1695f7df8SLionel Debieve /* 2*3ed01657SYann Gautier * Copyright (c) 2019-2021, STMicroelectronics - All Rights Reserved 3695f7df8SLionel Debieve * 4695f7df8SLionel Debieve * SPDX-License-Identifier: GPL-2.0+ OR BSD-3-Clause 5695f7df8SLionel Debieve */ 6695f7df8SLionel Debieve 7695f7df8SLionel Debieve #include <assert.h> 8695f7df8SLionel Debieve #include <errno.h> 9695f7df8SLionel Debieve #include <limits.h> 10695f7df8SLionel Debieve #include <stdint.h> 11695f7df8SLionel Debieve 12695f7df8SLionel Debieve #include <libfdt.h> 13695f7df8SLionel Debieve 14695f7df8SLionel Debieve #include <platform_def.h> 15695f7df8SLionel Debieve 16695f7df8SLionel Debieve #include <common/debug.h> 17695f7df8SLionel Debieve #include <drivers/delay_timer.h> 18695f7df8SLionel Debieve #include <drivers/raw_nand.h> 19695f7df8SLionel Debieve #include <drivers/st/stm32_fmc2_nand.h> 20695f7df8SLionel Debieve #include <drivers/st/stm32_gpio.h> 21695f7df8SLionel Debieve #include <drivers/st/stm32mp_reset.h> 22695f7df8SLionel Debieve #include <lib/mmio.h> 23695f7df8SLionel Debieve #include <lib/utils_def.h> 24695f7df8SLionel Debieve 2545c70e68SEtienne Carriere /* Timeout for device interface reset */ 2645c70e68SEtienne Carriere #define TIMEOUT_US_1_MS 1000U 2745c70e68SEtienne Carriere 28695f7df8SLionel Debieve /* FMC2 Compatibility */ 290c3e8acbSChristophe Kerello #define DT_FMC2_EBI_COMPAT "st,stm32mp1-fmc2-ebi" 300c3e8acbSChristophe Kerello #define DT_FMC2_NFC_COMPAT "st,stm32mp1-fmc2-nfc" 31695f7df8SLionel Debieve #define MAX_CS 2U 320c3e8acbSChristophe Kerello #define MAX_BANK 5U 33695f7df8SLionel Debieve 34695f7df8SLionel Debieve /* FMC2 Controller Registers */ 35695f7df8SLionel Debieve #define FMC2_BCR1 0x00U 36695f7df8SLionel Debieve #define FMC2_PCR 0x80U 37695f7df8SLionel Debieve #define FMC2_SR 0x84U 38695f7df8SLionel Debieve #define FMC2_PMEM 0x88U 39695f7df8SLionel Debieve #define FMC2_PATT 0x8CU 40695f7df8SLionel Debieve #define FMC2_HECCR 0x94U 41695f7df8SLionel Debieve #define FMC2_BCHISR 0x254U 4244966000SLionel Debieve #define FMC2_BCHICR 0x258U 43695f7df8SLionel Debieve #define FMC2_BCHDSR0 0x27CU 44695f7df8SLionel Debieve #define FMC2_BCHDSR1 0x280U 45695f7df8SLionel Debieve #define FMC2_BCHDSR2 0x284U 46695f7df8SLionel Debieve #define FMC2_BCHDSR3 0x288U 47695f7df8SLionel Debieve #define FMC2_BCHDSR4 0x28CU 48695f7df8SLionel Debieve 49695f7df8SLionel Debieve /* FMC2_BCR1 register */ 50695f7df8SLionel Debieve #define FMC2_BCR1_FMC2EN BIT(31) 51695f7df8SLionel Debieve /* FMC2_PCR register */ 52695f7df8SLionel Debieve #define FMC2_PCR_PWAITEN BIT(1) 53695f7df8SLionel Debieve #define FMC2_PCR_PBKEN BIT(2) 54695f7df8SLionel Debieve #define FMC2_PCR_PWID_MASK GENMASK_32(5, 4) 55695f7df8SLionel Debieve #define FMC2_PCR_PWID(x) (((x) << 4) & FMC2_PCR_PWID_MASK) 56695f7df8SLionel Debieve #define FMC2_PCR_PWID_8 0x0U 57695f7df8SLionel Debieve #define FMC2_PCR_PWID_16 0x1U 58695f7df8SLionel Debieve #define FMC2_PCR_ECCEN BIT(6) 59695f7df8SLionel Debieve #define FMC2_PCR_ECCALG BIT(8) 60695f7df8SLionel Debieve #define FMC2_PCR_TCLR_MASK GENMASK_32(12, 9) 61695f7df8SLionel Debieve #define FMC2_PCR_TCLR(x) (((x) << 9) & FMC2_PCR_TCLR_MASK) 62695f7df8SLionel Debieve #define FMC2_PCR_TCLR_DEFAULT 0xFU 63695f7df8SLionel Debieve #define FMC2_PCR_TAR_MASK GENMASK_32(16, 13) 64695f7df8SLionel Debieve #define FMC2_PCR_TAR(x) (((x) << 13) & FMC2_PCR_TAR_MASK) 65695f7df8SLionel Debieve #define FMC2_PCR_TAR_DEFAULT 0xFU 66695f7df8SLionel Debieve #define FMC2_PCR_ECCSS_MASK GENMASK_32(19, 17) 67695f7df8SLionel Debieve #define FMC2_PCR_ECCSS(x) (((x) << 17) & FMC2_PCR_ECCSS_MASK) 68695f7df8SLionel Debieve #define FMC2_PCR_ECCSS_512 0x1U 69695f7df8SLionel Debieve #define FMC2_PCR_ECCSS_2048 0x3U 70695f7df8SLionel Debieve #define FMC2_PCR_BCHECC BIT(24) 71695f7df8SLionel Debieve #define FMC2_PCR_WEN BIT(25) 72695f7df8SLionel Debieve /* FMC2_SR register */ 73695f7df8SLionel Debieve #define FMC2_SR_NWRF BIT(6) 74695f7df8SLionel Debieve /* FMC2_PMEM register*/ 75695f7df8SLionel Debieve #define FMC2_PMEM_MEMSET(x) (((x) & GENMASK_32(7, 0)) << 0) 76695f7df8SLionel Debieve #define FMC2_PMEM_MEMWAIT(x) (((x) & GENMASK_32(7, 0)) << 8) 77695f7df8SLionel Debieve #define FMC2_PMEM_MEMHOLD(x) (((x) & GENMASK_32(7, 0)) << 16) 78695f7df8SLionel Debieve #define FMC2_PMEM_MEMHIZ(x) (((x) & GENMASK_32(7, 0)) << 24) 79695f7df8SLionel Debieve #define FMC2_PMEM_DEFAULT 0x0A0A0A0AU 80695f7df8SLionel Debieve /* FMC2_PATT register */ 81695f7df8SLionel Debieve #define FMC2_PATT_ATTSET(x) (((x) & GENMASK_32(7, 0)) << 0) 82695f7df8SLionel Debieve #define FMC2_PATT_ATTWAIT(x) (((x) & GENMASK_32(7, 0)) << 8) 83695f7df8SLionel Debieve #define FMC2_PATT_ATTHOLD(x) (((x) & GENMASK_32(7, 0)) << 16) 84695f7df8SLionel Debieve #define FMC2_PATT_ATTHIZ(x) (((x) & GENMASK_32(7, 0)) << 24) 85695f7df8SLionel Debieve #define FMC2_PATT_DEFAULT 0x0A0A0A0AU 86695f7df8SLionel Debieve /* FMC2_BCHISR register */ 87695f7df8SLionel Debieve #define FMC2_BCHISR_DERF BIT(1) 8844966000SLionel Debieve /* FMC2_BCHICR register */ 8944966000SLionel Debieve #define FMC2_BCHICR_CLEAR_IRQ GENMASK_32(4, 0) 90695f7df8SLionel Debieve /* FMC2_BCHDSR0 register */ 91695f7df8SLionel Debieve #define FMC2_BCHDSR0_DUE BIT(0) 92695f7df8SLionel Debieve #define FMC2_BCHDSR0_DEF BIT(1) 93695f7df8SLionel Debieve #define FMC2_BCHDSR0_DEN_MASK GENMASK_32(7, 4) 94695f7df8SLionel Debieve #define FMC2_BCHDSR0_DEN_SHIFT 4U 95695f7df8SLionel Debieve /* FMC2_BCHDSR1 register */ 96695f7df8SLionel Debieve #define FMC2_BCHDSR1_EBP1_MASK GENMASK_32(12, 0) 97695f7df8SLionel Debieve #define FMC2_BCHDSR1_EBP2_MASK GENMASK_32(28, 16) 98695f7df8SLionel Debieve #define FMC2_BCHDSR1_EBP2_SHIFT 16U 99695f7df8SLionel Debieve /* FMC2_BCHDSR2 register */ 100695f7df8SLionel Debieve #define FMC2_BCHDSR2_EBP3_MASK GENMASK_32(12, 0) 101695f7df8SLionel Debieve #define FMC2_BCHDSR2_EBP4_MASK GENMASK_32(28, 16) 102695f7df8SLionel Debieve #define FMC2_BCHDSR2_EBP4_SHIFT 16U 103695f7df8SLionel Debieve /* FMC2_BCHDSR3 register */ 104695f7df8SLionel Debieve #define FMC2_BCHDSR3_EBP5_MASK GENMASK_32(12, 0) 105695f7df8SLionel Debieve #define FMC2_BCHDSR3_EBP6_MASK GENMASK_32(28, 16) 106695f7df8SLionel Debieve #define FMC2_BCHDSR3_EBP6_SHIFT 16U 107695f7df8SLionel Debieve /* FMC2_BCHDSR4 register */ 108695f7df8SLionel Debieve #define FMC2_BCHDSR4_EBP7_MASK GENMASK_32(12, 0) 109695f7df8SLionel Debieve #define FMC2_BCHDSR4_EBP8_MASK GENMASK_32(28, 16) 110695f7df8SLionel Debieve #define FMC2_BCHDSR4_EBP8_SHIFT 16U 111695f7df8SLionel Debieve 112695f7df8SLionel Debieve /* Timings */ 113695f7df8SLionel Debieve #define FMC2_THIZ 0x01U 114695f7df8SLionel Debieve #define FMC2_TIO 8000U 115695f7df8SLionel Debieve #define FMC2_TSYNC 3000U 116695f7df8SLionel Debieve #define FMC2_PCR_TIMING_MASK GENMASK_32(3, 0) 117695f7df8SLionel Debieve #define FMC2_PMEM_PATT_TIMING_MASK GENMASK_32(7, 0) 118695f7df8SLionel Debieve 119695f7df8SLionel Debieve #define FMC2_BBM_LEN 2U 120695f7df8SLionel Debieve #define FMC2_MAX_ECC_BYTES 14U 121695f7df8SLionel Debieve #define TIMEOUT_US_10_MS 10000U 122695f7df8SLionel Debieve #define FMC2_PSEC_PER_MSEC (1000UL * 1000UL * 1000UL) 123695f7df8SLionel Debieve 124695f7df8SLionel Debieve enum stm32_fmc2_ecc { 125695f7df8SLionel Debieve FMC2_ECC_HAM = 1U, 126695f7df8SLionel Debieve FMC2_ECC_BCH4 = 4U, 127695f7df8SLionel Debieve FMC2_ECC_BCH8 = 8U 128695f7df8SLionel Debieve }; 129695f7df8SLionel Debieve 130695f7df8SLionel Debieve struct stm32_fmc2_cs_reg { 131695f7df8SLionel Debieve uintptr_t data_base; 132695f7df8SLionel Debieve uintptr_t cmd_base; 133695f7df8SLionel Debieve uintptr_t addr_base; 134695f7df8SLionel Debieve }; 135695f7df8SLionel Debieve 136695f7df8SLionel Debieve struct stm32_fmc2_nand_timings { 137695f7df8SLionel Debieve uint8_t tclr; 138695f7df8SLionel Debieve uint8_t tar; 139695f7df8SLionel Debieve uint8_t thiz; 140695f7df8SLionel Debieve uint8_t twait; 141695f7df8SLionel Debieve uint8_t thold_mem; 142695f7df8SLionel Debieve uint8_t tset_mem; 143695f7df8SLionel Debieve uint8_t thold_att; 144695f7df8SLionel Debieve uint8_t tset_att; 145695f7df8SLionel Debieve }; 146695f7df8SLionel Debieve 147695f7df8SLionel Debieve struct stm32_fmc2_nfc { 148695f7df8SLionel Debieve uintptr_t reg_base; 149695f7df8SLionel Debieve struct stm32_fmc2_cs_reg cs[MAX_CS]; 150695f7df8SLionel Debieve unsigned long clock_id; 151695f7df8SLionel Debieve unsigned int reset_id; 152695f7df8SLionel Debieve uint8_t cs_sel; 153695f7df8SLionel Debieve }; 154695f7df8SLionel Debieve 155695f7df8SLionel Debieve static struct stm32_fmc2_nfc stm32_fmc2; 156695f7df8SLionel Debieve 157695f7df8SLionel Debieve static uintptr_t fmc2_base(void) 158695f7df8SLionel Debieve { 159695f7df8SLionel Debieve return stm32_fmc2.reg_base; 160695f7df8SLionel Debieve } 161695f7df8SLionel Debieve 162695f7df8SLionel Debieve static void stm32_fmc2_nand_setup_timing(void) 163695f7df8SLionel Debieve { 164695f7df8SLionel Debieve struct stm32_fmc2_nand_timings tims; 165695f7df8SLionel Debieve unsigned long hclk = stm32mp_clk_get_rate(stm32_fmc2.clock_id); 166695f7df8SLionel Debieve unsigned long hclkp = FMC2_PSEC_PER_MSEC / (hclk / 1000U); 167695f7df8SLionel Debieve unsigned long timing, tar, tclr, thiz, twait; 168695f7df8SLionel Debieve unsigned long tset_mem, tset_att, thold_mem, thold_att; 169695f7df8SLionel Debieve uint32_t pcr, pmem, patt; 170695f7df8SLionel Debieve 171695f7df8SLionel Debieve tar = MAX(hclkp, NAND_TAR_MIN); 172695f7df8SLionel Debieve timing = div_round_up(tar, hclkp) - 1U; 173695f7df8SLionel Debieve tims.tar = MIN(timing, (unsigned long)FMC2_PCR_TIMING_MASK); 174695f7df8SLionel Debieve 175695f7df8SLionel Debieve tclr = MAX(hclkp, NAND_TCLR_MIN); 176695f7df8SLionel Debieve timing = div_round_up(tclr, hclkp) - 1U; 177695f7df8SLionel Debieve tims.tclr = MIN(timing, (unsigned long)FMC2_PCR_TIMING_MASK); 178695f7df8SLionel Debieve 179695f7df8SLionel Debieve tims.thiz = FMC2_THIZ; 180695f7df8SLionel Debieve thiz = (tims.thiz + 1U) * hclkp; 181695f7df8SLionel Debieve 182695f7df8SLionel Debieve /* 183695f7df8SLionel Debieve * tWAIT > tRP 184695f7df8SLionel Debieve * tWAIT > tWP 185695f7df8SLionel Debieve * tWAIT > tREA + tIO 186695f7df8SLionel Debieve */ 187695f7df8SLionel Debieve twait = MAX(hclkp, NAND_TRP_MIN); 188695f7df8SLionel Debieve twait = MAX(twait, NAND_TWP_MIN); 189695f7df8SLionel Debieve twait = MAX(twait, NAND_TREA_MAX + FMC2_TIO); 190695f7df8SLionel Debieve timing = div_round_up(twait, hclkp); 191695f7df8SLionel Debieve tims.twait = CLAMP(timing, 1UL, 192695f7df8SLionel Debieve (unsigned long)FMC2_PMEM_PATT_TIMING_MASK); 193695f7df8SLionel Debieve 194695f7df8SLionel Debieve /* 195695f7df8SLionel Debieve * tSETUP_MEM > tCS - tWAIT 196695f7df8SLionel Debieve * tSETUP_MEM > tALS - tWAIT 197695f7df8SLionel Debieve * tSETUP_MEM > tDS - (tWAIT - tHIZ) 198695f7df8SLionel Debieve */ 199695f7df8SLionel Debieve tset_mem = hclkp; 200695f7df8SLionel Debieve if ((twait < NAND_TCS_MIN) && (tset_mem < (NAND_TCS_MIN - twait))) { 201695f7df8SLionel Debieve tset_mem = NAND_TCS_MIN - twait; 202695f7df8SLionel Debieve } 203695f7df8SLionel Debieve if ((twait > thiz) && ((twait - thiz) < NAND_TDS_MIN) && 204695f7df8SLionel Debieve (tset_mem < (NAND_TDS_MIN - (twait - thiz)))) { 205695f7df8SLionel Debieve tset_mem = NAND_TDS_MIN - (twait - thiz); 206695f7df8SLionel Debieve } 207695f7df8SLionel Debieve timing = div_round_up(tset_mem, hclkp); 208695f7df8SLionel Debieve tims.tset_mem = CLAMP(timing, 1UL, 209695f7df8SLionel Debieve (unsigned long)FMC2_PMEM_PATT_TIMING_MASK); 210695f7df8SLionel Debieve 211695f7df8SLionel Debieve /* 212695f7df8SLionel Debieve * tHOLD_MEM > tCH 213695f7df8SLionel Debieve * tHOLD_MEM > tREH - tSETUP_MEM 214695f7df8SLionel Debieve * tHOLD_MEM > max(tRC, tWC) - (tSETUP_MEM + tWAIT) 215695f7df8SLionel Debieve */ 216695f7df8SLionel Debieve thold_mem = MAX(hclkp, NAND_TCH_MIN); 217695f7df8SLionel Debieve if ((tset_mem < NAND_TREH_MIN) && 218695f7df8SLionel Debieve (thold_mem < (NAND_TREH_MIN - tset_mem))) { 219695f7df8SLionel Debieve thold_mem = NAND_TREH_MIN - tset_mem; 220695f7df8SLionel Debieve } 221695f7df8SLionel Debieve if (((tset_mem + twait) < NAND_TRC_MIN) && 222695f7df8SLionel Debieve (thold_mem < (NAND_TRC_MIN - (tset_mem + twait)))) { 223695f7df8SLionel Debieve thold_mem = NAND_TRC_MIN - (tset_mem + twait); 224695f7df8SLionel Debieve } 225695f7df8SLionel Debieve if (((tset_mem + twait) < NAND_TWC_MIN) && 226695f7df8SLionel Debieve (thold_mem < (NAND_TWC_MIN - (tset_mem + twait)))) { 227695f7df8SLionel Debieve thold_mem = NAND_TWC_MIN - (tset_mem + twait); 228695f7df8SLionel Debieve } 229695f7df8SLionel Debieve timing = div_round_up(thold_mem, hclkp); 230695f7df8SLionel Debieve tims.thold_mem = CLAMP(timing, 1UL, 231695f7df8SLionel Debieve (unsigned long)FMC2_PMEM_PATT_TIMING_MASK); 232695f7df8SLionel Debieve 233695f7df8SLionel Debieve /* 234695f7df8SLionel Debieve * tSETUP_ATT > tCS - tWAIT 235695f7df8SLionel Debieve * tSETUP_ATT > tCLS - tWAIT 236695f7df8SLionel Debieve * tSETUP_ATT > tALS - tWAIT 237695f7df8SLionel Debieve * tSETUP_ATT > tRHW - tHOLD_MEM 238695f7df8SLionel Debieve * tSETUP_ATT > tDS - (tWAIT - tHIZ) 239695f7df8SLionel Debieve */ 240695f7df8SLionel Debieve tset_att = hclkp; 241695f7df8SLionel Debieve if ((twait < NAND_TCS_MIN) && (tset_att < (NAND_TCS_MIN - twait))) { 242695f7df8SLionel Debieve tset_att = NAND_TCS_MIN - twait; 243695f7df8SLionel Debieve } 244695f7df8SLionel Debieve if ((thold_mem < NAND_TRHW_MIN) && 245695f7df8SLionel Debieve (tset_att < (NAND_TRHW_MIN - thold_mem))) { 246695f7df8SLionel Debieve tset_att = NAND_TRHW_MIN - thold_mem; 247695f7df8SLionel Debieve } 248695f7df8SLionel Debieve if ((twait > thiz) && ((twait - thiz) < NAND_TDS_MIN) && 249695f7df8SLionel Debieve (tset_att < (NAND_TDS_MIN - (twait - thiz)))) { 250695f7df8SLionel Debieve tset_att = NAND_TDS_MIN - (twait - thiz); 251695f7df8SLionel Debieve } 252695f7df8SLionel Debieve timing = div_round_up(tset_att, hclkp); 253695f7df8SLionel Debieve tims.tset_att = CLAMP(timing, 1UL, 254695f7df8SLionel Debieve (unsigned long)FMC2_PMEM_PATT_TIMING_MASK); 255695f7df8SLionel Debieve 256695f7df8SLionel Debieve /* 257695f7df8SLionel Debieve * tHOLD_ATT > tALH 258695f7df8SLionel Debieve * tHOLD_ATT > tCH 259695f7df8SLionel Debieve * tHOLD_ATT > tCLH 260695f7df8SLionel Debieve * tHOLD_ATT > tCOH 261695f7df8SLionel Debieve * tHOLD_ATT > tDH 262695f7df8SLionel Debieve * tHOLD_ATT > tWB + tIO + tSYNC - tSETUP_MEM 263695f7df8SLionel Debieve * tHOLD_ATT > tADL - tSETUP_MEM 264695f7df8SLionel Debieve * tHOLD_ATT > tWH - tSETUP_MEM 265695f7df8SLionel Debieve * tHOLD_ATT > tWHR - tSETUP_MEM 266695f7df8SLionel Debieve * tHOLD_ATT > tRC - (tSETUP_ATT + tWAIT) 267695f7df8SLionel Debieve * tHOLD_ATT > tWC - (tSETUP_ATT + tWAIT) 268695f7df8SLionel Debieve */ 269695f7df8SLionel Debieve thold_att = MAX(hclkp, NAND_TALH_MIN); 270695f7df8SLionel Debieve thold_att = MAX(thold_att, NAND_TCH_MIN); 271695f7df8SLionel Debieve thold_att = MAX(thold_att, NAND_TCLH_MIN); 272695f7df8SLionel Debieve thold_att = MAX(thold_att, NAND_TCOH_MIN); 273695f7df8SLionel Debieve thold_att = MAX(thold_att, NAND_TDH_MIN); 274695f7df8SLionel Debieve if (((NAND_TWB_MAX + FMC2_TIO + FMC2_TSYNC) > tset_mem) && 275695f7df8SLionel Debieve (thold_att < (NAND_TWB_MAX + FMC2_TIO + FMC2_TSYNC - tset_mem))) { 276695f7df8SLionel Debieve thold_att = NAND_TWB_MAX + FMC2_TIO + FMC2_TSYNC - tset_mem; 277695f7df8SLionel Debieve } 278695f7df8SLionel Debieve if ((tset_mem < NAND_TADL_MIN) && 279695f7df8SLionel Debieve (thold_att < (NAND_TADL_MIN - tset_mem))) { 280695f7df8SLionel Debieve thold_att = NAND_TADL_MIN - tset_mem; 281695f7df8SLionel Debieve } 282695f7df8SLionel Debieve if ((tset_mem < NAND_TWH_MIN) && 283695f7df8SLionel Debieve (thold_att < (NAND_TWH_MIN - tset_mem))) { 284695f7df8SLionel Debieve thold_att = NAND_TWH_MIN - tset_mem; 285695f7df8SLionel Debieve } 286695f7df8SLionel Debieve if ((tset_mem < NAND_TWHR_MIN) && 287695f7df8SLionel Debieve (thold_att < (NAND_TWHR_MIN - tset_mem))) { 288695f7df8SLionel Debieve thold_att = NAND_TWHR_MIN - tset_mem; 289695f7df8SLionel Debieve } 290695f7df8SLionel Debieve if (((tset_att + twait) < NAND_TRC_MIN) && 291695f7df8SLionel Debieve (thold_att < (NAND_TRC_MIN - (tset_att + twait)))) { 292695f7df8SLionel Debieve thold_att = NAND_TRC_MIN - (tset_att + twait); 293695f7df8SLionel Debieve } 294695f7df8SLionel Debieve if (((tset_att + twait) < NAND_TWC_MIN) && 295695f7df8SLionel Debieve (thold_att < (NAND_TWC_MIN - (tset_att + twait)))) { 296695f7df8SLionel Debieve thold_att = NAND_TWC_MIN - (tset_att + twait); 297695f7df8SLionel Debieve } 298695f7df8SLionel Debieve timing = div_round_up(thold_att, hclkp); 299695f7df8SLionel Debieve tims.thold_att = CLAMP(timing, 1UL, 300695f7df8SLionel Debieve (unsigned long)FMC2_PMEM_PATT_TIMING_MASK); 301695f7df8SLionel Debieve 302695f7df8SLionel Debieve VERBOSE("NAND timings: %u - %u - %u - %u - %u - %u - %u - %u\n", 303695f7df8SLionel Debieve tims.tclr, tims.tar, tims.thiz, tims.twait, 304695f7df8SLionel Debieve tims.thold_mem, tims.tset_mem, 305695f7df8SLionel Debieve tims.thold_att, tims.tset_att); 306695f7df8SLionel Debieve 307695f7df8SLionel Debieve /* Set tclr/tar timings */ 308695f7df8SLionel Debieve pcr = mmio_read_32(fmc2_base() + FMC2_PCR); 309695f7df8SLionel Debieve pcr &= ~FMC2_PCR_TCLR_MASK; 310695f7df8SLionel Debieve pcr |= FMC2_PCR_TCLR(tims.tclr); 311695f7df8SLionel Debieve pcr &= ~FMC2_PCR_TAR_MASK; 312695f7df8SLionel Debieve pcr |= FMC2_PCR_TAR(tims.tar); 313695f7df8SLionel Debieve 314695f7df8SLionel Debieve /* Set tset/twait/thold/thiz timings in common bank */ 315695f7df8SLionel Debieve pmem = FMC2_PMEM_MEMSET(tims.tset_mem); 316695f7df8SLionel Debieve pmem |= FMC2_PMEM_MEMWAIT(tims.twait); 317695f7df8SLionel Debieve pmem |= FMC2_PMEM_MEMHOLD(tims.thold_mem); 318695f7df8SLionel Debieve pmem |= FMC2_PMEM_MEMHIZ(tims.thiz); 319695f7df8SLionel Debieve 320695f7df8SLionel Debieve /* Set tset/twait/thold/thiz timings in attribute bank */ 321695f7df8SLionel Debieve patt = FMC2_PATT_ATTSET(tims.tset_att); 322695f7df8SLionel Debieve patt |= FMC2_PATT_ATTWAIT(tims.twait); 323695f7df8SLionel Debieve patt |= FMC2_PATT_ATTHOLD(tims.thold_att); 324695f7df8SLionel Debieve patt |= FMC2_PATT_ATTHIZ(tims.thiz); 325695f7df8SLionel Debieve 326695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_PCR, pcr); 