caamalg.c 64.9 KB
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/*
 * caam - Freescale FSL CAAM support for crypto API
 *
 * Copyright 2008-2011 Freescale Semiconductor, Inc.
 *
 * Based on talitos crypto API driver.
 *
 * relationship of job descriptors to shared descriptors (SteveC Dec 10 2008):
 *
 * ---------------                     ---------------
 * | JobDesc #1  |-------------------->|  ShareDesc  |
 * | *(packet 1) |                     |   (PDB)     |
 * ---------------      |------------->|  (hashKey)  |
 *       .              |              | (cipherKey) |
 *       .              |    |-------->| (operation) |
 * ---------------      |    |         ---------------
 * | JobDesc #2  |------|    |
 * | *(packet 2) |           |
 * ---------------           |
 *       .                   |
 *       .                   |
 * ---------------           |
 * | JobDesc #3  |------------
 * | *(packet 3) |
 * ---------------
 *
 * The SharedDesc never changes for a connection unless rekeyed, but
 * each packet will likely be in a different place. So all we need
 * to know to process the packet is where the input is, where the
 * output goes, and what context we want to process with. Context is
 * in the SharedDesc, packet references in the JobDesc.
 *
 * So, a job desc looks like:
 *
 * ---------------------
 * | Header            |
 * | ShareDesc Pointer |
 * | SEQ_OUT_PTR       |
 * | (output buffer)   |
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 * | (output length)   |
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 * | SEQ_IN_PTR        |
 * | (input buffer)    |
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 * | (input length)    |
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 * ---------------------
 */

#include "compat.h"

#include "regs.h"
#include "intern.h"
#include "desc_constr.h"
#include "jr.h"
#include "error.h"
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#include "sg_sw_sec4.h"
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#include "key_gen.h"
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/*
 * crypto alg
 */
#define CAAM_CRA_PRIORITY		3000
/* max key is sum of AES_MAX_KEY_SIZE, max split key size */
#define CAAM_MAX_KEY_SIZE		(AES_MAX_KEY_SIZE + \
					 SHA512_DIGEST_SIZE * 2)
/* max IV is max of AES_BLOCK_SIZE, DES3_EDE_BLOCK_SIZE */
#define CAAM_MAX_IV_LENGTH		16

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/* length of descriptors text */
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#define DESC_AEAD_BASE			(4 * CAAM_CMD_SZ)
#define DESC_AEAD_ENC_LEN		(DESC_AEAD_BASE + 16 * CAAM_CMD_SZ)
#define DESC_AEAD_DEC_LEN		(DESC_AEAD_BASE + 21 * CAAM_CMD_SZ)
#define DESC_AEAD_GIVENC_LEN		(DESC_AEAD_ENC_LEN + 7 * CAAM_CMD_SZ)

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#define DESC_ABLKCIPHER_BASE		(3 * CAAM_CMD_SZ)
#define DESC_ABLKCIPHER_ENC_LEN		(DESC_ABLKCIPHER_BASE + \
					 20 * CAAM_CMD_SZ)
#define DESC_ABLKCIPHER_DEC_LEN		(DESC_ABLKCIPHER_BASE + \
					 15 * CAAM_CMD_SZ)

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#define DESC_MAX_USED_BYTES		(DESC_AEAD_GIVENC_LEN + \
					 CAAM_MAX_KEY_SIZE)
#define DESC_MAX_USED_LEN		(DESC_MAX_USED_BYTES / CAAM_CMD_SZ)
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#ifdef DEBUG
/* for print_hex_dumps with line references */
#define debug(format, arg...) printk(format, arg)
#else
#define debug(format, arg...)
#endif
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static struct list_head alg_list;
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/* Set DK bit in class 1 operation if shared */
static inline void append_dec_op1(u32 *desc, u32 type)
{
	u32 *jump_cmd, *uncond_jump_cmd;

	jump_cmd = append_jump(desc, JUMP_TEST_ALL | JUMP_COND_SHRD);
	append_operation(desc, type | OP_ALG_AS_INITFINAL |
			 OP_ALG_DECRYPT);
	uncond_jump_cmd = append_jump(desc, JUMP_TEST_ALL);
	set_jump_tgt_here(desc, jump_cmd);
	append_operation(desc, type | OP_ALG_AS_INITFINAL |
			 OP_ALG_DECRYPT | OP_ALG_AAI_DK);
	set_jump_tgt_here(desc, uncond_jump_cmd);
}

/*
 * Wait for completion of class 1 key loading before allowing
 * error propagation
 */
static inline void append_dec_shr_done(u32 *desc)
{
	u32 *jump_cmd;

	jump_cmd = append_jump(desc, JUMP_CLASS_CLASS1 | JUMP_TEST_ALL);
	set_jump_tgt_here(desc, jump_cmd);
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	append_cmd(desc, SET_OK_NO_PROP_ERRORS | CMD_LOAD);
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}

/*
 * For aead functions, read payload and write payload,
 * both of which are specified in req->src and req->dst
 */
static inline void aead_append_src_dst(u32 *desc, u32 msg_type)
{
	append_seq_fifo_load(desc, 0, FIFOLD_CLASS_BOTH |
			     KEY_VLF | msg_type | FIFOLD_TYPE_LASTBOTH);
	append_seq_fifo_store(desc, 0, FIFOST_TYPE_MESSAGE_DATA | KEY_VLF);
}

/*
 * For aead encrypt and decrypt, read iv for both classes
 */
static inline void aead_append_ld_iv(u32 *desc, int ivsize)
{
	append_cmd(desc, CMD_SEQ_LOAD | LDST_SRCDST_BYTE_CONTEXT |
		   LDST_CLASS_1_CCB | ivsize);
	append_move(desc, MOVE_SRC_CLASS1CTX | MOVE_DEST_CLASS2INFIFO | ivsize);
}

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/*
 * For ablkcipher encrypt and decrypt, read from req->src and
 * write to req->dst
 */
static inline void ablkcipher_append_src_dst(u32 *desc)
{
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	append_math_add(desc, VARSEQOUTLEN, SEQINLEN, REG0, CAAM_CMD_SZ);
	append_math_add(desc, VARSEQINLEN, SEQINLEN, REG0, CAAM_CMD_SZ);
	append_seq_fifo_load(desc, 0, FIFOLD_CLASS_CLASS1 |
			     KEY_VLF | FIFOLD_TYPE_MSG | FIFOLD_TYPE_LAST1);
	append_seq_fifo_store(desc, 0, FIFOST_TYPE_MESSAGE_DATA | KEY_VLF);
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}

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/*
 * If all data, including src (with assoc and iv) or dst (with iv only) are
 * contiguous
 */
#define GIV_SRC_CONTIG		1
#define GIV_DST_CONTIG		(1 << 1)

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/*
 * per-session context
 */
struct caam_ctx {
	struct device *jrdev;
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	u32 sh_desc_enc[DESC_MAX_USED_LEN];
	u32 sh_desc_dec[DESC_MAX_USED_LEN];
	u32 sh_desc_givenc[DESC_MAX_USED_LEN];
	dma_addr_t sh_desc_enc_dma;
	dma_addr_t sh_desc_dec_dma;
	dma_addr_t sh_desc_givenc_dma;
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	u32 class1_alg_type;
	u32 class2_alg_type;
	u32 alg_op;
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	u8 key[CAAM_MAX_KEY_SIZE];
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	dma_addr_t key_dma;
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	unsigned int enckeylen;
	unsigned int split_key_len;
	unsigned int split_key_pad_len;
	unsigned int authsize;
};

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static void append_key_aead(u32 *desc, struct caam_ctx *ctx,
			    int keys_fit_inline)
{
	if (keys_fit_inline) {
		append_key_as_imm(desc, ctx->key, ctx->split_key_pad_len,
				  ctx->split_key_len, CLASS_2 |
				  KEY_DEST_MDHA_SPLIT | KEY_ENC);
		append_key_as_imm(desc, (void *)ctx->key +
				  ctx->split_key_pad_len, ctx->enckeylen,
				  ctx->enckeylen, CLASS_1 | KEY_DEST_CLASS_REG);
	} else {
		append_key(desc, ctx->key_dma, ctx->split_key_len, CLASS_2 |
			   KEY_DEST_MDHA_SPLIT | KEY_ENC);
		append_key(desc, ctx->key_dma + ctx->split_key_pad_len,
			   ctx->enckeylen, CLASS_1 | KEY_DEST_CLASS_REG);
	}
}

static void init_sh_desc_key_aead(u32 *desc, struct caam_ctx *ctx,
				  int keys_fit_inline)
{
	u32 *key_jump_cmd;

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	init_sh_desc(desc, HDR_SHARE_SERIAL);
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	/* Skip if already shared */
	key_jump_cmd = append_jump(desc, JUMP_JSL | JUMP_TEST_ALL |
				   JUMP_COND_SHRD);

	append_key_aead(desc, ctx, keys_fit_inline);

	set_jump_tgt_here(desc, key_jump_cmd);

	/* Propagate errors from shared to job descriptor */
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	append_cmd(desc, SET_OK_NO_PROP_ERRORS | CMD_LOAD);
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}

static int aead_set_sh_desc(struct crypto_aead *aead)
{
	struct aead_tfm *tfm = &aead->base.crt_aead;
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
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	bool keys_fit_inline = false;
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	u32 *key_jump_cmd, *jump_cmd;
	u32 geniv, moveiv;
	u32 *desc;

	if (!ctx->enckeylen || !ctx->authsize)
		return 0;

	/*
	 * Job Descriptor and Shared Descriptors
	 * must all fit into the 64-word Descriptor h/w Buffer
	 */
	if (DESC_AEAD_ENC_LEN + DESC_JOB_IO_LEN +
	    ctx->split_key_pad_len + ctx->enckeylen <=
	    CAAM_DESC_BYTES_MAX)
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		keys_fit_inline = true;
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	/* aead_encrypt shared descriptor */
	desc = ctx->sh_desc_enc;

	init_sh_desc_key_aead(desc, ctx, keys_fit_inline);

	/* Class 2 operation */
	append_operation(desc, ctx->class2_alg_type |
			 OP_ALG_AS_INITFINAL | OP_ALG_ENCRYPT);

	/* cryptlen = seqoutlen - authsize */
	append_math_sub_imm_u32(desc, REG3, SEQOUTLEN, IMM, ctx->authsize);

	/* assoclen + cryptlen = seqinlen - ivsize */
	append_math_sub_imm_u32(desc, REG2, SEQINLEN, IMM, tfm->ivsize);

	/* assoclen + cryptlen = (assoclen + cryptlen) - cryptlen */
	append_math_sub(desc, VARSEQINLEN, REG2, REG3, CAAM_CMD_SZ);

	/* read assoc before reading payload */
	append_seq_fifo_load(desc, 0, FIFOLD_CLASS_CLASS2 | FIFOLD_TYPE_MSG |
			     KEY_VLF);
	aead_append_ld_iv(desc, tfm->ivsize);

	/* Class 1 operation */
	append_operation(desc, ctx->class1_alg_type |
			 OP_ALG_AS_INITFINAL | OP_ALG_ENCRYPT);

