cpuframe.h revision 1.1 1 1.1 cl /* $NetBSD: cpuframe.h,v 1.1 2003/09/22 14:18:37 cl Exp $ */
2 1.1 cl
3 1.1 cl /*
4 1.1 cl * Copyright (c) 1982, 1990, 1993
5 1.1 cl * The Regents of the University of California. All rights reserved.
6 1.1 cl *
7 1.1 cl * This code is derived from software contributed to Berkeley by
8 1.1 cl * the Systems Programming Group of the University of Utah Computer
9 1.1 cl * Science Department.
10 1.1 cl *
11 1.1 cl * Redistribution and use in source and binary forms, with or without
12 1.1 cl * modification, are permitted provided that the following conditions
13 1.1 cl * are met:
14 1.1 cl * 1. Redistributions of source code must retain the above copyright
15 1.1 cl * notice, this list of conditions and the following disclaimer.
16 1.1 cl * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 cl * notice, this list of conditions and the following disclaimer in the
18 1.1 cl * documentation and/or other materials provided with the distribution.
19 1.1 cl * 3. Neither the name of the University nor the names of its contributors
20 1.1 cl * may be used to endorse or promote products derived from this software
21 1.1 cl * without specific prior written permission.
22 1.1 cl *
23 1.1 cl * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 1.1 cl * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 1.1 cl * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 1.1 cl * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 1.1 cl * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 1.1 cl * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 1.1 cl * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 1.1 cl * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 1.1 cl * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 1.1 cl * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 1.1 cl * SUCH DAMAGE.
34 1.1 cl *
35 1.1 cl * from: Utah $Hdr: frame.h 1.8 92/12/20$
36 1.1 cl *
37 1.1 cl * @(#)frame.h 8.1 (Berkeley) 6/10/93
38 1.1 cl */
39 1.1 cl /*
40 1.1 cl * Copyright (c) 1988 University of Utah.
41 1.1 cl *
42 1.1 cl * This code is derived from software contributed to Berkeley by
43 1.1 cl * the Systems Programming Group of the University of Utah Computer
44 1.1 cl * Science Department.
45 1.1 cl *
46 1.1 cl * Redistribution and use in source and binary forms, with or without
47 1.1 cl * modification, are permitted provided that the following conditions
48 1.1 cl * are met:
49 1.1 cl * 1. Redistributions of source code must retain the above copyright
50 1.1 cl * notice, this list of conditions and the following disclaimer.
51 1.1 cl * 2. Redistributions in binary form must reproduce the above copyright
52 1.1 cl * notice, this list of conditions and the following disclaimer in the
53 1.1 cl * documentation and/or other materials provided with the distribution.
54 1.1 cl * 3. All advertising materials mentioning features or use of this software
55 1.1 cl * must display the following acknowledgement:
56 1.1 cl * This product includes software developed by the University of
57 1.1 cl * California, Berkeley and its contributors.
58 1.1 cl * 4. Neither the name of the University nor the names of its contributors
59 1.1 cl * may be used to endorse or promote products derived from this software
60 1.1 cl * without specific prior written permission.
61 1.1 cl *
62 1.1 cl * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
63 1.1 cl * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
64 1.1 cl * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
65 1.1 cl * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
66 1.1 cl * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
67 1.1 cl * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
68 1.1 cl * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
69 1.1 cl * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
70 1.1 cl * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
71 1.1 cl * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
72 1.1 cl * SUCH DAMAGE.
