📄 flash.c
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/* * (C) Copyright 2000-2004 * Wolfgang Denk, DENX Software Engineering, wd@denx.de. * * See file CREDITS for list of people who contributed to this * project. * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public License as * published by the Free Software Foundation; either version 2 of * the License, or (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 59 Temple Place, Suite 330, Boston, * MA 02111-1307 USA */#if 0#define DEBUG#endif#include <common.h>#include <mpc8xx.h>#include <environment.h>#include <asm/processor.h>#if defined(CONFIG_TQM8xxL) && !defined(CONFIG_TQM866M)# ifndef CFG_OR_TIMING_FLASH_AT_50MHZ# define CFG_OR_TIMING_FLASH_AT_50MHZ (OR_ACS_DIV1 | OR_TRLX | OR_CSNT_SAM | \ OR_SCY_2_CLK | OR_EHTR | OR_BI)# endif#endif /* CONFIG_TQM8xxL/M, !TQM866M */#ifndef CFG_ENV_ADDR#define CFG_ENV_ADDR (CFG_FLASH_BASE + CFG_ENV_OFFSET)#endifflash_info_t flash_info[CFG_MAX_FLASH_BANKS]; /* info for FLASH chips *//*----------------------------------------------------------------------- * Functions */static ulong flash_get_size (vu_long *addr, flash_info_t *info);static int write_word (flash_info_t *info, ulong dest, ulong data);/*----------------------------------------------------------------------- */unsigned long flash_init (void){ volatile immap_t *immap = (immap_t *)CFG_IMMR; volatile memctl8xx_t *memctl = &immap->im_memctl; unsigned long size_b0, size_b1; int i;#ifdef CFG_OR_TIMING_FLASH_AT_50MHZ int scy, trlx, flash_or_timing, clk_diff; DECLARE_GLOBAL_DATA_PTR; scy = (CFG_OR_TIMING_FLASH_AT_50MHZ & OR_SCY_MSK) >> 4; if (CFG_OR_TIMING_FLASH_AT_50MHZ & OR_TRLX) { trlx = OR_TRLX; scy *= 2; } else trlx = 0; /* We assume that each 10MHz of bus clock require 1-clk SCY * adjustment. */ clk_diff = (gd->bus_clk / 1000000) - 50; /* We need proper rounding here. This is what the "+5" and "-5" * are here for. */ if (clk_diff >= 0) scy += (clk_diff + 5) / 10; else scy += (clk_diff - 5) / 10; /* For bus frequencies above 50MHz, we want to use relaxed timing * (OR_TRLX). */ if (gd->bus_clk >= 50000000) trlx = OR_TRLX; else trlx = 0; if (trlx) scy /= 2; if (scy > 0xf) scy = 0xf; if (scy < 1) scy = 1; flash_or_timing = (scy << 4) | trlx | (CFG_OR_TIMING_FLASH_AT_50MHZ & ~(OR_TRLX | OR_SCY_MSK));#endif /* Init: no FLASHes known */ for (i=0; i<CFG_MAX_FLASH_BANKS; ++i) { flash_info[i].flash_id = FLASH_UNKNOWN; } /* Static FLASH Bank configuration here - FIXME XXX */ debug ("\n## Get flash bank 1 size @ 0x%08x\n",FLASH_BASE0_PRELIM); size_b0 = flash_get_size((vu_long *)FLASH_BASE0_PRELIM, &flash_info[0]); debug ("## Get flash bank 2 size @ 0x%08x\n",FLASH_BASE1_PRELIM); if (flash_info[0].flash_id == FLASH_UNKNOWN) { printf ("## Unknown FLASH on Bank 0 - Size = 0x%08lx = %ld MB\n", size_b0, size_b0<<20); } size_b1 = flash_get_size((vu_long *)FLASH_BASE1_PRELIM, &flash_info[1]); debug ("## Prelim. Flash bank sizes: %08lx + 0x%08lx\n",size_b0,size_b1); if (size_b1 > size_b0) { printf ("## ERROR: " "Bank 1 (0x%08lx = %ld MB) > Bank 0 (0x%08lx = %ld MB)\n", size_b1, size_b1<<20, size_b0, size_b0<<20 ); flash_info[0].flash_id = FLASH_UNKNOWN; flash_info[1].flash_id = FLASH_UNKNOWN; flash_info[0].sector_count = -1; flash_info[1].sector_count = -1; flash_info[0].size = 0; flash_info[1].size = 0; return (0); } debug ("## Before remap: " "BR0: 0x%08x OR0: 0x%08x " "BR1: 0x%08x OR1: 0x%08x\n", memctl->memc_br0, memctl->memc_or0, memctl->memc_br1, memctl->memc_or1); /* Remap