	/* Read and write cryptlen bytes */
	append_math_add(desc, VARSEQINLEN, ZERO, REG3, CAAM_CMD_SZ);
	append_math_add(desc, VARSEQOUTLEN, ZERO, REG3, CAAM_CMD_SZ);
	aead_append_src_dst(desc, FIFOLD_TYPE_MSG1OUT2);

	/* Write ICV */
	append_seq_store(desc, ctx->authsize, LDST_CLASS_2_CCB |
			 LDST_SRCDST_BYTE_CONTEXT);

	ctx->sh_desc_enc_dma = dma_map_single(jrdev, desc,
					      desc_bytes(desc),
					      DMA_TO_DEVICE);
	if (dma_mapping_error(jrdev, ctx->sh_desc_enc_dma)) {
		dev_err(jrdev, "unable to map shared descriptor\n");
		return -ENOMEM;
	}
#ifdef DEBUG
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	print_hex_dump(KERN_ERR, "aead enc shdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, desc,
		       desc_bytes(desc), 1);
#endif

	/*
	 * Job Descriptor and Shared Descriptors
	 * must all fit into the 64-word Descriptor h/w Buffer
	 */
	if (DESC_AEAD_DEC_LEN + DESC_JOB_IO_LEN +
	    ctx->split_key_pad_len + ctx->enckeylen <=
	    CAAM_DESC_BYTES_MAX)
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		keys_fit_inline = true;
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	desc = ctx->sh_desc_dec;

	/* aead_decrypt shared descriptor */
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	init_sh_desc(desc, HDR_SHARE_SERIAL);
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	/* Skip if already shared */
	key_jump_cmd = append_jump(desc, JUMP_JSL | JUMP_TEST_ALL |
				   JUMP_COND_SHRD);

	append_key_aead(desc, ctx, keys_fit_inline);

	/* Only propagate error immediately if shared */
	jump_cmd = append_jump(desc, JUMP_TEST_ALL);
	set_jump_tgt_here(desc, key_jump_cmd);
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	append_cmd(desc, SET_OK_NO_PROP_ERRORS | CMD_LOAD);
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	set_jump_tgt_here(desc, jump_cmd);

	/* Class 2 operation */
	append_operation(desc, ctx->class2_alg_type |
			 OP_ALG_AS_INITFINAL | OP_ALG_DECRYPT | OP_ALG_ICV_ON);

	/* assoclen + cryptlen = seqinlen - ivsize */
	append_math_sub_imm_u32(desc, REG3, SEQINLEN, IMM,
				ctx->authsize + tfm->ivsize)
	/* assoclen = (assoclen + cryptlen) - cryptlen */
	append_math_sub(desc, REG2, SEQOUTLEN, REG0, CAAM_CMD_SZ);
	append_math_sub(desc, VARSEQINLEN, REG3, REG2, CAAM_CMD_SZ);

	/* read assoc before reading payload */
	append_seq_fifo_load(desc, 0, FIFOLD_CLASS_CLASS2 | FIFOLD_TYPE_MSG |
			     KEY_VLF);

	aead_append_ld_iv(desc, tfm->ivsize);

	append_dec_op1(desc, ctx->class1_alg_type);

	/* Read and write cryptlen bytes */
	append_math_add(desc, VARSEQINLEN, ZERO, REG2, CAAM_CMD_SZ);
	append_math_add(desc, VARSEQOUTLEN, ZERO, REG2, CAAM_CMD_SZ);
	aead_append_src_dst(desc, FIFOLD_TYPE_MSG);

	/* Load ICV */
	append_seq_fifo_load(desc, ctx->authsize, FIFOLD_CLASS_CLASS2 |
			     FIFOLD_TYPE_LAST2 | FIFOLD_TYPE_ICV);
	append_dec_shr_done(desc);

	ctx->sh_desc_dec_dma = dma_map_single(jrdev, desc,
					      desc_bytes(desc),
					      DMA_TO_DEVICE);
	if (dma_mapping_error(jrdev, ctx->sh_desc_dec_dma)) {
		dev_err(jrdev, "unable to map shared descriptor\n");
		return -ENOMEM;
	}
#ifdef DEBUG
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	print_hex_dump(KERN_ERR, "aead dec shdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, desc,
		       desc_bytes(desc), 1);
#endif

	/*
	 * Job Descriptor and Shared Descriptors
	 * must all fit into the 64-word Descriptor h/w Buffer
	 */
	if (DESC_AEAD_GIVENC_LEN + DESC_JOB_IO_LEN +
	    ctx->split_key_pad_len + ctx->enckeylen <=
	    CAAM_DESC_BYTES_MAX)
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		keys_fit_inline = true;
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	/* aead_givencrypt shared descriptor */
	desc = ctx->sh_desc_givenc;

	init_sh_desc_key_aead(desc, ctx, keys_fit_inline);

	/* Generate IV */
	geniv = NFIFOENTRY_STYPE_PAD | NFIFOENTRY_DEST_DECO |
		NFIFOENTRY_DTYPE_MSG | NFIFOENTRY_LC1 |
		NFIFOENTRY_PTYPE_RND | (tfm->ivsize << NFIFOENTRY_DLEN_SHIFT);
	append_load_imm_u32(desc, geniv, LDST_CLASS_IND_CCB |
			    LDST_SRCDST_WORD_INFO_FIFO | LDST_IMM);
	append_cmd(desc, CMD_LOAD | DISABLE_AUTO_INFO_FIFO);
	append_move(desc, MOVE_SRC_INFIFO |
		    MOVE_DEST_CLASS1CTX | (tfm->ivsize << MOVE_LEN_SHIFT));
	append_cmd(desc, CMD_LOAD | ENABLE_AUTO_INFO_FIFO);

	/* Copy IV to class 1 context */
	append_move(desc, MOVE_SRC_CLASS1CTX |
		    MOVE_DEST_OUTFIFO | (tfm->ivsize << MOVE_LEN_SHIFT));

	/* Return to encryption */
	append_operation(desc, ctx->class2_alg_type |
			 OP_ALG_AS_INITFINAL | OP_ALG_ENCRYPT);

	/* ivsize + cryptlen = seqoutlen - authsize */
	append_math_sub_imm_u32(desc, REG3, SEQOUTLEN, IMM, ctx->authsize);

	/* assoclen = seqinlen - (ivsize + cryptlen) */
	append_math_sub(desc, VARSEQINLEN, SEQINLEN, REG3, CAAM_CMD_SZ);

	/* read assoc before reading payload */
	append_seq_fifo_load(desc, 0, FIFOLD_CLASS_CLASS2 | FIFOLD_TYPE_MSG |
			     KEY_VLF);

	/* Copy iv from class 1 ctx to class 2 fifo*/
	moveiv = NFIFOENTRY_STYPE_OFIFO | NFIFOENTRY_DEST_CLASS2 |
		 NFIFOENTRY_DTYPE_MSG | (tfm->ivsize << NFIFOENTRY_DLEN_SHIFT);
	append_load_imm_u32(desc, moveiv, LDST_CLASS_IND_CCB |
			    LDST_SRCDST_WORD_INFO_FIFO | LDST_IMM);
	append_load_imm_u32(desc, tfm->ivsize, LDST_CLASS_2_CCB |
			    LDST_SRCDST_WORD_DATASZ_REG | LDST_IMM);

	/* Class 1 operation */
	append_operation(desc, ctx->class1_alg_type |
			 OP_ALG_AS_INITFINAL | OP_ALG_ENCRYPT);

	/* Will write ivsize + cryptlen */
	append_math_add(desc, VARSEQOUTLEN, SEQINLEN, REG0, CAAM_CMD_SZ);

	/* Not need to reload iv */
	append_seq_fifo_load(desc, tfm->ivsize,
			     FIFOLD_CLASS_SKIP);

	/* Will read cryptlen */
	append_math_add(desc, VARSEQINLEN, SEQINLEN, REG0, CAAM_CMD_SZ);
	aead_append_src_dst(desc, FIFOLD_TYPE_MSG1OUT2);

	/* Write ICV */
	append_seq_store(desc, ctx->authsize, LDST_CLASS_2_CCB |
			 LDST_SRCDST_BYTE_CONTEXT);

	ctx->sh_desc_givenc_dma = dma_map_single(jrdev, desc,
						 desc_bytes(desc),
						 DMA_TO_DEVICE);
	if (dma_mapping_error(jrdev, ctx->sh_desc_givenc_dma)) {
		dev_err(jrdev, "unable to map shared descriptor\n");
		return -ENOMEM;
	}
#ifdef DEBUG
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	print_hex_dump(KERN_ERR, "aead givenc shdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, desc,
		       desc_bytes(desc), 1);
#endif

	return 0;
}

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static int aead_setauthsize(struct crypto_aead *authenc,
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				    unsigned int authsize)
{
	struct caam_ctx *ctx = crypto_aead_ctx(authenc);

	ctx->authsize = authsize;
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	aead_set_sh_desc(authenc);
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	return 0;
}

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static u32 gen_split_aead_key(struct caam_ctx *ctx, const u8 *key_in,
			      u32 authkeylen)
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{
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	return gen_split_key(ctx->jrdev, ctx->key, ctx->split_key_len,
			       ctx->split_key_pad_len, key_in, authkeylen,
			       ctx->alg_op);
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}

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static int aead_setkey(struct crypto_aead *aead,
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			       const u8 *key, unsigned int keylen)
{
	/* Sizes for MDHA pads (*not* keys): MD5, SHA1, 224, 256, 384, 512 */
	static const u8 mdpadlen[] = { 16, 20, 32, 32, 64, 64 };
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
	struct rtattr *rta = (void *)key;
	struct crypto_authenc_key_param *param;
	unsigned int authkeylen;
	unsigned int enckeylen;
	int ret = 0;

	param = RTA_DATA(rta);
	enckeylen = be32_to_cpu(param->enckeylen);

	key += RTA_ALIGN(rta->rta_len);
	keylen -= RTA_ALIGN(rta->rta_len);

	if (keylen < enckeylen)
		goto badkey;

	authkeylen = keylen - enckeylen;

	if (keylen > CAAM_MAX_KEY_SIZE)
		goto badkey;

	/* Pick class 2 key length from algorithm submask */
	ctx->split_key_len = mdpadlen[(ctx->alg_op & OP_ALG_ALGSEL_SUBMASK) >>
				      OP_ALG_ALGSEL_SHIFT] * 2;
	ctx->split_key_pad_len = ALIGN(ctx->split_key_len, 16);

#ifdef DEBUG
	printk(KERN_ERR "keylen %d enckeylen %d authkeylen %d\n",
	       keylen, enckeylen, authkeylen);
	printk(KERN_ERR "split_key_len %d split_key_pad_len %d\n",
	       ctx->split_key_len, ctx->split_key_pad_len);
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	print_hex_dump(KERN_ERR, "key in @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, key, keylen, 1);
#endif

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	ret = gen_split_aead_key(ctx, key, authkeylen);
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	if (ret) {
		goto badkey;
	}

	/* postpend encryption key to auth split key */
	memcpy(ctx->key + ctx->split_key_pad_len, key + authkeylen, enckeylen);

