db_interface.c revision 1.13 1 1.13 chris /* $NetBSD: db_interface.c,v 1.13 2002/01/05 22:41:47 chris Exp $ */
2 1.1 matt
3 1.1 matt /*
4 1.1 matt * Copyright (c) 1996 Scott K. Stevens
5 1.1 matt *
6 1.1 matt * Mach Operating System
7 1.1 matt * Copyright (c) 1991,1990 Carnegie Mellon University
8 1.1 matt * All Rights Reserved.
9 1.1 matt *
10 1.1 matt * Permission to use, copy, modify and distribute this software and its
11 1.1 matt * documentation is hereby granted, provided that both the copyright
12 1.1 matt * notice and this permission notice appear in all copies of the
13 1.1 matt * software, derivative works or modified versions, and any portions
14 1.1 matt * thereof, and that both notices appear in supporting documentation.
15 1.1 matt *
16 1.1 matt * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
17 1.1 matt * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
18 1.1 matt * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
19 1.1 matt *
20 1.1 matt * Carnegie Mellon requests users of this software to return to
21 1.1 matt *
22 1.1 matt * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
23 1.1 matt * School of Computer Science
24 1.1 matt * Carnegie Mellon University
25 1.1 matt * Pittsburgh PA 15213-3890
26 1.1 matt *
27 1.1 matt * any improvements or extensions that they make and grant Carnegie the
28 1.1 matt * rights to redistribute these changes.
29 1.1 matt *
30 1.1 matt * From: db_interface.c,v 2.4 1991/02/05 17:11:13 mrt (CMU)
31 1.1 matt */
32 1.1 matt
33 1.1 matt /*
34 1.1 matt * Interface to new debugger.
35 1.1 matt */
36 1.1 matt #include "opt_ddb.h"
37 1.1 matt
38 1.1 matt #include <sys/param.h>
39 1.1 matt #include <sys/proc.h>
40 1.1 matt #include <sys/reboot.h>
41 1.1 matt #include <sys/systm.h> /* just for boothowto */
42 1.1 matt #include <sys/exec.h>
43 1.1 matt
44 1.1 matt #include <uvm/uvm_extern.h>
45 1.1 matt
46 1.13 chris #include <arm/arm32/db_machdep.h>
47 1.9 thorpej #include <arm/arm32/katelib.h>
48 1.11 thorpej #include <arm/undefined.h>
49 1.13 chris #include <ddb/db_access.h>
50 1.1 matt #include <ddb/db_command.h>
51 1.1 matt #include <ddb/db_output.h>
52 1.1 matt #include <ddb/db_variables.h>
53 1.1 matt #include <ddb/db_sym.h>
54 1.1 matt #include <ddb/db_extern.h>
55 1.1 matt #include <ddb/db_interface.h>
56 1.1 matt #include <dev/cons.h>
57 1.1 matt
58 1.1 matt static int nil;
59 1.1 matt
60 1.1 matt int db_access_und_sp __P((const struct db_variable *, db_expr_t *, int));
61 1.1 matt int db_access_abt_sp __P((const struct db_variable *, db_expr_t *, int));
62 1.1 matt int db_access_irq_sp __P((const struct db_variable *, db_expr_t *, int));
63 1.1 matt u_int db_fetch_reg __P((int, db_regs_t *));
64 1.1 matt
65 1.13 chris static int db_validate_address __P((vm_offset_t));
66 1.13 chris static void db_write_text __P((unsigned char *, int));
67 1.13 chris int db_trapper __P((u_int, u_int, trapframe_t *, int));
68 1.13 chris
69 1.13 chris
70 1.1 matt const struct db_variable db_regs[] = {
71 1.1 matt { "spsr", (long *)&DDB_REGS->tf_spsr, FCN_NULL, },
72 1.1 matt { "r0", (long *)&DDB_REGS->tf_r0, FCN_NULL, },
73 1.1 matt { "r1", (long *)&DDB_REGS->tf_r1, FCN_NULL, },
74 1.1 matt { "r2", (long *)&DDB_REGS->tf_r2, FCN_NULL, },
75 1.1 matt { "r3", (long *)&DDB_REGS->tf_r3, FCN_NULL, },
76 1.1 matt { "r4", (long *)&DDB_REGS->tf_r4, FCN_NULL, },
77 1.1 matt { "r5", (long *)&DDB_REGS->tf_r5, FCN_NULL, },
