112e21dfdSLionel Debieve /* 212e21dfdSLionel Debieve * Copyright (c) 2019, STMicroelectronics - All Rights Reserved 312e21dfdSLionel Debieve * 412e21dfdSLionel Debieve * SPDX-License-Identifier: BSD-3-Clause 512e21dfdSLionel Debieve */ 612e21dfdSLionel Debieve 712e21dfdSLionel Debieve #include <errno.h> 812e21dfdSLionel Debieve 912e21dfdSLionel Debieve #include <drivers/nand.h> 1012e21dfdSLionel Debieve #include <lib/utils.h> 1112e21dfdSLionel Debieve #include <plat/common/platform.h> 1212e21dfdSLionel Debieve 1312e21dfdSLionel Debieve #define SZ_512 0x200U 1412e21dfdSLionel Debieve 15*57044228SLionel Debieve #if STM32MP_RAW_NAND || STM32MP_SPI_NAND 16*57044228SLionel Debieve static int get_data_from_otp(struct nand_device *nand_dev, bool is_slc) 1712e21dfdSLionel Debieve { 1812e21dfdSLionel Debieve int result; 1912e21dfdSLionel Debieve uint32_t nand_param; 2012e21dfdSLionel Debieve 2112e21dfdSLionel Debieve /* Check if NAND parameters are stored in OTP */ 2212e21dfdSLionel Debieve result = bsec_shadow_read_otp(&nand_param, NAND_OTP); 2312e21dfdSLionel Debieve if (result != BSEC_OK) { 2412e21dfdSLionel Debieve ERROR("BSEC: NAND_OTP Error %i\n", result); 2512e21dfdSLionel Debieve return -EACCES; 2612e21dfdSLionel Debieve } 2712e21dfdSLionel Debieve 2812e21dfdSLionel Debieve if (nand_param == 0U) { 2912e21dfdSLionel Debieve return 0; 3012e21dfdSLionel Debieve } 3112e21dfdSLionel Debieve 3212e21dfdSLionel Debieve if ((nand_param & NAND_PARAM_STORED_IN_OTP) == 0U) { 3312e21dfdSLionel Debieve goto ecc; 3412e21dfdSLionel Debieve } 3512e21dfdSLionel Debieve 3612e21dfdSLionel Debieve /* NAND parameter shall be read from OTP */ 3712e21dfdSLionel Debieve if ((nand_param & NAND_WIDTH_MASK) != 0U) { 3812e21dfdSLionel Debieve nand_dev->buswidth = NAND_BUS_WIDTH_16; 3912e21dfdSLionel Debieve } else { 4012e21dfdSLionel Debieve nand_dev->buswidth = NAND_BUS_WIDTH_8; 4112e21dfdSLionel Debieve } 4212e21dfdSLionel Debieve 4312e21dfdSLionel Debieve switch ((nand_param & NAND_PAGE_SIZE_MASK) >> NAND_PAGE_SIZE_SHIFT) { 4412e21dfdSLionel Debieve case NAND_PAGE_SIZE_2K: 4512e21dfdSLionel Debieve nand_dev->page_size = 0x800U; 4612e21dfdSLionel Debieve break; 4712e21dfdSLionel Debieve 4812e21dfdSLionel Debieve case NAND_PAGE_SIZE_4K: 4912e21dfdSLionel Debieve nand_dev->page_size = 0x1000U; 5012e21dfdSLionel Debieve break; 5112e21dfdSLionel Debieve 5212e21dfdSLionel Debieve case NAND_PAGE_SIZE_8K: 5312e21dfdSLionel Debieve nand_dev->page_size = 0x2000U; 5412e21dfdSLionel Debieve break; 5512e21dfdSLionel Debieve 5612e21dfdSLionel Debieve default: 5712e21dfdSLionel Debieve ERROR("Cannot read NAND page size\n"); 5812e21dfdSLionel Debieve return -EINVAL; 5912e21dfdSLionel Debieve } 6012e21dfdSLionel Debieve 6112e21dfdSLionel Debieve switch ((nand_param & NAND_BLOCK_SIZE_MASK) >> NAND_BLOCK_SIZE_SHIFT) { 6212e21dfdSLionel Debieve case NAND_BLOCK_SIZE_64_PAGES: 6312e21dfdSLionel Debieve nand_dev->block_size = 64U * nand_dev->page_size; 6412e21dfdSLionel Debieve break; 6512e21dfdSLionel Debieve 6612e21dfdSLionel Debieve case NAND_BLOCK_SIZE_128_PAGES: 6712e21dfdSLionel Debieve nand_dev->block_size = 128U * nand_dev->page_size; 6812e21dfdSLionel Debieve break; 6912e21dfdSLionel Debieve 7012e21dfdSLionel Debieve case NAND_BLOCK_SIZE_256_PAGES: 7112e21dfdSLionel Debieve nand_dev->block_size = 256U * nand_dev->page_size; 7212e21dfdSLionel Debieve break; 7312e21dfdSLionel Debieve 7412e21dfdSLionel Debieve default: 7512e21dfdSLionel Debieve ERROR("Cannot read NAND block size\n"); 7612e21dfdSLionel Debieve return -EINVAL; 7712e21dfdSLionel Debieve } 7812e21dfdSLionel Debieve 7912e21dfdSLionel Debieve nand_dev->size = ((nand_param & NAND_BLOCK_NB_MASK) >> 8012e21dfdSLionel