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	ctx->key_dma = dma_map_single(jrdev, ctx->key, ctx->split_key_pad_len +
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				       enckeylen, DMA_TO_DEVICE);
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	if (dma_mapping_error(jrdev, ctx->key_dma)) {
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		dev_err(jrdev, "unable to map key i/o memory\n");
		return -ENOMEM;
	}
#ifdef DEBUG
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	print_hex_dump(KERN_ERR, "ctx.key@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, ctx->key,
		       ctx->split_key_pad_len + enckeylen, 1);
#endif

	ctx->enckeylen = enckeylen;

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	ret = aead_set_sh_desc(aead);
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	if (ret) {
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		dma_unmap_single(jrdev, ctx->key_dma, ctx->split_key_pad_len +
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				 enckeylen, DMA_TO_DEVICE);
	}

	return ret;
badkey:
	crypto_aead_set_flags(aead, CRYPTO_TFM_RES_BAD_KEY_LEN);
	return -EINVAL;
}

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static int ablkcipher_setkey(struct crypto_ablkcipher *ablkcipher,
			     const u8 *key, unsigned int keylen)
{
	struct caam_ctx *ctx = crypto_ablkcipher_ctx(ablkcipher);
	struct ablkcipher_tfm *tfm = &ablkcipher->base.crt_ablkcipher;
	struct device *jrdev = ctx->jrdev;
	int ret = 0;
	u32 *key_jump_cmd, *jump_cmd;
	u32 *desc;

#ifdef DEBUG
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	print_hex_dump(KERN_ERR, "key in @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, key, keylen, 1);
#endif

	memcpy(ctx->key, key, keylen);
	ctx->key_dma = dma_map_single(jrdev, ctx->key, keylen,
				      DMA_TO_DEVICE);
	if (dma_mapping_error(jrdev, ctx->key_dma)) {
		dev_err(jrdev, "unable to map key i/o memory\n");
		return -ENOMEM;
	}
	ctx->enckeylen = keylen;

	/* ablkcipher_encrypt shared descriptor */
	desc = ctx->sh_desc_enc;
564
	init_sh_desc(desc, HDR_SHARE_SERIAL);
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	/* Skip if already shared */
	key_jump_cmd = append_jump(desc, JUMP_JSL | JUMP_TEST_ALL |
				   JUMP_COND_SHRD);

	/* Load class1 key only */
	append_key_as_imm(desc, (void *)ctx->key, ctx->enckeylen,
			  ctx->enckeylen, CLASS_1 |
			  KEY_DEST_CLASS_REG);

	set_jump_tgt_here(desc, key_jump_cmd);

	/* Propagate errors from shared to job descriptor */
577
	append_cmd(desc, SET_OK_NO_PROP_ERRORS | CMD_LOAD);
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	/* Load iv */
	append_cmd(desc, CMD_SEQ_LOAD | LDST_SRCDST_BYTE_CONTEXT |
		   LDST_CLASS_1_CCB | tfm->ivsize);

	/* Load operation */
	append_operation(desc, ctx->class1_alg_type |
			 OP_ALG_AS_INITFINAL | OP_ALG_ENCRYPT);

	/* Perform operation */
	ablkcipher_append_src_dst(desc);

	ctx->sh_desc_enc_dma = dma_map_single(jrdev, desc,
					      desc_bytes(desc),
					      DMA_TO_DEVICE);
	if (dma_mapping_error(jrdev, ctx->sh_desc_enc_dma)) {
		dev_err(jrdev, "unable to map shared descriptor\n");
		return -ENOMEM;
	}
#ifdef DEBUG
598 599
	print_hex_dump(KERN_ERR,
		       "ablkcipher enc shdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, desc,
		       desc_bytes(desc), 1);
#endif
	/* ablkcipher_decrypt shared descriptor */
	desc = ctx->sh_desc_dec;

606
	init_sh_desc(desc, HDR_SHARE_SERIAL);
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	/* Skip if already shared */
	key_jump_cmd = append_jump(desc, JUMP_JSL | JUMP_TEST_ALL |
				   JUMP_COND_SHRD);

	/* Load class1 key only */
	append_key_as_imm(desc, (void *)ctx->key, ctx->enckeylen,
			  ctx->enckeylen, CLASS_1 |
			  KEY_DEST_CLASS_REG);

	/* For aead, only propagate error immediately if shared */
	jump_cmd = append_jump(desc, JUMP_TEST_ALL);
	set_jump_tgt_here(desc, key_jump_cmd);
619
	append_cmd(desc, SET_OK_NO_PROP_ERRORS | CMD_LOAD);
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	set_jump_tgt_here(desc, jump_cmd);

	/* load IV */
	append_cmd(desc, CMD_SEQ_LOAD | LDST_SRCDST_BYTE_CONTEXT |
		   LDST_CLASS_1_CCB | tfm->ivsize);

	/* Choose operation */
	append_dec_op1(desc, ctx->class1_alg_type);

	/* Perform operation */
	ablkcipher_append_src_dst(desc);

	/* Wait for key to load before allowing propagating error */
	append_dec_shr_done(desc);

	ctx->sh_desc_dec_dma = dma_map_single(jrdev, desc,
					      desc_bytes(desc),
					      DMA_TO_DEVICE);
	if (dma_mapping_error(jrdev, ctx->sh_desc_enc_dma)) {
		dev_err(jrdev, "unable to map shared descriptor\n");
		return -ENOMEM;
	}

#ifdef DEBUG
644 645
	print_hex_dump(KERN_ERR,
		       "ablkcipher dec shdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, desc,
		       desc_bytes(desc), 1);
#endif

	return ret;
}

653
/*
654 655
 * aead_edesc - s/w-extended aead descriptor
 * @assoc_nents: number of segments in associated data (SPI+Seq) scatterlist
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 * @assoc_chained: if source is chained
657
 * @src_nents: number of segments in input scatterlist
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 * @src_chained: if source is chained
659
 * @dst_nents: number of segments in output scatterlist
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 * @dst_chained: if destination is chained
661
 * @iv_dma: dma address of iv for checking continuity and link table
662
 * @desc: h/w descriptor (variable length; must not exceed MAX_CAAM_DESCSIZE)
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 * @sec4_sg_bytes: length of dma mapped sec4_sg space
 * @sec4_sg_dma: bus physical mapped address of h/w link table
665 666
 * @hw_desc: the h/w job descriptor followed by any referenced link tables
 */
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struct aead_edesc {
668
	int assoc_nents;
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	bool assoc_chained;
670
	int src_nents;
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	bool src_chained;
672
	int dst_nents;
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	bool dst_chained;
674
	dma_addr_t iv_dma;
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	int sec4_sg_bytes;
	dma_addr_t sec4_sg_dma;
	struct sec4_sg_entry *sec4_sg;
678 679 680
	u32 hw_desc[0];
};

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/*
 * ablkcipher_edesc - s/w-extended ablkcipher descriptor
 * @src_nents: number of segments in input scatterlist
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 * @src_chained: if source is chained
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 * @dst_nents: number of segments in output scatterlist
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 * @dst_chained: if destination is chained
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 * @iv_dma: dma address of iv for checking continuity and link table
 * @desc: h/w descriptor (variable length; must not exceed MAX_CAAM_DESCSIZE)
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 * @sec4_sg_bytes: length of dma mapped sec4_sg space
 * @sec4_sg_dma: bus physical mapped address of h/w link table
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 * @hw_desc: the h/w job descriptor followed by any referenced link tables
 */
struct ablkcipher_edesc {
	int src_nents;
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	bool src_chained;
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	int dst_nents;
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	bool dst_chained;
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	dma_addr_t iv_dma;
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	int sec4_sg_bytes;
	dma_addr_t sec4_sg_dma;
	struct sec4_sg_entry *sec4_sg;
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	u32 hw_desc[0];
};

705
static void caam_unmap(struct device *dev, struct scatterlist *src,
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		       struct scatterlist *dst, int src_nents,
		       bool src_chained, int dst_nents, bool dst_chained,
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		       dma_addr_t iv_dma, int ivsize, dma_addr_t sec4_sg_dma,
		       int sec4_sg_bytes)
710
{
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	if (dst != src) {
		dma_unmap_sg_chained(dev, src, src_nents ? : 1, DMA_TO_DEVICE,
				     src_chained);
		dma_unmap_sg_chained(dev, dst, dst_nents ? : 1, DMA_FROM_DEVICE,
				     dst_chained);
716
	} else {
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		dma_unmap_sg_chained(dev, src, src_nents ? : 1,
				     DMA_BIDIRECTIONAL, src_chained);
719 720
	}

721 722
	if (iv_dma)
		dma_unmap_single(dev, iv_dma, ivsize, DMA_TO_DEVICE);
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	if (sec4_sg_bytes)
		dma_unmap_single(dev, sec4_sg_dma, sec4_sg_bytes,
725 726 727
				 DMA_TO_DEVICE);
}

728 729 730 731 732 733 734
static void aead_unmap(struct device *dev,
		       struct aead_edesc *edesc,
		       struct aead_request *req)
{
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
	int ivsize = crypto_aead_ivsize(aead);

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	dma_unmap_sg_chained(dev, req->assoc, edesc->assoc_nents,
			     DMA_TO_DEVICE, edesc->assoc_chained);
737 738

	caam_unmap(dev, req->src, req->dst,
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		   edesc->src_nents, edesc->src_chained, edesc->dst_nents,
		   edesc->dst_chained, edesc->iv_dma, ivsize,
		   edesc->sec4_sg_dma, edesc->sec4_sg_bytes);
742 743
}

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static void ablkcipher_unmap(struct device *dev,
			     struct ablkcipher_edesc *edesc,
			     struct ablkcipher_request *req)
{
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	int ivsize = crypto_ablkcipher_ivsize(ablkcipher);

	caam_unmap(dev, req->src, req->dst,
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		   edesc->src_nents, edesc->src_chained, edesc->dst_nents,
		   edesc->dst_chained, edesc->iv_dma, ivsize,
		   edesc->sec4_sg_dma, edesc->sec4_sg_bytes);
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}

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static void aead_encrypt_done(struct device *jrdev, u32 *desc, u32 err,
758 759
				   void *context)
{
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	struct aead_request *req = context;
	struct aead_edesc *edesc;
762
#ifdef DEBUG
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	struct crypto_aead *aead = crypto_aead_reqtfm(req);
764
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
765
	int ivsize = crypto_aead_ivsize(aead);
766 767 768

	dev_err(jrdev, "%s %d: err 0x%x\n", __func__, __LINE__, err);
#endif
769

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	edesc = (struct aead_edesc *)((char *)desc -
		 offsetof(struct aead_edesc, hw_desc));
772 773

	if (err) {
774
		char tmp[CAAM_ERROR_STR_MAX];
775 776 777 778

		dev_err(jrdev, "%08x: %s\n", err, caam_jr_strstatus(tmp, err));
	}

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	aead_unmap(jrdev, edesc, req);
780 781

#ifdef DEBUG
782
	print_hex_dump(KERN_ERR, "assoc  @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->assoc),
		       req->assoclen , 1);
785
	print_hex_dump(KERN_ERR, "dstiv  @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src) - ivsize,
787
		       edesc->src_nents ? 100 : ivsize, 1);
788
	print_hex_dump(KERN_ERR, "dst    @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
		       edesc->src_nents ? 100 : req->cryptlen +
791 792 793 794 795
		       ctx->authsize + 4, 1);
#endif

	kfree(edesc);