78 1.1 matt { "r6", (long *)&DDB_REGS->tf_r6, FCN_NULL, },
79 1.1 matt { "r7", (long *)&DDB_REGS->tf_r7, FCN_NULL, },
80 1.1 matt { "r8", (long *)&DDB_REGS->tf_r8, FCN_NULL, },
81 1.1 matt { "r9", (long *)&DDB_REGS->tf_r9, FCN_NULL, },
82 1.1 matt { "r10", (long *)&DDB_REGS->tf_r10, FCN_NULL, },
83 1.1 matt { "r11", (long *)&DDB_REGS->tf_r11, FCN_NULL, },
84 1.1 matt { "r12", (long *)&DDB_REGS->tf_r12, FCN_NULL, },
85 1.1 matt { "usr_sp", (long *)&DDB_REGS->tf_usr_sp, FCN_NULL, },
86 1.1 matt { "usr_lr", (long *)&DDB_REGS->tf_usr_lr, FCN_NULL, },
87 1.1 matt { "svc_sp", (long *)&DDB_REGS->tf_svc_sp, FCN_NULL, },
88 1.1 matt { "svc_lr", (long *)&DDB_REGS->tf_svc_lr, FCN_NULL, },
89 1.1 matt { "pc", (long *)&DDB_REGS->tf_pc, FCN_NULL, },
90 1.1 matt { "und_sp", (long *)&nil, db_access_und_sp, },
91 1.1 matt { "abt_sp", (long *)&nil, db_access_abt_sp, },
92 1.1 matt { "irq_sp", (long *)&nil, db_access_irq_sp, },
93 1.1 matt };
94 1.1 matt
95 1.1 matt const struct db_variable * const db_eregs = db_regs + sizeof(db_regs)/sizeof(db_regs[0]);
96 1.1 matt
97 1.1 matt extern label_t *db_recover;
98 1.1 matt
99 1.1 matt int db_active = 0;
100 1.1 matt
101 1.1 matt int db_access_und_sp(vp, valp, rw)
102 1.1 matt const struct db_variable *vp;
103 1.1 matt db_expr_t *valp;
104 1.1 matt int rw;
105 1.1 matt {
106 1.1 matt if (rw == DB_VAR_GET)
107 1.1 matt *valp = get_stackptr(PSR_UND32_MODE);
108 1.1 matt return(0);
109 1.1 matt }
110 1.1 matt
111 1.1 matt int db_access_abt_sp(vp, valp, rw)
112 1.1 matt const struct db_variable *vp;
113 1.1 matt db_expr_t *valp;
114 1.1 matt int rw;
115 1.1 matt {
116 1.1 matt if (rw == DB_VAR_GET)
117 1.1 matt *valp = get_stackptr(PSR_ABT32_MODE);
118 1.1 matt return(0);
119 1.1 matt }
120 1.1 matt
121 1.1 matt int db_access_irq_sp(vp, valp, rw)
122 1.1 matt const struct db_variable *vp;
123 1.1 matt db_expr_t *valp;
124 1.1 matt int rw;
125 1.1 matt {
126 1.1 matt if (rw == DB_VAR_GET)
127 1.1 matt *valp = get_stackptr(PSR_IRQ32_MODE);
128 1.1 matt return(0);
129 1.1 matt }
130 1.1 matt
131 1.1 matt /*
132 1.1 matt * kdb_trap - field a TRACE or BPT trap
133 1.1 matt */
134 1.1 matt int
135 1.1 matt kdb_trap(type, regs)
136 1.1 matt int type;
137 1.1 matt db_regs_t *regs;
138 1.1 matt {
139 1.1 matt int s;
140 1.1 matt
141 1.1 matt switch (type) {
142 1.1 matt case T_BREAKPOINT: /* breakpoint */
143 1.1 matt case -1: /* keyboard interrupt */
144 1.1 matt break;
145 1.1 matt default:
146 1.1 matt db_printf("kernel: trap");
147 1.1 matt if (db_recover != 0) {
148 1.1 matt db_error("Faulted in DDB; continuing...\n");
149 1.1 matt /*NOTREACHED*/
150 1.1 matt }
151 1.1 matt }
152 1.1 matt
153 1.1 matt /* Should switch to kdb`s own stack here. */
154 1.1 matt
155 1.1 matt ddb_regs = *regs;
156 1.1 matt
157 1.1 matt s = splhigh();
158 1.1 matt db_active++;
159 1.1 matt cnpollc(TRUE);
160 1.1 matt db_trap(type, 0/*code*/);
161 1.1 matt cnpollc(FALSE);
162 1.1 matt db_active--;
163 1.1 matt splx(s);
164 1.1 matt
165 1.1 matt *regs = ddb_regs;
166 1.1 matt
167 1.1 matt return (1);
168 1.1 matt }
169 1.1 matt
170 1.1 matt
171 1.1 matt static int
172 1.1 matt db_validate_address(addr)
173 1.1 matt vm_offset_t addr;
174 1.1 matt {
175 1.1 matt pt_entry_t *ptep;
176 1.1 matt pd_entry_t *pdep;
177 1.1 matt struct proc *p = curproc;
178 1.1 matt
179 1.1 matt /*
180 1.1 matt * If we have a valid pmap for curproc, use it's page directory
181 1.1 matt * otherwise use the kernel pmap's page directory.