Debieve NAND_BLOCK_NB_SHIFT) * 8112e21dfdSLionel Debieve NAND_BLOCK_NB_UNIT * nand_dev->block_size; 8212e21dfdSLionel Debieve 8312e21dfdSLionel Debieve ecc: 84*57044228SLionel Debieve if (is_slc) { 8512e21dfdSLionel Debieve switch ((nand_param & NAND_ECC_BIT_NB_MASK) >> 8612e21dfdSLionel Debieve NAND_ECC_BIT_NB_SHIFT) { 8712e21dfdSLionel Debieve case NAND_ECC_BIT_NB_1_BITS: 8812e21dfdSLionel Debieve nand_dev->ecc.max_bit_corr = 1U; 8912e21dfdSLionel Debieve break; 9012e21dfdSLionel Debieve 9112e21dfdSLionel Debieve case NAND_ECC_BIT_NB_4_BITS: 9212e21dfdSLionel Debieve nand_dev->ecc.max_bit_corr = 4U; 9312e21dfdSLionel Debieve break; 9412e21dfdSLionel Debieve 9512e21dfdSLionel Debieve case NAND_ECC_BIT_NB_8_BITS: 9612e21dfdSLionel Debieve nand_dev->ecc.max_bit_corr = 8U; 9712e21dfdSLionel Debieve break; 9812e21dfdSLionel Debieve 9912e21dfdSLionel Debieve case NAND_ECC_ON_DIE: 10012e21dfdSLionel Debieve nand_dev->ecc.mode = NAND_ECC_ONDIE; 10112e21dfdSLionel Debieve break; 10212e21dfdSLionel Debieve 10312e21dfdSLionel Debieve default: 10412e21dfdSLionel Debieve if (nand_dev->ecc.max_bit_corr == 0U) { 10512e21dfdSLionel Debieve ERROR("No valid eccbit number\n"); 10612e21dfdSLionel Debieve return -EINVAL; 10712e21dfdSLionel Debieve } 10812e21dfdSLionel Debieve } 109*57044228SLionel Debieve } else { 110*57044228SLionel Debieve /* Selected multiple plane NAND */ 111*57044228SLionel Debieve if ((nand_param & NAND_PLANE_BIT_NB_MASK) != 0U) { 112*57044228SLionel Debieve nand_dev->nb_planes = 2U; 113*57044228SLionel Debieve } else { 114*57044228SLionel Debieve nand_dev->nb_planes = 1U; 115*57044228SLionel Debieve } 116*57044228SLionel Debieve } 11712e21dfdSLionel Debieve 11812e21dfdSLionel Debieve VERBOSE("OTP: Block %i Page %i Size %lli\n", nand_dev->block_size, 11912e21dfdSLionel Debieve nand_dev->page_size, nand_dev->size); 12012e21dfdSLionel Debieve 12112e21dfdSLionel Debieve return 0; 12212e21dfdSLionel Debieve } 123*57044228SLionel Debieve #endif /* STM32MP_RAW_NAND || STM32MP_SPI_NAND */ 12412e21dfdSLionel Debieve 12512e21dfdSLionel Debieve #if STM32MP_RAW_NAND 12612e21dfdSLionel Debieve int plat_get_raw_nand_data(struct rawnand_device *device) 12712e21dfdSLionel Debieve { 12812e21dfdSLionel Debieve device->nand_dev->ecc.mode = NAND_ECC_HW; 12912e21dfdSLionel Debieve device->nand_dev->ecc.size = SZ_512; 13012e21dfdSLionel Debieve 131*57044228SLionel Debieve return get_data_from_otp(device->nand_dev, true); 132*57044228SLionel Debieve } 133*57044228SLionel Debieve #endif 134*57044228SLionel Debieve 135*57044228SLionel Debieve #if STM32MP_SPI_NAND 136*57044228SLionel Debieve int plat_get_spi_nand_data(struct spinand_device *device) 137*57044228SLionel Debieve { 138*57044228SLionel Debieve zeromem(&device->spi_read_cache_op, sizeof(struct spi_mem_op)); 139*57044228SLionel Debieve device->spi_read_cache_op.cmd.opcode = SPI_NAND_OP_READ_FROM_CACHE_4X; 140*57044228SLionel Debieve device->spi_read_cache_op.cmd.buswidth = SPI_MEM_BUSWIDTH_1_LINE; 141*57044228SLionel Debieve device->spi_read_cache_op.addr.nbytes = 2U; 142*57044228SLionel Debieve device->spi_read_cache_op.addr.buswidth = SPI_MEM_BUSWIDTH_1_LINE; 143*57044228SLionel Debieve device->spi_read_cache_op.dummy.nbytes = 1U; 144*57044228SLionel Debieve device->spi_read_cache_op.dummy.buswidth = SPI_MEM_BUSWIDTH_1_LINE; 145*57044228SLionel Debieve device->spi_read_cache_op.data.buswidth = SPI_MEM_BUSWIDTH_4_LINE; 146*57044228SLionel Debieve device->spi_read_cache_op.data.dir = SPI_MEM_DATA_IN; 147*57044228SLionel Debieve 148*57044228SLionel Debieve return get_data_from_otp(device->nand_dev, false); 14912e21dfdSLionel Debieve } 15012e21dfdSLionel Debieve #endif 15112e21dfdSLionel Debieve 152