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1 // -*- mode:C++; tab-width:8; c-basic-offset:2; indent-tabs-mode:t -*-
2 // vim: ts=8 sw=2 smarttab ft=cpp
3
4 #include <errno.h>
5 #include <stdlib.h>
6 #include <system_error>
7 #include <unistd.h>
8
9 #include <sstream>
10
11 #include <boost/algorithm/string/predicate.hpp>
12 #include <boost/bind.hpp>
13 #include <boost/optional.hpp>
14 #include <boost/utility/in_place_factory.hpp>
15 #include <boost/utility/string_view.hpp>
16
17 #include "include/scope_guard.h"
18 #include "common/Clock.h"
19 #include "common/armor.h"
20 #include "common/errno.h"
21 #include "common/mime.h"
22 #include "common/utf8.h"
23 #include "common/ceph_json.h"
24 #include "common/static_ptr.h"
25
26 #include "rgw_rados.h"
27 #include "rgw_zone.h"
28 #include "rgw_op.h"
29 #include "rgw_rest.h"
30 #include "rgw_acl.h"
31 #include "rgw_acl_s3.h"
32 #include "rgw_acl_swift.h"
33 #include "rgw_aio_throttle.h"
34 #include "rgw_user.h"
35 #include "rgw_bucket.h"
36 #include "rgw_log.h"
37 #include "rgw_multi.h"
38 #include "rgw_multi_del.h"
39 #include "rgw_cors.h"
40 #include "rgw_cors_s3.h"
41 #include "rgw_rest_conn.h"
42 #include "rgw_rest_s3.h"
43 #include "rgw_tar.h"
44 #include "rgw_client_io.h"
45 #include "rgw_compression.h"
46 #include "rgw_role.h"
47 #include "rgw_tag_s3.h"
48 #include "rgw_putobj_processor.h"
49 #include "rgw_crypt.h"
50 #include "rgw_perf_counters.h"
51 #include "rgw_notify.h"
52 #include "rgw_notify_event_type.h"
53
54 #include "services/svc_zone.h"
55 #include "services/svc_quota.h"
56 #include "services/svc_sys_obj.h"
57
58 #include "cls/lock/cls_lock_client.h"
59 #include "cls/rgw/cls_rgw_client.h"
60
61
62 #include "include/ceph_assert.h"
63
64 #include "compressor/Compressor.h"
65
66 #ifdef WITH_LTTNG
67 #define TRACEPOINT_DEFINE
68 #define TRACEPOINT_PROBE_DYNAMIC_LINKAGE
69 #include "tracing/rgw_op.h"
70 #undef TRACEPOINT_PROBE_DYNAMIC_LINKAGE
71 #undef TRACEPOINT_DEFINE
72 #else
73 #define tracepoint(...)
74 #endif
75
76 #define dout_context g_ceph_context
77 #define dout_subsys ceph_subsys_rgw
78
79 using namespace librados;
80 using ceph::crypto::MD5;
81 using boost::optional;
82 using boost::none;
83
84 using rgw::ARN;
85 using rgw::IAM::Effect;
86 using rgw::IAM::Policy;
87
88 static string mp_ns = RGW_OBJ_NS_MULTIPART;
89 static string shadow_ns = RGW_OBJ_NS_SHADOW;
90
91 static void forward_req_info(CephContext *cct, req_info& info, const std::string& bucket_name);
92
93 static MultipartMetaFilter mp_filter;
94
95 // this probably should belong in the rgw_iam_policy_keywords, I'll get it to it
96 // at some point
97 static constexpr auto S3_EXISTING_OBJTAG = "s3:ExistingObjectTag";
98
99 int RGWGetObj::parse_range(void)
100 {
101 int r = -ERANGE;
102 string rs(range_str);
103 string ofs_str;
104 string end_str;
105
106 ignore_invalid_range = s->cct->_conf->rgw_ignore_get_invalid_range;
107 partial_content = false;
108
109 size_t pos = rs.find("bytes=");
110 if (pos == string::npos) {
111 pos = 0;
112 while (isspace(rs[pos]))
113 pos++;
114 int end = pos;
115 while (isalpha(rs[end]))
116 end++;
117 if (strncasecmp(rs.c_str(), "bytes", end - pos) != 0)
118 return 0;
119 while (isspace(rs[end]))
120 end++;
121 if (rs[end] != '=')
122 return 0;
123 rs = rs.substr(end + 1);
124 } else {
125 rs = rs.substr(pos + 6); /* size of("bytes=") */
126 }
127 pos = rs.find('-');
128 if (pos == string::npos)
129 goto done;
130
131 partial_content = true;
132
133 ofs_str = rs.substr(0, pos);
134 end_str = rs.substr(pos + 1);
135 if (end_str.length()) {
136 end = atoll(end_str.c_str());
137 if (end < 0)
138 goto done;
139 }
140
141 if (ofs_str.length()) {
142 ofs = atoll(ofs_str.c_str());
143 } else { // RFC2616 suffix-byte-range-spec
144 ofs = -end;
145 end = -1;
146 }
147
148 if (end >= 0 && end < ofs)
149 goto done;
150
151 range_parsed = true;
152 return 0;
153
154 done:
155 if (ignore_invalid_range) {
156 partial_content = false;
157 ofs = 0;
158 end = -1;
159 range_parsed = false; // allow retry
160 r = 0;
161 }
162
163 return r;
164 }
165
166 static int decode_policy(CephContext *cct,
167 bufferlist& bl,
168 RGWAccessControlPolicy *policy)
169 {
170 auto iter = bl.cbegin();
171 try {
172 policy->decode(iter);
173 } catch (buffer::error& err) {
174 ldout(cct, 0) << "ERROR: could not decode policy, caught buffer::error" << dendl;
175 return -EIO;
176 }
177 if (cct->_conf->subsys.should_gather<ceph_subsys_rgw, 15>()) {
178 ldout(cct, 15) << __func__ << " Read AccessControlPolicy";
179 RGWAccessControlPolicy_S3 *s3policy = static_cast<RGWAccessControlPolicy_S3 *>(policy);
180 s3policy->to_xml(*_dout);
181 *_dout << dendl;
182 }
183 return 0;
184 }
185
186
187 static int get_user_policy_from_attr(CephContext * const cct,
188 rgw::sal::RGWRadosStore * const store,
189 map<string, bufferlist>& attrs,
190 RGWAccessControlPolicy& policy /* out */)
191 {
192 auto aiter = attrs.find(RGW_ATTR_ACL);
193 if (aiter != attrs.end()) {
194 int ret = decode_policy(cct, aiter->second, &policy);
195 if (ret < 0) {
196 return ret;
197 }
198 } else {
199 return -ENOENT;
200 }
201
202 return 0;
203 }
204
205 /**
206 * Get the AccessControlPolicy for an object off of disk.
207 * policy: must point to a valid RGWACL, and will be filled upon return.
208 * bucket: name of the bucket containing the object.
209 * object: name of the object to get the ACL for.
210 * Returns: 0 on success, -ERR# otherwise.
211 */
212 int rgw_op_get_bucket_policy_from_attr(CephContext *cct,
213 rgw::sal::RGWRadosStore *store,
214 RGWBucketInfo& bucket_info,
215 map<string, bufferlist>& bucket_attrs,
216 RGWAccessControlPolicy *policy)
217 {
218 map<string, bufferlist>::iterator aiter = bucket_attrs.find(RGW_ATTR_ACL);
219
220 if (aiter != bucket_attrs.end()) {
221 int ret = decode_policy(cct, aiter->second, policy);
222 if (ret < 0)
223 return ret;
224 } else {
225 ldout(cct, 0) << "WARNING: couldn't find acl header for bucket, generating default" << dendl;
226 rgw::sal::RGWRadosUser user(store);
227 /* object exists, but policy is broken */
228 int r = user.get_by_id(bucket_info.owner, null_yield);
229 if (r < 0)
230 return r;
231
232 policy->create_default(bucket_info.owner, user.get_display_name());
233 }
234 return 0;
235 }
236
237 static int get_obj_policy_from_attr(CephContext *cct,
238 rgw::sal::RGWRadosStore *store,
239 RGWObjectCtx& obj_ctx,
240 RGWBucketInfo& bucket_info,
241 map<string, bufferlist>& bucket_attrs,
242 RGWAccessControlPolicy *policy,
243 string *storage_class,
244 rgw_obj& obj,
245 optional_yield y)
246 {
247 bufferlist bl;
248 int ret = 0;
249
250 RGWRados::Object op_target(store->getRados(), bucket_info, obj_ctx, obj);
251 RGWRados::Object::Read rop(&op_target);
252
253 ret = rop.get_attr(RGW_ATTR_ACL, bl, y);
254 if (ret >= 0) {
255 ret = decode_policy(cct, bl, policy);
256 if (ret < 0)
257 return ret;
258 } else if (ret == -ENODATA) {
259 /* object exists, but policy is broken */
260 ldout(cct, 0) << "WARNING: couldn't find acl header for object, generating default" << dendl;
261 rgw::sal::RGWRadosUser user(store);
262 ret = user.get_by_id(bucket_info.owner, y);
263 if (ret < 0)
264 return ret;
265
266 policy->create_default(bucket_info.owner, user.get_display_name());
267 }
268
269 if (storage_class) {
270 bufferlist scbl;
271 int r = rop.get_attr(RGW_ATTR_STORAGE_CLASS, scbl, y);
272 if (r >= 0) {
273 *storage_class = scbl.to_str();
274 } else {
275 storage_class->clear();
276 }
277 }
278
279 return ret;
280 }
281
282
283 static boost::optional<Policy> get_iam_policy_from_attr(CephContext* cct,
284 rgw::sal::RGWRadosStore* store,
285 map<string, bufferlist>& attrs,
286 const string& tenant) {
287 auto i = attrs.find(RGW_ATTR_IAM_POLICY);
288 if (i != attrs.end()) {
289 return Policy(cct, tenant, i->second);
290 } else {
291 return none;
292 }
293 }
294
295 static boost::optional<PublicAccessBlockConfiguration>
296 get_public_access_conf_from_attr(const map<string, bufferlist>& attrs)
297 {
298 if (auto aiter = attrs.find(RGW_ATTR_PUBLIC_ACCESS);
299 aiter != attrs.end()) {
300 bufferlist::const_iterator iter{&aiter->second};
301 PublicAccessBlockConfiguration access_conf;
302 try {
303 access_conf.decode(iter);
304 } catch (const buffer::error& e) {
305 return boost::none;
306 }
307 return access_conf;
308 }
309 return boost::none;
310 }
311
312 vector<Policy> get_iam_user_policy_from_attr(CephContext* cct,
313 rgw::sal::RGWRadosStore* store,
314 map<string, bufferlist>& attrs,
315 const string& tenant) {
316 vector<Policy> policies;
317 if (auto it = attrs.find(RGW_ATTR_USER_POLICY); it != attrs.end()) {
318 bufferlist out_bl = attrs[RGW_ATTR_USER_POLICY];
319 map<string, string> policy_map;
320 decode(policy_map, out_bl);
321 for (auto& it : policy_map) {
322 bufferlist bl = bufferlist::static_from_string(it.second);
323 Policy p(cct, tenant, bl);
324 policies.push_back(std::move(p));
325 }
326 }
327 return policies;
328 }
329
330 static int get_obj_attrs(rgw::sal::RGWRadosStore *store, struct req_state *s, const rgw_obj& obj, map<string, bufferlist>& attrs, rgw_obj *target_obj = nullptr)
331 {
332 RGWRados::Object op_target(store->getRados(), s->bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), obj);
333 RGWRados::Object::Read read_op(&op_target);
334
335 read_op.params.attrs = &attrs;
336 read_op.params.target_obj = target_obj;
337
338 return read_op.prepare(s->yield);
339 }
340
341 static int get_obj_head(rgw::sal::RGWRadosStore *store, struct req_state *s,
342 const rgw_obj& obj,
343 map<string, bufferlist> *attrs,
344 bufferlist *pbl)
345 {
346 store->getRados()->set_prefetch_data(s->obj_ctx, obj);
347
348 RGWRados::Object op_target(store->getRados(), s->bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), obj);
349 RGWRados::Object::Read read_op(&op_target);
350
351 read_op.params.attrs = attrs;
352
353 int ret = read_op.prepare(s->yield);
354 if (ret < 0) {
355 return ret;
356 }
357
358 if (!pbl) {
359 return 0;
360 }
361
362 ret = read_op.read(0, s->cct->_conf->rgw_max_chunk_size, *pbl, s->yield);
363
364 return 0;
365 }
366
367 struct multipart_upload_info
368 {
369 rgw_placement_rule dest_placement;
370
371 void encode(bufferlist& bl) const {
372 ENCODE_START(1, 1, bl);
373 encode(dest_placement, bl);
374 ENCODE_FINISH(bl);
375 }
376
377 void decode(bufferlist::const_iterator& bl) {
378 DECODE_START(1, bl);
379 decode(dest_placement, bl);
380 DECODE_FINISH(bl);
381 }
382 };
383 WRITE_CLASS_ENCODER(multipart_upload_info)
384
385 static int get_multipart_info(rgw::sal::RGWRadosStore *store, struct req_state *s,
386 const rgw_obj& obj,
387 RGWAccessControlPolicy *policy,
388 map<string, bufferlist> *attrs,
389 multipart_upload_info *upload_info)
390 {
391 bufferlist header;
392
393 bufferlist headbl;
394 bufferlist *pheadbl = (upload_info ? &headbl : nullptr);
395
396 int op_ret = get_obj_head(store, s, obj, attrs, pheadbl);
397 if (op_ret < 0) {
398 if (op_ret == -ENOENT) {
399 return -ERR_NO_SUCH_UPLOAD;
400 }
401 return op_ret;
402 }
403
404 if (upload_info && headbl.length() > 0) {
405 auto hiter = headbl.cbegin();
406 try {
407 decode(*upload_info, hiter);
408 } catch (buffer::error& err) {
409 ldpp_dout(s, 0) << "ERROR: failed to decode multipart upload info" << dendl;
410 return -EIO;
411 }
412 }
413
414 if (policy && attrs) {
415 for (auto& iter : *attrs) {
416 string name = iter.first;
417 if (name.compare(RGW_ATTR_ACL) == 0) {
418 bufferlist& bl = iter.second;
419 auto bli = bl.cbegin();
420 try {
421 decode(*policy, bli);
422 } catch (buffer::error& err) {
423 ldpp_dout(s, 0) << "ERROR: could not decode policy" << dendl;
424 return -EIO;
425 }
426 break;
427 }
428 }
429 }
430
431 return 0;
432 }
433
434 static int get_multipart_info(rgw::sal::RGWRadosStore *store, struct req_state *s,
435 const string& meta_oid,
436 RGWAccessControlPolicy *policy,
437 map<string, bufferlist> *attrs,
438 multipart_upload_info *upload_info)
439 {
440 map<string, bufferlist>::iterator iter;
441 bufferlist header;
442
443 rgw_obj meta_obj;
444 meta_obj.init_ns(s->bucket, meta_oid, mp_ns);
445 meta_obj.set_in_extra_data(true);
446
447 return get_multipart_info(store, s, meta_obj, policy, attrs, upload_info);
448 }
449
450 static int modify_obj_attr(rgw::sal::RGWRadosStore *store, struct req_state *s, const rgw_obj& obj, const char* attr_name, bufferlist& attr_val)
451 {
452 map<string, bufferlist> attrs;
453 RGWRados::Object op_target(store->getRados(), s->bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), obj);
454 RGWRados::Object::Read read_op(&op_target);
455
456 read_op.params.attrs = &attrs;
457
458 int r = read_op.prepare(s->yield);
459 if (r < 0) {
460 return r;
461 }
462 store->getRados()->set_atomic(s->obj_ctx, read_op.state.obj);
463 attrs[attr_name] = attr_val;
464 return store->getRados()->set_attrs(s->obj_ctx, s->bucket_info, read_op.state.obj, attrs, NULL, s->yield);
465 }
466
467 static int read_bucket_policy(rgw::sal::RGWRadosStore *store,
468 struct req_state *s,
469 RGWBucketInfo& bucket_info,
470 map<string, bufferlist>& bucket_attrs,
471 RGWAccessControlPolicy *policy,
472 rgw_bucket& bucket)
473 {
474 if (!s->system_request && bucket_info.flags & BUCKET_SUSPENDED) {
475 ldpp_dout(s, 0) << "NOTICE: bucket " << bucket_info.bucket.name
476 << " is suspended" << dendl;
477 return -ERR_USER_SUSPENDED;
478 }
479
480 if (bucket.name.empty()) {
481 return 0;
482 }
483
484 int ret = rgw_op_get_bucket_policy_from_attr(s->cct, store, bucket_info, bucket_attrs, policy);
485 if (ret == -ENOENT) {
486 ret = -ERR_NO_SUCH_BUCKET;
487 }
488
489 return ret;
490 }
491
492 static int read_obj_policy(rgw::sal::RGWRadosStore *store,
493 struct req_state *s,
494 RGWBucketInfo& bucket_info,
495 map<string, bufferlist>& bucket_attrs,
496 RGWAccessControlPolicy* acl,
497 string *storage_class,
498 boost::optional<Policy>& policy,
499 rgw_bucket& bucket,
500 rgw_obj_key& object)
501 {
502 string upload_id;
503 upload_id = s->info.args.get("uploadId");
504 rgw_obj obj;
505
506 if (!s->system_request && bucket_info.flags & BUCKET_SUSPENDED) {
507 ldpp_dout(s, 0) << "NOTICE: bucket " << bucket_info.bucket.name
508 << " is suspended" << dendl;
509 return -ERR_USER_SUSPENDED;
510 }
511
512 if (!upload_id.empty()) {
513 /* multipart upload */
514 RGWMPObj mp(object.name, upload_id);
515 string oid = mp.get_meta();
516 obj.init_ns(bucket, oid, mp_ns);
517 obj.set_in_extra_data(true);
518 } else {
519 obj = rgw_obj(bucket, object);
520 }
521 policy = get_iam_policy_from_attr(s->cct, store, bucket_attrs, bucket.tenant);
522
523 RGWObjectCtx *obj_ctx = static_cast<RGWObjectCtx *>(s->obj_ctx);
524 int ret = get_obj_policy_from_attr(s->cct, store, *obj_ctx,
525 bucket_info, bucket_attrs, acl, storage_class, obj, s->yield);
526 if (ret == -ENOENT) {
527 /* object does not exist checking the bucket's ACL to make sure
528 that we send a proper error code */
529 RGWAccessControlPolicy bucket_policy(s->cct);
530 ret = rgw_op_get_bucket_policy_from_attr(s->cct, store, bucket_info, bucket_attrs, &bucket_policy);
531 if (ret < 0) {
532 return ret;
533 }
534 const rgw_user& bucket_owner = bucket_policy.get_owner().get_id();
535 if (bucket_owner.compare(s->user->get_id()) != 0 &&
536 ! s->auth.identity->is_admin_of(bucket_owner)) {
537 if (policy) {
538 auto r = policy->eval(s->env, *s->auth.identity, rgw::IAM::s3ListBucket, ARN(bucket));
539 if (r == Effect::Allow)
540 return -ENOENT;
541 if (r == Effect::Deny)
542 return -EACCES;
543 }
544 if (! bucket_policy.verify_permission(s, *s->auth.identity, s->perm_mask, RGW_PERM_READ))
545 ret = -EACCES;
546 else
547 ret = -ENOENT;
548 } else {
549 ret = -ENOENT;
550 }
551 }
552
553 return ret;
554 }
555
556 /**
557 * Get the AccessControlPolicy for an user, bucket or object off of disk.
558 * s: The req_state to draw information from.
559 * only_bucket: If true, reads the user and bucket ACLs rather than the object ACL.
560 * Returns: 0 on success, -ERR# otherwise.
561 */
562 int rgw_build_bucket_policies(rgw::sal::RGWRadosStore* store, struct req_state* s)
563 {
564 int ret = 0;
565 rgw_obj_key obj;
566 auto obj_ctx = store->svc()->sysobj->init_obj_ctx();
567
568 string bi = s->info.args.get(RGW_SYS_PARAM_PREFIX "bucket-instance");
569 if (!bi.empty()) {
570 string bucket_name;
571 ret = rgw_bucket_parse_bucket_instance(bi, &bucket_name, &s->bucket_instance_id, &s->bucket_instance_shard_id);
572 if (ret < 0) {
573 return ret;
574 }
575 }
576
577 if(s->dialect.compare("s3") == 0) {
578 s->bucket_acl = std::make_unique<RGWAccessControlPolicy_S3>(s->cct);
579 } else if(s->dialect.compare("swift") == 0) {
580 /* We aren't allocating the account policy for those operations using
581 * the Swift's infrastructure that don't really need req_state::user.
582 * Typical example here is the implementation of /info. */
583 if (!s->user->get_id().empty()) {
584 s->user_acl = std::make_unique<RGWAccessControlPolicy_SWIFTAcct>(s->cct);
585 }
586 s->bucket_acl = std::make_unique<RGWAccessControlPolicy_SWIFT>(s->cct);
587 } else {
588 s->bucket_acl = std::make_unique<RGWAccessControlPolicy>(s->cct);
589 }
590
591 /* check if copy source is within the current domain */
592 if (!s->src_bucket_name.empty()) {
593 RGWBucketInfo source_info;
594
595 if (s->bucket_instance_id.empty()) {
596 ret = store->getRados()->get_bucket_info(store->svc(), s->src_tenant_name, s->src_bucket_name, source_info, NULL, s->yield);
597 } else {
598 ret = store->getRados()->get_bucket_instance_info(obj_ctx, s->bucket_instance_id, source_info, NULL, NULL, s->yield);
599 }
600 if (ret == 0) {
601 string& zonegroup = source_info.zonegroup;
602 s->local_source = store->svc()->zone->get_zonegroup().equals(zonegroup);
603 }
604 }
605
606 struct {
607 rgw_user uid;
608 std::string display_name;
609 } acct_acl_user = {
610 s->user->get_id(),
611 s->user->get_display_name(),
612 };
613
614 if (!s->bucket_name.empty()) {
615 s->bucket_exists = true;
616
617 auto b = rgw_bucket(rgw_bucket_key(s->bucket_tenant, s->bucket_name, s->bucket_instance_id));
618
619 RGWObjVersionTracker ep_ot;
620 ret = store->ctl()->bucket->read_bucket_info(b, &s->bucket_info,
621 s->yield,
622 RGWBucketCtl::BucketInstance::GetParams()
623 .set_mtime(&s->bucket_mtime)
624 .set_attrs(&s->bucket_attrs),
625 &ep_ot);
626 if (ret < 0) {
627 if (ret != -ENOENT) {
628 string bucket_log;
629 bucket_log = rgw_make_bucket_entry_name(s->bucket_tenant, s->bucket_name);
630 ldpp_dout(s, 0) << "NOTICE: couldn't get bucket from bucket_name (name="
631 << bucket_log << ")" << dendl;
632 return ret;
633 }
634 s->bucket_exists = false;
635 }
636 s->bucket_ep_objv = ep_ot.read_version;
637 s->bucket = s->bucket_info.bucket;
638
639 if (s->bucket_exists) {
640 ret = read_bucket_policy(store, s, s->bucket_info, s->bucket_attrs,
641 s->bucket_acl.get(), s->bucket);
642 acct_acl_user = {
643 s->bucket_info.owner,
644 s->bucket_acl->get_owner().get_display_name(),
645 };
646 } else {
647 return -ERR_NO_SUCH_BUCKET;
648 }
649
650 s->bucket_owner = s->bucket_acl->get_owner();
651
652 RGWZoneGroup zonegroup;
653 int r = store->svc()->zone->get_zonegroup(s->bucket_info.zonegroup, zonegroup);
654 if (!r) {
655 if (!zonegroup.endpoints.empty()) {
656 s->zonegroup_endpoint = zonegroup.endpoints.front();
657 } else {
658 // use zonegroup's master zone endpoints
659 auto z = zonegroup.zones.find(zonegroup.master_zone);
660 if (z != zonegroup.zones.end() && !z->second.endpoints.empty()) {
661 s->zonegroup_endpoint = z->second.endpoints.front();
662 }
663 }
664 s->zonegroup_name = zonegroup.get_name();
665 }
666 if (r < 0 && ret == 0) {
667 ret = r;
668 }
669
670 if (s->bucket_exists && !store->svc()->zone->get_zonegroup().equals(s->bucket_info.zonegroup)) {
671 ldpp_dout(s, 0) << "NOTICE: request for data in a different zonegroup ("
672 << s->bucket_info.zonegroup << " != "
673 << store->svc()->zone->get_zonegroup().get_id() << ")" << dendl;
674 /* we now need to make sure that the operation actually requires copy source, that is
675 * it's a copy operation
676 */
677 if (store->svc()->zone->get_zonegroup().is_master_zonegroup() && s->system_request) {
678 /*If this is the master, don't redirect*/
679 } else if (s->op_type == RGW_OP_GET_BUCKET_LOCATION ) {
680 /* If op is get bucket location, don't redirect */
681 } else if (!s->local_source ||
682 (s->op != OP_PUT && s->op != OP_COPY) ||
683 s->object.empty()) {
684 return -ERR_PERMANENT_REDIRECT;
685 }
686 }
687
688 /* init dest placement -- only if bucket exists, otherwise request is either not relevant, or
689 * it's a create_bucket request, in which case the op will deal with the placement later */
690 if (s->bucket_exists) {
691 s->dest_placement.storage_class = s->info.storage_class;
692 s->dest_placement.inherit_from(s->bucket_info.placement_rule);
693
694 if (!store->svc()->zone->get_zone_params().valid_placement(s->dest_placement)) {
695 ldpp_dout(s, 0) << "NOTICE: invalid dest placement: " << s->dest_placement.to_str() << dendl;
696 return -EINVAL;
697 }
698 }
699
700 if(s->bucket_exists) {
701 s->bucket_access_conf = get_public_access_conf_from_attr(s->bucket_attrs);
702 }
703 }
704
705 /* handle user ACL only for those APIs which support it */
706 if (s->user_acl) {
707 map<string, bufferlist> uattrs;
708 ret = store->ctl()->user->get_attrs_by_uid(acct_acl_user.uid, &uattrs, s->yield);
709 if (!ret) {
710 ret = get_user_policy_from_attr(s->cct, store, uattrs, *s->user_acl);
711 }
712 if (-ENOENT == ret) {
713 /* In already existing clusters users won't have ACL. In such case
714 * assuming that only account owner has the rights seems to be
715 * reasonable. That allows to have only one verification logic.
716 * NOTE: there is small compatibility kludge for global, empty tenant:
717 * 1. if we try to reach an existing bucket, its owner is considered
718 * as account owner.
719 * 2. otherwise account owner is identity stored in s->user->user_id. */
720 s->user_acl->create_default(acct_acl_user.uid,
721 acct_acl_user.display_name);
722 ret = 0;
723 } else if (ret < 0) {
724 ldpp_dout(s, 0) << "NOTICE: couldn't get user attrs for handling ACL "
725 "(user_id=" << s->user->get_id() << ", ret=" << ret << ")" << dendl;
726 return ret;
727 }
728 }
729 // We don't need user policies in case of STS token returned by AssumeRole,
730 // hence the check for user type
731 if (! s->user->get_id().empty() && s->auth.identity->get_identity_type() != TYPE_ROLE) {
732 try {
733 map<string, bufferlist> uattrs;
734 if (ret = store->ctl()->user->get_attrs_by_uid(s->user->get_id(), &uattrs, s->yield); ! ret) {
735 if (s->iam_user_policies.empty()) {
736 s->iam_user_policies = get_iam_user_policy_from_attr(s->cct, store, uattrs, s->user->get_tenant());
737 } else {
738 // This scenario can happen when a STS token has a policy, then we need to append other user policies
739 // to the existing ones. (e.g. token returned by GetSessionToken)
740 auto user_policies = get_iam_user_policy_from_attr(s->cct, store, uattrs, s->user->get_tenant());
741 s->iam_user_policies.insert(s->iam_user_policies.end(), user_policies.begin(), user_policies.end());
742 }
743 } else {
744 if (ret == -ENOENT)
745 ret = 0;
746 else ret = -EACCES;
747 }
748 } catch (const std::exception& e) {
749 lderr(s->cct) << "Error reading IAM User Policy: " << e.what() << dendl;
750 ret = -EACCES;
751 }
752 }
753
754 try {
755 s->iam_policy = get_iam_policy_from_attr(s->cct, store, s->bucket_attrs,
756 s->bucket_tenant);
757 } catch (const std::exception& e) {
758 // Really this is a can't happen condition. We parse the policy
759 // when it's given to us, so perhaps we should abort or otherwise
760 // raise bloody murder.
761 ldpp_dout(s, 0) << "Error reading IAM Policy: " << e.what() << dendl;
762 ret = -EACCES;
763 }
764
765 bool success = store->svc()->zone->get_redirect_zone_endpoint(&s->redirect_zone_endpoint);
766 if (success) {
767 ldpp_dout(s, 20) << "redirect_zone_endpoint=" << s->redirect_zone_endpoint << dendl;
768 }
769
770 return ret;
771 }
772
773 /**
774 * Get the AccessControlPolicy for a bucket or object off of disk.
775 * s: The req_state to draw information from.
776 * only_bucket: If true, reads the bucket ACL rather than the object ACL.
777 * Returns: 0 on success, -ERR# otherwise.
778 */
779 int rgw_build_object_policies(rgw::sal::RGWRadosStore *store, struct req_state *s,
780 bool prefetch_data)
781 {
782 int ret = 0;
783
784 if (!s->object.empty()) {
785 if (!s->bucket_exists) {
786 return -ERR_NO_SUCH_BUCKET;
787 }
788 s->object_acl = std::make_unique<RGWAccessControlPolicy>(s->cct);
789 rgw_obj obj(s->bucket, s->object);
790
791 store->getRados()->set_atomic(s->obj_ctx, obj);
792 if (prefetch_data) {
793 store->getRados()->set_prefetch_data(s->obj_ctx, obj);
794 }
795 ret = read_obj_policy(store, s, s->bucket_info, s->bucket_attrs,
796 s->object_acl.get(), nullptr, s->iam_policy, s->bucket,
797 s->object);
798 }
799
800 return ret;
801 }
802
803 void rgw_add_to_iam_environment(rgw::IAM::Environment& e, std::string_view key, std::string_view val){
804 // This variant just adds non empty key pairs to IAM env., values can be empty
805 // in certain cases like tagging
806 if (!key.empty())
807 e.emplace(key,val);
808 }
809
810 static int rgw_iam_add_tags_from_bl(struct req_state* s, bufferlist& bl){
811 RGWObjTags& tagset = s->tagset;
812 try {
813 auto bliter = bl.cbegin();
814 tagset.decode(bliter);
815 } catch (buffer::error& err) {
816 ldpp_dout(s, 0) << "ERROR: caught buffer::error, couldn't decode TagSet" << dendl;
817 return -EIO;
818 }
819
820 for (const auto& tag: tagset.get_tags()){
821 rgw_add_to_iam_environment(s->env, "s3:ExistingObjectTag/" + tag.first, tag.second);
822 }
823 return 0;
824 }
825
826 static int rgw_iam_add_existing_objtags(rgw::sal::RGWRadosStore* store, struct req_state* s, rgw_obj& obj, std::uint64_t action){
827 map <string, bufferlist> attrs;
828 store->getRados()->set_atomic(s->obj_ctx, obj);
829 int op_ret = get_obj_attrs(store, s, obj, attrs);
830 if (op_ret < 0)
831 return op_ret;
832 auto tags = attrs.find(RGW_ATTR_TAGS);
833 if (tags != attrs.end()){
834 return rgw_iam_add_tags_from_bl(s, tags->second);
835 }
836 return 0;
837 }
838
839 static void rgw_add_grant_to_iam_environment(rgw::IAM::Environment& e, struct req_state *s){
840
841 using header_pair_t = std::pair <const char*, const char*>;
842 static const std::initializer_list <header_pair_t> acl_header_conditionals {
843 {"HTTP_X_AMZ_GRANT_READ", "s3:x-amz-grant-read"},
844 {"HTTP_X_AMZ_GRANT_WRITE", "s3:x-amz-grant-write"},
845 {"HTTP_X_AMZ_GRANT_READ_ACP", "s3:x-amz-grant-read-acp"},
846 {"HTTP_X_AMZ_GRANT_WRITE_ACP", "s3:x-amz-grant-write-acp"},
847 {"HTTP_X_AMZ_GRANT_FULL_CONTROL", "s3:x-amz-grant-full-control"}
848 };
849
850 if (s->has_acl_header){
851 for (const auto& c: acl_header_conditionals){
852 auto hdr = s->info.env->get(c.first);
853 if(hdr) {
854 e[c.second] = hdr;
855 }
856 }
857 }
858 }
859
860 void rgw_build_iam_environment(rgw::sal::RGWRadosStore* store,
861 struct req_state* s)
862 {
863 const auto& m = s->info.env->get_map();
864 auto t = ceph::real_clock::now();
865 s->env.emplace("aws:CurrentTime", std::to_string(ceph::real_clock::to_time_t(t)));
866 s->env.emplace("aws:EpochTime", ceph::to_iso_8601(t));
867 // TODO: This is fine for now, but once we have STS we'll need to
868 // look and see. Also this won't work with the IdentityApplier
869 // model, since we need to know the actual credential.
870 s->env.emplace("aws:PrincipalType", "User");
871
872 auto i = m.find("HTTP_REFERER");
873 if (i != m.end()) {
874 s->env.emplace("aws:Referer", i->second);
875 }
876
877 if (rgw_transport_is_secure(s->cct, *s->info.env)) {
878 s->env.emplace("aws:SecureTransport", "true");
879 }
880
881 const auto remote_addr_param = s->cct->_conf->rgw_remote_addr_param;
882 if (remote_addr_param.length()) {
883 i = m.find(remote_addr_param);
884 } else {
885 i = m.find("REMOTE_ADDR");
886 }
887 if (i != m.end()) {
888 const string* ip = &(i->second);
889 string temp;
890 if (remote_addr_param == "HTTP_X_FORWARDED_FOR") {
891 const auto comma = ip->find(',');
892 if (comma != string::npos) {
893 temp.assign(*ip, 0, comma);
894 ip = &temp;
895 }
896 }
897 s->env.emplace("aws:SourceIp", *ip);
898 }
899
900 i = m.find("HTTP_USER_AGENT"); {
901 if (i != m.end())
902 s->env.emplace("aws:UserAgent", i->second);
903 }
904
905 if (s->user) {
906 // What to do about aws::userid? One can have multiple access
907 // keys so that isn't really suitable. Do we have a durable
908 // identifier that can persist through name changes?
909 s->env.emplace("aws:username", s->user->get_id().id);
910 }
911
912 i = m.find("HTTP_X_AMZ_SECURITY_TOKEN");
913 if (i != m.end()) {
914 s->env.emplace("sts:authentication", "true");
915 } else {
916 s->env.emplace("sts:authentication", "false");
917 }
918 }
919
920 void rgw_bucket_object_pre_exec(struct req_state *s)
921 {
922 if (s->expect_cont)
923 dump_continue(s);
924
925 dump_bucket_from_state(s);
926 }
927
928 // So! Now and then when we try to update bucket information, the
929 // bucket has changed during the course of the operation. (Or we have
930 // a cache consistency problem that Watch/Notify isn't ruling out
931 // completely.)
932 //
933 // When this happens, we need to update the bucket info and try
934 // again. We have, however, to try the right *part* again. We can't
935 // simply re-send, since that will obliterate the previous update.
936 //
937 // Thus, callers of this function should include everything that
938 // merges information to be changed into the bucket information as
939 // well as the call to set it.
940 //
941 // The called function must return an integer, negative on error. In
942 // general, they should just return op_ret.
943 namespace {
944 template<typename F>
945 int retry_raced_bucket_write(RGWRados* g, req_state* s, const F& f) {
946 auto r = f();
947 for (auto i = 0u; i < 15u && r == -ECANCELED; ++i) {
948 r = g->try_refresh_bucket_info(s->bucket_info, nullptr,
949 &s->bucket_attrs);
950 if (r >= 0) {
951 r = f();
952 }
953 }
954 return r;
955 }
956 }
957
958
959 int RGWGetObj::verify_permission()
960 {
961 obj = rgw_obj(s->bucket, s->object);
962 store->getRados()->set_atomic(s->obj_ctx, obj);
963 if (get_data) {
964 store->getRados()->set_prefetch_data(s->obj_ctx, obj);
965 }
966
967 if (torrent.get_flag()) {
968 if (obj.key.instance.empty()) {
969 action = rgw::IAM::s3GetObjectTorrent;
970 } else {
971 action = rgw::IAM::s3GetObjectVersionTorrent;
972 }
973 } else {
974 if (obj.key.instance.empty()) {
975 action = rgw::IAM::s3GetObject;
976 } else {
977 action = rgw::IAM::s3GetObjectVersion;
978 }
979 if (s->iam_policy && s->iam_policy->has_partial_conditional(S3_EXISTING_OBJTAG))
980 rgw_iam_add_existing_objtags(store, s, obj, action);
981 if (! s->iam_user_policies.empty()) {
982 for (auto& user_policy : s->iam_user_policies) {
983 if (user_policy.has_partial_conditional(S3_EXISTING_OBJTAG))
984 rgw_iam_add_existing_objtags(store, s, obj, action);
985 }
986 }
987 }
988
989 if (!verify_object_permission(this, s, action)) {
990 return -EACCES;
991 }
992
993 if (s->bucket_info.obj_lock_enabled()) {
994 get_retention = verify_object_permission(this, s, rgw::IAM::s3GetObjectRetention);
995 get_legal_hold = verify_object_permission(this, s, rgw::IAM::s3GetObjectLegalHold);
996 }
997
998 return 0;
999 }
1000
1001 // cache the objects tags into the requests
1002 // use inside try/catch as "decode()" may throw
1003 void populate_tags_in_request(req_state* s, const std::map<std::string, bufferlist>& attrs) {
1004 const auto attr_iter = attrs.find(RGW_ATTR_TAGS);
1005 if (attr_iter != attrs.end()) {
1006 auto bliter = attr_iter->second.cbegin();
1007 decode(s->tagset, bliter);
1008 }
1009 }
1010
1011 // cache the objects metadata into the request
1012 void populate_metadata_in_request(req_state* s, std::map<std::string, bufferlist>& attrs) {
1013 for (auto& attr : attrs) {
1014 if (boost::algorithm::starts_with(attr.first, RGW_ATTR_META_PREFIX)) {
1015 std::string_view key(attr.first);
1016 key.remove_prefix(sizeof(RGW_ATTR_PREFIX)-1);
1017 s->info.x_meta_map.emplace(key, attr.second.c_str());
1018 }
1019 }
1020 }
1021
1022 int RGWOp::verify_op_mask()
1023 {
1024 uint32_t required_mask = op_mask();
1025
1026 ldpp_dout(this, 20) << "required_mask= " << required_mask
1027 << " user.op_mask=" << s->user->get_info().op_mask << dendl;
1028
1029 if ((s->user->get_info().op_mask & required_mask) != required_mask) {
1030 return -EPERM;
1031 }
1032
1033 if (!s->system_request && (required_mask & RGW_OP_TYPE_MODIFY) && !store->svc()->zone->zone_is_writeable()) {
1034 ldpp_dout(this, 5) << "NOTICE: modify request to a read-only zone by a "
1035 "non-system user, permission denied" << dendl;
1036 return -EPERM;
1037 }
1038
1039 return 0;
1040 }
1041
1042 int RGWGetObjTags::verify_permission()
1043 {
1044 auto iam_action = s->object.instance.empty()?
