start.S revision 1.5 1 1.5 martin /* $NetBSD: start.S,v 1.5 2013/04/04 12:48:07 martin Exp $ */
2 1.1 matt /*
3 1.1 matt * Copyright (c) 1995 Ludd, University of Lule}, Sweden.
4 1.1 matt * All rights reserved.
5 1.1 matt *
6 1.1 matt * This code is derived from software contributed to Ludd by
7 1.1 matt * Bertram Barth.
8 1.1 matt *
9 1.1 matt * Redistribution and use in source and binary forms, with or without
10 1.1 matt * modification, are permitted provided that the following conditions
11 1.1 matt * are met:
12 1.1 matt * 1. Redistributions of source code must retain the above copyright
13 1.1 matt * notice, this list of conditions and the following disclaimer.
14 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 matt * notice, this list of conditions and the following disclaimer in the
16 1.1 matt * documentation and/or other materials provided with the distribution.
17 1.1 matt * 3. All advertising materials mentioning features or use of this software
18 1.1 matt * must display the following acknowledgement:
19 1.1 matt * This product includes software developed at Ludd, University of
20 1.1 matt * Lule}, Sweden and its contributors.
21 1.1 matt * 4. The name of the author may not be used to endorse or promote products
22 1.1 matt * derived from this software without specific prior written permission
23 1.1 matt *
24 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 1.1 matt * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 matt * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 matt * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 1.1 matt * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 1.1 matt * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 1.1 matt * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 1.1 matt * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 1.1 matt * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
33 1.1 matt * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 matt */
35 1.1 matt
36 1.1 matt /* All bugs are subject to removal without further notice */
37 1.1 matt
38 1.1 matt
39 1.1 matt #define _LOCORE
40 1.1 matt
41 1.5 martin #define __HAVE_OLD_DISKLABEL /* not automatically added due to _LOCORE */
42 1.3 he #define OMIT_DKTYPENUMS
43 1.3 he #define OMIT_FSTYPENUMS
44 1.1 matt #include "sys/disklabel.h"
45 1.1 matt
46 1.1 matt #include "../include/mtpr.h"
47 1.1 matt #include "../include/asm.h"
48 1.1 matt
49 1.1 matt _C_LABEL(_start):
50 1.1 matt _C_LABEL(start):
51 1.1 matt .globl _C_LABEL(start) # this is the symbolic name for the start
52 1.1 matt .globl _C_LABEL(_start) # of code to be relocated. We can use this
53 1.2 wiz # to get the actual/real address (pc-rel)
54 1.1 matt # or to get the relocated address (abs).
55 1.1 matt
56 1.1 matt .org 0x00 # uVAX booted from TK50 starts here
57 1.1 matt brb from_0x00 # continue behind dispatch-block
58 1.1 matt
59 1.5 martin # At offset 0x02 we have a dual used area: VMB.EXE starts execution here,
60 1.5 martin # and uVAX-ROM looks for a pointer to a parameter block. We arrange for
61 1.5 martin # the parameter block offset to disassmble as a CASEL instructions which
62 1.5 martin # falls through to 0x08.
63 1.1 matt .org 0x02 # information used by uVAX-ROM
64 1.5 martin .byte 0xcf # offset in words to identification area
65 1.1 matt .byte 1 # this byte must be 1
66 1.1 matt .word 0 # logical block number (word swapped)
67 1.1 matt .word 0 # of the secondary image
68 1.1 matt
69 1.1 matt .org 0x08 #
70 1.1 matt brb from_0x08 # skip ...
71 1.1 matt
72 1.1 matt .org 0x0C # 11/750 & 8200 starts here
73 1.1 matt movzbl $1,_C_LABEL(from)# We booted from "old" rom.
74 1.1 matt brw cont_750
75 1.1 matt
76 1.1 matt
77 1.1 matt from_0x00: # uVAX from TK50
78 1.1 matt brw start_uvax # all uVAXen continue there
79 1.1 matt
80 1.1 matt from_0x08: # Any machine from VMB
81 1.1 matt movzbl $4,_C_LABEL(from) # Booted from full VMB
82 1.1 matt /*
83 1.1 matt * Read in block 1-15.