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	aead_request_complete(req, err);
797 798
}

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static void aead_decrypt_done(struct device *jrdev, u32 *desc, u32 err,
800 801
				   void *context)
{
Y
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	struct aead_request *req = context;
	struct aead_edesc *edesc;
804
#ifdef DEBUG
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	struct crypto_aead *aead = crypto_aead_reqtfm(req);
806
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
807
	int ivsize = crypto_aead_ivsize(aead);
808 809 810

	dev_err(jrdev, "%s %d: err 0x%x\n", __func__, __LINE__, err);
#endif
811

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	edesc = (struct aead_edesc *)((char *)desc -
		 offsetof(struct aead_edesc, hw_desc));
814

815
#ifdef DEBUG
816
	print_hex_dump(KERN_ERR, "dstiv  @"__stringify(__LINE__)": ",
817 818
		       DUMP_PREFIX_ADDRESS, 16, 4, req->iv,
		       ivsize, 1);
819
	print_hex_dump(KERN_ERR, "dst    @"__stringify(__LINE__)": ",
820 821 822 823
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->dst),
		       req->cryptlen, 1);
#endif

824
	if (err) {
825
		char tmp[CAAM_ERROR_STR_MAX];
826 827 828 829

		dev_err(jrdev, "%08x: %s\n", err, caam_jr_strstatus(tmp, err));
	}

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	aead_unmap(jrdev, edesc, req);
831 832 833 834 835 836 837 838

	/*
	 * verify hw auth check passed else return -EBADMSG
	 */
	if ((err & JRSTA_CCBERR_ERRID_MASK) == JRSTA_CCBERR_ERRID_ICVCHK)
		err = -EBADMSG;

#ifdef DEBUG
839
	print_hex_dump(KERN_ERR, "iphdrout@"__stringify(__LINE__)": ",
840
		       DUMP_PREFIX_ADDRESS, 16, 4,
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		       ((char *)sg_virt(req->assoc) - sizeof(struct iphdr)),
		       sizeof(struct iphdr) + req->assoclen +
		       ((req->cryptlen > 1500) ? 1500 : req->cryptlen) +
844
		       ctx->authsize + 36, 1);
Y
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	if (!err && edesc->sec4_sg_bytes) {
Y
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846
		struct scatterlist *sg = sg_last(req->src, edesc->src_nents);
847
		print_hex_dump(KERN_ERR, "sglastout@"__stringify(__LINE__)": ",
848 849 850 851
			       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(sg),
			sg->length + ctx->authsize + 16, 1);
	}
#endif
852

853 854
	kfree(edesc);

Y
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	aead_request_complete(req, err);
856 857
}

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858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879
static void ablkcipher_encrypt_done(struct device *jrdev, u32 *desc, u32 err,
				   void *context)
{
	struct ablkcipher_request *req = context;
	struct ablkcipher_edesc *edesc;
#ifdef DEBUG
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	int ivsize = crypto_ablkcipher_ivsize(ablkcipher);

	dev_err(jrdev, "%s %d: err 0x%x\n", __func__, __LINE__, err);
#endif

	edesc = (struct ablkcipher_edesc *)((char *)desc -
		 offsetof(struct ablkcipher_edesc, hw_desc));

	if (err) {
		char tmp[CAAM_ERROR_STR_MAX];

		dev_err(jrdev, "%08x: %s\n", err, caam_jr_strstatus(tmp, err));
	}

#ifdef DEBUG
880
	print_hex_dump(KERN_ERR, "dstiv  @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, req->info,
		       edesc->src_nents > 1 ? 100 : ivsize, 1);
883
	print_hex_dump(KERN_ERR, "dst    @"__stringify(__LINE__)": ",
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884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
		       edesc->dst_nents > 1 ? 100 : req->nbytes, 1);
#endif

	ablkcipher_unmap(jrdev, edesc, req);
	kfree(edesc);

	ablkcipher_request_complete(req, err);
}

static void ablkcipher_decrypt_done(struct device *jrdev, u32 *desc, u32 err,
				    void *context)
{
	struct ablkcipher_request *req = context;
	struct ablkcipher_edesc *edesc;
#ifdef DEBUG
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	int ivsize = crypto_ablkcipher_ivsize(ablkcipher);

	dev_err(jrdev, "%s %d: err 0x%x\n", __func__, __LINE__, err);
#endif

	edesc = (struct ablkcipher_edesc *)((char *)desc -
		 offsetof(struct ablkcipher_edesc, hw_desc));
	if (err) {
		char tmp[CAAM_ERROR_STR_MAX];

		dev_err(jrdev, "%08x: %s\n", err, caam_jr_strstatus(tmp, err));
	}

#ifdef DEBUG
915
	print_hex_dump(KERN_ERR, "dstiv  @"__stringify(__LINE__)": ",
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916 917
		       DUMP_PREFIX_ADDRESS, 16, 4, req->info,
		       ivsize, 1);
918
	print_hex_dump(KERN_ERR, "dst    @"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
		       edesc->dst_nents > 1 ? 100 : req->nbytes, 1);
#endif

	ablkcipher_unmap(jrdev, edesc, req);
	kfree(edesc);

	ablkcipher_request_complete(req, err);
}

929
/*
930
 * Fill in aead job descriptor
931
 */
932 933 934 935
static void init_aead_job(u32 *sh_desc, dma_addr_t ptr,
			  struct aead_edesc *edesc,
			  struct aead_request *req,
			  bool all_contig, bool encrypt)
936
{
Y
Yuan Kang 已提交
937
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
938 939 940
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	int ivsize = crypto_aead_ivsize(aead);
	int authsize = ctx->authsize;
941 942 943
	u32 *desc = edesc->hw_desc;
	u32 out_options = 0, in_options;
	dma_addr_t dst_dma, src_dma;
Y
Yuan Kang 已提交
944
	int len, sec4_sg_index = 0;
945

946
#ifdef DEBUG
947
	debug("assoclen %d cryptlen %d authsize %d\n",
Y
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948
	      req->assoclen, req->cryptlen, authsize);
949
	print_hex_dump(KERN_ERR, "assoc  @"__stringify(__LINE__)": ",
Y
Yuan Kang 已提交
950 951
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->assoc),
		       req->assoclen , 1);
952
	print_hex_dump(KERN_ERR, "presciv@"__stringify(__LINE__)": ",
953
		       DUMP_PREFIX_ADDRESS, 16, 4, req->iv,
954
		       edesc->src_nents ? 100 : ivsize, 1);
955
	print_hex_dump(KERN_ERR, "src    @"__stringify(__LINE__)": ",
Y
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956
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
957
			edesc->src_nents ? 100 : req->cryptlen, 1);
958
	print_hex_dump(KERN_ERR, "shrdesc@"__stringify(__LINE__)": ",
959 960 961 962
		       DUMP_PREFIX_ADDRESS, 16, 4, sh_desc,
		       desc_bytes(sh_desc), 1);
#endif

963 964
	len = desc_len(sh_desc);
	init_job_desc_shared(desc, ptr, len, HDR_SHARE_DEFER | HDR_REVERSE);
965

966 967 968
	if (all_contig) {
		src_dma = sg_dma_address(req->assoc);
		in_options = 0;
969
	} else {
Y
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970 971 972
		src_dma = edesc->sec4_sg_dma;
		sec4_sg_index += (edesc->assoc_nents ? : 1) + 1 +
				 (edesc->src_nents ? : 1);
973
		in_options = LDST_SGF;
974
	}
975 976 977 978 979 980
	if (encrypt)
		append_seq_in_ptr(desc, src_dma, req->assoclen + ivsize +
				  req->cryptlen - authsize, in_options);
	else
		append_seq_in_ptr(desc, src_dma, req->assoclen + ivsize +
				  req->cryptlen, in_options);
981

982 983 984 985
	if (likely(req->src == req->dst)) {
		if (all_contig) {
			dst_dma = sg_dma_address(req->src);
		} else {
Y
Yuan Kang 已提交
986
			dst_dma = src_dma + sizeof(struct sec4_sg_entry) *
987 988 989
				  ((edesc->assoc_nents ? : 1) + 1);
			out_options = LDST_SGF;
		}
990 991
	} else {
		if (!edesc->dst_nents) {
Y
Yuan Kang 已提交
992
			dst_dma = sg_dma_address(req->dst);
993
		} else {
Y
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994 995 996
			dst_dma = edesc->sec4_sg_dma +
				  sec4_sg_index *
				  sizeof(struct sec4_sg_entry);
997
			out_options = LDST_SGF;
998 999 1000
		}
	}
	if (encrypt)
1001
		append_seq_out_ptr(desc, dst_dma, req->cryptlen, out_options);
1002
	else
1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021
		append_seq_out_ptr(desc, dst_dma, req->cryptlen - authsize,
				   out_options);
}

/*
 * Fill in aead givencrypt job descriptor
 */
static void init_aead_giv_job(u32 *sh_desc, dma_addr_t ptr,
			      struct aead_edesc *edesc,
			      struct aead_request *req,
			      int contig)
{
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	int ivsize = crypto_aead_ivsize(aead);
	int authsize = ctx->authsize;
	u32 *desc = edesc->hw_desc;
	u32 out_options = 0, in_options;
	dma_addr_t dst_dma, src_dma;
Y
Yuan Kang 已提交
1022
	int len, sec4_sg_index = 0;
1023 1024

#ifdef DEBUG
1025 1026
	debug("assoclen %d cryptlen %d authsize %d\n",
	      req->assoclen, req->cryptlen, authsize);
1027
	print_hex_dump(KERN_ERR, "assoc  @"__stringify(__LINE__)": ",
1028 1029
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->assoc),
		       req->assoclen , 1);
1030
	print_hex_dump(KERN_ERR, "presciv@"__stringify(__LINE__)": ",
1031
		       DUMP_PREFIX_ADDRESS, 16, 4, req->iv, ivsize, 1);
1032
	print_hex_dump(KERN_ERR, "src    @"__stringify(__LINE__)": ",
1033 1034
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
			edesc->src_nents > 1 ? 100 : req->cryptlen, 1);
1035
	print_hex_dump(KERN_ERR, "shrdesc@"__stringify(__LINE__)": ",
1036 1037
		       DUMP_PREFIX_ADDRESS, 16, 4, sh_desc,
		       desc_bytes(sh_desc), 1);
1038 1039
#endif

1040 1041 1042 1043 1044 1045 1046
	len = desc_len(sh_desc);
	init_job_desc_shared(desc, ptr, len, HDR_SHARE_DEFER | HDR_REVERSE);

	if (contig & GIV_SRC_CONTIG) {
		src_dma = sg_dma_address(req->assoc);
		in_options = 0;
	} else {
Y
Yuan Kang 已提交
1047 1048
		src_dma = edesc->sec4_sg_dma;
		sec4_sg_index += edesc->assoc_nents + 1 + edesc->src_nents;
1049
		in_options = LDST_SGF;
1050
	}
1051 1052
	append_seq_in_ptr(desc, src_dma, req->assoclen + ivsize +
			  req->cryptlen - authsize, in_options);
1053

