to make u-boot work for fat32 filesystem
[jz_uboot.git] / lib_i386 / bios_setup.c
blob75f04a01fe637cc3aac4e79b203802c28a30fd91
1 /*
2 * (C) Copyright 2002
3 * Daniel Engström, Omicron Ceti AB, daniel@omicron.se
5 * See file CREDITS for list of people who contributed to this
6 * project.
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License as
10 * published by the Free Software Foundation; either version 2 of
11 * the License, or (at your option) any later version.
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
21 * MA 02111-1307 USA
26 * Partly based on msbios.c from rolo 1.6:
27 *----------------------------------------------------------------------
28 * (C) Copyright 2000
29 * Sysgo Real-Time Solutions GmbH
30 * Klein-Winternheim, Germany
31 *----------------------------------------------------------------------
34 #include <common.h>
35 #include <pci.h>
36 #include <asm/realmode.h>
37 #include <asm/io.h>
39 DECLARE_GLOBAL_DATA_PTR;
41 #define NUMVECTS 256
43 #define BIOS_DATA ((char*)0x400)
44 #define BIOS_DATA_SIZE 256
45 #define BIOS_BASE ((char*)0xf0000)
46 #define BIOS_CS 0xf000
48 /* these are defined in a 16bit segment and needs
49 * to be accessed with the RELOC_16_xxxx() macros below
51 extern u16 ram_in_64kb_chunks;
52 extern u16 bios_equipment;
53 extern u8 pci_last_bus;
55 extern void *rm_int00;
56 extern void *rm_int01;
57 extern void *rm_int02;
58 extern void *rm_int03;
59 extern void *rm_int04;
60 extern void *rm_int05;
61 extern void *rm_int06;
62 extern void *rm_int07;
63 extern void *rm_int08;
64 extern void *rm_int09;
65 extern void *rm_int0a;
66 extern void *rm_int0b;
67 extern void *rm_int0c;
68 extern void *rm_int0d;
69 extern void *rm_int0e;
70 extern void *rm_int0f;
71 extern void *rm_int10;
72 extern void *rm_int11;
73 extern void *rm_int12;
74 extern void *rm_int13;
75 extern void *rm_int14;
76 extern void *rm_int15;
77 extern void *rm_int16;
78 extern void *rm_int17;
79 extern void *rm_int18;
80 extern void *rm_int19;
81 extern void *rm_int1a;
82 extern void *rm_int1b;
83 extern void *rm_int1c;
84 extern void *rm_int1d;
85 extern void *rm_int1e;
86 extern void *rm_int1f;
87 extern void *rm_def_int;
89 extern void *realmode_reset;
90 extern void *realmode_pci_bios_call_entry;
92 static int set_jmp_vector(int entry_point, void *target)
94 if (entry_point & ~0xffff) {
95 return -1;
98 if (((u32)target-0xf0000) & ~0xffff) {
99 return -1;
101 printf("set_jmp_vector: 0xf000:%04x -> %p\n",
102 entry_point, target);
104 /* jmp opcode */
105 writeb(0xea, 0xf0000 + entry_point);
107 /* offset */
108 writew(((u32)target-0xf0000), 0xf0000 + entry_point + 1);
110 /* segment */
111 writew(0xf000, 0xf0000 + entry_point + 3);
113 return 0;
118 ************************************************************
119 * Install an interrupt vector
120 ************************************************************
123 static void setvector(int vector, u16 segment, void *handler)
125 u16 *ptr = (u16*)(vector*4);
126 ptr[0] = ((u32)handler - (segment << 4))&0xffff;
127 ptr[1] = segment;
129 #if 0
130 printf("setvector: int%02x -> %04x:%04x\n",
131 vector, ptr[1], ptr[0]);
132 #endif
135 #define RELOC_16_LONG(seg, off) *(u32*)(seg << 4 | (u32)&off)