327695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_PMEM, pmem); 328695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_PATT, patt); 329695f7df8SLionel Debieve } 330695f7df8SLionel Debieve 331695f7df8SLionel Debieve static void stm32_fmc2_set_buswidth_16(bool set) 332695f7df8SLionel Debieve { 333695f7df8SLionel Debieve mmio_clrsetbits_32(fmc2_base() + FMC2_PCR, FMC2_PCR_PWID_MASK, 334695f7df8SLionel Debieve (set ? FMC2_PCR_PWID(FMC2_PCR_PWID_16) : 0U)); 335695f7df8SLionel Debieve } 336695f7df8SLionel Debieve 337695f7df8SLionel Debieve static void stm32_fmc2_set_ecc(bool enable) 338695f7df8SLionel Debieve { 339695f7df8SLionel Debieve mmio_clrsetbits_32(fmc2_base() + FMC2_PCR, FMC2_PCR_ECCEN, 340695f7df8SLionel Debieve (enable ? FMC2_PCR_ECCEN : 0U)); 341695f7df8SLionel Debieve } 342695f7df8SLionel Debieve 343695f7df8SLionel Debieve static int stm32_fmc2_ham_correct(uint8_t *buffer, uint8_t *eccbuffer, 344695f7df8SLionel Debieve uint8_t *ecc) 345695f7df8SLionel Debieve { 346695f7df8SLionel Debieve uint8_t xor_ecc_ones; 347695f7df8SLionel Debieve uint16_t xor_ecc_1b, xor_ecc_2b, xor_ecc_3b; 348695f7df8SLionel Debieve union { 349695f7df8SLionel Debieve uint32_t val; 350695f7df8SLionel Debieve uint8_t bytes[4]; 351695f7df8SLionel Debieve } xor_ecc; 352695f7df8SLionel Debieve 353695f7df8SLionel Debieve /* Page size--------ECC_Code Size 354695f7df8SLionel Debieve * 256---------------22 bits LSB (ECC_CODE & 0x003FFFFF) 355695f7df8SLionel Debieve * 512---------------24 bits (ECC_CODE & 0x00FFFFFF) 356695f7df8SLionel Debieve * 1024--------------26 bits (ECC_CODE & 0x03FFFFFF) 357695f7df8SLionel Debieve * 2048--------------28 bits (ECC_CODE & 0x0FFFFFFF) 358695f7df8SLionel Debieve * 4096--------------30 bits (ECC_CODE & 0x3FFFFFFF) 359695f7df8SLionel Debieve * 8192--------------32 bits (ECC_CODE & 0xFFFFFFFF) 360695f7df8SLionel Debieve */ 361695f7df8SLionel Debieve 362695f7df8SLionel Debieve /* For Page size 512, ECC_Code size 24 bits */ 363695f7df8SLionel Debieve xor_ecc_1b = ecc[0] ^ eccbuffer[0]; 364695f7df8SLionel Debieve xor_ecc_2b = ecc[1] ^ eccbuffer[1]; 365695f7df8SLionel Debieve xor_ecc_3b = ecc[2] ^ eccbuffer[2]; 366695f7df8SLionel Debieve 3679fe181c6SYann Gautier xor_ecc.val = 0U; 368695f7df8SLionel Debieve xor_ecc.bytes[2] = xor_ecc_3b; 369695f7df8SLionel Debieve xor_ecc.bytes[1] = xor_ecc_2b; 370695f7df8SLionel Debieve xor_ecc.bytes[0] = xor_ecc_1b; 371695f7df8SLionel Debieve 372695f7df8SLionel Debieve if (xor_ecc.val == 0U) { 373695f7df8SLionel Debieve return 0; /* No Error */ 374695f7df8SLionel Debieve } 375695f7df8SLionel Debieve 376695f7df8SLionel Debieve xor_ecc_ones = __builtin_popcount(xor_ecc.val); 377695f7df8SLionel Debieve if (xor_ecc_ones < 23U) { 378695f7df8SLionel Debieve if (xor_ecc_ones == 12U) { 379695f7df8SLionel Debieve uint16_t bit_address, byte_address; 380695f7df8SLionel Debieve 381695f7df8SLionel Debieve /* Correctable ERROR */ 382695f7df8SLionel Debieve bit_address = ((xor_ecc_1b >> 1) & BIT(0)) | 383695f7df8SLionel Debieve ((xor_ecc_1b >> 2) & BIT(1)) | 384695f7df8SLionel Debieve ((xor_ecc_1b >> 3) & BIT(2)); 385695f7df8SLionel Debieve 386695f7df8SLionel Debieve byte_address = ((xor_ecc_1b >> 7) & BIT(0)) | 387695f7df8SLionel Debieve ((xor_ecc_2b) & BIT(1)) | 388695f7df8SLionel Debieve ((xor_ecc_2b >> 1) & BIT(2)) | 389695f7df8SLionel Debieve ((xor_ecc_2b >> 2) & BIT(3)) | 390695f7df8SLionel Debieve ((xor_ecc_2b >> 3) & BIT(4)) | 391695f7df8SLionel Debieve ((xor_ecc_3b << 4) & BIT(5)) | 392695f7df8SLionel Debieve ((xor_ecc_3b << 3) & BIT(6)) | 393695f7df8SLionel Debieve ((xor_ecc_3b << 2) & BIT(7)) | 394695f7df8SLionel Debieve ((xor_ecc_3b << 1) & BIT(8)); 395695f7df8SLionel Debieve 396695f7df8SLionel Debieve /* Correct bit error in the data */ 397695f7df8SLionel Debieve buffer[byte_address] = 398695f7df8SLionel Debieve buffer[byte_address] ^ BIT(bit_address); 399695f7df8SLionel Debieve VERBOSE("Hamming: 1 ECC error corrected\n"); 400695f7df8SLionel Debieve 401695f7df8SLionel Debieve return 0; 402695f7df8SLionel Debieve } 403695f7df8SLionel Debieve 404695f7df8SLionel Debieve /* Non Correctable ERROR */ 405695f7df8SLionel Debieve ERROR("%s: Uncorrectable ECC Errors\n", __func__); 406695f7df8SLionel Debieve return -1; 407695f7df8SLionel Debieve } 408695f7df8SLionel Debieve 409695f7df8SLionel Debieve /* ECC ERROR */ 410695f7df8SLionel Debieve ERROR("%s: Hamming correction error\n", __func__); 411695f7df8SLionel Debieve return -1; 412695f7df8SLionel Debieve } 413695f7df8SLionel Debieve 414695f7df8SLionel Debieve 415695f7df8SLionel Debieve static int stm32_fmc2_ham_calculate(uint8_t *buffer, uint8_t *ecc) 416695f7df8SLionel Debieve { 417695f7df8SLionel Debieve uint32_t heccr; 418695f7df8SLionel Debieve uint64_t timeout = timeout_init_us(TIMEOUT_US_10_MS); 419695f7df8SLionel Debieve 420695f7df8SLionel Debieve while ((mmio_read_32(fmc2_base() + FMC2_SR) & FMC2_SR_NWRF) == 0U) { 421695f7df8SLionel Debieve if (timeout_elapsed(timeout)) { 422695f7df8SLionel Debieve return -ETIMEDOUT; 423695f7df8SLionel Debieve } 424695f7df8SLionel Debieve } 425695f7df8SLionel Debieve 426695f7df8SLionel Debieve heccr = mmio_read_32(fmc2_base() + FMC2_HECCR); 427695f7df8SLionel Debieve 428695f7df8SLionel Debieve ecc[0] = heccr; 429695f7df8SLionel Debieve ecc[1] = heccr >> 8; 430695f7df8SLionel Debieve ecc[2] = heccr >> 16; 431695f7df8SLionel Debieve 432695f7df8SLionel Debieve /* Disable ECC */ 433695f7df8SLionel Debieve stm32_fmc2_set_ecc(false); 434695f7df8SLionel Debieve 435695f7df8SLionel Debieve return 0; 436695f7df8SLionel Debieve } 437695f7df8SLionel Debieve 438695f7df8SLionel Debieve static int stm32_fmc2_bch_correct(uint8_t *buffer, unsigned int eccsize) 439695f7df8SLionel Debieve { 440695f7df8SLionel Debieve uint32_t bchdsr0, bchdsr1, bchdsr2, bchdsr3, bchdsr4; 441695f7df8SLionel Debieve uint16_t pos[8]; 442695f7df8SLionel Debieve int i, den; 443695f7df8SLionel Debieve uint64_t timeout = timeout_init_us(TIMEOUT_US_10_MS); 444695f7df8SLionel Debieve 445695f7df8SLionel Debieve while ((mmio_read_32(fmc2_base() + FMC2_BCHISR) & 446695f7df8SLionel