1054 1055 1056 1057
	if (contig & GIV_DST_CONTIG) {
		dst_dma = edesc->iv_dma;
	} else {
		if (likely(req->src == req->dst)) {
Y
Yuan Kang 已提交
1058
			dst_dma = src_dma + sizeof(struct sec4_sg_entry) *
1059 1060 1061
				  edesc->assoc_nents;
			out_options = LDST_SGF;
		} else {
Y
Yuan Kang 已提交
1062 1063 1064
			dst_dma = edesc->sec4_sg_dma +
				  sec4_sg_index *
				  sizeof(struct sec4_sg_entry);
1065 1066 1067 1068 1069
			out_options = LDST_SGF;
		}
	}

	append_seq_out_ptr(desc, dst_dma, ivsize + req->cryptlen, out_options);
1070 1071
}

Y
Yuan Kang 已提交
1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084
/*
 * Fill in ablkcipher job descriptor
 */
static void init_ablkcipher_job(u32 *sh_desc, dma_addr_t ptr,
				struct ablkcipher_edesc *edesc,
				struct ablkcipher_request *req,
				bool iv_contig)
{
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	int ivsize = crypto_ablkcipher_ivsize(ablkcipher);
	u32 *desc = edesc->hw_desc;
	u32 out_options = 0, in_options;
	dma_addr_t dst_dma, src_dma;
Y
Yuan Kang 已提交
1085
	int len, sec4_sg_index = 0;
Y
Yuan Kang 已提交
1086 1087

#ifdef DEBUG
1088
	print_hex_dump(KERN_ERR, "presciv@"__stringify(__LINE__)": ",
Y
Yuan Kang 已提交
1089 1090
		       DUMP_PREFIX_ADDRESS, 16, 4, req->info,
		       ivsize, 1);
1091
	print_hex_dump(KERN_ERR, "src    @"__stringify(__LINE__)": ",
Y
Yuan Kang 已提交
1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
		       edesc->src_nents ? 100 : req->nbytes, 1);
#endif

	len = desc_len(sh_desc);
	init_job_desc_shared(desc, ptr, len, HDR_SHARE_DEFER | HDR_REVERSE);

	if (iv_contig) {
		src_dma = edesc->iv_dma;
		in_options = 0;
	} else {
Y
Yuan Kang 已提交
1103 1104
		src_dma = edesc->sec4_sg_dma;
		sec4_sg_index += (iv_contig ? 0 : 1) + edesc->src_nents;
Y
Yuan Kang 已提交
1105 1106 1107 1108 1109 1110 1111 1112
		in_options = LDST_SGF;
	}
	append_seq_in_ptr(desc, src_dma, req->nbytes + ivsize, in_options);

	if (likely(req->src == req->dst)) {
		if (!edesc->src_nents && iv_contig) {
			dst_dma = sg_dma_address(req->src);
		} else {
Y
Yuan Kang 已提交
1113 1114
			dst_dma = edesc->sec4_sg_dma +
				sizeof(struct sec4_sg_entry);
Y
Yuan Kang 已提交
1115 1116 1117 1118 1119 1120
			out_options = LDST_SGF;
		}
	} else {
		if (!edesc->dst_nents) {
			dst_dma = sg_dma_address(req->dst);
		} else {
Y
Yuan Kang 已提交
1121 1122
			dst_dma = edesc->sec4_sg_dma +
				sec4_sg_index * sizeof(struct sec4_sg_entry);
Y
Yuan Kang 已提交
1123 1124 1125 1126 1127 1128
			out_options = LDST_SGF;
		}
	}
	append_seq_out_ptr(desc, dst_dma, req->nbytes, out_options);
}

1129
/*
1130
 * allocate and map the aead extended descriptor
1131
 */
Y
Yuan Kang 已提交
1132
static struct aead_edesc *aead_edesc_alloc(struct aead_request *req,
1133
					   int desc_bytes, bool *all_contig_ptr)
1134
{
Y
Yuan Kang 已提交
1135
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
1136 1137
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
1138 1139 1140
	gfp_t flags = (req->base.flags & (CRYPTO_TFM_REQ_MAY_BACKLOG |
		       CRYPTO_TFM_REQ_MAY_SLEEP)) ? GFP_KERNEL : GFP_ATOMIC;
	int assoc_nents, src_nents, dst_nents = 0;
Y
Yuan Kang 已提交
1141
	struct aead_edesc *edesc;
1142 1143 1144
	dma_addr_t iv_dma = 0;
	int sgc;
	bool all_contig = true;
Y
Yuan Kang 已提交
1145
	bool assoc_chained = false, src_chained = false, dst_chained = false;
1146
	int ivsize = crypto_aead_ivsize(aead);
Y
Yuan Kang 已提交
1147
	int sec4_sg_index, sec4_sg_len = 0, sec4_sg_bytes;
1148

Y
Yuan Kang 已提交
1149 1150
	assoc_nents = sg_count(req->assoc, req->assoclen, &assoc_chained);
	src_nents = sg_count(req->src, req->cryptlen, &src_chained);
1151 1152

	if (unlikely(req->dst != req->src))
Y
Yuan Kang 已提交
1153
		dst_nents = sg_count(req->dst, req->cryptlen, &dst_chained);
1154

Y
Yuan Kang 已提交
1155
	sgc = dma_map_sg_chained(jrdev, req->assoc, assoc_nents ? : 1,
1156
				 DMA_TO_DEVICE, assoc_chained);
1157
	if (likely(req->src == req->dst)) {
Y
Yuan Kang 已提交
1158 1159
		sgc = dma_map_sg_chained(jrdev, req->src, src_nents ? : 1,
					 DMA_BIDIRECTIONAL, src_chained);
1160
	} else {
Y
Yuan Kang 已提交
1161 1162 1163 1164
		sgc = dma_map_sg_chained(jrdev, req->src, src_nents ? : 1,
					 DMA_TO_DEVICE, src_chained);
		sgc = dma_map_sg_chained(jrdev, req->dst, dst_nents ? : 1,
					 DMA_FROM_DEVICE, dst_chained);
1165 1166 1167 1168 1169 1170 1171 1172 1173 1174
	}

	/* Check if data are contiguous */
	iv_dma = dma_map_single(jrdev, req->iv, ivsize, DMA_TO_DEVICE);
	if (assoc_nents || sg_dma_address(req->assoc) + req->assoclen !=
	    iv_dma || src_nents || iv_dma + ivsize !=
	    sg_dma_address(req->src)) {
		all_contig = false;
		assoc_nents = assoc_nents ? : 1;
		src_nents = src_nents ? : 1;
Y
Yuan Kang 已提交
1175
		sec4_sg_len = assoc_nents + 1 + src_nents;
1176
	}
Y
Yuan Kang 已提交
1177
	sec4_sg_len += dst_nents;
1178

Y
Yuan Kang 已提交
1179
	sec4_sg_bytes = sec4_sg_len * sizeof(struct sec4_sg_entry);
1180 1181

	/* allocate space for base edesc and hw desc commands, link tables */
Y
Yuan Kang 已提交
1182
	edesc = kmalloc(sizeof(struct aead_edesc) + desc_bytes +
Y
Yuan Kang 已提交
1183
			sec4_sg_bytes, GFP_DMA | flags);
1184 1185 1186 1187 1188 1189
	if (!edesc) {
		dev_err(jrdev, "could not allocate extended descriptor\n");
		return ERR_PTR(-ENOMEM);
	}

	edesc->assoc_nents = assoc_nents;
Y
Yuan Kang 已提交
1190
	edesc->assoc_chained = assoc_chained;
1191
	edesc->src_nents = src_nents;
Y
Yuan Kang 已提交
1192
	edesc->src_chained = src_chained;
1193
	edesc->dst_nents = dst_nents;
Y
Yuan Kang 已提交
1194
	edesc->dst_chained = dst_chained;
1195
	edesc->iv_dma = iv_dma;
Y
Yuan Kang 已提交
1196 1197 1198 1199 1200
	edesc->sec4_sg_bytes = sec4_sg_bytes;
	edesc->sec4_sg = (void *)edesc + sizeof(struct aead_edesc) +
			 desc_bytes;
	edesc->sec4_sg_dma = dma_map_single(jrdev, edesc->sec4_sg,
					    sec4_sg_bytes, DMA_TO_DEVICE);
1201 1202
	*all_contig_ptr = all_contig;

Y
Yuan Kang 已提交
1203
	sec4_sg_index = 0;
1204
	if (!all_contig) {
Y
Yuan Kang 已提交
1205 1206 1207 1208 1209 1210
		sg_to_sec4_sg(req->assoc,
			      (assoc_nents ? : 1),
			      edesc->sec4_sg +
			      sec4_sg_index, 0);
		sec4_sg_index += assoc_nents ? : 1;
		dma_to_sec4_sg_one(edesc->sec4_sg + sec4_sg_index,
1211
				   iv_dma, ivsize, 0);
Y
Yuan Kang 已提交
1212 1213 1214 1215 1216 1217
		sec4_sg_index += 1;
		sg_to_sec4_sg_last(req->src,
				   (src_nents ? : 1),
				   edesc->sec4_sg +
				   sec4_sg_index, 0);
		sec4_sg_index += src_nents ? : 1;
1218 1219
	}
	if (dst_nents) {
Y
Yuan Kang 已提交
1220 1221
		sg_to_sec4_sg_last(req->dst, dst_nents,
				   edesc->sec4_sg + sec4_sg_index, 0);
1222
	}
1223 1224 1225 1226

	return edesc;
}

Y
Yuan Kang 已提交
1227
static int aead_encrypt(struct aead_request *req)
1228
{
Y
Yuan Kang 已提交
1229 1230
	struct aead_edesc *edesc;
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
1231 1232
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
1233
	bool all_contig;
1234
	u32 *desc;
1235 1236 1237
	int ret = 0;

	req->cryptlen += ctx->authsize;
1238 1239

	/* allocate extended descriptor */
1240 1241
	edesc = aead_edesc_alloc(req, DESC_JOB_IO_LEN *
				 CAAM_CMD_SZ, &all_contig);
1242 1243 1244
	if (IS_ERR(edesc))
		return PTR_ERR(edesc);

1245 1246 1247 1248
	/* Create and submit job descriptor */
	init_aead_job(ctx->sh_desc_enc, ctx->sh_desc_enc_dma, edesc, req,
		      all_contig, true);
#ifdef DEBUG
1249
	print_hex_dump(KERN_ERR, "aead jobdesc@"__stringify(__LINE__)": ",
1250 1251 1252
		       DUMP_PREFIX_ADDRESS, 16, 4, edesc->hw_desc,
		       desc_bytes(edesc->hw_desc), 1);
#endif
1253

1254 1255 1256 1257 1258 1259 1260 1261
	desc = edesc->hw_desc;
	ret = caam_jr_enqueue(jrdev, desc, aead_encrypt_done, req);
	if (!ret) {
		ret = -EINPROGRESS;
	} else {
		aead_unmap(jrdev, edesc, req);
		kfree(edesc);
	}
1262

