1*91f16700Schasinglulu /* 2*91f16700Schasinglulu * Copyright 2021 NXP 3*91f16700Schasinglulu * 4*91f16700Schasinglulu * SPDX-License-Identifier: BSD-3-Clause 5*91f16700Schasinglulu * 6*91f16700Schasinglulu */ 7*91f16700Schasinglulu 8*91f16700Schasinglulu #include <errno.h> 9*91f16700Schasinglulu #include <stdbool.h> 10*91f16700Schasinglulu #include <stdint.h> 11*91f16700Schasinglulu #include <stdio.h> 12*91f16700Schasinglulu #include <stdlib.h> 13*91f16700Schasinglulu #include <string.h> 14*91f16700Schasinglulu 15*91f16700Schasinglulu #include <arch_helpers.h> 16*91f16700Schasinglulu #include "caam.h" 17*91f16700Schasinglulu #include <common/debug.h> 18*91f16700Schasinglulu #include <drivers/auth/crypto_mod.h> 19*91f16700Schasinglulu 20*91f16700Schasinglulu #include "hash.h" 21*91f16700Schasinglulu #include "jobdesc.h" 22*91f16700Schasinglulu #include "sec_hw_specific.h" 23*91f16700Schasinglulu 24*91f16700Schasinglulu /* Since no Allocator is available . Taking a global static ctx. 25*91f16700Schasinglulu * This would mean that only one active ctx can be there at a time. 26*91f16700Schasinglulu */ 27*91f16700Schasinglulu 28*91f16700Schasinglulu static struct hash_ctx glbl_ctx; 29*91f16700Schasinglulu 30*91f16700Schasinglulu static void hash_done(uint32_t *desc, uint32_t status, void *arg, 31*91f16700Schasinglulu void *job_ring) 32*91f16700Schasinglulu { 33*91f16700Schasinglulu INFO("Hash Desc SUCCESS with status %x\n", status); 34*91f16700Schasinglulu } 35*91f16700Schasinglulu 36*91f16700Schasinglulu /*************************************************************************** 37*91f16700Schasinglulu * Function : hash_init 38*91f16700Schasinglulu * Arguments : ctx - SHA context 39*91f16700Schasinglulu * Return : init, 40*91f16700Schasinglulu * Description : This function initializes the context for SHA calculation 41*91f16700Schasinglulu ***************************************************************************/ 42*91f16700Schasinglulu int hash_init(enum hash_algo algo, void **ctx) 43*91f16700Schasinglulu { 44*91f16700Schasinglulu if (glbl_ctx.active == false) { 45*91f16700Schasinglulu memset(&glbl_ctx, 0, sizeof(struct hash_ctx)); 46*91f16700Schasinglulu glbl_ctx.active = true; 47*91f16700Schasinglulu glbl_ctx.algo = algo; 48*91f16700Schasinglulu *ctx = &glbl_ctx; 49*91f16700Schasinglulu return 0; 50*91f16700Schasinglulu } else { 51*91f16700Schasinglulu return -1; 52*91f16700Schasinglulu } 53*91f16700Schasinglulu } 54*91f16700Schasinglulu 55*91f16700Schasinglulu /*************************************************************************** 56*91f16700Schasinglulu * Function : hash_update 57*91f16700Schasinglulu * Arguments : ctx - SHA context 58*91f16700Schasinglulu * buffer - Data 59*91f16700Schasinglulu * length - Length 60*91f16700Schasinglulu * Return : -1 on error 61*91f16700Schasinglulu * 0 on SUCCESS 62*91f16700Schasinglulu * Description : This function creates SG entry of the data provided 63*91f16700Schasinglulu ***************************************************************************/ 64*91f16700Schasinglulu int hash_update(enum hash_algo algo, void *context, void *data_ptr, 65*91f16700Schasinglulu unsigned int data_len) 66*91f16700Schasinglulu { 67*91f16700Schasinglulu struct hash_ctx *ctx = context; 68*91f16700Schasinglulu /* MAX_SG would be MAX_SG_ENTRIES + key + hdr + sg table */ 69*91f16700Schasinglulu if (ctx->sg_num >= MAX_SG) { 70*91f16700Schasinglulu ERROR("Reached limit for calling %s\n", __func__); 71*91f16700Schasinglulu ctx->active = false; 72*91f16700Schasinglulu return -EINVAL; 73*91f16700Schasinglulu 74*91f16700Schasinglulu } 75*91f16700Schasinglulu 76*91f16700Schasinglulu if (ctx->algo != algo) { 77*91f16700Schasinglulu ERROR("ctx for algo not correct\n"); 78*91f16700Schasinglulu