182 1.1 matt */
183 1.1 matt if (!p || !p->p_vmspace || !p->p_vmspace->vm_map.pmap)
184 1.7 chris pdep = pmap_kernel()->pm_pdir;
185 1.1 matt else
186 1.1 matt pdep = p->p_vmspace->vm_map.pmap->pm_pdir;
187 1.1 matt
188 1.1 matt /* Make sure the address we are reading is valid */
189 1.1 matt switch ((pdep[(addr >> 20) + 0] & L1_MASK)) {
190 1.1 matt case L1_SECTION:
191 1.1 matt break;
192 1.1 matt case L1_PAGE:
193 1.1 matt /* Check the L2 page table for validity */
194 1.1 matt ptep = vtopte(addr);
195 1.1 matt if ((*ptep & L2_MASK) != L2_INVAL)
196 1.1 matt break;
197 1.1 matt /* FALLTHROUGH */
198 1.1 matt default:
199 1.1 matt return 1;
200 1.1 matt }
201 1.1 matt
202 1.1 matt return 0;
203 1.1 matt }
204 1.1 matt
205 1.1 matt /*
206 1.1 matt * Read bytes from kernel address space for debugger.
207 1.1 matt */
208 1.1 matt void
209 1.1 matt db_read_bytes(addr, size, data)
210 1.1 matt vm_offset_t addr;
211 1.13 chris size_t size;
212 1.1 matt char *data;
213 1.1 matt {
214 1.1 matt char *src;
215 1.1 matt
216 1.1 matt src = (char *)addr;
217 1.1 matt while (--size >= 0) {
218 1.1 matt if (db_validate_address((u_int)src)) {
219 1.1 matt db_printf("address %p is invalid\n", src);
220 1.1 matt return;
221 1.1 matt }
222 1.1 matt *data++ = *src++;
223 1.1 matt }
224 1.1 matt }
225 1.1 matt
226 1.1 matt static void
227 1.1 matt db_write_text(dst, ch)
228 1.1 matt unsigned char *dst;
229 1.1 matt int ch;
230 1.1 matt {
231 1.1 matt pt_entry_t *ptep, pteo;
232 1.1 matt vm_offset_t va;
233 1.1 matt
234 1.1 matt va = (unsigned long)dst & (~PGOFSET);
235 1.1 matt ptep = vtopte(va);
236 1.1 matt
237 1.1 matt if (db_validate_address((u_int)dst)) {
238 1.1 matt db_printf(" address %p not a valid page\n", dst);
239 1.1 matt return;
240 1.1 matt }
241 1.1 matt
242 1.1 matt pteo = *ptep;
243 1.1 matt *ptep = pteo | PT_AP(AP_KRW);
244 1.1 matt cpu_tlb_flushD_SE(va);
245 1.1 matt
246 1.1 matt *dst = (unsigned char)ch;
247 1.1 matt
248 1.1 matt /* make sure the caches and memory are in sync */
249 1.1 matt cpu_cache_syncI_rng((u_int)dst, 4);
250 1.1 matt
251 1.1 matt *ptep = pteo;
252 1.1 matt cpu_tlb_flushD_SE(va);
253 1.1 matt }
254 1.1 matt
255 1.1 matt /*
256 1.1 matt * Write bytes to kernel address space for debugger.