1045 rgw::IAM::s3GetObjectTagging:
1046 rgw::IAM::s3GetObjectVersionTagging;
1047 // TODO since we are parsing the bl now anyway, we probably change
1048 // the send_response function to accept RGWObjTag instead of a bl
1049 if (s->iam_policy && s->iam_policy->has_partial_conditional(S3_EXISTING_OBJTAG)){
1050 rgw_obj obj = rgw_obj(s->bucket, s->object);
1051 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
1052 }
1053 if (! s->iam_user_policies.empty()) {
1054 for (auto& user_policy : s->iam_user_policies) {
1055 if (user_policy.has_partial_conditional(S3_EXISTING_OBJTAG)) {
1056 rgw_obj obj = rgw_obj(s->bucket, s->object);
1057 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
1058 }
1059 }
1060 }
1061 if (!verify_object_permission(this, s,iam_action))
1062 return -EACCES;
1063
1064 return 0;
1065 }
1066
1067 void RGWGetObjTags::pre_exec()
1068 {
1069 rgw_bucket_object_pre_exec(s);
1070 }
1071
1072 void RGWGetObjTags::execute()
1073 {
1074 rgw_obj obj;
1075 map<string,bufferlist> attrs;
1076
1077 obj = rgw_obj(s->bucket, s->object);
1078
1079 store->getRados()->set_atomic(s->obj_ctx, obj);
1080
1081 op_ret = get_obj_attrs(store, s, obj, attrs);
1082 if (op_ret < 0) {
1083 ldpp_dout(this, 0) << "ERROR: failed to get obj attrs, obj=" << obj
1084 << " ret=" << op_ret << dendl;
1085 return;
1086 }
1087
1088 auto tags = attrs.find(RGW_ATTR_TAGS);
1089 if(tags != attrs.end()){
1090 has_tags = true;
1091 tags_bl.append(tags->second);
1092 }
1093 send_response_data(tags_bl);
1094 }
1095
1096 int RGWPutObjTags::verify_permission()
1097 {
1098 auto iam_action = s->object.instance.empty() ?
1099 rgw::IAM::s3PutObjectTagging:
1100 rgw::IAM::s3PutObjectVersionTagging;
1101
1102 if(s->iam_policy && s->iam_policy->has_partial_conditional(S3_EXISTING_OBJTAG)){
1103 auto obj = rgw_obj(s->bucket, s->object);
1104 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
1105 }
1106 if (! s->iam_user_policies.empty()) {
1107 for (auto& user_policy : s->iam_user_policies) {
1108 if (user_policy.has_partial_conditional(S3_EXISTING_OBJTAG)) {
1109 rgw_obj obj = rgw_obj(s->bucket, s->object);
1110 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
1111 }
1112 }
1113 }
1114 if (!verify_object_permission(this, s,iam_action))
1115 return -EACCES;
1116 return 0;
1117 }
1118
1119 void RGWPutObjTags::execute()
1120 {
1121 op_ret = get_params();
1122 if (op_ret < 0)
1123 return;
1124
1125 if (s->object.empty()){
1126 op_ret= -EINVAL; // we only support tagging on existing objects
1127 return;
1128 }
1129
1130 rgw_obj obj;
1131 obj = rgw_obj(s->bucket, s->object);
1132 store->getRados()->set_atomic(s->obj_ctx, obj);
1133 op_ret = modify_obj_attr(store, s, obj, RGW_ATTR_TAGS, tags_bl);
1134 if (op_ret == -ECANCELED){
1135 op_ret = -ERR_TAG_CONFLICT;
1136 }
1137 }
1138
1139 void RGWDeleteObjTags::pre_exec()
1140 {
1141 rgw_bucket_object_pre_exec(s);
1142 }
1143
1144
1145 int RGWDeleteObjTags::verify_permission()
1146 {
1147 if (!s->object.empty()) {
1148 auto iam_action = s->object.instance.empty() ?
1149 rgw::IAM::s3DeleteObjectTagging:
1150 rgw::IAM::s3DeleteObjectVersionTagging;
1151
1152 if (s->iam_policy && s->iam_policy->has_partial_conditional(S3_EXISTING_OBJTAG)){
1153 auto obj = rgw_obj(s->bucket, s->object);
1154 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
1155 }
1156 if (! s->iam_user_policies.empty()) {
1157 for (auto& user_policy : s->iam_user_policies) {
1158 if (user_policy.has_partial_conditional(S3_EXISTING_OBJTAG)) {
1159 auto obj = rgw_obj(s->bucket, s->object);
1160 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
1161 }
1162 }
1163 }
1164 if (!verify_object_permission(this, s, iam_action))
1165 return -EACCES;
1166 }
1167 return 0;
1168 }
1169
1170 void RGWDeleteObjTags::execute()
1171 {
1172 if (s->object.empty())
1173 return;
1174
1175 rgw_obj obj;
1176 obj = rgw_obj(s->bucket, s->object);
1177 store->getRados()->set_atomic(s->obj_ctx, obj);
1178 map <string, bufferlist> attrs;
1179 map <string, bufferlist> rmattr;
1180 bufferlist bl;
1181 rmattr[RGW_ATTR_TAGS] = bl;
1182 op_ret = store->getRados()->set_attrs(s->obj_ctx, s->bucket_info, obj, attrs, &rmattr, s->yield);
1183 }
1184
1185 int RGWGetBucketTags::verify_permission()
1186 {
1187
1188 if (!verify_bucket_permission(this, s, rgw::IAM::s3GetBucketTagging)) {
1189 return -EACCES;
1190 }
1191
1192 return 0;
1193 }
1194
1195 void RGWGetBucketTags::pre_exec()
1196 {
1197 rgw_bucket_object_pre_exec(s);
1198 }
1199
1200 void RGWGetBucketTags::execute()
1201 {
1202 auto iter = s->bucket_attrs.find(RGW_ATTR_TAGS);
1203 if (iter != s->bucket_attrs.end()) {
1204 has_tags = true;
1205 tags_bl.append(iter->second);
1206 } else {
1207 op_ret = -ERR_NO_SUCH_TAG_SET;
1208 }
1209 send_response_data(tags_bl);
1210 }
1211
1212 int RGWPutBucketTags::verify_permission() {
1213 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketTagging);
1214 }
1215
1216 void RGWPutBucketTags::execute() {
1217
1218 op_ret = get_params();
1219 if (op_ret < 0)
1220 return;
1221
1222 if (!store->svc()->zone->is_meta_master()) {
1223 op_ret = forward_request_to_master(s, nullptr, store, in_data, nullptr);
1224 if (op_ret < 0) {
1225 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
1226 }
1227 }
1228
1229 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
1230 map<string, bufferlist> attrs = s->bucket_attrs;
1231 attrs[RGW_ATTR_TAGS] = tags_bl;
1232 return store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs, &s->bucket_info.objv_tracker, s->yield);
1233 });
1234
1235 }
1236
1237 void RGWDeleteBucketTags::pre_exec()
1238 {
1239 rgw_bucket_object_pre_exec(s);
1240 }
1241
1242 int RGWDeleteBucketTags::verify_permission()
1243 {
1244 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketTagging);
1245 }
1246
1247 void RGWDeleteBucketTags::execute()
1248 {
1249 if (!store->svc()->zone->is_meta_master()) {
1250 bufferlist in_data;
1251 op_ret = forward_request_to_master(s, nullptr, store, in_data, nullptr);
1252 if (op_ret < 0) {
1253 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
1254 return;
1255 }
1256 }
1257
1258 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
1259 map<string, bufferlist> attrs = s->bucket_attrs;
1260 attrs.erase(RGW_ATTR_TAGS);
1261 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs, &s->bucket_info.objv_tracker, s->yield);
1262 if (op_ret < 0) {
1263 ldpp_dout(this, 0) << "RGWDeleteBucketTags() failed to remove RGW_ATTR_TAGS on bucket="
1264 << s->bucket.name
1265 << " returned err= " << op_ret << dendl;
1266 }
1267 return op_ret;
1268 });
1269 }
1270
1271 int RGWGetBucketReplication::verify_permission()
1272 {
1273 if (!verify_bucket_permission(this, s, rgw::IAM::s3GetReplicationConfiguration)) {
1274 return -EACCES;
1275 }
1276
1277 return 0;
1278 }
1279
1280 void RGWGetBucketReplication::pre_exec()
1281 {
1282 rgw_bucket_object_pre_exec(s);
1283 }
1284
1285 void RGWGetBucketReplication::execute()
1286 {
1287 send_response_data();
1288 }
1289
1290 int RGWPutBucketReplication::verify_permission() {
1291 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutReplicationConfiguration);
1292 }
1293
1294 void RGWPutBucketReplication::execute() {
1295
1296 op_ret = get_params();
1297 if (op_ret < 0)
1298 return;
1299
1300 if (!store->svc()->zone->is_meta_master()) {
1301 op_ret = forward_request_to_master(s, nullptr, store, in_data, nullptr);
1302 if (op_ret < 0) {
1303 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
1304 return;
1305 }
1306 }
1307
1308 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
1309 auto sync_policy = (s->bucket_info.sync_policy ? *s->bucket_info.sync_policy : rgw_sync_policy_info());
1310
1311 for (auto& group : sync_policy_groups) {
1312 sync_policy.groups[group.id] = group;
1313 }
1314
1315 s->bucket_info.set_sync_policy(std::move(sync_policy));
1316
1317 int ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false, real_time(),
1318 &s->bucket_attrs);
1319 if (ret < 0) {
1320 ldpp_dout(this, 0) << "ERROR: put_bucket_instance_info (bucket=" << s->bucket_info.bucket.get_key() << ") returned ret=" << ret << dendl;
1321 return ret;
1322 }
1323
1324 return 0;
1325 });
1326 }
1327
1328 void RGWDeleteBucketReplication::pre_exec()
1329 {
1330 rgw_bucket_object_pre_exec(s);
1331 }
1332
1333 int RGWDeleteBucketReplication::verify_permission()
1334 {
1335 return verify_bucket_owner_or_policy(s, rgw::IAM::s3DeleteReplicationConfiguration);
1336 }
1337
1338 void RGWDeleteBucketReplication::execute()
1339 {
1340 if (!store->svc()->zone->is_meta_master()) {
1341 bufferlist in_data;
1342 op_ret = forward_request_to_master(s, nullptr, store, in_data, nullptr);
1343 if (op_ret < 0) {
1344 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
1345 return;
1346 }
1347 }
1348
1349 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
1350 if (!s->bucket_info.sync_policy) {
1351 return 0;
1352 }
1353
1354 rgw_sync_policy_info sync_policy = *s->bucket_info.sync_policy;
1355
1356 update_sync_policy(&sync_policy);
1357
1358 s->bucket_info.set_sync_policy(std::move(sync_policy));
1359
1360 int ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false, real_time(),
1361 &s->bucket_attrs);
1362 if (ret < 0) {
1363 ldpp_dout(this, 0) << "ERROR: put_bucket_instance_info (bucket=" << s->bucket_info.bucket.get_key() << ") returned ret=" << ret << dendl;
1364 return ret;
1365 }
1366
1367 return 0;
1368 });
1369 }
1370
1371 int RGWOp::do_aws4_auth_completion()
1372 {
1373 ldpp_dout(this, 5) << "NOTICE: call to do_aws4_auth_completion" << dendl;
1374 if (s->auth.completer) {
1375 if (!s->auth.completer->complete()) {
1376 return -ERR_AMZ_CONTENT_SHA256_MISMATCH;
1377 } else {
1378 ldpp_dout(this, 10) << "v4 auth ok -- do_aws4_auth_completion" << dendl;
1379 }
1380
1381 /* TODO(rzarzynski): yes, we're really called twice on PUTs. Only first
1382 * call passes, so we disable second one. This is old behaviour, sorry!
1383 * Plan for tomorrow: seek and destroy. */
1384 s->auth.completer = nullptr;
1385 }
1386
1387 return 0;
1388 }
1389
1390 int RGWOp::init_quota()
1391 {
1392 /* no quota enforcement for system requests */
1393 if (s->system_request)
1394 return 0;
1395
1396 /* init quota related stuff */
1397 if (!(s->user->get_info().op_mask & RGW_OP_TYPE_MODIFY)) {
1398 return 0;
1399 }
1400
1401 /* only interested in object related ops */
1402 if (s->object.empty()) {
1403 return 0;
1404 }
1405
1406 rgw::sal::RGWRadosUser owner_user(store);
1407 rgw::sal::RGWUser *user;
1408
1409 if (s->user->get_id() == s->bucket_owner.get_id()) {
1410 user = s->user;
1411 } else {
1412 int r = owner_user.get_by_id(s->bucket_info.owner, s->yield);
1413 if (r < 0)
1414 return r;
1415 user = &owner_user;
1416 }
1417
1418 if (s->bucket_info.quota.enabled) {
1419 bucket_quota = s->bucket_info.quota;
1420 } else if (user->get_info().bucket_quota.enabled) {
1421 bucket_quota = user->get_info().bucket_quota;
1422 } else {
1423 bucket_quota = store->svc()->quota->get_bucket_quota();
1424 }
1425
1426 if (user->get_info().user_quota.enabled) {
1427 user_quota = user->get_info().user_quota;
1428 } else {
1429 user_quota = store->svc()->quota->get_user_quota();
1430 }
1431
1432 return 0;
1433 }
1434
1435 static bool validate_cors_rule_method(RGWCORSRule *rule, const char *req_meth) {
1436 uint8_t flags = 0;
1437
1438 if (!req_meth) {
1439 dout(5) << "req_meth is null" << dendl;
1440 return false;
1441 }
1442
1443 if (strcmp(req_meth, "GET") == 0) flags = RGW_CORS_GET;
1444 else if (strcmp(req_meth, "POST") == 0) flags = RGW_CORS_POST;
1445 else if (strcmp(req_meth, "PUT") == 0) flags = RGW_CORS_PUT;
1446 else if (strcmp(req_meth, "DELETE") == 0) flags = RGW_CORS_DELETE;
1447 else if (strcmp(req_meth, "HEAD") == 0) flags = RGW_CORS_HEAD;
1448
1449 if (rule->get_allowed_methods() & flags) {
1450 dout(10) << "Method " << req_meth << " is supported" << dendl;
1451 } else {
1452 dout(5) << "Method " << req_meth << " is not supported" << dendl;
1453 return false;
1454 }
1455
1456 return true;
1457 }
1458
1459 static bool validate_cors_rule_header(RGWCORSRule *rule, const char *req_hdrs) {
1460 if (req_hdrs) {
1461 vector<string> hdrs;
1462 get_str_vec(req_hdrs, hdrs);
1463 for (const auto& hdr : hdrs) {
1464 if (!rule->is_header_allowed(hdr.c_str(), hdr.length())) {
1465 dout(5) << "Header " << hdr << " is not registered in this rule" << dendl;
1466 return false;
1467 }
1468 }
1469 }
1470 return true;
1471 }
1472
1473 int RGWOp::read_bucket_cors()
1474 {
1475 bufferlist bl;
1476
1477 map<string, bufferlist>::iterator aiter = s->bucket_attrs.find(RGW_ATTR_CORS);
1478 if (aiter == s->bucket_attrs.end()) {
1479 ldpp_dout(this, 20) << "no CORS configuration attr found" << dendl;
1480 cors_exist = false;
1481 return 0; /* no CORS configuration found */
1482 }
1483
1484 cors_exist = true;
1485
1486 bl = aiter->second;
1487
1488 auto iter = bl.cbegin();
1489 try {
1490 bucket_cors.decode(iter);
1491 } catch (buffer::error& err) {
1492 ldpp_dout(this, 0) << "ERROR: could not decode policy, caught buffer::error" << dendl;
1493 return -EIO;
1494 }
1495 if (s->cct->_conf->subsys.should_gather<ceph_subsys_rgw, 15>()) {
1496 RGWCORSConfiguration_S3 *s3cors = static_cast<RGWCORSConfiguration_S3 *>(&bucket_cors);
1497 ldpp_dout(this, 15) << "Read RGWCORSConfiguration";
1498 s3cors->to_xml(*_dout);
1499 *_dout << dendl;
1500 }
1501 return 0;
1502 }
1503
1504 /** CORS 6.2.6.
1505 * If any of the header field-names is not a ASCII case-insensitive match for
1506 * any of the values in list of headers do not set any additional headers and
1507 * terminate this set of steps.
1508 * */
1509 static void get_cors_response_headers(RGWCORSRule *rule, const char *req_hdrs, string& hdrs, string& exp_hdrs, unsigned *max_age) {
1510 if (req_hdrs) {
1511 list<string> hl;
1512 get_str_list(req_hdrs, hl);
1513 for(list<string>::iterator it = hl.begin(); it != hl.end(); ++it) {
1514 if (!rule->is_header_allowed((*it).c_str(), (*it).length())) {
1515 dout(5) << "Header " << (*it) << " is not registered in this rule" << dendl;
1516 } else {
1517 if (hdrs.length() > 0) hdrs.append(",");
1518 hdrs.append((*it));
1519 }
1520 }
1521 }
1522 rule->format_exp_headers(exp_hdrs);
1523 *max_age = rule->get_max_age();
1524 }
1525
1526 /**
1527 * Generate the CORS header response
1528 *
1529 * This is described in the CORS standard, section 6.2.
1530 */
1531 bool RGWOp::generate_cors_headers(string& origin, string& method, string& headers, string& exp_headers, unsigned *max_age)
1532 {
1533 /* CORS 6.2.1. */
1534 const char *orig = s->info.env->get("HTTP_ORIGIN");
1535 if (!orig) {
1536 return false;
1537 }
1538
1539 /* Custom: */
1540 origin = orig;
1541 int temp_op_ret = read_bucket_cors();
1542 if (temp_op_ret < 0) {
1543 op_ret = temp_op_ret;
1544 return false;
1545 }
1546
1547 if (!cors_exist) {
1548 ldpp_dout(this, 2) << "No CORS configuration set yet for this bucket" << dendl;
1549 return false;
1550 }
1551
1552 /* CORS 6.2.2. */
1553 RGWCORSRule *rule = bucket_cors.host_name_rule(orig);
1554 if (!rule)
1555 return false;
1556
1557 /*
1558 * Set the Allowed-Origin header to a asterisk if this is allowed in the rule
1559 * and no Authorization was send by the client
1560 *
1561 * The origin parameter specifies a URI that may access the resource. The browser must enforce this.
1562 * For requests without credentials, the server may specify "*" as a wildcard,
1563 * thereby allowing any origin to access the resource.
1564 */
1565 const char *authorization = s->info.env->get("HTTP_AUTHORIZATION");
1566 if (!authorization && rule->has_wildcard_origin())
1567 origin = "*";
1568
1569 /* CORS 6.2.3. */
1570 const char *req_meth = s->info.env->get("HTTP_ACCESS_CONTROL_REQUEST_METHOD");
1571 if (!req_meth) {
1572 req_meth = s->info.method;
1573 }
1574
1575 if (req_meth) {
1576 method = req_meth;
1577 /* CORS 6.2.5. */
1578 if (!validate_cors_rule_method(rule, req_meth)) {
1579 return false;
1580 }
1581 }
1582
1583 /* CORS 6.2.4. */
1584 const char *req_hdrs = s->info.env->get("HTTP_ACCESS_CONTROL_REQUEST_HEADERS");
1585
1586 /* CORS 6.2.6. */
1587 get_cors_response_headers(rule, req_hdrs, headers, exp_headers, max_age);
1588
1589 return true;
1590 }
1591
1592 int RGWGetObj::read_user_manifest_part(rgw_bucket& bucket,
1593 const rgw_bucket_dir_entry& ent,
1594 RGWAccessControlPolicy * const bucket_acl,
1595 const boost::optional<Policy>& bucket_policy,
1596 const off_t start_ofs,
1597 const off_t end_ofs,
1598 bool swift_slo)
1599 {
1600 ldpp_dout(this, 20) << "user manifest obj=" << ent.key.name
1601 << "[" << ent.key.instance << "]" << dendl;
1602 RGWGetObj_CB cb(this);
1603 RGWGetObj_Filter* filter = &cb;
1604 boost::optional<RGWGetObj_Decompress> decompress;
1605
1606 int64_t cur_ofs = start_ofs;
1607 int64_t cur_end = end_ofs;
1608
1609 rgw_obj part(bucket, ent.key);
1610
1611 map<string, bufferlist> attrs;
1612
1613 uint64_t obj_size;
1614 RGWObjectCtx obj_ctx(store);
1615 RGWAccessControlPolicy obj_policy(s->cct);
1616
1617 ldpp_dout(this, 20) << "reading obj=" << part << " ofs=" << cur_ofs
1618 << " end=" << cur_end << dendl;
1619
1620 obj_ctx.set_atomic(part);
1621 store->getRados()->set_prefetch_data(&obj_ctx, part);
1622
1623 RGWRados::Object op_target(store->getRados(), s->bucket_info, obj_ctx, part);
1624 RGWRados::Object::Read read_op(&op_target);
1625
1626 if (!swift_slo) {
1627 /* SLO etag is optional */
1628 read_op.conds.if_match = ent.meta.etag.c_str();
1629 }
1630 read_op.params.attrs = &attrs;
1631 read_op.params.obj_size = &obj_size;
1632
1633 op_ret = read_op.prepare(s->yield);
1634 if (op_ret < 0)
1635 return op_ret;
1636 op_ret = read_op.range_to_ofs(ent.meta.accounted_size, cur_ofs, cur_end);
1637 if (op_ret < 0)
1638 return op_ret;
1639 bool need_decompress;
1640 op_ret = rgw_compression_info_from_attrset(attrs, need_decompress, cs_info);
1641 if (op_ret < 0) {
1642 ldpp_dout(this, 0) << "ERROR: failed to decode compression info" << dendl;
1643 return -EIO;
1644 }
1645
1646 if (need_decompress)
1647 {
1648 if (cs_info.orig_size != ent.meta.accounted_size) {
1649 // hmm.. something wrong, object not as expected, abort!
1650 ldpp_dout(this, 0) << "ERROR: expected cs_info.orig_size=" << cs_info.orig_size
1651 << ", actual read size=" << ent.meta.size << dendl;
1652 return -EIO;
1653 }
1654 decompress.emplace(s->cct, &cs_info, partial_content, filter);
1655 filter = &*decompress;
1656 }
1657 else
1658 {
1659 if (obj_size != ent.meta.size) {
1660 // hmm.. something wrong, object not as expected, abort!
1661 ldpp_dout(this, 0) << "ERROR: expected obj_size=" << obj_size
1662 << ", actual read size=" << ent.meta.size << dendl;
1663 return -EIO;
1664 }
1665 }
1666
1667 op_ret = rgw_policy_from_attrset(s->cct, attrs, &obj_policy);
1668 if (op_ret < 0)
1669 return op_ret;
1670
1671 /* We can use global user_acl because LOs cannot have segments
1672 * stored inside different accounts. */
1673 if (s->system_request) {
1674 ldpp_dout(this, 2) << "overriding permissions due to system operation" << dendl;
1675 } else if (s->auth.identity->is_admin_of(s->user->get_id())) {
1676 ldpp_dout(this, 2) << "overriding permissions due to admin operation" << dendl;
1677 } else if (!verify_object_permission(this, s, part, s->user_acl.get(), bucket_acl,
1678 &obj_policy, bucket_policy, s->iam_user_policies, action)) {
1679 return -EPERM;
1680 }
1681 if (ent.meta.size == 0) {
1682 return 0;
1683 }
1684
1685 perfcounter->inc(l_rgw_get_b, cur_end - cur_ofs);
1686 filter->fixup_range(cur_ofs, cur_end);
1687 op_ret = read_op.iterate(cur_ofs, cur_end, filter, s->yield);
1688 if (op_ret >= 0)
1689 op_ret = filter->flush();
1690 return op_ret;
1691 }
1692
1693 static int iterate_user_manifest_parts(CephContext * const cct,
1694 rgw::sal::RGWRadosStore * const store,
1695 const off_t ofs,
1696 const off_t end,
1697 RGWBucketInfo *pbucket_info,
1698 const string& obj_prefix,
1699 RGWAccessControlPolicy * const bucket_acl,
1700 const boost::optional<Policy>& bucket_policy,
1701 uint64_t * const ptotal_len,
1702 uint64_t * const pobj_size,
1703 string * const pobj_sum,
1704 int (*cb)(rgw_bucket& bucket,
1705 const rgw_bucket_dir_entry& ent,
1706 RGWAccessControlPolicy * const bucket_acl,
1707 const boost::optional<Policy>& bucket_policy,
1708 off_t start_ofs,
1709 off_t end_ofs,
1710 void *param,
1711 bool swift_slo),
1712 void * const cb_param)
1713 {
1714 rgw_bucket& bucket = pbucket_info->bucket;
1715 uint64_t obj_ofs = 0, len_count = 0;
1716 bool found_start = false, found_end = false, handled_end = false;
1717 string delim;
1718 bool is_truncated;
1719 vector<rgw_bucket_dir_entry> objs;
1720
1721 utime_t start_time = ceph_clock_now();
1722
1723 RGWRados::Bucket target(store->getRados(), *pbucket_info);
1724 RGWRados::Bucket::List list_op(&target);
1725
1726 list_op.params.prefix = obj_prefix;
1727 list_op.params.delim = delim;
1728
1729 MD5 etag_sum;
1730 do {
1731 #define MAX_LIST_OBJS 100
1732 int r = list_op.list_objects(MAX_LIST_OBJS, &objs, NULL, &is_truncated, null_yield);
1733 if (r < 0) {
1734 return r;
1735 }
1736
1737 for (rgw_bucket_dir_entry& ent : objs) {
1738 const uint64_t cur_total_len = obj_ofs;
1739 const uint64_t obj_size = ent.meta.accounted_size;
1740 uint64_t start_ofs = 0, end_ofs = obj_size;
1741
1742 if ((ptotal_len || cb) && !found_start && cur_total_len + obj_size > (uint64_t)ofs) {
1743 start_ofs = ofs - obj_ofs;
1744 found_start = true;
1745 }
1746
1747 obj_ofs += obj_size;
1748 if (pobj_sum) {
1749 etag_sum.Update((const unsigned char *)ent.meta.etag.c_str(),
1750 ent.meta.etag.length());
1751 }
1752
1753 if ((ptotal_len || cb) && !found_end && obj_ofs > (uint64_t)end) {
1754 end_ofs = end - cur_total_len + 1;
1755 found_end = true;
1756 }
1757
1758 perfcounter->tinc(l_rgw_get_lat,
1759 (ceph_clock_now() - start_time));
1760
1761 if (found_start && !handled_end) {
1762 len_count += end_ofs - start_ofs;
1763
1764 if (cb) {
1765 r = cb(bucket, ent, bucket_acl, bucket_policy, start_ofs, end_ofs,
1766 cb_param, false /* swift_slo */);
1767 if (r < 0) {
1768 return r;
1769 }
1770 }
1771 }
1772
1773 handled_end = found_end;
1774 start_time = ceph_clock_now();
1775 }
1776 } while (is_truncated);
1777
1778 if (ptotal_len) {
1779 *ptotal_len = len_count;
1780 }
1781 if (pobj_size) {
1782 *pobj_size = obj_ofs;
1783 }
1784 if (pobj_sum) {
1785 complete_etag(etag_sum, pobj_sum);
1786 }
1787
1788 return 0;
1789 }
1790
1791 struct rgw_slo_part {
1792 RGWAccessControlPolicy *bucket_acl = nullptr;
1793 Policy* bucket_policy = nullptr;
1794 rgw_bucket bucket;
1795 string obj_name;
1796 uint64_t size = 0;
1797 string etag;
1798 };
1799
1800 static int iterate_slo_parts(CephContext *cct,
1801 rgw::sal::RGWRadosStore *store,
1802 off_t ofs,
1803 off_t end,
1804 map<uint64_t, rgw_slo_part>& slo_parts,
1805 int (*cb)(rgw_bucket& bucket,
1806 const rgw_bucket_dir_entry& ent,
1807 RGWAccessControlPolicy *bucket_acl,
1808 const boost::optional<Policy>& bucket_policy,
1809 off_t start_ofs,
1810 off_t end_ofs,
1811 void *param,
1812 bool swift_slo),
1813 void *cb_param)
1814 {
1815 bool found_start = false, found_end = false;
1816
1817 if (slo_parts.empty()) {
1818 return 0;
1819 }
1820
1821 utime_t start_time = ceph_clock_now();
1822
1823 map<uint64_t, rgw_slo_part>::iterator iter = slo_parts.upper_bound(ofs);
1824 if (iter != slo_parts.begin()) {
1825 --iter;
1826 }
1827
1828 uint64_t obj_ofs = iter->first;
1829
1830 for (; iter != slo_parts.end() && !found_end; ++iter) {
1831 rgw_slo_part& part = iter->second;
1832 rgw_bucket_dir_entry ent;
1833
1834 ent.key.name = part.obj_name;
1835 ent.meta.accounted_size = ent.meta.size = part.size;
1836 ent.meta.etag = part.etag;
1837
1838 uint64_t cur_total_len = obj_ofs;
1839 uint64_t start_ofs = 0, end_ofs = ent.meta.size - 1;
1840
1841 if (!found_start && cur_total_len + ent.meta.size > (uint64_t)ofs) {
1842 start_ofs = ofs - obj_ofs;
1843 found_start = true;
1844 }
1845
1846 obj_ofs += ent.meta.size;
1847
1848 if (!found_end && obj_ofs > (uint64_t)end) {
1849 end_ofs = end - cur_total_len;
1850 found_end = true;
1851 }
1852
1853 perfcounter->tinc(l_rgw_get_lat,
1854 (ceph_clock_now() - start_time));
1855
1856 if (found_start) {
1857 if (cb) {
1858 dout(20) << "iterate_slo_parts()"
1859 << " obj=" << part.obj_name
1860 << " start_ofs=" << start_ofs
1861 << " end_ofs=" << end_ofs
1862 << dendl;
1863
1864 // SLO is a Swift thing, and Swift has no knowledge of S3 Policies.
1865 int r = cb(part.bucket, ent, part.bucket_acl,
1866 (part.bucket_policy ?
1867 boost::optional<Policy>(*part.bucket_policy) : none),
1868 start_ofs, end_ofs, cb_param, true /* swift_slo */);
1869 if (r < 0)
1870 return r;
1871 }
1872 }
1873
1874 start_time = ceph_clock_now();
1875 }
1876
1877 return 0;
1878 }
1879
1880 static int get_obj_user_manifest_iterate_cb(rgw_bucket& bucket,
1881 const rgw_bucket_dir_entry& ent,
1882 RGWAccessControlPolicy * const bucket_acl,
1883 const boost::optional<Policy>& bucket_policy,
1884 const off_t start_ofs,
1885 const off_t end_ofs,
1886 void * const param,
1887 bool swift_slo = false)
1888 {
1889 RGWGetObj *op = static_cast<RGWGetObj *>(param);
1890 return op->read_user_manifest_part(
1891 bucket, ent, bucket_acl, bucket_policy, start_ofs, end_ofs, swift_slo);
1892 }
1893
1894 int RGWGetObj::handle_user_manifest(const char *prefix)
1895 {
1896 const boost::string_view prefix_view(prefix);
1897 ldpp_dout(this, 2) << "RGWGetObj::handle_user_manifest() prefix="
1898 << prefix_view << dendl;
1899
1900 const size_t pos = prefix_view.find('/');
1901 if (pos == string::npos) {
1902 return -EINVAL;
1903 }
1904
1905 const std::string bucket_name = url_decode(prefix_view.substr(0, pos));
1906 const std::string obj_prefix = url_decode(prefix_view.substr(pos + 1));
1907
1908 rgw_bucket bucket;
1909
1910 RGWAccessControlPolicy _bucket_acl(s->cct);
1911 RGWAccessControlPolicy *bucket_acl;
1912 boost::optional<Policy> _bucket_policy;
1913 boost::optional<Policy>* bucket_policy;
1914 RGWBucketInfo bucket_info;
1915 RGWBucketInfo *pbucket_info;
1916
1917 if (bucket_name.compare(s->bucket.name) != 0) {
1918 map<string, bufferlist> bucket_attrs;
1919 auto obj_ctx = store->svc()->sysobj->init_obj_ctx();
1920 int r = store->getRados()->get_bucket_info(store->svc(), s->user->get_tenant(),
1921 bucket_name, bucket_info, NULL,
1922 s->yield, &bucket_attrs);
1923 if (r < 0) {
1924 ldpp_dout(this, 0) << "could not get bucket info for bucket="
1925 << bucket_name << dendl;
1926 return r;
1927 }
1928 bucket = bucket_info.bucket;
1929 pbucket_info = &bucket_info;
1930 bucket_acl = &_bucket_acl;
1931 r = read_bucket_policy(store, s, bucket_info, bucket_attrs, bucket_acl, bucket);
1932 if (r < 0) {
1933 ldpp_dout(this, 0) << "failed to read bucket policy" << dendl;
1934 return r;
1935 }
1936 _bucket_policy = get_iam_policy_from_attr(s->cct, store, bucket_attrs,
1937 bucket_info.bucket.tenant);
1938 bucket_policy = &_bucket_policy;
1939 } else {
1940 bucket = s->bucket;
1941 pbucket_info = &s->bucket_info;
1942 bucket_acl = s->bucket_acl.get();
1943 bucket_policy = &s->iam_policy;
1944 }
1945
1946 /* dry run to find out:
1947 * - total length (of the parts we are going to send to client),
1948 * - overall DLO's content size,
1949 * - md5 sum of overall DLO's content (for etag of Swift API). */
1950 int r = iterate_user_manifest_parts(s->cct, store, ofs, end,
1951 pbucket_info, obj_prefix, bucket_acl, *bucket_policy,
1952 nullptr, &s->obj_size, &lo_etag,
1953 nullptr /* cb */, nullptr /* cb arg */);
1954 if (r < 0) {
1955 return r;
1956 }
1957
1958 r = RGWRados::Object::Read::range_to_ofs(s->obj_size, ofs, end);
1959 if (r < 0) {
1960 return r;
1961 }
1962
1963 r = iterate_user_manifest_parts(s->cct, store, ofs, end,
1964 pbucket_info, obj_prefix, bucket_acl, *bucket_policy,
1965 &total_len, nullptr, nullptr,
1966 nullptr, nullptr);
1967 if (r < 0) {
1968 return r;
1969 }
1970
1971 if (!get_data) {
1972 bufferlist bl;
1973 send_response_data(bl, 0, 0);
1974 return 0;
1975 }
1976
1977 r = iterate_user_manifest_parts(s->cct, store, ofs, end,
1978 pbucket_info, obj_prefix, bucket_acl, *bucket_policy,
1979 nullptr, nullptr, nullptr,
1980 get_obj_user_manifest_iterate_cb, (void *)this);
1981 if (r < 0) {
1982 return r;
1983 }
1984
1985 if (!total_len) {
1986 bufferlist bl;
1987 send_response_data(bl, 0, 0);
1988 }
1989
1990 return 0;
1991 }
1992
1993 int RGWGetObj::handle_slo_manifest(bufferlist& bl)
1994 {
1995 RGWSLOInfo slo_info;
1996 auto bliter = bl.cbegin();
1997 try {
1998 decode(slo_info, bliter);
1999 } catch (buffer::error& err) {
2000 ldpp_dout(this, 0) << "ERROR: failed to decode slo manifest" << dendl;
2001 return -EIO;
2002 }
2003 ldpp_dout(this, 2) << "RGWGetObj::handle_slo_manifest()" << dendl;
2004
2005 vector<RGWAccessControlPolicy> allocated_acls;
2006 map<string, pair<RGWAccessControlPolicy *, boost::optional<Policy>>> policies;
2007 map<string, rgw_bucket> buckets;
2008
2009 map<uint64_t, rgw_slo_part> slo_parts;
2010
2011 MD5 etag_sum;
2012 total_len = 0;
2013
2014 for (const auto& entry : slo_info.entries) {
2015 const string& path = entry.path;
2016
2017 /* If the path starts with slashes, strip them all. */
2018 const size_t pos_init = path.find_first_not_of('/');
2019 /* According to the documentation of std::string::find following check
2020 * is not necessary as we should get the std::string::npos propagation
2021 * here. This might be true with the accuracy to implementation's bugs.
