Coverage Report

Created: 2026-04-09 15:45

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/runtime/fragment_mgr.cpp
Line
Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
10
//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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18
#include "runtime/fragment_mgr.h"
19
20
#include <brpc/controller.h>
21
#include <bvar/latency_recorder.h>
22
#include <fmt/format.h>
23
#include <gen_cpp/DorisExternalService_types.h>
24
#include <gen_cpp/FrontendService.h>
25
#include <gen_cpp/FrontendService_types.h>
26
#include <gen_cpp/HeartbeatService_types.h>
27
#include <gen_cpp/Metrics_types.h>
28
#include <gen_cpp/PaloInternalService_types.h>
29
#include <gen_cpp/PlanNodes_types.h>
30
#include <gen_cpp/Planner_types.h>
31
#include <gen_cpp/QueryPlanExtra_types.h>
32
#include <gen_cpp/RuntimeProfile_types.h>
33
#include <gen_cpp/Types_types.h>
34
#include <gen_cpp/internal_service.pb.h>
35
#include <pthread.h>
36
#include <sys/time.h>
37
#include <thrift/TApplicationException.h>
38
#include <thrift/Thrift.h>
39
#include <thrift/protocol/TDebugProtocol.h>
40
#include <thrift/transport/TTransportException.h>
41
#include <unistd.h>
42
43
#include <algorithm>
44
#include <cstddef>
45
#include <ctime>
46
47
// IWYU pragma: no_include <bits/chrono.h>
48
#include <chrono> // IWYU pragma: keep
49
#include <cstdint>
50
#include <map>
51
#include <memory>
52
#include <mutex>
53
#include <sstream>
54
#include <unordered_map>
55
#include <unordered_set>
56
#include <utility>
57
58
#include "common/config.h"
59
#include "common/exception.h"
60
#include "common/logging.h"
61
#include "common/metrics/doris_metrics.h"
62
#include "common/object_pool.h"
63
#include "common/status.h"
64
#include "common/utils.h"
65
#include "core/data_type/primitive_type.h"
66
#include "exec/pipeline/pipeline_fragment_context.h"
67
#include "exec/runtime_filter/runtime_filter_consumer.h"
68
#include "exec/runtime_filter/runtime_filter_mgr.h"
69
#include "io/fs/stream_load_pipe.h"
70
#include "load/stream_load/new_load_stream_mgr.h"
71
#include "load/stream_load/stream_load_context.h"
72
#include "load/stream_load/stream_load_executor.h"
73
#include "runtime/descriptors.h"
74
#include "runtime/exec_env.h"
75
#include "runtime/frontend_info.h"
76
#include "runtime/query_context.h"
77
#include "runtime/runtime_profile.h"
78
#include "runtime/runtime_query_statistics_mgr.h"
79
#include "runtime/runtime_state.h"
80
#include "runtime/thread_context.h"
81
#include "runtime/workload_group/workload_group.h"
82
#include "runtime/workload_group/workload_group_manager.h"
83
#include "service/backend_options.h"
84
#include "storage/id_manager.h"
85
#include "util/brpc_client_cache.h"
86
#include "util/client_cache.h"
87
#include "util/debug_points.h"
88
#include "util/debug_util.h"
89
#include "util/network_util.h"
90
#include "util/thread.h"
91
#include "util/threadpool.h"
92
#include "util/thrift_util.h"
93
#include "util/uid_util.h"
94
95
namespace doris {
96
#include "common/compile_check_begin.h"
97
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DEFINE_GAUGE_METRIC_PROTOTYPE_2ARG(fragment_instance_count, MetricUnit::NOUNIT);
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DEFINE_GAUGE_METRIC_PROTOTYPE_2ARG(timeout_canceled_fragment_count, MetricUnit::NOUNIT);
100
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bvar::LatencyRecorder g_fragmentmgr_prepare_latency("doris_FragmentMgr", "prepare");
102
103
bvar::Adder<uint64_t> g_fragment_executing_count("fragment_executing_count");
104
bvar::Status<uint64_t> g_fragment_last_active_time(
105
        "fragment_last_active_time", duration_cast<std::chrono::milliseconds>(
106
                                             std::chrono::system_clock::now().time_since_epoch())
107
                                             .count());
108
109
0
uint64_t get_fragment_executing_count() {
110
0
    return g_fragment_executing_count.get_value();
111
0
}
112
0
uint64_t get_fragment_last_active_time() {
113
0
    return g_fragment_last_active_time.get_value();
114
0
}
115
116
0
std::string to_load_error_http_path(const std::string& file_name) {
117
0
    if (file_name.empty()) {
118
0
        return "";
119
0
    }
120
0
    if (file_name.compare(0, 4, "http") == 0) {
121
0
        return file_name;
122
0
    }
123
0
    std::stringstream url;
124
0
    url << (config::enable_https ? "https" : "http") << "://"
125
0
        << get_host_port(BackendOptions::get_localhost(), config::webserver_port)
126
0
        << "/api/_load_error_log?"
127
0
        << "file=" << file_name;
128
0
    return url.str();
129
0
}
130
131
using apache::thrift::TException;
132
using apache::thrift::transport::TTransportException;
133
134
static Status _do_fetch_running_queries_rpc(const FrontendInfo& fe_info,
135
0
                                            std::unordered_set<TUniqueId>& query_set) {
136
0
    TFetchRunningQueriesResult rpc_result;
137
0
    TFetchRunningQueriesRequest rpc_request;
138
139
0
    Status client_status;
140
0
    const int32_t timeout_ms = 3 * 1000;
141
0
    FrontendServiceConnection rpc_client(ExecEnv::GetInstance()->frontend_client_cache(),
142
0
                                         fe_info.info.coordinator_address, timeout_ms,
143
0
                                         &client_status);
144
    // Abort this fe.
145
0
    if (!client_status.ok()) {
146
0
        LOG_WARNING("Failed to get client for {}, reason is {}",
147
0
                    PrintThriftNetworkAddress(fe_info.info.coordinator_address),
148
0
                    client_status.to_string());
149
0
        return Status::InternalError("Failed to get client for {}, reason is {}",
150
0
                                     PrintThriftNetworkAddress(fe_info.info.coordinator_address),
151
0
                                     client_status.to_string());
152
0
    }
153
154
    // do rpc
155
0
    try {
156
0
        try {
157
0
            rpc_client->fetchRunningQueries(rpc_result, rpc_request);
158
0
        } catch (const apache::thrift::transport::TTransportException& e) {
159
0
            LOG_WARNING("Transport exception reason: {}, reopening", e.what());
160
0
            client_status = rpc_client.reopen(config::thrift_rpc_timeout_ms);
161
0
            if (!client_status.ok()) {
162
0
                LOG_WARNING("Reopen failed, reason: {}", client_status.to_string_no_stack());
163
0
                return Status::InternalError("Reopen failed, reason: {}",
164
0
                                             client_status.to_string_no_stack());
165
0
            }
166
167
0
            rpc_client->fetchRunningQueries(rpc_result, rpc_request);
168
0
        }
169
0
    } catch (apache::thrift::TException& e) {
170
        // During upgrading cluster or meet any other network error.
171
0
        LOG_WARNING("Failed to fetch running queries from {}, reason: {}",
172
0
                    PrintThriftNetworkAddress(fe_info.info.coordinator_address), e.what());
173
0
        return Status::InternalError("Failed to fetch running queries from {}, reason: {}",
174
0
                                     PrintThriftNetworkAddress(fe_info.info.coordinator_address),
175
0
                                     e.what());
176
0
    }
177
178
    // Avoid logic error in frontend.
179
0
    if (!rpc_result.__isset.status || rpc_result.status.status_code != TStatusCode::OK) {
180
0
        LOG_WARNING("Failed to fetch running queries from {}, reason: {}",
181
0
                    PrintThriftNetworkAddress(fe_info.info.coordinator_address),
182
0
                    doris::to_string(rpc_result.status.status_code));
183
0
        return Status::InternalError("Failed to fetch running queries from {}, reason: {}",
184
0
                                     PrintThriftNetworkAddress(fe_info.info.coordinator_address),
185
0
                                     doris::to_string(rpc_result.status.status_code));
186
0
    }
187
188
0
    if (!rpc_result.__isset.running_queries) {
189
0
        return Status::InternalError("Failed to fetch running queries from {}, reason: {}",
190
0
                                     PrintThriftNetworkAddress(fe_info.info.coordinator_address),
191
0
                                     "running_queries is not set");
192
0
    }
193
194
0
    query_set = std::unordered_set<TUniqueId>(rpc_result.running_queries.begin(),
195
0
                                              rpc_result.running_queries.end());
196
0
    return Status::OK();
197
0
};
198
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0
static std::map<int64_t, std::unordered_set<TUniqueId>> _get_all_running_queries_from_fe() {
200
0
    const std::map<TNetworkAddress, FrontendInfo>& running_fes =
201
0
            ExecEnv::GetInstance()->get_running_frontends();
202
203
0
    std::map<int64_t, std::unordered_set<TUniqueId>> result;
204
0
    std::vector<FrontendInfo> qualified_fes;
205
206
0
    for (const auto& fe : running_fes) {
207
        // Only consider normal frontend.
208
0
        if (fe.first.port != 0 && fe.second.info.process_uuid != 0) {
209
0
            qualified_fes.push_back(fe.second);
210
0
        } else {
211
0
            return {};
212
0
        }
213
0
    }
214
215
0
    for (const auto& fe_addr : qualified_fes) {
216
0
        const int64_t process_uuid = fe_addr.info.process_uuid;
217
0
        std::unordered_set<TUniqueId> query_set;
218
0
        Status st = _do_fetch_running_queries_rpc(fe_addr, query_set);
219
0
        if (!st.ok()) {
220
            // Empty result, cancel worker will not do anything
221
0
            return {};
222
0
        }
223
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        // frontend_info and process_uuid has been checked in rpc threads.
