biostramp.S revision 1.14 1 1.14 martin /* $NetBSD: biostramp.S,v 1.14 2008/04/28 20:23:23 martin Exp $ */
2 1.5 jtc
3 1.1 jtk /*-
4 1.5 jtc * Copyright (c) 1996 The NetBSD Foundation, Inc.
5 1.5 jtc * All rights reserved.
6 1.5 jtc *
7 1.5 jtc * This code is derived from software contributed to The NetBSD Foundation
8 1.5 jtc * by John Kohl.
9 1.1 jtk *
10 1.1 jtk * Redistribution and use in source and binary forms, with or without
11 1.1 jtk * modification, are permitted provided that the following conditions
12 1.1 jtk * are met:
13 1.1 jtk * 1. Redistributions of source code must retain the above copyright
14 1.1 jtk * notice, this list of conditions and the following disclaimer.
15 1.1 jtk * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 jtk * notice, this list of conditions and the following disclaimer in the
17 1.1 jtk * documentation and/or other materials provided with the distribution.
18 1.1 jtk *
19 1.5 jtc * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.5 jtc * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.5 jtc * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.6 jtc * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.6 jtc * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.5 jtc * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.5 jtc * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.5 jtc * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.5 jtc * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.5 jtc * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 jtk * POSSIBILITY OF SUCH DAMAGE.
30 1.1 jtk */
31 1.1 jtk
32 1.1 jtk /*
33 1.1 jtk * biostramp.S: provide a means for NetBSD to call BIOS interrupts
34 1.1 jtk * by switching to real mode, calling it, and switching
35 1.1 jtk * back to protected & paging mode.
36 1.1 jtk */
37 1.1 jtk
38 1.1 jtk /*
39 1.1 jtk * Micro$haft's book on i386/i486 programming says you should do the following
40 1.1 jtk * to return to real mode from protected mode:
41 1.1 jtk *
42 1.1 jtk * 1) disable paging, by jumping to code with identical virtual and physical
43 1.1 jtk * addresses, clearing PG in CR0, and zeroing CR3 (PDBR).
44 1.1 jtk *
45 1.1 jtk * 2) segment descriptors must be byte-granular with limit 64k-1, def32 = 0,
46 1.1 jtk * (i.e. 16-bit data accesses and/or 80286 instructions)
47 1.1 jtk * CS must be executable; DS,ES,FS,GS should be writable
48 1.1 jtk *
49 1.1 jtk * 3) disable interrupts, load IDTR with original value (base 0, limit 1023)
50 1.1 jtk *
51 1.1 jtk * 4) clear PE in CR0, execute FAR jump to load CS.
52 1.1 jtk *
53 1.1 jtk * 5) load SP, and off you go
54 1.1 jtk *
55 1.1 jtk */
56 1.1 jtk
57 1.1 jtk #include "assym.h"
58 1.4 jtk
59 1.4 jtk #include <i386/include/param.h>
60 1.4 jtk #include <i386/include/specialreg.h>
61 1.4 jtk #include <i386/include/segments.h>
62 1.4 jtk #include <i386/include/apmvar.h>
63 1.4 jtk #include <i386/include/psl.h>
64 1.4 jtk #include <i386/include/asm.h>
65 1.4 jtk
66 1.3 mycroft #define addr32 .byte 0x67
67 1.3 mycroft #define data32 .byte 0x66
68 1.1 jtk
69 1.12 mycroft .set MYBASE,NBPG
70 1.12 mycroft .set MYSCRATCH,NBPG*2
71 1.1 jtk .set CR3_ADDR,(MYSCRATCH-4)
72 1.1 jtk .set IDTR_SAVE_ADDR,CR3_ADDR-6
73 1.1 jtk .set GDTR_SAVE_ADDR,IDTR_SAVE_ADDR-6
74 1.1 jtk .set GDTR_LOCAL_ADDR,GDTR_SAVE_ADDR-6
75 1.1 jtk .set STACK_PTR_ADDR,GDTR_LOCAL_ADDR-4
76 1.1 jtk .set BASE_PTR_ADDR,STACK_PTR_ADDR-4
77 1.1 jtk .set FUNCTION_ADDR,(BASE_PTR_ADDR-2)
78 1.1 jtk .set GDT_COPY_ADDR,(FUNCTION_ADDR-NGDT*8)
79 1.7 jtk .set EAX_REGADDR,(GDT_COPY_ADDR-4)
80 1.7 jtk .set EBX_REGADDR,(EAX_REGADDR-4)
81 1.7 jtk .set ECX_REGADDR,(EBX_REGADDR-4)
82 1.7 jtk .set EDX_REGADDR,(ECX_REGADDR-4)
83 1.7 jtk .set ESI_REGADDR,(EDX_REGADDR-4)
84 1.7 jtk .set EDI_REGADDR,(ESI_REGADDR-4)
85 1.7 jtk .set EFLAGS_REGADDR,(EDI_REGADDR-4)
86 1.9 jdolecek .set ES_REGADDR, (EFLAGS_REGADDR-4)
87 1.9 jdolecek .set ENDREGADDR,(ES_REGADDR-4)
88 1.1 jtk
89 1.9 jdolecek .set REALSTACK,ENDREGADDR-20 # leave a red zone?