84 1.1 matt */
85 1.1 matt movl 52(%r11), %r7 # load iovec/bqo into %r7
86 1.1 matt addl3 (%r7), %r7, %r6 # load qio into %r6
87 1.1 matt pushl %r11 # base of rpb
88 1.1 matt pushl $0 # virtual-flag
89 1.1 matt pushl $33 # read-logical-block
90 1.1 matt pushl $1 # lbn to start reading
91 1.1 matt pushl $7680 # number of bytes to read
92 1.1 matt pushab start_uvax # buffer-address
93 1.1 matt calls $6, (%r6) # call the qio-routine
94 1.1 matt brw start_uvax
95 1.1 matt
96 1.5 martin # the complete area reserved for label
97 1.5 martin # must be empty (i.e. filled with zeroes).
98 1.5 martin # disklabel(8) checks that before installing
99 1.5 martin # the bootblocks over existing label.
100 1.5 martin
101 1.5 martin .org LABELOFFSET
102 1.5 martin .globl _C_LABEL(romlabel)
103 1.5 martin _C_LABEL(romlabel):
104 1.5 martin .long 0
105 1.5 martin
106 1.5 martin .org LABELOFFSET + d_end_
107 1.5 martin # Make sure the parameter block is past the disklabel.
108 1.5 martin # If not, the next .org would try to move backwards.
109 1.5 martin
110 1.1 matt /*
111 1.1 matt * Parameter block for uVAX boot.
112 1.1 matt */
113 1.1 matt #define VOLINFO 0 /* 1=single-sided 81=double-sided volumes */
114 1.1 matt #define SISIZE 16 /* size in blocks of secondary image */
115 1.1 matt #define SILOAD 0 /* load offset (usually 0) from the default */
116 1.1 matt #define SIOFF 0x200 /* byte offset into secondary image */
117 1.1 matt
118 1.5 martin .org 0x19e # do not move, see comment earlier about CASEL
119 1.1 matt .byte 0x18 # must be 0x18
120 1.1 matt .byte 0x00 # must be 0x00 (MBZ)
121 1.1 matt .byte 0x00 # any value
122 1.1 matt .byte 0xFF - (0x18 + 0x00 + 0x00)
123 1.1 matt /* 4th byte holds 1s' complement of sum of previous 3 bytes */
124 1.1 matt
125 1.1 matt .byte 0x00 # must be 0x00 (MBZ)
126 1.1 matt .byte VOLINFO
127 1.1 matt .byte 0x00 # any value
128 1.1 matt .byte 0x00 # any value
129 1.1 matt
130 1.1 matt .long SISIZE # size in blocks of secondary image
131 1.1 matt .long SILOAD # load offset (usually 0)
132 1.1 matt .long SIOFF # byte offset into secondary image
133 1.1 matt .long (SISIZE + SILOAD + SIOFF) # sum of previous 3
134 1.1 matt
135 1.1 matt
136 1.1 matt .align 2
137 1.1 matt .globl _C_LABEL(from)
138 1.1 matt _C_LABEL(from):
139 1.1 matt .long 0
140 1.1 matt
141 1.1 matt /*
142 1.1 matt * After bootblock (LBN0) has been loaded into the first page
143 1.1 matt * of good memory by 11/750's ROM-code (transfer address
144 1.1 matt * of bootblock-code is: base of good memory + 0x0C) registers
145 1.1 matt * are initialized as:
146 1.1 matt * R0: type of boot-device
147 1.1 matt * 0: Massbus device
148 1.1 matt * 1: RK06/RK07
149 1.1 matt * 2: RL02
150 1.1 matt * 17: UDA50
151 1.1 matt * 35: TK50
152 1.1 matt * 64: TU58
153 1.1 matt * R1: (UBA) address of UNIBUS I/O-page
154 1.1 matt * (MBA) address of boot device's adapter
155 1.1 matt * R2: (UBA) address of the boot device's CSR
156 1.1 matt * (MBA) controller number of boot device
157 1.1 matt * R6: address of driver subroutine in ROM
158 1.1 matt *
159 1.1 matt * cont_750 reads in LBN1-15 for further execution.
160 1.1 matt */
161 1.1 matt cont_750:
162 1.1 matt movl $_C_LABEL(start), %sp # move stack to avoid clobbering the code
163 1.1 matt pushr $0x131 # save clobbered registers
164 1.1 matt clrl %r4 # %r4 == # of blocks transferred
165 1.1 matt movab _C_LABEL(start),%r5 # %r5 have base address for next transfer
166 1.1 matt pushl %r5 # ...on stack also (Why?)