225
0
        result[process_uuid] = query_set;
226
0
    }
227
228
0
    return result;
229
0
}
230
231
5
inline uint32_t get_map_id(const TUniqueId& query_id, size_t capacity) {
232
5
    uint32_t value = HashUtil::hash(&query_id.lo, 8, 0);
233
5
    value = HashUtil::hash(&query_id.hi, 8, value);
234
5
    return value % capacity;
235
5
}
236
237
0
inline uint32_t get_map_id(std::pair<TUniqueId, int> key, size_t capacity) {
238
0
    uint32_t value = HashUtil::hash(&key.first.lo, 8, 0);
239
0
    value = HashUtil::hash(&key.first.hi, 8, value);
240
0
    return value % capacity;
241
0
}
242
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template <typename Key, typename Value, typename ValueType>
244
27
ConcurrentContextMap<Key, Value, ValueType>::ConcurrentContextMap() {
245
27
    _internal_map.resize(config::num_query_ctx_map_partitions);
246
3.48k
    for (size_t i = 0; i < config::num_query_ctx_map_partitions; i++) {
247
3.45k
        _internal_map[i] = {std::make_unique<std::shared_mutex>(),
248
3.45k
                            phmap::flat_hash_map<Key, Value>()};
249
3.45k
    }
250
27
}
_ZN5doris20ConcurrentContextMapISt4pairINS_9TUniqueIdEiESt10shared_ptrINS_23PipelineFragmentContextEES5_EC2Ev
Line
Count
Source
244
9
ConcurrentContextMap<Key, Value, ValueType>::ConcurrentContextMap() {
245
9
    _internal_map.resize(config::num_query_ctx_map_partitions);
246
1.16k
    for (size_t i = 0; i < config::num_query_ctx_map_partitions; i++) {
247
1.15k
        _internal_map[i] = {std::make_unique<std::shared_mutex>(),
248
1.15k
                            phmap::flat_hash_map<Key, Value>()};
249
1.15k
    }
250
9
}
_ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt8weak_ptrINS_12QueryContextEES3_EC2Ev
Line
Count
Source
244
9
ConcurrentContextMap<Key, Value, ValueType>::ConcurrentContextMap() {
245
9
    _internal_map.resize(config::num_query_ctx_map_partitions);
246
1.16k
    for (size_t i = 0; i < config::num_query_ctx_map_partitions; i++) {
247
1.15k
        _internal_map[i] = {std::make_unique<std::shared_mutex>(),
248
1.15k
                            phmap::flat_hash_map<Key, Value>()};
249
1.15k
    }
250
9
}
_ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt10shared_ptrINS_12QueryContextEES3_EC2Ev
Line
Count
Source
244
9
ConcurrentContextMap<Key, Value, ValueType>::ConcurrentContextMap() {
245
9
    _internal_map.resize(config::num_query_ctx_map_partitions);
246
1.16k
    for (size_t i = 0; i < config::num_query_ctx_map_partitions; i++) {
247
1.15k
        _internal_map[i] = {std::make_unique<std::shared_mutex>(),
248
1.15k
                            phmap::flat_hash_map<Key, Value>()};
249
1.15k
    }
250
9
}
251
252
template <typename Key, typename Value, typename ValueType>
253
3
Value ConcurrentContextMap<Key, Value, ValueType>::find(const Key& query_id) {
254
3
    auto id = get_map_id(query_id, _internal_map.size());
255
3
    {
256
3
        std::shared_lock lock(*_internal_map[id].first);
257
3
        auto& map = _internal_map[id].second;
258
3
        auto search = map.find(query_id);
259
3
        if (search != map.end()) {
260
0
            return search->second;
261
0
        }
262
3
        return std::shared_ptr<ValueType>(nullptr);
263
3
    }
264
3
}
_ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt8weak_ptrINS_12QueryContextEES3_E4findERKS1_
Line
Count
Source
253
3
Value ConcurrentContextMap<Key, Value, ValueType>::find(const Key& query_id) {
254
3
    auto id = get_map_id(query_id, _internal_map.size());
255
3
    {
256
3
        std::shared_lock lock(*_internal_map[id].first);
257
3
        auto& map = _internal_map[id].second;
258
3
        auto search = map.find(query_id);
259
3
        if (search != map.end()) {
260
0
            return search->second;
261
0
        }
262
3
        return std::shared_ptr<ValueType>(nullptr);
263
3
    }
264
3
}
Unexecuted instantiation: _ZN5doris20ConcurrentContextMapISt4pairINS_9TUniqueIdEiESt10shared_ptrINS_23PipelineFragmentContextEES5_E4findERKS3_
265
266
template <typename Key, typename Value, typename ValueType>
267
Status ConcurrentContextMap<Key, Value, ValueType>::apply_if_not_exists(
268
2
        const Key& query_id, std::shared_ptr<ValueType>& query_ctx, ApplyFunction&& function) {
269
2
    auto id = get_map_id(query_id, _internal_map.size());
270
2
    {
271
2
        std::unique_lock lock(*_internal_map[id].first);
272
2
        auto& map = _internal_map[id].second;
273
2
        auto search = map.find(query_id);
274
2
        if (search != map.end()) {
275
0
            query_ctx = search->second.lock();
276
0
        }
277
2
        if (!query_ctx) {
278
2
            return function(map);
279
2
        }
280
0
        return Status::OK();
281
2
    }
282
2
}
283
284
template <typename Key, typename Value, typename ValueType>
285
0
bool ConcurrentContextMap<Key, Value, ValueType>::erase(const Key& query_id) {
286
0
    auto id = get_map_id(query_id, _internal_map.size());
287
0
    std::unique_lock lock(*_internal_map[id].first);
288
0
    auto& map = _internal_map[id].second;
289
0
    return map.erase(query_id) != 0;
290
0
}
Unexecuted instantiation: _ZN5doris20ConcurrentContextMapISt4pairINS_9TUniqueIdEiESt10shared_ptrINS_23PipelineFragmentContextEES5_E5eraseERKS3_
Unexecuted instantiation: _ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt10shared_ptrINS_12QueryContextEES3_E5eraseERKS1_
291
292
template <typename Key, typename Value, typename ValueType>
293
void ConcurrentContextMap<Key, Value, ValueType>::insert(const Key& query_id,
294
0
                                                         std::shared_ptr<ValueType> query_ctx) {
295
0
    auto id = get_map_id(query_id, _internal_map.size());
296
0
    {
297
0
        std::unique_lock lock(*_internal_map[id].first);
298
0
        auto& map = _internal_map[id].second;
299
0
        map.insert({query_id, query_ctx});
300
0
    }
301
0
}
Unexecuted instantiation: _ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt10shared_ptrINS_12QueryContextEES3_E6insertERKS1_S4_
Unexecuted instantiation: _ZN5doris20ConcurrentContextMapISt4pairINS_9TUniqueIdEiESt10shared_ptrINS_23PipelineFragmentContextEES5_E6insertERKS3_S6_
302
303
template <typename Key, typename Value, typename ValueType>
304
27
void ConcurrentContextMap<Key, Value, ValueType>::clear() {
305
3.45k
    for (auto& pair : _internal_map) {
306
3.45k
        std::unique_lock lock(*pair.first);
307
3.45k
        auto& map = pair.second;
308
3.45k
        map.clear();
309
3.45k
    }
310
27
}
_ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt8weak_ptrINS_12QueryContextEES3_E5clearEv
Line
Count
Source
304
9
void ConcurrentContextMap<Key, Value, ValueType>::clear() {
305
1.15k
    for (auto& pair : _internal_map) {
306
1.15k
        std::unique_lock lock(*pair.first);
307
1.15k
        auto& map = pair.second;
308
1.15k
        map.clear();
309
1.15k
    }
310
9
}
_ZN5doris20ConcurrentContextMapINS_9TUniqueIdESt10shared_ptrINS_12QueryContextEES3_E5clearEv
Line
Count
Source
304
9
void ConcurrentContextMap<Key, Value, ValueType>::clear() {
305
1.15k
    for (auto& pair : _internal_map) {
306
1.15k
        std::unique_lock lock(*pair.first);
307
1.15k
        auto& map = pair.second;
308
1.15k
        map.clear();
309
1.15k
    }
310
9
}
_ZN5doris20ConcurrentContextMapISt4pairINS_9TUniqueIdEiESt10shared_ptrINS_23PipelineFragmentContextEES5_E5clearEv
Line
Count
Source
304
9
void ConcurrentContextMap<Key, Value, ValueType>::clear() {
305
1.15k
    for (auto& pair : _internal_map) {
306
1.15k
        std::unique_lock lock(*pair.first);
307
1.15k
        auto& map = pair.second;
308
1.15k
        map.clear();
309
1.15k
    }
310
9
}
311
312
FragmentMgr::FragmentMgr(ExecEnv* exec_env)
313
9
        : _exec_env(exec_env), _stop_background_threads_latch(1) {
314
9
    _entity = DorisMetrics::instance()->metric_registry()->register_entity("FragmentMgr");
315
9
    INT_UGAUGE_METRIC_REGISTER(_entity, timeout_canceled_fragment_count);
316
317
9
    auto s = Thread::create(
318
9
            "FragmentMgr", "cancel_timeout_plan_fragment", [this]() { this->cancel_worker(); },
319
9
            &_cancel_thread);
320
9
    CHECK(s.ok()) << s.to_string();
321
322
9
    s = ThreadPoolBuilder("FragmentMgrAsyncWorkThreadPool")
323
9
                .set_min_threads(config::fragment_mgr_async_work_pool_thread_num_min)
324
9
                .set_max_threads(config::fragment_mgr_async_work_pool_thread_num_max)
325
9
                .set_max_queue_size(config::fragment_mgr_async_work_pool_queue_size)
326
9
                .build(&_thread_pool);
327
9
    CHECK(s.ok()) << s.to_string();
328
9
}
329
330
9
FragmentMgr::~FragmentMgr() = default;
331
332
9
void FragmentMgr::stop() {
333
9
    DEREGISTER_HOOK_METRIC(fragment_instance_count);
334
9
    _stop_background_threads_latch.count_down();
335
9
    if (_cancel_thread) {
336
9
        _cancel_thread->join();
337
9
    }
338
339
9
    _thread_pool->shutdown();
340
    // Only me can delete
341
9
    _query_ctx_map.clear();
342
    // in one BE's graceful shutdown, cancel_worker will get related running queries via _get_all_running_queries_from_fe and cancel them.
343
    // so clearing here will not make RF consumer hang. if we dont do this, in ~FragmentMgr() there may be QueryContext in _query_ctx_map_delay_delete
344
    // destructred and remove it from _query_ctx_map_delay_delete which is destructring. it's UB.
345
9
    _query_ctx_map_delay_delete.clear();
346
9
    _pipeline_map.clear();
347
9
    {
348
9
        std::lock_guard<std::mutex> lk(_rerunnable_params_lock);
349
9
        _rerunnable_params_map.clear();
350
9
    }
351
9
}
352
353
0
std::string FragmentMgr::to_http_path(const std::string& file_name) {
354
0
    std::stringstream url;
355
0
    url << "http://" << BackendOptions::get_localhost() << ":" << config::webserver_port
356
0
        << "/api/_download_load?"
357
0
        << "token=" << _exec_env->token() << "&file=" << file_name;
358
0
    return url.str();
359
0
}
360
361
Status FragmentMgr::trigger_pipeline_context_report(
362
0
        const ReportStatusRequest req, std::shared_ptr<PipelineFragmentContext>&& ctx) {
363
0
    return _thread_pool->submit_func([this, req, ctx]() {
364
0
        SCOPED_ATTACH_TASK(ctx->get_query_ctx()->query_mem_tracker());
365
0
        coordinator_callback(req);
366
0
        if (!req.done) {
367
0
            ctx->refresh_next_report_time();
368
0
        }
369
0
    });
370
0
}
371
372
// There can only be one of these callbacks in-flight at any moment, because
373
// it is only invoked from the executor's reporting thread.
374
// Also, the reported status will always reflect the most recent execution status,
375
// including the final status when execution finishes.
376
0
void FragmentMgr::coordinator_callback(const ReportStatusRequest& req) {
377
0
    DBUG_EXECUTE_IF("FragmentMgr::coordinator_callback.report_delay", {
378
0
        int random_seconds = req.status.is<ErrorCode::DATA_QUALITY_ERROR>() ? 8 : 2;
379
0
        LOG_INFO("sleep : ").tag("time", random_seconds).tag("query_id", print_id(req.query_id));
380
0
        std::this_thread::sleep_for(std::chrono::seconds(random_seconds));
381
0
        LOG_INFO("sleep done").tag("query_id", print_id(req.query_id));
382
0
    });
383
384
0
    DCHECK(req.status.ok() || req.done); // if !status.ok() => done
385
0
    if (req.coord_addr.hostname == "external") {
386
        // External query (flink/spark read tablets) not need to report to FE.