2022 * See following question on SO:
2023 * http://stackoverflow.com/questions/1011790/why-does-stdstring-findtext-stdstringnpos-not-return-npos
2024 */
2025 if (pos_init == string::npos) {
2026 return -EINVAL;
2027 }
2028
2029 const size_t pos_sep = path.find('/', pos_init);
2030 if (pos_sep == string::npos) {
2031 return -EINVAL;
2032 }
2033
2034 string bucket_name = path.substr(pos_init, pos_sep - pos_init);
2035 string obj_name = path.substr(pos_sep + 1);
2036
2037 rgw_bucket bucket;
2038 RGWAccessControlPolicy *bucket_acl;
2039 Policy* bucket_policy;
2040
2041 if (bucket_name.compare(s->bucket.name) != 0) {
2042 const auto& piter = policies.find(bucket_name);
2043 if (piter != policies.end()) {
2044 bucket_acl = piter->second.first;
2045 bucket_policy = piter->second.second.get_ptr();
2046 bucket = buckets[bucket_name];
2047 } else {
2048 allocated_acls.push_back(RGWAccessControlPolicy(s->cct));
2049 RGWAccessControlPolicy& _bucket_acl = allocated_acls.back();
2050
2051 RGWBucketInfo bucket_info;
2052 map<string, bufferlist> bucket_attrs;
2053 auto obj_ctx = store->svc()->sysobj->init_obj_ctx();
2054 int r = store->getRados()->get_bucket_info(store->svc(), s->user->get_tenant(),
2055 bucket_name, bucket_info, nullptr,
2056 s->yield, &bucket_attrs);
2057 if (r < 0) {
2058 ldpp_dout(this, 0) << "could not get bucket info for bucket="
2059 << bucket_name << dendl;
2060 return r;
2061 }
2062 bucket = bucket_info.bucket;
2063 bucket_acl = &_bucket_acl;
2064 r = read_bucket_policy(store, s, bucket_info, bucket_attrs, bucket_acl,
2065 bucket);
2066 if (r < 0) {
2067 ldpp_dout(this, 0) << "failed to read bucket ACL for bucket "
2068 << bucket << dendl;
2069 return r;
2070 }
2071 auto _bucket_policy = get_iam_policy_from_attr(
2072 s->cct, store, bucket_attrs, bucket_info.bucket.tenant);
2073 bucket_policy = _bucket_policy.get_ptr();
2074 buckets[bucket_name] = bucket;
2075 policies[bucket_name] = make_pair(bucket_acl, _bucket_policy);
2076 }
2077 } else {
2078 bucket = s->bucket;
2079 bucket_acl = s->bucket_acl.get();
2080 bucket_policy = s->iam_policy.get_ptr();
2081 }
2082
2083 rgw_slo_part part;
2084 part.bucket_acl = bucket_acl;
2085 part.bucket_policy = bucket_policy;
2086 part.bucket = bucket;
2087 part.obj_name = obj_name;
2088 part.size = entry.size_bytes;
2089 part.etag = entry.etag;
2090 ldpp_dout(this, 20) << "slo_part: bucket=" << part.bucket
2091 << " obj=" << part.obj_name
2092 << " size=" << part.size
2093 << " etag=" << part.etag
2094 << dendl;
2095
2096 etag_sum.Update((const unsigned char *)entry.etag.c_str(),
2097 entry.etag.length());
2098
2099 slo_parts[total_len] = part;
2100 total_len += part.size;
2101 } /* foreach entry */
2102
2103 complete_etag(etag_sum, &lo_etag);
2104
2105 s->obj_size = slo_info.total_size;
2106 ldpp_dout(this, 20) << "s->obj_size=" << s->obj_size << dendl;
2107
2108 int r = RGWRados::Object::Read::range_to_ofs(total_len, ofs, end);
2109 if (r < 0) {
2110 return r;
2111 }
2112
2113 total_len = end - ofs + 1;
2114 ldpp_dout(this, 20) << "Requested: ofs=" << ofs
2115 << " end=" << end
2116 << " total=" << total_len
2117 << dendl;
2118
2119 r = iterate_slo_parts(s->cct, store, ofs, end, slo_parts,
2120 get_obj_user_manifest_iterate_cb, (void *)this);
2121 if (r < 0) {
2122 return r;
2123 }
2124
2125 return 0;
2126 }
2127
2128 int RGWGetObj::get_data_cb(bufferlist& bl, off_t bl_ofs, off_t bl_len)
2129 {
2130 /* garbage collection related handling */
2131 utime_t start_time = ceph_clock_now();
2132 if (start_time > gc_invalidate_time) {
2133 int r = store->getRados()->defer_gc(s->obj_ctx, s->bucket_info, obj, s->yield);
2134 if (r < 0) {
2135 ldpp_dout(this, 0) << "WARNING: could not defer gc entry for obj" << dendl;
2136 }
2137 gc_invalidate_time = start_time;
2138 gc_invalidate_time += (s->cct->_conf->rgw_gc_obj_min_wait / 2);
2139 }
2140 return send_response_data(bl, bl_ofs, bl_len);
2141 }
2142
2143 bool RGWGetObj::prefetch_data()
2144 {
2145 /* HEAD request, stop prefetch*/
2146 if (!get_data) {
2147 return false;
2148 }
2149
2150 range_str = s->info.env->get("HTTP_RANGE");
2151 // TODO: add range prefetch
2152 if (range_str) {
2153 parse_range();
2154 return false;
2155 }
2156
2157 return get_data;
2158 }
2159
2160 void RGWGetObj::pre_exec()
2161 {
2162 rgw_bucket_object_pre_exec(s);
2163 }
2164
2165 static bool object_is_expired(map<string, bufferlist>& attrs) {
2166 map<string, bufferlist>::iterator iter = attrs.find(RGW_ATTR_DELETE_AT);
2167 if (iter != attrs.end()) {
2168 utime_t delete_at;
2169 try {
2170 decode(delete_at, iter->second);
2171 } catch (buffer::error& err) {
2172 dout(0) << "ERROR: " << __func__ << ": failed to decode " RGW_ATTR_DELETE_AT " attr" << dendl;
2173 return false;
2174 }
2175
2176 if (delete_at <= ceph_clock_now() && !delete_at.is_zero()) {
2177 return true;
2178 }
2179 }
2180
2181 return false;
2182 }
2183
2184 static inline void rgw_cond_decode_objtags(
2185 struct req_state *s,
2186 const std::map<std::string, buffer::list> &attrs)
2187 {
2188 const auto& tags = attrs.find(RGW_ATTR_TAGS);
2189 if (tags != attrs.end()) {
2190 try {
2191 bufferlist::const_iterator iter{&tags->second};
2192 s->tagset.decode(iter);
2193 } catch (buffer::error& err) {
2194 ldout(s->cct, 0)
2195 << "ERROR: caught buffer::error, couldn't decode TagSet" << dendl;
2196 }
2197 }
2198 }
2199
2200 void RGWGetObj::execute()
2201 {
2202 bufferlist bl;
2203 gc_invalidate_time = ceph_clock_now();
2204 gc_invalidate_time += (s->cct->_conf->rgw_gc_obj_min_wait / 2);
2205
2206 bool need_decompress;
2207 int64_t ofs_x, end_x;
2208
2209 RGWGetObj_CB cb(this);
2210 RGWGetObj_Filter* filter = (RGWGetObj_Filter *)&cb;
2211 boost::optional<RGWGetObj_Decompress> decompress;
2212 std::unique_ptr<RGWGetObj_Filter> decrypt;
2213 map<string, bufferlist>::iterator attr_iter;
2214
2215 perfcounter->inc(l_rgw_get);
2216
2217 RGWRados::Object op_target(store->getRados(), s->bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), obj);
2218 RGWRados::Object::Read read_op(&op_target);
2219
2220 op_ret = get_params();
2221 if (op_ret < 0)
2222 goto done_err;
2223
2224 op_ret = init_common();
2225 if (op_ret < 0)
2226 goto done_err;
2227
2228 read_op.conds.mod_ptr = mod_ptr;
2229 read_op.conds.unmod_ptr = unmod_ptr;
2230 read_op.conds.high_precision_time = s->system_request; /* system request need to use high precision time */
2231 read_op.conds.mod_zone_id = mod_zone_id;
2232 read_op.conds.mod_pg_ver = mod_pg_ver;
2233 read_op.conds.if_match = if_match;
2234 read_op.conds.if_nomatch = if_nomatch;
2235 read_op.params.attrs = &attrs;
2236 read_op.params.lastmod = &lastmod;
2237 read_op.params.obj_size = &s->obj_size;
2238
2239 op_ret = read_op.prepare(s->yield);
2240 if (op_ret < 0)
2241 goto done_err;
2242 version_id = read_op.state.obj.key.instance;
2243
2244 /* STAT ops don't need data, and do no i/o */
2245 if (get_type() == RGW_OP_STAT_OBJ) {
2246 return;
2247 }
2248
2249 /* start gettorrent */
2250 if (torrent.get_flag())
2251 {
2252 attr_iter = attrs.find(RGW_ATTR_CRYPT_MODE);
2253 if (attr_iter != attrs.end() && attr_iter->second.to_str() == "SSE-C-AES256") {
2254 ldpp_dout(this, 0) << "ERROR: torrents are not supported for objects "
2255 "encrypted with SSE-C" << dendl;
2256 op_ret = -EINVAL;
2257 goto done_err;
2258 }
2259 torrent.init(s, store);
2260 op_ret = torrent.get_torrent_file(read_op, total_len, bl, obj);
2261 if (op_ret < 0)
2262 {
2263 ldpp_dout(this, 0) << "ERROR: failed to get_torrent_file ret= " << op_ret
2264 << dendl;
2265 goto done_err;
2266 }
2267 op_ret = send_response_data(bl, 0, total_len);
2268 if (op_ret < 0)
2269 {
2270 ldpp_dout(this, 0) << "ERROR: failed to send_response_data ret= " << op_ret << dendl;
2271 goto done_err;
2272 }
2273 return;
2274 }
2275 /* end gettorrent */
2276
2277 op_ret = rgw_compression_info_from_attrset(attrs, need_decompress, cs_info);
2278 if (op_ret < 0) {
2279 ldpp_dout(s, 0) << "ERROR: failed to decode compression info, cannot decompress" << dendl;
2280 goto done_err;
2281 }
2282 if (need_decompress) {
2283 s->obj_size = cs_info.orig_size;
2284 decompress.emplace(s->cct, &cs_info, partial_content, filter);
2285 filter = &*decompress;
2286 }
2287
2288 attr_iter = attrs.find(RGW_ATTR_USER_MANIFEST);
2289 if (attr_iter != attrs.end() && !skip_manifest) {
2290 op_ret = handle_user_manifest(attr_iter->second.c_str());
2291 if (op_ret < 0) {
2292 ldpp_dout(this, 0) << "ERROR: failed to handle user manifest ret="
2293 << op_ret << dendl;
2294 goto done_err;
2295 }
2296 return;
2297 }
2298
2299 attr_iter = attrs.find(RGW_ATTR_SLO_MANIFEST);
2300 if (attr_iter != attrs.end() && !skip_manifest) {
2301 is_slo = true;
2302 op_ret = handle_slo_manifest(attr_iter->second);
2303 if (op_ret < 0) {
2304 ldpp_dout(this, 0) << "ERROR: failed to handle slo manifest ret=" << op_ret
2305 << dendl;
2306 goto done_err;
2307 }
2308 return;
2309 }
2310
2311 // for range requests with obj size 0
2312 if (range_str && !(s->obj_size)) {
2313 total_len = 0;
2314 op_ret = -ERANGE;
2315 goto done_err;
2316 }
2317
2318 op_ret = read_op.range_to_ofs(s->obj_size, ofs, end);
2319 if (op_ret < 0)
2320 goto done_err;
2321 total_len = (ofs <= end ? end + 1 - ofs : 0);
2322
2323 /* Check whether the object has expired. Swift API documentation
2324 * stands that we should return 404 Not Found in such case. */
2325 if (need_object_expiration() && object_is_expired(attrs)) {
2326 op_ret = -ENOENT;
2327 goto done_err;
2328 }
2329
2330 /* Decode S3 objtags, if any */
2331 rgw_cond_decode_objtags(s, attrs);
2332
2333 start = ofs;
2334
2335 attr_iter = attrs.find(RGW_ATTR_MANIFEST);
2336 op_ret = this->get_decrypt_filter(&decrypt, filter,
2337 attr_iter != attrs.end() ? &(attr_iter->second) : nullptr);
2338 if (decrypt != nullptr) {
2339 filter = decrypt.get();
2340 }
2341 if (op_ret < 0) {
2342 goto done_err;
2343 }
2344
2345 if (!get_data || ofs > end) {
2346 send_response_data(bl, 0, 0);
2347 return;
2348 }
2349
2350 perfcounter->inc(l_rgw_get_b, end - ofs);
2351
2352 ofs_x = ofs;
2353 end_x = end;
2354 filter->fixup_range(ofs_x, end_x);
2355 op_ret = read_op.iterate(ofs_x, end_x, filter, s->yield);
2356
2357 if (op_ret >= 0)
2358 op_ret = filter->flush();
2359
2360 perfcounter->tinc(l_rgw_get_lat, s->time_elapsed());
2361 if (op_ret < 0) {
2362 goto done_err;
2363 }
2364
2365 op_ret = send_response_data(bl, 0, 0);
2366 if (op_ret < 0) {
2367 goto done_err;
2368 }
2369 return;
2370
2371 done_err:
2372 send_response_data_error();
2373 }
2374
2375 int RGWGetObj::init_common()
2376 {
2377 if (range_str) {
2378 /* range parsed error when prefetch */
2379 if (!range_parsed) {
2380 int r = parse_range();
2381 if (r < 0)
2382 return r;
2383 }
2384 }
2385 if (if_mod) {
2386 if (parse_time(if_mod, &mod_time) < 0)
2387 return -EINVAL;
2388 mod_ptr = &mod_time;
2389 }
2390
2391 if (if_unmod) {
2392 if (parse_time(if_unmod, &unmod_time) < 0)
2393 return -EINVAL;
2394 unmod_ptr = &unmod_time;
2395 }
2396
2397 return 0;
2398 }
2399
2400 int RGWListBuckets::verify_permission()
2401 {
2402 rgw::Partition partition = rgw::Partition::aws;
2403 rgw::Service service = rgw::Service::s3;
2404
2405 if (!verify_user_permission(this, s, ARN(partition, service, "", s->user->get_tenant(), "*"), rgw::IAM::s3ListAllMyBuckets)) {
2406 return -EACCES;
2407 }
2408
2409 return 0;
2410 }
2411
2412 int RGWGetUsage::verify_permission()
2413 {
2414 if (s->auth.identity->is_anonymous()) {
2415 return -EACCES;
2416 }
2417
2418 return 0;
2419 }
2420
2421 void RGWListBuckets::execute()
2422 {
2423 bool done;
2424 bool started = false;
2425 uint64_t total_count = 0;
2426
2427 const uint64_t max_buckets = s->cct->_conf->rgw_list_buckets_max_chunk;
2428
2429 op_ret = get_params();
2430 if (op_ret < 0) {
2431 goto send_end;
2432 }
2433
2434 if (supports_account_metadata()) {
2435 op_ret = store->ctl()->user->get_attrs_by_uid(s->user->get_id(), &attrs, s->yield);
2436 if (op_ret < 0) {
2437 goto send_end;
2438 }
2439 }
2440
2441 is_truncated = false;
2442 do {
2443 rgw::sal::RGWBucketList buckets;
2444 uint64_t read_count;
2445 if (limit >= 0) {
2446 read_count = min(limit - total_count, max_buckets);
2447 } else {
2448 read_count = max_buckets;
2449 }
2450
2451 rgw::sal::RGWRadosUser user(store, s->user->get_id());
2452
2453 op_ret = user.list_buckets(marker, end_marker, read_count, should_get_stats(), buckets);
2454
2455 if (op_ret < 0) {
2456 /* hmm.. something wrong here.. the user was authenticated, so it
2457 should exist */
2458 ldpp_dout(this, 10) << "WARNING: failed on rgw_get_user_buckets uid="
2459 << s->user->get_id() << dendl;
2460 break;
2461 }
2462
2463 /* We need to have stats for all our policies - even if a given policy
2464 * isn't actually used in a given account. In such situation its usage
2465 * stats would be simply full of zeros. */
2466 for (const auto& policy : store->svc()->zone->get_zonegroup().placement_targets) {
2467 policies_stats.emplace(policy.second.name,
2468 decltype(policies_stats)::mapped_type());
2469 }
2470
2471 std::map<std::string, rgw::sal::RGWBucket*>& m = buckets.get_buckets();
2472 for (const auto& kv : m) {
2473 const auto& bucket = kv.second;
2474
2475 global_stats.bytes_used += bucket->get_size();
2476 global_stats.bytes_used_rounded += bucket->get_size_rounded();
2477 global_stats.objects_count += bucket->get_count();
2478
2479 /* operator[] still can create a new entry for storage policy seen
2480 * for first time. */
2481 auto& policy_stats = policies_stats[bucket->get_placement_rule().to_str()];
2482 policy_stats.bytes_used += bucket->get_size();
2483 policy_stats.bytes_used_rounded += bucket->get_size_rounded();
2484 policy_stats.buckets_count++;
2485 policy_stats.objects_count += bucket->get_count();
2486 }
2487 global_stats.buckets_count += m.size();
2488 total_count += m.size();
2489
2490 done = (m.size() < read_count || (limit >= 0 && total_count >= (uint64_t)limit));
2491
2492 if (!started) {
2493 send_response_begin(buckets.count() > 0);
2494 started = true;
2495 }
2496
2497 if (read_count > 0 &&
2498 !m.empty()) {
2499 map<string, rgw::sal::RGWBucket*>::reverse_iterator riter = m.rbegin();
2500 marker = riter->first;
2501
2502 handle_listing_chunk(std::move(buckets));
2503 }
2504 } while (is_truncated && !done);
2505
2506 send_end:
2507 if (!started) {
2508 send_response_begin(false);
2509 }
2510 send_response_end();
2511 }
2512
2513 void RGWGetUsage::execute()
2514 {
2515 uint64_t start_epoch = 0;
2516 uint64_t end_epoch = (uint64_t)-1;
2517 op_ret = get_params();
2518 if (op_ret < 0)
2519 return;
2520
2521 if (!start_date.empty()) {
2522 op_ret = utime_t::parse_date(start_date, &start_epoch, NULL);
2523 if (op_ret < 0) {
2524 ldpp_dout(this, 0) << "ERROR: failed to parse start date" << dendl;
2525 return;
2526 }
2527 }
2528
2529 if (!end_date.empty()) {
2530 op_ret = utime_t::parse_date(end_date, &end_epoch, NULL);
2531 if (op_ret < 0) {
2532 ldpp_dout(this, 0) << "ERROR: failed to parse end date" << dendl;
2533 return;
2534 }
2535 }
2536
2537 uint32_t max_entries = 1000;
2538
2539 bool is_truncated = true;
2540
2541 RGWUsageIter usage_iter;
2542
2543 while (is_truncated) {
2544 op_ret = store->getRados()->read_usage(s->user->get_id(), s->bucket_name, start_epoch, end_epoch, max_entries,
2545 &is_truncated, usage_iter, usage);
2546
2547 if (op_ret == -ENOENT) {
2548 op_ret = 0;
2549 is_truncated = false;
2550 }
2551
2552 if (op_ret < 0) {
2553 return;
2554 }
2555 }
2556
2557 op_ret = rgw_user_sync_all_stats(store, s->user->get_id());
2558 if (op_ret < 0) {
2559 ldpp_dout(this, 0) << "ERROR: failed to sync user stats" << dendl;
2560 return;
2561 }
2562
2563 op_ret = rgw_user_get_all_buckets_stats(store, s->user->get_id(), buckets_usage);
2564 if (op_ret < 0) {
2565 ldpp_dout(this, 0) << "ERROR: failed to get user's buckets stats" << dendl;
2566 return;
2567 }
2568
2569 op_ret = store->ctl()->user->read_stats(s->user->get_id(), &stats);
2570 if (op_ret < 0) {
2571 ldpp_dout(this, 0) << "ERROR: can't read user header" << dendl;
2572 return;
2573 }
2574
2575 return;
2576 }
2577
2578 int RGWStatAccount::verify_permission()
2579 {
2580 if (!verify_user_permission_no_policy(this, s, RGW_PERM_READ)) {
2581 return -EACCES;
2582 }
2583
2584 return 0;
2585 }
2586
2587 void RGWStatAccount::execute()
2588 {
2589 string marker;
2590 rgw::sal::RGWBucketList buckets;
2591 uint64_t max_buckets = s->cct->_conf->rgw_list_buckets_max_chunk;
2592
2593 do {
2594
2595 op_ret = rgw_read_user_buckets(store, s->user->get_id(), buckets, marker,
2596 string(), max_buckets, true);
2597 if (op_ret < 0) {
2598 /* hmm.. something wrong here.. the user was authenticated, so it
2599 should exist */
2600 ldpp_dout(this, 10) << "WARNING: failed on rgw_get_user_buckets uid="
2601 << s->user->get_id() << dendl;
2602 break;
2603 } else {
2604 /* We need to have stats for all our policies - even if a given policy
2605 * isn't actually used in a given account. In such situation its usage
2606 * stats would be simply full of zeros. */
2607 for (const auto& policy : store->svc()->zone->get_zonegroup().placement_targets) {
2608 policies_stats.emplace(policy.second.name,
2609 decltype(policies_stats)::mapped_type());
2610 }
2611
2612 std::map<std::string, rgw::sal::RGWBucket*>& m = buckets.get_buckets();
2613 for (const auto& kv : m) {
2614 const auto& bucket = kv.second;
2615
2616 global_stats.bytes_used += bucket->get_size();
2617 global_stats.bytes_used_rounded += bucket->get_size_rounded();
2618 global_stats.objects_count += bucket->get_count();
2619
2620 /* operator[] still can create a new entry for storage policy seen
2621 * for first time. */
2622 auto& policy_stats = policies_stats[bucket->get_placement_rule().to_str()];
2623 policy_stats.bytes_used += bucket->get_size();
2624 policy_stats.bytes_used_rounded += bucket->get_size_rounded();
2625 policy_stats.buckets_count++;
2626 policy_stats.objects_count += bucket->get_count();
2627 }
2628 global_stats.buckets_count += m.size();
2629
2630 }
2631 } while (buckets.is_truncated());
2632 }
2633
2634 int RGWGetBucketVersioning::verify_permission()
2635 {
2636 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketVersioning);
2637 }
2638
2639 void RGWGetBucketVersioning::pre_exec()
2640 {
2641 rgw_bucket_object_pre_exec(s);
2642 }
2643
2644 void RGWGetBucketVersioning::execute()
2645 {
2646 versioned = s->bucket_info.versioned();
2647 versioning_enabled = s->bucket_info.versioning_enabled();
2648 mfa_enabled = s->bucket_info.mfa_enabled();
2649 }
2650
2651 int RGWSetBucketVersioning::verify_permission()
2652 {
2653 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketVersioning);
2654 }
2655
2656 void RGWSetBucketVersioning::pre_exec()
2657 {
2658 rgw_bucket_object_pre_exec(s);
2659 }
2660
2661 void RGWSetBucketVersioning::execute()
2662 {
2663 op_ret = get_params();
2664 if (op_ret < 0)
2665 return;
2666
2667 if (s->bucket_info.obj_lock_enabled() && versioning_status != VersioningEnabled) {
2668 op_ret = -ERR_INVALID_BUCKET_STATE;
2669 return;
2670 }
2671
2672 bool cur_mfa_status = (s->bucket_info.flags & BUCKET_MFA_ENABLED) != 0;
2673
2674 mfa_set_status &= (mfa_status != cur_mfa_status);
2675
2676 if (mfa_set_status &&
2677 !s->mfa_verified) {
2678 op_ret = -ERR_MFA_REQUIRED;
2679 return;
2680 }
2681 //if mfa is enabled for bucket, make sure mfa code is validated in case versioned status gets changed
2682 if (cur_mfa_status) {
2683 bool req_versioning_status = false;
2684 //if requested versioning status is not the same as the one set for the bucket, return error
2685 if (versioning_status == VersioningEnabled) {
2686 req_versioning_status = (s->bucket_info.flags & BUCKET_VERSIONS_SUSPENDED) != 0;
2687 } else if (versioning_status == VersioningSuspended) {
2688 req_versioning_status = (s->bucket_info.flags & BUCKET_VERSIONS_SUSPENDED) == 0;
2689 }
2690 if (req_versioning_status && !s->mfa_verified) {
2691 op_ret = -ERR_MFA_REQUIRED;
2692 return;
2693 }
2694 }
2695
2696 if (!store->svc()->zone->is_meta_master()) {
2697 op_ret = forward_request_to_master(s, NULL, store, in_data, nullptr);
2698 if (op_ret < 0) {
2699 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
2700 return;
2701 }
2702 }
2703
2704 bool modified = mfa_set_status;
2705
2706 op_ret = retry_raced_bucket_write(store->getRados(), s, [&] {
2707 if (mfa_set_status) {
2708 if (mfa_status) {
2709 s->bucket_info.flags |= BUCKET_MFA_ENABLED;
2710 } else {
2711 s->bucket_info.flags &= ~BUCKET_MFA_ENABLED;
2712 }
2713 }
2714
2715 if (versioning_status == VersioningEnabled) {
2716 s->bucket_info.flags |= BUCKET_VERSIONED;
2717 s->bucket_info.flags &= ~BUCKET_VERSIONS_SUSPENDED;
2718 modified = true;
2719 } else if (versioning_status == VersioningSuspended) {
2720 s->bucket_info.flags |= (BUCKET_VERSIONED | BUCKET_VERSIONS_SUSPENDED);
2721 modified = true;
2722 } else {
2723 return op_ret;
2724 }
2725 return store->getRados()->put_bucket_instance_info(s->bucket_info, false, real_time(),
2726 &s->bucket_attrs);
2727 });
2728
2729 if (!modified) {
2730 return;
2731 }
2732
2733 if (op_ret < 0) {
2734 ldpp_dout(this, 0) << "NOTICE: put_bucket_info on bucket=" << s->bucket.name
2735 << " returned err=" << op_ret << dendl;
2736 return;
2737 }
2738 }
2739
2740 int RGWGetBucketWebsite::verify_permission()
2741 {
2742 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketWebsite);
2743 }
2744
2745 void RGWGetBucketWebsite::pre_exec()
2746 {
2747 rgw_bucket_object_pre_exec(s);
2748 }
2749
2750 void RGWGetBucketWebsite::execute()
2751 {
2752 if (!s->bucket_info.has_website) {
2753 op_ret = -ERR_NO_SUCH_WEBSITE_CONFIGURATION;
2754 }
2755 }
2756
2757 int RGWSetBucketWebsite::verify_permission()
2758 {
2759 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketWebsite);
2760 }
2761
2762 void RGWSetBucketWebsite::pre_exec()
2763 {
2764 rgw_bucket_object_pre_exec(s);
2765 }
2766
2767 void RGWSetBucketWebsite::execute()
2768 {
2769 op_ret = get_params();
2770
2771 if (op_ret < 0)
2772 return;
2773
2774 if (!store->svc()->zone->is_meta_master()) {
2775 op_ret = forward_request_to_master(s, NULL, store, in_data, nullptr);
2776 if (op_ret < 0) {
2777 ldpp_dout(this, 0) << " forward_request_to_master returned ret=" << op_ret << dendl;
2778 return;
2779 }
2780 }
2781
2782 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
2783 s->bucket_info.has_website = true;
2784 s->bucket_info.website_conf = website_conf;
2785 op_ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false,
2786 real_time(), &s->bucket_attrs);
2787 return op_ret;
2788 });
2789
2790 if (op_ret < 0) {
2791 ldpp_dout(this, 0) << "NOTICE: put_bucket_info on bucket=" << s->bucket.name
2792 << " returned err=" << op_ret << dendl;
2793 return;
2794 }
2795 }
2796
2797 int RGWDeleteBucketWebsite::verify_permission()
2798 {
2799 return verify_bucket_owner_or_policy(s, rgw::IAM::s3DeleteBucketWebsite);
2800 }
2801
2802 void RGWDeleteBucketWebsite::pre_exec()
2803 {
2804 rgw_bucket_object_pre_exec(s);
2805 }
2806
2807 void RGWDeleteBucketWebsite::execute()
2808 {
2809
2810 if (!store->svc()->zone->is_meta_master()) {
2811 bufferlist in_data;
2812 op_ret = forward_request_to_master(s, nullptr, store, in_data, nullptr);
2813 if (op_ret < 0) {
2814 ldpp_dout(this, 0) << "NOTICE: forward_to_master failed on bucket=" << s->bucket.name
2815 << "returned err=" << op_ret << dendl;
2816 return;
2817 }
2818 }
2819 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
2820 s->bucket_info.has_website = false;
2821 s->bucket_info.website_conf = RGWBucketWebsiteConf();
2822 op_ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false,
2823 real_time(), &s->bucket_attrs);
2824 return op_ret;
2825 });
2826 if (op_ret < 0) {
2827 ldpp_dout(this, 0) << "NOTICE: put_bucket_info on bucket=" << s->bucket.name
2828 << " returned err=" << op_ret << dendl;
2829 return;
2830 }
2831 }
2832
2833 int RGWStatBucket::verify_permission()
2834 {
2835 // This (a HEAD request on a bucket) is governed by the s3:ListBucket permission.
2836 if (!verify_bucket_permission(this, s, rgw::IAM::s3ListBucket)) {
2837 return -EACCES;
2838 }
2839
2840 return 0;
2841 }
2842
2843 void RGWStatBucket::pre_exec()
2844 {
2845 rgw_bucket_object_pre_exec(s);
2846 }
2847
2848 void RGWStatBucket::execute()
2849 {
2850 if (!s->bucket_exists) {
2851 op_ret = -ERR_NO_SUCH_BUCKET;
2852 return;
2853 }
2854
2855 rgw::sal::RGWRadosUser user(store, s->user->get_id());
2856 bucket = new rgw::sal::RGWRadosBucket(store, user, s->bucket);
2857 op_ret = bucket->update_container_stats();
2858 }
2859
2860 int RGWListBucket::verify_permission()
2861 {
2862 op_ret = get_params();
2863 if (op_ret < 0) {
2864 return op_ret;
2865 }
2866 if (!prefix.empty())
2867 s->env.emplace("s3:prefix", prefix);
2868
2869 if (!delimiter.empty())
2870 s->env.emplace("s3:delimiter", delimiter);
2871
2872 s->env.emplace("s3:max-keys", std::to_string(max));
2873
2874 if (!verify_bucket_permission(this,
2875 s,
2876 list_versions ?
2877 rgw::IAM::s3ListBucketVersions :
2878 rgw::IAM::s3ListBucket)) {
2879 return -EACCES;
2880 }
2881
2882 return 0;
2883 }
2884
2885 int RGWListBucket::parse_max_keys()
2886 {
2887 // Bound max value of max-keys to configured value for security
2888 // Bound min value of max-keys to '0'
2889 // Some S3 clients explicitly send max-keys=0 to detect if the bucket is
2890 // empty without listing any items.
2891 return parse_value_and_bound(max_keys, max, 0,
2892 g_conf().get_val<uint64_t>("rgw_max_listing_results"),
2893 default_max);
2894 }
2895
2896 void RGWListBucket::pre_exec()
2897 {
2898 rgw_bucket_object_pre_exec(s);
2899 }
2900
2901 void RGWListBucket::execute()
2902 {
2903 if (!s->bucket_exists) {
2904 op_ret = -ERR_NO_SUCH_BUCKET;
2905 return;
2906 }
2907
2908 if (allow_unordered && !delimiter.empty()) {
2909 ldpp_dout(this, 0) <<
2910 "ERROR: unordered bucket listing requested with a delimiter" << dendl;
2911 op_ret = -EINVAL;
2912 return;
2913 }
2914
2915 if (need_container_stats()) {
2916 op_ret = bucket->update_container_stats();
2917 }
2918
2919 RGWRados::Bucket target(store->getRados(), s->bucket_info);
2920 if (shard_id >= 0) {
2921 target.set_shard_id(shard_id);
2922 }
2923 RGWRados::Bucket::List list_op(&target);
2924
2925 list_op.params.prefix = prefix;
2926 list_op.params.delim = delimiter;
2927 list_op.params.marker = marker;
2928 list_op.params.end_marker = end_marker;
2929 list_op.params.list_versions = list_versions;
2930 list_op.params.allow_unordered = allow_unordered;
2931
2932 op_ret = list_op.list_objects(max, &objs, &common_prefixes, &is_truncated, s->yield);
2933 if (op_ret >= 0) {
2934 next_marker = list_op.get_next_marker();
2935 }
2936 }
2937
2938 int RGWGetBucketLogging::verify_permission()
2939 {
2940 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketLogging);
2941 }
2942
2943 int RGWGetBucketLocation::verify_permission()
2944 {
2945 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketLocation);
2946 }
2947
2948 int RGWCreateBucket::verify_permission()
2949 {
2950 /* This check is mostly needed for S3 that doesn't support account ACL.
2951 * Swift doesn't allow to delegate any permission to an anonymous user,
2952 * so it will become an early exit in such case. */
2953 if (s->auth.identity->is_anonymous()) {
2954 return -EACCES;
2955 }
2956
2957 rgw_bucket bucket;
2958 bucket.name = s->bucket_name;
2959 bucket.tenant = s->bucket_tenant;
2960 ARN arn = ARN(bucket);
2961 if (!verify_user_permission(this, s, arn, rgw::IAM::s3CreateBucket)) {
2962 return -EACCES;
2963 }
2964
2965 if (s->user->get_tenant() != s->bucket_tenant) {
2966 ldpp_dout(this, 10) << "user cannot create a bucket in a different tenant"
2967 << " (user_id.tenant=" << s->user->get_tenant()
2968 << " requested=" << s->bucket_tenant << ")"
2969 << dendl;
2970 return -EACCES;
2971 }
2972 if (s->user->get_max_buckets() < 0) {
2973 return -EPERM;
2974 }
2975
2976 if (s->user->get_max_buckets()) {
2977 rgw::sal::RGWBucketList buckets;
2978 string marker;
2979 op_ret = rgw_read_user_buckets(store, s->user->get_id(), buckets,
2980 marker, string(), s->user->get_max_buckets(),
2981 false);
2982 if (op_ret < 0) {
2983 return op_ret;
2984 }
2985
2986 if ((int)buckets.count() >= s->user->get_max_buckets()) {
2987 return -ERR_TOO_MANY_BUCKETS;
2988 }
2989 }
2990
2991 return 0;
2992 }
2993
2994 int forward_request_to_master(struct req_state *s, obj_version *objv,
2995 rgw::sal::RGWRadosStore *store, bufferlist& in_data,
2996 JSONParser *jp, req_info *forward_info)
2997 {
2998 if (!store->svc()->zone->get_master_conn()) {
2999 ldpp_dout(s, 0) << "rest connection is invalid" << dendl;
3000 return -EINVAL;
3001 }
3002 ldpp_dout(s, 0) << "sending request to master zonegroup" << dendl;
3003 bufferlist response;
3004 string uid_str = s->user->get_id().to_str();
3005 #define MAX_REST_RESPONSE (128 * 1024) // we expect a very small response
3006 int ret = store->svc()->zone->get_master_conn()->forward(rgw_user(uid_str), (forward_info ? *forward_info : s->info),
3007 objv, MAX_REST_RESPONSE, &in_data, &response);
3008 if (ret < 0)
3009 return ret;
3010
3011 ldpp_dout(s, 20) << "response: " << response.c_str() << dendl;
3012 if (jp && !jp->parse(response.c_str(), response.length())) {
3013 ldpp_dout(s, 0) << "failed parsing response from master zonegroup" << dendl;
3014 return -EINVAL;
3015 }
3016
3017 return 0;
3018 }
3019
3020 void RGWCreateBucket::pre_exec()
3021 {
3022 rgw_bucket_object_pre_exec(s);
3023 }
3024
3025 static void prepare_add_del_attrs(const map<string, bufferlist>& orig_attrs,
3026 map<string, bufferlist>& out_attrs,
3027 map<string, bufferlist>& out_rmattrs)
3028 {
3029 for (const auto& kv : orig_attrs) {
3030 const string& name = kv.first;
3031
3032 /* Check if the attr is user-defined metadata item. */
3033 if (name.compare(0, sizeof(RGW_ATTR_META_PREFIX) - 1,
3034 RGW_ATTR_META_PREFIX) == 0) {
3035 /* For the objects all existing meta attrs have to be removed. */
3036 out_rmattrs[name] = kv.second;
3037 } else if (out_attrs.find(name) == std::end(out_attrs)) {
3038 out_attrs[name] = kv.second;
3039 }
3040 }
3041 }
3042
3043 /* Fuse resource metadata basing on original attributes in @orig_attrs, set
3044 * of _custom_ attribute names to remove in @rmattr_names and attributes in
3045 * @out_attrs. Place results in @out_attrs.
3046 *
3047 * NOTE: it's supposed that all special attrs already present in @out_attrs
3048 * will be preserved without any change. Special attributes are those which
3049 * names start with RGW_ATTR_META_PREFIX. They're complement to custom ones
3050 * used for X-Account-Meta-*, X-Container-Meta-*, X-Amz-Meta and so on. */
3051 static void prepare_add_del_attrs(const map<string, bufferlist>& orig_attrs,
3052 const set<string>& rmattr_names,
3053 map<string, bufferlist>& out_attrs)
3054 {
3055 for (const auto& kv : orig_attrs) {
3056 const string& name = kv.first;
3057
3058 /* Check if the attr is user-defined metadata item. */
3059 if (name.compare(0, strlen(RGW_ATTR_META_PREFIX),
3060 RGW_ATTR_META_PREFIX) == 0) {
3061 /* For the buckets all existing meta attrs are preserved,
3062 except those that are listed in rmattr_names. */
3063 if (rmattr_names.find(name) != std::end(rmattr_names)) {
3064 const auto aiter = out_attrs.find(name);
3065
3066 if (aiter != std::end(out_attrs)) {
3067 out_attrs.erase(aiter);
3068 }
3069 } else {
3070 /* emplace() won't alter the map if the key is already present.