136 #define RELOC_16_WORD(seg, off) *(u16*)(seg << 4 | (u32)&off)
137 #define RELOC_16_BYTE(seg, off) *(u8*)(seg << 4 | (u32)&off)
139 int bios_setup(void)
141 static int done=0;
142 int vector;
143 struct pci_controller *pri_hose;
145 if (done) {
146 return 0;
148 done = 1;
150 if (i386boot_bios_size > 65536) {
151 printf("BIOS too large (%ld bytes, max is 65536)\n",
152 i386boot_bios_size);
153 return -1;
156 memcpy(BIOS_BASE, (void*)i386boot_bios, i386boot_bios_size);
158 /* clear bda */
159 memset(BIOS_DATA, 0, BIOS_DATA_SIZE);
161 /* enter some values to the bda */
162 writew(0x3f8, BIOS_DATA); /* com1 addr */
163 writew(0x2f8, BIOS_DATA+2); /* com2 addr */
164 writew(0x3e8, BIOS_DATA+4); /* com3 addr */
165 writew(0x2e8, BIOS_DATA+6); /* com4 addr */
166 writew(0x278, BIOS_DATA+8); /* lpt1 addr */
168 * The kernel wants to read the base memory size
169 * from 40:13. Put a zero there to avoid an error message
171 writew(0, BIOS_DATA+0x13); /* base memory size */
174 /* setup realmode interrupt vectors */
175 for (vector = 0; vector < NUMVECTS; vector++) {
176 setvector(vector, BIOS_CS, &rm_def_int);
179 setvector(0x00, BIOS_CS, &rm_int00);
180 setvector(0x01, BIOS_CS, &rm_int01);
181 setvector(0x02, BIOS_CS, &rm_int02);
182 setvector(0x03, BIOS_CS, &rm_int03);
183 setvector(0x04, BIOS_CS, &rm_int04);
184 setvector(0x05, BIOS_CS, &rm_int05);
185 setvector(0x06, BIOS_CS, &rm_int06);
186 setvector(0x07, BIOS_CS, &rm_int07);
187 setvector(0x08, BIOS_CS, &rm_int08);
188 setvector(0x09, BIOS_CS, &rm_int09);
189 setvector(0x0a, BIOS_CS, &rm_int0a);
190 setvector(0x0b, BIOS_CS, &rm_int0b);
191 setvector(0x0c, BIOS_CS, &rm_int0c);
192 setvector(0x0d, BIOS_CS, &rm_int0d);
193 setvector(0x0e, BIOS_CS, &rm_int0e);
194 setvector(0x0f, BIOS_CS, &rm_int0f);
195 setvector(0x10, BIOS_CS, &rm_int10);
196 setvector(0x11, BIOS_CS, &rm_int11);
197 setvector(0x12, BIOS_CS, &rm_int12);
198 setvector(0x13, BIOS_CS, &rm_int13);
199 setvector(0x14, BIOS_CS, &rm_int14);
200 setvector(0x15, BIOS_CS, &rm_int15);
201 setvector(0x16, BIOS_CS, &rm_int16);
202 setvector(0x17, BIOS_CS, &rm_int17);
203 setvector(0x18, BIOS_CS, &rm_int18);
204 setvector(0x19, BIOS_CS, &rm_int19);
205 setvector(0x1a, BIOS_CS, &rm_int1a);
206 setvector(0x1b, BIOS_CS, &rm_int1b);
207 setvector(0x1c, BIOS_CS, &rm_int1c);
208 setvector(0x1d, BIOS_CS, &rm_int1d);
209 setvector(0x1e, BIOS_CS, &rm_int1e);
210 setvector(0x1f, BIOS_CS, &rm_int1f);
212 set_jmp_vector(0xfff0, &realmode_reset);
213 set_jmp_vector(0xfe6e, &realmode_pci_bios_call_entry);
215 /* fill in data area */
216 RELOC_16_WORD(0xf000, ram_in_64kb_chunks) = gd->ram_size >> 16;
217 RELOC_16_WORD(0xf000, bios_equipment) = 0; /* FixMe */
219 /* If we assume only one PCI hose, this PCI hose
220 * will own PCI bus #0, and the last PCI bus of
221 * that PCI hose will be the last PCI bus in the
222 * system.
223 * (This, ofcause break on multi hose systems,
224 * but our PCI BIOS only support one hose anyway)
226 pri_hose = pci_bus_to_hose(0);
227 if (NULL != pri_hose) {
228 /* fill in last pci bus number for use by the realmode
229 * PCI BIOS */
230 RELOC_16_BYTE(0xf000, pci_last_bus) = pri_hose->last_busno;
233 return 0;