ctx->active = false; 79*91f16700Schasinglulu return -EINVAL; 80*91f16700Schasinglulu } 81*91f16700Schasinglulu 82*91f16700Schasinglulu #if defined(SEC_MEM_NON_COHERENT) && defined(IMAGE_BL2) 83*91f16700Schasinglulu flush_dcache_range((uintptr_t)data_ptr, data_len); 84*91f16700Schasinglulu dmbsy(); 85*91f16700Schasinglulu #endif 86*91f16700Schasinglulu 87*91f16700Schasinglulu #ifdef CONFIG_PHYS_64BIT 88*91f16700Schasinglulu sec_out32(&ctx->sg_tbl[ctx->sg_num].addr_hi, 89*91f16700Schasinglulu (uint32_t) ((uintptr_t) data_ptr >> 32)); 90*91f16700Schasinglulu #else 91*91f16700Schasinglulu sec_out32(&ctx->sg_tbl[ctx->sg_num].addr_hi, 0x0); 92*91f16700Schasinglulu #endif 93*91f16700Schasinglulu sec_out32(&ctx->sg_tbl[ctx->sg_num].addr_lo, (uintptr_t) data_ptr); 94*91f16700Schasinglulu 95*91f16700Schasinglulu sec_out32(&ctx->sg_tbl[ctx->sg_num].len_flag, 96*91f16700Schasinglulu (data_len & SG_ENTRY_LENGTH_MASK)); 97*91f16700Schasinglulu 98*91f16700Schasinglulu ctx->sg_num++; 99*91f16700Schasinglulu 100*91f16700Schasinglulu ctx->len += data_len; 101*91f16700Schasinglulu 102*91f16700Schasinglulu return 0; 103*91f16700Schasinglulu } 104*91f16700Schasinglulu 105*91f16700Schasinglulu /*************************************************************************** 106*91f16700Schasinglulu * Function : hash_final 107*91f16700Schasinglulu * Arguments : ctx - SHA context 108*91f16700Schasinglulu * Return : SUCCESS or FAILURE 109*91f16700Schasinglulu * Description : This function sets the final bit and enqueues the descriptor 110*91f16700Schasinglulu ***************************************************************************/ 111*91f16700Schasinglulu int hash_final(enum hash_algo algo, void *context, void *hash_ptr, 112*91f16700Schasinglulu unsigned int hash_len) 113*91f16700Schasinglulu { 114*91f16700Schasinglulu int ret = 0; 115*91f16700Schasinglulu struct hash_ctx *ctx = context; 116*91f16700Schasinglulu uint32_t final = 0U; 117*91f16700Schasinglulu 118*91f16700Schasinglulu struct job_descriptor jobdesc __aligned(CACHE_WRITEBACK_GRANULE); 119*91f16700Schasinglulu 120*91f16700Schasinglulu jobdesc.arg = NULL; 121*91f16700Schasinglulu jobdesc.callback = hash_done; 122*91f16700Schasinglulu 123*91f16700Schasinglulu if (ctx->algo != algo) { 124*91f16700Schasinglulu ERROR("ctx for algo not correct\n"); 125*91f16700Schasinglulu ctx->active = false; 126*91f16700Schasinglulu return -EINVAL; 127*91f16700Schasinglulu } 128*91f16700Schasinglulu 129*91f16700Schasinglulu final = sec_in32(&ctx->sg_tbl[ctx->sg_num - 1].len_flag) | 130*91f16700Schasinglulu SG_ENTRY_FINAL_BIT; 131*91f16700Schasinglulu sec_out32(&ctx->sg_tbl[ctx->sg_num - 1].len_flag, final); 132*91f16700Schasinglulu 133*91f16700Schasinglulu dsb(); 134*91f16700Schasinglulu 135*91f16700Schasinglulu /* create the hw_rng descriptor */ 136*91f16700Schasinglulu cnstr_hash_jobdesc(jobdesc.desc, (uint8_t *) ctx->sg_tbl, 137*91f16700Schasinglulu ctx->len, hash_ptr); 138*91f16700Schasinglulu 139*91f16700Schasinglulu #if defined(SEC_MEM_NON_COHERENT) && defined(IMAGE_BL2) 140*91f16700Schasinglulu flush_dcache_range((uintptr_t)ctx->sg_tbl, 141*91f16700Schasinglulu (sizeof(struct sg_entry) * MAX_SG)); 142*91f16700Schasinglulu inv_dcache_range((uintptr_t)hash_ptr, hash_len); 143*91f16700Schasinglulu 144*91f16700Schasinglulu dmbsy(); 145*91f16700Schasinglulu #endif 146*91f16700Schasinglulu 147*91f16700Schasinglulu /* Finally, generate the requested random data bytes */ 148*91f16700Schasinglulu ret = run_descriptor_jr(&jobdesc); 149*91f16700Schasinglulu if (ret != 0) { 150*91f16700Schasinglulu ERROR("Error in running descriptor\n"); 151*91f16700Schasinglulu ret = -1; 152*91f16700Schasinglulu } 153*91f16700Schasinglulu ctx->active = false; 154*91f16700Schasinglulu return ret; 155*91f16700Schasinglulu } 156