FLASH according to real size */#ifndef CFG_OR_TIMING_FLASH_AT_50MHZ memctl->memc_or0 = CFG_OR_TIMING_FLASH | (-size_b0 & OR_AM_MSK);#else memctl->memc_or0 = flash_or_timing | (-size_b0 & OR_AM_MSK);#endif memctl->memc_br0 = (CFG_FLASH_BASE & BR_BA_MSK) | BR_MS_GPCM | BR_V; debug ("## BR0: 0x%08x OR0: 0x%08x\n", memctl->memc_br0, memctl->memc_or0); /* Re-do sizing to get full correct info */ size_b0 = flash_get_size((vu_long *)CFG_FLASH_BASE, &flash_info[0]);#if CFG_MONITOR_BASE >= CFG_FLASH_BASE /* monitor protection ON by default */ debug ("Protect monitor: %08lx ... %08lx\n", (ulong)CFG_MONITOR_BASE, (ulong)CFG_MONITOR_BASE + monitor_flash_len - 1); flash_protect(FLAG_PROTECT_SET, CFG_MONITOR_BASE, CFG_MONITOR_BASE + monitor_flash_len - 1, &flash_info[0]);#endif#ifdef CFG_ENV_IS_IN_FLASH /* ENV protection ON by default */# ifdef CFG_ENV_ADDR_REDUND debug ("Protect primary environment: %08lx ... %08lx\n", (ulong)CFG_ENV_ADDR, (ulong)CFG_ENV_ADDR + CFG_ENV_SECT_SIZE - 1);# else debug ("Protect environment: %08lx ... %08lx\n", (ulong)CFG_ENV_ADDR, (ulong)CFG_ENV_ADDR + CFG_ENV_SECT_SIZE - 1);# endif flash_protect(FLAG_PROTECT_SET, CFG_ENV_ADDR, CFG_ENV_ADDR + CFG_ENV_SECT_SIZE - 1, &flash_info[0]);#endif#ifdef CFG_ENV_ADDR_REDUND debug ("Protect redundand environment: %08lx ... %08lx\n", (ulong)CFG_ENV_ADDR_REDUND, (ulong)CFG_ENV_ADDR_REDUND + CFG_ENV_SECT_SIZE - 1); flash_protect(FLAG_PROTECT_SET, CFG_ENV_ADDR_REDUND, CFG_ENV_ADDR_REDUND + CFG_ENV_SECT_SIZE - 1, &flash_info[0]);#endif if (size_b1) {#ifndef CFG_OR_TIMING_FLASH_AT_50MHZ memctl->memc_or1 = CFG_OR_TIMING_FLASH | (-size_b1 & 0xFFFF8000);#else memctl->memc_or1 = flash_or_timing | (-size_b1 & 0xFFFF8000);#endif memctl->memc_br1 = ((CFG_FLASH_BASE + size_b0) & BR_BA_MSK) | BR_MS_GPCM | BR_V; debug ("## BR1: 0x%08x OR1: 0x%08x\n", memctl->memc_br1, memctl->memc_or1); /* Re-do sizing to get full correct info */ size_b1 = flash_get_size((vu_long *)(CFG_FLASH_BASE + size_b0), &flash_info[1]);#if CFG_MONITOR_BASE >= CFG_FLASH_BASE /* monitor protection ON by default */ flash_protect(FLAG_PROTECT_SET, CFG_MONITOR_BASE, CFG_MONITOR_BASE+monitor_flash_len-1, &flash_info[1]);#endif#ifdef CFG_ENV_IS_IN_FLASH /* ENV protection ON by default */ flash_protect(FLAG_PROTECT_SET, CFG_ENV_ADDR, CFG_ENV_ADDR+CFG_ENV_SIZE-1, &flash_info[1]);#endif } else { memctl->memc_br1 = 0; /* invalidate bank */ flash_info[1].flash_id = FLASH_UNKNOWN; flash_info[1].sector_count = -1; flash_info[1].size = 0; debug ("## DISABLE BR1: 0x%08x OR1: 0x%08x\n", memctl->memc_br1, memctl->memc_or1); } debug ("## Final Flash bank sizes: %08lx + 0x%08lx\n",size_b0,size_b1); flash_info[0].size = size_b0; flash_info[1].size = size_b1; return (size_b0 + size_b1);}/*----------------------------------------------------------------------- */void flash_print_info (flash_info_t *info){ int i; if (info->flash_id == FLASH_UNKNOWN) { printf ("missing or unknown FLASH type\n"); return; } switch (info->flash_id & FLASH_VENDMASK) { case FLASH_MAN_AMD: printf ("AMD "); break; case FLASH_MAN_FUJ: printf ("FUJITSU "); break; default: printf ("Unknown Vendor "); break; } switch (info->flash_id & FLASH_TYPEMASK) {#ifdef CONFIG_TQM8xxM /* mirror bit flash */ case FLASH_AMLV128U: printf ("AM29LV128ML (128Mbit, uniform sector size)\n"); break; case FLASH_AMLV320U: printf ("AM29LV320ML (32Mbit, uniform sector size)\n"); break; case FLASH_AMLV640U: printf ("AM29LV640ML (64Mbit, uniform sector