1263
	return ret;
1264 1265
}

Y
Yuan Kang 已提交
1266
static int aead_decrypt(struct aead_request *req)
1267
{
1268
	struct aead_edesc *edesc;
1269 1270 1271
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
1272
	bool all_contig;
1273
	u32 *desc;
1274
	int ret = 0;
1275 1276

	/* allocate extended descriptor */
1277 1278
	edesc = aead_edesc_alloc(req, DESC_JOB_IO_LEN *
				 CAAM_CMD_SZ, &all_contig);
1279 1280 1281
	if (IS_ERR(edesc))
		return PTR_ERR(edesc);

1282
#ifdef DEBUG
1283
	print_hex_dump(KERN_ERR, "dec src@"__stringify(__LINE__)": ",
1284 1285 1286 1287 1288 1289 1290 1291
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
		       req->cryptlen, 1);
#endif

	/* Create and submit job descriptor*/
	init_aead_job(ctx->sh_desc_dec,
		      ctx->sh_desc_dec_dma, edesc, req, all_contig, false);
#ifdef DEBUG
1292
	print_hex_dump(KERN_ERR, "aead jobdesc@"__stringify(__LINE__)": ",
1293 1294 1295 1296
		       DUMP_PREFIX_ADDRESS, 16, 4, edesc->hw_desc,
		       desc_bytes(edesc->hw_desc), 1);
#endif

1297
	desc = edesc->hw_desc;
1298 1299 1300 1301 1302 1303 1304
	ret = caam_jr_enqueue(jrdev, desc, aead_decrypt_done, req);
	if (!ret) {
		ret = -EINPROGRESS;
	} else {
		aead_unmap(jrdev, edesc, req);
		kfree(edesc);
	}
1305

1306 1307
	return ret;
}
1308

1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327
/*
 * allocate and map the aead extended descriptor for aead givencrypt
 */
static struct aead_edesc *aead_giv_edesc_alloc(struct aead_givcrypt_request
					       *greq, int desc_bytes,
					       u32 *contig_ptr)
{
	struct aead_request *req = &greq->areq;
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
	gfp_t flags = (req->base.flags & (CRYPTO_TFM_REQ_MAY_BACKLOG |
		       CRYPTO_TFM_REQ_MAY_SLEEP)) ? GFP_KERNEL : GFP_ATOMIC;
	int assoc_nents, src_nents, dst_nents = 0;
	struct aead_edesc *edesc;
	dma_addr_t iv_dma = 0;
	int sgc;
	u32 contig = GIV_SRC_CONTIG | GIV_DST_CONTIG;
	int ivsize = crypto_aead_ivsize(aead);
Y
Yuan Kang 已提交
1328
	bool assoc_chained = false, src_chained = false, dst_chained = false;
Y
Yuan Kang 已提交
1329
	int sec4_sg_index, sec4_sg_len = 0, sec4_sg_bytes;
1330

Y
Yuan Kang 已提交
1331 1332
	assoc_nents = sg_count(req->assoc, req->assoclen, &assoc_chained);
	src_nents = sg_count(req->src, req->cryptlen, &src_chained);
1333

1334
	if (unlikely(req->dst != req->src))
Y
Yuan Kang 已提交
1335
		dst_nents = sg_count(req->dst, req->cryptlen, &dst_chained);
1336

Y
Yuan Kang 已提交
1337
	sgc = dma_map_sg_chained(jrdev, req->assoc, assoc_nents ? : 1,
1338
				 DMA_TO_DEVICE, assoc_chained);
1339
	if (likely(req->src == req->dst)) {
Y
Yuan Kang 已提交
1340 1341
		sgc = dma_map_sg_chained(jrdev, req->src, src_nents ? : 1,
					 DMA_BIDIRECTIONAL, src_chained);
1342
	} else {
Y
Yuan Kang 已提交
1343 1344 1345 1346
		sgc = dma_map_sg_chained(jrdev, req->src, src_nents ? : 1,
					 DMA_TO_DEVICE, src_chained);
		sgc = dma_map_sg_chained(jrdev, req->dst, dst_nents ? : 1,
					 DMA_FROM_DEVICE, dst_chained);
1347 1348 1349 1350 1351 1352 1353 1354 1355
	}

	/* Check if data are contiguous */
	iv_dma = dma_map_single(jrdev, greq->giv, ivsize, DMA_TO_DEVICE);
	if (assoc_nents || sg_dma_address(req->assoc) + req->assoclen !=
	    iv_dma || src_nents || iv_dma + ivsize != sg_dma_address(req->src))
		contig &= ~GIV_SRC_CONTIG;
	if (dst_nents || iv_dma + ivsize != sg_dma_address(req->dst))
		contig &= ~GIV_DST_CONTIG;
K
Kim Phillips 已提交
1356 1357 1358 1359
	if (unlikely(req->src != req->dst)) {
		dst_nents = dst_nents ? : 1;
		sec4_sg_len += 1;
	}
1360 1361 1362
	if (!(contig & GIV_SRC_CONTIG)) {
		assoc_nents = assoc_nents ? : 1;
		src_nents = src_nents ? : 1;
Y
Yuan Kang 已提交
1363
		sec4_sg_len += assoc_nents + 1 + src_nents;
1364 1365 1366
		if (likely(req->src == req->dst))
			contig &= ~GIV_DST_CONTIG;
	}
Y
Yuan Kang 已提交
1367
	sec4_sg_len += dst_nents;
1368

Y
Yuan Kang 已提交
1369
	sec4_sg_bytes = sec4_sg_len * sizeof(struct sec4_sg_entry);
1370 1371 1372

	/* allocate space for base edesc and hw desc commands, link tables */
	edesc = kmalloc(sizeof(struct aead_edesc) + desc_bytes +
Y
Yuan Kang 已提交
1373
			sec4_sg_bytes, GFP_DMA | flags);
1374 1375 1376 1377 1378 1379
	if (!edesc) {
		dev_err(jrdev, "could not allocate extended descriptor\n");
		return ERR_PTR(-ENOMEM);
	}

	edesc->assoc_nents = assoc_nents;
Y
Yuan Kang 已提交
1380
	edesc->assoc_chained = assoc_chained;
1381
	edesc->src_nents = src_nents;
Y
Yuan Kang 已提交
1382
	edesc->src_chained = src_chained;
1383
	edesc->dst_nents = dst_nents;
Y
Yuan Kang 已提交
1384
	edesc->dst_chained = dst_chained;
1385
	edesc->iv_dma = iv_dma;
Y
Yuan Kang 已提交
1386 1387 1388 1389 1390
	edesc->sec4_sg_bytes = sec4_sg_bytes;
	edesc->sec4_sg = (void *)edesc + sizeof(struct aead_edesc) +
			 desc_bytes;
	edesc->sec4_sg_dma = dma_map_single(jrdev, edesc->sec4_sg,
					    sec4_sg_bytes, DMA_TO_DEVICE);
1391 1392
	*contig_ptr = contig;

Y
Yuan Kang 已提交
1393
	sec4_sg_index = 0;
1394
	if (!(contig & GIV_SRC_CONTIG)) {
Y
Yuan Kang 已提交
1395 1396 1397 1398 1399
		sg_to_sec4_sg(req->assoc, assoc_nents,
			      edesc->sec4_sg +
			      sec4_sg_index, 0);
		sec4_sg_index += assoc_nents;
		dma_to_sec4_sg_one(edesc->sec4_sg + sec4_sg_index,
1400
				   iv_dma, ivsize, 0);
Y
Yuan Kang 已提交
1401 1402 1403 1404 1405
		sec4_sg_index += 1;
		sg_to_sec4_sg_last(req->src, src_nents,
				   edesc->sec4_sg +
				   sec4_sg_index, 0);
		sec4_sg_index += src_nents;
1406 1407
	}
	if (unlikely(req->src != req->dst && !(contig & GIV_DST_CONTIG))) {
Y
Yuan Kang 已提交
1408
		dma_to_sec4_sg_one(edesc->sec4_sg + sec4_sg_index,
1409
				   iv_dma, ivsize, 0);
Y
Yuan Kang 已提交
1410 1411 1412
		sec4_sg_index += 1;
		sg_to_sec4_sg_last(req->dst, dst_nents,
				   edesc->sec4_sg + sec4_sg_index, 0);
1413 1414 1415
	}

	return edesc;
1416 1417
}

Y
Yuan Kang 已提交
1418
static int aead_givencrypt(struct aead_givcrypt_request *areq)
1419
{
Y
Yuan Kang 已提交
1420 1421 1422
	struct aead_request *req = &areq->areq;
	struct aead_edesc *edesc;
	struct crypto_aead *aead = crypto_aead_reqtfm(req);
1423 1424
	struct caam_ctx *ctx = crypto_aead_ctx(aead);
	struct device *jrdev = ctx->jrdev;
1425
	u32 contig;
1426
	u32 *desc;
1427
	int ret = 0;
1428

1429
	req->cryptlen += ctx->authsize;
1430 1431

	/* allocate extended descriptor */
1432 1433 1434
	edesc = aead_giv_edesc_alloc(areq, DESC_JOB_IO_LEN *
				     CAAM_CMD_SZ, &contig);

1435 1436 1437
	if (IS_ERR(edesc))
		return PTR_ERR(edesc);

1438
#ifdef DEBUG
1439
	print_hex_dump(KERN_ERR, "giv src@"__stringify(__LINE__)": ",
1440 1441 1442
		       DUMP_PREFIX_ADDRESS, 16, 4, sg_virt(req->src),
		       req->cryptlen, 1);
#endif
1443

1444 1445 1446 1447
	/* Create and submit job descriptor*/
	init_aead_giv_job(ctx->sh_desc_givenc,
			  ctx->sh_desc_givenc_dma, edesc, req, contig);
#ifdef DEBUG
1448
	print_hex_dump(KERN_ERR, "aead jobdesc@"__stringify(__LINE__)": ",
1449 1450 1451
		       DUMP_PREFIX_ADDRESS, 16, 4, edesc->hw_desc,
		       desc_bytes(edesc->hw_desc), 1);
#endif
1452

1453 1454 1455 1456 1457 1458 1459 1460
	desc = edesc->hw_desc;
	ret = caam_jr_enqueue(jrdev, desc, aead_encrypt_done, req);
	if (!ret) {
		ret = -EINPROGRESS;
	} else {
		aead_unmap(jrdev, edesc, req);
		kfree(edesc);
	}
1461