90 1.1 jtk
91 1.1 jtk #define COPY_FLAGS (PSL_C|PSL_PF|PSL_AF|PSL_Z|PSL_N|PSL_D|PSL_V)
92 1.1 jtk
93 1.1 jtk /*
94 1.7 jtk * do_bios_call(int function, struct bioscall *regs)
95 1.1 jtk */
96 1.1 jtk
97 1.1 jtk ENTRY(do_bios_call)
98 1.1 jtk pushl %ebp
99 1.1 jtk movl %esp,%ebp /* set up frame ptr */
100 1.1 jtk pushl %esi
101 1.1 jtk pushl %edi
102 1.1 jtk pushl %ebx
103 1.1 jtk pushl %ds
104 1.1 jtk pushl %es
105 1.1 jtk pushl %fs
106 1.1 jtk pushl %gs
107 1.1 jtk
108 1.1 jtk # copy data to where the real-mode hook can handle it
109 1.1 jtk movl 8(%ebp),%eax
110 1.1 jtk movw %ax,FUNCTION_ADDR
111 1.1 jtk movl 12(%ebp),%ebx
112 1.7 jtk movl BIOSCALLREG_EAX(%ebx),%eax
113 1.7 jtk movl %eax,EAX_REGADDR
114 1.7 jtk movl BIOSCALLREG_EBX(%ebx),%eax
115 1.7 jtk movl %eax,EBX_REGADDR
116 1.7 jtk movl BIOSCALLREG_ECX(%ebx),%eax
117 1.7 jtk movl %eax,ECX_REGADDR
118 1.7 jtk movl BIOSCALLREG_EDX(%ebx),%eax
119 1.7 jtk movl %eax,EDX_REGADDR
120 1.7 jtk movl BIOSCALLREG_ESI(%ebx),%eax
121 1.7 jtk movl %eax,ESI_REGADDR
122 1.7 jtk movl BIOSCALLREG_EDI(%ebx),%eax
123 1.7 jtk movl %eax,EDI_REGADDR
124 1.1 jtk # merge current flags with certain provided flags
125 1.7 jtk movl BIOSCALLREG_EFLAGS(%ebx),%ecx
126 1.1 jtk pushfl
127 1.1 jtk popl %eax
128 1.1 jtk andl $~(COPY_FLAGS|PSL_I),%eax
129 1.1 jtk andl $COPY_FLAGS,%ecx
130 1.1 jtk orl %ecx,%eax
131 1.7 jtk movl %eax,EFLAGS_REGADDR
132 1.9 jdolecek movl $0, ES_REGADDR
133 1.1 jtk
134 1.1 jtk # save flags, disable interrupts, do real mode stuff
135 1.1 jtk pushfl
136 1.1 jtk
137 1.1 jtk # save GDT
138 1.1 jtk sgdt GDTR_SAVE_ADDR
139 1.1 jtk
140 1.1 jtk # copy the GDT to local area
141 1.1 jtk movl GDTR_SAVE_ADDR+2,%esi
142 1.1 jtk movl $GDT_COPY_ADDR,%edi
143 1.1 jtk movl $(NGDT*8),%ecx
144 1.1 jtk cld
145 1.1 jtk rep
146 1.1 jtk movsb
147 1.1 jtk movw $(NGDT*8)-1,GDTR_LOCAL_ADDR
148 1.1 jtk movl $GDT_COPY_ADDR,GDTR_LOCAL_ADDR+2
149 1.1 jtk
150 1.1 jtk # install GDT copy
151 1.1 jtk lgdt GDTR_LOCAL_ADDR
152 1.1 jtk
153 1.1 jtk cli
154 1.1 jtk
155 1.1 jtk # save IDT
156 1.1 jtk sidt IDTR_SAVE_ADDR
157 1.1 jtk
158 1.1 jtk # set up new stack: save old ones, create new segs
159 1.1 jtk movl %esp,STACK_PTR_ADDR
160 1.1 jtk movl %ebp,BASE_PTR_ADDR
161 1.1 jtk movl $REALSTACK,%esp
162 1.1 jtk movl $0,%ebp # leave no trace, there is none.
