1 1.3 nonaka /* $NetBSD: arm_sa1100.cpp,v 1.3 2010/04/06 16:20:28 nonaka Exp $ */ 2 1.1 rafal 3 1.1 rafal /*- 4 1.1 rafal * Copyright (c) 2001 The NetBSD Foundation, Inc. 5 1.1 rafal * All rights reserved. 6 1.1 rafal * 7 1.1 rafal * This code is derived from software contributed to The NetBSD Foundation 8 1.1 rafal * by UCHIYAMA Yasushi. 9 1.1 rafal * 10 1.1 rafal * Redistribution and use in source and binary forms, with or without 11 1.1 rafal * modification, are permitted provided that the following conditions 12 1.1 rafal * are met: 13 1.1 rafal * 1. Redistributions of source code must retain the above copyright 14 1.1 rafal * notice, this list of conditions and the following disclaimer. 15 1.1 rafal * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 rafal * notice, this list of conditions and the following disclaimer in the 17 1.1 rafal * documentation and/or other materials provided with the distribution. 18 1.1 rafal * 19 1.1 rafal * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 1.1 rafal * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 1.1 rafal * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 1.1 rafal * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 1.1 rafal * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 1.1 rafal * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 1.1 rafal * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 1.1 rafal * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 1.1 rafal * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 1.1 rafal * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 1.1 rafal * POSSIBILITY OF SUCH DAMAGE. 30 1.1 rafal */ 31 1.1 rafal 32 1.1 rafal #include <arm/arm_arch.h> 33 1.1 rafal #include <console.h> 34 1.1 rafal #include <memory.h> 35 1.1 rafal #include <arm/arm_sa1100.h> 36 1.1 rafal 37 1.1 rafal /* 38 1.1 rafal * Strong-ARM SA-1100 (e.g. HP-820 JORNADA) 39 1.1 rafal */ 40 1.1 rafal 41 1.1 rafal #define PAGE_SIZE 0x1000 42 1.1 rafal #define DRAM_BANK_NUM 4 /* total 512MByte */ 43 1.1 rafal #define DRAM_BANK_SIZE 0x08000000 /* 128Mbyte */ 44 1.1 rafal 45 1.1 rafal #define DRAM_BANK0_START 0xc0000000 46 1.1 rafal #define DRAM_BANK0_SIZE DRAM_BANK_SIZE 47 1.1 rafal #define DRAM_BANK1_START 0xc8000000 48 1.1 rafal #define DRAM_BANK1_SIZE DRAM_BANK_SIZE 49 1.1 rafal #define DRAM_BANK2_START 0xd0000000 50 1.1 rafal #define DRAM_BANK2_SIZE DRAM_BANK_SIZE 51 1.1 rafal #define DRAM_BANK3_START 0xd8000000 52 1.1 rafal #define DRAM_BANK3_SIZE DRAM_BANK_SIZE 53 1.1 rafal #define ZERO_BANK_START 0xe0000000 54 1.1 rafal #define ZERO_BANK_SIZE DRAM_BANK_SIZE 55 1.1 rafal 56 1.1 rafal __BEGIN_DECLS 57 1.1 rafal 58 1.1 rafal // 2nd bootloader 59 1.3 nonaka void boot_func_sa1100(kaddr_t, kaddr_t, kaddr_t, kaddr_t); 60 1.3 nonaka extern char boot_func_end_sa1100[]; 61 1.3 nonaka #define BOOT_FUNC_START reinterpret_cast <vaddr_t>(boot_func_sa1100) 62 1.3 nonaka #define BOOT_FUNC_END reinterpret_cast <vaddr_t>(boot_func_end_sa1100) 63 1.1 rafal 64 1.1 rafal /* jump to 2nd loader */ 65 1.3 nonaka void FlatJump_sa1100(kaddr_t, kaddr_t, kaddr_t, kaddr_t); 66 1.1 rafal 67 1.1 rafal __END_DECLS 68 1.1 rafal 69 1.1 rafal SA1100Architecture::SA1100Architecture(Console *&cons, MemoryManager *&mem) 70 1.1 rafal : ARMArchitecture(cons, mem) 71 1.1 rafal { 72 1.1 rafal DPRINTF((TEXT("SA-11x0 CPU.\n"))); 73 1.1 rafal } 74 1.1 rafal 75 1.1 rafal SA1100Architecture::~SA1100Architecture(void) 76 1.1 rafal { 77 1.1 rafal } 78 1.1 rafal 79 1.1 rafal BOOL 80 1.1 rafal SA1100Architecture::init(void) 81 1.1 rafal { 82 1.1 rafal if (!_mem->init()) { 83 1.1 rafal DPRINTF((TEXT("can't initialize memory manager.