Debieve FMC2_BCHISR_DERF) == 0U) { 447695f7df8SLionel Debieve if (timeout_elapsed(timeout)) { 448695f7df8SLionel Debieve return -ETIMEDOUT; 449695f7df8SLionel Debieve } 450695f7df8SLionel Debieve } 451695f7df8SLionel Debieve 452695f7df8SLionel Debieve bchdsr0 = mmio_read_32(fmc2_base() + FMC2_BCHDSR0); 453695f7df8SLionel Debieve bchdsr1 = mmio_read_32(fmc2_base() + FMC2_BCHDSR1); 454695f7df8SLionel Debieve bchdsr2 = mmio_read_32(fmc2_base() + FMC2_BCHDSR2); 455695f7df8SLionel Debieve bchdsr3 = mmio_read_32(fmc2_base() + FMC2_BCHDSR3); 456695f7df8SLionel Debieve bchdsr4 = mmio_read_32(fmc2_base() + FMC2_BCHDSR4); 457695f7df8SLionel Debieve 458695f7df8SLionel Debieve /* Disable ECC */ 459695f7df8SLionel Debieve stm32_fmc2_set_ecc(false); 460695f7df8SLionel Debieve 461695f7df8SLionel Debieve /* No error found */ 462695f7df8SLionel Debieve if ((bchdsr0 & FMC2_BCHDSR0_DEF) == 0U) { 463695f7df8SLionel Debieve return 0; 464695f7df8SLionel Debieve } 465695f7df8SLionel Debieve 466695f7df8SLionel Debieve /* Too many errors detected */ 467695f7df8SLionel Debieve if ((bchdsr0 & FMC2_BCHDSR0_DUE) != 0U) { 468695f7df8SLionel Debieve return -EBADMSG; 469695f7df8SLionel Debieve } 470695f7df8SLionel Debieve 471695f7df8SLionel Debieve pos[0] = bchdsr1 & FMC2_BCHDSR1_EBP1_MASK; 472695f7df8SLionel Debieve pos[1] = (bchdsr1 & FMC2_BCHDSR1_EBP2_MASK) >> FMC2_BCHDSR1_EBP2_SHIFT; 473695f7df8SLionel Debieve pos[2] = bchdsr2 & FMC2_BCHDSR2_EBP3_MASK; 474695f7df8SLionel Debieve pos[3] = (bchdsr2 & FMC2_BCHDSR2_EBP4_MASK) >> FMC2_BCHDSR2_EBP4_SHIFT; 475695f7df8SLionel Debieve pos[4] = bchdsr3 & FMC2_BCHDSR3_EBP5_MASK; 476695f7df8SLionel Debieve pos[5] = (bchdsr3 & FMC2_BCHDSR3_EBP6_MASK) >> FMC2_BCHDSR3_EBP6_SHIFT; 477695f7df8SLionel Debieve pos[6] = bchdsr4 & FMC2_BCHDSR4_EBP7_MASK; 478695f7df8SLionel Debieve pos[7] = (bchdsr4 & FMC2_BCHDSR4_EBP8_MASK) >> FMC2_BCHDSR4_EBP8_SHIFT; 479695f7df8SLionel Debieve 480695f7df8SLionel Debieve den = (bchdsr0 & FMC2_BCHDSR0_DEN_MASK) >> FMC2_BCHDSR0_DEN_SHIFT; 481695f7df8SLionel Debieve for (i = 0; i < den; i++) { 482695f7df8SLionel Debieve if (pos[i] < (eccsize * 8U)) { 483695f7df8SLionel Debieve uint8_t bitmask = BIT(pos[i] % 8U); 484695f7df8SLionel Debieve uint32_t offset = pos[i] / 8U; 485695f7df8SLionel Debieve 486695f7df8SLionel Debieve *(buffer + offset) ^= bitmask; 487695f7df8SLionel Debieve } 488695f7df8SLionel Debieve } 489695f7df8SLionel Debieve 490695f7df8SLionel Debieve return 0; 491695f7df8SLionel Debieve } 492695f7df8SLionel Debieve 493695f7df8SLionel Debieve static void stm32_fmc2_hwctl(struct nand_device *nand) 494695f7df8SLionel Debieve { 495695f7df8SLionel Debieve stm32_fmc2_set_ecc(false); 496695f7df8SLionel Debieve 497695f7df8SLionel Debieve if (nand->ecc.max_bit_corr != FMC2_ECC_HAM) { 498695f7df8SLionel Debieve mmio_clrbits_32(fmc2_base() + FMC2_PCR, FMC2_PCR_WEN); 49944966000SLionel Debieve mmio_write_32(fmc2_base() + FMC2_BCHICR, FMC2_BCHICR_CLEAR_IRQ); 500695f7df8SLionel Debieve } 501695f7df8SLionel Debieve 502695f7df8SLionel Debieve stm32_fmc2_set_ecc(true); 503695f7df8SLionel Debieve } 504695f7df8SLionel Debieve 505695f7df8SLionel Debieve static int stm32_fmc2_read_page(struct nand_device *nand, 506695f7df8SLionel Debieve unsigned int page, uintptr_t buffer) 507695f7df8SLionel Debieve { 508695f7df8SLionel Debieve unsigned int eccsize = nand->ecc.size; 509695f7df8SLionel Debieve unsigned int eccbytes = nand->ecc.bytes; 510695f7df8SLionel Debieve unsigned int eccsteps = nand->page_size / eccsize; 511695f7df8SLionel Debieve uint8_t ecc_corr[FMC2_MAX_ECC_BYTES]; 512695f7df8SLionel Debieve uint8_t ecc_cal[FMC2_MAX_ECC_BYTES] = {0U}; 513695f7df8SLionel Debieve uint8_t *p; 514695f7df8SLionel Debieve unsigned int i; 515695f7df8SLionel Debieve unsigned int s; 516695f7df8SLionel Debieve int ret; 517695f7df8SLionel Debieve 518695f7df8SLionel Debieve VERBOSE(">%s page %i buffer %lx\n", __func__, page, buffer); 519695f7df8SLionel Debieve 520695f7df8SLionel Debieve ret = nand_read_page_cmd(page, 0U, 0U, 0U); 521695f7df8SLionel Debieve if (ret != 0) { 522695f7df8SLionel Debieve return ret; 523695f7df8SLionel Debieve } 524695f7df8SLionel Debieve 525695f7df8SLionel Debieve for (s = 0U, i = nand->page_size + FMC2_BBM_LEN, p = (uint8_t *)buffer; 526695f7df8SLionel Debieve s < eccsteps; 527695f7df8SLionel Debieve s++, i += eccbytes, p += eccsize) { 528695f7df8SLionel Debieve stm32_fmc2_hwctl(nand); 529695f7df8SLionel Debieve 530695f7df8SLionel Debieve /* Read the NAND page sector (512 bytes) */ 531695f7df8SLionel Debieve ret = nand_change_read_column_cmd(s * eccsize, (uintptr_t)p, 532695f7df8SLionel Debieve eccsize); 533695f7df8SLionel Debieve if (ret != 0) { 534695f7df8SLionel Debieve return ret; 535695f7df8SLionel Debieve } 536695f7df8SLionel Debieve 537695f7df8SLionel Debieve if (nand->ecc.max_bit_corr == FMC2_ECC_HAM) { 538695f7df8SLionel Debieve ret = stm32_fmc2_ham_calculate(p, ecc_cal); 539695f7df8SLionel Debieve if (ret != 0) { 540695f7df8SLionel Debieve return ret; 541695f7df8SLionel Debieve } 542695f7df8SLionel Debieve } 543695f7df8SLionel Debieve 544695f7df8SLionel Debieve /* Read the corresponding ECC bytes */ 545695f7df8SLionel Debieve ret = nand_change_read_column_cmd(i, (uintptr_t)ecc_corr, 546695f7df8SLionel Debieve eccbytes); 547695f7df8SLionel Debieve if (ret != 0) { 548695f7df8SLionel Debieve return ret; 549695f7df8SLionel Debieve } 550695f7df8SLionel Debieve 551695f7df8SLionel Debieve /* Correct the data */ 552695f7df8SLionel Debieve if (nand->ecc.max_bit_corr == FMC2_ECC_HAM) { 553695f7df8SLionel Debieve ret = stm32_fmc2_ham_correct(p, ecc_corr, ecc_cal); 554695f7df8SLionel Debieve } else { 555695f7df8SLionel Debieve ret = stm32_fmc2_bch_correct(p, eccsize); 556695f7df8SLionel Debieve } 557695f7df8SLionel Debieve 558695f7df8SLionel Debieve if (ret != 0) { 559695f7df8SLionel Debieve return ret; 560695f7df8SLionel Debieve } 561695f7df8SLionel Debieve } 562695f7df8SLionel Debieve 563695f7df8SLionel Debieve return 0; 564695f7df8SLionel Debieve } 565695f7df8SLionel Debieve 566695f7df8SLionel Debieve static void stm32_fmc2_read_data(struct