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487 lines
11 KiB
C
487 lines
11 KiB
C
/* radare2 - LGPL - Copyright 2017 - condret, MaskRay */
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#include <r_io.h>
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#include <stdlib.h>
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#include <sdb.h>
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#include "r_binheap.h"
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#include "r_util.h"
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#include "r_vector.h"
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#define END_OF_MAP_IDS 0xffffffff
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#define MAP_USE_HALF_CLOSED 0
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struct map_event_t {
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RIOMap *map;
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ut64 addr;
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int id; // distinct priority in [0, len(maps))
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bool is_to;
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};
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// Sort by address, (addr, is_to) precedes (addr, !is_to)
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static int _cmp_map_event(const void *a_, const void *b_) {
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struct map_event_t *a = (void *)a_, *b = (void *)b_;
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ut64 addr0 = a->addr - a->is_to, addr1 = b->addr - b->is_to;
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if (addr0 != addr1) {
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return addr0 < addr1 ? -1 : 1;
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}
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return a->is_to - b->is_to;
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}
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static int _cmp_map_event_by_id(const void *a_, const void *b_) {
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struct map_event_t *a = (void *)a_, *b = (void *)b_;
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return a->id - b->id;
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}
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// Precondition: from == 0 && to == 0 (full address) or from < to
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static bool _map_skyline_push(RVector *map_skyline, ut64 from, ut64 to, RIOMap *map) {
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RIOMapSkyline *part = R_NEW (RIOMapSkyline), *part1;
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if (!part) {
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return false;
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}
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part->map = map;
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part->itv.addr = from;
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part->itv.size = to - from;
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if (!from && !to) {
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// Split to two maps
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part1 = R_NEW (RIOMapSkyline);
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if (!part1) {
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return false;
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}
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part1->map = map;
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part1->itv.addr = part->itv.size = UT64_MAX;
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part1->itv.size = 1;
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if (!r_vector_push (map_skyline, part1)) {
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free (part1);
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}
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}
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if (!r_vector_push (map_skyline, part)) {
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free (part);
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return false;
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}
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return true;
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}
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// Store map parts that are not covered by others into io->map_skyline
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R_API void r_io_map_calculate_skyline(RIO *io) {
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SdbListIter *iter;
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RIOMap *map;
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RVector events = {0};
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RBinHeap heap;
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struct map_event_t *ev;
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bool *deleted = NULL;
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r_vector_clear (&io->map_skyline, free);
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if (!r_vector_reserve (&events, ls_length (io->maps) * 2) ||
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!(deleted = calloc (ls_length (io->maps), 1))) {
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goto out;
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}
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int i = 0;
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ls_foreach (io->maps, iter, map) {
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if (!(ev = R_NEW (struct map_event_t))) {
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goto out;
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}
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ev->map = map;
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ev->addr = map->itv.addr;
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ev->is_to = false;
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ev->id = i;
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r_vector_push (&events, ev);
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if (!(ev = R_NEW (struct map_event_t))) {
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goto out;
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}
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ev->map = map;
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ev->addr = r_itv_end (map->itv);
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ev->is_to = true;
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ev->id = i;
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r_vector_push (&events, ev);
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i++;
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}
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r_vector_sort (&events, _cmp_map_event);
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r_binheap_init (&heap, _cmp_map_event_by_id);
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ut64 last;
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RIOMap *last_map = NULL;
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for (i = 0; i < events.len; i++) {
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ev = events.a[i];
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if (ev->is_to) {
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deleted[ev->id] = true;
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} else {
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r_binheap_push (&heap, ev);
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}
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while (!r_binheap_empty (&heap) && deleted[((struct map_event_t *)r_binheap_top (&heap))->id]) {
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r_binheap_pop (&heap);
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}
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ut64 to = ev->addr;
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map = r_binheap_empty (&heap) ? NULL : ((struct map_event_t *)r_binheap_top (&heap))->map;
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if (!i) {
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last = to;
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last_map = map;
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} else if (last != to || (!to && ev->is_to)) {
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if (last_map != map) {
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if (last_map && !_map_skyline_push (&io->map_skyline, last, to, last_map)) {
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break;
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}
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last = to;
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last_map = map;
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}
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if (!to && ev->is_to) {
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if (map) {
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(void)_map_skyline_push (&io->map_skyline, last, to, map);
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}
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// This is a to == 2**64 event. There are no more skyline parts.