163 1.1 jtk
164 1.1 jtk # save CR3
165 1.1 jtk movl %cr3,%eax
166 1.1 jtk movl %eax,CR3_ADDR
167 1.1 jtk
168 1.1 jtk # turn off paging
169 1.1 jtk movl %cr0,%eax
170 1.1 jtk andl $~(CR0_PG),%eax
171 1.1 jtk movl %eax,%cr0
172 1.1 jtk
173 1.1 jtk # flush TLB, drop PDBR
174 1.1 jtk xorl %eax,%eax
175 1.1 jtk movl %eax,%cr3
176 1.1 jtk
177 1.1 jtk ## load 16-bit segment descriptors
178 1.1 jtk movw $GSEL(GBIOSDATA_SEL,SEL_KPL),%bx
179 1.1 jtk movw %bx,%ds
180 1.1 jtk movw %bx,%es
181 1.1 jtk movw %bx,%fs
182 1.1 jtk movw %bx,%gs
183 1.1 jtk
184 1.1 jtk ljmp $GSEL(GBIOSCODE_SEL,SEL_KPL),$x16+MYBASE
185 1.1 jtk
186 1.1 jtk x16:
187 1.1 jtk # turn off protected mode--yikes!
188 1.1 jtk mov %cr0,%eax
189 1.1 jtk data32
190 1.1 jtk and $~CR0_PE,%eax
191 1.1 jtk mov %eax,%cr0
192 1.1 jtk
193 1.1 jtk # need inter-segment jump to reload real-mode CS
194 1.1 jtk data32
195 1.1 jtk ljmp $(MYBASE>>4),$xreal
196 1.1 jtk
197 1.1 jtk xreal: # really in real mode now
198 1.1 jtk # set up segment selectors. Note: everything is now relative
199 1.1 jtk # to zero-base in this file, except %ss.
200 1.1 jtk # data items in our scratch area need to reflect MYADDR
201 1.10 christos xorl %eax,%eax
202 1.1 jtk movw %ax,%ss
203 1.1 jtk
204 1.1 jtk movw %cs,%ax
205 1.1 jtk movw %ax,%es
206 1.1 jtk movw %ax,%fs
207 1.1 jtk movw %ax,%gs
208 1.1 jtk movw %ax,%ds
209 1.1 jtk
210 1.1 jtk ## load IDT, now that we are here.
211 1.1 jtk addr32
212 1.1 jtk lidt IDT_bios
213 1.1 jtk
214 1.1 jtk # Don't forget that we're in real mode, with 16-bit default data.
215 1.7 jtk # all these movl's are really movw's, and movw's are movl's!
216 1.1 jtk addr32
217 1.10 christos movw EDI_REGADDR-MYBASE,%di
218 1.1 jtk addr32
219 1.10 christos movw ESI_REGADDR-MYBASE,%si
220 1.1 jtk addr32
221 1.10 christos movw EDX_REGADDR-MYBASE,%dx
222 1.1 jtk addr32
223 1.10 christos movw ECX_REGADDR-MYBASE,%cx
224 1.1 jtk addr32
225 1.10 christos movw EBX_REGADDR-MYBASE,%bx
226 1.1 jtk addr32
227 1.1 jtk movb FUNCTION_ADDR-MYBASE,%al
228 1.1 jtk addr32
229 1.1 jtk movb %al,intaddr+1 # self modifying code, yuck. no indirect interrupt instruction!