387
0
        return;
388
0
    }
389
0
    int callback_retries = 10;
390
0
    const int sleep_ms = 1000;
391
0
    Status exec_status = req.status;
392
0
    Status coord_status;
393
0
    std::unique_ptr<FrontendServiceConnection> coord = nullptr;
394
0
    do {
395
0
        coord = std::make_unique<FrontendServiceConnection>(_exec_env->frontend_client_cache(),
396
0
                                                            req.coord_addr, &coord_status);
397
0
        if (!coord_status.ok()) {
398
0
            std::this_thread::sleep_for(std::chrono::milliseconds(sleep_ms));
399
0
        }
400
0
    } while (!coord_status.ok() && callback_retries-- > 0);
401
402
0
    if (!coord_status.ok()) {
403
0
        std::stringstream ss;
404
0
        UniqueId uid(req.query_id.hi, req.query_id.lo);
405
0
        static_cast<void>(req.cancel_fn(Status::InternalError(
406
0
                "query_id: {}, couldn't get a client for {}, reason is {}", uid.to_string(),
407
0
                PrintThriftNetworkAddress(req.coord_addr), coord_status.to_string())));
408
0
        return;
409
0
    }
410
411
0
    TReportExecStatusParams params;
412
0
    params.protocol_version = FrontendServiceVersion::V1;
413
0
    params.__set_query_id(req.query_id);
414
0
    params.__set_backend_num(req.backend_num);
415
0
    params.__set_fragment_instance_id(req.fragment_instance_id);
416
0
    params.__set_fragment_id(req.fragment_id);
417
0
    params.__set_status(exec_status.to_thrift());
418
0
    params.__set_done(req.done);
419
0
    params.__set_query_type(req.runtime_state->query_type());
420
0
    params.__isset.profile = false;
421
422
0
    DCHECK(req.runtime_state != nullptr);
423
424
0
    if (req.runtime_state->query_type() == TQueryType::LOAD) {
425
0
        params.__set_loaded_rows(req.runtime_state->num_rows_load_total());
426
0
        params.__set_loaded_bytes(req.runtime_state->num_bytes_load_total());
427
0
    } else {
428
0
        DCHECK(!req.runtime_states.empty());
429
0
        if (!req.runtime_state->output_files().empty()) {
430
0
            params.__isset.delta_urls = true;
431
0
            for (auto& it : req.runtime_state->output_files()) {
432
0
                params.delta_urls.push_back(to_http_path(it));
433
0
            }
434
0
        }
435
0
        if (!params.delta_urls.empty()) {
436
0
            params.__isset.delta_urls = true;
437
0
        }
438
0
    }
439
440
    // load rows
441
0
    static std::string s_dpp_normal_all = "dpp.norm.ALL";
442
0
    static std::string s_dpp_abnormal_all = "dpp.abnorm.ALL";
443
0
    static std::string s_unselected_rows = "unselected.rows";
444
0
    int64_t num_rows_load_success = 0;
445
0
    int64_t num_rows_load_filtered = 0;
446
0
    int64_t num_rows_load_unselected = 0;
447
0
    if (req.runtime_state->num_rows_load_total() > 0 ||
448
0
        req.runtime_state->num_rows_load_filtered() > 0 ||
449
0
        req.runtime_state->num_finished_range() > 0) {
450
0
        params.__isset.load_counters = true;
451
452
0
        num_rows_load_success = req.runtime_state->num_rows_load_success();
453
0
        num_rows_load_filtered = req.runtime_state->num_rows_load_filtered();
454
0
        num_rows_load_unselected = req.runtime_state->num_rows_load_unselected();
455
0
        params.__isset.fragment_instance_reports = true;
456
0
        TFragmentInstanceReport t;
457
0
        t.__set_fragment_instance_id(req.runtime_state->fragment_instance_id());
458
0
        t.__set_num_finished_range(cast_set<int>(req.runtime_state->num_finished_range()));
459
0
        t.__set_loaded_rows(req.runtime_state->num_rows_load_total());
460
0
        t.__set_loaded_bytes(req.runtime_state->num_bytes_load_total());
461
0
        params.fragment_instance_reports.push_back(t);
462
0
    } else if (!req.runtime_states.empty()) {
463
0
        for (auto* rs : req.runtime_states) {
464
0
            if (rs->num_rows_load_total() > 0 || rs->num_rows_load_filtered() > 0 ||
465
0
                rs->num_finished_range() > 0) {
466
0
                params.__isset.load_counters = true;
467
0
                num_rows_load_success += rs->num_rows_load_success();
468
0
                num_rows_load_filtered += rs->num_rows_load_filtered();
469
0
                num_rows_load_unselected += rs->num_rows_load_unselected();
470
0
                params.__isset.fragment_instance_reports = true;
471
0
                TFragmentInstanceReport t;
472
0
                t.__set_fragment_instance_id(rs->fragment_instance_id());
473
0
                t.__set_num_finished_range(cast_set<int>(rs->num_finished_range()));
474
0
                t.__set_loaded_rows(rs->num_rows_load_total());
475
0
                t.__set_loaded_bytes(rs->num_bytes_load_total());
476
0
                params.fragment_instance_reports.push_back(t);
477
0
            }
478
0
        }
479
0
    }
480
0
    params.load_counters.emplace(s_dpp_normal_all, std::to_string(num_rows_load_success));
481
0
    params.load_counters.emplace(s_dpp_abnormal_all, std::to_string(num_rows_load_filtered));
482
0
    params.load_counters.emplace(s_unselected_rows, std::to_string(num_rows_load_unselected));
483
484
0
    if (!req.load_error_url.empty()) {
485
0
        params.__set_tracking_url(req.load_error_url);
486
0
    }
487
0
    if (!req.first_error_msg.empty()) {
488
0
        params.__set_first_error_msg(req.first_error_msg);
489
0
    }
490
0
    for (auto* rs : req.runtime_states) {
491
0
        if (rs->wal_id() > 0) {
492
0
            params.__set_txn_id(rs->wal_id());
493
0
            params.__set_label(rs->import_label());
494
0
        }
495
0
    }
496
0
    if (!req.runtime_state->export_output_files().empty()) {
497
0
        params.__isset.export_files = true;
498
0
        params.export_files = req.runtime_state->export_output_files();
499
0
    } else if (!req.runtime_states.empty()) {
500
0
        for (auto* rs : req.runtime_states) {
501
0
            if (!rs->export_output_files().empty()) {
502
0
                params.__isset.export_files = true;
503
0
                params.export_files.insert(params.export_files.end(),
504
0
                                           rs->export_output_files().begin(),
505
0
                                           rs->export_output_files().end());
506
0
            }
507
0
        }
508
0
    }
509
0
    if (auto tci = req.runtime_state->tablet_commit_infos(); !tci.empty()) {
510
0
        params.__isset.commitInfos = true;
511
0
        params.commitInfos.insert(params.commitInfos.end(), tci.begin(), tci.end());
512
0
    } else if (!req.runtime_states.empty()) {
513
0
        for (auto* rs : req.runtime_states) {
514
0
            if (auto rs_tci = rs->tablet_commit_infos(); !rs_tci.empty()) {
515
0
                params.__isset.commitInfos = true;
516
0
                params.commitInfos.insert(params.commitInfos.end(), rs_tci.begin(), rs_tci.end());
517
0
            }
518
0
        }
519
0
    }
520
0
    if (auto eti = req.runtime_state->error_tablet_infos(); !eti.empty()) {
521
0
        params.__isset.errorTabletInfos = true;
522
0
        params.errorTabletInfos.insert(params.errorTabletInfos.end(), eti.begin(), eti.end());
523
0
    } else if (!req.runtime_states.empty()) {
524
0
        for (auto* rs : req.runtime_states) {
525
0
            if (auto rs_eti = rs->error_tablet_infos(); !rs_eti.empty()) {
526
0
                params.__isset.errorTabletInfos = true;
527
0
                params.errorTabletInfos.insert(params.errorTabletInfos.end(), rs_eti.begin(),
528
0
                                               rs_eti.end());
529
0
            }
530
0
        }
531
0
    }
532
0
    if (auto hpu = req.runtime_state->hive_partition_updates(); !hpu.empty()) {
533
0
        params.__isset.hive_partition_updates = true;
534
0
        params.hive_partition_updates.insert(params.hive_partition_updates.end(), hpu.begin(),
535
0
                                             hpu.end());
536
0
    } else if (!req.runtime_states.empty()) {
537
0
        for (auto* rs : req.runtime_states) {
538
0
            if (auto rs_hpu = rs->hive_partition_updates(); !rs_hpu.empty()) {
539
0
                params.__isset.hive_partition_updates = true;
540
0
                params.hive_partition_updates.insert(params.hive_partition_updates.end(),
541
0
                                                     rs_hpu.begin(), rs_hpu.end());
542
0
            }
543
0
        }
544
0
    }
545
0
    if (auto icd = req.runtime_state->iceberg_commit_datas(); !icd.empty()) {
546
0
        params.__isset.iceberg_commit_datas = true;
547
0
        params.iceberg_commit_datas.insert(params.iceberg_commit_datas.end(), icd.begin(),
548
0
                                           icd.end());
549
0
    } else if (!req.runtime_states.empty()) {
550
0
        for (auto* rs : req.runtime_states) {
551
0
            if (auto rs_icd = rs->iceberg_commit_datas(); !rs_icd.empty()) {
552
0
                params.__isset.iceberg_commit_datas = true;
553
0
                params.iceberg_commit_datas.insert(params.iceberg_commit_datas.end(),
554
0
                                                   rs_icd.begin(), rs_icd.end());
555
0
            }
556
0
        }
557
0
    }
558
559
0
    if (auto mcd = req.runtime_state->mc_commit_datas(); !mcd.empty()) {
560
0
        params.__isset.mc_commit_datas = true;
561
0
        params.mc_commit_datas.insert(params.mc_commit_datas.end(), mcd.begin(), mcd.end());
562
0
    } else if (!req.runtime_states.empty()) {
563
0
        for (auto* rs : req.runtime_states) {
564
0
            if (auto rs_mcd = rs->mc_commit_datas(); !rs_mcd.empty()) {
565
0
                params.__isset.mc_commit_datas = true;
566
0
                params.mc_commit_datas.insert(params.mc_commit_datas.end(), rs_mcd.begin(),
567
0
                                              rs_mcd.end());
568
0
            }
569
0
        }
570
0
    }
571
572
    // Send new errors to coordinator
573
0
    req.runtime_state->get_unreported_errors(&(params.error_log));
574
0
    params.__isset.error_log = (!params.error_log.empty());
575
576
0
    if (_exec_env->cluster_info()->backend_id != 0) {
577
0
        params.__set_backend_id(_exec_env->cluster_info()->backend_id);
578
0
    }
579
580
0
    TReportExecStatusResult res;
581
0
    Status rpc_status;
582
583
0
    VLOG_DEBUG << "reportExecStatus params is "
584
0
               << apache::thrift::ThriftDebugString(params).c_str();
585
0
    if (!exec_status.ok()) {
586
0
        LOG(WARNING) << "report error status: " << exec_status.msg()
587
0
                     << " to coordinator: " << req.coord_addr
588
0
                     << ", query id: " << print_id(req.query_id);
589
0
    }
590
0
    try {
591
0
        try {
592
0
            (*coord)->reportExecStatus(res, params);
593
0
        } catch ([[maybe_unused]] TTransportException& e) {
594
#ifndef ADDRESS_SANITIZER
595
            LOG(WARNING) << "Retrying ReportExecStatus. query id: " << print_id(req.query_id)
596
                         << ", instance id: " << print_id(req.fragment_instance_id) << " to "
597
                         << req.coord_addr << ", err: " << e.what();
598
#endif
599
0
            rpc_status = coord->reopen();
600
601
0
            if (!rpc_status.ok()) {
602
                // we need to cancel the execution of this fragment
603
0
                req.cancel_fn(rpc_status);
604
0
                return;
605
0
            }
606
0
            (*coord)->reportExecStatus(res, params);
607
0
        }
608
609
0
        rpc_status = Status::create<false>(res.status);
610
0
    } catch (TException& e) {
611
0
        rpc_status = Status::InternalError("ReportExecStatus() to {} failed: {}",
