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1
/*
1
/*
2
 * Copyright (C) 2006 Ondrej Palkovsky
2
 * Copyright (C) 2006 Ondrej Palkovsky
3
 * All rights reserved.
3
 * All rights reserved.
4
 *
4
 *
5
 * Redistribution and use in source and binary forms, with or without
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
6
 * modification, are permitted provided that the following conditions
7
 * are met:
7
 * are met:
8
 *
8
 *
9
 * - Redistributions of source code must retain the above copyright
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
15
 *   derived from this software without specific prior written permission.
16
 *
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
27
 */
28
 
28
 
29
#include <arch/debugger.h>
29
#include <arch/debugger.h>
30
#include <console/kconsole.h>
30
#include <console/kconsole.h>
31
#include <console/cmd.h>
31
#include <console/cmd.h>
32
#include <symtab.h>
32
#include <symtab.h>
33
#include <print.h>
33
#include <print.h>
34
#include <panic.h>
34
#include <panic.h>
35
#include <interrupt.h>
35
#include <interrupt.h>
36
#include <arch/asm.h>
36
#include <arch/asm.h>
37
#include <arch/cpu.h>
37
#include <arch/cpu.h>
38
#include <debug.h>
38
#include <debug.h>
39
#include <func.h>
39
#include <func.h>
40
#include <smp/ipi.h>
40
#include <smp/ipi.h>
41
 
41
 
42
typedef struct  {
42
typedef struct  {
43
    __address address;      /**< Breakpoint address */
43
    __address address;      /**< Breakpoint address */
44
    int flags;              /**< Flags regarding breakpoint */
44
    int flags;              /**< Flags regarding breakpoint */
45
    int counter;            /**< How many times the exception occured */
45
    int counter;            /**< How many times the exception occured */
46
} bpinfo_t;
46
} bpinfo_t;
47
 
47
 
48
static bpinfo_t breakpoints[BKPOINTS_MAX];
48
static bpinfo_t breakpoints[BKPOINTS_MAX];
49
SPINLOCK_INITIALIZE(bkpoint_lock);
49
SPINLOCK_INITIALIZE(bkpoint_lock);
50
 
50
 
51
static int cmd_print_breakpoints(cmd_arg_t *argv);
51
static int cmd_print_breakpoints(cmd_arg_t *argv);
52
static cmd_info_t bkpts_info = {
52
static cmd_info_t bkpts_info = {
53
    .name = "bkpts",
53
    .name = "bkpts",
54
    .description = "Print breakpoint table.",
54
    .description = "Print breakpoint table.",
55
    .func = cmd_print_breakpoints,
55
    .func = cmd_print_breakpoints,
56
    .argc = 0,
56
    .argc = 0,
57
};
57
};
58
 
58
 
59
#ifndef CONFIG_DEBUG_AS_WATCHPOINT
59
#ifndef CONFIG_DEBUG_AS_WATCHPOINT
60
 
60
 
61
static int cmd_del_breakpoint(cmd_arg_t *argv);
61
static int cmd_del_breakpoint(cmd_arg_t *argv);
62
static cmd_arg_t del_argv = {
62
static cmd_arg_t del_argv = {
63
    .type = ARG_TYPE_INT
63
    .type = ARG_TYPE_INT
64
};
64
};
65
static cmd_info_t delbkpt_info = {
65
static cmd_info_t delbkpt_info = {
66
    .name = "delbkpt",
66
    .name = "delbkpt",
67
    .description = "delbkpt <number> - Delete breakpoint.",
67
    .description = "delbkpt <number> - Delete breakpoint.",
68
    .func = cmd_del_breakpoint,
68
    .func = cmd_del_breakpoint,
69
    .argc = 1,
69
    .argc = 1,
70
    .argv = &del_argv
70
    .argv = &del_argv
71
};
71
};
72
 