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break;
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}
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} else if (map && (!last_map || map->id > last_map->id)) {
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last_map = map;
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}
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}
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r_binheap_clear (&heap, NULL);
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out:
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r_vector_clear (&events, free);
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free (deleted);
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}
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R_API RIOMap* r_io_map_new(RIO* io, int fd, int flags, ut64 delta, ut64 addr, ut64 size, bool do_skyline) {
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if (!size || !io || !io->maps || !io->map_ids) {
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return NULL;
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}
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RIOMap* map = R_NEW0 (RIOMap);
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if (!map || !io->map_ids || !r_id_pool_grab_id (io->map_ids, &map->id)) {
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free (map);
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return NULL;
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}
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map->fd = fd;
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map->itv.addr = addr;
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map->delta = delta;
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if ((UT64_MAX - size + 1) < addr) {
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r_io_map_new (io, fd, flags, delta - addr, 0LL, size + addr, do_skyline);
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size = -addr;
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}
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// RIOMap describes an interval of addresses (map->from; map->to)
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map->itv.size = size;
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map->flags = flags;
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map->delta = delta;
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// new map lives on the top, being top the list's tail
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ls_append (io->maps, map);
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if (do_skyline) {
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r_io_map_calculate_skyline (io);
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}
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return map;
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}
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R_API bool r_io_map_remap (RIO *io, ut32 id, ut64 addr) {
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RIOMap *map;
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if (!(map = r_io_map_resolve (io, id))) {
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return false;
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}
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ut64 size = map->itv.size;
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map->itv.addr = addr;
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if (UT64_MAX - size + 1 < addr) {
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map->itv.size = -addr;
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r_io_map_new (io, map->fd, map->flags, map->delta - addr, 0, size + addr, true);
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return true;
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}
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r_io_map_calculate_skyline (io);
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return true;
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}
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static void _map_free(void* p) {
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RIOMap* map = (RIOMap*) p;
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if (map) {
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free (map->name);
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free (map);
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}
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}
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R_API void r_io_map_init(RIO* io) {
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if (io && !io->maps) {
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io->maps = ls_newf ((SdbListFree)_map_free);
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if (io->map_ids) {
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r_id_pool_free (io->map_ids);
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}
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io->map_ids = r_id_pool_new (1, END_OF_MAP_IDS);
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}
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}
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// check if a map with exact the same properties exists
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R_API bool r_io_map_exists(RIO* io, RIOMap* map) {
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SdbListIter* iter;
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RIOMap* m;
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if (!io || !io->maps || !map) {
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return false;
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}
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ls_foreach (io->maps, iter, m) {
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if (!memcmp (m, map, sizeof (RIOMap))) {
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return true;
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}
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}
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return false;
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}
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// check if a map with specified id exists
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R_API bool r_io_map_exists_for_id(RIO* io, ut32 id) {
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return r_io_map_resolve (io, id) != NULL;
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}
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R_API RIOMap* r_io_map_resolve(RIO* io, ut32 id) {
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SdbListIter* iter;
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RIOMap* map;
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if (!io || !io->maps || !id) {
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return NULL;
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}
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ls_foreach (io->maps, iter, map) {
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if (map->id == id) {
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return map;
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}
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}
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return NULL;
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}
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R_API RIOMap* r_io_map_add(RIO* io, int fd, int flags, ut64 delta, ut64 addr, ut64 size, bool do_skyline) {
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//check if desc exists
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RIODesc* desc = r_io_desc_get (io, fd);
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if (desc) {
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//a map cannot have higher permissions than the desc belonging to it
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return r_io_map_new (io, fd, (flags & desc->flags) | (flags & R_IO_EXEC),
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delta, addr, size, do_skyline);
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}
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return NULL;
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}
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R_API RIOMap* r_io_map_get_paddr(RIO* io, ut64 paddr) {
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RIOMap* map;
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SdbListIter* iter;
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if (!io) {
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return NULL;
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}
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ls_foreach_prev (io->maps, iter, map) {
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if (map->delta <= paddr && paddr <= map->delta + map->itv.size - 1) {
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return map;
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}
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}
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return NULL;
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}
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// gets first map where addr fits in
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R_API RIOMap* r_io_map_get(RIO* io, ut64 addr) {
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RIOMap* map;
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SdbListIter* iter;
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if (!io) {
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return NULL;
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}
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ls_foreach_prev (io->maps, iter, map) {
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if (r_itv_contain (map->itv, addr)) {
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return map;
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}
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}
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return NULL;
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}
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R_API void r_io_map_reset(RIO* io) {
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r_io_map_fini (io);
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r_io_map_init (io);
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r_io_map_calculate_skyline (io);
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}
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R_API bool r_io_map_del(RIO* io, ut32 id) {
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if (io) {
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RIOMap* map;
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SdbListIter* iter;
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ls_foreach (io->maps, iter, map) {
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if (map->id == id) {
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ls_delete (io->maps, iter);
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r_id_pool_kick_id (io->map_ids, id);
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r_io_map_calculate_skyline (io);
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return true;
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}
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}
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}
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return false;
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}
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//delete all maps with specified fd
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R_API bool r_io_map_del_for_fd(RIO* io, int fd) {
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SdbListIter* iter, * ator;
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RIOMap* map;
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bool ret = false;
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if (!io) {
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return ret;
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}
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ls_foreach_safe (io->maps, iter, ator, map) {
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if (!map) {
