1 1.2 tsutsui ; $NetBSD: arm_sa1100_asm.asm,v 1.2 2019/12/15 16:48:25 tsutsui Exp $ 2 1.1 nonaka ; 3 1.1 nonaka ; Copyright (c) 2001 The NetBSD Foundation, Inc. 4 1.1 nonaka ; All rights reserved. 5 1.1 nonaka ; 6 1.1 nonaka ; This code is derived from software contributed to The NetBSD Foundation 7 1.1 nonaka ; by UCHIYAMA Yasushi. 8 1.1 nonaka ; 9 1.1 nonaka ; Redistribution and use in source and binary forms, with or without 10 1.1 nonaka ; modification, are permitted provided that the following conditions 11 1.1 nonaka ; are met: 12 1.1 nonaka ; 1. Redistributions of source code must retain the above copyright 13 1.1 nonaka ; notice, this list of conditions and the following disclaimer. 14 1.1 nonaka ; 2. Redistributions in binary form must reproduce the above copyright 15 1.1 nonaka ; notice, this list of conditions and the following disclaimer in the 16 1.1 nonaka ; documentation and/or other materials provided with the distribution. 17 1.1 nonaka ; 18 1.1 nonaka ; THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 19 1.1 nonaka ; ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 20 1.1 nonaka ; TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 21 1.1 nonaka ; PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 22 1.1 nonaka ; BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 23 1.1 nonaka ; CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 24 1.1 nonaka ; SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 25 1.1 nonaka ; INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 26 1.1 nonaka ; CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 27 1.1 nonaka ; ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 28 1.1 nonaka ; POSSIBILITY OF SUCH DAMAGE. 29 1.1 nonaka ; 30 1.1 nonaka 31 1.1 nonaka ; 32 1.1 nonaka ;armasm.exe $(InputPath) 33 1.1 nonaka ;arm.obj 34 1.1 nonaka ; 35 1.1 nonaka 36 1.1 nonaka AREA |.text|, CODE, PIC 37 1.1 nonaka 38 1.1 nonaka ; FlatJump_sa1100 (kaddr_t bootinfo, kaddr_t pvec, kaddr_t stack 39 1.1 nonaka ; kaddr_t jump) 40 1.1 nonaka ; bootinfo boot information block address. 41 1.1 nonaka ; pvec page vector of kernel. 42 1.1 nonaka ; stack physical address of stack 43 1.1 nonaka ; jump physical address of boot function 44 1.1 nonaka ; *** MMU and pipeline behavier are SA-1100 specific. *** 45 1.1 nonaka EXPORT |FlatJump_sa1100| 46 1.1 nonaka |FlatJump_sa1100| PROC 47 1.1 nonaka ; disable interrupt 48 1.1 nonaka mrs r4, cpsr 49 1.1 nonaka orr r4, r4, #0xc0 50 1.1 nonaka msr cpsr, r4 51 1.1 nonaka ; disable MMU, I/D-Cache, Writebuffer. 52 1.1 nonaka ; interrupt vector address is 0xffff0000 53 1.1 nonaka ; 32bit exception handler/address range. 54 1.1 nonaka ldr r4, [pc, #24] 55 1.1 nonaka ; Disable WB/Cache/MMU 56 1.1 nonaka mcr p15, 0, r4, c1, c0, 0 57 1.1 nonaka ; Invalidate I/D-cache. 58 1.1 nonaka mcr p15, 0, r4, c7, c7, 0 ; Fetch translated fetch 59 1.1 nonaka ; Invalidate TLB entries. 60 1.1 nonaka mcr p15, 0, r4, c8, c7, 0 ; Fetch translated decode 61 1.1 nonaka ; jump to kernel entry physical address. 