612
0
                                           PrintThriftNetworkAddress(req.coord_addr), e.what());
613
0
    }
614
615
0
    if (!rpc_status.ok()) {
616
0
        LOG_INFO("Going to cancel query {} since report exec status got rpc failed: {}",
617
0
                 print_id(req.query_id), rpc_status.to_string());
618
        // we need to cancel the execution of this fragment
619
0
        req.cancel_fn(rpc_status);
620
0
    }
621
0
}
622
623
0
static void empty_function(RuntimeState*, Status*) {}
624
625
Status FragmentMgr::exec_plan_fragment(const TPipelineFragmentParams& params,
626
                                       const QuerySource query_source,
627
0
                                       const TPipelineFragmentParamsList& parent) {
628
0
    if (params.txn_conf.need_txn) {
629
0
        std::shared_ptr<StreamLoadContext> stream_load_ctx =
630
0
                std::make_shared<StreamLoadContext>(_exec_env);
631
0
        stream_load_ctx->db = params.txn_conf.db;
632
0
        stream_load_ctx->db_id = params.txn_conf.db_id;
633
0
        stream_load_ctx->table = params.txn_conf.tbl;
634
0
        stream_load_ctx->txn_id = params.txn_conf.txn_id;
635
0
        stream_load_ctx->id = UniqueId(params.query_id);
636
0
        stream_load_ctx->put_result.__set_pipeline_params(params);
637
0
        stream_load_ctx->use_streaming = true;
638
0
        stream_load_ctx->load_type = TLoadType::MANUL_LOAD;
639
0
        stream_load_ctx->load_src_type = TLoadSourceType::RAW;
640
0
        stream_load_ctx->label = params.import_label;
641
0
        stream_load_ctx->format = TFileFormatType::FORMAT_CSV_PLAIN;
642
0
        stream_load_ctx->timeout_second = 3600;
643
0
        stream_load_ctx->auth.token = params.txn_conf.token;
644
0
        stream_load_ctx->need_commit_self = true;
645
0
        stream_load_ctx->need_rollback = true;
646
0
        auto pipe = std::make_shared<io::StreamLoadPipe>(
647
0
                io::kMaxPipeBufferedBytes /* max_buffered_bytes */, 64 * 1024 /* min_chunk_size */,
648
0
                -1 /* total_length */, true /* use_proto */);
649
0
        stream_load_ctx->body_sink = pipe;
650
0
        stream_load_ctx->pipe = pipe;
651
0
        stream_load_ctx->max_filter_ratio = params.txn_conf.max_filter_ratio;
652
653
0
        RETURN_IF_ERROR(
654
0
                _exec_env->new_load_stream_mgr()->put(stream_load_ctx->id, stream_load_ctx));
655
656
0
        RETURN_IF_ERROR(
657
0
                _exec_env->stream_load_executor()->execute_plan_fragment(stream_load_ctx, parent));
658
0
        return Status::OK();
659
0
    } else {
660
0
        return exec_plan_fragment(params, query_source, empty_function, parent);
661
0
    }
662
0
}
663
664
// Stage 2. prepare finished. then get FE instruction to execute
665
0
Status FragmentMgr::start_query_execution(const PExecPlanFragmentStartRequest* request) {
666
0
    TUniqueId query_id;
667
0
    query_id.__set_hi(request->query_id().hi());
668
0
    query_id.__set_lo(request->query_id().lo());
669
0
    auto q_ctx = get_query_ctx(query_id);
670
0
    if (q_ctx) {
671
0
        q_ctx->set_ready_to_execute(Status::OK());
672
0
        LOG_INFO("Query {} start execution", print_id(query_id));
673
0
    } else {
674
0
        return Status::InternalError(
675
0
                "Failed to get query fragments context. Query {} may be "
676
0
                "timeout or be cancelled. host: {}",
677
0
                print_id(query_id), BackendOptions::get_localhost());
678
0
    }
679
0
    return Status::OK();
680
0
}
681
682
0
void FragmentMgr::remove_pipeline_context(std::pair<TUniqueId, int> key) {
683
0
    if (_pipeline_map.erase(key)) {
684
0
        int64_t now = duration_cast<std::chrono::milliseconds>(
685
0
                              std::chrono::system_clock::now().time_since_epoch())
686
0
                              .count();
687
0
        g_fragment_executing_count << -1;
688
0
        g_fragment_last_active_time.set_value(now);
689
0
    }
690
0
}
691
692
0
void FragmentMgr::remove_query_context(const TUniqueId& key) {
693
    // Clean up any saved rerunnable params for this query to avoid memory leaks.
694
    // This covers both cancel and normal destruction paths.
695
0
    {
696
0
        std::lock_guard<std::mutex> lk(_rerunnable_params_lock);
697
0
        for (auto it = _rerunnable_params_map.begin(); it != _rerunnable_params_map.end();) {
698
0
            if (it->first.first == key) {
699
0
                it = _rerunnable_params_map.erase(it);
700
0
            } else {
701
0
                ++it;
702
0
            }
703
0
        }
704
0
    }
705
0
    _query_ctx_map_delay_delete.erase(key);
706
#ifndef BE_TEST
707
    _query_ctx_map.erase(key);
708
#endif
709
0
}
710
711
3
std::shared_ptr<QueryContext> FragmentMgr::get_query_ctx(const TUniqueId& query_id) {
712
3
    auto val = _query_ctx_map.find(query_id);
713
3
    if (auto q_ctx = val.lock()) {
714
0
        return q_ctx;
715
0
    }
716
3
    return nullptr;
717
3
}
718
719
Status FragmentMgr::_get_or_create_query_ctx(const TPipelineFragmentParams& params,
720
                                             const TPipelineFragmentParamsList& parent,
721
                                             QuerySource query_source,
722
2
                                             std::shared_ptr<QueryContext>& query_ctx) {
723
2
    auto query_id = params.query_id;
724
2
    DBUG_EXECUTE_IF("FragmentMgr._get_query_ctx.failed", {
725
2
        return Status::InternalError("FragmentMgr._get_query_ctx.failed, query id {}",
726
2
                                     print_id(query_id));
727
2
    });
728
729
    // Find _query_ctx_map, in case some other request has already
730
    // create the query fragments context.
731
2
    query_ctx = get_query_ctx(query_id);
732
2
    if (params.is_simplified_param) {
733
        // Get common components from _query_ctx_map
734
0
        if (!query_ctx) {
735
0
            return Status::InternalError(
736
0
                    "Failed to get query fragments context. Query {} may be timeout or be "
737
0
                    "cancelled. host: {}",
738
0
                    print_id(query_id), BackendOptions::get_localhost());
739
0
        }
740
2
    } else {
741
2
        if (!query_ctx) {
742
2
            RETURN_IF_ERROR(_query_ctx_map.apply_if_not_exists(
743
2
                    query_id, query_ctx,
744
2
                    [&](phmap::flat_hash_map<TUniqueId, std::weak_ptr<QueryContext>>& map)
745
2
                            -> Status {
746
2
                        WorkloadGroupPtr workload_group_ptr = nullptr;
747
2
                        std::vector<uint64_t> wg_id_set;
748
2
                        if (params.__isset.workload_groups && !params.workload_groups.empty()) {
749
2
                            for (auto& wg : params.workload_groups) {
750
2
                                wg_id_set.push_back(wg.id);
751
2
                            }
752
2
                        }
753
2
                        workload_group_ptr = _exec_env->workload_group_mgr()->get_group(wg_id_set);
754
755
                        // First time a fragment of a query arrived. print logs.
756
2
                        LOG(INFO) << "query_id: " << print_id(query_id)
757
2
                                  << ", coord_addr: " << params.coord
758
2
                                  << ", total fragment num on current host: "
759
2
                                  << params.fragment_num_on_host
760
2
                                  << ", fe process uuid: " << params.query_options.fe_process_uuid
761
2
                                  << ", query type: " << params.query_options.query_type
762
2
                                  << ", report audit fe:" << params.current_connect_fe
763
2
                                  << ", use wg:" << workload_group_ptr->id() << ","
764
2
                                  << workload_group_ptr->name();
765
766
                        // This may be a first fragment request of the query.
767
                        // Create the query fragments context.
768
                        // Cross-cluster query: coordinator FE may not belong to local cluster.
769
                        // In that case, cancel_worker() should not cancel it based on local FE liveness.
770
2
                        QuerySource actual_query_source = query_source;
771
2
                        if (query_source == QuerySource::INTERNAL_FRONTEND &&
772
2
                            !_exec_env->get_running_frontends().contains(params.coord)) {
773
2
                            actual_query_source = QuerySource::EXTERNAL_FRONTEND;
774
2
                        }
775
2
                        query_ctx = QueryContext::create(
776
2
                                query_id, _exec_env, params.query_options, params.coord,
777
2
                                params.is_nereids, params.current_connect_fe, actual_query_source);
778
2
                        SCOPED_SWITCH_THREAD_MEM_TRACKER_LIMITER(query_ctx->query_mem_tracker());
779
2
                        RETURN_IF_ERROR(DescriptorTbl::create(
780
2
                                &(query_ctx->obj_pool), params.desc_tbl, &(query_ctx->desc_tbl)));
781
                        // set file scan range params
782
2
                        if (params.__isset.file_scan_params) {
783
2
                            query_ctx->file_scan_range_params_map = params.file_scan_params;
784
2
                        }
785
786
2
                        query_ctx->query_globals = params.query_globals;
787
788
2
                        if (params.__isset.resource_info) {
789
2
                            query_ctx->user = params.resource_info.user;
790
2
                            query_ctx->group = params.resource_info.group;
791
2
                            query_ctx->set_rsc_info = true;
792
2
                        }
793
794
2
                        if (params.__isset.ai_resources) {
795
2
                            query_ctx->set_ai_resources(params.ai_resources);
796
2
                        }
797
798
2
                        RETURN_IF_ERROR(query_ctx->set_workload_group(workload_group_ptr));
799
800
2
                        if (parent.__isset.runtime_filter_info) {
801
2
                            auto info = parent.runtime_filter_info;
802
2
                            if (info.__isset.runtime_filter_params) {
803
2
                                auto handler =
804
2
                                        std::make_shared<RuntimeFilterMergeControllerEntity>();
805
2
                                RETURN_IF_ERROR(
806
2
                                        handler->init(query_ctx, info.runtime_filter_params));
807
2
                                query_ctx->set_merge_controller_handler(handler);
808
809
2
                                query_ctx->runtime_filter_mgr()->set_runtime_filter_params(
810
2
                                        info.runtime_filter_params);
811
2
                                if (!handler->empty()) {
812
2
                                    _query_ctx_map_delay_delete.insert(query_id, query_ctx);
813
2
                                }
814
2
                            }
815
2
                            if (info.__isset.topn_filter_descs) {
816
2
                                query_ctx->init_runtime_predicates(info.topn_filter_descs);
817
2
                            }
818
2
                        }
819
820
                        // There is some logic in query ctx's dctor, we could not check if exists and delete the
821
                        // temp query ctx now. For example, the query id maybe removed from workload group's queryset.