73 1.1 cl *
74 1.1 cl * from: Utah $Hdr: frame.h 1.8 92/12/20$
75 1.1 cl *
76 1.1 cl * @(#)frame.h 8.1 (Berkeley) 6/10/93
77 1.1 cl */
78 1.1 cl
79 1.1 cl #ifndef _M68K_CPUFRAME_H_
80 1.1 cl #define _M68K_CPUFRAME_H_
81 1.1 cl
82 1.1 cl struct frame {
83 1.1 cl struct trapframe {
84 1.1 cl int tf_regs[16];
85 1.1 cl short tf_pad;
86 1.1 cl short tf_stackadj;
87 1.1 cl u_short tf_sr;
88 1.1 cl u_int tf_pc;
89 1.1 cl u_short tf_format:4,
90 1.1 cl tf_vector:12;
91 1.1 cl } __attribute__((packed)) F_t;
92 1.1 cl union F_u {
93 1.1 cl struct fmt2 {
94 1.1 cl u_int f_iaddr;
95 1.1 cl } F_fmt2;
96 1.1 cl
97 1.1 cl struct fmt3 {
98 1.1 cl u_int f_ea;
99 1.1 cl } F_fmt3;
100 1.1 cl
101 1.1 cl struct fmt4 {
102 1.1 cl u_int f_fa;
103 1.1 cl u_int f_fslw;
104 1.1 cl /* for 060FP type 4 FP disabled frames: */
105 1.1 cl #define f_fea f_fa
106 1.1 cl #define f_pcfi f_fslw
107 1.1 cl } F_fmt4;
108 1.1 cl
109 1.1 cl struct fmt7 {
110 1.1 cl u_int f_ea;
111 1.1 cl u_short f_ssw;
112 1.1 cl u_short f_wb3s, f_wb2s, f_wb1s;
113 1.1 cl u_int f_fa;
114 1.1 cl u_int f_wb3a, f_wb3d;
115 1.1 cl u_int f_wb2a, f_wb2d;
116 1.1 cl u_int f_wb1a, f_wb1d;
117 1.1 cl #define f_pd0 f_wb1d
118 1.1 cl u_int f_pd1, f_pd2, f_pd3;
119 1.1 cl } F_fmt7;
120 1.1 cl
121 1.1 cl struct fmt8 {
122 1.1 cl u_short f_ssw;
123 1.1 cl u_int f_accaddr;
124 1.1 cl u_short f_ir0;
125 1.1 cl u_short f_dob;
126 1.1 cl u_short f_ir1;
127 1.1 cl u_short f_dib;
128 1.1 cl u_short f_ir2;
129 1.1 cl u_short f_irc;
130 1.1 cl u_short f_maskpc;
131 1.1 cl u_short f_iregs[15];
132 1.1 cl } __attribute__((packed)) F_fmt8;
133 1.1 cl
134 1.1 cl struct fmt9 {
135 1.1 cl u_int f_iaddr;
136 1.1 cl u_short f_iregs[4];
137 1.1 cl } F_fmt9;
138 1.1 cl
139 1.1 cl struct fmtA {
140 1.1 cl u_short f_ir0;
141 1.1 cl u_short f_ssw;
142 1.1 cl u_short f_ipsc;
143 1.1 cl u_short f_ipsb;
144 1.1 cl u_int f_dcfa;
145 1.1 cl u_short f_ir1, f_ir2;
146 1.1 cl u_int f_dob;
147 1.1 cl u_short f_ir3, f_ir4;
148 1.1 cl } F_fmtA;
149 1.1 cl
150 1.1 cl struct fmtB {
151 1.1 cl u_short f_ir0;
152 1.1 cl u_short f_ssw;
153 1.1 cl u_short f_ipsc;
154 1.1 cl u_short f_ipsb;
155 1.1 cl u_int f_dcfa;
156 1.1 cl u_short f_ir1, f_ir2;
157 1.1 cl u_int f_dob;
158 1.1 cl u_short f_ir3, f_ir4;
159 1.1 cl u_short f_ir5, f_ir6;
160 1.1 cl u_int f_sba;
161 1.1 cl u_short f_ir7, f_ir8;
162 1.1 cl u_int f_dib;
163 1.1 cl u_short f_iregs[22];
164 1.1 cl } F_fmtB;
165 1.1 cl } F_u;
166 1.1 cl };
167 1.1 cl
168 1.1 cl #define f_regs F_t.tf_regs
169 1.1 cl #define f_pad F_t.tf_pad
170 1.1 cl #define f_stackadj F_t.tf_stackadj
171 1.1 cl #define f_sr F_t.tf_sr
172 1.1 cl #define f_pc F_t.tf_pc
173 1.1 cl #define f_format F_t.tf_format
174 1.1 cl #define f_vector F_t.tf_vector
175 1.1 cl #define f_fmt2 F_u.F_fmt2
176 1.1 cl #define f_fmt3 F_u.F_fmt3
177 1.1 cl #define f_fmt4 F_u.F_fmt4
178 1.1 cl #define f_fmt7 F_u.F_fmt7
179 1.1 cl #define f_fmt8 F_u.F_fmt8
180 1.1 cl #define f_fmt9 F_u.F_fmt9
181 1.1 cl #define f_fmtA F_u.F_fmtA
182 1.1 cl #define f_fmtB F_u.F_fmtB
183 1.1 cl
184 1.1 cl struct switchframe {
185 1.1 cl u_int sf_pc;