1462
	return ret;
1463 1464
}

Y
Yuan Kang 已提交
1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477
/*
 * allocate and map the ablkcipher extended descriptor for ablkcipher
 */
static struct ablkcipher_edesc *ablkcipher_edesc_alloc(struct ablkcipher_request
						       *req, int desc_bytes,
						       bool *iv_contig_out)
{
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	struct caam_ctx *ctx = crypto_ablkcipher_ctx(ablkcipher);
	struct device *jrdev = ctx->jrdev;
	gfp_t flags = (req->base.flags & (CRYPTO_TFM_REQ_MAY_BACKLOG |
					  CRYPTO_TFM_REQ_MAY_SLEEP)) ?
		       GFP_KERNEL : GFP_ATOMIC;
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	int src_nents, dst_nents = 0, sec4_sg_bytes;
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	struct ablkcipher_edesc *edesc;
	dma_addr_t iv_dma = 0;
	bool iv_contig = false;
	int sgc;
	int ivsize = crypto_ablkcipher_ivsize(ablkcipher);
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	bool src_chained = false, dst_chained = false;
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	int sec4_sg_index;
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	src_nents = sg_count(req->src, req->nbytes, &src_chained);
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	if (req->dst != req->src)
		dst_nents = sg_count(req->dst, req->nbytes, &dst_chained);
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	if (likely(req->src == req->dst)) {
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		sgc = dma_map_sg_chained(jrdev, req->src, src_nents ? : 1,
					 DMA_BIDIRECTIONAL, src_chained);
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	} else {
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		sgc = dma_map_sg_chained(jrdev, req->src, src_nents ? : 1,
					 DMA_TO_DEVICE, src_chained);
		sgc = dma_map_sg_chained(jrdev, req->dst, dst_nents ? : 1,
					 DMA_FROM_DEVICE, dst_chained);
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	}

	/*
	 * Check if iv can be contiguous with source and destination.
	 * If so, include it. If not, create scatterlist.
	 */
	iv_dma = dma_map_single(jrdev, req->info, ivsize, DMA_TO_DEVICE);
	if (!src_nents && iv_dma + ivsize == sg_dma_address(req->src))
		iv_contig = true;
	else
		src_nents = src_nents ? : 1;
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	sec4_sg_bytes = ((iv_contig ? 0 : 1) + src_nents + dst_nents) *
			sizeof(struct sec4_sg_entry);
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	/* allocate space for base edesc and hw desc commands, link tables */
	edesc = kmalloc(sizeof(struct ablkcipher_edesc) + desc_bytes +
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			sec4_sg_bytes, GFP_DMA | flags);
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	if (!edesc) {
		dev_err(jrdev, "could not allocate extended descriptor\n");
		return ERR_PTR(-ENOMEM);
	}

	edesc->src_nents = src_nents;
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	edesc->src_chained = src_chained;
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	edesc->dst_nents = dst_nents;
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	edesc->dst_chained = dst_chained;
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	edesc->sec4_sg_bytes = sec4_sg_bytes;
	edesc->sec4_sg = (void *)edesc + sizeof(struct ablkcipher_edesc) +
			 desc_bytes;
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	sec4_sg_index = 0;
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	if (!iv_contig) {
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		dma_to_sec4_sg_one(edesc->sec4_sg, iv_dma, ivsize, 0);
		sg_to_sec4_sg_last(req->src, src_nents,
				   edesc->sec4_sg + 1, 0);
		sec4_sg_index += 1 + src_nents;
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	}

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	if (dst_nents) {
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		sg_to_sec4_sg_last(req->dst, dst_nents,
			edesc->sec4_sg + sec4_sg_index, 0);
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	}

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	edesc->sec4_sg_dma = dma_map_single(jrdev, edesc->sec4_sg,
					    sec4_sg_bytes, DMA_TO_DEVICE);
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	edesc->iv_dma = iv_dma;

#ifdef DEBUG
1548
	print_hex_dump(KERN_ERR, "ablkcipher sec4_sg@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, edesc->sec4_sg,
		       sec4_sg_bytes, 1);
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#endif

	*iv_contig_out = iv_contig;
	return edesc;
}

static int ablkcipher_encrypt(struct ablkcipher_request *req)
{
	struct ablkcipher_edesc *edesc;
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	struct caam_ctx *ctx = crypto_ablkcipher_ctx(ablkcipher);
	struct device *jrdev = ctx->jrdev;
	bool iv_contig;
	u32 *desc;
	int ret = 0;

	/* allocate extended descriptor */
	edesc = ablkcipher_edesc_alloc(req, DESC_JOB_IO_LEN *
				       CAAM_CMD_SZ, &iv_contig);
	if (IS_ERR(edesc))
		return PTR_ERR(edesc);

	/* Create and submit job descriptor*/
	init_ablkcipher_job(ctx->sh_desc_enc,
		ctx->sh_desc_enc_dma, edesc, req, iv_contig);
#ifdef DEBUG
1577
	print_hex_dump(KERN_ERR, "ablkcipher jobdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, edesc->hw_desc,
		       desc_bytes(edesc->hw_desc), 1);
#endif
	desc = edesc->hw_desc;
	ret = caam_jr_enqueue(jrdev, desc, ablkcipher_encrypt_done, req);

	if (!ret) {
		ret = -EINPROGRESS;
	} else {
		ablkcipher_unmap(jrdev, edesc, req);
		kfree(edesc);
	}

	return ret;
}

static int ablkcipher_decrypt(struct ablkcipher_request *req)
{
	struct ablkcipher_edesc *edesc;
	struct crypto_ablkcipher *ablkcipher = crypto_ablkcipher_reqtfm(req);
	struct caam_ctx *ctx = crypto_ablkcipher_ctx(ablkcipher);
	struct device *jrdev = ctx->jrdev;
	bool iv_contig;
	u32 *desc;
	int ret = 0;

	/* allocate extended descriptor */
	edesc = ablkcipher_edesc_alloc(req, DESC_JOB_IO_LEN *
				       CAAM_CMD_SZ, &iv_contig);
	if (IS_ERR(edesc))
		return PTR_ERR(edesc);

	/* Create and submit job descriptor*/
	init_ablkcipher_job(ctx->sh_desc_dec,
		ctx->sh_desc_dec_dma, edesc, req, iv_contig);
	desc = edesc->hw_desc;
#ifdef DEBUG
1615
	print_hex_dump(KERN_ERR, "ablkcipher jobdesc@"__stringify(__LINE__)": ",
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		       DUMP_PREFIX_ADDRESS, 16, 4, edesc->hw_desc,
		       desc_bytes(edesc->hw_desc), 1);
#endif

	ret = caam_jr_enqueue(jrdev, desc, ablkcipher_decrypt_done, req);
	if (!ret) {
		ret = -EINPROGRESS;
	} else {
		ablkcipher_unmap(jrdev, edesc, req);
		kfree(edesc);
	}

	return ret;
}

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#define template_aead		template_u.aead
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#define template_ablkcipher	template_u.ablkcipher
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struct caam_alg_template {
	char name[CRYPTO_MAX_ALG_NAME];
	char driver_name[CRYPTO_MAX_ALG_NAME];
	unsigned int blocksize;
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	u32 type;
	union {
		struct ablkcipher_alg ablkcipher;
		struct aead_alg aead;
		struct blkcipher_alg blkcipher;
		struct cipher_alg cipher;
		struct compress_alg compress;
		struct rng_alg rng;
	} template_u;
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	u32 class1_alg_type;
	u32 class2_alg_type;
	u32 alg_op;
};

static struct caam_alg_template driver_algs[] = {
1652
	/* single-pass ipsec_esp descriptor */
1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671
	{
		.name = "authenc(hmac(md5),cbc(aes))",
		.driver_name = "authenc-hmac-md5-cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = AES_BLOCK_SIZE,
			.maxauthsize = MD5_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_MD5 | OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_MD5 | OP_ALG_AAI_HMAC,
	},
1672 1673 1674 1675
	{
		.name = "authenc(hmac(sha1),cbc(aes))",
		.driver_name = "authenc-hmac-sha1-cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
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			.geniv = "<built-in>",
			.ivsize = AES_BLOCK_SIZE,
			.maxauthsize = SHA1_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA1 | OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA1 | OP_ALG_AAI_HMAC,
	},
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	{
		.name = "authenc(hmac(sha224),cbc(aes))",
		.driver_name = "authenc-hmac-sha224-cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
1695
		.type = CRYPTO_ALG_TYPE_AEAD,
1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = AES_BLOCK_SIZE,
			.maxauthsize = SHA224_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA224 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA224 | OP_ALG_AAI_HMAC,
	},
1711 1712 1713 1714
	{
		.name = "authenc(hmac(sha256),cbc(aes))",
		.driver_name = "authenc-hmac-sha256-cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
1722 1723 1724 1725 1726 1727 1728 1729 1730
			.geniv = "<built-in>",
			.ivsize = AES_BLOCK_SIZE,
			.maxauthsize = SHA256_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA256 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA256 | OP_ALG_AAI_HMAC,
	},
1731 1732 1733 1734
	{
		.name = "authenc(hmac(sha384),cbc(aes))",
		.driver_name = "authenc-hmac-sha384-cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
1735
		.type = CRYPTO_ALG_TYPE_AEAD,
1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = AES_BLOCK_SIZE,
			.maxauthsize = SHA384_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA384 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA384 | OP_ALG_AAI_HMAC,
	},