822
2
                        map.insert({query_id, query_ctx});
823
2
                        return Status::OK();
824
2
                    }));
825
2
        }
826
2
    }
827
2
    return Status::OK();
828
2
}
829
830
0
std::string FragmentMgr::dump_pipeline_tasks(int64_t duration) {
831
0
    fmt::memory_buffer debug_string_buffer;
832
0
    size_t i = 0;
833
0
    {
834
0
        fmt::format_to(debug_string_buffer,
835
0
                       "{} pipeline fragment contexts are still running! duration_limit={}\n",
836
0
                       _pipeline_map.num_items(), duration);
837
0
        timespec now;
838
0
        clock_gettime(CLOCK_MONOTONIC, &now);
839
840
0
        _pipeline_map.apply([&](phmap::flat_hash_map<std::pair<TUniqueId, int>,
841
0
                                                     std::shared_ptr<PipelineFragmentContext>>& map)
842
0
                                    -> Status {
843
0
            std::set<TUniqueId> query_id_set;
844
0
            for (auto& it : map) {
845
0
                auto elapsed = it.second->elapsed_time() / 1000000000;
846
0
                if (elapsed < duration) {
847
                    // Only display tasks which has been running for more than {duration} seconds.
848
0
                    continue;
849
0
                }
850
0
                if (!query_id_set.contains(it.first.first)) {
851
0
                    query_id_set.insert(it.first.first);
852
0
                    fmt::format_to(
853
0
                            debug_string_buffer, "QueryId: {}, global_runtime_filter_mgr: {}\n",
854
0
                            print_id(it.first.first),
855
0
                            it.second->get_query_ctx()->runtime_filter_mgr()->debug_string());
856
857
0
                    if (it.second->get_query_ctx()->get_merge_controller_handler()) {
858
0
                        fmt::format_to(debug_string_buffer, "{}\n",
859
0
                                       it.second->get_query_ctx()
860
0
                                               ->get_merge_controller_handler()
861
0
                                               ->debug_string());
862
0
                    }
863
0
                }
864
865
0
                auto timeout_second = it.second->timeout_second();
866
0
                fmt::format_to(
867
0
                        debug_string_buffer,
868
0
                        "No.{} (elapse_second={}s, query_timeout_second={}s, is_timeout={}): {}\n",
869
0
                        i, elapsed, timeout_second, it.second->is_timeout(now),
870
0
                        it.second->debug_string());
871
0
                i++;
872
0
            }
873
0
            return Status::OK();
874
0
        });
875
0
    }
876
0
    return fmt::to_string(debug_string_buffer);
877
0
}
878
879
0
std::string FragmentMgr::dump_pipeline_tasks(TUniqueId& query_id) {
880
0
    if (auto q_ctx = get_query_ctx(query_id)) {
881
0
        return q_ctx->print_all_pipeline_context();
882
0
    } else {
883
0
        return fmt::format(
884
0
                "Dump pipeline tasks failed: Query context (query id = {}) not found. \n",
885
0
                print_id(query_id));
886
0
    }
887
0
}
888
889
Status FragmentMgr::exec_plan_fragment(const TPipelineFragmentParams& params,
890
                                       QuerySource query_source, const FinishCallback& cb,
891
                                       const TPipelineFragmentParamsList& parent,
892
0
                                       std::shared_ptr<bool> is_prepare_success) {
893
0
    VLOG_ROW << "Query: " << print_id(params.query_id) << " exec_plan_fragment params is "
894
0
             << apache::thrift::ThriftDebugString(params).c_str();
895
    // sometimes TPipelineFragmentParams debug string is too long and glog
896
    // will truncate the log line, so print query options seperately for debuggin purpose
897
0
    VLOG_ROW << "Query: " << print_id(params.query_id) << "query options is "
898
0
             << apache::thrift::ThriftDebugString(params.query_options).c_str();
899
900
0
    std::shared_ptr<QueryContext> query_ctx;
901
0
    RETURN_IF_ERROR(_get_or_create_query_ctx(params, parent, query_source, query_ctx));
902
0
    SCOPED_ATTACH_TASK(query_ctx.get()->resource_ctx());
903
    // Set single_backend_query before prepare() so that pipeline local states
904
    // (e.g. StreamingAggLocalState) can read the correct value in their constructors.
905
0
    query_ctx->set_single_backend_query(params.__isset.query_options &&
906
0
                                        params.query_options.__isset.single_backend_query &&
907
0
                                        params.query_options.single_backend_query);
908
0
    int64_t duration_ns = 0;
909
0
    std::shared_ptr<PipelineFragmentContext> context = std::make_shared<PipelineFragmentContext>(
910
0
            query_ctx->query_id(), params, query_ctx, _exec_env, cb,
911
0
            [this](const ReportStatusRequest& req, auto&& ctx) {
912
0
                return this->trigger_pipeline_context_report(req, std::move(ctx));
913
0
            });
914
0
    {
915
0
        SCOPED_RAW_TIMER(&duration_ns);
916
0
        Status prepare_st = Status::OK();
917
0
        ASSIGN_STATUS_IF_CATCH_EXCEPTION(prepare_st = context->prepare(_thread_pool.get()),
918
0
                                         prepare_st);
919
0
        DBUG_EXECUTE_IF("FragmentMgr.exec_plan_fragment.prepare_failed", {
920
0
            prepare_st = Status::Aborted("FragmentMgr.exec_plan_fragment.prepare_failed");
921
0
        });
922
0
        if (!prepare_st.ok()) {
923
0
            query_ctx->cancel(prepare_st, params.fragment_id);
924
0
            return prepare_st;
925
0
        }
926
0
    }
927
0
    g_fragmentmgr_prepare_latency << (duration_ns / 1000);
928
929
0
    DBUG_EXECUTE_IF("FragmentMgr.exec_plan_fragment.failed",
930
0
                    { return Status::Aborted("FragmentMgr.exec_plan_fragment.failed"); });
931
0
    {
932
0
        int64_t now = duration_cast<std::chrono::milliseconds>(
933
0
                              std::chrono::system_clock::now().time_since_epoch())
934
0
                              .count();
935
0
        g_fragment_executing_count << 1;
936
0
        g_fragment_last_active_time.set_value(now);
937
938
        // (query_id, fragment_id) is executed only on one BE, locks _pipeline_map.
939
0
        auto res = _pipeline_map.find({params.query_id, params.fragment_id});
940
0
        if (res != nullptr) {
941
0
            return Status::InternalError(
942
0
                    "exec_plan_fragment query_id({}) input duplicated fragment_id({})",
943
0
                    print_id(params.query_id), params.fragment_id);
944
0
        }
945
0
        _pipeline_map.insert({params.query_id, params.fragment_id}, context);
946
0
    }
947
948
    // Save params for recursive CTE child fragments so we can recreate the PFC later.
949
    // For recursive CTE, the child fragment needs to be destroyed and rebuilt between rounds,
950
    // so we save the original params here and use them in rerun_fragment(rebuild).
951
0
    if (params.__isset.need_notify_close && params.need_notify_close) {
952
0
        std::lock_guard<std::mutex> lk(_rerunnable_params_lock);
953
0
        _rerunnable_params_map[{params.query_id, params.fragment_id}] = {
954
0
                .deregister_runtime_filter_ids = {},
955
0
                .params = params,
956
0
                .parent = parent,
957
0
                .finish_callback = cb,
958
0
                .query_ctx = query_ctx};
959
0
    }
960
961
0
    if (!params.__isset.need_wait_execution_trigger || !params.need_wait_execution_trigger) {
962
0
        query_ctx->set_ready_to_execute_only();
963
0
    }
964
965
0
    query_ctx->set_pipeline_context(params.fragment_id, context);
966
967
0
    RETURN_IF_ERROR(context->submit());
968
0
    if (is_prepare_success != nullptr) {
969
0
        *is_prepare_success = true;
970
0
    }
971
0
    return Status::OK();
972
0
}
973
974
1
void FragmentMgr::cancel_query(const TUniqueId query_id, const Status reason) {
975
1
    std::shared_ptr<QueryContext> query_ctx = nullptr;
976
1
    {
977
1
        if (auto q_ctx = get_query_ctx(query_id)) {
978
0
            query_ctx = q_ctx;
979
1
        } else {
980
1
            LOG(WARNING) << "Query " << print_id(query_id)
981
1
                         << " does not exists, failed to cancel it";
982
1
            return;
983
1
        }
984
1
    }
985
0
    SCOPED_ATTACH_TASK(query_ctx->resource_ctx());
986
0
    query_ctx->cancel(reason);
987
0
    remove_query_context(query_id);
988
    // Clean up id_file_map in IdManager if exists
989
0
    if (ExecEnv::GetInstance()->get_id_manager()->get_id_file_map(query_id)) {
990
0
        ExecEnv::GetInstance()->get_id_manager()->remove_id_file_map(query_id);
991
0
    }
992
0
    LOG(INFO) << "Query " << print_id(query_id)
993
0
              << " is cancelled and removed. Reason: " << reason.to_string();
994
0
}
995
996
9
void FragmentMgr::cancel_worker() {
997
9
    LOG(INFO) << "FragmentMgr cancel worker start working.";
998
999
9
    timespec check_invalid_query_last_timestamp;
1000
9
    clock_gettime(CLOCK_MONOTONIC, &check_invalid_query_last_timestamp);
1001
1002
14
    do {
1003
14
        std::vector<TUniqueId> queries_lost_coordinator;
1004
14
        std::vector<TUniqueId> queries_timeout;
1005
14
        std::vector<TUniqueId> queries_pipeline_task_leak;
1006
        // Fe process uuid -> set<QueryId>
1007
14
        std::map<int64_t, std::unordered_set<TUniqueId>> running_queries_on_all_fes;
1008
14
        const std::map<TNetworkAddress, FrontendInfo>& running_fes =
1009
14
                ExecEnv::GetInstance()->get_running_frontends();
1010
1011
14
        timespec now;
1012
14
        clock_gettime(CLOCK_MONOTONIC, &now);
1013
1014
14
        if (config::enable_pipeline_task_leakage_detect &&
1015
14
            now.tv_sec - check_invalid_query_last_timestamp.tv_sec >
1016
0
                    config::pipeline_task_leakage_detect_period_secs) {
1017
0
            check_invalid_query_last_timestamp = now;
1018
0
            running_queries_on_all_fes = _get_all_running_queries_from_fe();
1019
14
        } else {
1020
14
            running_queries_on_all_fes.clear();
1021
14
        }
1022
1023
14
        std::vector<std::shared_ptr<PipelineFragmentContext>> ctx;
1024
14
        _pipeline_map.apply(
1025
14
                [&](phmap::flat_hash_map<std::pair<TUniqueId, int>,
1026
1.79k
                                         std::shared_ptr<PipelineFragmentContext>>& map) -> Status {
1027
1.79k
                    ctx.reserve(ctx.size() + map.size());
1028
1.79k
                    for (auto& pipeline_itr : map) {
1029
0
                        ctx.push_back(pipeline_itr.second);
1030
0
                    }
1031
1.79k
                    return Status::OK();
1032
1.79k
                });
1033
14
        for (auto& c : ctx) {
1034
0
            c->clear_finished_tasks();
1035
0
        }
1036
1037
14
        std::unordered_map<std::shared_ptr<PBackendService_Stub>, BrpcItem> brpc_stub_with_queries;
1038
14
        _collect_timeout_queries_and_brpc_items(queries_timeout, brpc_stub_with_queries, now);
1039
1040
        // We use a very conservative cancel strategy.