\n"))); 84 1.1 rafal return FALSE; 85 1.1 rafal } 86 1.1 rafal // set D-RAM information 87 1.1 rafal _mem->loadBank(DRAM_BANK0_START, DRAM_BANK_SIZE); 88 1.1 rafal _mem->loadBank(DRAM_BANK1_START, DRAM_BANK_SIZE); 89 1.1 rafal _mem->loadBank(DRAM_BANK2_START, DRAM_BANK_SIZE); 90 1.1 rafal _mem->loadBank(DRAM_BANK3_START, DRAM_BANK_SIZE); 91 1.1 rafal 92 1.3 nonaka // set D-cache information 93 1.3 nonaka dcachesize = 8192; 94 1.3 nonaka DPRINTF((TEXT("D-cache size = %d\n"), dcachesize)); 95 1.3 nonaka 96 1.1 rafal return TRUE; 97 1.1 rafal } 98 1.1 rafal 99 1.1 rafal void 100 1.1 rafal SA1100Architecture::testFramebuffer(void) 101 1.1 rafal { 102 1.1 rafal // get frame buffer address from LCD controller register. 103 1.1 rafal paddr_t fbaddr_p = _mem->readPhysical4(0xb0100010); // 0xc0002e00 104 1.1 rafal // map frame buffer 105 1.1 rafal vaddr_t fbaddr_v = _mem->mapPhysicalPage(fbaddr_p, 0x50000, 106 1.1 rafal PAGE_READWRITE); 107 1.1 rafal 108 1.1 rafal // test frame buffer 109 1.1 rafal int j, k; 110 1.1 rafal DI(); 111 1.1 rafal for (j = 0; j < 480; j++) 112 1.1 rafal for (k = 0; k < 640; k++) 113 1.1 rafal VOLATILE_REF8(fbaddr_v + 0x200 + j * 640 + k) 114 1.1 rafal = j * k & 0xff; 115 1.1 rafal for (j = 120; j < 360; j++) 116 1.1 rafal for (k = 120; k < 520; k++) 117 1.1 rafal VOLATILE_REF8(fbaddr_v + 0x200 + j * 640 + k) = 0x3; 118 1.1 rafal EI(); 119 1.1 rafal _mem->unmapPhysicalPage(fbaddr_v); 120 1.1 rafal } 121 1.1 rafal 122 1.1 rafal void 123 1.1 rafal SA1100Architecture::testUART(void) 124 1.1 rafal { 125 1.1 rafal #define TBY VOLATILE_REF(uart + 0x20) 126 1.1 rafal #define UTDR VOLATILE_REF(uart + 0x14) 127 1.1 rafal #define TBY_BUSY while (TBY & 0x1) 128 1.1 rafal #define UTDR_PUTCHAR(c) (UTDR =(c)) 129 1.1 rafal #define _(c) \ 130 1.1 rafal __BEGIN_MACRO \ 131 1.1 rafal TBY_BUSY; \ 132 1.1 rafal UTDR_PUTCHAR(c); \ 133 1.1 rafal __END_MACRO 134 1.1 rafal vaddr_t uart = 135 1.1 rafal _mem->mapPhysicalPage(0x80050000, 0x100, PAGE_READWRITE); 136 1.1 rafal _('H');_('e');_('l');_('l');_('o');_(' '); 137 1.1 rafal _('W');_('o');_('r');_('l');_('d');_('\r');_('\n'); 138 1.1 rafal _mem->unmapPhysicalPage(uart); 139 1.1 rafal } 140 1.1 rafal 141 1.3 nonaka void 142 1.3 nonaka SA1100Architecture::dumpPeripheralRegs(void) 143 1.3 nonaka { 144 1.3 nonaka } 145 1.3 nonaka 146 1.1 rafal BOOL 147 1.1 rafal SA1100Architecture::setupLoader(void) 148 1.1 rafal { 149 1.1 rafal vaddr_t v; 150 1.1 rafal vsize_t sz = BOOT_FUNC_END - BOOT_FUNC_START; 151 1.1 rafal 152 1.1 rafal // check 2nd bootloader size. 153 1.1 rafal if (sz > _mem->getPageSize()) { 154 1.1 rafal DPRINTF((TEXT("2nd bootloader size(%dbyte) is larger than page size(%d).\n"), 155 1.1 rafal sz, _mem->getPageSize())); 156 1.1 rafal return FALSE; 157 1.1 rafal } 158 1.1 rafal 159 1.1 rafal // get physical mapped page and copy loader to there. 160 1.1 rafal // don't writeback D-cache here. make sure to writeback before jump. 161 1.1 rafal if (!_mem->getPage(v , _loader_addr)) { 162 1.1 rafal DPRINTF((TEXT("can't get page for 2nd loader.\n"))); 163 1.1 rafal return FALSE; 164 1.1 rafal } 165 1.1 rafal DPRINTF((TEXT("2nd bootloader vaddr=0x%08x paddr=0x%08x\n"), 166 1.1 rafal (unsigned)v,(unsigned)_loader_addr)); 167 1.1 rafal 168 1.1 rafal memcpy(reinterpret_cast <LPVOID>(v), 169 1.1 rafal reinterpret_cast <LPVOID>(BOOT_FUNC_START), sz); 170 1.1 rafal DPRINTF((TEXT("2nd bootloader copy done.\n"))); 171 1.1 rafal 172 1.1 rafal return TRUE; 173 1.1 rafal } 174 1.1 rafal 175 1.1 rafal void 176 1.1 rafal SA1100Architecture::jump(paddr_t info, paddr_t pvec) 177 1.1 rafal { 178 1.1 rafal kaddr_t sp; 179 1.1 rafal vaddr_t v; 180 1.1 rafal paddr_t p; 181 1.1 rafal 182 1.1 rafal // stack for bootloader 183 1.1 rafal _mem->getPage(v, p); 184 1.1 rafal sp = ptokv(p) + _mem->getPageSize(); 185 1.1 rafal DPRINTF((TEXT("sp for bootloader = %08x + %08x = %08x\n"), 186 1.1 rafal ptokv(p), _mem->getPageSize(), sp)); 187 1.1 rafal 188 1.1 rafal // writeback whole D-cache 189 1.1 rafal WritebackDCache(); 190 1.1 rafal 191 1.1 rafal SetKMode(1); 192 1.3 nonaka FlatJump_sa1100(info, pvec, sp, _loader_addr); 193 1.1 rafal // NOTREACHED 194 1.1 rafal } 195