size)\n"); break; case FLASH_AMLV320B: printf ("AM29LV320MB (32Mbit, bottom boot sect)\n"); break;# else /* ! TQM8xxM */ case FLASH_AM400B: printf ("AM29LV400B (4 Mbit, bottom boot sect)\n"); break; case FLASH_AM400T: printf ("AM29LV400T (4 Mbit, top boot sector)\n"); break; case FLASH_AM800B: printf ("AM29LV800B (8 Mbit, bottom boot sect)\n"); break; case FLASH_AM800T: printf ("AM29LV800T (8 Mbit, top boot sector)\n"); break; case FLASH_AM320B: printf ("AM29LV320B (32 Mbit, bottom boot sect)\n"); break; case FLASH_AM320T: printf ("AM29LV320T (32 Mbit, top boot sector)\n"); break;#endif /* TQM8xxM */ case FLASH_AM160B: printf ("AM29LV160B (16 Mbit, bottom boot sect)\n"); break; case FLASH_AM160T: printf ("AM29LV160T (16 Mbit, top boot sector)\n"); break; case FLASH_AMDL163B: printf ("AM29DL163B (16 Mbit, bottom boot sect)\n"); break; default: printf ("Unknown Chip Type\n"); break; } printf (" Size: %ld MB in %d Sectors\n", info->size >> 20, info->sector_count); printf (" Sector Start Addresses:"); for (i=0; i<info->sector_count; ++i) { if ((i % 5) == 0) printf ("\n "); printf (" %08lX%s", info->start[i], info->protect[i] ? " (RO)" : " " ); } printf ("\n"); return;}/*----------------------------------------------------------------------- *//*----------------------------------------------------------------------- *//* * The following code cannot be run from FLASH! */static ulong flash_get_size (vu_long *addr, flash_info_t *info){ short i; ulong value; ulong base = (ulong)addr; /* Write auto select command: read Manufacturer ID */ addr[0x0555] = 0x00AA00AA; addr[0x02AA] = 0x00550055; addr[0x0555] = 0x00900090; value = addr[0]; debug ("Manuf. ID @ 0x%08lx: 0x%08lx\n", (ulong)addr, value); switch (value) { case AMD_MANUFACT: debug ("Manufacturer: AMD\n"); info->flash_id = FLASH_MAN_AMD; break; case FUJ_MANUFACT: debug ("Manufacturer: FUJITSU\n"); info->flash_id = FLASH_MAN_FUJ; break; default: debug ("Manufacturer: *** unknown ***\n"); info->flash_id = FLASH_UNKNOWN; info->sector_count = 0; info->size = 0; return (0); /* no or unknown flash */ } value = addr[1]; /* device ID */ debug ("Device ID @ 0x%08lx: 0x%08lx\n", (ulong)(&addr[1]), value); switch (value) {#ifdef CONFIG_TQM8xxM /* mirror bit flash */ case AMD_ID_MIRROR: debug ("Mirror Bit flash: addr[14] = %08lX addr[15] = %08lX\n", addr[14], addr[15]); /* Special case for AMLV320MH/L */ if ((addr[14] & 0x00ff00ff) == 0x001d001d && (addr[15] & 0x00ff00ff) == 0x00000000) { debug ("Chip: AMLV320MH/L\n"); info->flash_id += FLASH_AMLV320U; info->sector_count = 64; info->size = 0x00800000; /* => 8 MB */ break; } switch(addr[14]) { case AMD_ID_LV128U_2: if (addr[15] != AMD_ID_LV128U_3) { debug ("Chip: AMLV128U -> unknown\n"); info->flash_id = FLASH_UNKNOWN; } else { debug ("Chip: AMLV128U\n"); info->flash_id += FLASH_AMLV128U; info->sector_count = 256; info->size = 0x02000000; } break; /* => 32 MB */ case AMD_ID_LV640U_2: if (addr[15] != AMD_ID_LV640U_3) { debug ("Chip: AMLV640U -> unknown\n"); info->flash_id = FLASH_UNKNOWN; } else { debug ("Chip: AMLV640U\n"); info->flash_id += FLASH_AMLV640U; info->sector_count = 128; info->size = 0x01000000; } break; /* => 16 MB */ case AMD_ID_LV320B_2: if (addr[15] != AMD_ID_LV320B_3) { debug ("Chip: AMLV320B -> unknown\n"); info->flash_id = FLASH_UNKNOWN; } else { debug ("Chip: AMLV320B\n"); info->flash_id += FLASH_AMLV320B; info->sector_count = 71; info->size = 0x00800000; }
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