72
 
73
static int cmd_add_breakpoint(cmd_arg_t *argv);
73
static int cmd_add_breakpoint(cmd_arg_t *argv);
74
static cmd_arg_t add_argv = {
74
static cmd_arg_t add_argv = {
75
    .type = ARG_TYPE_INT
75
    .type = ARG_TYPE_INT
76
};
76
};
77
static cmd_info_t addbkpt_info = {
77
static cmd_info_t addbkpt_info = {
78
    .name = "addbkpt",
78
    .name = "addbkpt",
79
    .description = "addbkpt <&symbol> - new breakpoint.",
79
    .description = "addbkpt <&symbol> - new breakpoint.",
80
    .func = cmd_add_breakpoint,
80
    .func = cmd_add_breakpoint,
81
    .argc = 1,
81
    .argc = 1,
82
    .argv = &add_argv
82
    .argv = &add_argv
83
};
83
};
84
 
84
 
85
static cmd_arg_t addw_argv = {
85
static cmd_arg_t addw_argv = {
86
    .type = ARG_TYPE_INT
86
    .type = ARG_TYPE_INT
87
};
87
};
88
static cmd_info_t addwatchp_info = {
88
static cmd_info_t addwatchp_info = {
89
    .name = "addwatchp",
89
    .name = "addwatchp",
90
    .description = "addbwatchp <&symbol> - new write watchpoint.",
90
    .description = "addbwatchp <&symbol> - new write watchpoint.",
91
    .func = cmd_add_breakpoint,
91
    .func = cmd_add_breakpoint,
92
    .argc = 1,
92
    .argc = 1,
93
    .argv = &addw_argv
93
    .argv = &addw_argv
94
};
94
};
95
 
95
 
96
#endif
96
#endif
97
 
97
 
98
/** Print table of active breakpoints */
98
/** Print table of active breakpoints */
99
int cmd_print_breakpoints(cmd_arg_t *argv)
99
int cmd_print_breakpoints(cmd_arg_t *argv)
100
{
100
{
101
    int i;
101
    int i;
102
    char *symbol;
102
    char *symbol;
103
 
103
 
104
    printf("Breakpoint table.\n");
104
    printf("Breakpoint table.\n");
105
    for (i=0; i < BKPOINTS_MAX; i++)
105
    for (i=0; i < BKPOINTS_MAX; i++)
106
        if (breakpoints[i].address) {
106
        if (breakpoints[i].address) {
107
            symbol = get_symtab_entry(breakpoints[i].address);
107
            symbol = get_symtab_entry(breakpoints[i].address);
108
            printf("%d. %p in %s\n",i,
108
            printf("%d. %p in %s\n",i,
109
                   breakpoints[i].address, symbol);
109
                   breakpoints[i].address, symbol);
110
            printf("     Count(%d) ", breakpoints[i].counter);
110
            printf("     Count(%d) ", breakpoints[i].counter);
111
            printf("\n");
111
            printf("\n");
112
        }
112
        }
113
    return 1;
113
    return 1;
114
}
114
}
115
 
115
 
116
/* Setup DR register according to table */
116
/* Setup DR register according to table */
117
static void setup_dr(int curidx)
117
static void setup_dr(int curidx)
118
{
118
{
119
    __native dr7;
119
    __native dr7;
120
    bpinfo_t *cur = &breakpoints[curidx];
120
    bpinfo_t *cur = &breakpoints[curidx];
121
    int flags = breakpoints[curidx].flags;
121
    int flags = breakpoints[curidx].flags;
122
 
122
 
123
    /* Disable breakpoint in DR7 */
123
    /* Disable breakpoint in DR7 */
124
    dr7 = read_dr7();
124
    dr7 = read_dr7();
125
    dr7 &= ~(0x2 << (curidx*2));
125
    dr7 &= ~(0x2 << (curidx*2));
126
 