3071 * This behaviour is fully intensional here. */
3072 out_attrs.emplace(kv);
3073 }
3074 } else if (out_attrs.find(name) == std::end(out_attrs)) {
3075 out_attrs[name] = kv.second;
3076 }
3077 }
3078 }
3079
3080
3081 static void populate_with_generic_attrs(const req_state * const s,
3082 map<string, bufferlist>& out_attrs)
3083 {
3084 for (const auto& kv : s->generic_attrs) {
3085 bufferlist& attrbl = out_attrs[kv.first];
3086 const string& val = kv.second;
3087 attrbl.clear();
3088 attrbl.append(val.c_str(), val.size() + 1);
3089 }
3090 }
3091
3092
3093 static int filter_out_quota_info(std::map<std::string, bufferlist>& add_attrs,
3094 const std::set<std::string>& rmattr_names,
3095 RGWQuotaInfo& quota,
3096 bool * quota_extracted = nullptr)
3097 {
3098 bool extracted = false;
3099
3100 /* Put new limit on max objects. */
3101 auto iter = add_attrs.find(RGW_ATTR_QUOTA_NOBJS);
3102 std::string err;
3103 if (std::end(add_attrs) != iter) {
3104 quota.max_objects =
3105 static_cast<int64_t>(strict_strtoll(iter->second.c_str(), 10, &err));
3106 if (!err.empty()) {
3107 return -EINVAL;
3108 }
3109 add_attrs.erase(iter);
3110 extracted = true;
3111 }
3112
3113 /* Put new limit on bucket (container) size. */
3114 iter = add_attrs.find(RGW_ATTR_QUOTA_MSIZE);
3115 if (iter != add_attrs.end()) {
3116 quota.max_size =
3117 static_cast<int64_t>(strict_strtoll(iter->second.c_str(), 10, &err));
3118 if (!err.empty()) {
3119 return -EINVAL;
3120 }
3121 add_attrs.erase(iter);
3122 extracted = true;
3123 }
3124
3125 for (const auto& name : rmattr_names) {
3126 /* Remove limit on max objects. */
3127 if (name.compare(RGW_ATTR_QUOTA_NOBJS) == 0) {
3128 quota.max_objects = -1;
3129 extracted = true;
3130 }
3131
3132 /* Remove limit on max bucket size. */
3133 if (name.compare(RGW_ATTR_QUOTA_MSIZE) == 0) {
3134 quota.max_size = -1;
3135 extracted = true;
3136 }
3137 }
3138
3139 /* Swift requries checking on raw usage instead of the 4 KiB rounded one. */
3140 quota.check_on_raw = true;
3141 quota.enabled = quota.max_size > 0 || quota.max_objects > 0;
3142
3143 if (quota_extracted) {
3144 *quota_extracted = extracted;
3145 }
3146
3147 return 0;
3148 }
3149
3150
3151 static void filter_out_website(std::map<std::string, ceph::bufferlist>& add_attrs,
3152 const std::set<std::string>& rmattr_names,
3153 RGWBucketWebsiteConf& ws_conf)
3154 {
3155 std::string lstval;
3156
3157 /* Let's define a mapping between each custom attribute and the memory where
3158 * attribute's value should be stored. The memory location is expressed by
3159 * a non-const reference. */
3160 const auto mapping = {
3161 std::make_pair(RGW_ATTR_WEB_INDEX, std::ref(ws_conf.index_doc_suffix)),
3162 std::make_pair(RGW_ATTR_WEB_ERROR, std::ref(ws_conf.error_doc)),
3163 std::make_pair(RGW_ATTR_WEB_LISTINGS, std::ref(lstval)),
3164 std::make_pair(RGW_ATTR_WEB_LIST_CSS, std::ref(ws_conf.listing_css_doc)),
3165 std::make_pair(RGW_ATTR_SUBDIR_MARKER, std::ref(ws_conf.subdir_marker))
3166 };
3167
3168 for (const auto& kv : mapping) {
3169 const char * const key = kv.first;
3170 auto& target = kv.second;
3171
3172 auto iter = add_attrs.find(key);
3173
3174 if (std::end(add_attrs) != iter) {
3175 /* The "target" is a reference to ws_conf. */
3176 target = iter->second.c_str();
3177 add_attrs.erase(iter);
3178 }
3179
3180 if (rmattr_names.count(key)) {
3181 target = std::string();
3182 }
3183 }
3184
3185 if (! lstval.empty()) {
3186 ws_conf.listing_enabled = boost::algorithm::iequals(lstval, "true");
3187 }
3188 }
3189
3190
3191 void RGWCreateBucket::execute()
3192 {
3193 RGWAccessControlPolicy old_policy(s->cct);
3194 buffer::list aclbl;
3195 buffer::list corsbl;
3196 bool existed;
3197 string bucket_name = rgw_make_bucket_entry_name(s->bucket_tenant, s->bucket_name);
3198 rgw_raw_obj obj(store->svc()->zone->get_zone_params().domain_root, bucket_name);
3199 obj_version objv, *pobjv = NULL;
3200
3201 op_ret = get_params();
3202 if (op_ret < 0)
3203 return;
3204
3205 if (!relaxed_region_enforcement &&
3206 !location_constraint.empty() &&
3207 !store->svc()->zone->has_zonegroup_api(location_constraint)) {
3208 ldpp_dout(this, 0) << "location constraint (" << location_constraint << ")"
3209 << " can't be found." << dendl;
3210 op_ret = -ERR_INVALID_LOCATION_CONSTRAINT;
3211 s->err.message = "The specified location-constraint is not valid";
3212 return;
3213 }
3214
3215 if (!relaxed_region_enforcement && !store->svc()->zone->get_zonegroup().is_master_zonegroup() && !location_constraint.empty() &&
3216 store->svc()->zone->get_zonegroup().api_name != location_constraint) {
3217 ldpp_dout(this, 0) << "location constraint (" << location_constraint << ")"
3218 << " doesn't match zonegroup" << " (" << store->svc()->zone->get_zonegroup().api_name << ")"
3219 << dendl;
3220 op_ret = -ERR_INVALID_LOCATION_CONSTRAINT;
3221 s->err.message = "The specified location-constraint is not valid";
3222 return;
3223 }
3224
3225 const auto& zonegroup = store->svc()->zone->get_zonegroup();
3226 if (!placement_rule.name.empty() &&
3227 !zonegroup.placement_targets.count(placement_rule.name)) {
3228 ldpp_dout(this, 0) << "placement target (" << placement_rule.name << ")"
3229 << " doesn't exist in the placement targets of zonegroup"
3230 << " (" << store->svc()->zone->get_zonegroup().api_name << ")" << dendl;
3231 op_ret = -ERR_INVALID_LOCATION_CONSTRAINT;
3232 s->err.message = "The specified placement target does not exist";
3233 return;
3234 }
3235
3236 /* we need to make sure we read bucket info, it's not read before for this
3237 * specific request */
3238 s->bucket.tenant = s->bucket_tenant;
3239 s->bucket.name = s->bucket_name;
3240 rgw::sal::RGWBucket* bucket = NULL;
3241 op_ret = store->get_bucket(*s->user, s->bucket, &bucket);
3242 if (op_ret < 0 && op_ret != -ENOENT)
3243 return;
3244 s->bucket_exists = (op_ret != -ENOENT);
3245
3246 s->bucket_owner.set_id(s->user->get_id());
3247 s->bucket_owner.set_name(s->user->get_display_name());
3248 if (s->bucket_exists) {
3249 s->bucket_info = bucket->get_info();
3250 s->bucket_attrs = bucket->get_attrs();
3251 delete bucket;
3252 int r = rgw_op_get_bucket_policy_from_attr(s->cct, store, s->bucket_info,
3253 s->bucket_attrs, &old_policy);
3254 if (r >= 0) {
3255 if (old_policy.get_owner().get_id().compare(s->user->get_id()) != 0) {
3256 op_ret = -EEXIST;
3257 return;
3258 }
3259 }
3260 }
3261
3262 RGWBucketInfo master_info;
3263 rgw_bucket *pmaster_bucket;
3264 uint32_t *pmaster_num_shards;
3265 real_time creation_time;
3266
3267 if (!store->svc()->zone->is_meta_master()) {
3268 JSONParser jp;
3269 op_ret = forward_request_to_master(s, NULL, store, in_data, &jp);
3270 if (op_ret < 0) {
3271 return;
3272 }
3273
3274 JSONDecoder::decode_json("entry_point_object_ver", ep_objv, &jp);
3275 JSONDecoder::decode_json("object_ver", objv, &jp);
3276 JSONDecoder::decode_json("bucket_info", master_info, &jp);
3277 ldpp_dout(this, 20) << "parsed: objv.tag=" << objv.tag << " objv.ver=" << objv.ver << dendl;
3278 ldpp_dout(this, 20) << "got creation time: << " << master_info.creation_time << dendl;
3279 pmaster_bucket= &master_info.bucket;
3280 creation_time = master_info.creation_time;
3281 pmaster_num_shards = &master_info.num_shards;
3282 pobjv = &objv;
3283 obj_lock_enabled = master_info.obj_lock_enabled();
3284 } else {
3285 pmaster_bucket = NULL;
3286 pmaster_num_shards = NULL;
3287 }
3288
3289 string zonegroup_id;
3290
3291 if (s->system_request) {
3292 zonegroup_id = s->info.args.get(RGW_SYS_PARAM_PREFIX "zonegroup");
3293 if (zonegroup_id.empty()) {
3294 zonegroup_id = store->svc()->zone->get_zonegroup().get_id();
3295 }
3296 } else {
3297 zonegroup_id = store->svc()->zone->get_zonegroup().get_id();
3298 }
3299
3300 if (s->bucket_exists) {
3301 rgw_placement_rule selected_placement_rule;
3302 rgw_bucket bucket;
3303 bucket.tenant = s->bucket_tenant;
3304 bucket.name = s->bucket_name;
3305 op_ret = store->svc()->zone->select_bucket_placement(s->user->get_info(),
3306 zonegroup_id,
3307 placement_rule,
3308 &selected_placement_rule, nullptr);
3309 if (selected_placement_rule != s->bucket_info.placement_rule) {
3310 op_ret = -EEXIST;
3311 return;
3312 }
3313 }
3314
3315 /* Encode special metadata first as we're using std::map::emplace under
3316 * the hood. This method will add the new items only if the map doesn't
3317 * contain such keys yet. */
3318 policy.encode(aclbl);
3319 emplace_attr(RGW_ATTR_ACL, std::move(aclbl));
3320
3321 if (has_cors) {
3322 cors_config.encode(corsbl);
3323 emplace_attr(RGW_ATTR_CORS, std::move(corsbl));
3324 }
3325
3326 RGWQuotaInfo quota_info;
3327 const RGWQuotaInfo * pquota_info = nullptr;
3328 if (need_metadata_upload()) {
3329 /* It's supposed that following functions WILL NOT change any special
3330 * attributes (like RGW_ATTR_ACL) if they are already present in attrs. */
3331 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs, false);
3332 if (op_ret < 0) {
3333 return;
3334 }
3335 prepare_add_del_attrs(s->bucket_attrs, rmattr_names, attrs);
3336 populate_with_generic_attrs(s, attrs);
3337
3338 op_ret = filter_out_quota_info(attrs, rmattr_names, quota_info);
3339 if (op_ret < 0) {
3340 return;
3341 } else {
3342 pquota_info = &quota_info;
3343 }
3344
3345 /* Web site of Swift API. */
3346 filter_out_website(attrs, rmattr_names, s->bucket_info.website_conf);
3347 s->bucket_info.has_website = !s->bucket_info.website_conf.is_empty();
3348 }
3349
3350 s->bucket.tenant = s->bucket_tenant; /* ignored if bucket exists */
3351 s->bucket.name = s->bucket_name;
3352
3353 /* Handle updates of the metadata for Swift's object versioning. */
3354 if (swift_ver_location) {
3355 s->bucket_info.swift_ver_location = *swift_ver_location;
3356 s->bucket_info.swift_versioning = (! swift_ver_location->empty());
3357 }
3358 if (obj_lock_enabled) {
3359 info.flags = BUCKET_VERSIONED | BUCKET_OBJ_LOCK_ENABLED;
3360 }
3361
3362
3363 op_ret = store->getRados()->create_bucket(s->user->get_info(), s->bucket, zonegroup_id,
3364 placement_rule, s->bucket_info.swift_ver_location,
3365 pquota_info, attrs,
3366 info, pobjv, &ep_objv, creation_time,
3367 pmaster_bucket, pmaster_num_shards, true);
3368 /* continue if EEXIST and create_bucket will fail below. this way we can
3369 * recover from a partial create by retrying it. */
3370 ldpp_dout(this, 20) << "rgw_create_bucket returned ret=" << op_ret << " bucket=" << s->bucket << dendl;
3371
3372 if (op_ret && op_ret != -EEXIST)
3373 return;
3374
3375 existed = (op_ret == -EEXIST);
3376
3377 if (existed) {
3378 /* bucket already existed, might have raced with another bucket creation, or
3379 * might be partial bucket creation that never completed. Read existing bucket
3380 * info, verify that the reported bucket owner is the current user.
3381 * If all is ok then update the user's list of buckets.
3382 * Otherwise inform client about a name conflict.
3383 */
3384 if (info.owner.compare(s->user->get_id()) != 0) {
3385 op_ret = -EEXIST;
3386 return;
3387 }
3388 s->bucket = info.bucket;
3389 }
3390
3391 op_ret = store->ctl()->bucket->link_bucket(s->user->get_id(), s->bucket,
3392 info.creation_time, s->yield, false);
3393 if (op_ret && !existed && op_ret != -EEXIST) {
3394 /* if it exists (or previously existed), don't remove it! */
3395 op_ret = store->ctl()->bucket->unlink_bucket(s->user->get_id(), s->bucket, s->yield);
3396 if (op_ret < 0) {
3397 ldpp_dout(this, 0) << "WARNING: failed to unlink bucket: ret=" << op_ret
3398 << dendl;
3399 }
3400 } else if (op_ret == -EEXIST || (op_ret == 0 && existed)) {
3401 op_ret = -ERR_BUCKET_EXISTS;
3402 }
3403
3404 if (need_metadata_upload() && existed) {
3405 /* OK, it looks we lost race with another request. As it's required to
3406 * handle metadata fusion and upload, the whole operation becomes very
3407 * similar in nature to PutMetadataBucket. However, as the attrs may
3408 * changed in the meantime, we have to refresh. */
3409 short tries = 0;
3410 do {
3411 RGWBucketInfo binfo;
3412 map<string, bufferlist> battrs;
3413
3414 op_ret = store->getRados()->get_bucket_info(store->svc(), s->bucket_tenant, s->bucket_name,
3415 binfo, nullptr, s->yield, &battrs);
3416 if (op_ret < 0) {
3417 return;
3418 } else if (binfo.owner.compare(s->user->get_id()) != 0) {
3419 /* New bucket doesn't belong to the account we're operating on. */
3420 op_ret = -EEXIST;
3421 return;
3422 } else {
3423 s->bucket_info = binfo;
3424 s->bucket_attrs = battrs;
3425 }
3426
3427 attrs.clear();
3428
3429 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs, false);
3430 if (op_ret < 0) {
3431 return;
3432 }
3433 prepare_add_del_attrs(s->bucket_attrs, rmattr_names, attrs);
3434 populate_with_generic_attrs(s, attrs);
3435 op_ret = filter_out_quota_info(attrs, rmattr_names, s->bucket_info.quota);
3436 if (op_ret < 0) {
3437 return;
3438 }
3439
3440 /* Handle updates of the metadata for Swift's object versioning. */
3441 if (swift_ver_location) {
3442 s->bucket_info.swift_ver_location = *swift_ver_location;
3443 s->bucket_info.swift_versioning = (! swift_ver_location->empty());
3444 }
3445
3446 /* Web site of Swift API. */
3447 filter_out_website(attrs, rmattr_names, s->bucket_info.website_conf);
3448 s->bucket_info.has_website = !s->bucket_info.website_conf.is_empty();
3449
3450 /* This will also set the quota on the bucket. */
3451 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
3452 &s->bucket_info.objv_tracker,
3453 s->yield);
3454 } while (op_ret == -ECANCELED && tries++ < 20);
3455
3456 /* Restore the proper return code. */
3457 if (op_ret >= 0) {
3458 op_ret = -ERR_BUCKET_EXISTS;
3459 }
3460 }
3461 }
3462
3463 int RGWDeleteBucket::verify_permission()
3464 {
3465 if (!verify_bucket_permission(this, s, rgw::IAM::s3DeleteBucket)) {
3466 return -EACCES;
3467 }
3468
3469 return 0;
3470 }
3471
3472 void RGWDeleteBucket::pre_exec()
3473 {
3474 rgw_bucket_object_pre_exec(s);
3475 }
3476
3477 void RGWDeleteBucket::execute()
3478 {
3479 if (s->bucket_name.empty()) {
3480 op_ret = -EINVAL;
3481 return;
3482 }
3483
3484 if (!s->bucket_exists) {
3485 ldpp_dout(this, 0) << "ERROR: bucket " << s->bucket_name << " not found" << dendl;
3486 op_ret = -ERR_NO_SUCH_BUCKET;
3487 return;
3488 }
3489 RGWObjVersionTracker ot;
3490 ot.read_version = s->bucket_ep_objv;
3491
3492 if (s->system_request) {
3493 string tag = s->info.args.get(RGW_SYS_PARAM_PREFIX "tag");
3494 string ver_str = s->info.args.get(RGW_SYS_PARAM_PREFIX "ver");
3495 if (!tag.empty()) {
3496 ot.read_version.tag = tag;
3497 uint64_t ver;
3498 string err;
3499 ver = strict_strtol(ver_str.c_str(), 10, &err);
3500 if (!err.empty()) {
3501 ldpp_dout(this, 0) << "failed to parse ver param" << dendl;
3502 op_ret = -EINVAL;
3503 return;
3504 }
3505 ot.read_version.ver = ver;
3506 }
3507 }
3508
3509 op_ret = store->ctl()->bucket->sync_user_stats(s->user->get_id(), s->bucket_info);
3510 if ( op_ret < 0) {
3511 ldpp_dout(this, 1) << "WARNING: failed to sync user stats before bucket delete: op_ret= " << op_ret << dendl;
3512 }
3513
3514 op_ret = store->getRados()->check_bucket_empty(s->bucket_info, s->yield);
3515 if (op_ret < 0) {
3516 return;
3517 }
3518
3519 if (!store->svc()->zone->is_meta_master()) {
3520 bufferlist in_data;
3521 op_ret = forward_request_to_master(s, &ot.read_version, store, in_data,
3522 NULL);
3523 if (op_ret < 0) {
3524 if (op_ret == -ENOENT) {
3525 /* adjust error, we want to return with NoSuchBucket and not
3526 * NoSuchKey */
3527 op_ret = -ERR_NO_SUCH_BUCKET;
3528 }
3529 return;
3530 }
3531 }
3532
3533 string prefix, delimiter;
3534
3535 if (s->prot_flags & RGW_REST_SWIFT) {
3536 string path_args;
3537 path_args = s->info.args.get("path");
3538 if (!path_args.empty()) {
3539 if (!delimiter.empty() || !prefix.empty()) {
3540 op_ret = -EINVAL;
3541 return;
3542 }
3543 prefix = path_args;
3544 delimiter="/";
3545 }
3546 }
3547
3548 op_ret = abort_bucket_multiparts(store, s->cct, s->bucket_info, prefix, delimiter);
3549
3550 if (op_ret < 0) {
3551 return;
3552 }
3553
3554 op_ret = store->getRados()->delete_bucket(s->bucket_info, ot, s->yield, false);
3555
3556 if (op_ret == -ECANCELED) {
3557 // lost a race, either with mdlog sync or another delete bucket operation.
3558 // in either case, we've already called ctl.bucket->unlink_bucket()
3559 op_ret = 0;
3560 return;
3561 }
3562
3563 if (op_ret == 0) {
3564 op_ret = store->ctl()->bucket->unlink_bucket(s->bucket_info.owner,
3565 s->bucket, s->yield, false);
3566 if (op_ret < 0) {
3567 ldpp_dout(this, 0) << "WARNING: failed to unlink bucket: ret=" << op_ret
3568 << dendl;
3569 }
3570 }
3571 }
3572
3573 int RGWPutObj::verify_permission()
3574 {
3575 if (! copy_source.empty()) {
3576
3577 RGWAccessControlPolicy cs_acl(s->cct);
3578 boost::optional<Policy> policy;
3579 map<string, bufferlist> cs_attrs;
3580 rgw_bucket cs_bucket(copy_source_bucket_info.bucket);
3581 rgw_obj_key cs_object(copy_source_object_name, copy_source_version_id);
3582
3583 rgw_obj obj(cs_bucket, cs_object);
3584 store->getRados()->set_atomic(s->obj_ctx, obj);
3585 store->getRados()->set_prefetch_data(s->obj_ctx, obj);
3586
3587 /* check source object permissions */
3588 if (read_obj_policy(store, s, copy_source_bucket_info, cs_attrs, &cs_acl, nullptr,
3589 policy, cs_bucket, cs_object) < 0) {
3590 return -EACCES;
3591 }
3592
3593 /* admin request overrides permission checks */
3594 if (! s->auth.identity->is_admin_of(cs_acl.get_owner().get_id())) {
3595 if (policy || ! s->iam_user_policies.empty()) {
3596 auto usr_policy_res = Effect::Pass;
3597 for (auto& user_policy : s->iam_user_policies) {
3598 if (usr_policy_res = user_policy.eval(s->env, *s->auth.identity,
3599 cs_object.instance.empty() ?
3600 rgw::IAM::s3GetObject :
3601 rgw::IAM::s3GetObjectVersion,
3602 rgw::ARN(obj)); usr_policy_res == Effect::Deny)
3603 return -EACCES;
3604 else if (usr_policy_res == Effect::Allow)
3605 break;
3606 }
3607 rgw::IAM::Effect e = Effect::Pass;
3608 if (policy) {
3609 e = policy->eval(s->env, *s->auth.identity,
3610 cs_object.instance.empty() ?
3611 rgw::IAM::s3GetObject :
3612 rgw::IAM::s3GetObjectVersion,
3613 rgw::ARN(obj));
3614 }
3615 if (e == Effect::Deny) {
3616 return -EACCES;
3617 } else if (usr_policy_res == Effect::Pass && e == Effect::Pass &&
3618 !cs_acl.verify_permission(this, *s->auth.identity, s->perm_mask,
3619 RGW_PERM_READ)) {
3620 return -EACCES;
3621 }
3622 } else if (!cs_acl.verify_permission(this, *s->auth.identity, s->perm_mask,
3623 RGW_PERM_READ)) {
3624 return -EACCES;
3625 }
3626 }
3627 }
3628
3629 if (s->bucket_access_conf && s->bucket_access_conf->block_public_acls()) {
3630 if (s->canned_acl.compare("public-read") ||
3631 s->canned_acl.compare("public-read-write") ||
3632 s->canned_acl.compare("authenticated-read"))
3633 return -EACCES;
3634 }
3635
3636 auto op_ret = get_params();
3637 if (op_ret < 0) {
3638 ldpp_dout(this, 20) << "get_params() returned ret=" << op_ret << dendl;
3639 return op_ret;
3640 }
3641
3642 if (s->iam_policy || ! s->iam_user_policies.empty()) {
3643 rgw_add_grant_to_iam_environment(s->env, s);
3644
3645 rgw_add_to_iam_environment(s->env, "s3:x-amz-acl", s->canned_acl);
3646
3647 if (obj_tags != nullptr && obj_tags->count() > 0){
3648 auto tags = obj_tags->get_tags();
3649 for (const auto& kv: tags){
3650 rgw_add_to_iam_environment(s->env, "s3:RequestObjectTag/"+kv.first, kv.second);
3651 }
3652 }
3653
3654 constexpr auto encrypt_attr = "x-amz-server-side-encryption";
3655 constexpr auto s3_encrypt_attr = "s3:x-amz-server-side-encryption";
3656 auto enc_header = s->info.x_meta_map.find(encrypt_attr);
3657 if (enc_header != s->info.x_meta_map.end()){
3658 rgw_add_to_iam_environment(s->env, s3_encrypt_attr, enc_header->second);
3659 }
3660
3661 constexpr auto kms_attr = "x-amz-server-side-encryption-aws-kms-key-id";
3662 constexpr auto s3_kms_attr = "s3:x-amz-server-side-encryption-aws-kms-key-id";
3663 auto kms_header = s->info.x_meta_map.find(kms_attr);
3664 if (kms_header != s->info.x_meta_map.end()){
3665 rgw_add_to_iam_environment(s->env, s3_kms_attr, kms_header->second);
3666 }
3667
3668 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
3669 boost::none,
3670 rgw::IAM::s3PutObject,
3671 rgw_obj(s->bucket, s->object));
3672 if (usr_policy_res == Effect::Deny)
3673 return -EACCES;
3674
3675 rgw::IAM::Effect e = Effect::Pass;
3676 if (s->iam_policy) {
3677 e = s->iam_policy->eval(s->env, *s->auth.identity,
3678 rgw::IAM::s3PutObject,
3679 rgw_obj(s->bucket, s->object));
3680 }
3681 if (e == Effect::Allow) {
3682 return 0;
3683 } else if (e == Effect::Deny) {
3684 return -EACCES;
3685 } else if (usr_policy_res == Effect::Allow) {
3686 return 0;
3687 }
3688 }
3689
3690 if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
3691 return -EACCES;
3692 }
3693
3694 return 0;
3695 }
3696
3697
3698 void RGWPutObj::pre_exec()
3699 {
3700 rgw_bucket_object_pre_exec(s);
3701 }
3702
3703 class RGWPutObj_CB : public RGWGetObj_Filter
3704 {
3705 RGWPutObj *op;
3706 public:
3707 explicit RGWPutObj_CB(RGWPutObj *_op) : op(_op) {}
3708 ~RGWPutObj_CB() override {}
3709
3710 int handle_data(bufferlist& bl, off_t bl_ofs, off_t bl_len) override {
3711 return op->get_data_cb(bl, bl_ofs, bl_len);
3712 }
3713 };
3714
3715 int RGWPutObj::get_data_cb(bufferlist& bl, off_t bl_ofs, off_t bl_len)
3716 {
3717 bufferlist bl_tmp;
3718 bl.begin(bl_ofs).copy(bl_len, bl_tmp);
3719
3720 bl_aux.append(bl_tmp);
3721
3722 return bl_len;
3723 }
3724
3725 int RGWPutObj::get_data(const off_t fst, const off_t lst, bufferlist& bl)
3726 {
3727 RGWPutObj_CB cb(this);
3728 RGWGetObj_Filter* filter = &cb;
3729 boost::optional<RGWGetObj_Decompress> decompress;
3730 std::unique_ptr<RGWGetObj_Filter> decrypt;
3731 RGWCompressionInfo cs_info;
3732 map<string, bufferlist> attrs;
3733 map<string, bufferlist>::iterator attr_iter;
3734 int ret = 0;
3735
3736 uint64_t obj_size;
3737 int64_t new_ofs, new_end;
3738
3739 new_ofs = fst;
3740 new_end = lst;
3741
3742 rgw_obj_key obj_key(copy_source_object_name, copy_source_version_id);
3743 rgw_obj obj(copy_source_bucket_info.bucket, obj_key);
3744
3745 RGWRados::Object op_target(store->getRados(), copy_source_bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), obj);
3746 RGWRados::Object::Read read_op(&op_target);
3747 read_op.params.obj_size = &obj_size;
3748 read_op.params.attrs = &attrs;
3749
3750 ret = read_op.prepare(s->yield);
3751 if (ret < 0)
3752 return ret;
3753
3754 bool need_decompress;
3755 op_ret = rgw_compression_info_from_attrset(attrs, need_decompress, cs_info);
3756 if (op_ret < 0) {
3757 ldpp_dout(s, 0) << "ERROR: failed to decode compression info" << dendl;
3758 return -EIO;
3759 }
3760
3761 bool partial_content = true;
3762 if (need_decompress)
3763 {
3764 obj_size = cs_info.orig_size;
3765 decompress.emplace(s->cct, &cs_info, partial_content, filter);
3766 filter = &*decompress;
3767 }
3768
3769 attr_iter = attrs.find(RGW_ATTR_MANIFEST);
3770 op_ret = this->get_decrypt_filter(&decrypt,
3771 filter,
3772 attrs,
3773 attr_iter != attrs.end() ? &(attr_iter->second) : nullptr);
3774 if (decrypt != nullptr) {
3775 filter = decrypt.get();
3776 }
3777 if (op_ret < 0) {
3778 return ret;
3779 }
3780
3781 ret = read_op.range_to_ofs(obj_size, new_ofs, new_end);
3782 if (ret < 0)
3783 return ret;
3784
3785 filter->fixup_range(new_ofs, new_end);
3786 ret = read_op.iterate(new_ofs, new_end, filter, s->yield);
3787
3788 if (ret >= 0)
3789 ret = filter->flush();
3790
3791 bl.claim_append(bl_aux);
3792
3793 return ret;
3794 }
3795
3796 // special handling for compression type = "random" with multipart uploads
3797 static CompressorRef get_compressor_plugin(const req_state *s,
3798 const std::string& compression_type)
3799 {
3800 if (compression_type != "random") {
3801 return Compressor::create(s->cct, compression_type);
3802 }
3803
3804 bool is_multipart{false};
3805 const auto& upload_id = s->info.args.get("uploadId", &is_multipart);
3806
3807 if (!is_multipart) {
3808 return Compressor::create(s->cct, compression_type);
3809 }
3810
3811 // use a hash of the multipart upload id so all parts use the same plugin
3812 const auto alg = std::hash<std::string>{}(upload_id) % Compressor::COMP_ALG_LAST;
3813 if (alg == Compressor::COMP_ALG_NONE) {
3814 return nullptr;
3815 }
3816 return Compressor::create(s->cct, alg);
3817 }
3818
3819 void RGWPutObj::execute()
3820 {
3821 char supplied_md5_bin[CEPH_CRYPTO_MD5_DIGESTSIZE + 1];
3822 char supplied_md5[CEPH_CRYPTO_MD5_DIGESTSIZE * 2 + 1];
3823 char calc_md5[CEPH_CRYPTO_MD5_DIGESTSIZE * 2 + 1];
3824 unsigned char m[CEPH_CRYPTO_MD5_DIGESTSIZE];
3825 MD5 hash;
3826 bufferlist bl, aclbl, bs;
3827 int len;
3828
3829 off_t fst;
3830 off_t lst;
3831
3832 bool need_calc_md5 = (dlo_manifest == NULL) && (slo_info == NULL);
3833 perfcounter->inc(l_rgw_put);
3834 // report latency on return
3835 auto put_lat = make_scope_guard([&] {
3836 perfcounter->tinc(l_rgw_put_lat, s->time_elapsed());
3837 });
3838
3839 op_ret = -EINVAL;
3840 if (s->object.empty()) {
3841 return;
3842 }
3843
3844 if (!s->bucket_exists) {
3845 op_ret = -ERR_NO_SUCH_BUCKET;
3846 return;
3847 }
3848
3849
3850 op_ret = get_system_versioning_params(s, &olh_epoch, &version_id);
3851 if (op_ret < 0) {
3852 ldpp_dout(this, 20) << "get_system_versioning_params() returned ret="
3853 << op_ret << dendl;
3854 return;
3855 }
3856
3857 if (supplied_md5_b64) {
3858 need_calc_md5 = true;
3859
3860 ldpp_dout(this, 15) << "supplied_md5_b64=" << supplied_md5_b64 << dendl;
3861 op_ret = ceph_unarmor(supplied_md5_bin, &supplied_md5_bin[CEPH_CRYPTO_MD5_DIGESTSIZE + 1],
3862 supplied_md5_b64, supplied_md5_b64 + strlen(supplied_md5_b64));
3863 ldpp_dout(this, 15) << "ceph_armor ret=" << op_ret << dendl;
3864 if (op_ret != CEPH_CRYPTO_MD5_DIGESTSIZE) {
3865 op_ret = -ERR_INVALID_DIGEST;
3866 return;
3867 }
3868
3869 buf_to_hex((const unsigned char *)supplied_md5_bin, CEPH_CRYPTO_MD5_DIGESTSIZE, supplied_md5);
3870 ldpp_dout(this, 15) << "supplied_md5=" << supplied_md5 << dendl;
3871 }
3872
3873 if (!chunked_upload) { /* with chunked upload we don't know how big is the upload.
