db_trace.c revision 1.6 1 /* $NetBSD: db_trace.c,v 1.6 1999/01/16 03:44:42 nisimura Exp $ */
2
3 /*
4 * Mach Operating System
5 * Copyright (c) 1993-1987 Carnegie Mellon University
6 * All Rights Reserved.
7 *
8 * Permission to use, copy, modify and distribute this software and its
9 * documentation is hereby granted, provided that both the copyright
10 * notice and this permission notice appear in all copies of the
11 * software, derivative works or modified versions, and any portions
12 * thereof, and that both notices appear in supporting documentation.
13 *
14 * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
15 * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
16 * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
17 *
18 * Carnegie Mellon requests users of this software to return to
19 *
20 * Software Distribution Coordinator or Software.Distribution (at) CS.CMU.EDU
21 * School of Computer Science
22 * Carnegie Mellon University
23 * Pittsburgh PA 15213-3890
24 *
25 * any improvements or extensions that they make and grant Carnegie Mellon
26 * the rights to redistribute these changes.
27 */
28
29 #include <sys/types.h>
30 #include <vm/vm_param.h> /* XXX boolean_t */
31
32 #include <mips/mips_opcode.h>
33
34 #include <machine/param.h>
35 #include <mips/db_machdep.h>
36 #include <ddb/db_interface.h>
37 #include <ddb/db_output.h>
38 #include <ddb/db_variables.h>
39 #include <ddb/db_sym.h>
40
41 extern int __start __P((void)); /* lowest kernel code address */
42 extern vaddr_t getreg_val __P((db_expr_t regno));
43
44 #define REG_ARG(i) (4+i)
45 #define SAVES_RA(x) isa_spill((x),31)
46
47 #define KERN_SAVE_REG_IDX(vp) ( \
48 ((vp)->valuep >= (int *)(&((struct mips_saved_state *)0)->s0) && \
49 (vp)->valuep <= (int *)(&((struct mips_saved_state *)0)->s7))? \
50 vp->valuep - (int *)(&((struct mips_saved_state *)0)->s0): \
51 ((vp)->valuep >= (int *)(&((struct mips_saved_state *)0)->sp) && \
52 (vp)->valuep <= (int *)(&((struct mips_saved_state *)0)->ra))? \
53 ((vp)->valuep-(int *)(&((struct mips_saved_state *)0)->sp)) + \
54 ((int *)(&((struct mips_kernel_state *)0)->sp) - (int *)0): \
55 -1)
56
57 extern db_sym_t localsym __P((db_sym_t sym, boolean_t isreg, int *lex_level));
58
59 /*
60 * Machine register set.
61 */
62 struct mips_saved_state *db_cur_exc_frame = 0;
63
64 /*
65 * forward declarations
66 */
67 int print_exception_frame __P((register struct mips_saved_state *fp,
68 unsigned epc));
69
70 /*XXX*/
71 extern void stacktrace_subr __P((int a0, int a1, int a2, int a3,
72 u_int pc, u_int sp, u_int fp, u_int ra,
73 void (*)(const char*, ...)));
74
75 /*
76 * Stack trace helper.
77 */
78 void db_mips_stack_trace __P((int count, vaddr_t stackp,
79 vaddr_t the_pc, vaddr_t the_ra, int flags, vaddr_t kstackp));
80 int db_mips_variable_func __P((struct db_variable *vp, db_expr_t *valuep,
81 int db_var_fun));
82
83 #define DB_SETF_REGS db_mips_variable_func
84 #define DBREGS_REG()
85
86 struct db_variable db_regs[] = {
87 { "at", (long *)&ddb_regs.f_regs[AST], DB_SETF_REGS },
88 { "v0", (long *)&ddb_regs.f_regs[V0], DB_SETF_REGS },
89 { "v1", (long *)&ddb_regs.f_regs[V1], DB_SETF_REGS },
90 { "a0", (long *)&ddb_regs.f_regs[A0], DB_SETF_REGS },
91 { "a1", (long *)&ddb_regs.f_regs[A1], DB_SETF_REGS },
92 { "a2", (long *)&ddb_regs.f_regs[A2], DB_SETF_REGS },
93 { "a3", (long *)&ddb_regs.f_regs[A3], DB_SETF_REGS },
94 { "t0", (long *)&ddb_regs.f_regs[T0], DB_SETF_REGS },
95 { "t1", (long *)&ddb_regs.f_regs[T1], DB_SETF_REGS },
96 { "t2", (long *)&ddb_regs.f_regs[T2], DB_SETF_REGS },
97 { "t3", (long *)&ddb_regs.f_regs[T3], DB_SETF_REGS },
98 { "t4", (long *)&ddb_regs.f_regs[T4], DB_SETF_REGS },
99 { "t5", (long *)&ddb_regs.f_regs[T5], DB_SETF_REGS },
100 { "t6", (long *)&ddb_regs.f_regs[T6], DB_SETF_REGS },
101 { "t7", (long *)&ddb_regs.f_regs[T7], DB_SETF_REGS },
102 { "s0", (long *)&ddb_regs.f_regs[S0], DB_SETF_REGS },