62 1.1 nonaka mov pc, r3 ; Fetch translated execute 63 1.1 nonaka ; NOTREACHED 64 1.1 nonaka nop ; Fetch nontranslated cache access 65 1.1 nonaka nop ; Fetch nontranslated writeback 66 1.1 nonaka mov pc, lr ; Fetch nontranslated 67 1.1 nonaka DCD 0x00002030 68 1.1 nonaka ENDP ; |FlatJump_sa1100| 69 1.1 nonaka ; 70 1.1 nonaka ; UART test 71 1.1 nonaka ; 72 1.1 nonaka ; boot_func (uint32_t mapaddr, uint32_t bootinfo, uint32_t flags) 73 1.1 nonaka ; 74 1.1 nonaka EXPORT |boot_func_sa1100| 75 1.1 nonaka |boot_func_sa1100| PROC 76 1.1 nonaka nop ; Cop15 hazard 77 1.1 nonaka nop ; Cop15 hazard 78 1.1 nonaka nop ; Cop15 hazard 79 1.1 nonaka mov sp, r2 ; set bootloader stack 80 1.1 nonaka ; mov r4, r0 81 1.1 nonaka ; mov r5, r1 82 1.1 nonaka ; bl colorbar 83 1.1 nonaka ; mov r0, r4 84 1.1 nonaka ; mov r1, r5 85 1.1 nonaka bl boot_sa1100 86 1.1 nonaka nop ; NOTREACHED 87 1.1 nonaka nop 88 1.1 nonaka ENDP ; |boot_func_sa1100| 89 1.1 nonaka 90 1.1 nonaka EXPORT |colorbar| 91 1.1 nonaka |colorbar| PROC 92 1.1 nonaka stmfd sp!, {r4-r7, lr} 93 1.1 nonaka adr r4, |$FBADDR| 94 1.1 nonaka ldr r4, [r4] 95 1.1 nonaka 96 1.1 nonaka mov r7, #8 97 1.1 nonaka add r0, r0, r7 98 1.1 nonaka |color_loop| 99 1.1 nonaka mov r6, r0 100 1.1 nonaka and r6, r6, #7 101 1.1 nonaka orr r6, r6, r6, LSL #8 102 1.1 nonaka orr r6, r6, r6, LSL #16 103 1.1 nonaka add r5, r4, #0x9600 104 1.1 nonaka |fb_loop| 105 1.1 nonaka str r6, [r4], #4 106 1.1 nonaka cmp r4, r5 107 1.1 nonaka blt |fb_loop| 108 1.1 nonaka 109 1.1 nonaka subs r7, r7, #1 110 1.1 nonaka bne |color_loop| 111 1.1 nonaka 112 1.1 nonaka ldmfd sp!, {r4-r7, pc} 113 1.1 nonaka |$FBADDR| 114 1.1 nonaka DCD 0xc0003000 ; use WindowsCE default. 115 1.1 nonaka ENDP ; |colorbar| 116 1.1 nonaka 117 1.1 nonaka EXPORT |boot_sa1100| 118 1.1 nonaka |boot_sa1100| PROC 119 1.1 nonaka ; 120 1.1 nonaka ; UART test code 121 1.1 nonaka ; 122 1.1 nonaka ; ; print boot_info address (r0) and page_vector start address (r1). 123 1.1 nonaka ; mov r4, r0 124 1.1 nonaka ; mov r5, r1 125 1.1 nonaka ; mov r0, #'I' 126 1.1 nonaka ; bl btputc 127 1.1 nonaka ; mov r0, r4 128 1.1 nonaka ; bl hexdump 129 1.1 nonaka ; mov r0, #'P' 130 1.1 nonaka ; bl btputc 131 1.1 nonaka ; mov r0, r5 132 1.1 nonaka ; bl hexdump 133 1.1 nonaka ; mov r7, r4 134 1.1 nonaka ; mov r2, r5 ; start 135 1.1 nonaka 136 1.1 nonaka mov r7, r0 ; if enabled above debug print, remove this. 137 1.1 nonaka mov r2, r1 ; if enabled above debug print, remove this. 138 1.1 nonaka |page_loop| 139 1.1 nonaka mvn r0, #0 ; ~0 140 1.1 nonaka cmp r2, r0 141 1.1 nonaka beq |page_end| ; if (next == ~0) goto page_end 142 1.1 nonaka 143 1.1 nonaka mov r1, r2 ; p = next 144 1.1 nonaka ldr r2, [r1] ; next 145 1.1 nonaka ldr r3, [r1, #4] ; src 146 1.1 nonaka ldr r4, [r1, #8] ; dst 147 1.1 nonaka ldr r5, [r1, #12] ; sz 148 1.1 nonaka 149 1.1 nonaka cmp r3, r0 150 1.1 nonaka add r6, r4, r5 ; end address 151 1.1 nonaka bne |page_memcpy4| ; if (src != ~0) goto page_memcpy4 152 1.1 nonaka 153 1.1 nonaka mov r0, #0 154 1.1 nonaka |page_memset| ; memset (dst, 0, sz) uncached. 