rizin/libr/debug/debug.c
pancake 91ad40d663 * Major unfinished refactoring for r_debug and r_bp
- radare2 debugger is now broken
  - r_reg has grown a bit more
  - Better separation of debugger elements
* r_bp now has r_bp_add_hw and r_bp_add_sw() calls
  - Added minimal support for breakpoint handlers
  - Import th0rpe's watchpoint expression parser engine
* iob moved from r_debug to r_bp
* Arch types has been moved into r_asm
  - Soft compile time dependency
* Update pkg-config .pc files
2009-09-14 00:37:28 +02:00

187 lines
3.9 KiB
C

/* radare - LGPL - Copyright 2009 pancake<nopcode.org> */
#include <r_debug.h>
R_API int r_debug_init(struct r_debug_t *dbg)
{
dbg->pid = -1;
dbg->tid = -1;
dbg->swstep = 0; // software step
dbg->newstate = 0;
dbg->regs = dbg->oregs = NULL;
dbg->printf = printf;
dbg->h = NULL;
dbg->bp = r_bp_new();
r_debug_handle_init(dbg);
dbg->bp->iob.init = R_FALSE;
return R_TRUE;
}
R_API struct r_debug_t *r_debug_new()
{
struct r_debug_t *dbg = MALLOC_STRUCT(struct r_debug_t);
if (dbg != NULL)
r_debug_init(dbg);
return dbg;
}
R_API struct r_debug_t *r_debug_free(struct r_debug_t *dbg)
{
// TODO: free it correctly
//r_bp_free(&dbg->bp);
free(dbg);
return NULL;
}
R_API int r_debug_attach(struct r_debug_t *dbg, int pid)
{
int ret = R_FALSE;
if (dbg->h && dbg->h->attach) {
ret = dbg->h->attach(pid);
if (ret) {
// TODO: get arch and set io pid
//int arch = dbg->h->get_arch();
//r_reg_set(dbg->reg->nregs, arch); //R_DBG_ARCH_X86);
// dbg->bp->iob->system("pid %d", pid);
dbg->pid = pid;
dbg->tid = pid;
} else fprintf(stderr, "Cannot attach to this pid\n");
} else fprintf(stderr, "dbg->attach = NULL\n");
return ret;
}
R_API int r_debug_startv(struct r_debug_t *dbg, int argc, char **argv)
{
return R_FALSE;
}
R_API int r_debug_start(struct r_debug_t *dbg, const char *cmd)
{
// TODO: parse cmd and generate argc and argv
return R_FALSE;
}
R_API int r_debug_detach(struct r_debug_t *dbg, int pid)
{
if (dbg->h && dbg->h->detach)
return dbg->h->detach(pid);
return R_FALSE;
}
R_API int r_debug_select(struct r_debug_t *dbg, int pid, int tid)
{
dbg->pid = pid;
dbg->tid = tid;
eprintf("PID: %d %d\n", pid, tid);
return R_TRUE;
}
/*--*/
R_API int r_debug_stop_reason(struct r_debug_t *dbg)
{
// TODO: return reason to stop debugging
// - new process
// - trap instruction
// - illegal instruction
// - fpu exception
// ...
return R_TRUE;
}
R_API int r_debug_wait(struct r_debug_t *dbg)
{
int ret = R_FALSE;
if (dbg->h->wait) {
ret = dbg->h->wait(dbg->pid);
dbg->newstate = 1;
}
return ret;
}
// TODO: count number of steps done to check if no error??
R_API int r_debug_step(struct r_debug_t *dbg, int steps)
{
int i, ret = R_FALSE;
if (dbg->h && dbg->h->step) {
for(i=0;i<steps;i++) {
ret = dbg->h->step(dbg->pid);
if (ret == R_FALSE)
break;
r_debug_wait(dbg);
// TODO: create wrapper for dbg_wait
// TODO: check return value of wait and show error
dbg->steps++;
}
}
return ret;
}
R_API int r_debug_step_over(struct r_debug_t *dbg, int steps)
{
// TODO: analyze opcode if it is stepoverable
fprintf(stderr, "TODO\n");
return r_debug_step(dbg, steps);
}
R_API int r_debug_continue(struct r_debug_t *dbg)
{
int ret = R_FALSE;
if (dbg->h){
if (dbg->h->cont) {
ret = dbg->h->cont(dbg->pid);
if (dbg->h->wait)
ret = dbg->h->wait(dbg->pid);
}
}
return ret;
}
R_API int r_debug_continue_until(struct r_debug_t *dbg, ut64 addr)
{
//struct r_debug_bp_t *bp = r_debug_bp_add (dbg, addr);
//int ret = r_debug_continue(dbg);
/* TODO: check if the debugger stops at the right address */
//r_debug_bp_del(dbg, bp);
return -1;
}
R_API int r_debug_continue_syscall(struct r_debug_t *dbg, int sc)
{
int ret = R_FALSE;
if (dbg->h && dbg->h->contsc)
ret = dbg->h->contsc(dbg->pid, sc);
return ret;
}
// TODO: remove from here?
R_API int r_debug_syscall(struct r_debug_t *dbg, int num)
{
fprintf(stderr, "TODO\n");
return R_FALSE;
}
// TODO: Move to pid.c ?
// TODO: do we need tid/pid
// TODO: Do we need an intermediate signal representation for portability?
// TODO: STOP, CONTINUE, KILL, ...
R_API int r_debug_kill(struct r_debug_t *dbg, int pid, int sig)
{
// XXX: use debugger handler backend here
#include <signal.h>
int ret = kill(pid, sig);
if (ret == -1)
return R_FALSE;
return R_TRUE;
}
// TODO move to mem.c
/* mmu */
R_API int r_debug_mmu_alloc(struct r_debug_t *dbg, ut64 size, ut64 *addr)
{
return R_TRUE;
}
R_API int r_debug_mmu_free(struct r_debug_t *dbg, ut64 addr)
{
return R_TRUE;
}