forked from Minki/linux
332 lines
8.9 KiB
C
332 lines
8.9 KiB
C
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/*
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* Cipher algorithms supported by the CESA: DES, 3DES and AES.
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*
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* Author: Boris Brezillon <boris.brezillon@free-electrons.com>
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* Author: Arnaud Ebalard <arno@natisbad.org>
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*
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* This work is based on an initial version written by
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* Sebastian Andrzej Siewior < sebastian at breakpoint dot cc >
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 as published
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* by the Free Software Foundation.
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*/
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#include <crypto/aes.h>
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#include "cesa.h"
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struct mv_cesa_aes_ctx {
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struct mv_cesa_ctx base;
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struct crypto_aes_ctx aes;
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};
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static void mv_cesa_ablkcipher_std_step(struct ablkcipher_request *req)
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{
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(req);
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struct mv_cesa_ablkcipher_std_req *sreq = &creq->req.std;
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struct mv_cesa_engine *engine = sreq->base.engine;
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size_t len = min_t(size_t, req->nbytes - sreq->offset,
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CESA_SA_SRAM_PAYLOAD_SIZE);
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len = sg_pcopy_to_buffer(req->src, creq->src_nents,
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engine->sram + CESA_SA_DATA_SRAM_OFFSET,
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len, sreq->offset);
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sreq->size = len;
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mv_cesa_set_crypt_op_len(&sreq->op, len);
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/* FIXME: only update enc_len field */
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if (!sreq->skip_ctx) {
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memcpy(engine->sram, &sreq->op, sizeof(sreq->op));
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sreq->skip_ctx = true;
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} else {
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memcpy(engine->sram, &sreq->op, sizeof(sreq->op.desc));
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}
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mv_cesa_set_int_mask(engine, CESA_SA_INT_ACCEL0_DONE);
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writel(CESA_SA_CFG_PARA_DIS, engine->regs + CESA_SA_CFG);
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writel(CESA_SA_CMD_EN_CESA_SA_ACCL0, engine->regs + CESA_SA_CMD);
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}
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static int mv_cesa_ablkcipher_std_process(struct ablkcipher_request *req,
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u32 status)
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{
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(req);
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struct mv_cesa_ablkcipher_std_req *sreq = &creq->req.std;
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struct mv_cesa_engine *engine = sreq->base.engine;
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size_t len;
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len = sg_pcopy_from_buffer(req->dst, creq->dst_nents,
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engine->sram + CESA_SA_DATA_SRAM_OFFSET,
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sreq->size, sreq->offset);
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sreq->offset += len;
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if (sreq->offset < req->nbytes)
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return -EINPROGRESS;
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return 0;
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}
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static int mv_cesa_ablkcipher_process(struct crypto_async_request *req,
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u32 status)
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{
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struct ablkcipher_request *ablkreq = ablkcipher_request_cast(req);
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(ablkreq);
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struct mv_cesa_ablkcipher_std_req *sreq = &creq->req.std;
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struct mv_cesa_engine *engine = sreq->base.engine;
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int ret;
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ret = mv_cesa_ablkcipher_std_process(ablkreq, status);
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if (ret)
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return ret;
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memcpy(ablkreq->info, engine->sram + CESA_SA_CRYPT_IV_SRAM_OFFSET,
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crypto_ablkcipher_ivsize(crypto_ablkcipher_reqtfm(ablkreq)));
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return 0;
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}
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static void mv_cesa_ablkcipher_step(struct crypto_async_request *req)
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{
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struct ablkcipher_request *ablkreq = ablkcipher_request_cast(req);
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mv_cesa_ablkcipher_std_step(ablkreq);
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}
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static inline void
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mv_cesa_ablkcipher_std_prepare(struct ablkcipher_request *req)
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{
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(req);
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struct mv_cesa_ablkcipher_std_req *sreq = &creq->req.std;
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struct mv_cesa_engine *engine = sreq->base.engine;
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sreq->size = 0;
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sreq->offset = 0;
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mv_cesa_adjust_op(engine, &sreq->op);
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memcpy(engine->sram, &sreq->op, sizeof(sreq->op));
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}
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static inline void mv_cesa_ablkcipher_prepare(struct crypto_async_request *req,