155 1.1 nonaka str r0, [r4], #4 156 1.1 nonaka cmp r4, r6 157 1.1 nonaka blt |page_memset| 158 1.1 nonaka b |page_loop| 159 1.1 nonaka 160 1.1 nonaka |page_memcpy4| ; memcpy (dst, src, sz) uncached. 161 1.1 nonaka ldr r0, [r3], #4 162 1.1 nonaka ldr r5, [r3], #4 163 1.1 nonaka str r0, [r4], #4 164 1.1 nonaka cmp r4, r6 165 1.1 nonaka strlt r5, [r4], #4 166 1.1 nonaka cmplt r4, r6 167 1.1 nonaka blt |page_memcpy4| 168 1.1 nonaka 169 1.1 nonaka b |page_loop| 170 1.1 nonaka |page_end| 171 1.1 nonaka ; 172 1.1 nonaka ; jump to kernel 173 1.1 nonaka ; 174 1.1 nonaka ; mov r0, #'E' 175 1.1 nonaka ; bl btputc 176 1.1 nonaka ; ldr r0, [r7] 177 1.1 nonaka ; bl hexdump 178 1.1 nonaka ; ldr r0, [r7] 179 1.1 nonaka ; ldr r0, [r0] 180 1.1 nonaka ; bl hexdump 181 1.1 nonaka 182 1.1 nonaka ; set stack pointer 183 1.1 nonaka mov r5, #4096 184 1.1 nonaka add r6, r6, #8192 185 1.1 nonaka sub r5, r5, #1 186 1.1 nonaka bic sp, r6, r5 187 1.1 nonaka 188 1.1 nonaka ; set bootargs 189 1.1 nonaka ldr r4, [r7] 190 1.1 nonaka ldr r0, [r7, #4] 191 1.1 nonaka ldr r1, [r7, #8] 192 1.1 nonaka ldr r2, [r7, #12] 193 1.1 nonaka mov pc, r4 194 1.1 nonaka ; NOTREACHED 195 1.1 nonaka 196 1.1 nonaka |infinite_loop| 197 1.1 nonaka nop 198 1.1 nonaka nop 199 1.1 nonaka nop 200 1.1 nonaka nop 201 1.1 nonaka nop 202 1.1 nonaka b |infinite_loop| 203 1.1 nonaka ENDP ; |boot| 204 1.1 nonaka 205 1.1 nonaka |btputc| PROC 206 1.1 nonaka adr r1, |$UARTTXBSY| 207 1.1 nonaka ldr r1, [r1] 208 1.1 nonaka |btputc_busy| 209 1.1 nonaka ldr r2, [r1] 210 1.1 nonaka and r2, r2, #1 211 1.1 nonaka cmp r2, #1 212 1.1 nonaka beq |btputc_busy| 213 1.1 nonaka adr r1, |$UARTTXADR| 214 1.1 nonaka ldr r1, [r1] 215 1.1 nonaka str r0, [r1] 216 1.1 nonaka mov pc, lr 217 1.1 nonaka ENDP ;|btputc| 218 1.1 nonaka 219 1.1 nonaka |hexdump| PROC 220 1.1 nonaka stmfd sp!, {r4-r5, lr} 221 1.1 nonaka mov r4, r0 222 1.1 nonaka mov r0, #0x30 223 1.1 nonaka bl btputc 224 1.1 nonaka mov r0, #0x78 225 1.1 nonaka bl btputc 226 1.1 nonaka mov r0, r4 227 1.1 nonaka ; Transmit register address 228 1.1 nonaka adr r1, |$UARTTXADR| 229 1.1 nonaka ldr r1, [r1] 230 1.1 nonaka ; Transmit busy register address 231 1.1 nonaka adr r2, |$UARTTXBSY| 232 1.1 nonaka ldr r2, [r2] 233 1.1 nonaka mov r5, #8 234 1.1 nonaka |hex_loop| 235 1.1 nonaka mov r3, r0, LSR #28 236 1.1 nonaka cmp r3, #9 237 1.1 nonaka addgt r3, r3, #0x41 - 10 238 1.1 nonaka addle r3, r3, #0x30 239 1.1 nonaka |hex_busyloop| 240 1.1 nonaka ldr r4, [r2] 241 1.1 nonaka and r4, r4, #1 242 1.1 nonaka cmp r4, #1 243 1.1 nonaka beq |hex_busyloop| 244 1.1 nonaka str r3, [r1] 245 1.1 nonaka mov r0, r0, LSL #4 246 1.1 nonaka subs r5, r5, #1 247 1.1 nonaka bne |hex_loop| 248 1.1 nonaka mov r0, #0x0d 249 1.1 nonaka bl btputc 250 1.1 nonaka mov r0, #0x0a 251 1.1 nonaka bl btputc 252 1.1 nonaka ldmfd sp!, {r4-r5, pc} 253 1.1 nonaka ENDP ;|hexdump| 254 1.1 nonaka 255 1.1 nonaka |$UARTTXADR| 256 1.1 nonaka DCD 0x80050014 257 1.1 nonaka |$UARTTXBSY| 258 1.1 nonaka DCD 0x80050020 259 1.1 nonaka 260 1.1 nonaka EXPORT |boot_func_end_sa1100| [ DATA ] 261 1.1 nonaka |boot_func_end_sa1100| DCD 0x0 262 1.1 nonaka 263 1.1 nonaka END 264