257 1.1 matt */
258 1.1 matt void
259 1.1 matt db_write_bytes(addr, size, data)
260 1.1 matt vm_offset_t addr;
261 1.13 chris size_t size;
262 1.1 matt char *data;
263 1.1 matt {
264 1.1 matt extern char etext[];
265 1.1 matt char *dst;
266 1.1 matt int loop;
267 1.1 matt
268 1.1 matt dst = (char *)addr;
269 1.1 matt loop = size;
270 1.1 matt while (--loop >= 0) {
271 1.1 matt if ((dst >= (char *)KERNEL_TEXT_BASE) && (dst < etext))
272 1.1 matt db_write_text(dst, *data);
273 1.1 matt else {
274 1.1 matt if (db_validate_address((u_int)dst)) {
275 1.1 matt db_printf("address %p is invalid\n", dst);
276 1.1 matt return;
277 1.1 matt }
278 1.1 matt *dst = *data;
279 1.1 matt }
280 1.1 matt dst++, data++;
281 1.1 matt }
282 1.1 matt /* make sure the caches and memory are in sync */
283 1.1 matt cpu_cache_syncI_rng(addr, size);
284 1.1 matt
285 1.1 matt /* In case the current page tables have been modified ... */
286 1.1 matt cpu_tlb_flushID();
287 1.1 matt }
288 1.1 matt
289 1.1 matt void
290 1.1 matt cpu_Debugger()
291 1.1 matt {
292 1.1 matt asm(".word 0xe7ffffff");
293 1.1 matt }
294 1.1 matt
295 1.1 matt const struct db_command db_machine_command_table[] = {
296 1.1 matt { "frame", db_show_frame_cmd, 0, NULL },
297 1.1 matt { "panic", db_show_panic_cmd, 0, NULL },
298 1.2 matt #ifdef ARM32_DB_COMMANDS
299 1.2 matt ARM32_DB_COMMANDS,
300 1.2 matt #endif
301 1.1 matt { NULL, NULL, 0, NULL }
302 1.1 matt };
303 1.1 matt
304 1.1 matt int
305 1.1 matt db_trapper(addr, inst, frame, fault_code)
306 1.1 matt u_int addr;
307 1.1 matt u_int inst;
308 1.1 matt trapframe_t *frame;
309 1.1 matt int fault_code;
310 1.1 matt {
311 1.1 matt if (fault_code == 0) {
312 1.1 matt if ((inst & ~INSN_COND_MASK) == (BKPT_INST & ~INSN_COND_MASK))
313 1.1 matt kdb_trap(T_BREAKPOINT, frame);
314 1.1 matt else
315 1.1 matt kdb_trap(-1, frame);
316 1.1 matt } else
317 1.1 matt return (1);
318 1.1 matt return (0);
319 1.1 matt }
320 1.1 matt
321 1.1 matt extern u_int esym;
322 1.1 matt extern u_int end;
323 1.1 matt
324 1.3 bjh21 static struct undefined_handler db_uh;
325 1.3 bjh21
326 1.1 matt void
327 1.1 matt db_machine_init()
328 1.1 matt {
329 1.5 bjh21 #ifndef __ELF__
330 1.1 matt struct exec *kernexec = (struct exec *)KERNEL_TEXT_BASE;
331 1.1 matt int len;
332 1.1 matt
333 1.1 matt /*
334 1.1 matt * The boot loader currently loads the kernel with the a.out
335 1.1 matt * header still attached.
336 1.1 matt */
337 1.1 matt
338 1.1 matt if (kernexec->a_syms == 0) {
339 1.8 thorpej printf("ddb: No symbol table\n");
340 1.1 matt } else {
341 1.2 matt /* cover the symbols themselves (what is the int for?? XXX) */
342 1.1 matt esym = (int)&end + kernexec->a_syms + sizeof(int);
343 1.2 matt
344 1.1 matt /*
345 1.1 matt * and the string table. (int containing size of string
346 1.1 matt * table is included in string table size).
347 1.1 matt */
348 1.1 matt len = *((u_int *)esym);
349 1.1 matt esym += (len + (sizeof(u_int) - 1)) & ~(sizeof(u_int) - 1);
350 1.1 matt }
351 1.5 bjh21 #endif
352 1.1 matt
353 1.3 bjh21 /*
354 1.3 bjh21 * We get called before malloc() is available, so supply a static
355 1.3 bjh21 * struct undefined_handler.