3874 we also check sizes at the end anyway */
3875 op_ret = store->getRados()->check_quota(s->bucket_owner.get_id(), s->bucket,
3876 user_quota, bucket_quota, s->content_length);
3877 if (op_ret < 0) {
3878 ldpp_dout(this, 20) << "check_quota() returned ret=" << op_ret << dendl;
3879 return;
3880 }
3881 }
3882
3883 if (supplied_etag) {
3884 strncpy(supplied_md5, supplied_etag, sizeof(supplied_md5) - 1);
3885 supplied_md5[sizeof(supplied_md5) - 1] = '\0';
3886 }
3887
3888 const bool multipart = !multipart_upload_id.empty();
3889 auto& obj_ctx = *static_cast<RGWObjectCtx*>(s->obj_ctx);
3890 rgw_obj obj{s->bucket, s->object};
3891
3892 /* Handle object versioning of Swift API. */
3893 if (! multipart) {
3894 op_ret = store->getRados()->swift_versioning_copy(obj_ctx,
3895 s->bucket_owner.get_id(),
3896 s->bucket_info,
3897 obj,
3898 this,
3899 s->yield);
3900 if (op_ret < 0) {
3901 return;
3902 }
3903 }
3904
3905 // create the object processor
3906 auto aio = rgw::make_throttle(s->cct->_conf->rgw_put_obj_min_window_size,
3907 s->yield);
3908 using namespace rgw::putobj;
3909 constexpr auto max_processor_size = std::max({sizeof(MultipartObjectProcessor),
3910 sizeof(AtomicObjectProcessor),
3911 sizeof(AppendObjectProcessor)});
3912 ceph::static_ptr<ObjectProcessor, max_processor_size> processor;
3913
3914 rgw_placement_rule *pdest_placement;
3915
3916 multipart_upload_info upload_info;
3917 if (multipart) {
3918 RGWMPObj mp(s->object.name, multipart_upload_id);
3919
3920 op_ret = get_multipart_info(store, s, mp.get_meta(), nullptr, nullptr, &upload_info);
3921 if (op_ret < 0) {
3922 if (op_ret != -ENOENT) {
3923 ldpp_dout(this, 0) << "ERROR: get_multipart_info returned " << op_ret << ": " << cpp_strerror(-op_ret) << dendl;
3924 } else {// -ENOENT: raced with upload complete/cancel, no need to spam log
3925 ldpp_dout(this, 20) << "failed to get multipart info (returned " << op_ret << ": " << cpp_strerror(-op_ret) << "): probably raced with upload complete / cancel" << dendl;
3926 }
3927 return;
3928 }
3929 pdest_placement = &upload_info.dest_placement;
3930 ldpp_dout(this, 20) << "dest_placement for part=" << upload_info.dest_placement << dendl;
3931 processor.emplace<MultipartObjectProcessor>(
3932 &*aio, store, s->bucket_info, pdest_placement,
3933 s->owner.get_id(), obj_ctx, obj,
3934 multipart_upload_id, multipart_part_num, multipart_part_str,
3935 this, s->yield);
3936 } else if(append) {
3937 if (s->bucket_info.versioned()) {
3938 op_ret = -ERR_INVALID_BUCKET_STATE;
3939 return;
3940 }
3941 pdest_placement = &s->dest_placement;
3942 processor.emplace<AppendObjectProcessor>(
3943 &*aio, store, s->bucket_info, pdest_placement, s->bucket_owner.get_id(),obj_ctx, obj,
3944 s->req_id, position, &cur_accounted_size, this, s->yield);
3945 } else {
3946 if (s->bucket_info.versioning_enabled()) {
3947 if (!version_id.empty()) {
3948 obj.key.set_instance(version_id);
3949 } else {
3950 store->getRados()->gen_rand_obj_instance_name(&obj);
3951 version_id = obj.key.instance;
3952 }
3953 }
3954 pdest_placement = &s->dest_placement;
3955 processor.emplace<AtomicObjectProcessor>(
3956 &*aio, store, s->bucket_info, pdest_placement,
3957 s->bucket_owner.get_id(), obj_ctx, obj, olh_epoch,
3958 s->req_id, this, s->yield);
3959 }
3960
3961 op_ret = processor->prepare(s->yield);
3962 if (op_ret < 0) {
3963 ldpp_dout(this, 20) << "processor->prepare() returned ret=" << op_ret
3964 << dendl;
3965 return;
3966 }
3967
3968 if ((! copy_source.empty()) && !copy_source_range) {
3969 rgw_obj_key obj_key(copy_source_object_name, copy_source_version_id);
3970 rgw_obj obj(copy_source_bucket_info.bucket, obj_key.name);
3971
3972 RGWObjState *astate;
3973 op_ret = store->getRados()->get_obj_state(&obj_ctx, copy_source_bucket_info, obj,
3974 &astate, true, s->yield, false);
3975 if (op_ret < 0) {
3976 ldpp_dout(this, 0) << "ERROR: get copy source obj state returned with error" << op_ret << dendl;
3977 return;
3978 }
3979 if (!astate->exists){
3980 op_ret = -ENOENT;
3981 return;
3982 }
3983 lst = astate->accounted_size - 1;
3984 } else {
3985 lst = copy_source_range_lst;
3986 }
3987
3988 fst = copy_source_range_fst;
3989
3990 // no filters by default
3991 DataProcessor *filter = processor.get();
3992
3993 const auto& compression_type = store->svc()->zone->get_zone_params().get_compression_type(*pdest_placement);
3994 CompressorRef plugin;
3995 boost::optional<RGWPutObj_Compress> compressor;
3996
3997 std::unique_ptr<DataProcessor> encrypt;
3998
3999 if (!append) { // compression and encryption only apply to full object uploads
4000 op_ret = get_encrypt_filter(&encrypt, filter);
4001 if (op_ret < 0) {
4002 return;
4003 }
4004 if (encrypt != nullptr) {
4005 filter = &*encrypt;
4006 } else if (compression_type != "none") {
4007 plugin = get_compressor_plugin(s, compression_type);
4008 if (!plugin) {
4009 ldpp_dout(this, 1) << "Cannot load plugin for compression type "
4010 << compression_type << dendl;
4011 } else {
4012 compressor.emplace(s->cct, plugin, filter);
4013 filter = &*compressor;
4014 }
4015 }
4016 }
4017 tracepoint(rgw_op, before_data_transfer, s->req_id.c_str());
4018 do {
4019 bufferlist data;
4020 if (fst > lst)
4021 break;
4022 if (copy_source.empty()) {
4023 len = get_data(data);
4024 } else {
4025 uint64_t cur_lst = min(fst + s->cct->_conf->rgw_max_chunk_size - 1, lst);
4026 op_ret = get_data(fst, cur_lst, data);
4027 if (op_ret < 0)
4028 return;
4029 len = data.length();
4030 s->content_length += len;
4031 fst += len;
4032 }
4033 if (len < 0) {
4034 op_ret = len;
4035 ldpp_dout(this, 20) << "get_data() returned ret=" << op_ret << dendl;
4036 return;
4037 } else if (len == 0) {
4038 break;
4039 }
4040
4041 if (need_calc_md5) {
4042 hash.Update((const unsigned char *)data.c_str(), data.length());
4043 }
4044
4045 /* update torrrent */
4046 torrent.update(data);
4047
4048 op_ret = filter->process(std::move(data), ofs);
4049 if (op_ret < 0) {
4050 ldpp_dout(this, 20) << "processor->process() returned ret="
4051 << op_ret << dendl;
4052 return;
4053 }
4054
4055 ofs += len;
4056 } while (len > 0);
4057 tracepoint(rgw_op, after_data_transfer, s->req_id.c_str(), ofs);
4058
4059 // flush any data in filters
4060 op_ret = filter->process({}, ofs);
4061 if (op_ret < 0) {
4062 return;
4063 }
4064
4065 if (!chunked_upload && ofs != s->content_length) {
4066 op_ret = -ERR_REQUEST_TIMEOUT;
4067 return;
4068 }
4069 s->obj_size = ofs;
4070
4071 perfcounter->inc(l_rgw_put_b, s->obj_size);
4072
4073 op_ret = do_aws4_auth_completion();
4074 if (op_ret < 0) {
4075 return;
4076 }
4077
4078 op_ret = store->getRados()->check_quota(s->bucket_owner.get_id(), s->bucket,
4079 user_quota, bucket_quota, s->obj_size);
4080 if (op_ret < 0) {
4081 ldpp_dout(this, 20) << "second check_quota() returned op_ret=" << op_ret << dendl;
4082 return;
4083 }
4084
4085 hash.Final(m);
4086
4087 if (compressor && compressor->is_compressed()) {
4088 bufferlist tmp;
4089 RGWCompressionInfo cs_info;
4090 cs_info.compression_type = plugin->get_type_name();
4091 cs_info.orig_size = s->obj_size;
4092 cs_info.blocks = move(compressor->get_compression_blocks());
4093 encode(cs_info, tmp);
4094 attrs[RGW_ATTR_COMPRESSION] = tmp;
4095 ldpp_dout(this, 20) << "storing " << RGW_ATTR_COMPRESSION
4096 << " with type=" << cs_info.compression_type
4097 << ", orig_size=" << cs_info.orig_size
4098 << ", blocks=" << cs_info.blocks.size() << dendl;
4099 }
4100
4101 buf_to_hex(m, CEPH_CRYPTO_MD5_DIGESTSIZE, calc_md5);
4102
4103 etag = calc_md5;
4104
4105 if (supplied_md5_b64 && strcmp(calc_md5, supplied_md5)) {
4106 op_ret = -ERR_BAD_DIGEST;
4107 return;
4108 }
4109
4110 policy.encode(aclbl);
4111 emplace_attr(RGW_ATTR_ACL, std::move(aclbl));
4112
4113 if (dlo_manifest) {
4114 op_ret = encode_dlo_manifest_attr(dlo_manifest, attrs);
4115 if (op_ret < 0) {
4116 ldpp_dout(this, 0) << "bad user manifest: " << dlo_manifest << dendl;
4117 return;
4118 }
4119 }
4120
4121 if (slo_info) {
4122 bufferlist manifest_bl;
4123 encode(*slo_info, manifest_bl);
4124 emplace_attr(RGW_ATTR_SLO_MANIFEST, std::move(manifest_bl));
4125 }
4126
4127 if (supplied_etag && etag.compare(supplied_etag) != 0) {
4128 op_ret = -ERR_UNPROCESSABLE_ENTITY;
4129 return;
4130 }
4131 bl.append(etag.c_str(), etag.size());
4132 emplace_attr(RGW_ATTR_ETAG, std::move(bl));
4133
4134 populate_with_generic_attrs(s, attrs);
4135 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs);
4136 if (op_ret < 0) {
4137 return;
4138 }
4139 encode_delete_at_attr(delete_at, attrs);
4140 encode_obj_tags_attr(obj_tags.get(), attrs);
4141 rgw_cond_decode_objtags(s, attrs);
4142
4143 /* Add a custom metadata to expose the information whether an object
4144 * is an SLO or not. Appending the attribute must be performed AFTER
4145 * processing any input from user in order to prohibit overwriting. */
4146 if (slo_info) {
4147 bufferlist slo_userindicator_bl;
4148 slo_userindicator_bl.append("True", 4);
4149 emplace_attr(RGW_ATTR_SLO_UINDICATOR, std::move(slo_userindicator_bl));
4150 }
4151 if (obj_legal_hold) {
4152 bufferlist obj_legal_hold_bl;
4153 obj_legal_hold->encode(obj_legal_hold_bl);
4154 emplace_attr(RGW_ATTR_OBJECT_LEGAL_HOLD, std::move(obj_legal_hold_bl));
4155 }
4156 if (obj_retention) {
4157 bufferlist obj_retention_bl;
4158 obj_retention->encode(obj_retention_bl);
4159 emplace_attr(RGW_ATTR_OBJECT_RETENTION, std::move(obj_retention_bl));
4160 }
4161
4162 tracepoint(rgw_op, processor_complete_enter, s->req_id.c_str());
4163 op_ret = processor->complete(s->obj_size, etag, &mtime, real_time(), attrs,
4164 (delete_at ? *delete_at : real_time()), if_match, if_nomatch,
4165 (user_data.empty() ? nullptr : &user_data), nullptr, nullptr,
4166 s->yield);
4167 tracepoint(rgw_op, processor_complete_exit, s->req_id.c_str());
4168
4169 /* produce torrent */
4170 if (s->cct->_conf->rgw_torrent_flag && (ofs == torrent.get_data_len()))
4171 {
4172 torrent.init(s, store);
4173 torrent.set_create_date(mtime);
4174 op_ret = torrent.complete();
4175 if (0 != op_ret)
4176 {
4177 ldpp_dout(this, 0) << "ERROR: torrent.handle_data() returned " << op_ret << dendl;
4178 return;
4179 }
4180 }
4181
4182 // send request to notification manager
4183 const auto ret = rgw::notify::publish(s, obj.key, s->obj_size, mtime, etag, rgw::notify::ObjectCreatedPut, store);
4184 if (ret < 0) {
4185 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
4186 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
4187 // this should be global conf (probably returnign a different handler)
4188 // so we don't need to read the configured values before we perform it
4189 }
4190 }
4191
4192 int RGWPostObj::verify_permission()
4193 {
4194 return 0;
4195 }
4196
4197 void RGWPostObj::pre_exec()
4198 {
4199 rgw_bucket_object_pre_exec(s);
4200 }
4201
4202 void RGWPostObj::execute()
4203 {
4204 boost::optional<RGWPutObj_Compress> compressor;
4205 CompressorRef plugin;
4206 char supplied_md5[CEPH_CRYPTO_MD5_DIGESTSIZE * 2 + 1];
4207
4208 /* Read in the data from the POST form. */
4209 op_ret = get_params();
4210 if (op_ret < 0) {
4211 return;
4212 }
4213
4214 op_ret = verify_params();
4215 if (op_ret < 0) {
4216 return;
4217 }
4218
4219 if (s->iam_policy || ! s->iam_user_policies.empty()) {
4220 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
4221 boost::none,
4222 rgw::IAM::s3PutObject,
4223 rgw_obj(s->bucket, s->object));
4224 if (usr_policy_res == Effect::Deny) {
4225 op_ret = -EACCES;
4226 return;
4227 }
4228
4229 rgw::IAM::Effect e = Effect::Pass;
4230 if (s->iam_policy) {
4231 e = s->iam_policy->eval(s->env, *s->auth.identity,
4232 rgw::IAM::s3PutObject,
4233 rgw_obj(s->bucket, s->object));
4234 }
4235 if (e == Effect::Deny) {
4236 op_ret = -EACCES;
4237 return;
4238 } else if (usr_policy_res == Effect::Pass && e == Effect::Pass && !verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
4239 op_ret = -EACCES;
4240 return;
4241 }
4242 } else if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
4243 op_ret = -EACCES;
4244 return;
4245 }
4246
4247 /* Start iteration over data fields. It's necessary as Swift's FormPost
4248 * is capable to handle multiple files in single form. */
4249 do {
4250 char calc_md5[CEPH_CRYPTO_MD5_DIGESTSIZE * 2 + 1];
4251 unsigned char m[CEPH_CRYPTO_MD5_DIGESTSIZE];
4252 MD5 hash;
4253 ceph::buffer::list bl, aclbl;
4254 int len = 0;
4255
4256 op_ret = store->getRados()->check_quota(s->bucket_owner.get_id(),
4257 s->bucket,
4258 user_quota,
4259 bucket_quota,
4260 s->content_length);
4261 if (op_ret < 0) {
4262 return;
4263 }
4264
4265 if (supplied_md5_b64) {
4266 char supplied_md5_bin[CEPH_CRYPTO_MD5_DIGESTSIZE + 1];
4267 ldpp_dout(this, 15) << "supplied_md5_b64=" << supplied_md5_b64 << dendl;
4268 op_ret = ceph_unarmor(supplied_md5_bin, &supplied_md5_bin[CEPH_CRYPTO_MD5_DIGESTSIZE + 1],
4269 supplied_md5_b64, supplied_md5_b64 + strlen(supplied_md5_b64));
4270 ldpp_dout(this, 15) << "ceph_armor ret=" << op_ret << dendl;
4271 if (op_ret != CEPH_CRYPTO_MD5_DIGESTSIZE) {
4272 op_ret = -ERR_INVALID_DIGEST;
4273 return;
4274 }
4275
4276 buf_to_hex((const unsigned char *)supplied_md5_bin, CEPH_CRYPTO_MD5_DIGESTSIZE, supplied_md5);
4277 ldpp_dout(this, 15) << "supplied_md5=" << supplied_md5 << dendl;
4278 }
4279
4280 rgw_obj obj(s->bucket, get_current_filename());
4281 if (s->bucket_info.versioning_enabled()) {
4282 store->getRados()->gen_rand_obj_instance_name(&obj);
4283 }
4284
4285 auto aio = rgw::make_throttle(s->cct->_conf->rgw_put_obj_min_window_size,
4286 s->yield);
4287
4288 using namespace rgw::putobj;
4289 AtomicObjectProcessor processor(&*aio, store, s->bucket_info,
4290 &s->dest_placement,
4291 s->bucket_owner.get_id(),
4292 *static_cast<RGWObjectCtx*>(s->obj_ctx),
4293 obj, 0, s->req_id, this, s->yield);
4294 op_ret = processor.prepare(s->yield);
4295 if (op_ret < 0) {
4296 return;
4297 }
4298
4299 /* No filters by default. */
4300 DataProcessor *filter = &processor;
4301
4302 std::unique_ptr<DataProcessor> encrypt;
4303 op_ret = get_encrypt_filter(&encrypt, filter);
4304 if (op_ret < 0) {
4305 return;
4306 }
4307 if (encrypt != nullptr) {
4308 filter = encrypt.get();
4309 } else {
4310 const auto& compression_type = store->svc()->zone->get_zone_params().get_compression_type(
4311 s->dest_placement);
4312 if (compression_type != "none") {
4313 plugin = Compressor::create(s->cct, compression_type);
4314 if (!plugin) {
4315 ldpp_dout(this, 1) << "Cannot load plugin for compression type "
4316 << compression_type << dendl;
4317 } else {
4318 compressor.emplace(s->cct, plugin, filter);
4319 filter = &*compressor;
4320 }
4321 }
4322 }
4323
4324 bool again;
4325 do {
4326 ceph::bufferlist data;
4327 len = get_data(data, again);
4328
4329 if (len < 0) {
4330 op_ret = len;
4331 return;
4332 }
4333
4334 if (!len) {
4335 break;
4336 }
4337
4338 hash.Update((const unsigned char *)data.c_str(), data.length());
4339 op_ret = filter->process(std::move(data), ofs);
4340
4341 ofs += len;
4342
4343 if (ofs > max_len) {
4344 op_ret = -ERR_TOO_LARGE;
4345 return;
4346 }
4347 } while (again);
4348
4349 // flush
4350 op_ret = filter->process({}, ofs);
4351 if (op_ret < 0) {
4352 return;
4353 }
4354
4355 if (len < min_len) {
4356 op_ret = -ERR_TOO_SMALL;
4357 return;
4358 }
4359
4360 s->obj_size = ofs;
4361
4362
4363 op_ret = store->getRados()->check_quota(s->bucket_owner.get_id(), s->bucket,
4364 user_quota, bucket_quota, s->obj_size);
4365 if (op_ret < 0) {
4366 return;
4367 }
4368
4369 hash.Final(m);
4370 buf_to_hex(m, CEPH_CRYPTO_MD5_DIGESTSIZE, calc_md5);
4371
4372 etag = calc_md5;
4373
4374 if (supplied_md5_b64 && strcmp(calc_md5, supplied_md5)) {
4375 op_ret = -ERR_BAD_DIGEST;
4376 return;
4377 }
4378
4379 bl.append(etag.c_str(), etag.size());
4380 emplace_attr(RGW_ATTR_ETAG, std::move(bl));
4381
4382 policy.encode(aclbl);
4383 emplace_attr(RGW_ATTR_ACL, std::move(aclbl));
4384
4385 const std::string content_type = get_current_content_type();
4386 if (! content_type.empty()) {
4387 ceph::bufferlist ct_bl;
4388 ct_bl.append(content_type.c_str(), content_type.size() + 1);
4389 emplace_attr(RGW_ATTR_CONTENT_TYPE, std::move(ct_bl));
4390 }
4391
4392 if (compressor && compressor->is_compressed()) {
4393 ceph::bufferlist tmp;
4394 RGWCompressionInfo cs_info;
4395 cs_info.compression_type = plugin->get_type_name();
4396 cs_info.orig_size = s->obj_size;
4397 cs_info.blocks = move(compressor->get_compression_blocks());
4398 encode(cs_info, tmp);
4399 emplace_attr(RGW_ATTR_COMPRESSION, std::move(tmp));
4400 }
4401
4402 op_ret = processor.complete(s->obj_size, etag, nullptr, real_time(), attrs,
4403 (delete_at ? *delete_at : real_time()),
4404 nullptr, nullptr, nullptr, nullptr, nullptr,
4405 s->yield);
4406 if (op_ret < 0) {
4407 return;
4408 }
4409 } while (is_next_file_to_upload());
4410
4411 const auto ret = rgw::notify::publish(s, s->object, ofs, ceph::real_clock::now(), etag, rgw::notify::ObjectCreatedPost, store);
4412 if (ret < 0) {
4413 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
4414 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
4415 // this should be global conf (probably returnign a different handler)
4416 // so we don't need to read the configured values before we perform it
4417 }
4418 }
4419
4420
4421 void RGWPutMetadataAccount::filter_out_temp_url(map<string, bufferlist>& add_attrs,
4422 const set<string>& rmattr_names,
4423 map<int, string>& temp_url_keys)
4424 {
4425 map<string, bufferlist>::iterator iter;
4426
4427 iter = add_attrs.find(RGW_ATTR_TEMPURL_KEY1);
4428 if (iter != add_attrs.end()) {
4429 temp_url_keys[0] = iter->second.c_str();
4430 add_attrs.erase(iter);
4431 }
4432
4433 iter = add_attrs.find(RGW_ATTR_TEMPURL_KEY2);
4434 if (iter != add_attrs.end()) {
4435 temp_url_keys[1] = iter->second.c_str();
4436 add_attrs.erase(iter);
4437 }
4438
4439 for (const string& name : rmattr_names) {
4440 if (name.compare(RGW_ATTR_TEMPURL_KEY1) == 0) {
4441 temp_url_keys[0] = string();
4442 }
4443 if (name.compare(RGW_ATTR_TEMPURL_KEY2) == 0) {
4444 temp_url_keys[1] = string();
4445 }
4446 }
4447 }
4448
4449 int RGWPutMetadataAccount::init_processing()
4450 {
4451 /* First, go to the base class. At the time of writing the method was
4452 * responsible only for initializing the quota. This isn't necessary
4453 * here as we are touching metadata only. I'm putting this call only
4454 * for the future. */
4455 op_ret = RGWOp::init_processing();
4456 if (op_ret < 0) {
4457 return op_ret;
4458 }
4459
4460 op_ret = get_params();
4461 if (op_ret < 0) {
4462 return op_ret;
4463 }
4464
4465 op_ret = store->ctl()->user->get_attrs_by_uid(s->user->get_id(), &orig_attrs,
4466 s->yield,
4467 &acct_op_tracker);
4468 if (op_ret < 0) {
4469 return op_ret;
4470 }
4471
4472 if (has_policy) {
4473 bufferlist acl_bl;
4474 policy.encode(acl_bl);
4475 attrs.emplace(RGW_ATTR_ACL, std::move(acl_bl));
4476 }
4477
4478 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs, false);
4479 if (op_ret < 0) {
4480 return op_ret;
4481 }
4482 prepare_add_del_attrs(orig_attrs, rmattr_names, attrs);
4483 populate_with_generic_attrs(s, attrs);
4484
4485 /* Try extract the TempURL-related stuff now to allow verify_permission
4486 * evaluate whether we need FULL_CONTROL or not. */
4487 filter_out_temp_url(attrs, rmattr_names, temp_url_keys);
4488
4489 /* The same with quota except a client needs to be reseller admin. */
4490 op_ret = filter_out_quota_info(attrs, rmattr_names, new_quota,
4491 &new_quota_extracted);
4492 if (op_ret < 0) {
4493 return op_ret;
4494 }
4495
4496 return 0;
4497 }
4498
4499 int RGWPutMetadataAccount::verify_permission()
4500 {
4501 if (s->auth.identity->is_anonymous()) {
4502 return -EACCES;
4503 }
4504
4505 if (!verify_user_permission_no_policy(this, s, RGW_PERM_WRITE)) {
4506 return -EACCES;
4507 }
4508
4509 /* Altering TempURL keys requires FULL_CONTROL. */
4510 if (!temp_url_keys.empty() && s->perm_mask != RGW_PERM_FULL_CONTROL) {
4511 return -EPERM;
4512 }
4513
4514 /* We are failing this intensionally to allow system user/reseller admin
4515 * override in rgw_process.cc. This is the way to specify a given RGWOp
4516 * expect extra privileges. */
4517 if (new_quota_extracted) {
4518 return -EACCES;
4519 }
4520
4521 return 0;
4522 }
4523
4524 void RGWPutMetadataAccount::execute()
4525 {
4526 /* Params have been extracted earlier. See init_processing(). */
4527 RGWUserInfo new_uinfo;
4528 op_ret = store->ctl()->user->get_info_by_uid(s->user->get_id(), &new_uinfo, s->yield,
4529 RGWUserCtl::GetParams()
4530 .set_objv_tracker(&acct_op_tracker));
4531 if (op_ret < 0) {
4532 return;
4533 }
4534
4535 /* Handle the TempURL-related stuff. */
4536 if (!temp_url_keys.empty()) {
4537 for (auto& pair : temp_url_keys) {
4538 new_uinfo.temp_url_keys[pair.first] = std::move(pair.second);
4539 }
4540 }
4541
4542 /* Handle the quota extracted at the verify_permission step. */
4543 if (new_quota_extracted) {
4544 new_uinfo.user_quota = std::move(new_quota);
4545 }
4546
4547 /* We are passing here the current (old) user info to allow the function
4548 * optimize-out some operations. */
4549 op_ret = store->ctl()->user->store_info(new_uinfo, s->yield,
4550 RGWUserCtl::PutParams()
4551 .set_old_info(&s->user->get_info())
4552 .set_objv_tracker(&acct_op_tracker)
4553 .set_attrs(&attrs));
4554 }
4555
4556 int RGWPutMetadataBucket::verify_permission()
4557 {
4558 if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
4559 return -EACCES;
4560 }
4561
4562 return 0;
4563 }
4564
4565 void RGWPutMetadataBucket::pre_exec()
4566 {
4567 rgw_bucket_object_pre_exec(s);
4568 }
4569
4570 void RGWPutMetadataBucket::execute()
4571 {
4572 op_ret = get_params();
4573 if (op_ret < 0) {
4574 return;
4575 }
4576
4577 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs, false);
4578 if (op_ret < 0) {
4579 return;
4580 }
4581
4582 if (!placement_rule.empty() &&
4583 placement_rule != s->bucket_info.placement_rule) {
4584 op_ret = -EEXIST;
4585 return;
4586 }
4587
4588 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
4589 /* Encode special metadata first as we're using std::map::emplace under
4590 * the hood. This method will add the new items only if the map doesn't
4591 * contain such keys yet. */
4592 if (has_policy) {
4593 if (s->dialect.compare("swift") == 0) {
4594 auto old_policy = \
4595 static_cast<RGWAccessControlPolicy_SWIFT*>(s->bucket_acl.get());
4596 auto new_policy = static_cast<RGWAccessControlPolicy_SWIFT*>(&policy);
4597 new_policy->filter_merge(policy_rw_mask, old_policy);
4598 policy = *new_policy;
4599 }
4600 buffer::list bl;
4601 policy.encode(bl);
4602 emplace_attr(RGW_ATTR_ACL, std::move(bl));
4603 }
4604
4605 if (has_cors) {
4606 buffer::list bl;
4607 cors_config.encode(bl);
4608 emplace_attr(RGW_ATTR_CORS, std::move(bl));
4609 }
4610
4611 /* It's supposed that following functions WILL NOT change any
4612 * special attributes (like RGW_ATTR_ACL) if they are already
4613 * present in attrs. */
4614 prepare_add_del_attrs(s->bucket_attrs, rmattr_names, attrs);
4615 populate_with_generic_attrs(s, attrs);
4616
4617 /* According to the Swift's behaviour and its container_quota
4618 * WSGI middleware implementation: anyone with write permissions
4619 * is able to set the bucket quota. This stays in contrast to
4620 * account quotas that can be set only by clients holding
4621 * reseller admin privileges. */
4622 op_ret = filter_out_quota_info(attrs, rmattr_names, s->bucket_info.quota);
4623 if (op_ret < 0) {
4624 return op_ret;
4625 }
4626
4627 if (swift_ver_location) {
4628 s->bucket_info.swift_ver_location = *swift_ver_location;
4629 s->bucket_info.swift_versioning = (!swift_ver_location->empty());
4630 }
4631
4632 /* Web site of Swift API. */
4633 filter_out_website(attrs, rmattr_names, s->bucket_info.website_conf);
4634 s->bucket_info.has_website = !s->bucket_info.website_conf.is_empty();
4635
4636 /* Setting attributes also stores the provided bucket info. Due
4637 * to this fact, the new quota settings can be serialized with
4638 * the same call. */
4639 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
4640 &s->bucket_info.objv_tracker,
4641 s->yield);
4642 return op_ret;
4643 });
4644 }
4645
4646 int RGWPutMetadataObject::verify_permission()
4647 {
4648 // This looks to be something specific to Swift. We could add
4649 // operations like swift:PutMetadataObject to the Policy Engine.
4650 if (!verify_object_permission_no_policy(this, s, RGW_PERM_WRITE)) {
4651 return -EACCES;
4652 }
4653
4654 return 0;
4655 }
4656
4657 void RGWPutMetadataObject::pre_exec()
4658 {
4659 rgw_bucket_object_pre_exec(s);
4660 }
4661
4662 void RGWPutMetadataObject::execute()
4663 {
4664 rgw_obj obj(s->bucket, s->object);
4665 rgw_obj target_obj;
4666 map<string, bufferlist> attrs, orig_attrs, rmattrs;
4667
4668 store->getRados()->set_atomic(s->obj_ctx, obj);
4669
4670 op_ret = get_params();
4671 if (op_ret < 0) {
4672 return;
4673 }
4674
4675 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs);
4676 if (op_ret < 0) {
4677 return;
4678 }
4679
4680 /* check if obj exists, read orig attrs */
4681 op_ret = get_obj_attrs(store, s, obj, orig_attrs, &target_obj);
4682 if (op_ret < 0) {
4683 return;
4684 }
4685
4686 /* Check whether the object has expired. Swift API documentation
4687 * stands that we should return 404 Not Found in such case. */
4688 if (need_object_expiration() && object_is_expired(orig_attrs)) {
4689 op_ret = -ENOENT;
4690 return;
4691 }
4692
4693 /* Filter currently existing attributes. */
4694 prepare_add_del_attrs(orig_attrs, attrs, rmattrs);
4695 populate_with_generic_attrs(s, attrs);
4696 encode_delete_at_attr(delete_at, attrs);
4697
4698 if (dlo_manifest) {
4699 op_ret = encode_dlo_manifest_attr(dlo_manifest, attrs);
4700 if (op_ret < 0) {
4701 ldpp_dout(this, 0) << "bad user manifest: " << dlo_manifest << dendl;
4702 return;
4703 }
4704 }
4705
4706 op_ret = store->getRados()->set_attrs(s->obj_ctx, s->bucket_info, target_obj,
4707 attrs, &rmattrs, s->yield);
4708 }
4709
4710 int RGWDeleteObj::handle_slo_manifest(bufferlist& bl)
4711 {
4712 RGWSLOInfo slo_info;
4713 auto bliter = bl.cbegin();
4714 try {
4715 decode(slo_info, bliter);
4716 } catch (buffer::error& err) {
4717 ldpp_dout(this, 0) << "ERROR: failed to decode slo manifest" << dendl;
4718 return -EIO;
4719 }
4720
4721 try {
4722 deleter = std::unique_ptr<RGWBulkDelete::Deleter>(\
4723 new RGWBulkDelete::Deleter(this, store, s));
4724 } catch (const std::bad_alloc&) {
4725 return -ENOMEM;
4726 }
4727
4728 list<RGWBulkDelete::acct_path_t> items;
4729 for (const auto& iter : slo_info.entries) {
4730 const string& path_str = iter.path;
4731
4732 const size_t sep_pos = path_str.find('/', 1 /* skip first slash */);
4733 if (boost::string_view::npos == sep_pos) {
4734 return -EINVAL;
4735 }
4736
4737 RGWBulkDelete::acct_path_t path;
4738
4739 path.bucket_name = url_decode(path_str.substr(1, sep_pos - 1));
4740 path.obj_key = url_decode(path_str.substr(sep_pos + 1));
4741
4742 items.push_back(path);
4743 }
4744
4745 /* Request removal of the manifest object itself. */
4746 RGWBulkDelete::acct_path_t path;
4747 path.bucket_name = s->bucket_name;
4748 path.obj_key = s->object;
4749 items.push_back(path);
4750
4751 int ret = deleter->delete_chunk(items);
4752 if (ret < 0) {
4753 return ret;
4754 }
4755
4756 return 0;
4757 }
4758
4759 int RGWDeleteObj::verify_permission()
4760 {
4761 int op_ret = get_params();
4762 if (op_ret) {
4763 return op_ret;
4764 }
4765 if (s->iam_policy || ! s->iam_user_policies.empty()) {
4766 if (s->bucket_info.obj_lock_enabled() && bypass_governance_mode) {
4767 auto r = eval_user_policies(s->iam_user_policies, s->env, boost::none,
4768 rgw::IAM::s3BypassGovernanceRetention, ARN(s->bucket, s->object.name));
4769 if (r == Effect::Deny) {
4770 bypass_perm = false;
4771 } else if (r == Effect::Pass && s->iam_policy) {
4772 r = s->iam_policy->eval(s->env, *s->auth.identity, rgw::IAM::s3BypassGovernanceRetention,
4773 ARN(s->bucket, s->object.name));
4774 if (r == Effect::Deny) {
4775 bypass_perm = false;
4776 }
4777 }
4778 }
4779 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
4780 boost::none,
4781 s->object.instance.empty() ?
4782 rgw::IAM::s3DeleteObject :
4783 rgw::IAM::s3DeleteObjectVersion,
4784 ARN(s->bucket, s->object.name));
4785 if (usr_policy_res == Effect::Deny) {
4786 return -EACCES;
4787 }
4788
4789 rgw::IAM::Effect r = Effect::Pass;
4790 if (s->iam_policy) {
4791 r = s->iam_policy->eval(s->env, *s->auth.identity,
4792 s->object.instance.empty() ?
4793 rgw::IAM::s3DeleteObject :
4794 rgw::IAM::s3DeleteObjectVersion,
4795 ARN(s->bucket, s->object.name));
4796 }
4797 if (r == Effect::Allow)
4798 return 0;
4799 else if (r == Effect::Deny)
4800 return -EACCES;
4801 else if (usr_policy_res == Effect::Allow)
4802 return 0;
4803 }
4804
4805 if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
4806 return -EACCES;
4807 }
4808
4809 if (s->bucket_info.mfa_enabled() &&
4810 !s->object.instance.empty() &&
4811 !s->mfa_verified) {
4812 ldpp_dout(this, 5) << "NOTICE: object delete request with a versioned object, mfa auth not provided" << dendl;
4813 return -ERR_MFA_REQUIRED;
4814 }
4815
4816 return 0;
4817 }
4818
4819 void RGWDeleteObj::pre_exec()
4820 {
4821 rgw_bucket_object_pre_exec(s);
4822 }
4823
4824 void RGWDeleteObj::execute()
4825 {
4826 if (!s->bucket_exists) {
4827 op_ret = -ERR_NO_SUCH_BUCKET;
4828 return;
4829 }
4830
4831 rgw_obj obj(s->bucket, s->object);
4832 map<string, bufferlist> attrs;
4833
4834 bool check_obj_lock = obj.key.have_instance() && s->bucket_info.obj_lock_enabled();
4835
4836 if (!s->object.empty()) {
4837 op_ret = get_obj_attrs(store, s, obj, attrs);
4838
4839 if (need_object_expiration() || multipart_delete) {
4840 /* check if obj exists, read orig attrs */
4841 if (op_ret < 0) {
4842 return;
4843 }
4844 }
4845
4846 if (check_obj_lock) {
4847 /* check if obj exists, read orig attrs */
4848 if (op_ret < 0) {
4849 if (op_ret == -ENOENT) {
4850 /* object maybe delete_marker, skip check_obj_lock*/
4851 check_obj_lock = false;
4852 } else {
4853 return;
4854 }
4855 }
4856 }
4857
4858 // ignore return value from get_obj_attrs in all other cases
4859 op_ret = 0;
4860
4861 if (check_obj_lock) {
4862 auto aiter = attrs.find(RGW_ATTR_OBJECT_RETENTION);
4863 if (aiter != attrs.end()) {
4864 RGWObjectRetention obj_retention;
4865 try {
4866 decode(obj_retention, aiter->second);
4867 } catch (buffer::error& err) {
4868 ldpp_dout(this, 0) << "ERROR: failed to decode RGWObjectRetention" << dendl;
4869 op_ret = -EIO;
4870 return;
4871 }
4872 if (ceph::real_clock::to_time_t(obj_retention.get_retain_until_date()) > ceph_clock_now()) {
4873 if (obj_retention.get_mode().compare("GOVERNANCE") != 0 || !bypass_perm || !bypass_governance_mode) {
4874 op_ret = -EACCES;
4875 return;
4876 }
4877 }
4878 }
4879 aiter = attrs.find(RGW_ATTR_OBJECT_LEGAL_HOLD);
4880 if (aiter != attrs.end()) {
4881 RGWObjectLegalHold obj_legal_hold;
4882 try {
4883 decode(obj_legal_hold, aiter->second);
4884 } catch (buffer::error& err) {
4885 ldpp_dout(this, 0) << "ERROR: failed to decode RGWObjectLegalHold" << dendl;
4886 op_ret = -EIO;
4887 return;
4888 }
4889 if (obj_legal_hold.is_enabled()) {
4890 op_ret = -EACCES;
4891 return;
4892 }
4893 }
4894 }
4895
4896 if (multipart_delete) {
4897 const auto slo_attr = attrs.find(RGW_ATTR_SLO_MANIFEST);
4898
4899 if (slo_attr != attrs.end()) {
4900 op_ret = handle_slo_manifest(slo_attr->second);
4901 if (op_ret < 0) {
4902 ldpp_dout(this, 0) << "ERROR: failed to handle slo manifest ret=" << op_ret << dendl;
4903 }
4904 } else {
4905 op_ret = -ERR_NOT_SLO_MANIFEST;
4906 }
4907
4908 return;
4909 }
4910
4911 RGWObjectCtx *obj_ctx = static_cast<RGWObjectCtx *>(s->obj_ctx);
4912 obj_ctx->set_atomic(obj);
4913
4914 bool ver_restored = false;
4915 op_ret = store->getRados()->swift_versioning_restore(*obj_ctx, s->bucket_owner.get_id(),
4916 s->bucket_info, obj, ver_restored, this);
4917 if (op_ret < 0) {
4918 return;
4919 }
4920
4921 if (!ver_restored) {
4922 /* Swift's versioning mechanism hasn't found any previous version of
4923 * the object that could be restored. This means we should proceed
4924 * with the regular delete path. */
4925 RGWRados::Object del_target(store->getRados(), s->bucket_info, *obj_ctx, obj);
4926 RGWRados::Object::Delete del_op(&del_target);
4927
4928 op_ret = get_system_versioning_params(s, &del_op.params.olh_epoch,
4929 &del_op.params.marker_version_id);
4930 if (op_ret < 0) {
4931 return;
4932 }
4933
4934 del_op.params.bucket_owner = s->bucket_owner.get_id();
4935 del_op.params.versioning_status = s->bucket_info.versioning_status();
4936 del_op.params.obj_owner = s->owner;
4937 del_op.params.unmod_since = unmod_since;
4938 del_op.params.high_precision_time = s->system_request; /* system request uses high precision time */
4939
4940 op_ret = del_op.delete_obj(s->yield);
4941 if (op_ret >= 0) {
4942 delete_marker = del_op.result.delete_marker;
4943 version_id = del_op.result.version_id;
4944 }
4945
4946 /* Check whether the object has expired. Swift API documentation
4947 * stands that we should return 404 Not Found in such case. */
4948 if (need_object_expiration() && object_is_expired(attrs)) {
4949 op_ret = -ENOENT;
4950 return;
4951 }
4952 }
4953
4954 if (op_ret == -ECANCELED) {
4955 op_ret = 0;
4956 }
4957 if (op_ret == -ERR_PRECONDITION_FAILED && no_precondition_error) {
4958 op_ret = 0;
4959 }
4960
4961 // cache the objects tags and metadata into the requests
4962 // so it could be used in the notification mechanism
4963 try {
4964 populate_tags_in_request(s, attrs);
4965 } catch (buffer::error& err) {
4966 ldpp_dout(this, 5) << "WARNING: failed to populate delete request with object tags: " << err.what() << dendl;
4967 }
4968 populate_metadata_in_request(s, attrs);
4969 const auto obj_state = obj_ctx->get_state(obj);
4970
4971 const auto ret = rgw::notify::publish(s, s->object, obj_state->size , obj_state->mtime, attrs[RGW_ATTR_ETAG].to_str(),
4972 delete_marker && s->object.instance.empty() ? rgw::notify::ObjectRemovedDeleteMarkerCreated : rgw::notify::ObjectRemovedDelete,
4973 store);
4974 if (ret < 0) {
4975 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
4976 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
4977 // this should be global conf (probably returnign a different handler)
4978 // so we don't need to read the configured values before we perform it
4979 }
4980 } else {
4981 op_ret = -EINVAL;
4982 }
4983 }
4984
4985 bool RGWCopyObj::parse_copy_location(const boost::string_view& url_src,
4986 string& bucket_name,
4987 rgw_obj_key& key)
4988 {
4989 boost::string_view name_str;
4990 boost::string_view params_str;
4991
4992 // search for ? before url-decoding so we don't accidentally match %3F
4993 size_t pos = url_src.find('?');
4994 if (pos == string::npos) {
4995 name_str = url_src;
4996 } else {
4997 name_str = url_src.substr(0, pos);
4998 params_str = url_src.substr(pos + 1);
4999 }
5000
5001 boost::string_view dec_src{name_str};
5002 if (dec_src[0] == '/')
5003 dec_src.remove_prefix(1);
5004
5005 pos = dec_src.find('/');
5006 if (pos == string::npos)
5007 return false;
5008
5009 bucket_name = url_decode(dec_src.substr(0, pos));
5010 key.name = url_decode(dec_src.substr(pos + 1));
5011
5012 if (key.name.empty()) {
5013 return false;
5014 }
5015
5016 if (! params_str.empty()) {
5017 RGWHTTPArgs args;
5018 args.set(params_str.to_string());
5019 args.parse();
5020
5021 key.instance = args.get("versionId", NULL);
5022 }
5023
5024 return true;
5025 }
5026
5027 int RGWCopyObj::verify_permission()
5028 {
5029 RGWAccessControlPolicy src_acl(s->cct);
5030 boost::optional<Policy> src_policy;
5031 op_ret = get_params();
5032 if (op_ret < 0)
5033 return op_ret;
5034
5035 op_ret = get_system_versioning_params(s, &olh_epoch, &version_id);
5036 if (op_ret < 0) {
5037 return op_ret;
5038 }
5039 map<string, bufferlist> src_attrs;
5040
5041 if (s->bucket_instance_id.empty()) {
5042 op_ret = store->getRados()->get_bucket_info(store->svc(), src_tenant_name, src_bucket_name, src_bucket_info, NULL, s->yield, &src_attrs);
5043 } else {
5044 /* will only happen in intra region sync where the source and dest bucket is the same */
5045 rgw_bucket b(rgw_bucket_key(src_tenant_name, src_bucket_name, s->bucket_instance_id));
5046 op_ret = store->getRados()->get_bucket_instance_info(*s->sysobj_ctx, b, src_bucket_info, NULL, &src_attrs, s->yield);
5047 }
5048 if (op_ret < 0) {
5049 if (op_ret == -ENOENT) {
5050 op_ret = -ERR_NO_SUCH_BUCKET;
5051 }
5052 return op_ret;
5053 }
5054
5055 src_bucket = src_bucket_info.bucket;
5056
5057 /* get buckets info (source and dest) */
5058 if (s->local_source && source_zone.empty()) {
5059 rgw_obj src_obj(src_bucket, src_object);
5060 store->getRados()->set_atomic(s->obj_ctx, src_obj);
5061 store->getRados()->set_prefetch_data(s->obj_ctx, src_obj);
5062
5063 rgw_placement_rule src_placement;
5064
5065 /* check source object permissions */
5066 op_ret = read_obj_policy(store, s, src_bucket_info, src_attrs, &src_acl, &src_placement.storage_class,
5067 src_policy, src_bucket, src_object);
5068 if (op_ret < 0) {
5069 return op_ret;
5070 }
5071
5072 /* follow up on previous checks that required reading source object head */
5073 if (need_to_check_storage_class) {
5074 src_placement.inherit_from(src_bucket_info.placement_rule);
5075
5076 op_ret = check_storage_class(src_placement);
5077 if (op_ret < 0) {
5078 return op_ret;
5079 }
5080 }
5081
5082 /* admin request overrides permission checks */
5083 if (!s->auth.identity->is_admin_of(src_acl.get_owner().get_id())) {
5084 if (src_policy) {
5085 auto e = src_policy->eval(s->env, *s->auth.identity,
5086 src_object.instance.empty() ?