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struct mv_cesa_engine *engine)
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{
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struct ablkcipher_request *ablkreq = ablkcipher_request_cast(req);
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(ablkreq);
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creq->req.base.engine = engine;
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mv_cesa_ablkcipher_std_prepare(ablkreq);
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}
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static inline void
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mv_cesa_ablkcipher_req_cleanup(struct crypto_async_request *req)
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{
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}
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static const struct mv_cesa_req_ops mv_cesa_ablkcipher_req_ops = {
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.step = mv_cesa_ablkcipher_step,
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.process = mv_cesa_ablkcipher_process,
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.prepare = mv_cesa_ablkcipher_prepare,
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.cleanup = mv_cesa_ablkcipher_req_cleanup,
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};
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static int mv_cesa_ablkcipher_cra_init(struct crypto_tfm *tfm)
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{
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struct mv_cesa_aes_ctx *ctx = crypto_tfm_ctx(tfm);
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ctx->base.ops = &mv_cesa_ablkcipher_req_ops;
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tfm->crt_ablkcipher.reqsize = sizeof(struct mv_cesa_ablkcipher_req);
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return 0;
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}
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static int mv_cesa_aes_setkey(struct crypto_ablkcipher *cipher, const u8 *key,
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unsigned int len)
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{
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struct crypto_tfm *tfm = crypto_ablkcipher_tfm(cipher);
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struct mv_cesa_aes_ctx *ctx = crypto_tfm_ctx(tfm);
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int remaining;
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int offset;
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int ret;
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int i;
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ret = crypto_aes_expand_key(&ctx->aes, key, len);
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if (ret) {
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crypto_ablkcipher_set_flags(cipher, CRYPTO_TFM_RES_BAD_KEY_LEN);
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return ret;
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}
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remaining = (ctx->aes.key_length - 16) / 4;
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offset = ctx->aes.key_length + 24 - remaining;
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for (i = 0; i < remaining; i++)
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ctx->aes.key_dec[4 + i] =
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cpu_to_le32(ctx->aes.key_enc[offset + i]);
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return 0;
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}
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static inline int
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mv_cesa_ablkcipher_std_req_init(struct ablkcipher_request *req,
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const struct mv_cesa_op_ctx *op_templ)
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{
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(req);
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struct mv_cesa_ablkcipher_std_req *sreq = &creq->req.std;
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sreq->base.type = CESA_STD_REQ;
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sreq->op = *op_templ;
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sreq->skip_ctx = false;
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return 0;
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}
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static int mv_cesa_ablkcipher_req_init(struct ablkcipher_request *req,
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struct mv_cesa_op_ctx *tmpl)
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{
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struct mv_cesa_ablkcipher_req *creq = ablkcipher_request_ctx(req);
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struct crypto_ablkcipher *tfm = crypto_ablkcipher_reqtfm(req);
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unsigned int blksize = crypto_ablkcipher_blocksize(tfm);
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if (!IS_ALIGNED(req->nbytes, blksize))
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return -EINVAL;
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creq->src_nents = sg_nents_for_len(req->src, req->nbytes);
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creq->dst_nents = sg_nents_for_len(req->dst, req->nbytes);
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mv_cesa_update_op_cfg(tmpl, CESA_SA_DESC_CFG_OP_CRYPT_ONLY,
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CESA_SA_DESC_CFG_OP_MSK);
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return mv_cesa_ablkcipher_std_req_init(req, tmpl);
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}
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static int mv_cesa_aes_op(struct ablkcipher_request *req,
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struct mv_cesa_op_ctx *tmpl)
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{
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struct mv_cesa_aes_ctx *ctx = crypto_tfm_ctx(req->base.tfm);
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int ret, i;
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u32 *key;
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u32 cfg;
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cfg = CESA_SA_DESC_CFG_CRYPTM_AES;
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if (mv_cesa_get_op_cfg(tmpl) & CESA_SA_DESC_CFG_DIR_DEC)
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key = ctx->aes.key_dec;
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else
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key = ctx->aes.key_enc;
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for (i = 0; i < ctx->aes.key_length / sizeof(u32); i++)
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tmpl->ctx.blkcipher.key[i] = cpu_to_le32(key[i]);
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if (ctx->aes.key_length == 24)
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cfg |= CESA_SA_DESC_CFG_AES_LEN_192;
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else if (ctx->aes.key_length == 32)
