mirror of
https://github.com/radareorg/radare2.git
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211688f537
- Add scr.echo
271 lines
6.6 KiB
C
271 lines
6.6 KiB
C
/* radare2 - LGPL - Copyright 2009-2014 - pancake */
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#include <r_bp.h>
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#include "../config.h"
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R_LIB_VERSION (r_bp);
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static struct r_bp_plugin_t *bp_static_plugins[] =
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{ R_BP_STATIC_PLUGINS };
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static void r_bp_item_free (RBreakpointItem *b) {
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free (b->bbytes);
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free (b->obytes);
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free (b);
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}
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R_API RBreakpoint *r_bp_new() {
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RBreakpoint *bp = R_NEW0 (RBreakpoint);
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RBreakpointPlugin *static_plugin;
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int i;
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if (!bp) return NULL;
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bp->bps_idx_count = 16;
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bp->bps_idx = R_NEWS0 (RBreakpointItem*, bp->bps_idx_count);
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bp->stepcont = R_BP_CONT_NORMAL;
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bp->traces = r_bp_traptrace_new ();
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bp->printf = (PrintfCallback)printf;
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bp->bps = r_list_newf ((RListFree)r_bp_item_free);
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bp->plugins = r_list_newf ((RListFree)free);
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for (i=0; bp_static_plugins[i]; i++) {
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static_plugin = R_NEW (RBreakpointPlugin);
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memcpy (static_plugin, bp_static_plugins[i],
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sizeof (RBreakpointPlugin));
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r_bp_plugin_add (bp, static_plugin);
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}
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memset (&bp->iob, 0, sizeof (bp->iob));
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return bp;
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}
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R_API RBreakpoint *r_bp_free(RBreakpoint *bp) {
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r_list_free (bp->bps);
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r_list_free (bp->plugins);
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free (bp);
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return NULL;
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}
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R_API int r_bp_get_bytes(RBreakpoint *bp, ut8 *buf, int len, int endian, int idx) {
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int i;
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struct r_bp_arch_t *b;
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if (bp->cur) {
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// find matching size breakpoint
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for (i=0; i<bp->cur->nbps; i++) {
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b = &bp->cur->bps[i];
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if (bp->cur->bps[i].length == len) {
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memcpy (buf, b->bytes, b->length);
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return b->length;
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}
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}
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// TODO: this must be reworked to work better
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/* if not found try to pad with the first one */
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b = &bp->cur->bps[0];
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if (len % b->length) {
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eprintf ("No matching bpsize\n");
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return 0;
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}
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for (i=0;i<len;i++) {
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memcpy (buf+i, b->bytes, b->length);
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}
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return b->length;
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}
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return 0;
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}
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R_API RBreakpointItem *r_bp_get_at(RBreakpoint *bp, ut64 addr) {
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RListIter *iter;
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RBreakpointItem *b;
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r_list_foreach(bp->bps, iter, b)
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if (b->addr == addr)
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return b;
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return NULL;
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}
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R_API RBreakpointItem *r_bp_get_in(RBreakpoint *bp, ut64 addr, int rwx) {
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RBreakpointItem *b;
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RListIter *iter;
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r_list_foreach (bp->bps, iter, b) {
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// eprintf ("---ataddr--- 0x%08"PFMT64x" %d %d %x\n", b->addr, b->size, b->recoil, b->rwx);
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//Check addr within range and provided rwx matches (or null)
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if (addr>=b->addr && addr<=(b->addr+b->size) && (!rwx || rwx&b->rwx))
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return b;
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}
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return NULL;
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}
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R_API RBreakpointItem *r_bp_enable(RBreakpoint *bp, ut64 addr, int set) {
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RBreakpointItem *b = r_bp_get_in (bp, addr, 0);
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if (b) {
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b->enabled = set;
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return b;
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}
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return NULL;
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}
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R_API int r_bp_enable_all(RBreakpoint *bp, int set) {
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RListIter *iter;
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RBreakpointItem *b;
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r_list_foreach (bp->bps, iter, b) {
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b->enabled = set;
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}
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return R_TRUE;
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}
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R_API int r_bp_stepy_continuation(RBreakpoint *bp) {
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// TODO: implement
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return bp->stepcont;
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}
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/* TODO: detect overlapping of breakpoints */
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static RBreakpointItem *r_bp_add(RBreakpoint *bp, const ut8 *obytes, ut64 addr, int size, int hw, int rwx) {
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int ret;
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RBreakpointItem *b;
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if (addr == UT64_MAX || size<1)
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return NULL;
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if (r_bp_get_in (bp, addr, rwx)) {
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eprintf ("Breakpoint already set at this address.\n");
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return NULL;
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}
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b = r_bp_item_new (bp);
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b->addr = addr;
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b->size = size;
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b->enabled = R_TRUE;
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b->rwx = rwx;
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b->hw = hw;
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if (!hw) {
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b->bbytes = calloc (size+16, 1);
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if (obytes) {
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b->obytes = malloc (size);