1041
        // 0. If there are no running frontends, do not cancel any queries.
1042
        // 1. If query's process uuid is zero, do not cancel
1043
        // 2. If same process uuid, do not cancel
1044
        // 3. If fe has zero process uuid, do not cancel
1045
14
        if (running_fes.empty() && _query_ctx_map.num_items() != 0) {
1046
0
            LOG_EVERY_N(WARNING, 10)
1047
0
                    << "Could not find any running frontends, maybe we are upgrading or "
1048
0
                       "starting? "
1049
0
                    << "We will not cancel any outdated queries in this situation.";
1050
14
        } else {
1051
14
            _collect_invalid_queries(queries_lost_coordinator, queries_pipeline_task_leak,
1052
14
                                     running_queries_on_all_fes, running_fes,
1053
14
                                     check_invalid_query_last_timestamp);
1054
14
        }
1055
1056
14
        if (config::enable_brpc_connection_check) {
1057
0
            for (auto it : brpc_stub_with_queries) {
1058
0
                if (!it.first) {
1059
0
                    LOG(WARNING) << "brpc stub is nullptr, skip it.";
1060
0
                    continue;
1061
0
                }
1062
0
                _check_brpc_available(it.first, it.second);
1063
0
            }
1064
0
        }
1065
1066
14
        if (!queries_lost_coordinator.empty()) {
1067
0
            LOG(INFO) << "There are " << queries_lost_coordinator.size()
1068
0
                      << " queries need to be cancelled, coordinator dead or restarted.";
1069
0
        }
1070
1071
14
        for (const auto& qid : queries_timeout) {
1072
0
            cancel_query(qid,
1073
0
                         Status::Error<ErrorCode::TIMEOUT>(
1074
0
                                 "FragmentMgr cancel worker going to cancel timeout instance "));
1075
0
        }
1076
1077
14
        for (const auto& qid : queries_pipeline_task_leak) {
1078
            // Cancel the query, and maybe try to report debug info to fe so that we can
1079
            // collect debug info by sql or http api instead of search log.
1080
0
            cancel_query(qid, Status::Error<ErrorCode::ILLEGAL_STATE>(
1081
0
                                      "Potential pipeline task leakage"));
1082
0
        }
1083
1084
14
        for (const auto& qid : queries_lost_coordinator) {
1085
0
            cancel_query(qid, Status::Error<ErrorCode::CANCELLED>(
1086
0
                                      "Source frontend is not running or restarted"));
1087
0
        }
1088
1089
14
    } while (!_stop_background_threads_latch.wait_for(
1090
14
            std::chrono::seconds(config::fragment_mgr_cancel_worker_interval_seconds)));
1091
9
    LOG(INFO) << "FragmentMgr cancel worker is going to exit.";
1092
9
}
1093
1094
void FragmentMgr::_collect_timeout_queries_and_brpc_items(
1095
        std::vector<TUniqueId>& queries_timeout,
1096
        std::unordered_map<std::shared_ptr<PBackendService_Stub>, BrpcItem>& brpc_stub_with_queries,
1097
14
        timespec now) {
1098
14
    std::vector<std::shared_ptr<QueryContext>> contexts;
1099
14
    _query_ctx_map.apply(
1100
1.79k
            [&](phmap::flat_hash_map<TUniqueId, std::weak_ptr<QueryContext>>& map) -> Status {
1101
1.79k
                for (auto it = map.begin(); it != map.end();) {
1102
0
                    if (auto q_ctx = it->second.lock()) {
1103
0
                        contexts.push_back(q_ctx);
1104
0
                        if (q_ctx->is_timeout(now)) {
1105
0
                            LOG_WARNING("Query {} is timeout", print_id(it->first));
1106
0
                            queries_timeout.push_back(it->first);
1107
0
                        } else if (config::enable_brpc_connection_check) {
1108
0
                            auto brpc_stubs = q_ctx->get_using_brpc_stubs();
1109
0
                            for (auto& item : brpc_stubs) {
1110
0
                                if (!brpc_stub_with_queries.contains(item.second)) {
1111
0
                                    brpc_stub_with_queries.emplace(item.second,
1112
0
                                                                   BrpcItem {item.first, {q_ctx}});
1113
0
                                } else {
1114
0
                                    brpc_stub_with_queries[item.second].queries.emplace_back(q_ctx);
1115
0
                                }
1116
0
                            }
1117
0
                        }
1118
0
                        ++it;
1119
0
                    } else {
1120
0
                        it = map.erase(it);
1121
0
                    }
1122
0
                }
1123
1.79k
                return Status::OK();
1124
1.79k
            });
1125
14
}
1126
1127
void FragmentMgr::_collect_invalid_queries(
1128
        std::vector<TUniqueId>& queries_lost_coordinator,
1129
        std::vector<TUniqueId>& queries_pipeline_task_leak,
1130
        const std::map<int64_t, std::unordered_set<TUniqueId>>& running_queries_on_all_fes,
1131
        const std::map<TNetworkAddress, FrontendInfo>& running_fes,
1132
15
        timespec check_invalid_query_last_timestamp) {
1133
15
    std::vector<std::shared_ptr<QueryContext>> q_contexts;
1134
15
    _query_ctx_map.apply([&](phmap::flat_hash_map<TUniqueId, std::weak_ptr<QueryContext>>& map)
1135
1.92k
                                 -> Status {
1136
1.92k
        for (const auto& it : map) {
1137
1
            if (auto q_ctx = it.second.lock()) {
1138
                // Cross-cluster query: coordinator FE is not in local `running_fes`,
1139
                // we should not cancel it based on local coordinator liveness.
1140
1
                if (q_ctx->get_query_source() == QuerySource::EXTERNAL_FRONTEND) {
1141
1
                    continue;
1142
1
                }
1143
0
                q_contexts.push_back(q_ctx);
1144
0
                const int64_t fe_process_uuid = q_ctx->get_fe_process_uuid();
1145
1146
0
                if (fe_process_uuid == 0) {
1147
                    // zero means this query is from a older version fe or
1148
                    // this fe is starting
1149
0
                    continue;
1150
0
                }
1151
1152
                // If the query is not running on the any frontends, cancel it.
1153
0
                if (auto itr = running_queries_on_all_fes.find(fe_process_uuid);
1154
0
                    itr != running_queries_on_all_fes.end()) {
1155
                    // Query not found on this frontend, and the query arrives before the last check
1156
0
                    if (itr->second.find(it.first) == itr->second.end() &&
1157
                        // tv_nsec represents the number of nanoseconds that have elapsed since the time point stored in tv_sec.
1158
                        // tv_sec is enough, we do not need to check tv_nsec.
1159
0
                        q_ctx->get_query_arrival_timestamp().tv_sec <
1160
0
                                check_invalid_query_last_timestamp.tv_sec &&
1161
0
                        q_ctx->get_query_source() == QuerySource::INTERNAL_FRONTEND) {
1162
0
                        queries_pipeline_task_leak.push_back(q_ctx->query_id());
1163
0
                        LOG_INFO(
1164
0
                                "Query {}, type {} is not found on any frontends, "
1165
0
                                "maybe it "
1166
0
                                "is leaked.",
1167
0
                                print_id(q_ctx->query_id()), toString(q_ctx->get_query_source()));
1168
0
                        continue;
1169
0
                    }
1170
0
                }
1171
1172
0
                auto itr = running_fes.find(q_ctx->coord_addr);
1173
0
                if (itr != running_fes.end()) {
1174
0
                    if (fe_process_uuid == itr->second.info.process_uuid ||
1175
0
                        itr->second.info.process_uuid == 0) {
1176
0
                        continue;
1177
0
                    } else {
1178
0
                        LOG_WARNING(
1179
0
                                "Coordinator of query {} restarted, going to cancel "
1180
0
                                "it.",
1181
0
                                print_id(q_ctx->query_id()));
1182
0
                    }
1183
0
                } else {
1184
                    // In some rear cases, the rpc port of follower is not updated in time,
1185
                    // then the port of this follower will be zero, but acutally it is still running,
1186
                    // and be has already received the query from follower.
1187
                    // So we need to check if host is in running_fes.
1188
0
                    bool fe_host_is_standing = std::any_of(
1189
0
                            running_fes.begin(), running_fes.end(), [&q_ctx](const auto& fe) {
1190
0
                                return fe.first.hostname == q_ctx->coord_addr.hostname &&
1191
0
                                       fe.first.port == 0;
1192
0
                            });
1193
0
                    if (fe_host_is_standing) {
1194
0
                        LOG_WARNING(
1195
0
                                "Coordinator {}:{} is not found, but its host is still "
1196
0
                                "running with an unstable brpc port, not going to "
1197
0
                                "cancel "
1198
0
                                "it.",
1199
0
                                q_ctx->coord_addr.hostname, q_ctx->coord_addr.port,
1200
0
                                print_id(q_ctx->query_id()));
1201
0
                        continue;
1202
0
                    } else {
1203
0
                        LOG_WARNING(
1204
0
                                "Could not find target coordinator {}:{} of query {}, "
1205
0
                                "going to "
1206
0
                                "cancel it.",
1207
0
                                q_ctx->coord_addr.hostname, q_ctx->coord_addr.port,
1208
0
                                print_id(q_ctx->query_id()));
1209
0
                    }
1210
0
                }
1211
0
            }
1212
            // Coordinator of this query has already dead or query context has been released.