1752 1753 1754 1755
	{
		.name = "authenc(hmac(sha512),cbc(aes))",
		.driver_name = "authenc-hmac-sha512-cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
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			.geniv = "<built-in>",
			.ivsize = AES_BLOCK_SIZE,
			.maxauthsize = SHA512_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA512 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA512 | OP_ALG_AAI_HMAC,
	},
1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790
	{
		.name = "authenc(hmac(md5),cbc(des3_ede))",
		.driver_name = "authenc-hmac-md5-cbc-des3_ede-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = DES3_EDE_BLOCK_SIZE,
			.maxauthsize = MD5_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_MD5 | OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_MD5 | OP_ALG_AAI_HMAC,
	},
1791 1792 1793 1794
	{
		.name = "authenc(hmac(sha1),cbc(des3_ede))",
		.driver_name = "authenc-hmac-sha1-cbc-des3_ede-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
1802 1803 1804 1805 1806 1807 1808 1809
			.geniv = "<built-in>",
			.ivsize = DES3_EDE_BLOCK_SIZE,
			.maxauthsize = SHA1_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA1 | OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA1 | OP_ALG_AAI_HMAC,
	},
1810 1811 1812 1813
	{
		.name = "authenc(hmac(sha224),cbc(des3_ede))",
		.driver_name = "authenc-hmac-sha224-cbc-des3_ede-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
1814
		.type = CRYPTO_ALG_TYPE_AEAD,
1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = DES3_EDE_BLOCK_SIZE,
			.maxauthsize = SHA224_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA224 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA224 | OP_ALG_AAI_HMAC,
	},
1830 1831 1832 1833
	{
		.name = "authenc(hmac(sha256),cbc(des3_ede))",
		.driver_name = "authenc-hmac-sha256-cbc-des3_ede-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
1841 1842 1843 1844 1845 1846 1847 1848 1849
			.geniv = "<built-in>",
			.ivsize = DES3_EDE_BLOCK_SIZE,
			.maxauthsize = SHA256_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA256 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA256 | OP_ALG_AAI_HMAC,
	},
1850 1851 1852 1853
	{
		.name = "authenc(hmac(sha384),cbc(des3_ede))",
		.driver_name = "authenc-hmac-sha384-cbc-des3_ede-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
1854
		.type = CRYPTO_ALG_TYPE_AEAD,
1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = DES3_EDE_BLOCK_SIZE,
			.maxauthsize = SHA384_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA384 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA384 | OP_ALG_AAI_HMAC,
	},
1870 1871 1872 1873
	{
		.name = "authenc(hmac(sha512),cbc(des3_ede))",
		.driver_name = "authenc-hmac-sha512-cbc-des3_ede-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
1881 1882 1883 1884 1885 1886 1887 1888 1889
			.geniv = "<built-in>",
			.ivsize = DES3_EDE_BLOCK_SIZE,
			.maxauthsize = SHA512_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA512 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA512 | OP_ALG_AAI_HMAC,
	},
1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908
	{
		.name = "authenc(hmac(md5),cbc(des))",
		.driver_name = "authenc-hmac-md5-cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = DES_BLOCK_SIZE,
			.maxauthsize = MD5_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_MD5 | OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_MD5 | OP_ALG_AAI_HMAC,
	},
1909 1910 1911 1912
	{
		.name = "authenc(hmac(sha1),cbc(des))",
		.driver_name = "authenc-hmac-sha1-cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
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			.geniv = "<built-in>",
			.ivsize = DES_BLOCK_SIZE,
			.maxauthsize = SHA1_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA1 | OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA1 | OP_ALG_AAI_HMAC,
	},
1928 1929 1930 1931
	{
		.name = "authenc(hmac(sha224),cbc(des))",
		.driver_name = "authenc-hmac-sha224-cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947
		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = DES_BLOCK_SIZE,
			.maxauthsize = SHA224_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA224 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA224 | OP_ALG_AAI_HMAC,
	},
1948 1949 1950 1951
	{
		.name = "authenc(hmac(sha256),cbc(des))",
		.driver_name = "authenc-hmac-sha256-cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
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			.geniv = "<built-in>",
			.ivsize = DES_BLOCK_SIZE,
			.maxauthsize = SHA256_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA256 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA256 | OP_ALG_AAI_HMAC,
	},
1968 1969 1970 1971
	{
		.name = "authenc(hmac(sha384),cbc(des))",
		.driver_name = "authenc-hmac-sha384-cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
1972
		.type = CRYPTO_ALG_TYPE_AEAD,
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		.template_aead = {
			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
			.geniv = "<built-in>",
			.ivsize = DES_BLOCK_SIZE,
			.maxauthsize = SHA384_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA384 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA384 | OP_ALG_AAI_HMAC,
	},
1988 1989 1990 1991
	{
		.name = "authenc(hmac(sha512),cbc(des))",
		.driver_name = "authenc-hmac-sha512-cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
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		.type = CRYPTO_ALG_TYPE_AEAD,
		.template_aead = {
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			.setkey = aead_setkey,
			.setauthsize = aead_setauthsize,
			.encrypt = aead_encrypt,
			.decrypt = aead_decrypt,
			.givencrypt = aead_givencrypt,
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			.geniv = "<built-in>",
			.ivsize = DES_BLOCK_SIZE,
			.maxauthsize = SHA512_DIGEST_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
		.class2_alg_type = OP_ALG_ALGSEL_SHA512 |
				   OP_ALG_AAI_HMAC_PRECOMP,
		.alg_op = OP_ALG_ALGSEL_SHA512 | OP_ALG_AAI_HMAC,
	},
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2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056
	/* ablkcipher descriptor */
	{
		.name = "cbc(aes)",
		.driver_name = "cbc-aes-caam",
		.blocksize = AES_BLOCK_SIZE,
		.type = CRYPTO_ALG_TYPE_ABLKCIPHER,
		.template_ablkcipher = {
			.setkey = ablkcipher_setkey,
			.encrypt = ablkcipher_encrypt,
			.decrypt = ablkcipher_decrypt,
			.geniv = "eseqiv",
			.min_keysize = AES_MIN_KEY_SIZE,
			.max_keysize = AES_MAX_KEY_SIZE,
			.ivsize = AES_BLOCK_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_AES | OP_ALG_AAI_CBC,
	},
	{
		.name = "cbc(des3_ede)",
		.driver_name = "cbc-3des-caam",
		.blocksize = DES3_EDE_BLOCK_SIZE,
		.type = CRYPTO_ALG_TYPE_ABLKCIPHER,
		.template_ablkcipher = {
			.setkey = ablkcipher_setkey,
			.encrypt = ablkcipher_encrypt,
			.decrypt = ablkcipher_decrypt,
			.geniv = "eseqiv",
			.min_keysize = DES3_EDE_KEY_SIZE,
			.max_keysize = DES3_EDE_KEY_SIZE,
			.ivsize = DES3_EDE_BLOCK_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_3DES | OP_ALG_AAI_CBC,
	},
	{
		.name = "cbc(des)",
		.driver_name = "cbc-des-caam",
		.blocksize = DES_BLOCK_SIZE,
		.type = CRYPTO_ALG_TYPE_ABLKCIPHER,
		.template_ablkcipher = {
			.setkey = ablkcipher_setkey,
			.encrypt = ablkcipher_encrypt,
			.decrypt = ablkcipher_decrypt,
			.geniv = "eseqiv",
			.min_keysize = DES_KEY_SIZE,
			.max_keysize = DES_KEY_SIZE,
			.ivsize = DES_BLOCK_SIZE,
			},
		.class1_alg_type = OP_ALG_ALGSEL_DES | OP_ALG_AAI_CBC,
	}
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};

struct caam_crypto_alg {
	struct list_head entry;
	int class1_alg_type;
	int class2_alg_type;
	int alg_op;
	struct crypto_alg crypto_alg;
};

static int caam_cra_init(struct crypto_tfm *tfm)
{
	struct crypto_alg *alg = tfm->__crt_alg;
	struct caam_crypto_alg *caam_alg =
		 container_of(alg, struct caam_crypto_alg, crypto_alg);
	struct caam_ctx *ctx = crypto_tfm_ctx(tfm);

2074 2075 2076 2077 2078
	ctx->jrdev = caam_jr_alloc();
	if (IS_ERR(ctx->jrdev)) {
		pr_err("Job Ring Device allocation for transform failed\n");
		return PTR_ERR(ctx->jrdev);
	}
2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091

	/* copy descriptor header template value */
	ctx->class1_alg_type = OP_TYPE_CLASS1_ALG | caam_alg->class1_alg_type;
	ctx->class2_alg_type = OP_TYPE_CLASS2_ALG | caam_alg->class2_alg_type;
	ctx->alg_op = OP_TYPE_CLASS2_ALG | caam_alg->alg_op;

	return 0;
}

static void caam_cra_exit(struct crypto_tfm *tfm)
{
	struct caam_ctx *ctx = crypto_tfm_ctx(tfm);

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	if (ctx->sh_desc_enc_dma &&
	    !dma_mapping_error(ctx->jrdev, ctx->sh_desc_enc_dma))
		dma_unmap_single(ctx->jrdev, ctx->sh_desc_enc_dma,
				 desc_bytes(ctx->sh_desc_enc), DMA_TO_DEVICE);
	if (ctx->sh_desc_dec_dma &&
	    !dma_mapping_error(ctx->jrdev, ctx->sh_desc_dec_dma))
		dma_unmap_single(ctx->jrdev, ctx->sh_desc_dec_dma,
				 desc_bytes(ctx->sh_desc_dec), DMA_TO_DEVICE);
	if (ctx->sh_desc_givenc_dma &&
	    !dma_mapping_error(ctx->jrdev, ctx->sh_desc_givenc_dma))
		dma_unmap_single(ctx->jrdev, ctx->sh_desc_givenc_dma,
				 desc_bytes(ctx->sh_desc_givenc),
2104
				 DMA_TO_DEVICE);
2105 2106

	caam_jr_free(ctx->jrdev);
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}

static void __exit caam_algapi_exit(void)
{

	struct caam_crypto_alg *t_alg, *n;

2114
	if (!alg_list.next)
2115 2116
		return;

2117
	list_for_each_entry_safe(t_alg, n, &alg_list, entry) {
2118 2119 2120 2121 2122 2123
		crypto_unregister_alg(&t_alg->crypto_alg);
		list_del(&t_alg->entry);
		kfree(t_alg);
	}
}

2124
static struct caam_crypto_alg *caam_alg_alloc(struct caam_alg_template
2125 2126 2127 2128 2129 2130 2131
					      *template)
{
	struct caam_crypto_alg *t_alg;
	struct crypto_alg *alg;

	t_alg = kzalloc(sizeof(struct caam_crypto_alg), GFP_KERNEL);
	if (!t_alg) {
2132
		pr_err("failed to allocate t_alg\n");
2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147
		return ERR_PTR(-ENOMEM);
	}

	alg = &t_alg->crypto_alg;

	snprintf(alg->cra_name, CRYPTO_MAX_ALG_NAME, "%s", template->name);
	snprintf(alg->cra_driver_name, CRYPTO_MAX_ALG_NAME, "%s",
		 template->driver_name);
	alg->cra_module = THIS_MODULE;
	alg->cra_init = caam_cra_init;
	alg->cra_exit = caam_cra_exit;
	alg->cra_priority = CAAM_CRA_PRIORITY;
	alg->cra_blocksize = template->blocksize;
	alg->cra_alignmask = 0;
	alg->cra_ctxsize = sizeof(struct caam_ctx);
2148 2149
	alg->cra_flags = CRYPTO_ALG_ASYNC | CRYPTO_ALG_KERN_DRIVER_ONLY |
			 template->type;
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	switch (template->type) {
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	case CRYPTO_ALG_TYPE_ABLKCIPHER:
		alg->cra_type = &crypto_ablkcipher_type;
		alg->cra_ablkcipher = template->template_ablkcipher;
		break;
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	case CRYPTO_ALG_TYPE_AEAD:
		alg->cra_type = &crypto_aead_type;
		alg->cra_aead = template->template_aead;
		break;
	}
2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171

	t_alg->class1_alg_type = template->class1_alg_type;
	t_alg->class2_alg_type = template->class2_alg_type;
	t_alg->alg_op = template->alg_op;

	return t_alg;
}

static int __init caam_algapi_init(void)
{
	int i = 0, err = 0;

2172
	INIT_LIST_HEAD(&alg_list);
2173 2174 2175 2176 2177 2178

	/* register crypto algorithms the device supports */
	for (i = 0; i < ARRAY_SIZE(driver_algs); i++) {
		/* TODO: check if h/w supports alg */
		struct caam_crypto_alg *t_alg;

2179
		t_alg = caam_alg_alloc(&driver_algs[i]);
2180 2181
		if (IS_ERR(t_alg)) {
			err = PTR_ERR(t_alg);
2182 2183
			pr_warn("%s alg allocation failed\n",
				driver_algs[i].driver_name);
2184 2185 2186 2187 2188
			continue;
		}

		err = crypto_register_alg(&t_alg->crypto_alg);
		if (err) {
2189
			pr_warn("%s alg registration failed\n",
2190 2191
				t_alg->crypto_alg.cra_driver_name);
			kfree(t_alg);
2192
		} else
2193
			list_add_tail(&t_alg->entry, &alg_list);
2194
	}
2195 2196
	if (!list_empty(&alg_list))
		pr_info("caam algorithms registered in /proc/crypto\n");
2197 2198 2199 2200 2201 2202 2203 2204 2205 2206

	return err;
}

module_init(caam_algapi_init);
module_exit(caam_algapi_exit);

MODULE_LICENSE("GPL");
MODULE_DESCRIPTION("FSL CAAM support for crypto API");
MODULE_AUTHOR("Freescale Semiconductor - NMG/STC");