5087 rgw::IAM::s3GetObject :
5088 rgw::IAM::s3GetObjectVersion,
5089 ARN(src_obj));
5090 if (e == Effect::Deny) {
5091 return -EACCES;
5092 } else if (e == Effect::Pass &&
5093 !src_acl.verify_permission(this, *s->auth.identity, s->perm_mask,
5094 RGW_PERM_READ)) {
5095 return -EACCES;
5096 }
5097 } else if (!src_acl.verify_permission(this, *s->auth.identity,
5098 s->perm_mask,
5099 RGW_PERM_READ)) {
5100 return -EACCES;
5101 }
5102 }
5103 }
5104
5105 RGWAccessControlPolicy dest_bucket_policy(s->cct);
5106 map<string, bufferlist> dest_attrs;
5107
5108 if (src_bucket_name.compare(dest_bucket_name) == 0) { /* will only happen if s->local_source
5109 or intra region sync */
5110 dest_bucket_info = src_bucket_info;
5111 dest_attrs = src_attrs;
5112 } else {
5113 op_ret = store->getRados()->get_bucket_info(store->svc(), dest_tenant_name, dest_bucket_name,
5114 dest_bucket_info, nullptr, s->yield, &dest_attrs);
5115 if (op_ret < 0) {
5116 if (op_ret == -ENOENT) {
5117 op_ret = -ERR_NO_SUCH_BUCKET;
5118 }
5119 return op_ret;
5120 }
5121 }
5122
5123 dest_bucket = dest_bucket_info.bucket;
5124
5125 rgw_obj dest_obj(dest_bucket, dest_object);
5126 store->getRados()->set_atomic(s->obj_ctx, dest_obj);
5127
5128 /* check dest bucket permissions */
5129 op_ret = read_bucket_policy(store, s, dest_bucket_info, dest_attrs,
5130 &dest_bucket_policy, dest_bucket);
5131 if (op_ret < 0) {
5132 return op_ret;
5133 }
5134 auto dest_iam_policy = get_iam_policy_from_attr(s->cct, store, dest_attrs, dest_bucket.tenant);
5135 /* admin request overrides permission checks */
5136 if (! s->auth.identity->is_admin_of(dest_policy.get_owner().get_id())){
5137 if (dest_iam_policy != boost::none) {
5138 rgw_add_to_iam_environment(s->env, "s3:x-amz-copy-source", copy_source);
5139 if (md_directive)
5140 rgw_add_to_iam_environment(s->env, "s3:x-amz-metadata-directive",
5141 *md_directive);
5142
5143 auto e = dest_iam_policy->eval(s->env, *s->auth.identity,
5144 rgw::IAM::s3PutObject,
5145 ARN(dest_obj));
5146 if (e == Effect::Deny) {
5147 return -EACCES;
5148 } else if (e == Effect::Pass &&
5149 ! dest_bucket_policy.verify_permission(this,
5150 *s->auth.identity,
5151 s->perm_mask,
5152 RGW_PERM_WRITE)){
5153 return -EACCES;
5154 }
5155 } else if (! dest_bucket_policy.verify_permission(this, *s->auth.identity, s->perm_mask,
5156 RGW_PERM_WRITE)) {
5157 return -EACCES;
5158 }
5159
5160 }
5161
5162 op_ret = init_dest_policy();
5163 if (op_ret < 0) {
5164 return op_ret;
5165 }
5166
5167 return 0;
5168 }
5169
5170
5171 int RGWCopyObj::init_common()
5172 {
5173 if (if_mod) {
5174 if (parse_time(if_mod, &mod_time) < 0) {
5175 op_ret = -EINVAL;
5176 return op_ret;
5177 }
5178 mod_ptr = &mod_time;
5179 }
5180
5181 if (if_unmod) {
5182 if (parse_time(if_unmod, &unmod_time) < 0) {
5183 op_ret = -EINVAL;
5184 return op_ret;
5185 }
5186 unmod_ptr = &unmod_time;
5187 }
5188
5189 bufferlist aclbl;
5190 dest_policy.encode(aclbl);
5191 emplace_attr(RGW_ATTR_ACL, std::move(aclbl));
5192
5193 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs);
5194 if (op_ret < 0) {
5195 return op_ret;
5196 }
5197 populate_with_generic_attrs(s, attrs);
5198
5199 return 0;
5200 }
5201
5202 static void copy_obj_progress_cb(off_t ofs, void *param)
5203 {
5204 RGWCopyObj *op = static_cast<RGWCopyObj *>(param);
5205 op->progress_cb(ofs);
5206 }
5207
5208 void RGWCopyObj::progress_cb(off_t ofs)
5209 {
5210 if (!s->cct->_conf->rgw_copy_obj_progress)
5211 return;
5212
5213 if (ofs - last_ofs < s->cct->_conf->rgw_copy_obj_progress_every_bytes)
5214 return;
5215
5216 send_partial_response(ofs);
5217
5218 last_ofs = ofs;
5219 }
5220
5221 void RGWCopyObj::pre_exec()
5222 {
5223 rgw_bucket_object_pre_exec(s);
5224 }
5225
5226 void RGWCopyObj::execute()
5227 {
5228 if (init_common() < 0)
5229 return;
5230
5231 rgw_obj src_obj(src_bucket, src_object);
5232 rgw_obj dst_obj(dest_bucket, dest_object);
5233
5234 RGWObjectCtx& obj_ctx = *static_cast<RGWObjectCtx *>(s->obj_ctx);
5235 if ( ! version_id.empty()) {
5236 dst_obj.key.set_instance(version_id);
5237 } else if (dest_bucket_info.versioning_enabled()) {
5238 store->getRados()->gen_rand_obj_instance_name(&dst_obj);
5239 }
5240
5241 obj_ctx.set_atomic(src_obj);
5242 obj_ctx.set_atomic(dst_obj);
5243
5244 encode_delete_at_attr(delete_at, attrs);
5245
5246 bool high_precision_time = (s->system_request);
5247
5248 /* Handle object versioning of Swift API. In case of copying to remote this
5249 * should fail gently (op_ret == 0) as the dst_obj will not exist here. */
5250 op_ret = store->getRados()->swift_versioning_copy(obj_ctx,
5251 dest_bucket_info.owner,
5252 dest_bucket_info,
5253 dst_obj,
5254 this,
5255 s->yield);
5256 if (op_ret < 0) {
5257 return;
5258 }
5259
5260 op_ret = store->getRados()->copy_obj(obj_ctx,
5261 s->user->get_id(),
5262 &s->info,
5263 source_zone,
5264 dst_obj,
5265 src_obj,
5266 dest_bucket_info,
5267 src_bucket_info,
5268 s->dest_placement,
5269 &src_mtime,
5270 &mtime,
5271 mod_ptr,
5272 unmod_ptr,
5273 high_precision_time,
5274 if_match,
5275 if_nomatch,
5276 attrs_mod,
5277 copy_if_newer,
5278 attrs, RGWObjCategory::Main,
5279 olh_epoch,
5280 (delete_at ? *delete_at : real_time()),
5281 (version_id.empty() ? NULL : &version_id),
5282 &s->req_id, /* use req_id as tag */
5283 &etag,
5284 copy_obj_progress_cb, (void *)this,
5285 this,
5286 s->yield);
5287
5288 const auto ret = rgw::notify::publish(s, s->object, s->obj_size, mtime, etag, rgw::notify::ObjectCreatedCopy, store);
5289 if (ret < 0) {
5290 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
5291 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
5292 // this should be global conf (probably returnign a different handler)
5293 // so we don't need to read the configured values before we perform it
5294 }
5295 }
5296
5297 int RGWGetACLs::verify_permission()
5298 {
5299 bool perm;
5300 if (!s->object.empty()) {
5301 auto iam_action = s->object.instance.empty() ?
5302 rgw::IAM::s3GetObjectAcl :
5303 rgw::IAM::s3GetObjectVersionAcl;
5304
5305 if (s->iam_policy && s->iam_policy->has_partial_conditional(S3_EXISTING_OBJTAG)){
5306 rgw_obj obj = rgw_obj(s->bucket, s->object);
5307 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
5308 }
5309 if (! s->iam_user_policies.empty()) {
5310 for (auto& user_policy : s->iam_user_policies) {
5311 if (user_policy.has_partial_conditional(S3_EXISTING_OBJTAG)) {
5312 rgw_obj obj = rgw_obj(s->bucket, s->object);
5313 rgw_iam_add_existing_objtags(store, s, obj, iam_action);
5314 }
5315 }
5316 }
5317 perm = verify_object_permission(this, s, iam_action);
5318 } else {
5319 if (!s->bucket_exists) {
5320 return -ERR_NO_SUCH_BUCKET;
5321 }
5322 perm = verify_bucket_permission(this, s, rgw::IAM::s3GetBucketAcl);
5323 }
5324 if (!perm)
5325 return -EACCES;
5326
5327 return 0;
5328 }
5329
5330 void RGWGetACLs::pre_exec()
5331 {
5332 rgw_bucket_object_pre_exec(s);
5333 }
5334
5335 void RGWGetACLs::execute()
5336 {
5337 stringstream ss;
5338 RGWAccessControlPolicy* const acl = \
5339 (!s->object.empty() ? s->object_acl.get() : s->bucket_acl.get());
5340 RGWAccessControlPolicy_S3* const s3policy = \
5341 static_cast<RGWAccessControlPolicy_S3*>(acl);
5342 s3policy->to_xml(ss);
5343 acls = ss.str();
5344 }
5345
5346
5347
5348 int RGWPutACLs::verify_permission()
5349 {
5350 bool perm;
5351
5352 rgw_add_to_iam_environment(s->env, "s3:x-amz-acl", s->canned_acl);
5353
5354 rgw_add_grant_to_iam_environment(s->env, s);
5355 if (!s->object.empty()) {
5356 auto iam_action = s->object.instance.empty() ? rgw::IAM::s3PutObjectAcl : rgw::IAM::s3PutObjectVersionAcl;
5357 auto obj = rgw_obj(s->bucket, s->object);
5358 op_ret = rgw_iam_add_existing_objtags(store, s, obj, iam_action);
5359 perm = verify_object_permission(this, s, iam_action);
5360 } else {
5361 perm = verify_bucket_permission(this, s, rgw::IAM::s3PutBucketAcl);
5362 }
5363 if (!perm)
5364 return -EACCES;
5365
5366 return 0;
5367 }
5368
5369 int RGWGetLC::verify_permission()
5370 {
5371 bool perm;
5372 perm = verify_bucket_permission(this, s, rgw::IAM::s3GetLifecycleConfiguration);
5373 if (!perm)
5374 return -EACCES;
5375
5376 return 0;
5377 }
5378
5379 int RGWPutLC::verify_permission()
5380 {
5381 bool perm;
5382 perm = verify_bucket_permission(this, s, rgw::IAM::s3PutLifecycleConfiguration);
5383 if (!perm)
5384 return -EACCES;
5385
5386 return 0;
5387 }
5388
5389 int RGWDeleteLC::verify_permission()
5390 {
5391 bool perm;
5392 perm = verify_bucket_permission(this, s, rgw::IAM::s3PutLifecycleConfiguration);
5393 if (!perm)
5394 return -EACCES;
5395
5396 return 0;
5397 }
5398
5399 void RGWPutACLs::pre_exec()
5400 {
5401 rgw_bucket_object_pre_exec(s);
5402 }
5403
5404 void RGWGetLC::pre_exec()
5405 {
5406 rgw_bucket_object_pre_exec(s);
5407 }
5408
5409 void RGWPutLC::pre_exec()
5410 {
5411 rgw_bucket_object_pre_exec(s);
5412 }
5413
5414 void RGWDeleteLC::pre_exec()
5415 {
5416 rgw_bucket_object_pre_exec(s);
5417 }
5418
5419 void RGWPutACLs::execute()
5420 {
5421 bufferlist bl;
5422
5423 RGWAccessControlPolicy_S3 *policy = NULL;
5424 RGWACLXMLParser_S3 parser(s->cct);
5425 RGWAccessControlPolicy_S3 new_policy(s->cct);
5426 stringstream ss;
5427 rgw_obj obj;
5428
5429 op_ret = 0; /* XXX redundant? */
5430
5431 if (!parser.init()) {
5432 op_ret = -EINVAL;
5433 return;
5434 }
5435
5436
5437 RGWAccessControlPolicy* const existing_policy = \
5438 (s->object.empty() ? s->bucket_acl.get() : s->object_acl.get());
5439
5440 owner = existing_policy->get_owner();
5441
5442 op_ret = get_params();
5443 if (op_ret < 0) {
5444 if (op_ret == -ERANGE) {
5445 ldpp_dout(this, 4) << "The size of request xml data is larger than the max limitation, data size = "
5446 << s->length << dendl;
5447 op_ret = -ERR_MALFORMED_XML;
5448 s->err.message = "The XML you provided was larger than the maximum " +
5449 std::to_string(s->cct->_conf->rgw_max_put_param_size) +
5450 " bytes allowed.";
5451 }
5452 return;
5453 }
5454
5455 char* buf = data.c_str();
5456 ldpp_dout(this, 15) << "read len=" << data.length() << " data=" << (buf ? buf : "") << dendl;
5457
5458 if (!s->canned_acl.empty() && data.length() > 0) {
5459 op_ret = -EINVAL;
5460 return;
5461 }
5462
5463 if (!s->canned_acl.empty() || s->has_acl_header) {
5464 op_ret = get_policy_from_state(store, s, ss);
5465 if (op_ret < 0)
5466 return;
5467
5468 data.clear();
5469 data.append(ss.str());
5470 }
5471
5472 if (!parser.parse(data.c_str(), data.length(), 1)) {
5473 op_ret = -EINVAL;
5474 return;
5475 }
5476 policy = static_cast<RGWAccessControlPolicy_S3 *>(parser.find_first("AccessControlPolicy"));
5477 if (!policy) {
5478 op_ret = -EINVAL;
5479 return;
5480 }
5481
5482 const RGWAccessControlList& req_acl = policy->get_acl();
5483 const multimap<string, ACLGrant>& req_grant_map = req_acl.get_grant_map();
5484 #define ACL_GRANTS_MAX_NUM 100
5485 int max_num = s->cct->_conf->rgw_acl_grants_max_num;
5486 if (max_num < 0) {
5487 max_num = ACL_GRANTS_MAX_NUM;
5488 }
5489
5490 int grants_num = req_grant_map.size();
5491 if (grants_num > max_num) {
5492 ldpp_dout(this, 4) << "An acl can have up to " << max_num
5493 << " grants, request acl grants num: " << grants_num << dendl;
5494 op_ret = -ERR_LIMIT_EXCEEDED;
5495 s->err.message = "The request is rejected, because the acl grants number you requested is larger than the maximum "
5496 + std::to_string(max_num)
5497 + " grants allowed in an acl.";
5498 return;
5499 }
5500
5501 // forward bucket acl requests to meta master zone
5502 if (s->object.empty() && !store->svc()->zone->is_meta_master()) {
5503 bufferlist in_data;
5504 // include acl data unless it was generated from a canned_acl
5505 if (s->canned_acl.empty()) {
5506 in_data.append(data);
5507 }
5508 op_ret = forward_request_to_master(s, NULL, store, in_data, NULL);
5509 if (op_ret < 0) {
5510 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
5511 return;
5512 }
5513 }
5514
5515 if (s->cct->_conf->subsys.should_gather<ceph_subsys_rgw, 15>()) {
5516 ldpp_dout(this, 15) << "Old AccessControlPolicy";
5517 policy->to_xml(*_dout);
5518 *_dout << dendl;
5519 }
5520
5521 op_ret = policy->rebuild(store->ctl()->user, &owner, new_policy, s->err.message);
5522 if (op_ret < 0)
5523 return;
5524
5525 if (s->cct->_conf->subsys.should_gather<ceph_subsys_rgw, 15>()) {
5526 ldpp_dout(this, 15) << "New AccessControlPolicy:";
5527 new_policy.to_xml(*_dout);
5528 *_dout << dendl;
5529 }
5530
5531 if (s->bucket_access_conf &&
5532 s->bucket_access_conf->block_public_acls() &&
5533 new_policy.is_public()) {
5534 op_ret = -EACCES;
5535 return;
5536 }
5537 new_policy.encode(bl);
5538 if (!s->object.empty()) {
5539 obj = rgw_obj(s->bucket, s->object);
5540 store->getRados()->set_atomic(s->obj_ctx, obj);
5541 //if instance is empty, we should modify the latest object
5542 op_ret = modify_obj_attr(store, s, obj, RGW_ATTR_ACL, bl);
5543 } else {
5544 map<string,bufferlist> attrs = s->bucket_attrs;
5545 attrs[RGW_ATTR_ACL] = bl;
5546 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
5547 &s->bucket_info.objv_tracker,
5548 s->yield);
5549 }
5550 if (op_ret == -ECANCELED) {
5551 op_ret = 0; /* lost a race, but it's ok because acls are immutable */
5552 }
5553 }
5554
5555 void RGWPutLC::execute()
5556 {
5557 bufferlist bl;
5558
5559 RGWLifecycleConfiguration_S3 config(s->cct);
5560 RGWXMLParser parser;
5561 RGWLifecycleConfiguration_S3 new_config(s->cct);
5562
5563 content_md5 = s->info.env->get("HTTP_CONTENT_MD5");
5564 if (content_md5 == nullptr) {
5565 op_ret = -ERR_INVALID_REQUEST;
5566 s->err.message = "Missing required header for this request: Content-MD5";
5567 ldpp_dout(this, 5) << s->err.message << dendl;
5568 return;
5569 }
5570
5571 std::string content_md5_bin;
5572 try {
5573 content_md5_bin = rgw::from_base64(boost::string_view(content_md5));
5574 } catch (...) {
5575 s->err.message = "Request header Content-MD5 contains character "
5576 "that is not base64 encoded.";
5577 ldpp_dout(this, 5) << s->err.message << dendl;
5578 op_ret = -ERR_BAD_DIGEST;
5579 return;
5580 }
5581
5582 if (!parser.init()) {
5583 op_ret = -EINVAL;
5584 return;
5585 }
5586
5587 op_ret = get_params();
5588 if (op_ret < 0)
5589 return;
5590
5591 char* buf = data.c_str();
5592 ldpp_dout(this, 15) << "read len=" << data.length() << " data=" << (buf ? buf : "") << dendl;
5593
5594 MD5 data_hash;
5595 unsigned char data_hash_res[CEPH_CRYPTO_MD5_DIGESTSIZE];
5596 data_hash.Update(reinterpret_cast<const unsigned char*>(buf), data.length());
5597 data_hash.Final(data_hash_res);
5598
5599 if (memcmp(data_hash_res, content_md5_bin.c_str(), CEPH_CRYPTO_MD5_DIGESTSIZE) != 0) {
5600 op_ret = -ERR_BAD_DIGEST;
5601 s->err.message = "The Content-MD5 you specified did not match what we received.";
5602 ldpp_dout(this, 5) << s->err.message
5603 << " Specified content md5: " << content_md5
5604 << ", calculated content md5: " << data_hash_res
5605 << dendl;
5606 return;
5607 }
5608
5609 if (!parser.parse(buf, data.length(), 1)) {
5610 op_ret = -ERR_MALFORMED_XML;
5611 return;
5612 }
5613
5614 try {
5615 RGWXMLDecoder::decode_xml("LifecycleConfiguration", config, &parser);
5616 } catch (RGWXMLDecoder::err& err) {
5617 ldpp_dout(this, 5) << "Bad lifecycle configuration: " << err << dendl;
5618 op_ret = -ERR_MALFORMED_XML;
5619 return;
5620 }
5621
5622 op_ret = config.rebuild(store->getRados(), new_config);
5623 if (op_ret < 0)
5624 return;
5625
5626 if (s->cct->_conf->subsys.should_gather<ceph_subsys_rgw, 15>()) {
5627 XMLFormatter xf;
5628 new_config.dump_xml(&xf);
5629 stringstream ss;
5630 xf.flush(ss);
5631 ldpp_dout(this, 15) << "New LifecycleConfiguration:" << ss.str() << dendl;
5632 }
5633
5634 if (!store->svc()->zone->is_meta_master()) {
5635 op_ret = forward_request_to_master(s, nullptr, store, data, nullptr);
5636 if (op_ret < 0) {
5637 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
5638 return;
5639 }
5640 }
5641
5642 op_ret = store->getRados()->get_lc()->set_bucket_config(s->bucket_info, s->bucket_attrs, &new_config);
5643 if (op_ret < 0) {
5644 return;
5645 }
5646 return;
5647 }
5648
5649 void RGWDeleteLC::execute()
5650 {
5651 if (!store->svc()->zone->is_meta_master()) {
5652 bufferlist data;
5653 op_ret = forward_request_to_master(s, nullptr, store, data, nullptr);
5654 if (op_ret < 0) {
5655 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
5656 return;
5657 }
5658 }
5659
5660 op_ret = store->getRados()->get_lc()->remove_bucket_config(s->bucket_info, s->bucket_attrs);
5661 if (op_ret < 0) {
5662 return;
5663 }
5664 return;
5665 }
5666
5667 int RGWGetCORS::verify_permission()
5668 {
5669 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketCORS);
5670 }
5671
5672 void RGWGetCORS::execute()
5673 {
5674 op_ret = read_bucket_cors();
5675 if (op_ret < 0)
5676 return ;
5677
5678 if (!cors_exist) {
5679 ldpp_dout(this, 2) << "No CORS configuration set yet for this bucket" << dendl;
5680 op_ret = -ERR_NO_CORS_FOUND;
5681 return;
5682 }
5683 }
5684
5685 int RGWPutCORS::verify_permission()
5686 {
5687 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketCORS);
5688 }
5689
5690 void RGWPutCORS::execute()
5691 {
5692 rgw_raw_obj obj;
5693
5694 op_ret = get_params();
5695 if (op_ret < 0)
5696 return;
5697
5698 if (!store->svc()->zone->is_meta_master()) {
5699 op_ret = forward_request_to_master(s, NULL, store, in_data, nullptr);
5700 if (op_ret < 0) {
5701 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
5702 return;
5703 }
5704 }
5705
5706 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
5707 map<string, bufferlist> attrs = s->bucket_attrs;
5708 attrs[RGW_ATTR_CORS] = cors_bl;
5709 return store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
5710 &s->bucket_info.objv_tracker,
5711 s->yield);
5712 });
5713 }
5714
5715 int RGWDeleteCORS::verify_permission()
5716 {
5717 // No separate delete permission
5718 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketCORS);
5719 }
5720
5721 void RGWDeleteCORS::execute()
5722 {
5723 if (!store->svc()->zone->is_meta_master()) {
5724 bufferlist data;
5725 op_ret = forward_request_to_master(s, nullptr, store, data, nullptr);
5726 if (op_ret < 0) {
5727 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
5728 return;
5729 }
5730 }
5731
5732 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
5733 op_ret = read_bucket_cors();
5734 if (op_ret < 0)
5735 return op_ret;
5736
5737 if (!cors_exist) {
5738 ldpp_dout(this, 2) << "No CORS configuration set yet for this bucket" << dendl;
5739 op_ret = -ENOENT;
5740 return op_ret;
5741 }
5742
5743 map<string, bufferlist> attrs = s->bucket_attrs;
5744 attrs.erase(RGW_ATTR_CORS);
5745 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
5746 &s->bucket_info.objv_tracker,
5747 s->yield);
5748 if (op_ret < 0) {
5749 ldpp_dout(this, 0) << "RGWLC::RGWDeleteCORS() failed to set attrs on bucket=" << s->bucket.name
5750 << " returned err=" << op_ret << dendl;
5751 }
5752 return op_ret;
5753 });
5754 }
5755
5756 void RGWOptionsCORS::get_response_params(string& hdrs, string& exp_hdrs, unsigned *max_age) {
5757 get_cors_response_headers(rule, req_hdrs, hdrs, exp_hdrs, max_age);
5758 }
5759
5760 int RGWOptionsCORS::validate_cors_request(RGWCORSConfiguration *cc) {
5761 rule = cc->host_name_rule(origin);
5762 if (!rule) {
5763 ldpp_dout(this, 10) << "There is no cors rule present for " << origin << dendl;
5764 return -ENOENT;
5765 }
5766
5767 if (!validate_cors_rule_method(rule, req_meth)) {
5768 return -ENOENT;
5769 }
5770
5771 if (!validate_cors_rule_header(rule, req_hdrs)) {
5772 return -ENOENT;
5773 }
5774
5775 return 0;
5776 }
5777
5778 void RGWOptionsCORS::execute()
5779 {
5780 op_ret = read_bucket_cors();
5781 if (op_ret < 0)
5782 return;
5783
5784 origin = s->info.env->get("HTTP_ORIGIN");
5785 if (!origin) {
5786 ldpp_dout(this, 0) << "Missing mandatory Origin header" << dendl;
5787 op_ret = -EINVAL;
5788 return;
5789 }
5790 req_meth = s->info.env->get("HTTP_ACCESS_CONTROL_REQUEST_METHOD");
5791 if (!req_meth) {
5792 ldpp_dout(this, 0) << "Missing mandatory Access-control-request-method header" << dendl;
5793 op_ret = -EINVAL;
5794 return;
5795 }
5796 if (!cors_exist) {
5797 ldpp_dout(this, 2) << "No CORS configuration set yet for this bucket" << dendl;
5798 op_ret = -ENOENT;
5799 return;
5800 }
5801 req_hdrs = s->info.env->get("HTTP_ACCESS_CONTROL_REQUEST_HEADERS");
5802 op_ret = validate_cors_request(&bucket_cors);
5803 if (!rule) {
5804 origin = req_meth = NULL;
5805 return;
5806 }
5807 return;
5808 }
5809
5810 int RGWGetRequestPayment::verify_permission()
5811 {
5812 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketRequestPayment);
5813 }
5814
5815 void RGWGetRequestPayment::pre_exec()
5816 {
5817 rgw_bucket_object_pre_exec(s);
5818 }
5819
5820 void RGWGetRequestPayment::execute()
5821 {
5822 requester_pays = s->bucket_info.requester_pays;
5823 }
5824
5825 int RGWSetRequestPayment::verify_permission()
5826 {
5827 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketRequestPayment);
5828 }
5829
5830 void RGWSetRequestPayment::pre_exec()
5831 {
5832 rgw_bucket_object_pre_exec(s);
5833 }
5834
5835 void RGWSetRequestPayment::execute()
5836 {
5837
5838 if (!store->svc()->zone->is_meta_master()) {
5839 op_ret = forward_request_to_master(s, nullptr, store, in_data, nullptr);
5840 if (op_ret < 0) {
5841 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
5842 return;
5843 }
5844 }
5845
5846 op_ret = get_params();
5847
5848 if (op_ret < 0)
5849 return;
5850
5851 s->bucket_info.requester_pays = requester_pays;
5852 op_ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false, real_time(),
5853 &s->bucket_attrs);
5854 if (op_ret < 0) {
5855 ldpp_dout(this, 0) << "NOTICE: put_bucket_info on bucket=" << s->bucket.name
5856 << " returned err=" << op_ret << dendl;
5857 return;
5858 }
5859 }
5860
5861 int RGWInitMultipart::verify_permission()
5862 {
5863 if (s->iam_policy || ! s->iam_user_policies.empty()) {
5864 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
5865 boost::none,
5866 rgw::IAM::s3PutObject,
5867 rgw_obj(s->bucket, s->object));
5868 if (usr_policy_res == Effect::Deny) {
5869 return -EACCES;
5870 }
5871
5872 rgw::IAM::Effect e = Effect::Pass;
5873 if (s->iam_policy) {
5874 e = s->iam_policy->eval(s->env, *s->auth.identity,
5875 rgw::IAM::s3PutObject,
5876 rgw_obj(s->bucket, s->object));
5877 }
5878 if (e == Effect::Allow) {
5879 return 0;
5880 } else if (e == Effect::Deny) {
5881 return -EACCES;
5882 } else if (usr_policy_res == Effect::Allow) {
5883 return 0;
5884 }
5885 }
5886
5887 if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
5888 return -EACCES;
5889 }
5890
5891 return 0;
5892 }
5893
5894 void RGWInitMultipart::pre_exec()
5895 {
5896 rgw_bucket_object_pre_exec(s);
5897 }
5898
5899 void RGWInitMultipart::execute()
5900 {
5901 bufferlist aclbl;
5902 map<string, bufferlist> attrs;
5903 rgw_obj obj;
5904
5905 if (get_params() < 0)
5906 return;
5907
5908 if (s->object.empty())
5909 return;
5910
5911 policy.encode(aclbl);
5912 attrs[RGW_ATTR_ACL] = aclbl;
5913
5914 populate_with_generic_attrs(s, attrs);
5915
5916 /* select encryption mode */
5917 op_ret = prepare_encryption(attrs);
5918 if (op_ret != 0)
5919 return;
5920
5921 op_ret = rgw_get_request_metadata(s->cct, s->info, attrs);
5922 if (op_ret < 0) {
5923 return;
5924 }
5925
5926 do {
5927 char buf[33];
5928 gen_rand_alphanumeric(s->cct, buf, sizeof(buf) - 1);
5929 upload_id = MULTIPART_UPLOAD_ID_PREFIX; /* v2 upload id */
5930 upload_id.append(buf);
5931
5932 string tmp_obj_name;
5933 RGWMPObj mp(s->object.name, upload_id);
5934 tmp_obj_name = mp.get_meta();
5935
5936 obj.init_ns(s->bucket, tmp_obj_name, mp_ns);
5937 // the meta object will be indexed with 0 size, we c
5938 obj.set_in_extra_data(true);
5939 obj.index_hash_source = s->object.name;
5940
5941 RGWRados::Object op_target(store->getRados(), s->bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), obj);
5942 op_target.set_versioning_disabled(true); /* no versioning for multipart meta */
5943
5944 RGWRados::Object::Write obj_op(&op_target);
5945
5946 obj_op.meta.owner = s->owner.get_id();
5947 obj_op.meta.category = RGWObjCategory::MultiMeta;
5948 obj_op.meta.flags = PUT_OBJ_CREATE_EXCL;
5949
5950 multipart_upload_info upload_info;
5951 upload_info.dest_placement = s->dest_placement;
5952
5953 bufferlist bl;
5954 encode(upload_info, bl);
5955 obj_op.meta.data = &bl;
5956
5957 op_ret = obj_op.write_meta(bl.length(), 0, attrs, s->yield);
5958 } while (op_ret == -EEXIST);
5959
5960 const auto ret = rgw::notify::publish(s, s->object, s->obj_size, ceph::real_clock::now(), attrs[RGW_ATTR_ETAG].to_str(), rgw::notify::ObjectCreatedPost, store);
5961 if (ret < 0) {
5962 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
5963 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
5964 // this should be global conf (probably returnign a different handler)
5965 // so we don't need to read the configured values before we perform it
5966 }
5967 }
5968
5969 int RGWCompleteMultipart::verify_permission()
5970 {
5971 if (s->iam_policy || ! s->iam_user_policies.empty()) {
5972 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
5973 boost::none,
5974 rgw::IAM::s3PutObject,
5975 rgw_obj(s->bucket, s->object));
5976 if (usr_policy_res == Effect::Deny) {
5977 return -EACCES;
5978 }
5979
5980 rgw::IAM::Effect e = Effect::Pass;
5981 if (s->iam_policy) {
5982 e = s->iam_policy->eval(s->env, *s->auth.identity,
5983 rgw::IAM::s3PutObject,
5984 rgw_obj(s->bucket, s->object));
5985 }
5986 if (e == Effect::Allow) {
5987 return 0;
5988 } else if (e == Effect::Deny) {
5989 return -EACCES;
5990 } else if (usr_policy_res == Effect::Allow) {
5991 return 0;
5992 }
5993 }
5994
5995 if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
5996 return -EACCES;
5997 }
5998
5999 return 0;
6000 }
6001
6002 void RGWCompleteMultipart::pre_exec()
6003 {
6004 rgw_bucket_object_pre_exec(s);
6005 }
6006
6007 void RGWCompleteMultipart::execute()
6008 {
6009 RGWMultiCompleteUpload *parts;
6010 map<int, string>::iterator iter;
6011 RGWMultiXMLParser parser;
6012 string meta_oid;
6013 map<uint32_t, RGWUploadPartInfo> obj_parts;
6014 map<uint32_t, RGWUploadPartInfo>::iterator obj_iter;
6015 map<string, bufferlist> attrs;
6016 off_t ofs = 0;
6017 MD5 hash;
6018 char final_etag[CEPH_CRYPTO_MD5_DIGESTSIZE];
6019 char final_etag_str[CEPH_CRYPTO_MD5_DIGESTSIZE * 2 + 16];
6020 bufferlist etag_bl;
6021 rgw_obj meta_obj;
6022 rgw_obj target_obj;
6023 RGWMPObj mp;
6024 RGWObjManifest manifest;
6025 uint64_t olh_epoch = 0;
6026
6027 op_ret = get_params();
6028 if (op_ret < 0)
6029 return;
6030 op_ret = get_system_versioning_params(s, &olh_epoch, &version_id);
6031 if (op_ret < 0) {
6032 return;
6033 }
6034
6035 if (!data.length()) {
6036 op_ret = -ERR_MALFORMED_XML;
6037 return;
6038 }
6039
6040 if (!parser.init()) {
6041 op_ret = -EIO;
6042 return;
6043 }
6044
6045 if (!parser.parse(data.c_str(), data.length(), 1)) {
6046 op_ret = -ERR_MALFORMED_XML;
6047 return;
6048 }
6049
6050 parts = static_cast<RGWMultiCompleteUpload *>(parser.find_first("CompleteMultipartUpload"));
6051 if (!parts || parts->parts.empty()) {
6052 op_ret = -ERR_MALFORMED_XML;
6053 return;
6054 }
6055
6056 if ((int)parts->parts.size() >
6057 s->cct->_conf->rgw_multipart_part_upload_limit) {
6058 op_ret = -ERANGE;
6059 return;
6060 }
6061
6062 mp.init(s->object.name, upload_id);
6063 meta_oid = mp.get_meta();
6064
6065 int total_parts = 0;
6066 int handled_parts = 0;
6067 int max_parts = 1000;
6068 int marker = 0;
6069 bool truncated;
6070 RGWCompressionInfo cs_info;
6071 bool compressed = false;
6072 uint64_t accounted_size = 0;
6073
6074 uint64_t min_part_size = s->cct->_conf->rgw_multipart_min_part_size;
6075
6076 list<rgw_obj_index_key> remove_objs; /* objects to be removed from index listing */
6077
6078 bool versioned_object = s->bucket_info.versioning_enabled();
6079
6080 iter = parts->parts.begin();
6081
6082 meta_obj.init_ns(s->bucket, meta_oid, mp_ns);
6083 meta_obj.set_in_extra_data(true);
6084 meta_obj.index_hash_source = s->object.name;
6085
6086 /*take a cls lock on meta_obj to prevent racing completions (or retries)
6087 from deleting the parts*/
6088 rgw_pool meta_pool;
6089 rgw_raw_obj raw_obj;
6090 int max_lock_secs_mp =
6091 s->cct->_conf.get_val<int64_t>("rgw_mp_lock_max_time");
6092 utime_t dur(max_lock_secs_mp, 0);
6093
6094 store->getRados()->obj_to_raw((s->bucket_info).placement_rule, meta_obj, &raw_obj);
6095 store->getRados()->get_obj_data_pool((s->bucket_info).placement_rule,
6096 meta_obj,&meta_pool);
6097 store->getRados()->open_pool_ctx(meta_pool, serializer.ioctx, true);
6098
6099 op_ret = serializer.try_lock(raw_obj.oid, dur);
6100 if (op_ret < 0) {
6101 ldpp_dout(this, 0) << "failed to acquire lock" << dendl;
6102 op_ret = -ERR_INTERNAL_ERROR;
6103 s->err.message = "This multipart completion is already in progress";
6104 return;
6105 }
6106
6107 op_ret = get_obj_attrs(store, s, meta_obj, attrs);
6108
6109 if (op_ret < 0) {
6110 ldpp_dout(this, 0) << "ERROR: failed to get obj attrs, obj=" << meta_obj
6111 << " ret=" << op_ret << dendl;
6112 return;
6113 }
6114
6115 do {
6116 op_ret = list_multipart_parts(store, s, upload_id, meta_oid, max_parts,
6117 marker, obj_parts, &marker, &truncated);
6118 if (op_ret == -ENOENT) {
6119 op_ret = -ERR_NO_SUCH_UPLOAD;
6120 }
6121 if (op_ret < 0)
6122 return;
6123
6124 total_parts += obj_parts.size();
6125 if (!truncated && total_parts != (int)parts->parts.size()) {
6126 ldpp_dout(this, 0) << "NOTICE: total parts mismatch: have: " << total_parts
6127 << " expected: " << parts->parts.size() << dendl;
6128 op_ret = -ERR_INVALID_PART;
6129 return;
6130 }
6131
6132 for (obj_iter = obj_parts.begin(); iter != parts->parts.end() && obj_iter != obj_parts.end(); ++iter, ++obj_iter, ++handled_parts) {
6133 uint64_t part_size = obj_iter->second.accounted_size;
6134 if (handled_parts < (int)parts->parts.size() - 1 &&
6135 part_size < min_part_size) {
6136 op_ret = -ERR_TOO_SMALL;
6137 return;
6138 }
6139
6140 char petag[CEPH_CRYPTO_MD5_DIGESTSIZE];
6141 if (iter->first != (int)obj_iter->first) {
6142 ldpp_dout(this, 0) << "NOTICE: parts num mismatch: next requested: "
6143 << iter->first << " next uploaded: "
6144 << obj_iter->first << dendl;
6145 op_ret = -ERR_INVALID_PART;
6146 return;
6147 }
6148 string part_etag = rgw_string_unquote(iter->second);
6149 if (part_etag.compare(obj_iter->second.etag) != 0) {
6150 ldpp_dout(this, 0) << "NOTICE: etag mismatch: part: " << iter->first
6151 << " etag: " << iter->second << dendl;
6152 op_ret = -ERR_INVALID_PART;
6153 return;
6154 }
6155
6156 hex_to_buf(obj_iter->second.etag.c_str(), petag,
6157 CEPH_CRYPTO_MD5_DIGESTSIZE);
6158 hash.Update((const unsigned char *)petag, sizeof(petag));
6159
6160 RGWUploadPartInfo& obj_part = obj_iter->second;
6161
6162 /* update manifest for part */
6163 string oid = mp.get_part(obj_iter->second.num);
6164 rgw_obj src_obj;
6165 src_obj.init_ns(s->bucket, oid, mp_ns);
6166
6167 if (obj_part.manifest.empty()) {
6168 ldpp_dout(this, 0) << "ERROR: empty manifest for object part: obj="
6169 << src_obj << dendl;
6170 op_ret = -ERR_INVALID_PART;
6171 return;
6172 } else {
6173 manifest.append(obj_part.manifest, store->svc()->zone);
6174 }
6175
6176 bool part_compressed = (obj_part.cs_info.compression_type != "none");
6177 if ((handled_parts > 0) &&
6178 ((part_compressed != compressed) ||
6179 (cs_info.compression_type != obj_part.cs_info.compression_type))) {
6180 ldpp_dout(this, 0) << "ERROR: compression type was changed during multipart upload ("
6181 << cs_info.compression_type << ">>" << obj_part.cs_info.compression_type << ")" << dendl;
6182 op_ret = -ERR_INVALID_PART;
6183 return;
6184 }
6185
6186 if (part_compressed) {
6187 int64_t new_ofs; // offset in compression data for new part
6188 if (cs_info.blocks.size() > 0)
6189 new_ofs = cs_info.blocks.back().new_ofs + cs_info.blocks.back().len;
6190 else
6191 new_ofs = 0;
6192 for (const auto& block : obj_part.cs_info.blocks) {
6193 compression_block cb;
6194 cb.old_ofs = block.old_ofs + cs_info.orig_size;
6195 cb.new_ofs = new_ofs;
6196 cb.len = block.len;
6197 cs_info.blocks.push_back(cb);
6198 new_ofs = cb.new_ofs + cb.len;
6199 }
6200 if (!compressed)
6201 cs_info.compression_type = obj_part.cs_info.compression_type;
6202 cs_info.orig_size += obj_part.cs_info.orig_size;
6203 compressed = true;
6204 }
6205
6206 rgw_obj_index_key remove_key;
6207 src_obj.key.get_index_key(&remove_key);
6208
6209 remove_objs.push_back(remove_key);
6210
6211 ofs += obj_part.size;
6212 accounted_size += obj_part.accounted_size;
6213 }
6214 } while (truncated);
6215 hash.Final((unsigned char *)final_etag);
6216
6217 buf_to_hex((unsigned char *)final_etag, sizeof(final_etag), final_etag_str);
6218 snprintf(&final_etag_str[CEPH_CRYPTO_MD5_DIGESTSIZE * 2], sizeof(final_etag_str) - CEPH_CRYPTO_MD5_DIGESTSIZE * 2,
6219 "-%lld", (long long)parts->parts.size());
6220 etag = final_etag_str;
6221 ldpp_dout(this, 10) << "calculated etag: " << final_etag_str << dendl;
6222
6223 etag_bl.append(final_etag_str, strlen(final_etag_str));
6224
6225 attrs[RGW_ATTR_ETAG] = etag_bl;
6226
6227 if (compressed) {
6228 // write compression attribute to full object
6229 bufferlist tmp;
6230 encode(cs_info, tmp);
6231 attrs[RGW_ATTR_COMPRESSION] = tmp;
6232 }
6233
6234 target_obj.init(s->bucket, s->object.name);
6235 if (versioned_object) {
6236 if (!version_id.empty()) {
6237 target_obj.key.set_instance(version_id);
6238 } else {
6239 store->getRados()->gen_rand_obj_instance_name(&target_obj);
6240 version_id = target_obj.key.get_instance();
6241 }
6242 }
6243
6244 RGWObjectCtx& obj_ctx = *static_cast<RGWObjectCtx *>(s->obj_ctx);
6245
6246 obj_ctx.set_atomic(target_obj);
6247
6248 RGWRados::Object op_target(store->getRados(), s->bucket_info, *static_cast<RGWObjectCtx *>(s->obj_ctx), target_obj);
6249 RGWRados::Object::Write obj_op(&op_target);
6250
6251 obj_op.meta.manifest = &manifest;
6252 obj_op.meta.remove_objs = &remove_objs;
6253
6254 obj_op.meta.ptag = &s->req_id; /* use req_id as operation tag */
6255 obj_op.meta.owner = s->owner.get_id();
6256 obj_op.meta.flags = PUT_OBJ_CREATE;
6257 obj_op.meta.modify_tail = true;
6258 obj_op.meta.completeMultipart = true;
6259 obj_op.meta.olh_epoch = olh_epoch;
6260 op_ret = obj_op.write_meta(ofs, accounted_size, attrs, s->yield);
6261 if (op_ret < 0)
6262 return;
6263
6264 // remove the upload obj
6265 int r = store->getRados()->delete_obj(*static_cast<RGWObjectCtx *>(s->obj_ctx),
6266 s->bucket_info, meta_obj, 0);
6267 if (r >= 0) {
6268 /* serializer's exclusive lock is released */
6269 serializer.clear_locked();
6270 } else {
6271 ldpp_dout(this, 0) << "WARNING: failed to remove object " << meta_obj << dendl;
6272 }
6273
6274 const auto ret = rgw::notify::publish(s, s->object, ofs, ceph::real_clock::now(), final_etag_str, rgw::notify::ObjectCreatedCompleteMultipartUpload, store);
6275
6276 if (ret < 0) {
6277 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
6278 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
6279 // this should be global conf (probably returnign a different handler)
6280 // so we don't need to read the configured values before we perform it
6281 }
6282 }
6283
6284 int RGWCompleteMultipart::MPSerializer::try_lock(
6285 const std::string& _oid,
6286 utime_t dur)
6287 {
6288 oid = _oid;
6289 op.assert_exists();
6290 lock.set_duration(dur);
6291 lock.lock_exclusive(&op);
6292 int ret = rgw_rados_operate(ioctx, oid, &op, null_yield);
6293 if (! ret) {
6294 locked = true;
6295 }
6296 return ret;
6297 }
6298
6299 void RGWCompleteMultipart::complete()
6300 {
6301 /* release exclusive lock iff not already */
6302 if (unlikely(serializer.locked)) {
6303 int r = serializer.unlock();
6304 if (r < 0) {
6305 ldpp_dout(this, 0) << "WARNING: failed to unlock " << serializer.oid << dendl;
6306 }
6307 }
6308 send_response();
6309 }
6310
6311 int RGWAbortMultipart::verify_permission()
6312 {
6313 if (s->iam_policy || ! s->iam_user_policies.empty()) {
6314 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
6315 boost::none,
6316 rgw::IAM::s3AbortMultipartUpload,
6317 rgw_obj(s->bucket, s->object));
6318 if (usr_policy_res == Effect::Deny) {
6319 return -EACCES;
6320 }
6321
6322 rgw::IAM::Effect e = Effect::Pass;
6323 if (s->iam_policy) {
6324 e = s->iam_policy->eval(s->env, *s->auth.identity,
6325 rgw::IAM::s3AbortMultipartUpload,
6326 rgw_obj(s->bucket, s->object));
6327 }
6328 if (e == Effect::Allow) {
6329 return 0;
6330 } else if (e == Effect::Deny) {
6331 return -EACCES;
6332 } else if (usr_policy_res == Effect::Allow)
6333 return 0;
6334 }
6335
6336 if (!verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE)) {
6337 return -EACCES;
6338 }
6339
6340 return 0;
6341 }
6342
6343 void RGWAbortMultipart::pre_exec()
6344 {
6345 rgw_bucket_object_pre_exec(s);
6346 }
6347
6348 void RGWAbortMultipart::execute()
6349 {
6350 op_ret = -EINVAL;
6351 string upload_id;
6352 string meta_oid;
6353 upload_id = s->info.args.get("uploadId");
6354 rgw_obj meta_obj;
6355 RGWMPObj mp;
6356
6357 if (upload_id.empty() || s->object.empty())
6358 return;
6359
6360 mp.init(s->object.name, upload_id);
6361 meta_oid = mp.get_meta();
6362
6363 op_ret = get_multipart_info(store, s, meta_oid, nullptr, nullptr, nullptr);
6364 if (op_ret < 0)
6365 return;
6366
6367 RGWObjectCtx *obj_ctx = static_cast<RGWObjectCtx *>(s->obj_ctx);
6368 op_ret = abort_multipart_upload(store, s->cct, obj_ctx, s->bucket_info, mp);
6369 }
6370
6371 int RGWListMultipart::verify_permission()
6372 {
6373 if (!verify_object_permission(this, s, rgw::IAM::s3ListMultipartUploadParts))
6374 return -EACCES;
6375
6376 return 0;
6377 }
6378
6379 void RGWListMultipart::pre_exec()
6380 {
6381 rgw_bucket_object_pre_exec(s);
6382 }
6383
6384 void RGWListMultipart::execute()
6385 {
6386 string meta_oid;
6387 RGWMPObj mp;
6388
6389 op_ret = get_params();
6390 if (op_ret < 0)
6391 return;
6392
6393 mp.init(s->object.name, upload_id);
6394 meta_oid = mp.get_meta();
6395
6396 op_ret = get_multipart_info(store, s, meta_oid, &policy, nullptr, nullptr);
6397 if (op_ret < 0)
6398 return;
6399
6400 op_ret = list_multipart_parts(store, s, upload_id, meta_oid, max_parts,
6401 marker, parts, NULL, &truncated);
6402 }
6403
6404 int RGWListBucketMultiparts::verify_permission()
6405 {
6406 if (!verify_bucket_permission(this,
6407 s,
6408 rgw::IAM::s3ListBucketMultipartUploads))
6409 return -EACCES;
6410
6411 return 0;
6412 }
6413
6414 void RGWListBucketMultiparts::pre_exec()
6415 {
6416 rgw_bucket_object_pre_exec(s);
6417 }
6418
6419 void RGWListBucketMultiparts::execute()
6420 {
6421 vector<rgw_bucket_dir_entry> objs;
6422 string marker_meta;
6423
6424 op_ret = get_params();
6425 if (op_ret < 0)
6426 return;
6427
6428 if (s->prot_flags & RGW_REST_SWIFT) {
6429 string path_args;
6430 path_args = s->info.args.get("path");
6431 if (!path_args.empty()) {
6432 if (!delimiter.empty() || !prefix.empty()) {
6433 op_ret = -EINVAL;
6434 return;
6435 }
6436 prefix = path_args;
6437 delimiter="/";
6438 }
6439 }
6440 marker_meta = marker.get_meta();
6441
6442 op_ret = list_bucket_multiparts(store, s->bucket_info, prefix, marker_meta, delimiter,
6443 max_uploads, &objs, &common_prefixes, &is_truncated);
6444 if (op_ret < 0) {
6445 return;
6446 }
6447
6448 if (!objs.empty()) {
6449 vector<rgw_bucket_dir_entry>::iterator iter;
6450 RGWMultipartUploadEntry entry;
6451 for (iter = objs.begin(); iter != objs.end(); ++iter) {
6452 rgw_obj_key key(iter->key);
6453 if (!entry.mp.from_meta(key.name))
6454 continue;
6455 entry.obj = *iter;
6456 uploads.push_back(entry);
6457 }
6458 next_marker = entry;
6459 }
6460 }
6461
6462 void RGWGetHealthCheck::execute()
6463 {
6464 if (!g_conf()->rgw_healthcheck_disabling_path.empty() &&
6465 (::access(g_conf()->rgw_healthcheck_disabling_path.c_str(), F_OK) == 0)) {
6466 /* Disabling path specified & existent in the filesystem. */
6467 op_ret = -ERR_SERVICE_UNAVAILABLE; /* 503 */
6468 } else {
6469 op_ret = 0; /* 200 OK */
6470 }
6471 }
6472
6473 int RGWDeleteMultiObj::verify_permission()
6474 {
6475 if (s->iam_policy || ! s->iam_user_policies.empty()) {
6476 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
6477 boost::none,
6478 s->object.instance.empty() ?