nand_device *nand, 567695f7df8SLionel Debieve uint8_t *buff, unsigned int length, 568695f7df8SLionel Debieve bool use_bus8) 569695f7df8SLionel Debieve { 570695f7df8SLionel Debieve uintptr_t data_base = stm32_fmc2.cs[stm32_fmc2.cs_sel].data_base; 571695f7df8SLionel Debieve 572695f7df8SLionel Debieve if (use_bus8 && (nand->buswidth == NAND_BUS_WIDTH_16)) { 573695f7df8SLionel Debieve stm32_fmc2_set_buswidth_16(false); 574695f7df8SLionel Debieve } 575695f7df8SLionel Debieve 576695f7df8SLionel Debieve if ((((uintptr_t)buff & BIT(0)) != 0U) && (length != 0U)) { 577695f7df8SLionel Debieve *buff = mmio_read_8(data_base); 578695f7df8SLionel Debieve buff += sizeof(uint8_t); 579695f7df8SLionel Debieve length -= sizeof(uint8_t); 580695f7df8SLionel Debieve } 581695f7df8SLionel Debieve 582695f7df8SLionel Debieve if ((((uintptr_t)buff & GENMASK_32(1, 0)) != 0U) && 583695f7df8SLionel Debieve (length >= sizeof(uint16_t))) { 584695f7df8SLionel Debieve *(uint16_t *)buff = mmio_read_16(data_base); 585695f7df8SLionel Debieve buff += sizeof(uint16_t); 586695f7df8SLionel Debieve length -= sizeof(uint16_t); 587695f7df8SLionel Debieve } 588695f7df8SLionel Debieve 589695f7df8SLionel Debieve /* 32bit aligned */ 590695f7df8SLionel Debieve while (length >= sizeof(uint32_t)) { 591695f7df8SLionel Debieve *(uint32_t *)buff = mmio_read_32(data_base); 592695f7df8SLionel Debieve buff += sizeof(uint32_t); 593695f7df8SLionel Debieve length -= sizeof(uint32_t); 594695f7df8SLionel Debieve } 595695f7df8SLionel Debieve 596695f7df8SLionel Debieve /* Read remaining bytes */ 597695f7df8SLionel Debieve if (length >= sizeof(uint16_t)) { 598695f7df8SLionel Debieve *(uint16_t *)buff = mmio_read_16(data_base); 599695f7df8SLionel Debieve buff += sizeof(uint16_t); 600695f7df8SLionel Debieve length -= sizeof(uint16_t); 601695f7df8SLionel Debieve } 602695f7df8SLionel Debieve 603695f7df8SLionel Debieve if (length != 0U) { 604695f7df8SLionel Debieve *buff = mmio_read_8(data_base); 605695f7df8SLionel Debieve } 606695f7df8SLionel Debieve 607695f7df8SLionel Debieve if (use_bus8 && (nand->buswidth == NAND_BUS_WIDTH_16)) { 608695f7df8SLionel Debieve /* Reconfigure bus width to 16-bit */ 609695f7df8SLionel Debieve stm32_fmc2_set_buswidth_16(true); 610695f7df8SLionel Debieve } 611695f7df8SLionel Debieve } 612695f7df8SLionel Debieve 613695f7df8SLionel Debieve static void stm32_fmc2_write_data(struct nand_device *nand, 614695f7df8SLionel Debieve uint8_t *buff, unsigned int length, 615695f7df8SLionel Debieve bool use_bus8) 616695f7df8SLionel Debieve { 617695f7df8SLionel Debieve uintptr_t data_base = stm32_fmc2.cs[stm32_fmc2.cs_sel].data_base; 618695f7df8SLionel Debieve 619695f7df8SLionel Debieve if (use_bus8 && (nand->buswidth == NAND_BUS_WIDTH_16)) { 620695f7df8SLionel Debieve /* Reconfigure bus width to 8-bit */ 621695f7df8SLionel Debieve stm32_fmc2_set_buswidth_16(false); 622695f7df8SLionel Debieve } 623695f7df8SLionel Debieve 624695f7df8SLionel Debieve if ((((uintptr_t)buff & BIT(0)) != 0U) && (length != 0U)) { 625695f7df8SLionel Debieve mmio_write_8(data_base, *buff); 626695f7df8SLionel Debieve buff += sizeof(uint8_t); 627695f7df8SLionel Debieve length -= sizeof(uint8_t); 628695f7df8SLionel Debieve } 629695f7df8SLionel Debieve 630695f7df8SLionel Debieve if ((((uintptr_t)buff & GENMASK_32(1, 0)) != 0U) && 631695f7df8SLionel Debieve (length >= sizeof(uint16_t))) { 632695f7df8SLionel Debieve mmio_write_16(data_base, *(uint16_t *)buff); 633695f7df8SLionel Debieve buff += sizeof(uint16_t); 634695f7df8SLionel Debieve length -= sizeof(uint16_t); 635695f7df8SLionel Debieve } 636695f7df8SLionel Debieve 637695f7df8SLionel Debieve /* 32bits aligned */ 638695f7df8SLionel Debieve while (length >= sizeof(uint32_t)) { 639695f7df8SLionel Debieve mmio_write_32(data_base, *(uint32_t *)buff); 640695f7df8SLionel Debieve buff += sizeof(uint32_t); 641695f7df8SLionel Debieve length -= sizeof(uint32_t); 642695f7df8SLionel Debieve } 643695f7df8SLionel Debieve 644695f7df8SLionel Debieve /* Read remaining bytes */ 645695f7df8SLionel Debieve if (length >= sizeof(uint16_t)) { 646695f7df8SLionel Debieve mmio_write_16(data_base, *(uint16_t *)buff); 647695f7df8SLionel Debieve buff += sizeof(uint16_t); 648695f7df8SLionel Debieve length -= sizeof(uint16_t); 649695f7df8SLionel Debieve } 650695f7df8SLionel Debieve 651695f7df8SLionel Debieve if (length != 0U) { 652695f7df8SLionel Debieve mmio_write_8(data_base, *buff); 653695f7df8SLionel Debieve } 654695f7df8SLionel Debieve 655695f7df8SLionel Debieve if (use_bus8 && (nand->buswidth == NAND_BUS_WIDTH_16)) { 656695f7df8SLionel Debieve /* Reconfigure bus width to 16-bit */ 657695f7df8SLionel Debieve stm32_fmc2_set_buswidth_16(true); 658695f7df8SLionel Debieve } 659695f7df8SLionel Debieve } 660695f7df8SLionel Debieve 661695f7df8SLionel Debieve static void stm32_fmc2_ctrl_init(void) 662695f7df8SLionel Debieve { 663695f7df8SLionel Debieve uint32_t pcr = mmio_read_32(fmc2_base() + FMC2_PCR); 664695f7df8SLionel Debieve uint32_t bcr1 = mmio_read_32(fmc2_base() + FMC2_BCR1); 665695f7df8SLionel Debieve 666695f7df8SLionel Debieve /* Enable wait feature and NAND flash memory bank */ 667695f7df8SLionel Debieve pcr |= FMC2_PCR_PWAITEN; 668695f7df8SLionel Debieve pcr |= FMC2_PCR_PBKEN; 669695f7df8SLionel Debieve 670695f7df8SLionel Debieve /* Set buswidth to 8 bits mode for identification */ 671695f7df8SLionel Debieve pcr &= ~FMC2_PCR_PWID_MASK; 672695f7df8SLionel Debieve 673695f7df8SLionel Debieve /* ECC logic is disabled */ 674695f7df8SLionel Debieve pcr &= ~FMC2_PCR_ECCEN; 675695f7df8SLionel Debieve 676695f7df8SLionel Debieve /* Default mode */ 677695f7df8SLionel Debieve pcr &= ~FMC2_PCR_ECCALG; 678695f7df8SLionel Debieve pcr &= ~FMC2_PCR_BCHECC; 679695f7df8SLionel Debieve pcr &= ~FMC2_PCR_WEN; 680695f7df8SLionel Debieve 681695f7df8SLionel Debieve /* Set default ECC sector size */ 682695f7df8SLionel Debieve pcr &= ~FMC2_PCR_ECCSS_MASK; 683695f7df8SLionel Debieve pcr |= FMC2_PCR_ECCSS(FMC2_PCR_ECCSS_2048); 684695f7df8SLionel Debieve 685695f7df8SLionel Debieve /* Set default TCLR/TAR timings */ 686695f7df8SLionel Debieve pcr &= ~FMC2_PCR_TCLR_MASK; 