167 1.1 matt 1: incl %r4 # increment block count
168 1.1 matt movl %r4,%r8 # LBN is in %r8 for rom routine
169 1.1 matt addl2 $0x200,%r5 # Increase address for next read
170 1.1 matt cmpl $16,%r4 # read 15 blocks?
171 1.1 matt beql 2f # Yep
172 1.1 matt movl %r5,(%sp) # move address to stack also
173 1.1 matt jsb (%r6) # read 512 bytes
174 1.1 matt blbs %r0,1b # jump if read succeeded
175 1.1 matt halt # otherwise die...
176 1.1 matt 2: tstl (%sp)+ # remove boring arg from stack
177 1.1 matt popr $0x131 # restore clobbered registers
178 1.1 matt brw start_all # Ok, continue...
179 1.1 matt
180 1.1 matt /* uVAX main entry is at the start of the second disk block. This is
181 1.1 matt * needed for multi-arch CD booting where multiple architecture need
182 1.1 matt * to shove stuff in boot block 0.
183 1.1 matt */
184 1.1 matt .org 0x200 # uVAX booted from disk starts here
185 1.1 matt
186 1.1 matt start_uvax:
187 1.1 matt movzbl $2,_C_LABEL(from) # Booted from subset-VMB
188 1.1 matt brb start_all
189 1.1 matt
190 1.1 matt /*
191 1.1 matt * start_all: stack already at RELOC, we save registers, move ourself
192 1.1 matt * to RELOC and loads boot.
193 1.1 matt */
194 1.1 matt start_all:
195 1.1 matt movl $_C_LABEL(start), %sp # move stack to a better
196 1.1 matt pushr $0x1fff # save all regs, used later.
197 1.1 matt
198 1.1 matt subl3 $_C_LABEL(start), $_C_LABEL(edata), %r0
199 1.1 matt # get size of text+data (w/o bss)
200 1.1 matt moval _C_LABEL(start), %r1 # get actual base-address of code
201 1.1 matt subl3 $_C_LABEL(start), $_C_LABEL(end), %r2
202 1.1 matt # get complete size (incl. bss)
203 1.1 matt movl $_C_LABEL(start), %r3 # get relocated base-address of code
204 1.1 matt movc5 %r0, (%r1), $0, %r2, (%r3) # copy code to new location
205 1.1 matt
206 1.1 matt movpsl -(%sp)
207 1.1 matt movl $relocated, -(%sp) # return-address on top of stack
208 1.1 matt rei # can be replaced with new address
209 1.1 matt relocated: # now relocation is done !!!
210 1.1 matt movl %sp, _C_LABEL(bootregs)
211 1.1 matt calls $0, _C_LABEL(Xmain) # call Xmain (gcc workaround)which is
212 1.1 matt halt # not intended to return ...
213 1.1 matt
214 1.1 matt /*
215 1.1 matt * hoppabort() is called when jumping to the newly loaded program.
216 1.1 matt */
217 1.1 matt ENTRY(hoppabort, 0)
218 1.1 matt movl 4(%ap),%r6
219 1.1 matt movl _C_LABEL(rpb),%r11
220 1.1 matt mnegl $1,%ap # Hack to figure out boot device.
221 1.1 matt movpsl -(%sp)
222 1.1 matt pushab 2(%r6)
223 1.1 matt mnegl $1,_C_LABEL(vax_load_failure)
224 1.1 matt rei
225 1.1 matt # calls $0,(%r6)
226 1.1 matt halt
227 1.1 matt
228 1.1 matt ENTRY(unit_init, R6|R7|R8|R9|R10|R11)
229 1.1 matt mfpr $17,%r7 # Wanted bu KDB
230 1.1 matt movl 4(%ap),%r0 # init routine address
231 1.1 matt movl 8(%ap),%r9 # RPB in %r9
232 1.1 matt movl 12(%ap),%r1 # VMB argument list
233 1.1 matt callg (%r1),(%r0)
234 1.1 matt ret
235 1.1 matt
236 1.1 matt # A bunch of functions unwanted in boot blocks.
237 1.1 matt ENTRY(getchar, 0)
238 1.1 matt halt
239 1.1 matt
240 1.1 matt #ifndef USE_PRINTF
241 1.1 matt ENTRY(putchar, 0)
242 1.1 matt ret
243 1.1 matt
244 1.1 matt ENTRY(printf, 0)
245 1.1 matt ret
246 1.1 matt #endif
247 1.1 matt
248 1.1 matt ENTRY(panic, 0)
249 1.1 matt halt
250