for (vector<ObjectExtent>::iterator p = probe->probing.begin();
p != probe->probing.end();
- p++) {
+ ++p) {
ldout(cct, 10) << "_probe probing " << p->oid << dendl;
C_Probe *c = new C_Probe(this, probe, p->oid);
objecter->stat(p->oid, p->oloc, probe->snapid, &c->size, &c->mtime,
vector<ObjectExtent> r;
for (vector<ObjectExtent>::reverse_iterator p = probe->probing.rbegin();
p != probe->probing.rend();
- p++)
+ ++p)
r.push_back(*p);
probe->probing.swap(r);
}
for (vector<ObjectExtent>::iterator p = probe->probing.begin();
p != probe->probing.end();
- p++) {
+ ++p) {
uint64_t shouldbe = p->length + p->offset;
ldout(cct, 10) << "_probed " << probe->ino << " object " << hex << p->oid << dec
<< " should be " << shouldbe
uint64_t oleft = probe->known_size[p->oid] - p->offset;
for (vector<pair<uint64_t, uint64_t> >::iterator i = p->buffer_extents.begin();
i != p->buffer_extents.end();
- i++) {
+ ++i) {
if (oleft <= (uint64_t)i->second) {
end = probe->probing_off + i->first + oleft;
ldout(cct, 10) << "_probed end is in buffer_extent " << i->first << "~" << i->second << " off " << oleft