356 1.3 bjh21 */
357 1.3 bjh21 db_uh.uh_handler = db_trapper;
358 1.3 bjh21 install_coproc_handler_static(0, &db_uh);
359 1.1 matt }
360 1.1 matt
361 1.1 matt u_int
362 1.1 matt db_fetch_reg(reg, db_regs)
363 1.1 matt int reg;
364 1.1 matt db_regs_t *db_regs;
365 1.1 matt {
366 1.1 matt
367 1.1 matt switch (reg) {
368 1.1 matt case 0:
369 1.1 matt return (db_regs->tf_r0);
370 1.1 matt case 1:
371 1.1 matt return (db_regs->tf_r1);
372 1.1 matt case 2:
373 1.1 matt return (db_regs->tf_r2);
374 1.1 matt case 3:
375 1.1 matt return (db_regs->tf_r3);
376 1.1 matt case 4:
377 1.1 matt return (db_regs->tf_r4);
378 1.1 matt case 5:
379 1.1 matt return (db_regs->tf_r5);
380 1.1 matt case 6:
381 1.1 matt return (db_regs->tf_r6);
382 1.1 matt case 7:
383 1.1 matt return (db_regs->tf_r7);
384 1.1 matt case 8:
385 1.1 matt return (db_regs->tf_r8);
386 1.1 matt case 9:
387 1.1 matt return (db_regs->tf_r9);
388 1.1 matt case 10:
389 1.1 matt return (db_regs->tf_r10);
390 1.1 matt case 11:
391 1.1 matt return (db_regs->tf_r11);
392 1.1 matt case 12:
393 1.1 matt return (db_regs->tf_r12);
394 1.1 matt case 13:
395 1.1 matt return (db_regs->tf_svc_sp);
396 1.1 matt case 14:
397 1.1 matt return (db_regs->tf_svc_lr);
398 1.1 matt case 15:
399 1.1 matt return (db_regs->tf_pc);
400 1.1 matt default:
401 1.1 matt panic("db_fetch_reg: botch");
402 1.1 matt }
403 1.1 matt }
404 1.1 matt
405 1.1 matt u_int
406 1.1 matt branch_taken(insn, pc, db_regs)
407 1.1 matt u_int insn;
408 1.1 matt u_int pc;
409 1.1 matt db_regs_t *db_regs;
410 1.1 matt {
411 1.1 matt u_int addr, nregs;
412 1.1 matt
413 1.1 matt switch ((insn >> 24) & 0xf) {
414 1.1 matt case 0xa: /* b ... */
415 1.1 matt case 0xb: /* bl ... */
416 1.1 matt addr = ((insn << 2) & 0x03ffffff);
417 1.1 matt if (addr & 0x02000000)
418 1.1 matt addr |= 0xfc000000;
419 1.1 matt return (pc + 8 + addr);
420 1.1 matt case 0x7: /* ldr pc, [pc, reg, lsl #2] */
421 1.1 matt addr = db_fetch_reg(insn & 0xf, db_regs);
422 1.1 matt addr = pc + 8 + (addr << 2);
423 1.1 matt db_read_bytes(addr, 4, (char *)&addr);
424 1.1 matt return (addr);
425 1.1 matt case 0x1: /* mov pc, reg */
426 1.1 matt addr = db_fetch_reg(insn & 0xf, db_regs);
427 1.1 matt return (addr);
428 1.1 matt case 0x8: /* ldmxx reg, {..., pc} */
429 1.1 matt case 0x9:
430 1.1 matt addr = db_fetch_reg((insn >> 16) & 0xf, db_regs);
431 1.1 matt nregs = (insn & 0x5555) + ((insn >> 1) & 0x5555);
432 1.1 matt nregs = (nregs & 0x3333) + ((nregs >> 2) & 0x3333);
433 1.1 matt nregs = (nregs + (nregs >> 4)) & 0x0f0f;
434 1.1 matt nregs = (nregs + (nregs >> 8)) & 0x001f;
435 1.1 matt switch ((insn >> 23) & 0x3) {
436 1.1 matt case 0x0: /* ldmda */
437 1.1 matt addr = addr - 0;
438 1.1 matt break;
439 1.1 matt case 0x1: /* ldmia */
440 1.1 matt addr = addr + 0 + ((nregs - 1) << 2);
441 1.1 matt break;
442 1.1 matt case 0x2: /* ldmdb */
443 1.1 matt addr = addr - 4;
444 1.1 matt break;
445 1.1 matt case 0x3: /* ldmib */
446 1.1 matt addr = addr + 4 + ((nregs - 1) << 2);
447 1.1 matt break;
448 1.1 matt }
449 1.1 matt db_read_bytes(addr, 4, (char *)&addr);
450 1.1 matt return (addr);
451 1.1 matt default:
452 1.1 matt panic("branch_taken: botch");
453 1.1 matt }
454 1.1 matt }
455