6479 rgw::IAM::s3DeleteObject :
6480 rgw::IAM::s3DeleteObjectVersion,
6481 ARN(s->bucket));
6482 if (usr_policy_res == Effect::Deny) {
6483 return -EACCES;
6484 }
6485
6486 rgw::IAM::Effect r = Effect::Pass;
6487 if (s->iam_policy) {
6488 r = s->iam_policy->eval(s->env, *s->auth.identity,
6489 s->object.instance.empty() ?
6490 rgw::IAM::s3DeleteObject :
6491 rgw::IAM::s3DeleteObjectVersion,
6492 ARN(s->bucket));
6493 }
6494 if (r == Effect::Allow)
6495 return 0;
6496 else if (r == Effect::Deny)
6497 return -EACCES;
6498 else if (usr_policy_res == Effect::Allow)
6499 return 0;
6500 }
6501
6502 acl_allowed = verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE);
6503 if (!acl_allowed)
6504 return -EACCES;
6505
6506 return 0;
6507 }
6508
6509 void RGWDeleteMultiObj::pre_exec()
6510 {
6511 rgw_bucket_object_pre_exec(s);
6512 }
6513
6514 void RGWDeleteMultiObj::execute()
6515 {
6516 RGWMultiDelDelete *multi_delete;
6517 vector<rgw_obj_key>::iterator iter;
6518 RGWMultiDelXMLParser parser;
6519 RGWObjectCtx *obj_ctx = static_cast<RGWObjectCtx *>(s->obj_ctx);
6520 char* buf;
6521
6522 op_ret = get_params();
6523 if (op_ret < 0) {
6524 goto error;
6525 }
6526
6527 buf = data.c_str();
6528 if (!buf) {
6529 op_ret = -EINVAL;
6530 goto error;
6531 }
6532
6533 if (!parser.init()) {
6534 op_ret = -EINVAL;
6535 goto error;
6536 }
6537
6538 if (!parser.parse(buf, data.length(), 1)) {
6539 op_ret = -EINVAL;
6540 goto error;
6541 }
6542
6543 multi_delete = static_cast<RGWMultiDelDelete *>(parser.find_first("Delete"));
6544 if (!multi_delete) {
6545 op_ret = -EINVAL;
6546 goto error;
6547 } else {
6548 #define DELETE_MULTI_OBJ_MAX_NUM 1000
6549 int max_num = s->cct->_conf->rgw_delete_multi_obj_max_num;
6550 if (max_num < 0) {
6551 max_num = DELETE_MULTI_OBJ_MAX_NUM;
6552 }
6553 int multi_delete_object_num = multi_delete->objects.size();
6554 if (multi_delete_object_num > max_num) {
6555 op_ret = -ERR_MALFORMED_XML;
6556 goto error;
6557 }
6558 }
6559
6560 if (multi_delete->is_quiet())
6561 quiet = true;
6562
6563 if (s->bucket_info.mfa_enabled()) {
6564 bool has_versioned = false;
6565 for (auto i : multi_delete->objects) {
6566 if (!i.instance.empty()) {
6567 has_versioned = true;
6568 break;
6569 }
6570 }
6571 if (has_versioned && !s->mfa_verified) {
6572 ldpp_dout(this, 5) << "NOTICE: multi-object delete request with a versioned object, mfa auth not provided" << dendl;
6573 op_ret = -ERR_MFA_REQUIRED;
6574 goto error;
6575 }
6576 }
6577
6578 begin_response();
6579 if (multi_delete->objects.empty()) {
6580 goto done;
6581 }
6582
6583 for (iter = multi_delete->objects.begin();
6584 iter != multi_delete->objects.end();
6585 ++iter) {
6586 rgw_obj obj(bucket, *iter);
6587 if (s->iam_policy || ! s->iam_user_policies.empty()) {
6588 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
6589 boost::none,
6590 iter->instance.empty() ?
6591 rgw::IAM::s3DeleteObject :
6592 rgw::IAM::s3DeleteObjectVersion,
6593 ARN(obj));
6594 if (usr_policy_res == Effect::Deny) {
6595 send_partial_response(*iter, false, "", -EACCES);
6596 continue;
6597 }
6598
6599 rgw::IAM::Effect e = Effect::Pass;
6600 if (s->iam_policy) {
6601 e = s->iam_policy->eval(s->env,
6602 *s->auth.identity,
6603 iter->instance.empty() ?
6604 rgw::IAM::s3DeleteObject :
6605 rgw::IAM::s3DeleteObjectVersion,
6606 ARN(obj));
6607 }
6608 if ((e == Effect::Deny) ||
6609 (usr_policy_res == Effect::Pass && e == Effect::Pass && !acl_allowed)) {
6610 send_partial_response(*iter, false, "", -EACCES);
6611 continue;
6612 }
6613 }
6614
6615 obj_ctx->set_atomic(obj);
6616
6617 RGWRados::Object del_target(store->getRados(), s->bucket_info, *obj_ctx, obj);
6618 RGWRados::Object::Delete del_op(&del_target);
6619
6620 del_op.params.bucket_owner = s->bucket_owner.get_id();
6621 del_op.params.versioning_status = s->bucket_info.versioning_status();
6622 del_op.params.obj_owner = s->owner;
6623
6624 op_ret = del_op.delete_obj(s->yield);
6625 if (op_ret == -ENOENT) {
6626 op_ret = 0;
6627 }
6628
6629 send_partial_response(*iter, del_op.result.delete_marker,
6630 del_op.result.version_id, op_ret);
6631
6632 const auto obj_state = obj_ctx->get_state(obj);
6633 bufferlist etag_bl;
6634 const auto etag = obj_state->get_attr(RGW_ATTR_ETAG, etag_bl) ? etag_bl.to_str() : "";
6635
6636 const auto ret = rgw::notify::publish(s, obj.key, obj_state->size, obj_state->mtime, etag,
6637 del_op.result.delete_marker && s->object.instance.empty() ? rgw::notify::ObjectRemovedDeleteMarkerCreated : rgw::notify::ObjectRemovedDelete,
6638 store);
6639 if (ret < 0) {
6640 ldpp_dout(this, 5) << "WARNING: publishing notification failed, with error: " << ret << dendl;
6641 // TODO: we should have conf to make send a blocking coroutine and reply with error in case sending failed
6642 // this should be global conf (probably returnign a different handler)
6643 // so we don't need to read the configured values before we perform it
6644 }
6645 }
6646
6647 /* set the return code to zero, errors at this point will be
6648 dumped to the response */
6649 op_ret = 0;
6650
6651 done:
6652 // will likely segfault if begin_response() has not been called
6653 end_response();
6654 return;
6655
6656 error:
6657 send_status();
6658 return;
6659
6660 }
6661
6662 bool RGWBulkDelete::Deleter::verify_permission(RGWBucketInfo& binfo,
6663 map<string, bufferlist>& battrs,
6664 ACLOwner& bucket_owner /* out */)
6665 {
6666 RGWAccessControlPolicy bacl(store->ctx());
6667 int ret = read_bucket_policy(store, s, binfo, battrs, &bacl, binfo.bucket);
6668 if (ret < 0) {
6669 return false;
6670 }
6671
6672 auto policy = get_iam_policy_from_attr(s->cct, store, battrs, binfo.bucket.tenant);
6673
6674 bucket_owner = bacl.get_owner();
6675
6676 /* We can use global user_acl because each BulkDelete request is allowed
6677 * to work on entities from a single account only. */
6678 return verify_bucket_permission(dpp, s, binfo.bucket, s->user_acl.get(),
6679 &bacl, policy, s->iam_user_policies, rgw::IAM::s3DeleteBucket);
6680 }
6681
6682 bool RGWBulkDelete::Deleter::delete_single(const acct_path_t& path)
6683 {
6684 auto& obj_ctx = *static_cast<RGWObjectCtx *>(s->obj_ctx);
6685
6686 RGWBucketInfo binfo;
6687 map<string, bufferlist> battrs;
6688 ACLOwner bowner;
6689 RGWObjVersionTracker ot;
6690
6691 rgw_bucket b(rgw_bucket_key(s->user->get_tenant(), path.bucket_name));
6692
6693 int ret = store->ctl()->bucket->read_bucket_info(b, &binfo, s->yield,
6694 RGWBucketCtl::BucketInstance::GetParams()
6695 .set_attrs(&battrs),
6696 &ot);
6697 if (ret < 0) {
6698 goto binfo_fail;
6699 }
6700
6701 if (!verify_permission(binfo, battrs, bowner)) {
6702 ret = -EACCES;
6703 goto auth_fail;
6704 }
6705
6706 if (!path.obj_key.empty()) {
6707 rgw_obj obj(binfo.bucket, path.obj_key);
6708 obj_ctx.set_atomic(obj);
6709
6710 RGWRados::Object del_target(store->getRados(), binfo, obj_ctx, obj);
6711 RGWRados::Object::Delete del_op(&del_target);
6712
6713 del_op.params.bucket_owner = binfo.owner;
6714 del_op.params.versioning_status = binfo.versioning_status();
6715 del_op.params.obj_owner = bowner;
6716
6717 ret = del_op.delete_obj(s->yield);
6718 if (ret < 0) {
6719 goto delop_fail;
6720 }
6721 } else {
6722 ret = store->getRados()->delete_bucket(binfo, ot, s->yield);
6723 if (0 == ret) {
6724 ret = store->ctl()->bucket->unlink_bucket(binfo.owner, binfo.bucket, s->yield, false);
6725 if (ret < 0) {
6726 ldpp_dout(s, 0) << "WARNING: failed to unlink bucket: ret=" << ret << dendl;
6727 }
6728 }
6729 if (ret < 0) {
6730 goto delop_fail;
6731 }
6732
6733 if (!store->svc()->zone->is_meta_master()) {
6734 bufferlist in_data;
6735 ret = forward_request_to_master(s, &ot.read_version, store, in_data,
6736 nullptr);
6737 if (ret < 0) {
6738 if (ret == -ENOENT) {
6739 /* adjust error, we want to return with NoSuchBucket and not
6740 * NoSuchKey */
6741 ret = -ERR_NO_SUCH_BUCKET;
6742 }
6743 goto delop_fail;
6744 }
6745 }
6746 }
6747
6748 num_deleted++;
6749 return true;
6750
6751
6752 binfo_fail:
6753 if (-ENOENT == ret) {
6754 ldpp_dout(s, 20) << "cannot find bucket = " << path.bucket_name << dendl;
6755 num_unfound++;
6756 } else {
6757 ldpp_dout(s, 20) << "cannot get bucket info, ret = " << ret << dendl;
6758
6759 fail_desc_t failed_item = {
6760 .err = ret,
6761 .path = path
6762 };
6763 failures.push_back(failed_item);
6764 }
6765 return false;
6766
6767 auth_fail:
6768 ldpp_dout(s, 20) << "wrong auth for " << path << dendl;
6769 {
6770 fail_desc_t failed_item = {
6771 .err = ret,
6772 .path = path
6773 };
6774 failures.push_back(failed_item);
6775 }
6776 return false;
6777
6778 delop_fail:
6779 if (-ENOENT == ret) {
6780 ldpp_dout(s, 20) << "cannot find entry " << path << dendl;
6781 num_unfound++;
6782 } else {
6783 fail_desc_t failed_item = {
6784 .err = ret,
6785 .path = path
6786 };
6787 failures.push_back(failed_item);
6788 }
6789 return false;
6790 }
6791
6792 bool RGWBulkDelete::Deleter::delete_chunk(const std::list<acct_path_t>& paths)
6793 {
6794 ldpp_dout(s, 20) << "in delete_chunk" << dendl;
6795 for (auto path : paths) {
6796 ldpp_dout(s, 20) << "bulk deleting path: " << path << dendl;
6797 delete_single(path);
6798 }
6799
6800 return true;
6801 }
6802
6803 int RGWBulkDelete::verify_permission()
6804 {
6805 return 0;
6806 }
6807
6808 void RGWBulkDelete::pre_exec()
6809 {
6810 rgw_bucket_object_pre_exec(s);
6811 }
6812
6813 void RGWBulkDelete::execute()
6814 {
6815 deleter = std::unique_ptr<Deleter>(new Deleter(this, store, s));
6816
6817 bool is_truncated = false;
6818 do {
6819 list<RGWBulkDelete::acct_path_t> items;
6820
6821 int ret = get_data(items, &is_truncated);
6822 if (ret < 0) {
6823 return;
6824 }
6825
6826 ret = deleter->delete_chunk(items);
6827 } while (!op_ret && is_truncated);
6828
6829 return;
6830 }
6831
6832
6833 constexpr std::array<int, 2> RGWBulkUploadOp::terminal_errors;
6834
6835 int RGWBulkUploadOp::verify_permission()
6836 {
6837 if (s->auth.identity->is_anonymous()) {
6838 return -EACCES;
6839 }
6840
6841 if (! verify_user_permission_no_policy(this, s, RGW_PERM_WRITE)) {
6842 return -EACCES;
6843 }
6844
6845 if (s->user->get_tenant() != s->bucket_tenant) {
6846 ldpp_dout(this, 10) << "user cannot create a bucket in a different tenant"
6847 << " (user_id.tenant=" << s->user->get_tenant()
6848 << " requested=" << s->bucket_tenant << ")" << dendl;
6849 return -EACCES;
6850 }
6851
6852 if (s->user->get_max_buckets() < 0) {
6853 return -EPERM;
6854 }
6855
6856 return 0;
6857 }
6858
6859 void RGWBulkUploadOp::pre_exec()
6860 {
6861 rgw_bucket_object_pre_exec(s);
6862 }
6863
6864 boost::optional<std::pair<std::string, rgw_obj_key>>
6865 RGWBulkUploadOp::parse_path(const boost::string_ref& path)
6866 {
6867 /* We need to skip all slashes at the beginning in order to preserve
6868 * compliance with Swift. */
6869 const size_t start_pos = path.find_first_not_of('/');
6870
6871 if (boost::string_ref::npos != start_pos) {
6872 /* Seperator is the first slash after the leading ones. */
6873 const size_t sep_pos = path.substr(start_pos).find('/');
6874
6875 if (boost::string_ref::npos != sep_pos) {
6876 const auto bucket_name = path.substr(start_pos, sep_pos - start_pos);
6877 const auto obj_name = path.substr(sep_pos + 1);
6878
6879 return std::make_pair(bucket_name.to_string(),
6880 rgw_obj_key(obj_name.to_string()));
6881 } else {
6882 /* It's guaranteed here that bucket name is at least one character
6883 * long and is different than slash. */
6884 return std::make_pair(path.substr(start_pos).to_string(),
6885 rgw_obj_key());
6886 }
6887 }
6888
6889 return none;
6890 }
6891
6892 std::pair<std::string, std::string>
6893 RGWBulkUploadOp::handle_upload_path(struct req_state *s)
6894 {
6895 std::string bucket_path, file_prefix;
6896 if (! s->init_state.url_bucket.empty()) {
6897 file_prefix = bucket_path = s->init_state.url_bucket + "/";
6898 if (! s->object.empty()) {
6899 std::string& object_name = s->object.name;
6900
6901 /* As rgw_obj_key::empty() already verified emptiness of s->object.name,
6902 * we can safely examine its last element. */
6903 if (object_name.back() == '/') {
6904 file_prefix.append(object_name);
6905 } else {
6906 file_prefix.append(object_name).append("/");
6907 }
6908 }
6909 }
6910 return std::make_pair(bucket_path, file_prefix);
6911 }
6912
6913 int RGWBulkUploadOp::handle_dir_verify_permission()
6914 {
6915 if (s->user->get_max_buckets() > 0) {
6916 rgw::sal::RGWBucketList buckets;
6917 std::string marker;
6918 op_ret = rgw_read_user_buckets(store, s->user->get_user(), buckets,
6919 marker, std::string(), s->user->get_max_buckets(),
6920 false);
6921 if (op_ret < 0) {
6922 return op_ret;
6923 }
6924
6925 if (buckets.count() >= static_cast<size_t>(s->user->get_max_buckets())) {
6926 return -ERR_TOO_MANY_BUCKETS;
6927 }
6928 }
6929
6930 return 0;
6931 }
6932
6933 static void forward_req_info(CephContext *cct, req_info& info, const std::string& bucket_name)
6934 {
6935 /* the request of container or object level will contain bucket name.
6936 * only at account level need to append the bucket name */
6937 if (info.script_uri.find(bucket_name) != std::string::npos) {
6938 return;
6939 }
6940
6941 ldout(cct, 20) << "append the bucket: "<< bucket_name << " to req_info" << dendl;
6942 info.script_uri.append("/").append(bucket_name);
6943 info.request_uri_aws4 = info.request_uri = info.script_uri;
6944 info.effective_uri = "/" + bucket_name;
6945 }
6946
6947 void RGWBulkUploadOp::init(rgw::sal::RGWRadosStore* const store,
6948 struct req_state* const s,
6949 RGWHandler* const h)
6950 {
6951 RGWOp::init(store, s, h);
6952 dir_ctx.emplace(store->svc()->sysobj->init_obj_ctx());
6953 }
6954
6955 int RGWBulkUploadOp::handle_dir(const boost::string_ref path)
6956 {
6957 ldpp_dout(this, 20) << "got directory=" << path << dendl;
6958
6959 op_ret = handle_dir_verify_permission();
6960 if (op_ret < 0) {
6961 return op_ret;
6962 }
6963
6964 std::string bucket_name;
6965 rgw_obj_key object_junk;
6966 std::tie(bucket_name, object_junk) = *parse_path(path);
6967
6968 rgw_raw_obj obj(store->svc()->zone->get_zone_params().domain_root,
6969 rgw_make_bucket_entry_name(s->bucket_tenant, bucket_name));
6970
6971 /* we need to make sure we read bucket info, it's not read before for this
6972 * specific request */
6973 RGWBucketInfo binfo;
6974 std::map<std::string, ceph::bufferlist> battrs;
6975 op_ret = store->getRados()->get_bucket_info(store->svc(), s->bucket_tenant, bucket_name,
6976 binfo, nullptr, s->yield, &battrs);
6977 if (op_ret < 0 && op_ret != -ENOENT) {
6978 return op_ret;
6979 }
6980 const bool bucket_exists = (op_ret != -ENOENT);
6981
6982 if (bucket_exists) {
6983 RGWAccessControlPolicy old_policy(s->cct);
6984 int r = rgw_op_get_bucket_policy_from_attr(s->cct, store, binfo,
6985 battrs, &old_policy);
6986 if (r >= 0) {
6987 if (old_policy.get_owner().get_id().compare(s->user->get_user()) != 0) {
6988 op_ret = -EEXIST;
6989 return op_ret;
6990 }
6991 }
6992 }
6993
6994 RGWBucketInfo master_info;
6995 rgw_bucket *pmaster_bucket = nullptr;
6996 uint32_t *pmaster_num_shards = nullptr;
6997 real_time creation_time;
6998 obj_version objv, ep_objv, *pobjv = nullptr;
6999
7000 if (! store->svc()->zone->is_meta_master()) {
7001 JSONParser jp;
7002 ceph::bufferlist in_data;
7003 req_info info = s->info;
7004 forward_req_info(s->cct, info, bucket_name);
7005 op_ret = forward_request_to_master(s, nullptr, store, in_data, &jp, &info);
7006 if (op_ret < 0) {
7007 return op_ret;
7008 }
7009
7010 JSONDecoder::decode_json("entry_point_object_ver", ep_objv, &jp);
7011 JSONDecoder::decode_json("object_ver", objv, &jp);
7012 JSONDecoder::decode_json("bucket_info", master_info, &jp);
7013
7014 ldpp_dout(this, 20) << "parsed: objv.tag=" << objv.tag << " objv.ver=" << objv.ver << dendl;
7015 ldpp_dout(this, 20) << "got creation_time="<< master_info.creation_time << dendl;
7016
7017 pmaster_bucket= &master_info.bucket;
7018 creation_time = master_info.creation_time;
7019 pmaster_num_shards = &master_info.num_shards;
7020 pobjv = &objv;
7021 } else {
7022 pmaster_bucket = nullptr;
7023 pmaster_num_shards = nullptr;
7024 }
7025
7026 rgw_placement_rule placement_rule(binfo.placement_rule, s->info.storage_class);
7027
7028 if (bucket_exists) {
7029 rgw_placement_rule selected_placement_rule;
7030 rgw_bucket bucket;
7031 bucket.tenant = s->bucket_tenant;
7032 bucket.name = s->bucket_name;
7033 op_ret = store->svc()->zone->select_bucket_placement(s->user->get_info(),
7034 store->svc()->zone->get_zonegroup().get_id(),
7035 placement_rule,
7036 &selected_placement_rule,
7037 nullptr);
7038 if (selected_placement_rule != binfo.placement_rule) {
7039 op_ret = -EEXIST;
7040 ldpp_dout(this, 20) << "non-coherent placement rule" << dendl;
7041 return op_ret;
7042 }
7043 }
7044
7045 /* Create metadata: ACLs. */
7046 std::map<std::string, ceph::bufferlist> attrs;
7047 RGWAccessControlPolicy policy;
7048 policy.create_default(s->user->get_id(), s->user->get_display_name());
7049 ceph::bufferlist aclbl;
7050 policy.encode(aclbl);
7051 attrs.emplace(RGW_ATTR_ACL, std::move(aclbl));
7052
7053 RGWQuotaInfo quota_info;
7054 const RGWQuotaInfo * pquota_info = nullptr;
7055
7056 rgw_bucket bucket;
7057 bucket.tenant = s->bucket_tenant; /* ignored if bucket exists */
7058 bucket.name = bucket_name;
7059
7060
7061 RGWBucketInfo out_info;
7062 op_ret = store->getRados()->create_bucket(s->user->get_info(),
7063 bucket,
7064 store->svc()->zone->get_zonegroup().get_id(),
7065 placement_rule, binfo.swift_ver_location,
7066 pquota_info, attrs,
7067 out_info, pobjv, &ep_objv, creation_time,
7068 pmaster_bucket, pmaster_num_shards, true);
7069 /* continue if EEXIST and create_bucket will fail below. this way we can
7070 * recover from a partial create by retrying it. */
7071 ldpp_dout(this, 20) << "rgw_create_bucket returned ret=" << op_ret
7072 << ", bucket=" << bucket << dendl;
7073
7074 if (op_ret && op_ret != -EEXIST) {
7075 return op_ret;
7076 }
7077
7078 const bool existed = (op_ret == -EEXIST);
7079 if (existed) {
7080 /* bucket already existed, might have raced with another bucket creation, or
7081 * might be partial bucket creation that never completed. Read existing bucket
7082 * info, verify that the reported bucket owner is the current user.
7083 * If all is ok then update the user's list of buckets.
7084 * Otherwise inform client about a name conflict.