1213
0
            queries_lost_coordinator.push_back(it.first);
1214
0
        }
1215
1.92k
        return Status::OK();
1216
1.92k
    });
1217
15
}
1218
1219
void FragmentMgr::_check_brpc_available(const std::shared_ptr<PBackendService_Stub>& brpc_stub,
1220
0
                                        const BrpcItem& brpc_item) {
1221
0
    const std::string message = "hello doris!";
1222
0
    std::string error_message;
1223
0
    int32_t failed_count = 0;
1224
0
    const int64_t check_timeout_ms =
1225
0
            std::max<int64_t>(100, config::brpc_connection_check_timeout_ms);
1226
1227
0
    while (true) {
1228
0
        PHandShakeRequest request;
1229
0
        request.set_hello(message);
1230
0
        PHandShakeResponse response;
1231
0
        brpc::Controller cntl;
1232
0
        cntl.set_timeout_ms(check_timeout_ms);
1233
0
        cntl.set_max_retry(10);
1234
0
        brpc_stub->hand_shake(&cntl, &request, &response, nullptr);
1235
1236
0
        if (cntl.Failed()) {
1237
0
            error_message = cntl.ErrorText();
1238
0
            LOG(WARNING) << "brpc stub: " << brpc_item.network_address.hostname << ":"
1239
0
                         << brpc_item.network_address.port << " check failed: " << error_message;
1240
0
        } else if (response.has_status() && response.status().status_code() == 0) {
1241
0
            break;
1242
0
        } else {
1243
0
            error_message = response.DebugString();
1244
0
            LOG(WARNING) << "brpc stub: " << brpc_item.network_address.hostname << ":"
1245
0
                         << brpc_item.network_address.port << " check failed: " << error_message;
1246
0
        }
1247
0
        failed_count++;
1248
0
        if (failed_count == 2) {
1249
0
            for (const auto& query_wptr : brpc_item.queries) {
1250
0
                auto query = query_wptr.lock();
1251
0
                if (query && !query->is_cancelled()) {
1252
0
                    query->cancel(Status::InternalError("brpc(dest: {}:{}) check failed: {}",
1253
0
                                                        brpc_item.network_address.hostname,
1254
0
                                                        brpc_item.network_address.port,
1255
0
                                                        error_message));
1256
0
                }
1257
0
            }
1258
1259
0
            LOG(WARNING) << "remove brpc stub from cache: " << brpc_item.network_address.hostname
1260
0
                         << ":" << brpc_item.network_address.port << ", error: " << error_message;
1261
0
            ExecEnv::GetInstance()->brpc_internal_client_cache()->erase(
1262
0
                    brpc_item.network_address.hostname, brpc_item.network_address.port);
1263
0
            break;
1264
0
        }
1265
0
    }
1266
0
}
1267
1268
0
void FragmentMgr::debug(std::stringstream& ss) {}
1269
/*
1270
 * 1. resolve opaqued_query_plan to thrift structure
1271
 * 2. build TPipelineFragmentParams
1272
 */
1273
Status FragmentMgr::exec_external_plan_fragment(const TScanOpenParams& params,
1274
                                                const TQueryPlanInfo& t_query_plan_info,
1275
                                                const TUniqueId& query_id,
1276
                                                const TUniqueId& fragment_instance_id,
1277
0
                                                std::vector<TScanColumnDesc>* selected_columns) {
1278
    // set up desc tbl
1279
0
    DescriptorTbl* desc_tbl = nullptr;
1280
0
    ObjectPool obj_pool;
1281
0
    Status st = DescriptorTbl::create(&obj_pool, t_query_plan_info.desc_tbl, &desc_tbl);
1282
0
    if (!st.ok()) {
1283
0
        LOG(WARNING) << "open context error: extract DescriptorTbl failure";
1284
0
        std::stringstream msg;
1285
0
        msg << " create DescriptorTbl error, should not be modified after returned Doris FE "
1286
0
               "processed";
1287
0
        return Status::InvalidArgument(msg.str());
1288
0
    }
1289
0
    TupleDescriptor* tuple_desc = desc_tbl->get_tuple_descriptor(0);
1290
0
    if (tuple_desc == nullptr) {
1291
0
        LOG(WARNING) << "open context error: extract TupleDescriptor failure";
1292
0
        std::stringstream msg;
1293
0
        msg << " get  TupleDescriptor error, should not be modified after returned Doris FE "
1294
0
               "processed";
1295
0
        return Status::InvalidArgument(msg.str());
1296
0
    }
1297
    // process selected columns form slots
1298
0
    for (const SlotDescriptor* slot : tuple_desc->slots()) {
1299
0
        TScanColumnDesc col;
1300
0
        col.__set_name(slot->col_name());
1301
0
        col.__set_type(to_thrift(slot->type()->get_primitive_type()));
1302
0
        selected_columns->emplace_back(std::move(col));
1303
0
    }
1304
1305
0
    VLOG_QUERY << "BackendService execute open()  TQueryPlanInfo: "
1306
0
               << apache::thrift::ThriftDebugString(t_query_plan_info);
1307
    // assign the param used to execute PlanFragment
1308
0
    TPipelineFragmentParams exec_fragment_params;
1309
0
    exec_fragment_params.protocol_version = (PaloInternalServiceVersion::type)0;
1310
0
    exec_fragment_params.__set_is_simplified_param(false);
1311
0
    exec_fragment_params.__set_fragment(t_query_plan_info.plan_fragment);
1312
0
    exec_fragment_params.__set_desc_tbl(t_query_plan_info.desc_tbl);
1313
1314
    // assign the param used for executing of PlanFragment-self
1315
0
    TPipelineInstanceParams fragment_exec_params;
1316
0
    exec_fragment_params.query_id = query_id;
1317
0
    fragment_exec_params.fragment_instance_id = fragment_instance_id;
1318
0
    exec_fragment_params.coord.hostname = "external";
1319
0
    std::map<::doris::TPlanNodeId, std::vector<TScanRangeParams>> per_node_scan_ranges;
1320
0
    std::vector<TScanRangeParams> scan_ranges;
1321
0
    std::vector<int64_t> tablet_ids = params.tablet_ids;
1322
0
    TNetworkAddress address;
1323
0
    address.hostname = BackendOptions::get_localhost();
1324
0
    address.port = doris::config::be_port;
1325
0
    std::map<int64_t, TTabletVersionInfo> tablet_info = t_query_plan_info.tablet_info;
1326
0
    for (auto tablet_id : params.tablet_ids) {
1327
0
        TPaloScanRange scan_range;
1328
0
        scan_range.db_name = params.database;
1329
0
        scan_range.table_name = params.table;
1330
0
        auto iter = tablet_info.find(tablet_id);
1331
0
        if (iter != tablet_info.end()) {
1332
0
            TTabletVersionInfo info = iter->second;
1333
0
            scan_range.tablet_id = tablet_id;
1334
0
            scan_range.version = std::to_string(info.version);
1335
            // Useless but it is required field in TPaloScanRange
1336
0
            scan_range.version_hash = "0";
1337
0
            scan_range.schema_hash = std::to_string(info.schema_hash);
1338
0
            scan_range.hosts.push_back(address);
1339
0
        } else {
1340
0
            std::stringstream msg;
1341
0
            msg << "tablet_id: " << tablet_id << " not found";
1342
0
            LOG(WARNING) << "tablet_id [ " << tablet_id << " ] not found";
1343
0
            return Status::NotFound(msg.str());
1344
0
        }
1345
0
        TScanRange doris_scan_range;
1346
0
        doris_scan_range.__set_palo_scan_range(scan_range);
1347
0
        TScanRangeParams scan_range_params;
1348
0
        scan_range_params.scan_range = doris_scan_range;
1349
0
        scan_ranges.push_back(scan_range_params);
1350
0
    }
1351
0
    per_node_scan_ranges.insert(std::make_pair((::doris::TPlanNodeId)0, scan_ranges));
1352
0
    fragment_exec_params.per_node_scan_ranges = per_node_scan_ranges;
1353
0
    exec_fragment_params.local_params.push_back(fragment_exec_params);
1354
0
    TQueryOptions query_options;
1355
0
    query_options.batch_size = params.batch_size;
1356
0
    query_options.execution_timeout = params.execution_timeout;
1357
0
    query_options.mem_limit = params.mem_limit;
1358
0
    query_options.query_type = TQueryType::EXTERNAL;
1359
0
    query_options.be_exec_version = BeExecVersionManager::get_newest_version();
1360
0
    exec_fragment_params.__set_query_options(query_options);
1361
0
    VLOG_ROW << "external exec_plan_fragment params is "
1362
0
             << apache::thrift::ThriftDebugString(exec_fragment_params).c_str();
1363
1364
0
    TPipelineFragmentParamsList mocked;
1365
0
    return exec_plan_fragment(exec_fragment_params, QuerySource::EXTERNAL_CONNECTOR, mocked);
1366
0
}
1367
1368
Status FragmentMgr::apply_filterv2(const PPublishFilterRequestV2* request,
1369
0
                                   butil::IOBufAsZeroCopyInputStream* attach_data) {
1370
0
    UniqueId queryid = request->query_id();
1371
0
    TUniqueId query_id;
1372
0
    query_id.__set_hi(queryid.hi);
1373
0
    query_id.__set_lo(queryid.lo);
1374
0
    if (auto q_ctx = get_query_ctx(query_id)) {
1375
0
        SCOPED_ATTACH_TASK(q_ctx.get());
1376
0
        RuntimeFilterMgr* runtime_filter_mgr = q_ctx->runtime_filter_mgr();
1377
0
        DCHECK(runtime_filter_mgr != nullptr);
1378
1379
        // 1. get the target filters
1380
0
        std::vector<std::shared_ptr<RuntimeFilterConsumer>> filters =
1381
0
                runtime_filter_mgr->get_consume_filters(request->filter_id());
1382
1383
        // 2. create the filter wrapper to replace or ignore/disable the target filters
1384
0
        if (!filters.empty()) {
1385
            // Discard stale-stage requests from old recursive CTE rounds.