103 { "s1", (long *)&ddb_regs.f_regs[S1], DB_SETF_REGS },
104 { "s2", (long *)&ddb_regs.f_regs[S2], DB_SETF_REGS },
105 { "s3", (long *)&ddb_regs.f_regs[S3], DB_SETF_REGS },
106 { "s4", (long *)&ddb_regs.f_regs[S4], DB_SETF_REGS },
107 { "s5", (long *)&ddb_regs.f_regs[S5], DB_SETF_REGS },
108 { "s6", (long *)&ddb_regs.f_regs[S6], DB_SETF_REGS },
109 { "s7", (long *)&ddb_regs.f_regs[S7], DB_SETF_REGS },
110 { "t8", (long *)&ddb_regs.f_regs[T8], DB_SETF_REGS },
111 { "t9", (long *)&ddb_regs.f_regs[T9], DB_SETF_REGS },
112 { "k0", (long *)&ddb_regs.f_regs[K0], DB_SETF_REGS },
113 { "k1", (long *)&ddb_regs.f_regs[K1], DB_SETF_REGS },
114 { "gp", (long *)&ddb_regs.f_regs[GP], DB_SETF_REGS },
115 { "sp", (long *)&ddb_regs.f_regs[SP], DB_SETF_REGS },
116 { "fp", (long *)&ddb_regs.f_regs[S8], DB_SETF_REGS }, /* frame ptr */
117 { "ra", (long *)&ddb_regs.f_regs[RA], DB_SETF_REGS },
118 { "sr", (long *)&ddb_regs.f_regs[SR], DB_SETF_REGS },
119 { "mdlo",(long *)&ddb_regs.f_regs[MULLO], DB_SETF_REGS },
120 { "mdhi",(long *)&ddb_regs.f_regs[MULHI], DB_SETF_REGS },
121 { "bad", (long *)&ddb_regs.f_regs[BADVADDR], DB_SETF_REGS },
122 { "cs", (long *)&ddb_regs.f_regs[CAUSE], DB_SETF_REGS },
123 { "pc", (long *)&ddb_regs.f_regs[PC], DB_SETF_REGS },
124 };
125 struct db_variable *db_eregs = db_regs + sizeof(db_regs)/sizeof(db_regs[0]);
126
127 void
128 db_stack_trace_cmd(addr, have_addr, count, modif)
129 db_expr_t addr;
130 boolean_t have_addr;
131 db_expr_t count;
132 char *modif;
133 {
134 #ifndef DDB_TRACE
135 stacktrace_subr(ddb_regs.f_regs[A0], ddb_regs.f_regs[A1],
136 ddb_regs.f_regs[A2], ddb_regs.f_regs[A3],
137 ddb_regs.f_regs[PC],
138 ddb_regs.f_regs[SP],
139 ddb_regs.f_regs[S8], /* non-virtual frame pointer */
140 ddb_regs.f_regs[RA],
141 db_printf);
142 #else
143 /*
144 * Imcomplete but practically useful stack backtrace.
145 */
146 #define MIPS_JR_RA 0x03e00008 /* instruction code for jr ra */
147 #define MIPS_JR_K0 0x03400008 /* instruction code for jr k0 */
148 #define MIPS_ERET 0x42000018 /* instruction code for eret */
149 unsigned va, pc, ra, sp, func;
150 int insn;
151 InstFmt i;
152 int stacksize;
153 db_addr_t offset;
154 char *name;
155 extern char verylocore[];
156
157 pc = ddb_regs.f_regs[PC];
158 sp = ddb_regs.f_regs[SP];
159 ra = ddb_regs.f_regs[RA];
160 do {
161 va = pc;
162 do {
163 va -= sizeof(int);
164 insn = *(int *)va;
165 if (insn == MIPS_ERET)
166 goto mips3_eret;
167 } while (insn != MIPS_JR_RA && insn != MIPS_JR_K0);
168 va += sizeof(int);
169 mips3_eret:
170 va += sizeof(int);
171 while (*(int *)va == 0x00000000)
172 va += sizeof(int);
173 func = va;
174 stacksize = 0;
175 do {
176 i.word = *(int *)va;
177 if (i.IType.op == OP_SW
178 && i.IType.rs == SP
179 && i.IType.rt == RA)
180 ra = *(int *)(sp + (short)i.IType.imm);
181 if (i.IType.op == OP_ADDIU
182 && i.IType.rs == SP
183 && i.IType.rt == SP)
184 stacksize = -(short)i.IType.imm;
185 va += sizeof(int);
186 } while (va < pc);
187
188 db_find_sym_and_offset(func, &name, &offset);
189 if (name == 0)
190 name = "?";
191 db_printf("%s()+0x%x, called by %p, stack size %d\n",
192 name, pc - func, (void *)ra, stacksize);
193
194 if (ra == pc) {
195 db_printf("-- loop? --\n");
196 return;
197 }
198 sp += stacksize;
199 pc = ra;
200 } while (pc > (unsigned)verylocore);
201 if (pc < 0x80000000)
202 db_printf("-- user process --\n");
203 else
204 db_printf("-- kernel entry --\n");
205 #endif
206 }
207
208 void
209 db_mips_stack_trace(count, stackp, the_pc, the_ra, flags, kstackp)
210 int count;
211 vaddr_t stackp, the_pc, the_ra;
212 int flags;
213 vaddr_t kstackp;
214 {
215 return;
216 }
217
218
219 int
220 db_mips_variable_func (struct db_variable *vp,
221 db_expr_t *valuep,
222 int db_var_fcn)
223 {
224 switch (db_var_fcn) {
225 case DB_VAR_GET:
226 *valuep = *(mips_reg_t *) vp->valuep;
227 break;
228 case DB_VAR_SET:
229 *(mips_reg_t *) vp->valuep = *valuep;
230 break;
231 }
232 return 0;
233 }
234