126
 
127
    if (cur->address) { /* Setup DR register */
127
    if (cur->address) { /* Setup DR register */
128
        /* Set breakpoint to debug registers */
128
        /* Set breakpoint to debug registers */
129
        switch (curidx) {
129
        switch (curidx) {
130
        case 0:
130
        case 0:
131
            write_dr0(cur->address);
131
            write_dr0(cur->address);
132
            break;
132
            break;
133
        case 1:
133
        case 1:
134
            write_dr1(cur->address);
134
            write_dr1(cur->address);
135
            break;
135
            break;
136
        case 2:
136
        case 2:
137
            write_dr2(cur->address);
137
            write_dr2(cur->address);
138
            break;
138
            break;
139
        case 3:
139
        case 3:
140
            write_dr3(cur->address);
140
            write_dr3(cur->address);
141
            break;
141
            break;
142
        }
142
        }
143
        /* Set type to requested breakpoint & length*/
143
        /* Set type to requested breakpoint & length*/
144
        dr7 &= ~ (0x3 << (16 + 4*curidx));
144
        dr7 &= ~ (0x3 << (16 + 4*curidx));
145
        dr7 &= ~ (0x3 << (18 + 4*curidx));
145
        dr7 &= ~ (0x3 << (18 + 4*curidx));
146
        if ((flags & BKPOINT_INSTR)) {
146
        if ((flags & BKPOINT_INSTR)) {
147
            ;
147
            ;
148
        } else {
148
        } else {
149
            if (sizeof(int) == 4)
149
            if (sizeof(int) == 4)
150
                dr7 |= ((__native) 0x3) << (18 + 4*curidx);
150
                dr7 |= ((__native) 0x3) << (18 + 4*curidx);
151
            else /* 8 */
151
            else /* 8 */
152
                dr7 |= ((__native) 0x2) << (18 + 4*curidx);
152
                dr7 |= ((__native) 0x2) << (18 + 4*curidx);
153
           
153
           
154
            if ((flags & BKPOINT_WRITE))
154
            if ((flags & BKPOINT_WRITE))
155
                dr7 |= ((__native) 0x1) << (16 + 4*curidx);
155
                dr7 |= ((__native) 0x1) << (16 + 4*curidx);
156
            else if ((flags & BKPOINT_READ_WRITE))
156
            else if ((flags & BKPOINT_READ_WRITE))
157
                dr7 |= ((__native) 0x3) << (16 + 4*curidx);
157
                dr7 |= ((__native) 0x3) << (16 + 4*curidx);
158
        }
158
        }
159
 
159
 
160
        /* Enable global breakpoint */
160
        /* Enable global breakpoint */
161
        dr7 |= 0x2 << (curidx*2);
161
        dr7 |= 0x2 << (curidx*2);
162
 
162
 
163
        write_dr7(dr7);
163
        write_dr7(dr7);
164
       
164
       
165
    }
165
    }
166
}
166
}
167
   
167
   
168
/** Enable hardware breakpoint
168
/** Enable hardware breakpoint
169
 *
169
 *
170
 *
170
 *
171
 * @param where Address of HW breakpoint
171
 * @param where Address of HW breakpoint
172
 * @param flags Type of breakpoint (EXECUTE, WRITE)
172
 * @param flags Type of breakpoint (EXECUTE, WRITE)
173
 * @return Debug slot on success, -1 - no available HW breakpoint
173
 * @return Debug slot on success, -1 - no available HW breakpoint
174
 */
174
 */
175
int breakpoint_add(void * where, int flags, int curidx)
175
int breakpoint_add(void * where, int flags, int curidx)
176
{
176
{
177
    ipl_t ipl;
177
    ipl_t ipl;
178
    int i;
178
    int i;
179
    bpinfo_t *cur;
179
    bpinfo_t *cur;
180
 
180
 
181
    ASSERT( flags & (BKPOINT_INSTR | BKPOINT_WRITE | BKPOINT_READ_WRITE));
181
    ASSERT( flags & (BKPOINT_INSTR | BKPOINT_WRITE | BKPOINT_READ_WRITE));
182
 
182
 
183
    ipl = interrupts_disable();
183
    ipl = interrupts_disable();
184
    spinlock_lock(&bkpoint_lock);
184
    spinlock_lock(&bkpoint_lock);
185
   
185
   
186
    if (curidx == -1) {
186
    if (curidx == -1) {
187
        /* Find free space in slots */
187
        /* Find free space in slots */
188
        for (i=0; i<BKPOINTS_MAX; i++)
188
        for (i=0; i<BKPOINTS_MAX; i++)
189
            if (!breakpoints[i].address) {
189
            if (!breakpoints[i].address) {
190
                curidx = i;
190
                curidx = i;
191
                break;
191
                break;
192
            }
192
            }
193
        if (curidx == -1) {
193
        if (curidx == -1) {
194
            /* Too many breakpoints */
194
            /* Too many breakpoints */
195
            spinlock_unlock(&bkpoint_lock);
195
            spinlock_unlock(&bkpoint_lock);
196
            interrupts_restore(ipl);
196
            interrupts_restore(ipl);
197
            return -1;
197
            return -1;
198
        }
198
        }
199
    }
199
    }
200
    cur = &breakpoints[curidx];
200
    cur = &breakpoints[curidx];
201
 
