms->key_len);
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}
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flow_log(" iv len: %d\n", cipher_parms->iv_len);
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flow_dump(" iv: ", cipher_parms->iv_buf, cipher_parms->iv_len);
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flow_log(" data_size: %u\n", data_size);
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@ -200,7 +200,6 @@ void spu2_cipher_req_finish(u8 *spu_hdr,
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u16 spu_req_hdr_len,
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unsigned int is_inbound,
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struct spu_cipher_parms *cipher_parms,
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bool update_key,
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unsigned int data_size);
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void spu2_request_pad(u8 *pad_start, u32 gcm_padding, u32 hash_pad_len,
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enum hash_alg auth_alg, enum hash_mode auth_mode,
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