7085 */
7086 if (out_info.owner.compare(s->user->get_id()) != 0) {
7087 op_ret = -EEXIST;
7088 ldpp_dout(this, 20) << "conflicting bucket name" << dendl;
7089 return op_ret;
7090 }
7091 bucket = out_info.bucket;
7092 }
7093
7094 op_ret = store->ctl()->bucket->link_bucket(s->user->get_id(), bucket,
7095 out_info.creation_time,
7096 s->yield, false);
7097 if (op_ret && !existed && op_ret != -EEXIST) {
7098 /* if it exists (or previously existed), don't remove it! */
7099 op_ret = store->ctl()->bucket->unlink_bucket(s->user->get_id(), bucket, s->yield);
7100 if (op_ret < 0) {
7101 ldpp_dout(this, 0) << "WARNING: failed to unlink bucket: ret=" << op_ret << dendl;
7102 }
7103 } else if (op_ret == -EEXIST || (op_ret == 0 && existed)) {
7104 ldpp_dout(this, 20) << "containers already exists" << dendl;
7105 op_ret = -ERR_BUCKET_EXISTS;
7106 }
7107
7108 return op_ret;
7109 }
7110
7111
7112 bool RGWBulkUploadOp::handle_file_verify_permission(RGWBucketInfo& binfo,
7113 const rgw_obj& obj,
7114 std::map<std::string, ceph::bufferlist>& battrs,
7115 ACLOwner& bucket_owner /* out */)
7116 {
7117 RGWAccessControlPolicy bacl(store->ctx());
7118 op_ret = read_bucket_policy(store, s, binfo, battrs, &bacl, binfo.bucket);
7119 if (op_ret < 0) {
7120 ldpp_dout(this, 20) << "cannot read_policy() for bucket" << dendl;
7121 return false;
7122 }
7123
7124 auto policy = get_iam_policy_from_attr(s->cct, store, battrs, binfo.bucket.tenant);
7125
7126 bucket_owner = bacl.get_owner();
7127 if (policy || ! s->iam_user_policies.empty()) {
7128 auto usr_policy_res = eval_user_policies(s->iam_user_policies, s->env,
7129 boost::none,
7130 rgw::IAM::s3PutObject, obj);
7131 if (usr_policy_res == Effect::Deny) {
7132 return false;
7133 }
7134 auto e = policy->eval(s->env, *s->auth.identity,
7135 rgw::IAM::s3PutObject, obj);
7136 if (e == Effect::Allow) {
7137 return true;
7138 } else if (e == Effect::Deny) {
7139 return false;
7140 } else if (usr_policy_res == Effect::Allow) {
7141 return true;
7142 }
7143 }
7144
7145 return verify_bucket_permission_no_policy(this, s, s->user_acl.get(),
7146 &bacl, RGW_PERM_WRITE);
7147 }
7148
7149 int RGWBulkUploadOp::handle_file(const boost::string_ref path,
7150 const size_t size,
7151 AlignedStreamGetter& body)
7152 {
7153
7154 ldpp_dout(this, 20) << "got file=" << path << ", size=" << size << dendl;
7155
7156 if (size > static_cast<size_t>(s->cct->_conf->rgw_max_put_size)) {
7157 op_ret = -ERR_TOO_LARGE;
7158 return op_ret;
7159 }
7160
7161 std::string bucket_name;
7162 rgw_obj_key object;
7163 std::tie(bucket_name, object) = *parse_path(path);
7164
7165 auto& obj_ctx = *static_cast<RGWObjectCtx *>(s->obj_ctx);
7166 RGWBucketInfo binfo;
7167 std::map<std::string, ceph::bufferlist> battrs;
7168 ACLOwner bowner;
7169 op_ret = store->getRados()->get_bucket_info(store->svc(), s->user->get_tenant(),
7170 bucket_name, binfo, nullptr, s->yield, &battrs);
7171 if (op_ret == -ENOENT) {
7172 ldpp_dout(this, 20) << "non existent directory=" << bucket_name << dendl;
7173 } else if (op_ret < 0) {
7174 return op_ret;
7175 }
7176
7177 if (! handle_file_verify_permission(binfo,
7178 rgw_obj(binfo.bucket, object),
7179 battrs, bowner)) {
7180 ldpp_dout(this, 20) << "object creation unauthorized" << dendl;
7181 op_ret = -EACCES;
7182 return op_ret;
7183 }
7184
7185 op_ret = store->getRados()->check_quota(bowner.get_id(), binfo.bucket,
7186 user_quota, bucket_quota, size);
7187 if (op_ret < 0) {
7188 return op_ret;
7189 }
7190
7191 rgw_obj obj(binfo.bucket, object);
7192 if (s->bucket_info.versioning_enabled()) {
7193 store->getRados()->gen_rand_obj_instance_name(&obj);
7194 }
7195
7196 rgw_placement_rule dest_placement = s->dest_placement;
7197 dest_placement.inherit_from(binfo.placement_rule);
7198
7199 auto aio = rgw::make_throttle(s->cct->_conf->rgw_put_obj_min_window_size,
7200 s->yield);
7201
7202 using namespace rgw::putobj;
7203 AtomicObjectProcessor processor(&*aio, store, binfo, &s->dest_placement, bowner.get_id(),
7204 obj_ctx, obj, 0, s->req_id, this, s->yield);
7205
7206 op_ret = processor.prepare(s->yield);
7207 if (op_ret < 0) {
7208 ldpp_dout(this, 20) << "cannot prepare processor due to ret=" << op_ret << dendl;
7209 return op_ret;
7210 }
7211
7212 /* No filters by default. */
7213 DataProcessor *filter = &processor;
7214
7215 const auto& compression_type = store->svc()->zone->get_zone_params().get_compression_type(
7216 dest_placement);
7217 CompressorRef plugin;
7218 boost::optional<RGWPutObj_Compress> compressor;
7219 if (compression_type != "none") {
7220 plugin = Compressor::create(s->cct, compression_type);
7221 if (! plugin) {
7222 ldpp_dout(this, 1) << "Cannot load plugin for rgw_compression_type "
7223 << compression_type << dendl;
7224 } else {
7225 compressor.emplace(s->cct, plugin, filter);
7226 filter = &*compressor;
7227 }
7228 }
7229
7230 /* Upload file content. */
7231 ssize_t len = 0;
7232 size_t ofs = 0;
7233 MD5 hash;
7234 do {
7235 ceph::bufferlist data;
7236 len = body.get_at_most(s->cct->_conf->rgw_max_chunk_size, data);
7237
7238 ldpp_dout(this, 20) << "body=" << data.c_str() << dendl;
7239 if (len < 0) {
7240 op_ret = len;
7241 return op_ret;
7242 } else if (len > 0) {
7243 hash.Update((const unsigned char *)data.c_str(), data.length());
7244 op_ret = filter->process(std::move(data), ofs);
7245 if (op_ret < 0) {
7246 ldpp_dout(this, 20) << "filter->process() returned ret=" << op_ret << dendl;
7247 return op_ret;
7248 }
7249
7250 ofs += len;
7251 }
7252
7253 } while (len > 0);
7254
7255 // flush
7256 op_ret = filter->process({}, ofs);
7257 if (op_ret < 0) {
7258 return op_ret;
7259 }
7260
7261 if (ofs != size) {
7262 ldpp_dout(this, 10) << "real file size different from declared" << dendl;
7263 op_ret = -EINVAL;
7264 return op_ret;
7265 }
7266
7267 op_ret = store->getRados()->check_quota(bowner.get_id(), binfo.bucket,
7268 user_quota, bucket_quota, size);
7269 if (op_ret < 0) {
7270 ldpp_dout(this, 20) << "quota exceeded for path=" << path << dendl;
7271 return op_ret;
7272 }
7273
7274 char calc_md5[CEPH_CRYPTO_MD5_DIGESTSIZE * 2 + 1];
7275 unsigned char m[CEPH_CRYPTO_MD5_DIGESTSIZE];
7276 hash.Final(m);
7277 buf_to_hex(m, CEPH_CRYPTO_MD5_DIGESTSIZE, calc_md5);
7278
7279 /* Create metadata: ETAG. */
7280 std::map<std::string, ceph::bufferlist> attrs;
7281 std::string etag = calc_md5;
7282 ceph::bufferlist etag_bl;
7283 etag_bl.append(etag.c_str(), etag.size() + 1);
7284 attrs.emplace(RGW_ATTR_ETAG, std::move(etag_bl));
7285
7286 /* Create metadata: ACLs. */
7287 RGWAccessControlPolicy policy;
7288 policy.create_default(s->user->get_id(), s->user->get_display_name());
7289 ceph::bufferlist aclbl;
7290 policy.encode(aclbl);
7291 attrs.emplace(RGW_ATTR_ACL, std::move(aclbl));
7292
7293 /* Create metadata: compression info. */
7294 if (compressor && compressor->is_compressed()) {
7295 ceph::bufferlist tmp;
7296 RGWCompressionInfo cs_info;
7297 cs_info.compression_type = plugin->get_type_name();
7298 cs_info.orig_size = s->obj_size;
7299 cs_info.blocks = std::move(compressor->get_compression_blocks());
7300 encode(cs_info, tmp);
7301 attrs.emplace(RGW_ATTR_COMPRESSION, std::move(tmp));
7302 }
7303
7304 /* Complete the transaction. */
7305 op_ret = processor.complete(size, etag, nullptr, ceph::real_time(),
7306 attrs, ceph::real_time() /* delete_at */,
7307 nullptr, nullptr, nullptr, nullptr, nullptr,
7308 s->yield);
7309 if (op_ret < 0) {
7310 ldpp_dout(this, 20) << "processor::complete returned op_ret=" << op_ret << dendl;
7311 }
7312
7313 return op_ret;
7314 }
7315
7316 void RGWBulkUploadOp::execute()
7317 {
7318 ceph::bufferlist buffer(64 * 1024);
7319
7320 ldpp_dout(this, 20) << "start" << dendl;
7321
7322 /* Create an instance of stream-abstracting class. Having this indirection
7323 * allows for easy introduction of decompressors like gzip and bzip2. */
7324 auto stream = create_stream();
7325 if (! stream) {
7326 return;
7327 }
7328
7329 /* Handling the $UPLOAD_PATH accordingly to the Swift's Bulk middleware. See:
7330 * https://github.com/openstack/swift/blob/2.13.0/swift/common/middleware/bulk.py#L31-L41 */
7331 std::string bucket_path, file_prefix;
7332 std::tie(bucket_path, file_prefix) = handle_upload_path(s);
7333
7334 auto status = rgw::tar::StatusIndicator::create();
7335 do {
7336 op_ret = stream->get_exactly(rgw::tar::BLOCK_SIZE, buffer);
7337 if (op_ret < 0) {
7338 ldpp_dout(this, 2) << "cannot read header" << dendl;
7339 return;
7340 }
7341
7342 /* We need to re-interpret the buffer as a TAR block. Exactly two blocks
7343 * must be tracked to detect out end-of-archive. It occurs when both of
7344 * them are empty (zeroed). Tracing this particular inter-block dependency
7345 * is responsibility of the rgw::tar::StatusIndicator class. */
7346 boost::optional<rgw::tar::HeaderView> header;
7347 std::tie(status, header) = rgw::tar::interpret_block(status, buffer);
7348
7349 if (! status.empty() && header) {
7350 /* This specific block isn't empty (entirely zeroed), so we can parse
7351 * it as a TAR header and dispatch. At the moment we do support only
7352 * regular files and directories. Everything else (symlinks, devices)
7353 * will be ignored but won't cease the whole upload. */
7354 switch (header->get_filetype()) {
7355 case rgw::tar::FileType::NORMAL_FILE: {
7356 ldpp_dout(this, 2) << "handling regular file" << dendl;
7357
7358 boost::string_ref filename = bucket_path.empty() ? header->get_filename() : \
7359 file_prefix + header->get_filename().to_string();
7360 auto body = AlignedStreamGetter(0, header->get_filesize(),
7361 rgw::tar::BLOCK_SIZE, *stream);
7362 op_ret = handle_file(filename,
7363 header->get_filesize(),
7364 body);
7365 if (! op_ret) {
7366 /* Only regular files counts. */
7367 num_created++;
7368 } else {
7369 failures.emplace_back(op_ret, filename.to_string());
7370 }
7371 break;
7372 }
7373 case rgw::tar::FileType::DIRECTORY: {
7374 ldpp_dout(this, 2) << "handling regular directory" << dendl;
7375
7376 boost::string_ref dirname = bucket_path.empty() ? header->get_filename() : bucket_path;
7377 op_ret = handle_dir(dirname);
7378 if (op_ret < 0 && op_ret != -ERR_BUCKET_EXISTS) {
7379 failures.emplace_back(op_ret, dirname.to_string());
7380 }
7381 break;
7382 }
7383 default: {
7384 /* Not recognized. Skip. */
7385 op_ret = 0;
7386 break;
7387 }
7388 }
7389
7390 /* In case of any problems with sub-request authorization Swift simply
7391 * terminates whole upload immediately. */
7392 if (boost::algorithm::contains(std::initializer_list<int>{ op_ret },
7393 terminal_errors)) {
7394 ldpp_dout(this, 2) << "terminating due to ret=" << op_ret << dendl;
7395 break;
7396 }
7397 } else {
7398 ldpp_dout(this, 2) << "an empty block" << dendl;
7399 op_ret = 0;
7400 }
7401
7402 buffer.clear();
7403 } while (! status.eof());
7404
7405 return;
7406 }
7407
7408 RGWBulkUploadOp::AlignedStreamGetter::~AlignedStreamGetter()
7409 {
7410 const size_t aligned_legnth = length + (-length % alignment);
7411 ceph::bufferlist junk;
7412
7413 DecoratedStreamGetter::get_exactly(aligned_legnth - position, junk);
7414 }
7415
7416 ssize_t RGWBulkUploadOp::AlignedStreamGetter::get_at_most(const size_t want,
7417 ceph::bufferlist& dst)
7418 {
7419 const size_t max_to_read = std::min(want, length - position);
7420 const auto len = DecoratedStreamGetter::get_at_most(max_to_read, dst);
7421 if (len > 0) {
7422 position += len;
7423 }
7424 return len;
7425 }
7426
7427 ssize_t RGWBulkUploadOp::AlignedStreamGetter::get_exactly(const size_t want,
7428 ceph::bufferlist& dst)
7429 {
7430 const auto len = DecoratedStreamGetter::get_exactly(want, dst);
7431 if (len > 0) {
7432 position += len;
7433 }
7434 return len;
7435 }
7436
7437 int RGWSetAttrs::verify_permission()
7438 {
7439 // This looks to be part of the RGW-NFS machinery and has no S3 or
7440 // Swift equivalent.
7441 bool perm;
7442 if (!s->object.empty()) {
7443 perm = verify_object_permission_no_policy(this, s, RGW_PERM_WRITE);
7444 } else {
7445 perm = verify_bucket_permission_no_policy(this, s, RGW_PERM_WRITE);
7446 }
7447 if (!perm)
7448 return -EACCES;
7449
7450 return 0;
7451 }
7452
7453 void RGWSetAttrs::pre_exec()
7454 {
7455 rgw_bucket_object_pre_exec(s);
7456 }
7457
7458 void RGWSetAttrs::execute()
7459 {
7460 op_ret = get_params();
7461 if (op_ret < 0)
7462 return;
7463
7464 rgw_obj obj(s->bucket, s->object);
7465
7466 if (!s->object.empty()) {
7467 store->getRados()->set_atomic(s->obj_ctx, obj);
7468 op_ret = store->getRados()->set_attrs(s->obj_ctx, s->bucket_info, obj, attrs, nullptr, s->yield);
7469 } else {
7470 for (auto& iter : attrs) {
7471 s->bucket_attrs[iter.first] = std::move(iter.second);
7472 }
7473 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
7474 &s->bucket_info.objv_tracker,
7475 s->yield);
7476 }
7477 }
7478
7479 void RGWGetObjLayout::pre_exec()
7480 {
7481 rgw_bucket_object_pre_exec(s);
7482 }
7483
7484 void RGWGetObjLayout::execute()
7485 {
7486 rgw_obj obj(s->bucket, s->object);
7487 RGWRados::Object target(store->getRados(),
7488 s->bucket_info,
7489 *static_cast<RGWObjectCtx *>(s->obj_ctx),
7490 rgw_obj(s->bucket, s->object));
7491 RGWRados::Object::Read stat_op(&target);
7492
7493 op_ret = stat_op.prepare(s->yield);
7494 if (op_ret < 0) {
7495 return;
7496 }
7497
7498 head_obj = stat_op.state.head_obj;
7499
7500 op_ret = target.get_manifest(&manifest, s->yield);
7501 }
7502
7503
7504 int RGWConfigBucketMetaSearch::verify_permission()
7505 {
7506 if (!s->auth.identity->is_owner_of(s->bucket_owner.get_id())) {
7507 return -EACCES;
7508 }
7509
7510 return 0;
7511 }
7512
7513 void RGWConfigBucketMetaSearch::pre_exec()
7514 {
7515 rgw_bucket_object_pre_exec(s);
7516 }
7517
7518 void RGWConfigBucketMetaSearch::execute()
7519 {
7520 op_ret = get_params();
7521 if (op_ret < 0) {
7522 ldpp_dout(this, 20) << "NOTICE: get_params() returned ret=" << op_ret << dendl;
7523 return;
7524 }
7525
7526 s->bucket_info.mdsearch_config = mdsearch_config;
7527
7528 op_ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false, real_time(), &s->bucket_attrs);
7529 if (op_ret < 0) {
7530 ldpp_dout(this, 0) << "NOTICE: put_bucket_info on bucket=" << s->bucket.name
7531 << " returned err=" << op_ret << dendl;
7532 return;
7533 }
7534 }
7535
7536 int RGWGetBucketMetaSearch::verify_permission()
7537 {
7538 if (!s->auth.identity->is_owner_of(s->bucket_owner.get_id())) {
7539 return -EACCES;
7540 }
7541
7542 return 0;
7543 }
7544
7545 void RGWGetBucketMetaSearch::pre_exec()
7546 {
7547 rgw_bucket_object_pre_exec(s);
7548 }
7549
7550 int RGWDelBucketMetaSearch::verify_permission()
7551 {
7552 if (!s->auth.identity->is_owner_of(s->bucket_owner.get_id())) {
7553 return -EACCES;
7554 }
7555
7556 return 0;
7557 }
7558
7559 void RGWDelBucketMetaSearch::pre_exec()
7560 {
7561 rgw_bucket_object_pre_exec(s);
7562 }
7563
7564 void RGWDelBucketMetaSearch::execute()
7565 {
7566 s->bucket_info.mdsearch_config.clear();
7567
7568 op_ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false, real_time(), &s->bucket_attrs);
7569 if (op_ret < 0) {
7570 ldpp_dout(this, 0) << "NOTICE: put_bucket_info on bucket=" << s->bucket.name
7571 << " returned err=" << op_ret << dendl;
7572 return;
7573 }
7574 }
7575
7576
7577 RGWHandler::~RGWHandler()
7578 {
7579 }
7580
7581 int RGWHandler::init(rgw::sal::RGWRadosStore *_store,
7582 struct req_state *_s,
7583 rgw::io::BasicClient *cio)
7584 {
7585 store = _store;
7586 s = _s;
7587
7588 return 0;
7589 }
7590
7591 int RGWHandler::do_init_permissions()
7592 {
7593 int ret = rgw_build_bucket_policies(store, s);
7594 if (ret < 0) {
7595 ldpp_dout(s, 10) << "init_permissions on " << s->bucket
7596 << " failed, ret=" << ret << dendl;
7597 return ret==-ENODATA ? -EACCES : ret;
7598 }
7599
7600 rgw_build_iam_environment(store, s);
7601 return ret;
7602 }
7603
7604 int RGWHandler::do_read_permissions(RGWOp *op, bool only_bucket)
7605 {
7606 if (only_bucket) {
7607 /* already read bucket info */
7608 return 0;
7609 }
7610 int ret = rgw_build_object_policies(store, s, op->prefetch_data());
7611
7612 if (ret < 0) {
7613 ldpp_dout(op, 10) << "read_permissions on " << s->bucket << ":"
7614 << s->object << " only_bucket=" << only_bucket
7615 << " ret=" << ret << dendl;
7616 if (ret == -ENODATA)
7617 ret = -EACCES;
7618 if (s->auth.identity->is_anonymous() && ret == -EACCES)
7619 ret = -EPERM;
7620 }
7621
7622 return ret;
7623 }
7624
7625 int RGWOp::error_handler(int err_no, string *error_content) {
7626 return dialect_handler->error_handler(err_no, error_content);
7627 }
7628
7629 int RGWHandler::error_handler(int err_no, string *error_content) {
7630 // This is the do-nothing error handler
7631 return err_no;
7632 }
7633
7634 std::ostream& RGWOp::gen_prefix(std::ostream& out) const
7635 {
7636 // append <dialect>:<op name> to the prefix
7637 return s->gen_prefix(out) << s->dialect << ':' << name() << ' ';
7638 }
7639
7640 void RGWDefaultResponseOp::send_response() {
7641 if (op_ret) {
7642 set_req_state_err(s, op_ret);
7643 }
7644 dump_errno(s);
7645 end_header(s);
7646 }
7647
7648 void RGWPutBucketPolicy::send_response()
7649 {
7650 if (op_ret) {
7651 set_req_state_err(s, op_ret);
7652 }
7653 dump_errno(s);
7654 end_header(s);
7655 }
7656
7657 int RGWPutBucketPolicy::verify_permission()
7658 {
7659 if (!verify_bucket_permission(this, s, rgw::IAM::s3PutBucketPolicy)) {
7660 return -EACCES;
7661 }
7662
7663 return 0;
7664 }
7665
7666 int RGWPutBucketPolicy::get_params()
7667 {
7668 const auto max_size = s->cct->_conf->rgw_max_put_param_size;
7669 // At some point when I have more time I want to make a version of
7670 // rgw_rest_read_all_input that doesn't use malloc.
7671 std::tie(op_ret, data) = rgw_rest_read_all_input(s, max_size, false);
7672
7673 // And throws exceptions.
7674 return op_ret;
7675 }
7676
7677 void RGWPutBucketPolicy::execute()
7678 {
7679 op_ret = get_params();
7680 if (op_ret < 0) {
7681 return;
7682 }
7683
7684 if (!store->svc()->zone->is_meta_master()) {
7685 op_ret = forward_request_to_master(s, NULL, store, data, nullptr);
7686 if (op_ret < 0) {
7687 ldpp_dout(this, 20) << "forward_request_to_master returned ret=" << op_ret << dendl;
7688 return;
7689 }
7690 }
7691
7692 try {
7693 const Policy p(s->cct, s->bucket_tenant, data);
7694 auto attrs = s->bucket_attrs;
7695 if (s->bucket_access_conf &&
7696 s->bucket_access_conf->block_public_policy() &&
7697 rgw::IAM::is_public(p)) {
7698 op_ret = -EACCES;
7699 return;
7700 }
7701
7702 op_ret = retry_raced_bucket_write(store->getRados(), s, [&p, this, &attrs] {
7703 attrs[RGW_ATTR_IAM_POLICY].clear();
7704 attrs[RGW_ATTR_IAM_POLICY].append(p.text);
7705 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
7706 &s->bucket_info.objv_tracker,
7707 s->yield);
7708 return op_ret;
7709 });
7710 } catch (rgw::IAM::PolicyParseException& e) {
7711 ldpp_dout(this, 20) << "failed to parse policy: " << e.what() << dendl;
7712 op_ret = -EINVAL;
7713 }
7714 }
7715
7716 void RGWGetBucketPolicy::send_response()
7717 {
7718 if (op_ret) {
7719 set_req_state_err(s, op_ret);
7720 }
7721 dump_errno(s);
7722 end_header(s, this, "application/json");
7723 dump_body(s, policy);
7724 }
7725
7726 int RGWGetBucketPolicy::verify_permission()
7727 {
7728 if (!verify_bucket_permission(this, s, rgw::IAM::s3GetBucketPolicy)) {
7729 return -EACCES;
7730 }
7731
7732 return 0;
7733 }
7734
7735 void RGWGetBucketPolicy::execute()
7736 {
7737 auto attrs = s->bucket_attrs;
7738 map<string, bufferlist>::iterator aiter = attrs.find(RGW_ATTR_IAM_POLICY);
7739 if (aiter == attrs.end()) {
7740 ldpp_dout(this, 0) << "can't find bucket IAM POLICY attr bucket_name = "
7741 << s->bucket_name << dendl;
7742 op_ret = -ERR_NO_SUCH_BUCKET_POLICY;
7743 s->err.message = "The bucket policy does not exist";
7744 return;
7745 } else {
7746 policy = attrs[RGW_ATTR_IAM_POLICY];
7747
7748 if (policy.length() == 0) {
7749 ldpp_dout(this, 10) << "The bucket policy does not exist, bucket: "
7750 << s->bucket_name << dendl;
7751 op_ret = -ERR_NO_SUCH_BUCKET_POLICY;
7752 s->err.message = "The bucket policy does not exist";
7753 return;
7754 }
7755 }
7756 }
7757
7758 void RGWDeleteBucketPolicy::send_response()
7759 {
7760 if (op_ret) {
7761 set_req_state_err(s, op_ret);
7762 }
7763 dump_errno(s);
7764 end_header(s);
7765 }
7766
7767 int RGWDeleteBucketPolicy::verify_permission()
7768 {
7769 if (!verify_bucket_permission(this, s, rgw::IAM::s3DeleteBucketPolicy)) {
7770 return -EACCES;
7771 }
7772
7773 return 0;
7774 }
7775
7776 void RGWDeleteBucketPolicy::execute()
7777 {
7778 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
7779 auto attrs = s->bucket_attrs;
7780 attrs.erase(RGW_ATTR_IAM_POLICY);
7781 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
7782 &s->bucket_info.objv_tracker,
7783 s->yield);
7784 return op_ret;
7785 });
7786 }
7787
7788 void RGWPutBucketObjectLock::pre_exec()
7789 {
7790 rgw_bucket_object_pre_exec(s);
7791 }
7792
7793 int RGWPutBucketObjectLock::verify_permission()
7794 {
7795 return verify_bucket_owner_or_policy(s, rgw::IAM::s3PutBucketObjectLockConfiguration);
7796 }
7797
7798 void RGWPutBucketObjectLock::execute()
7799 {
7800 if (!s->bucket_info.obj_lock_enabled()) {
7801 ldpp_dout(this, 0) << "ERROR: object Lock configuration cannot be enabled on existing buckets" << dendl;
7802 op_ret = -ERR_INVALID_BUCKET_STATE;
7803 return;
7804 }
7805
7806 RGWXMLDecoder::XMLParser parser;
7807 if (!parser.init()) {
7808 ldpp_dout(this, 0) << "ERROR: failed to initialize parser" << dendl;
7809 op_ret = -EINVAL;
7810 return;
7811 }
7812 op_ret = get_params();
7813 if (op_ret < 0) {
7814 return;
7815 }
7816 if (!parser.parse(data.c_str(), data.length(), 1)) {
7817 op_ret = -ERR_MALFORMED_XML;
7818 return;
7819 }
7820
7821 try {
7822 RGWXMLDecoder::decode_xml("ObjectLockConfiguration", obj_lock, &parser, true);
7823 } catch (RGWXMLDecoder::err& err) {
7824 ldout(s->cct, 5) << "unexpected xml:" << err << dendl;
7825 op_ret = -ERR_MALFORMED_XML;
7826 return;
7827 }
7828 if (obj_lock.has_rule() && !obj_lock.retention_period_valid()) {
7829 ldpp_dout(this, 0) << "ERROR: retention period must be a positive integer value" << dendl;
7830 op_ret = -ERR_INVALID_RETENTION_PERIOD;
7831 return;
7832 }
7833
7834 if (!store->svc()->zone->is_meta_master()) {
7835 op_ret = forward_request_to_master(s, NULL, store, data, nullptr);
7836 if (op_ret < 0) {
7837 ldout(s->cct, 20) << __func__ << "forward_request_to_master returned ret=" << op_ret << dendl;
7838 return;
7839 }
7840 }
7841
7842 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
7843 s->bucket_info.obj_lock = obj_lock;
7844 op_ret = store->getRados()->put_bucket_instance_info(s->bucket_info, false,
7845 real_time(), &s->bucket_attrs);
7846 return op_ret;
7847 });
7848 return;
7849 }
7850
7851 void RGWGetBucketObjectLock::pre_exec()
7852 {
7853 rgw_bucket_object_pre_exec(s);
7854 }
7855
7856 int RGWGetBucketObjectLock::verify_permission()
7857 {
7858 return verify_bucket_owner_or_policy(s, rgw::IAM::s3GetBucketObjectLockConfiguration);
7859 }
7860
7861 void RGWGetBucketObjectLock::execute()
7862 {
7863 if (!s->bucket_info.obj_lock_enabled()) {
7864 op_ret = -ERR_NO_SUCH_OBJECT_LOCK_CONFIGURATION;
7865 return;
7866 }
7867 }
7868
7869 int RGWPutObjRetention::verify_permission()
7870 {
7871 if (!verify_object_permission(this, s, rgw::IAM::s3PutObjectRetention)) {
7872 return -EACCES;
7873 }
7874 op_ret = get_params();
7875 if (op_ret) {
7876 return op_ret;
7877 }
7878 if (bypass_governance_mode) {
7879 bypass_perm = verify_object_permission(this, s, rgw::IAM::s3BypassGovernanceRetention);
7880 }
7881 return 0;
7882 }
7883
7884 void RGWPutObjRetention::pre_exec()
7885 {
7886 rgw_bucket_object_pre_exec(s);
7887 }
7888
7889 void RGWPutObjRetention::execute()
7890 {
7891 if (!s->bucket_info.obj_lock_enabled()) {
7892 ldpp_dout(this, 0) << "ERROR: object retention can't be set if bucket object lock not configured" << dendl;
7893 op_ret = -ERR_INVALID_REQUEST;
7894 return;
7895 }
7896
7897 RGWXMLDecoder::XMLParser parser;
7898 if (!parser.init()) {
7899 ldpp_dout(this, 0) << "ERROR: failed to initialize parser" << dendl;
7900 op_ret = -EINVAL;
7901 return;
7902 }
7903
7904 if (!parser.parse(data.c_str(), data.length(), 1)) {
7905 op_ret = -ERR_MALFORMED_XML;
7906 return;
7907 }
7908
7909 try {
7910 RGWXMLDecoder::decode_xml("Retention", obj_retention, &parser, true);
7911 } catch (RGWXMLDecoder::err& err) {
7912 ldpp_dout(this, 5) << "unexpected xml:" << err << dendl;
7913 op_ret = -ERR_MALFORMED_XML;
7914 return;
7915 }
7916
7917 if (ceph::real_clock::to_time_t(obj_retention.get_retain_until_date()) < ceph_clock_now()) {
7918 ldpp_dout(this, 0) << "ERROR: the retain until date must be in the future" << dendl;
7919 op_ret = -EINVAL;
7920 return;
7921 }
7922 bufferlist bl;
7923 obj_retention.encode(bl);
7924 rgw_obj obj(s->bucket, s->object);
7925
7926 //check old retention
7927 map<string, bufferlist> attrs;
7928 op_ret = get_obj_attrs(store, s, obj, attrs);
7929 if (op_ret < 0) {
7930 ldpp_dout(this, 0) << "ERROR: get obj attr error"<< dendl;
7931 return;
7932 }
7933 auto aiter = attrs.find(RGW_ATTR_OBJECT_RETENTION);
7934 if (aiter != attrs.end()) {
7935 RGWObjectRetention old_obj_retention;
7936 try {
7937 decode(old_obj_retention, aiter->second);
7938 } catch (buffer::error& err) {
7939 ldpp_dout(this, 0) << "ERROR: failed to decode RGWObjectRetention" << dendl;
7940 op_ret = -EIO;
7941 return;
7942 }
7943 if (ceph::real_clock::to_time_t(obj_retention.get_retain_until_date()) < ceph::real_clock::to_time_t(old_obj_retention.get_retain_until_date())) {
7944 if (old_obj_retention.get_mode().compare("GOVERNANCE") != 0 || !bypass_perm || !bypass_governance_mode) {
7945 op_ret = -EACCES;
7946 return;
7947 }
7948 }
7949 }
7950
7951 op_ret = modify_obj_attr(store, s, obj, RGW_ATTR_OBJECT_RETENTION, bl);
7952
7953 return;
7954 }
7955
7956 int RGWGetObjRetention::verify_permission()
7957 {
7958 if (!verify_object_permission(this, s, rgw::IAM::s3GetObjectRetention)) {
7959 return -EACCES;
7960 }
7961 return 0;
7962 }
7963
7964 void RGWGetObjRetention::pre_exec()
7965 {
7966 rgw_bucket_object_pre_exec(s);
7967 }
7968
7969 void RGWGetObjRetention::execute()
7970 {
7971 if (!s->bucket_info.obj_lock_enabled()) {
7972 ldpp_dout(this, 0) << "ERROR: bucket object lock not configured" << dendl;
7973 op_ret = -ERR_INVALID_REQUEST;
7974 return;
7975 }
7976 rgw_obj obj(s->bucket, s->object);
7977 map<string, bufferlist> attrs;
7978 op_ret = get_obj_attrs(store, s, obj, attrs);
7979 if (op_ret < 0) {
7980 ldpp_dout(this, 0) << "ERROR: failed to get obj attrs, obj=" << obj
7981 << " ret=" << op_ret << dendl;
7982 return;
7983 }
7984 auto aiter = attrs.find(RGW_ATTR_OBJECT_RETENTION);
7985 if (aiter == attrs.end()) {
7986 op_ret = -ERR_NO_SUCH_OBJECT_LOCK_CONFIGURATION;
7987 return;
7988 }
7989
7990 bufferlist::const_iterator iter{&aiter->second};
7991 try {
7992 obj_retention.decode(iter);
7993 } catch (const buffer::error& e) {
7994 ldout(s->cct, 0) << __func__ << "decode object retention config failed" << dendl;
7995 op_ret = -EIO;
7996 return;
7997 }
7998 return;
7999 }
8000
8001 int RGWPutObjLegalHold::verify_permission()
8002 {
8003 if (!verify_object_permission(this, s, rgw::IAM::s3PutObjectLegalHold)) {
8004 return -EACCES;
8005 }
8006 return 0;
8007 }
8008
8009 void RGWPutObjLegalHold::pre_exec()
8010 {
8011 rgw_bucket_object_pre_exec(s);
8012 }
8013
8014 void RGWPutObjLegalHold::execute() {
8015 if (!s->bucket_info.obj_lock_enabled()) {
8016 ldpp_dout(this, 0) << "ERROR: object legal hold can't be set if bucket object lock not configured" << dendl;
8017 op_ret = -ERR_INVALID_REQUEST;
8018 return;
8019 }
8020
8021 RGWXMLDecoder::XMLParser parser;
8022 if (!parser.init()) {
8023 ldpp_dout(this, 0) << "ERROR: failed to initialize parser" << dendl;
8024 op_ret = -EINVAL;
8025 return;
8026 }
8027
8028 op_ret = get_params();
8029 if (op_ret < 0)
8030 return;
8031
8032 if (!parser.parse(data.c_str(), data.length(), 1)) {
8033 op_ret = -ERR_MALFORMED_XML;
8034 return;
8035 }
8036
8037 try {
8038 RGWXMLDecoder::decode_xml("LegalHold", obj_legal_hold, &parser, true);
8039 } catch (RGWXMLDecoder::err &err) {
8040 ldout(s->cct, 5) << "unexpected xml:" << err << dendl;
8041 op_ret = -ERR_MALFORMED_XML;
8042 return;
8043 }
8044 bufferlist bl;
8045 obj_legal_hold.encode(bl);
8046 rgw_obj obj(s->bucket, s->object);
8047 //if instance is empty, we should modify the latest object
8048 op_ret = modify_obj_attr(store, s, obj, RGW_ATTR_OBJECT_LEGAL_HOLD, bl);
8049 return;
8050 }
8051
8052 int RGWGetObjLegalHold::verify_permission()
8053 {
8054 if (!verify_object_permission(this, s, rgw::IAM::s3GetObjectLegalHold)) {
8055 return -EACCES;
8056 }
8057 return 0;
8058 }
8059
8060 void RGWGetObjLegalHold::pre_exec()
8061 {
8062 rgw_bucket_object_pre_exec(s);
8063 }
8064
8065 void RGWGetObjLegalHold::execute()
8066 {
8067 if (!s->bucket_info.obj_lock_enabled()) {
8068 ldpp_dout(this, 0) << "ERROR: bucket object lock not configured" << dendl;
8069 op_ret = -ERR_INVALID_REQUEST;
8070 return;
8071 }
8072 rgw_obj obj(s->bucket, s->object);
8073 map<string, bufferlist> attrs;
8074 op_ret = get_obj_attrs(store, s, obj, attrs);
8075 if (op_ret < 0) {
8076 ldpp_dout(this, 0) << "ERROR: failed to get obj attrs, obj=" << obj
8077 << " ret=" << op_ret << dendl;
8078 return;
8079 }
8080 auto aiter = attrs.find(RGW_ATTR_OBJECT_LEGAL_HOLD);
8081 if (aiter == attrs.end()) {
8082 op_ret = -ERR_NO_SUCH_OBJECT_LOCK_CONFIGURATION;
8083 return;
8084 }
8085
8086 bufferlist::const_iterator iter{&aiter->second};
8087 try {
8088 obj_legal_hold.decode(iter);
8089 } catch (const buffer::error& e) {
8090 ldout(s->cct, 0) << __func__ << "decode object legal hold config failed" << dendl;
8091 op_ret = -EIO;
8092 return;
8093 }
8094 return;
8095 }
8096
8097 void RGWGetClusterStat::execute()
8098 {
8099 op_ret = this->store->getRados()->get_rados_handle()->cluster_stat(stats_op);
8100 }
8101
8102
8103 int RGWGetBucketPolicyStatus::verify_permission()
8104 {
8105 if (!verify_bucket_permission(this, s, rgw::IAM::s3GetBucketPolicyStatus)) {
8106 return -EACCES;
8107 }
8108
8109 return 0;
8110 }
8111
8112 void RGWGetBucketPolicyStatus::execute()
8113 {
8114 isPublic = (s->iam_policy && rgw::IAM::is_public(*s->iam_policy)) || s->bucket_acl->is_public();
8115 }
8116
8117 int RGWPutBucketPublicAccessBlock::verify_permission()
8118 {
8119 if (!verify_bucket_permission(this, s, rgw::IAM::s3PutBucketPublicAccessBlock)) {
8120 return -EACCES;
8121 }
8122
8123 return 0;
8124 }
8125
8126 int RGWPutBucketPublicAccessBlock::get_params()
8127 {
8128 const auto max_size = s->cct->_conf->rgw_max_put_param_size;
8129 std::tie(op_ret, data) = rgw_rest_read_all_input(s, max_size, false);
8130 return op_ret;
8131 }
8132
8133 void RGWPutBucketPublicAccessBlock::execute()
8134 {
8135 RGWXMLDecoder::XMLParser parser;
8136 if (!parser.init()) {
8137 ldpp_dout(this, 0) << "ERROR: failed to initialize parser" << dendl;
8138 op_ret = -EINVAL;
8139 return;
8140 }
8141
8142 op_ret = get_params();
8143 if (op_ret < 0)
8144 return;
8145
8146 if (!parser.parse(data.c_str(), data.length(), 1)) {
8147 ldpp_dout(this, 0) << "ERROR: malformed XML" << dendl;
8148 op_ret = -ERR_MALFORMED_XML;
8149 return;
8150 }
8151
8152 try {
8153 RGWXMLDecoder::decode_xml("PublicAccessBlockConfiguration", access_conf, &parser, true);
8154 } catch (RGWXMLDecoder::err &err) {
8155 ldpp_dout(this, 5) << "unexpected xml:" << err << dendl;
8156 op_ret = -ERR_MALFORMED_XML;
8157 return;
8158 }
8159
8160 if (!store->svc()->zone->is_meta_master()) {
8161 op_ret = forward_request_to_master(s, NULL, store, data, nullptr);
8162 if (op_ret < 0) {
8163 ldpp_dout(this, 0) << "forward_request_to_master returned ret=" << op_ret << dendl;
8164 return;
8165 }
8166 }
8167
8168 bufferlist bl;
8169 access_conf.encode(bl);
8170 op_ret = retry_raced_bucket_write(store->getRados(), s, [this, &bl] {
8171 map<string, bufferlist> attrs = s->bucket_attrs;
8172 attrs[RGW_ATTR_PUBLIC_ACCESS] = bl;
8173 return store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs, &s->bucket_info.objv_tracker, s->yield);
8174 });
8175
8176 }
8177
8178 int RGWGetBucketPublicAccessBlock::verify_permission()
8179 {
8180 if (!verify_bucket_permission(this, s, rgw::IAM::s3GetBucketPolicy)) {
8181 return -EACCES;
8182 }
8183
8184 return 0;
8185 }
8186
8187 void RGWGetBucketPublicAccessBlock::execute()
8188 {
8189 auto attrs = s->bucket_attrs;
8190 if (auto aiter = attrs.find(RGW_ATTR_PUBLIC_ACCESS);
8191 aiter == attrs.end()) {
8192 ldpp_dout(this, 0) << "can't find bucket IAM POLICY attr bucket_name = "
8193 << s->bucket_name << dendl;
8194 // return the default;
8195 return;
8196 } else {
8197 bufferlist::const_iterator iter{&aiter->second};
8198 try {
8199 access_conf.decode(iter);
8200 } catch (const buffer::error& e) {
8201 ldpp_dout(this, 0) << __func__ << "decode access_conf failed" << dendl;
8202 op_ret = -EIO;
8203 return;
8204 }
8205 }
8206 }
8207
8208
8209 void RGWDeleteBucketPublicAccessBlock::send_response()
8210 {
8211 if (op_ret) {
8212 set_req_state_err(s, op_ret);
8213 }
8214 dump_errno(s);
8215 end_header(s);
8216 }
8217
8218 int RGWDeleteBucketPublicAccessBlock::verify_permission()
8219 {
8220 if (!verify_bucket_permission(this, s, rgw::IAM::s3PutBucketPublicAccessBlock)) {
8221 return -EACCES;
8222 }
8223
8224 return 0;
8225 }
8226
8227 void RGWDeleteBucketPublicAccessBlock::execute()
8228 {
8229 op_ret = retry_raced_bucket_write(store->getRados(), s, [this] {
8230 auto attrs = s->bucket_attrs;
8231 attrs.erase(RGW_ATTR_PUBLIC_ACCESS);
8232 op_ret = store->ctl()->bucket->set_bucket_instance_attrs(s->bucket_info, attrs,
8233 &s->bucket_info.objv_tracker,
8234 s->yield);
8235 return op_ret;
8236 });
8237 }