201
 
202
    cur->address = (__address) where;
202
    cur->address = (__address) where;
203
    cur->flags = flags;
203
    cur->flags = flags;
204
    cur->counter = 0;
204
    cur->counter = 0;
205
 
205
 
206
    setup_dr(curidx);
206
    setup_dr(curidx);
207
 
207
 
208
    spinlock_unlock(&bkpoint_lock);
208
    spinlock_unlock(&bkpoint_lock);
209
    interrupts_restore(ipl);
209
    interrupts_restore(ipl);
210
 
210
 
211
    /* Send IPI */
211
    /* Send IPI */
212
#ifdef CONFIG_SMP
212
#ifdef CONFIG_SMP
213
//  ipi_broadcast(VECTOR_DEBUG_IPI);    
213
//  ipi_broadcast(VECTOR_DEBUG_IPI);    
214
#endif  
214
#endif  
215
 
215
 
216
    return curidx;
216
    return curidx;
217
}
217
}
218
 
218
 
219
#ifdef amd64
219
#ifdef amd64
220
# define getip(x)  ((x)->rip)
220
# define getip(x)  ((x)->rip)
221
#else
221
#else
222
# define getip(x)  ((x)->eip)
222
# define getip(x)  ((x)->eip)
223
#endif
223
#endif
224
 
224
 
225
static void handle_exception(int slot, istate_t *istate)
225
static void handle_exception(int slot, istate_t *istate)
226
{
226
{
227
    ASSERT(breakpoints[slot].address);
227
    ASSERT(breakpoints[slot].address);
228
 
228
 
229
    /* Handle zero checker */
229
    /* Handle zero checker */
230
    if (! (breakpoints[slot].flags & BKPOINT_INSTR)) {
230
    if (! (breakpoints[slot].flags & BKPOINT_INSTR)) {
231
        if ((breakpoints[slot].flags & BKPOINT_CHECK_ZERO)) {
231
        if ((breakpoints[slot].flags & BKPOINT_CHECK_ZERO)) {
232
            if (*((__native *) breakpoints[slot].address) != 0)
232
            if (*((__native *) breakpoints[slot].address) != 0)
233
                return;
233
                return;
234
            printf("**** Found ZERO on address %P ****\n",
234
            printf("**** Found ZERO on address %p ****\n",
235
                   slot, breakpoints[slot].address);
235
                   slot, breakpoints[slot].address);
236
        } else {
236
        } else {
237
            printf("Data watchpoint - new data: %P\n",
237
            printf("Data watchpoint - new data: %p\n",
238
                   *((__native *) breakpoints[slot].address));
238
                   *((__native *) breakpoints[slot].address));
239
        }
239
        }
240
    }
240
    }
241
    printf("Reached breakpoint %d:%P(%s)\n", slot, getip(istate),
241
    printf("Reached breakpoint %d:%p(%s)\n", slot, getip(istate),
242
           get_symtab_entry(getip(istate)));
242
           get_symtab_entry(getip(istate)));
243
    printf("***Type 'exit' to exit kconsole.\n");
243
    printf("***Type 'exit' to exit kconsole.\n");
244
    atomic_set(&haltstate,1);
244
    atomic_set(&haltstate,1);
245
    kconsole("debug");
245
    kconsole("debug");
246
    atomic_set(&haltstate,0);
246
    atomic_set(&haltstate,0);
247
}
247
}
248
 
248
 
249
void breakpoint_del(int slot)
249
void breakpoint_del(int slot)
250
{
250
{
251
    bpinfo_t *cur;
251
    bpinfo_t *cur;
252
    ipl_t ipl;
252
    ipl_t ipl;
253
 