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ls_delete (io->maps, iter);
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} else if (map->fd == fd) {
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r_id_pool_kick_id (io->map_ids, map->id);
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//delete iter and map
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ls_delete (io->maps, iter);
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ret = true;
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}
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}
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if (ret) {
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r_io_map_calculate_skyline (io);
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}
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return ret;
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}
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//brings map with specified id to the tail of of the list
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//return a boolean denoting whether is was possible to priorized
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R_API bool r_io_map_priorize(RIO* io, ut32 id) {
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SdbListIter* iter;
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RIOMap* map;
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if (!io) {
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return false;
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}
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ls_foreach (io->maps, iter, map) {
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//search for iter with the correct map
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if (map->id == id) {
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ls_split_iter (io->maps, iter);
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ls_append (io->maps, map);
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r_io_map_calculate_skyline (io);
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return true;
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}
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}
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return false;
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}
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R_API bool r_io_map_priorize_for_fd(RIO* io, int fd) {
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SdbListIter* iter, * ator;
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RIOMap *map;
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SdbList* list;
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if (!io || !io->maps) {
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return false;
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}
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if (!(list = ls_new ())) {
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return false;
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}
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//we need a clean list for this, or this becomes a segfault-field
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r_io_map_cleanup (io);
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//tempory set to avoid free the map and to speed up ls_delete a bit
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io->maps->free = NULL;
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ls_foreach_safe (io->maps, iter, ator, map) {
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if (map->fd == fd) {
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ls_prepend (list, map);
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ls_delete (io->maps, iter);
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}
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}
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ls_join (io->maps, list);
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ls_free (list);
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io->maps->free = _map_free;
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r_io_map_calculate_skyline (io);
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return true;
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}
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//may fix some inconsistencies in io->maps
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R_API void r_io_map_cleanup(RIO* io) {
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SdbListIter* iter, * ator;
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RIOMap* map;
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if (!io || !io->maps) {
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return;
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}
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//remove all maps if no descs exist
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if (!io->files) {
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r_io_map_fini (io);
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r_io_map_init (io);
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return;
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}
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bool del = false;
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ls_foreach_safe (io->maps, iter, ator, map) {
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//remove iter if the map is a null-ptr, this may fix some segfaults
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if (!map) {
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ls_delete (io->maps, iter);
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del = true;
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} else if (!r_io_desc_get (io, map->fd)) {
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//delete map and iter if no desc exists for map->fd in io->files
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r_id_pool_kick_id (io->map_ids, map->id);
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ls_delete (io->maps, iter);
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del = true;
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}
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}
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if (del) {
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r_io_map_calculate_skyline (io);
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}
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}
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R_API void r_io_map_fini(RIO* io) {
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if (!io) {
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return;
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}
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ls_free (io->maps);
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io->maps = NULL;
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r_id_pool_free (io->map_ids);
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io->map_ids = NULL;
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r_vector_clear (&io->map_skyline, free);
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}
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R_API void r_io_map_set_name(RIOMap* map, const char* name) {
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if (!map || !name) {
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return;
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}
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free (map->name);
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map->name = strdup (name);
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}
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R_API void r_io_map_del_name(RIOMap* map) {
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if (map) {
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R_FREE (map->name);
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}
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}
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//TODO: Kill it with fire
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R_API RIOMap* r_io_map_add_next_available(RIO* io, int fd, int flags, ut64 delta, ut64 addr, ut64 size, ut64 load_align) {
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RIOMap* map;
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SdbListIter* iter;
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ut64 next_addr = addr,
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end_addr = next_addr + size;
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end_addr = next_addr + size;
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ls_foreach (io->maps, iter, map) {
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ut64 to = r_itv_end (map->itv);
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next_addr = R_MAX (next_addr, to + (load_align - (to % load_align)) % load_align);
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// XXX - This does not handle when file overflow 0xFFFFFFFF000 -> 0x00000FFF
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// adding the check for the map's fd to see if this removes contention for
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// memory mapping with multiple files.
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if (map->fd == fd && ((map->itv.addr <= next_addr && next_addr < to) ||
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r_itv_contain (map->itv, end_addr))) {
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//return r_io_map_add(io, fd, flags, delta, map->to, size);
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next_addr = to + (load_align - (to % load_align)) % load_align;
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return r_io_map_add_next_available (io, fd, flags, delta, next_addr, size, load_align);
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}
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break;
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}
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return r_io_map_new (io, fd, flags, delta, next_addr, size, true);
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}
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R_API RList* r_io_map_get_for_fd(RIO* io, int fd) {
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RList* map_list = r_list_newf (NULL);
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SdbListIter* iter;
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RIOMap* map;
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if (!map_list) {
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return NULL;
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}
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ls_foreach (io->maps, iter, map) {
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if (map && map->fd == fd) {
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r_list_append (map_list, map);
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}
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}
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return map_list;
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}
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R_API bool r_io_map_resize(RIO *io, ut32 id, ut64 newsize) {
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RIOMap *map;
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if (!newsize || !(map = r_io_map_resolve (io, id))) {
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return false;
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}
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ut64 addr = map->itv.addr;
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if (UT64_MAX - newsize + 1 < addr) {
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map->itv.size = -addr;
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r_io_map_new (io, map->fd, map->flags, map->delta - addr, 0, newsize + addr, true);
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return true;
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}
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map->itv.size = newsize;
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r_io_map_calculate_skyline (io);
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return true;
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}
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