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memcpy (b->obytes, obytes, size);
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} else b->obytes = NULL;
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/* XXX: endian .. use bp->endian */
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// XXX for hw breakpoints there are no bytes
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ret = r_bp_get_bytes (bp, b->bbytes, size, 0, 0);
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if (ret == 0) {
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eprintf ("Cannot get breakpoint bytes. No r_bp_use()?\n");
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r_bp_item_free (b);
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return NULL;
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}
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b->recoil = ret;
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}
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bp->nbps++;
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r_list_append (bp->bps, b);
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return b;
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}
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R_API int r_bp_add_fault(RBreakpoint *bp, ut64 addr, int size, int rwx) {
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// TODO
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return R_FALSE;
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}
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R_API RBreakpointItem* r_bp_add_sw(RBreakpoint *bp, ut64 addr, int size, int rwx) {
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RBreakpointItem *item;
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ut8 *bytes;
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if (size<1)
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size = 1;
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bytes = malloc (size);
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if (bytes == NULL)
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return NULL;
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if (bp->iob.read_at)
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bp->iob.read_at (bp->iob.io, addr, bytes, size);
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else memset (bytes, 0, size);
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item = r_bp_add (bp, bytes, addr, size, R_BP_TYPE_SW, rwx);
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free (bytes);
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return item;
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}
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R_API RBreakpointItem* r_bp_add_hw(RBreakpoint *bp, ut64 addr, int size, int rwx) {
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return r_bp_add (bp, NULL, addr, size, R_BP_TYPE_HW, rwx);
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}
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R_API int r_bp_del_all(RBreakpoint *bp) {
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if (r_list_empty (bp->bps))
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return R_FALSE;
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r_list_purge (bp->bps);
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return R_TRUE;
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}
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R_API int r_bp_del(RBreakpoint *bp, ut64 addr) {
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RListIter *iter;
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RBreakpointItem *b;
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/* No _safe loop necessary because we return immediately after the delete. */
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r_list_foreach (bp->bps, iter, b) {
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if (b->addr == addr) {
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r_list_delete (bp->bps, iter);
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return R_TRUE;
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}
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}
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return R_FALSE;
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}
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R_API int r_bp_set_trace(RBreakpoint *bp, ut64 addr, int set) {
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RBreakpointItem *b = r_bp_get_in (bp, addr, 0);
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if (b) {
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b->trace = set;
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return R_TRUE;
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}
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return R_FALSE;
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}
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R_API int r_bp_set_trace_all(RBreakpoint *bp, int set) {
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RListIter *iter;
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RBreakpointItem *b;
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r_list_foreach (bp->bps, iter, b) {
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b->trace = set;
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}
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return R_TRUE;
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}
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// TODO: deprecate
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R_API int r_bp_list(RBreakpoint *bp, int rad) {
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int n = 0;
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RBreakpointItem *b;
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RListIter *iter;
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//eprintf ("Breakpoint list:\n");
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r_list_foreach (bp->bps, iter, b) {
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bp->printf ("0x%08"PFMT64x" - 0x%08"PFMT64x" %d %c%c%c %s %s %s cmd=\"%s\"\n",
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b->addr, b->addr+b->size, b->size,
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(b->rwx & R_BP_PROT_READ)? 'r': '-',
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(b->rwx & R_BP_PROT_WRITE)? 'w': '-',
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(b->rwx & R_BP_PROT_EXEC)? 'x': '-',
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b->hw? "hw": "sw",
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b->trace? "trace": "break",
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b->enabled? "enabled": "disabled",
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b->data? b->data: "");
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/* TODO: Show list of pids and trace points, conditionals */
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n++;
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}
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return n;
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}
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R_API RBreakpointItem *r_bp_item_new (RBreakpoint *bp) {
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int i, j;
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/* find empty slot */
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for (i=0; i<bp->bps_idx_count; i++) {
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if (!bp->bps_idx[i]) {
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goto return_slot;
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}
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}
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/* allocate new slot */
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bp->bps_idx_count += 16; // alocate space for 16 more bps
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bp->bps_idx = realloc (bp->bps_idx, bp->bps_idx_count*sizeof(RBreakpointItem*));
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for (j=i;j<bp->bps_idx_count;j++)
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bp->bps_idx[j] = NULL;
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return_slot:
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/* empty slot */
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return (bp->bps_idx[i] = R_NEW0 (RBreakpointItem));
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}
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R_API RBreakpointItem *r_bp_get_index(RBreakpoint *bp, int idx) {
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if (idx>=0 && idx<bp->bps_idx_count)
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return bp->bps_idx[idx];
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return NULL;
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}
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R_API int r_bp_del_index(RBreakpoint *bp, int idx) {
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if (idx>=0 && idx<bp->bps_idx_count) {
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r_list_delete_data (bp->bps, bp->bps_idx[idx]);
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free (bp->bps_idx[idx]);
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bp->bps_idx[idx] = NULL;
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return R_TRUE;
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}
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return R_FALSE;
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}
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