253
 
254
    ipl = interrupts_disable();
254
    ipl = interrupts_disable();
255
    spinlock_lock(&bkpoint_lock);
255
    spinlock_lock(&bkpoint_lock);
256
 
256
 
257
    cur = &breakpoints[slot];
257
    cur = &breakpoints[slot];
258
    if (!cur->address) {
258
    if (!cur->address) {
259
        spinlock_unlock(&bkpoint_lock);
259
        spinlock_unlock(&bkpoint_lock);
260
        interrupts_restore(ipl);
260
        interrupts_restore(ipl);
261
        return;
261
        return;
262
    }
262
    }
263
 
263
 
264
    cur->address = NULL;
264
    cur->address = NULL;
265
 
265
 
266
    setup_dr(slot);
266
    setup_dr(slot);
267
 
267
 
268
    spinlock_unlock(&bkpoint_lock);
268
    spinlock_unlock(&bkpoint_lock);
269
    interrupts_restore(ipl);
269
    interrupts_restore(ipl);
270
#ifdef CONFIG_SMP
270
#ifdef CONFIG_SMP
271
//  ipi_broadcast(VECTOR_DEBUG_IPI);    
271
//  ipi_broadcast(VECTOR_DEBUG_IPI);    
272
#endif
272
#endif
273
}
273
}
274
 
274
 
275
#ifndef CONFIG_DEBUG_AS_WATCHPOINT
275
#ifndef CONFIG_DEBUG_AS_WATCHPOINT
276
 
276
 
277
/** Remove breakpoint from table */
277
/** Remove breakpoint from table */
278
int cmd_del_breakpoint(cmd_arg_t *argv)
278
int cmd_del_breakpoint(cmd_arg_t *argv)
279
{
279
{
280
    if (argv->intval < 0 || argv->intval > BKPOINTS_MAX) {
280
    if (argv->intval < 0 || argv->intval > BKPOINTS_MAX) {
281
        printf("Invalid breakpoint number.\n");
281
        printf("Invalid breakpoint number.\n");
282
        return 0;
282
        return 0;
283
    }
283
    }
284
    breakpoint_del(argv->intval);
284
    breakpoint_del(argv->intval);
285
    return 1;
285
    return 1;
286
}
286
}
287
 
287
 
288
/** Add new breakpoint to table */
288
/** Add new breakpoint to table */
289
static int cmd_add_breakpoint(cmd_arg_t *argv)
289
static int cmd_add_breakpoint(cmd_arg_t *argv)
290
{
290
{
291
    int flags;
291
    int flags;
292
    int id;
292
    int id;
293
 
293
 
294
    if (argv == &add_argv) {
294
    if (argv == &add_argv) {
295
        flags = BKPOINT_INSTR;
295
        flags = BKPOINT_INSTR;
296
    } else { /* addwatchp */
296
    } else { /* addwatchp */
297
        flags = BKPOINT_WRITE;
297
        flags = BKPOINT_WRITE;
298
    }
298
    }
299
    printf("Adding breakpoint on address: %p\n", argv->intval);
299
    printf("Adding breakpoint on address: %p\n", argv->intval);
300
    id = breakpoint_add((void *)argv->intval, flags, -1);
300
    id = breakpoint_add((void *)argv->intval, flags, -1);
301
    if (id < 0)
301
    if (id < 0)
302
        printf("Add breakpoint failed.\n");
302
        printf("Add breakpoint failed.\n");
303
    else
303
    else
304
        printf("Added breakpoint %d.\n", id);
304
        printf("Added breakpoint %d.\n", id);
305
   
305
   
306
    return 1;
306
    return 1;
307
}
307
}
308
#endif
308
#endif
309
 
309
 
310
static void debug_exception(int n, istate_t *istate)
310
static void debug_exception(int n, istate_t *istate)
311
{
311
{
312
    __native dr6;
312
    __native dr6;
313
    int i;
313
    int i;
314
   
314
   
315
    /* Set RF to restart the instruction  */
315
    /* Set RF to restart the instruction  */
316
#ifdef amd64       
316
#ifdef amd64       
317
    istate->rflags |= RFLAGS_RF;
317
    istate->rflags |= RFLAGS_RF;
318
#else
318
#else
319
    istate->eflags |= EFLAGS_RF;
319
    istate->eflags |= EFLAGS_RF;
320
#endif
320
#endif
321
 