687695f7df8SLionel Debieve pcr |= FMC2_PCR_TCLR(FMC2_PCR_TCLR_DEFAULT); 688695f7df8SLionel Debieve pcr &= ~FMC2_PCR_TAR_MASK; 689695f7df8SLionel Debieve pcr |= FMC2_PCR_TAR(FMC2_PCR_TAR_DEFAULT); 690695f7df8SLionel Debieve 691695f7df8SLionel Debieve /* Enable FMC2 controller */ 692695f7df8SLionel Debieve bcr1 |= FMC2_BCR1_FMC2EN; 693695f7df8SLionel Debieve 694695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_BCR1, bcr1); 695695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_PCR, pcr); 696695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_PMEM, FMC2_PMEM_DEFAULT); 697695f7df8SLionel Debieve mmio_write_32(fmc2_base() + FMC2_PATT, FMC2_PATT_DEFAULT); 698695f7df8SLionel Debieve } 699695f7df8SLionel Debieve 700695f7df8SLionel Debieve static int stm32_fmc2_exec(struct nand_req *req) 701695f7df8SLionel Debieve { 702695f7df8SLionel Debieve int ret = 0; 703695f7df8SLionel Debieve 704695f7df8SLionel Debieve switch (req->type & NAND_REQ_MASK) { 705695f7df8SLionel Debieve case NAND_REQ_CMD: 706695f7df8SLionel Debieve VERBOSE("Write CMD %x\n", (uint8_t)req->type); 707695f7df8SLionel Debieve mmio_write_8(stm32_fmc2.cs[stm32_fmc2.cs_sel].cmd_base, 708695f7df8SLionel Debieve (uint8_t)req->type); 709695f7df8SLionel Debieve break; 710695f7df8SLionel Debieve case NAND_REQ_ADDR: 711695f7df8SLionel Debieve VERBOSE("Write ADDR %x\n", *(req->addr)); 712695f7df8SLionel Debieve mmio_write_8(stm32_fmc2.cs[stm32_fmc2.cs_sel].addr_base, 713695f7df8SLionel Debieve *(req->addr)); 714695f7df8SLionel Debieve break; 715695f7df8SLionel Debieve case NAND_REQ_DATAIN: 716695f7df8SLionel Debieve VERBOSE("Read data\n"); 717695f7df8SLionel Debieve stm32_fmc2_read_data(req->nand, req->addr, req->length, 718695f7df8SLionel Debieve ((req->type & NAND_REQ_BUS_WIDTH_8) != 719695f7df8SLionel Debieve 0U)); 720695f7df8SLionel Debieve break; 721695f7df8SLionel Debieve case NAND_REQ_DATAOUT: 722695f7df8SLionel Debieve VERBOSE("Write data\n"); 723695f7df8SLionel Debieve stm32_fmc2_write_data(req->nand, req->addr, req->length, 724695f7df8SLionel Debieve ((req->type & NAND_REQ_BUS_WIDTH_8) != 725695f7df8SLionel Debieve 0U)); 726695f7df8SLionel Debieve break; 727695f7df8SLionel Debieve case NAND_REQ_WAIT: 728695f7df8SLionel Debieve VERBOSE("WAIT Ready\n"); 729695f7df8SLionel Debieve ret = nand_wait_ready(req->delay_ms); 730695f7df8SLionel Debieve break; 731695f7df8SLionel Debieve default: 732695f7df8SLionel Debieve ret = -EINVAL; 733695f7df8SLionel Debieve break; 734695f7df8SLionel Debieve }; 735695f7df8SLionel Debieve 736695f7df8SLionel Debieve return ret; 737695f7df8SLionel Debieve } 738695f7df8SLionel Debieve 739695f7df8SLionel Debieve static void stm32_fmc2_setup(struct nand_device *nand) 740695f7df8SLionel Debieve { 741695f7df8SLionel Debieve uint32_t pcr = mmio_read_32(fmc2_base() + FMC2_PCR); 742695f7df8SLionel Debieve 743695f7df8SLionel Debieve /* Set buswidth */ 744695f7df8SLionel Debieve pcr &= ~FMC2_PCR_PWID_MASK; 745695f7df8SLionel Debieve if (nand->buswidth == NAND_BUS_WIDTH_16) { 746695f7df8SLionel Debieve pcr |= FMC2_PCR_PWID(FMC2_PCR_PWID_16); 747695f7df8SLionel Debieve } 748695f7df8SLionel Debieve 749695f7df8SLionel Debieve if (nand->ecc.mode == NAND_ECC_HW) { 750695f7df8SLionel Debieve nand->mtd_read_page = stm32_fmc2_read_page; 751695f7df8SLionel Debieve 752695f7df8SLionel Debieve pcr &= ~FMC2_PCR_ECCALG; 753695f7df8SLionel Debieve pcr &= ~FMC2_PCR_BCHECC; 754695f7df8SLionel Debieve 755695f7df8SLionel Debieve pcr &= ~FMC2_PCR_ECCSS_MASK; 756695f7df8SLionel Debieve pcr |= FMC2_PCR_ECCSS(FMC2_PCR_ECCSS_512); 757695f7df8SLionel Debieve 758695f7df8SLionel Debieve switch (nand->ecc.max_bit_corr) { 759695f7df8SLionel Debieve case FMC2_ECC_HAM: 760695f7df8SLionel Debieve nand->ecc.bytes = 3; 761695f7df8SLionel Debieve break; 762695f7df8SLionel Debieve case FMC2_ECC_BCH8: 763695f7df8SLionel Debieve pcr |= FMC2_PCR_ECCALG; 764695f7df8SLionel Debieve pcr |= FMC2_PCR_BCHECC; 765695f7df8SLionel Debieve nand->ecc.bytes = 13; 766695f7df8SLionel Debieve break; 767695f7df8SLionel Debieve default: 768695f7df8SLionel Debieve /* Use FMC2 ECC BCH4 */ 769695f7df8SLionel Debieve pcr |= FMC2_PCR_ECCALG; 770695f7df8SLionel Debieve nand->ecc.bytes = 7; 771695f7df8SLionel Debieve break; 772695f7df8SLionel Debieve } 773695f7df8SLionel Debieve 774695f7df8SLionel Debieve if ((nand->buswidth & NAND_BUS_WIDTH_16) != 0) { 775695f7df8SLionel Debieve nand->ecc.bytes++; 776695f7df8SLionel Debieve } 777695f7df8SLionel Debieve } 778695f7df8SLionel Debieve 779695f7df8SLionel Debieve mmio_write_32(stm32_fmc2.reg_base + FMC2_PCR, pcr); 780695f7df8SLionel Debieve } 781695f7df8SLionel Debieve 782695f7df8SLionel Debieve static const struct nand_ctrl_ops ctrl_ops = { 783695f7df8SLionel Debieve .setup = stm32_fmc2_setup, 784695f7df8SLionel Debieve .exec = stm32_fmc2_exec 785695f7df8SLionel Debieve }; 786695f7df8SLionel Debieve 787695f7df8SLionel Debieve int stm32_fmc2_init(void) 788695f7df8SLionel Debieve { 7890c3e8acbSChristophe Kerello int fmc_ebi_node; 7900c3e8acbSChristophe Kerello int fmc_nfc_node; 7910c3e8acbSChristophe Kerello int fmc_flash_node = 0; 792695f7df8SLionel Debieve int nchips = 0; 793695f7df8SLionel Debieve unsigned int i; 794695f7df8SLionel Debieve void *fdt = NULL; 795695f7df8SLionel Debieve const fdt32_t *cuint; 796695f7df8SLionel Debieve struct dt_node_info info; 7970c3e8acbSChristophe Kerello uintptr_t bank_address[MAX_BANK] = { 0, 0, 0, 0, 0 }; 7980c3e8acbSChristophe Kerello uint8_t bank_assigned = 0; 7990c3e8acbSChristophe Kerello uint8_t bank; 80045c70e68SEtienne Carriere int ret; 801695f7df8SLionel Debieve 802695f7df8SLionel Debieve if (fdt_get_address(&fdt) == 0) { 803695f7df8SLionel Debieve return -FDT_ERR_NOTFOUND; 804695f7df8SLionel Debieve } 805695f7df8SLionel Debieve 8060c3e8acbSChristophe Kerello fmc_ebi_node = dt_get_node(&info, -1, DT_FMC2_EBI_COMPAT); 8070c3e8acbSChristophe Kerello if (fmc_ebi_node < 0) { 8080c3e8acbSChristophe Kerello return fmc_ebi_node; 809695f7df8SLionel Debieve } 810695f7df8SLionel Debieve 811695f7df8SLionel Debieve if (info.status == DT_DISABLED) { 812695f7df8SLionel Debieve return -FDT_ERR_NOTFOUND; 813695f7df8SLionel Debieve } 814695f7df8SLionel Debieve 815695f7df8SLionel Debieve stm32_fmc2.reg_base = info.base; 816695f7df8SLionel Debieve 817695f7df8SLionel Debieve if ((info.clock < 0) || (info.reset < 0)) { 818695f7df8SLionel Debieve return -FDT_ERR_BADVALUE; 819695f7df8SLionel Debieve } 820695f7df8SLionel Debieve 821695f7df8SLionel Debieve stm32_fmc2.clock_id = (unsigned long)info.clock; 822695f7df8SLionel Debieve stm32_fmc2.reset_id = (unsigned int)info.reset; 823695f7df8SLionel Debieve 8240c3e8acbSChristophe Kerello cuint = fdt_getprop(fdt, fmc_ebi_node, "ranges", NULL); 825695f7df8SLionel Debieve if (cuint == NULL) { 826695f7df8SLionel Debieve return -FDT_ERR_BADVALUE; 827695f7df8SLionel Debieve } 828695f7df8SLionel Debieve 8290c3e8acbSChristophe Kerello for (i = 0U; i < MAX_BANK; i++) { 8300c3e8acbSChristophe Kerello bank = fdt32_to_cpu(*cuint); 8310c3e8acbSChristophe Kerello if ((bank >= MAX_BANK) || ((bank_assigned & BIT(bank)) != 0U)) { 8320c3e8acbSChristophe Kerello return -FDT_ERR_BADVALUE; 8330c3e8acbSChristophe Kerello } 8340c3e8acbSChristophe Kerello bank_assigned |= BIT(bank); 8350c3e8acbSChristophe Kerello bank_address[bank] = fdt32_to_cpu(*(cuint + 2)); 8360c3e8acbSChristophe Kerello cuint += 4; 837695f7df8SLionel Debieve } 838695f7df8SLionel Debieve 839695f7df8SLionel Debieve /* Pinctrl initialization */ 8400c3e8acbSChristophe Kerello if (dt_set_pinctrl_config(fmc_ebi_node) != 0) { 841695f7df8SLionel Debieve return -FDT_ERR_BADVALUE; 842695f7df8SLionel Debieve } 843695f7df8SLionel Debieve 8440c3e8acbSChristophe Kerello /* Parse NFC controller node */ 8450c3e8acbSChristophe Kerello fmc_nfc_node = fdt_node_offset_by_compatible(fdt, fmc_ebi_node, 8460c3e8acbSChristophe Kerello DT_FMC2_NFC_COMPAT); 8470c3e8acbSChristophe Kerello if (fmc_nfc_node < 0) { 8480c3e8acbSChristophe Kerello return fmc_nfc_node; 8490c3e8acbSChristophe Kerello } 8500c3e8acbSChristophe Kerello 8510c3e8acbSChristophe Kerello if (fdt_get_status(fmc_nfc_node) == DT_DISABLED) { 8520c3e8acbSChristophe Kerello return -FDT_ERR_NOTFOUND; 8530c3e8acbSChristophe Kerello } 8540c3e8acbSChristophe Kerello 8550c3e8acbSChristophe Kerello cuint = fdt_getprop(fdt, fmc_nfc_node, "reg", NULL); 8560c3e8acbSChristophe Kerello if (cuint == NULL) { 8570c3e8acbSChristophe Kerello return -FDT_ERR_BADVALUE; 8580c3e8acbSChristophe Kerello } 8590c3e8acbSChristophe Kerello 8600c3e8acbSChristophe Kerello for (i = 0U; i < MAX_CS; i++) { 8610c3e8acbSChristophe Kerello bank = fdt32_to_cpu(*cuint); 8620c3e8acbSChristophe Kerello if (bank >= MAX_BANK) { 8630c3e8acbSChristophe Kerello return -FDT_ERR_BADVALUE; 8640c3e8acbSChristophe Kerello } 8650c3e8acbSChristophe Kerello stm32_fmc2.cs[i].data_base = fdt32_to_cpu(*(cuint + 1)) + 8660c3e8acbSChristophe Kerello bank_address[bank]; 8670c3e8acbSChristophe Kerello 8680c3e8acbSChristophe Kerello bank = fdt32_to_cpu(*(cuint + 3)); 8690c3e8acbSChristophe Kerello if (bank >= MAX_BANK) { 8700c3e8acbSChristophe Kerello return -FDT_ERR_BADVALUE; 8710c3e8acbSChristophe Kerello } 8720c3e8acbSChristophe Kerello stm32_fmc2.cs[i].cmd_base = fdt32_to_cpu(*(cuint + 4)) + 8730c3e8acbSChristophe Kerello bank_address[bank]; 8740c3e8acbSChristophe Kerello 8750c3e8acbSChristophe Kerello bank = fdt32_to_cpu(*(cuint + 6)); 8760c3e8acbSChristophe Kerello if (bank >= MAX_BANK) { 8770c3e8acbSChristophe Kerello return -FDT_ERR_BADVALUE; 8780c3e8acbSChristophe Kerello } 8790c3e8acbSChristophe Kerello stm32_fmc2.cs[i].addr_base = fdt32_to_cpu(*(cuint + 7)) + 8800c3e8acbSChristophe Kerello bank_address[bank]; 8810c3e8acbSChristophe Kerello 8820c3e8acbSChristophe Kerello cuint += 9; 8830c3e8acbSChristophe Kerello } 8840c3e8acbSChristophe Kerello 885695f7df8SLionel Debieve /* Parse flash nodes */ 8860c3e8acbSChristophe Kerello fdt_for_each_subnode(fmc_flash_node, fdt, fmc_nfc_node) { 887695f7df8SLionel Debieve nchips++; 888695f7df8SLionel Debieve } 889695f7df8SLionel Debieve 890695f7df8SLionel Debieve if (nchips != 1) { 891695f7df8SLionel Debieve WARN("Only one SLC NAND device supported\n"); 892695f7df8SLionel Debieve return -FDT_ERR_BADVALUE; 893695f7df8SLionel Debieve } 894695f7df8SLionel Debieve 8950c3e8acbSChristophe Kerello fdt_for_each_subnode(fmc_flash_node, fdt, fmc_nfc_node) { 896695f7df8SLionel Debieve /* Get chip select */ 8970c3e8acbSChristophe Kerello cuint = fdt_getprop(fdt, fmc_flash_node, "reg", NULL); 898695f7df8SLionel Debieve if (cuint == NULL) { 899695f7df8SLionel Debieve WARN("Chip select not well defined\n"); 900695f7df8SLionel Debieve return -FDT_ERR_BADVALUE; 901695f7df8SLionel Debieve } 902495885bcSLionel Debieve 903695f7df8SLionel Debieve stm32_fmc2.cs_sel = fdt32_to_cpu(*cuint); 904495885bcSLionel Debieve if (stm32_fmc2.cs_sel >= MAX_CS) { 905495885bcSLionel Debieve return -FDT_ERR_BADVALUE; 906495885bcSLionel Debieve } 907495885bcSLionel Debieve 908695f7df8SLionel Debieve VERBOSE("NAND CS %i\n", stm32_fmc2.cs_sel); 909695f7df8SLionel Debieve } 910695f7df8SLionel Debieve 911695f7df8SLionel Debieve /* Enable Clock */ 912695f7df8SLionel Debieve stm32mp_clk_enable(stm32_fmc2.clock_id); 913695f7df8SLionel Debieve 914695f7df8SLionel Debieve /* Reset IP */ 91545c70e68SEtienne Carriere ret = stm32mp_reset_assert(stm32_fmc2.reset_id, TIMEOUT_US_1_MS); 91645c70e68SEtienne Carriere if (ret != 0) { 91745c70e68SEtienne Carriere panic(); 91845c70e68SEtienne Carriere } 91945c70e68SEtienne Carriere ret = stm32mp_reset_deassert(stm32_fmc2.reset_id, TIMEOUT_US_1_MS); 92045c70e68SEtienne Carriere if (ret != 0) { 92145c70e68SEtienne Carriere panic(); 92245c70e68SEtienne Carriere } 923695f7df8SLionel Debieve 924695f7df8SLionel Debieve /* Setup default IP registers */ 925695f7df8SLionel Debieve stm32_fmc2_ctrl_init(); 926695f7df8SLionel Debieve 927695f7df8SLionel Debieve /* Setup default timings */ 928695f7df8SLionel Debieve stm32_fmc2_nand_setup_timing(); 929695f7df8SLionel Debieve 930695f7df8SLionel Debieve /* Init NAND RAW framework */ 931695f7df8SLionel Debieve nand_raw_ctrl_init(&ctrl_ops); 932695f7df8SLionel Debieve 933695f7df8SLionel Debieve return 0; 934695f7df8SLionel Debieve } 935