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cfg |= CESA_SA_DESC_CFG_AES_LEN_256;
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mv_cesa_update_op_cfg(tmpl, cfg,
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CESA_SA_DESC_CFG_CRYPTM_MSK |
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CESA_SA_DESC_CFG_AES_LEN_MSK);
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ret = mv_cesa_ablkcipher_req_init(req, tmpl);
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if (ret)
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return ret;
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return mv_cesa_queue_req(&req->base);
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}
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static int mv_cesa_ecb_aes_encrypt(struct ablkcipher_request *req)
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{
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struct mv_cesa_op_ctx tmpl;
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mv_cesa_set_op_cfg(&tmpl,
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CESA_SA_DESC_CFG_CRYPTCM_ECB |
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CESA_SA_DESC_CFG_DIR_ENC);
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return mv_cesa_aes_op(req, &tmpl);
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}
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static int mv_cesa_ecb_aes_decrypt(struct ablkcipher_request *req)
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{
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struct mv_cesa_op_ctx tmpl;
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mv_cesa_set_op_cfg(&tmpl,
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CESA_SA_DESC_CFG_CRYPTCM_ECB |
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CESA_SA_DESC_CFG_DIR_DEC);
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return mv_cesa_aes_op(req, &tmpl);
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}
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struct crypto_alg mv_cesa_ecb_aes_alg = {
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.cra_name = "ecb(aes)",
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.cra_driver_name = "mv-ecb-aes",
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.cra_priority = 300,
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.cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER |
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CRYPTO_ALG_KERN_DRIVER_ONLY | CRYPTO_ALG_ASYNC,
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.cra_blocksize = AES_BLOCK_SIZE,
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.cra_ctxsize = sizeof(struct mv_cesa_aes_ctx),
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.cra_alignmask = 0,
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.cra_type = &crypto_ablkcipher_type,
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.cra_module = THIS_MODULE,
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.cra_init = mv_cesa_ablkcipher_cra_init,
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.cra_u = {
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.ablkcipher = {
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.min_keysize = AES_MIN_KEY_SIZE,
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.max_keysize = AES_MAX_KEY_SIZE,
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.setkey = mv_cesa_aes_setkey,
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.encrypt = mv_cesa_ecb_aes_encrypt,
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.decrypt = mv_cesa_ecb_aes_decrypt,
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},
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},
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};
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static int mv_cesa_cbc_aes_op(struct ablkcipher_request *req,
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struct mv_cesa_op_ctx *tmpl)
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{
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mv_cesa_update_op_cfg(tmpl, CESA_SA_DESC_CFG_CRYPTCM_CBC,
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CESA_SA_DESC_CFG_CRYPTCM_MSK);
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memcpy(tmpl->ctx.blkcipher.iv, req->info, AES_BLOCK_SIZE);
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return mv_cesa_aes_op(req, tmpl);
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}
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static int mv_cesa_cbc_aes_encrypt(struct ablkcipher_request *req)
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{
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struct mv_cesa_op_ctx tmpl;
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mv_cesa_set_op_cfg(&tmpl, CESA_SA_DESC_CFG_DIR_ENC);
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return mv_cesa_cbc_aes_op(req, &tmpl);
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}
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static int mv_cesa_cbc_aes_decrypt(struct ablkcipher_request *req)
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{
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struct mv_cesa_op_ctx tmpl;
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mv_cesa_set_op_cfg(&tmpl, CESA_SA_DESC_CFG_DIR_DEC);
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return mv_cesa_cbc_aes_op(req, &tmpl);
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}
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struct crypto_alg mv_cesa_cbc_aes_alg = {
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.cra_name = "cbc(aes)",
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.cra_driver_name = "mv-cbc-aes",
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.cra_priority = 300,
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.cra_flags = CRYPTO_ALG_TYPE_ABLKCIPHER |
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CRYPTO_ALG_KERN_DRIVER_ONLY | CRYPTO_ALG_ASYNC,
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.cra_blocksize = AES_BLOCK_SIZE,
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.cra_ctxsize = sizeof(struct mv_cesa_aes_ctx),
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.cra_alignmask = 0,
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.cra_type = &crypto_ablkcipher_type,
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.cra_module = THIS_MODULE,
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.cra_init = mv_cesa_ablkcipher_cra_init,
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.cra_u = {
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.ablkcipher = {
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.min_keysize = AES_MIN_KEY_SIZE,
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.max_keysize = AES_MAX_KEY_SIZE,
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.ivsize = AES_BLOCK_SIZE,
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.setkey = mv_cesa_aes_setkey,
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.encrypt = mv_cesa_cbc_aes_encrypt,
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.decrypt = mv_cesa_cbc_aes_decrypt,
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},
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},
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};
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