321
 
322
    dr6 = read_dr6();
322
    dr6 = read_dr6();
323
    for (i=0; i < BKPOINTS_MAX; i++) {
323
    for (i=0; i < BKPOINTS_MAX; i++) {
324
        if (dr6 & (1 << i)) {
324
        if (dr6 & (1 << i)) {
325
            dr6 &= ~ (1 << i);
325
            dr6 &= ~ (1 << i);
326
            write_dr6(dr6);
326
            write_dr6(dr6);
327
           
327
           
328
            handle_exception(i, istate);
328
            handle_exception(i, istate);
329
        }
329
        }
330
    }
330
    }
331
}
331
}
332
 
332
 
333
#ifdef CONFIG_SMP
333
#ifdef CONFIG_SMP
334
static void debug_ipi(int n, istate_t *istate)
334
static void debug_ipi(int n, istate_t *istate)
335
{
335
{
336
    int i;
336
    int i;
337
 
337
 
338
    spinlock_lock(&bkpoint_lock);
338
    spinlock_lock(&bkpoint_lock);
339
    for (i=0; i < BKPOINTS_MAX; i++)
339
    for (i=0; i < BKPOINTS_MAX; i++)
340
        setup_dr(i);
340
        setup_dr(i);
341
    spinlock_unlock(&bkpoint_lock);
341
    spinlock_unlock(&bkpoint_lock);
342
}
342
}
343
#endif
343
#endif
344
 
344
 
345
/** Initialize debugger */
345
/** Initialize debugger */
346
void debugger_init()
346
void debugger_init()
347
{
347
{
348
    int i;
348
    int i;
349
 
349
 
350
    for (i=0; i<BKPOINTS_MAX; i++)
350
    for (i=0; i<BKPOINTS_MAX; i++)
351
        breakpoints[i].address = NULL;
351
        breakpoints[i].address = NULL;
352
   
352
   
353
    cmd_initialize(&bkpts_info);
353
    cmd_initialize(&bkpts_info);
354
    if (!cmd_register(&bkpts_info))
354
    if (!cmd_register(&bkpts_info))
355
        panic("could not register command %s\n", bkpts_info.name);
355
        panic("could not register command %s\n", bkpts_info.name);
356
 
356
 
357
#ifndef CONFIG_DEBUG_AS_WATCHPOINT
357
#ifndef CONFIG_DEBUG_AS_WATCHPOINT
358
    cmd_initialize(&delbkpt_info);
358
    cmd_initialize(&delbkpt_info);
359
    if (!cmd_register(&delbkpt_info))
359
    if (!cmd_register(&delbkpt_info))
360
        panic("could not register command %s\n", delbkpt_info.name);
360
        panic("could not register command %s\n", delbkpt_info.name);
361
 
361
 
362
    cmd_initialize(&addbkpt_info);
362
    cmd_initialize(&addbkpt_info);
363
    if (!cmd_register(&addbkpt_info))
363
    if (!cmd_register(&addbkpt_info))
364
        panic("could not register command %s\n", addbkpt_info.name);
364
        panic("could not register command %s\n", addbkpt_info.name);
365
 
365
 
366
    cmd_initialize(&addwatchp_info);
366
    cmd_initialize(&addwatchp_info);
367
    if (!cmd_register(&addwatchp_info))
367
    if (!cmd_register(&addwatchp_info))
368
        panic("could not register command %s\n", addwatchp_info.name);
368
        panic("could not register command %s\n", addwatchp_info.name);
369
#endif
369
#endif
370
   
370
   
371
    exc_register(VECTOR_DEBUG, "debugger",
371
    exc_register(VECTOR_DEBUG, "debugger",
372
             debug_exception);
372
             debug_exception);
373
#ifdef CONFIG_SMP
373
#ifdef CONFIG_SMP
374
    exc_register(VECTOR_DEBUG_IPI, "debugger_smp",
374
    exc_register(VECTOR_DEBUG_IPI, "debugger_smp",
375
             debug_ipi);
375
             debug_ipi);
376
#endif
376
#endif
377
}
377
}
378
 
378