186 1.1 cl };
187 1.1 cl
188 1.1 cl /* common frame size */
189 1.1 cl #define CFSIZE (sizeof(struct frame) - sizeof(union F_u))
190 1.1 cl #define NFMTSIZE 9
191 1.1 cl
192 1.1 cl #define FMT0 0x0
193 1.1 cl #define FMT1 0x1
194 1.1 cl #define FMT2 0x2
195 1.1 cl #define FMT3 0x3
196 1.1 cl #define FMT4 0x4
197 1.1 cl #define FMT7 0x7
198 1.1 cl #define FMT8 0x8
199 1.1 cl #define FMT9 0x9
200 1.1 cl #define FMTA 0xA
201 1.1 cl #define FMTB 0xB
202 1.1 cl
203 1.1 cl /* frame specific info sizes */
204 1.1 cl #define FMT0SIZE 0
205 1.1 cl #define FMT1SIZE 0
206 1.1 cl #define FMT2SIZE sizeof(struct fmt2)
207 1.1 cl #define FMT3SIZE sizeof(struct fmt3)
208 1.1 cl #define FMT4SIZE sizeof(struct fmt4)
209 1.1 cl #define FMT7SIZE sizeof(struct fmt7)
210 1.1 cl #define FMT8SIZE sizeof(struct fmt8)
211 1.1 cl #define FMT9SIZE sizeof(struct fmt9)
212 1.1 cl #define FMTASIZE sizeof(struct fmtA)
213 1.1 cl #define FMTBSIZE sizeof(struct fmtB)
214 1.1 cl
215 1.1 cl #define V_BUSERR 0x008
216 1.1 cl #define V_ADDRERR 0x00C
217 1.1 cl #define V_TRAP1 0x084
218 1.1 cl
219 1.1 cl /* 68010 SSW bits */
220 1.1 cl #define SSW1_RR 0x8000
221 1.1 cl #define SSW1_IF 0x2000
222 1.1 cl #define SSW1_DF 0x1000
223 1.1 cl #define SSW1_RM 0x0800
224 1.1 cl #define SSW1_HI 0x0400
225 1.1 cl #define SSW1_BX 0x0200
226 1.1 cl #define SSW1_RW 0x0100
227 1.1 cl #define SSW1_FCMASK 0x000F
228 1.1 cl
229 1.1 cl /* 68020/68030 SSW bits */
230 1.1 cl #define SSW_RC 0x2000
231 1.1 cl #define SSW_RB 0x1000
232 1.1 cl #define SSW_DF 0x0100
233 1.1 cl #define SSW_RM 0x0080
234 1.1 cl #define SSW_RW 0x0040
235 1.1 cl #define SSW_FCMASK 0x0007
236 1.1 cl
237 1.1 cl /* 68040 SSW bits */
238 1.1 cl #define SSW4_CP 0x8000
239 1.1 cl #define SSW4_CU 0x4000
240 1.1 cl #define SSW4_CT 0x2000
241 1.1 cl #define SSW4_CM 0x1000
242 1.1 cl #define SSW4_MA 0x0800
243 1.1 cl #define SSW4_ATC 0x0400
244 1.1 cl #define SSW4_LK 0x0200
245 1.1 cl #define SSW4_RW 0x0100
246 1.1 cl #define SSW4_WBSV 0x0080 /* really in WB status, not SSW */
247 1.1 cl #define SSW4_SZMASK 0x0060
248 1.1 cl #define SSW4_SZLW 0x0000
249 1.1 cl #define SSW4_SZB 0x0020
250 1.1 cl #define SSW4_SZW 0x0040
251 1.1 cl #define SSW4_SZLN 0x0060
252 1.1 cl #define SSW4_TTMASK 0x0018
253 1.1 cl #define SSW4_TTNOR 0x0000
254 1.1 cl #define SSW4_TTM16 0x0008
255 1.1 cl #define SSW4_TMMASK 0x0007
256 1.1 cl #define SSW4_TMDCP 0x0000
257 1.1 cl #define SSW4_TMUD 0x0001
258 1.1 cl #define SSW4_TMUC 0x0002
259 1.1 cl #define SSW4_TMKD 0x0005
260 1.1 cl #define SSW4_TMKC 0x0006
261 1.1 cl
262 1.1 cl /* 060 Fault Status Long Word (FPSP) */
263 1.1 cl
264 1.1 cl #define FSLW_MA 0x08000000
265 1.1 cl #define FSLW_LK 0x02000000
266 1.1 cl #define FSLW_RW 0x01800000
267 1.1 cl
268 1.1 cl #define FSLW_RW_R 0x01000000
269 1.1 cl #define FSLW_RW_W 0x00800000
270 1.1 cl
271 1.1 cl #define FSLW_SIZE 0x00600000
272 1.1 cl /*
273 1.1 cl * We better define the FSLW_SIZE values here, as the table given in the
274 1.1 cl * MC68060UM/AD rev. 0/1 p. 8-23 is wrong, and was corrected in the errata
275 1.1 cl * document.