230 1.1 jtk # long jump to flush processor cache to reflect code modification
231 1.1 jtk data32
232 1.1 jtk ljmp $(MYBASE>>4),$flushit
233 1.1 jtk flushit:
234 1.1 jtk addr32
235 1.10 christos movw EFLAGS_REGADDR-MYBASE,%ax
236 1.1 jtk pushl %eax
237 1.1 jtk popfl
238 1.1 jtk addr32
239 1.10 christos movw EAX_REGADDR-MYBASE,%ax
240 1.1 jtk
241 1.1 jtk intaddr:
242 1.1 jtk int $0xff
243 1.1 jtk
244 1.1 jtk # save results
245 1.1 jtk pushf
246 1.1 jtk addr32
247 1.10 christos movw %ax,EAX_REGADDR-MYBASE
248 1.1 jtk addr32
249 1.10 christos movw %bx,EBX_REGADDR-MYBASE
250 1.1 jtk addr32
251 1.10 christos movw %cx,ECX_REGADDR-MYBASE
252 1.1 jtk addr32
253 1.10 christos movw %dx,EDX_REGADDR-MYBASE
254 1.1 jtk addr32
255 1.10 christos movw %si,ESI_REGADDR-MYBASE
256 1.1 jtk addr32
257 1.10 christos movw %di,EDI_REGADDR-MYBASE
258 1.10 christos pop %ax
259 1.1 jtk addr32
260 1.10 christos movw %ax,EFLAGS_REGADDR-MYBASE
261 1.9 jdolecek addr32
262 1.9 jdolecek movw %es,ES_REGADDR-MYBASE
263 1.1 jtk
264 1.1 jtk # and return to protected mode
265 1.1 jtk cli # just to be sure
266 1.1 jtk
267 1.1 jtk mov %cr0,%eax
268 1.1 jtk data32
269 1.1 jtk or $CR0_PE,%eax
270 1.1 jtk mov %eax,%cr0
271 1.1 jtk
272 1.1 jtk # long jump to 32-bit code segment
273 1.1 jtk data32
274 1.1 jtk ljmp $GSEL(GCODE_SEL,SEL_KPL),$x32+MYBASE
275 1.1 jtk x32:
276 1.1 jtk #back in 32-bit mode/protected mode (but not paging yet).
277 1.1 jtk # Reload the segment registers & IDT
278 1.1 jtk
279 1.1 jtk movw $GSEL(GDATA_SEL,SEL_KPL),%bx
280 1.1 jtk movw %bx,%ds
281 1.1 jtk movw %bx,%ss
282 1.1 jtk movw %bx,%es
283 1.1 jtk
284 1.1 jtk # reload PDBR
285 1.1 jtk movl CR3_ADDR,%eax
286 1.1 jtk movl %eax,%cr3
287 1.1 jtk movl %cr0,%eax
288 1.1 jtk orl $CR0_PG,%eax
289 1.1 jtk movl %eax,%cr0
290 1.1 jtk
291 1.1 jtk # reload system copy of GDT
292 1.1 jtk lgdt GDTR_SAVE_ADDR
293 1.1 jtk
294 1.1 jtk # restore protected-mode stack
295 1.1 jtk movl STACK_PTR_ADDR,%esp
296 1.1 jtk movl BASE_PTR_ADDR,%ebp
297 1.1 jtk
298 1.1 jtk #restore protected-mode IDT
299 1.1 jtk lidt IDTR_SAVE_ADDR
300 1.1 jtk
301 1.1 jtk # copy back arguments from holding pen
302 1.1 jtk
303 1.1 jtk movl 12(%ebp),%ebx
304 1.7 jtk movl EAX_REGADDR,%eax
305 1.7 jtk movl %eax,BIOSCALLREG_EAX(%ebx)
306 1.7 jtk movl EBX_REGADDR,%eax
307 1.7 jtk movl %eax,BIOSCALLREG_EBX(%ebx)
308 1.7 jtk movl ECX_REGADDR,%eax
309 1.7 jtk movl %eax,BIOSCALLREG_ECX(%ebx)
310 1.7 jtk movl EDX_REGADDR,%eax
311 1.7 jtk movl %eax,BIOSCALLREG_EDX(%ebx)
312 1.7 jtk movl ESI_REGADDR,%eax
313 1.7 jtk movl %eax,BIOSCALLREG_ESI(%ebx)
314 1.7 jtk movl EDI_REGADDR,%eax
315 1.7 jtk movl %eax,BIOSCALLREG_EDI(%ebx)
316 1.7 jtk movl EFLAGS_REGADDR,%eax
317 1.7 jtk movl %eax,BIOSCALLREG_EFLAGS(%ebx)
318 1.9 jdolecek movl ES_REGADDR, %eax
319 1.9 jdolecek movl %eax,BIOSCALLREG_ES(%ebx)
320 1.1 jtk
321 1.1 jtk # finish up, restore registers, and return
322 1.1 jtk popfl
323 1.1 jtk popl %gs
324 1.1 jtk popl %fs
325 1.1 jtk popl %es
326 1.1 jtk popl %ds # see above
327 1.1 jtk popl %ebx
328 1.1 jtk popl %edi
329 1.1 jtk popl %esi
330 1.1 jtk leave
331 1.1 jtk ret
332 1.1 jtk
333 1.8 kleink #ifdef __ELF__
334 1.8 kleink .align 16
335 1.8 kleink #else
336 1.1 jtk .align 4
337 1.8 kleink #endif
338 1.1 jtk IDT_bios: # BIOS IDT descriptor (real-mode)
339 1.1 jtk .word 1023
340 1.1 jtk .long 0
341