1386
0
            if (filters[0]->stage() != request->stage()) {
1387
0
                return Status::OK();
1388
0
            }
1389
0
            RETURN_IF_ERROR(filters[0]->assign(*request, attach_data));
1390
0
            std::ranges::for_each(filters, [&](auto& filter) { filter->signal(filters[0].get()); });
1391
0
        }
1392
0
    }
1393
0
    return Status::OK();
1394
0
}
1395
1396
0
Status FragmentMgr::send_filter_size(const PSendFilterSizeRequest* request) {
1397
0
    UniqueId queryid = request->query_id();
1398
0
    TUniqueId query_id;
1399
0
    query_id.__set_hi(queryid.hi);
1400
0
    query_id.__set_lo(queryid.lo);
1401
1402
0
    if (config::enable_debug_points &&
1403
0
        DebugPoints::instance()->is_enable("FragmentMgr::send_filter_size.return_eof")) {
1404
0
        return Status::EndOfFile("inject FragmentMgr::send_filter_size.return_eof");
1405
0
    }
1406
1407
0
    if (auto q_ctx = get_query_ctx(query_id)) {
1408
0
        return q_ctx->get_merge_controller_handler()->send_filter_size(q_ctx, request);
1409
0
    } else {
1410
0
        return Status::EndOfFile(
1411
0
                "Send filter size failed: Query context (query-id: {}) not found, maybe "
1412
0
                "finished",
1413
0
                queryid.to_string());
1414
0
    }
1415
0
}
1416
1417
0
Status FragmentMgr::sync_filter_size(const PSyncFilterSizeRequest* request) {
1418
0
    UniqueId queryid = request->query_id();
1419
0
    TUniqueId query_id;
1420
0
    query_id.__set_hi(queryid.hi);
1421
0
    query_id.__set_lo(queryid.lo);
1422
0
    if (auto q_ctx = get_query_ctx(query_id)) {
1423
0
        try {
1424
0
            return q_ctx->runtime_filter_mgr()->sync_filter_size(request);
1425
0
        } catch (const Exception& e) {
1426
0
            return Status::InternalError(
1427
0
                    "Sync filter size failed: Query context (query-id: {}) error: {}",
1428
0
                    queryid.to_string(), e.what());
1429
0
        }
1430
0
    } else {
1431
0
        return Status::EndOfFile(
1432
0
                "Sync filter size failed: Query context (query-id: {}) already finished",
1433
0
                queryid.to_string());
1434
0
    }
1435
0
}
1436
1437
Status FragmentMgr::merge_filter(const PMergeFilterRequest* request,
1438
0
                                 butil::IOBufAsZeroCopyInputStream* attach_data) {
1439
0
    UniqueId queryid = request->query_id();
1440
1441
0
    TUniqueId query_id;
1442
0
    query_id.__set_hi(queryid.hi);
1443
0
    query_id.__set_lo(queryid.lo);
1444
0
    if (auto q_ctx = get_query_ctx(query_id)) {
1445
0
        SCOPED_ATTACH_TASK(q_ctx.get());
1446
0
        if (!q_ctx->get_merge_controller_handler()) {
1447
0
            return Status::InternalError("Merge filter failed: Merge controller handler is null");
1448
0
        }
1449
0
        return q_ctx->get_merge_controller_handler()->merge(q_ctx, request, attach_data);
1450
0
    } else {
1451
0
        return Status::EndOfFile(
1452
0
                "Merge filter size failed: Query context (query-id: {}) already finished",
1453
0
                queryid.to_string());
1454
0
    }
1455
0
}
1456
1457
void FragmentMgr::get_runtime_query_info(
1458
0
        std::vector<std::weak_ptr<ResourceContext>>* _resource_ctx_list) {
1459
0
    std::vector<std::shared_ptr<QueryContext>> contexts;
1460
0
    _query_ctx_map.apply(
1461
0
            [&](phmap::flat_hash_map<TUniqueId, std::weak_ptr<QueryContext>>& map) -> Status {
1462
0
                for (auto iter = map.begin(); iter != map.end();) {
1463
0
                    if (auto q_ctx = iter->second.lock()) {
1464
0
                        _resource_ctx_list->push_back(q_ctx->resource_ctx());
1465
0
                        contexts.push_back(q_ctx);
1466
0
                        iter++;
1467
0
                    } else {
1468
0
                        iter = map.erase(iter);
1469
0
                    }
1470
0
                }
1471
0
                return Status::OK();
1472
0
            });
1473
0
}
1474
1475
Status FragmentMgr::get_realtime_exec_status(const TUniqueId& query_id,
1476
0
                                             TReportExecStatusParams* exec_status) {
1477
0
    if (exec_status == nullptr) {
1478
0
        return Status::InvalidArgument("exes_status is nullptr");
1479
0
    }
1480
1481
0
    std::shared_ptr<QueryContext> query_context = get_query_ctx(query_id);
1482
0
    if (query_context == nullptr) {
1483
0
        return Status::NotFound("Query {} not found or released", print_id(query_id));
1484
0
    }
1485
1486
0
    *exec_status = query_context->get_realtime_exec_status();
1487
1488
0
    return Status::OK();
1489
0
}
1490
1491
0
Status FragmentMgr::get_query_statistics(const TUniqueId& query_id, TQueryStatistics* query_stats) {
1492
0
    if (query_stats == nullptr) {
1493
0
        return Status::InvalidArgument("query_stats is nullptr");
1494
0
    }
1495
1496
0
    return ExecEnv::GetInstance()->runtime_query_statistics_mgr()->get_query_statistics(
1497
0
            print_id(query_id), query_stats);
1498
0
}
1499
1500
Status FragmentMgr::transmit_rec_cte_block(
1501
        const TUniqueId& query_id, const TUniqueId& instance_id, int node_id,
1502
0
        const google::protobuf::RepeatedPtrField<doris::PBlock>& pblocks, bool eos) {
1503
0
    if (auto q_ctx = get_query_ctx(query_id)) {
1504
0
        SCOPED_ATTACH_TASK(q_ctx.get());
1505
0
        return q_ctx->send_block_to_cte_scan(instance_id, node_id, pblocks, eos);
1506
0
    } else {
1507
0
        return Status::EndOfFile(
1508
0
                "Transmit rec cte block failed: Query context (query-id: {}) not found, maybe "
1509
0
                "finished",
1510
0
                print_id(query_id));
1511
0
    }
1512
0
}
1513
1514
// Orchestrates the recursive CTE fragment lifecycle through 4 phases:
1515
//
1516
// wait_for_destroy: collect deregister RF IDs, store brpc closure, trigger old PFC close
1517
// rebuild: increment stage, deregister old RFs, create+prepare new PFC from saved params
1518
// submit: submit the new PFC's pipeline tasks for execution
1519
// final_close: async wait for close, send final report, clean up (last round only)
1520
//
1521
// The brpc ClosureGuard is stored in the PFC so the RPC response is deferred until
1522
// the PFC is fully destroyed. This gives the caller (RecCTESourceOperatorX) a
1523
// synchronization point to know when the old PFC has finished all its tasks.
1524
Status FragmentMgr::rerun_fragment(const std::shared_ptr<brpc::ClosureGuard>& guard,
1525
                                   const TUniqueId& query_id, int fragment_id,
1526
0
                                   PRerunFragmentParams_Opcode stage) {
1527
0
    if (stage == PRerunFragmentParams::WAIT_FOR_DESTROY ||
1528
0
        stage == PRerunFragmentParams::FINAL_CLOSE) {
1529
0
        auto fragment_ctx = _pipeline_map.find({query_id, fragment_id});
1530
0
        if (!fragment_ctx) {
1531
0
            return Status::NotFound("Fragment context (query-id: {}, fragment-id: {}) not found",
1532
0
                                    print_id(query_id), fragment_id);
1533
0
        }
1534
1535
0
        if (stage == PRerunFragmentParams::WAIT_FOR_DESTROY) {
1536
0
            std::unique_lock<std::mutex> lk(_rerunnable_params_lock);
1537
0
            auto it = _rerunnable_params_map.find({query_id, fragment_id});
1538
0
            if (it == _rerunnable_params_map.end()) {
1539
0
                lk.unlock();
1540
0
                auto st = fragment_ctx->listen_wait_close(guard, true);
1541
0
                if (!st.ok()) {
1542
0
                    LOG(WARNING) << fmt::format(
1543
0
                            "wait_for_destroy fragment context (query-id: {}, fragment-id: "
1544
0
                            "{}) failed: {}",
1545
0
                            print_id(query_id), fragment_id, st.to_string());
1546
0
                }
1547
0
                return Status::NotFound(
1548
0
                        "Rerunnable params (query-id: {}, fragment-id: {}) not found",
1549
0
                        print_id(query_id), fragment_id);
1550
0
            }
1551
1552
0
            it->second.deregister_runtime_filter_ids.merge(
1553
0
                    fragment_ctx->get_deregister_runtime_filter());
1554
0
        }
1555
1556
0
        auto* query_ctx = fragment_ctx->get_query_ctx();
1557
0
        SCOPED_ATTACH_TASK(query_ctx);
1558
0
        RETURN_IF_ERROR(
1559
0
                fragment_ctx->listen_wait_close(guard, stage == PRerunFragmentParams::FINAL_CLOSE));
1560
0
        fragment_ctx->notify_close();
1561
0
        return Status::OK();
1562
0
    } else if (stage == PRerunFragmentParams::REBUILD) {
1563
0
        auto q_ctx = get_query_ctx(query_id);
1564
0
        if (!q_ctx) {
1565
0
            return Status::NotFound(
1566
0
                    "rerun_fragment: Query context (query-id: {}) not found, maybe finished",
1567
0
                    print_id(query_id));
1568
0
        }
1569
0
        SCOPED_ATTACH_TASK(q_ctx.get());
1570
0
        RerunableFragmentInfo info;
1571
0
        {
1572
0
            std::lock_guard<std::mutex> lk(_rerunnable_params_lock);
1573
0
            auto it = _rerunnable_params_map.find({query_id, fragment_id});
1574
0
            if (it == _rerunnable_params_map.end()) {
1575
0
                return Status::NotFound("rebuild (query-id: {}, fragment-id: {}) not found",
1576
0
                                        print_id(query_id), fragment_id);
1577
0
            }
1578
0
            it->second.stage++;
1579
            // Deregister old runtime filters so new ones can be registered in the new PFC.
1580
0
            for (int32_t filter_id : it->second.deregister_runtime_filter_ids) {
1581
0
                q_ctx->runtime_filter_mgr()->remove_filter(filter_id);
1582
0
            }
1583
0
            info = it->second;
1584
0
        }
1585
1586
0
        auto context = std::make_shared<PipelineFragmentContext>(
1587
0
                q_ctx->query_id(), info.params, q_ctx, _exec_env, info.finish_callback,
1588
0
                [this](const ReportStatusRequest& req, auto&& ctx) {
1589
0
                    return this->trigger_pipeline_context_report(req, std::move(ctx));
1590
0
                });
1591
        // Propagate the recursion stage so that runtime filters created by this PFC
1592
        // carry the correct stage number.
1593
0
        context->set_rec_cte_stage(info.stage);
1594
1595
0
        Status prepare_st = Status::OK();
1596
0
        ASSIGN_STATUS_IF_CATCH_EXCEPTION(prepare_st = context->prepare(_thread_pool.get()),
1597
0
                                         prepare_st);
1598
0
        if (!prepare_st.ok()) {
1599
0
            q_ctx->cancel(prepare_st, info.params.fragment_id);
1600
0
            return prepare_st;
1601
0
        }
1602
1603
        // Insert new PFC into _pipeline_map (old one was removed)
1604
0
        _pipeline_map.insert({info.params.query_id, info.params.fragment_id}, context);
1605
1606
        // Update QueryContext mapping (must support overwrite)
1607
0
        q_ctx->set_pipeline_context(info.params.fragment_id, context);
1608
0
        return Status::OK();
1609
1610
0
    } else if (stage == PRerunFragmentParams::SUBMIT) {
1611
0
        auto fragment_ctx = _pipeline_map.find({query_id, fragment_id});
1612
0
        if (!fragment_ctx) {
1613
0
            return Status::NotFound("Fragment context (query-id: {}, fragment-id: {}) not found",
1614
0
                                    print_id(query_id), fragment_id);
1615
0
        }
1616
0
        return fragment_ctx->submit();
1617
0
    } else {
1618
0
        return Status::InvalidArgument("Unknown rerun fragment opcode: {}", stage);
1619
0
    }
1620
0
}
1621
1622
Status FragmentMgr::reset_global_rf(const TUniqueId& query_id,
1623
0
                                    const google::protobuf::RepeatedField<int32_t>& filter_ids) {
1624
0
    if (auto q_ctx = get_query_ctx(query_id)) {
1625
0
        SCOPED_ATTACH_TASK(q_ctx.get());
1626
0
        return q_ctx->reset_global_rf(filter_ids);
1627
0
    } else {
1628
0
        return Status::NotFound(
1629
0
                "reset_fragment: Query context (query-id: {}) not found, maybe finished",
1630
0
                print_id(query_id));
1631
0
    }
1632
0
}
1633
1634
#include "common/compile_check_end.h"
1635
1636
} // namespace doris