276 1.1 cl */
277 1.1 cl #define FSLW_SIZE_LONG 0x00000000
278 1.1 cl #define FSLW_SIZE_BYTE 0x00200000
279 1.1 cl #define FSLW_SIZE_WORD 0x00400000
280 1.1 cl #define FSLW_SIZE_MV16 0x00600000
281 1.1 cl
282 1.1 cl #define FLSW_TT 0x00180000
283 1.1 cl #define FSLW_TM 0x00070000
284 1.1 cl #define FSLW_TM_SV 0x00040000
285 1.1 cl
286 1.1 cl
287 1.1 cl
288 1.1 cl #define FSLW_IO 0x00008000
289 1.1 cl #define FSLW_PBE 0x00004000
290 1.1 cl #define FSLW_SBE 0x00002000
291 1.1 cl #define FSLW_PTA 0x00001000
292 1.1 cl #define FSLW_PTB 0x00000800
293 1.1 cl #define FSLW_IL 0x00000400
294 1.1 cl #define FSLW_PF 0x00000200
295 1.1 cl #define FSLW_SP 0x00000100
296 1.1 cl #define FSLW_WP 0x00000080
297 1.1 cl #define FSLW_TWE 0x00000040
298 1.1 cl #define FSLW_RE 0x00000020
299 1.1 cl #define FSLW_WE 0x00000010
300 1.1 cl #define FSLW_TTR 0x00000008
301 1.1 cl #define FSLW_BPE 0x00000004
302 1.1 cl #define FSLW_SEE 0x00000001
303 1.1 cl
304 1.1 cl struct fpframe {
305 1.1 cl union FPF_u1 {
306 1.1 cl u_int FPF_null;
307 1.1 cl struct {
308 1.1 cl u_char FPF_version;
309 1.1 cl u_char FPF_fsize;
310 1.1 cl u_short FPF_res1;
311 1.1 cl } FPF_nonnull;
312 1.1 cl } FPF_u1;
313 1.1 cl union FPF_u2 {
314 1.1 cl struct fpidle {
315 1.1 cl u_short fpf_ccr;
316 1.1 cl u_short fpf_res2;
317 1.1 cl u_int fpf_iregs1[8];
318 1.1 cl u_int fpf_xops[3];
319 1.1 cl u_int fpf_opreg;
320 1.1 cl u_int fpf_biu;
321 1.1 cl } FPF_idle;
322 1.1 cl
323 1.1 cl struct fpbusy {
324 1.1 cl u_int fpf_iregs[53];
325 1.1 cl } FPF_busy;
326 1.1 cl
327 1.1 cl struct fpunimp {
328 1.1 cl u_int fpf_state[10];
329 1.1 cl } FPF_unimp;
330 1.1 cl } FPF_u2;
331 1.1 cl u_int fpf_regs[8*3];
332 1.1 cl u_int fpf_fpcr;
333 1.1 cl u_int fpf_fpsr;
334 1.1 cl u_int fpf_fpiar;
335 1.1 cl };
336 1.1 cl
337 1.1 cl #define fpf_null FPF_u1.FPF_null
338 1.1 cl #define fpf_version FPF_u1.FPF_nonnull.FPF_version
339 1.1 cl #define fpf_fsize FPF_u1.FPF_nonnull.FPF_fsize
340 1.1 cl #define fpf_res1 FPF_u1.FPF_nonnull.FPF_res1
341 1.1 cl #define fpf_idle FPF_u2.FPF_idle
342 1.1 cl #define fpf_busy FPF_u2.FPF_busy
343 1.1 cl #define fpf_unimp FPF_u2.FPF_unimp
344 1.1 cl
345 1.1 cl /*
346 1.1 cl * This is incompatible with the earlier one; expecially, an earlier frame
347 1.1 cl * must not be FRESTOREd on a 060 or vv, because a frame error exception is
348 1.1 cl * not guaranteed.
349 1.1 cl */
350 1.1 cl
351 1.1 cl
352 1.1 cl struct fpframe060 {
353 1.1 cl u_short fpf6_excp_exp;
354 1.1 cl u_char fpf6_frmfmt;
355 1.1 cl #define FPF6_FMT_NULL 0x00
356 1.1 cl #define FPF6_FMT_IDLE 0x60
357 1.1 cl #define FPF6_FMT_EXCP 0xe0
358 1.1 cl
359 1.1 cl u_char fpf6_v;
360 1.1 cl #define FPF6_V_BSUN 0
361 1.1 cl #define FPF6_V_INEX12 1
362 1.1 cl #define FPF6_V_DZ 2
363 1.1 cl #define FPF6_V_UNFL 3
364 1.1 cl #define FPF6_V_OPERR 4
365 1.1 cl #define FPF6_V_OVFL 5
366 1.1 cl #define FPF6_V_SNAN 6
367 1.1 cl #define FPF6_V_UNSUP 7
368 1.1 cl
369 1.1 cl u_long fpf6_upper, fpf6_lower;
370 1.1 cl };
371 1.1 cl
372 1.1 cl #endif /* _M68K_CPUFRAME_H_ */
373