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celerity / celerity-runtime / 12047884020

27 Nov 2024 09:58AM UTC coverage: 94.956% (-0.02%) from 94.972%
12047884020

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fknorr
Do not disable CGF disagnostics in test_utils::add_*_task

This eliminates dead code from an earlier incomplete refactoring.

The CGF teardown / reinit was only required by a single test, which was
coincidentally also broken and didn't test the feature advertised. This
commit splits up the test between runtime_ and runtime_deprecation_tests
and also moves runtime-independent sibling tests to task_graph_tests.

3202 of 3633 branches covered (88.14%)

Branch coverage included in aggregate %.

7151 of 7270 relevant lines covered (98.36%)

1224689.38 hits per line

Source File
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95.08
/src/live_executor.cc
1
#include "live_executor.h"
2
#include "backend/backend.h"
3
#include "closure_hydrator.h"
4
#include "communicator.h"
5
#include "grid.h"
6
#include "host_object.h"
7
#include "instruction_graph.h"
8
#include "log.h"
9
#include "named_threads.h"
10
#include "out_of_order_engine.h"
11
#include "print_utils.h"
12
#include "print_utils_internal.h"
13
#include "receive_arbiter.h"
14
#include "system_info.h"
15
#include "tracy.h"
16
#include "types.h"
17
#include "utils.h"
18
#include "version.h"
19

20
#include <deque>
21
#include <memory>
22
#include <optional>
23
#include <string>
24
#include <unordered_map>
25
#include <vector>
26

27
#include <matchbox.hh>
28

29

30
namespace celerity::detail::live_executor_detail {
31

32
#if CELERITY_TRACY_SUPPORT
33

34
struct tracy_integration {
35
        struct instruction_info {
36
                instruction_id iid = -1;
37
                gch::small_vector<instruction_id> dependencies;
38
                int priority = -1;
39
                std::optional<size_t> bytes_processed;
40
                TracyCZoneCtx (*begin_zone)(const instruction_info& info, bool was_eagerly_submitted) = nullptr;
41
        };
42

43
        struct async_zone {
44
                size_t submission_idx_on_lane;
45
                instruction_info info;
46
                std::string trace;
47
        };
48

49
        /// References a position in an `async_lane_state::zone_queue` from within `executor_impl::async_instruction_state`
50
        struct async_lane_cursor {
51
                size_t global_lane_id = 0;
52
                size_t submission_idx_on_lane = 0;
53
        };
54

55
        /// Unique identifier for an `async_lane_state`.
56
        struct async_lane_id {
57
                out_of_order_engine::target target = out_of_order_engine::target::immediate;
58
                std::optional<device_id> device;
59
                size_t local_lane_id = 0;
60
        };
61

62
        /// State for an async (fiber) lane. Keeps the active (suspended) zone as well as the queue of eagerly submitted but not yet begun zones.
63
        struct async_lane_state {
64
                async_lane_id id;
65
                const char* fiber_name = nullptr;
66
                int32_t fiber_order = 0;
67
                size_t next_submission_idx = 0;
68
                std::optional<TracyCZoneCtx> active_zone_ctx;
69
                std::deque<async_zone> zone_queue; ///< front(): currently active zone, front() + 1: zone to start immediately after front() has ended
70

71
                explicit async_lane_state(const async_lane_id& id);
72
        };
73

74
        std::vector<async_lane_state> async_lanes; // vector instead of map, because elements need to be referenced to by global lane id
75

76
        std::string last_instruction_trace; ///< written by `CELERITY_DETAIL_TRACE_INSTRUCTION()`, read by `executor_impl::dispatch()`
77

78
        tracy_detail::plot<int64_t> assigned_instructions_plot{"assigned instructions"};
79
        tracy_detail::plot<int64_t> assignment_queue_length_plot{"assignment queue length"};
80

81
        static instruction_info make_instruction_info(const instruction& instr);
82

83
        /// Open a Tracy zone, setting tag, color - and name, if full tracing is enabled.
84
        static TracyCZoneCtx begin_instruction_zone(const instruction_info& info, bool was_eagerly_submitted);
85

86
        /// Close a Tracy zone - after emitting the instruction trace and generic instruction info if full tracing is enabled.
87
        static void end_instruction_zone(const TracyCZoneCtx& ctx, const instruction_info& info, const std::string& trace, const async_event* opt_event = nullptr);
88

89
        /// Picks the (optionally) pre-existing lane for an in-order queue submission, or an arbitrary free lane for async unordered send/receive instructions.
90
        async_lane_cursor get_async_lane_cursor(const out_of_order_engine::assignment& assignment);
91

92
        /// Adds an async instruction to its designated lane queue; beginning a Tracy zone immediately if it is the only instruction in the queue
93
        async_lane_cursor issue_async_instruction(instruction_info&& info, const out_of_order_engine::assignment& assignment, std::string&& trace);
94

95
        /// Closes the tracy zone for an active async instruction; beginning the next queued zone in the same lane, if any.
96
        void retire_async_instruction(const async_lane_cursor& cursor, const async_event& event);
97
};
98

99

100
tracy_integration::async_lane_state::async_lane_state(const async_lane_id& id) : id(id) {
101
        switch(id.target) {
102
        case out_of_order_engine::target::immediate: {
103
                fiber_name = tracy_detail::leak_name(fmt::format("cy-async-p2p #{}", id.local_lane_id));
104
                fiber_order = tracy_detail::lane_order::send_receive_first_lane + static_cast<int32_t>(id.local_lane_id);
105
                break;
106
        }
107
        case out_of_order_engine::target::alloc_queue:
108
                fiber_name = "cy-async-alloc";
109
                fiber_order = tracy_detail::lane_order::alloc_lane;
110
                break;
111
        case out_of_order_engine::target::host_queue:
112
                fiber_name = tracy_detail::leak_name(fmt::format("cy-async-host #{}", id.local_lane_id));
113
                fiber_order = tracy_detail::lane_order::host_first_lane + static_cast<int32_t>(id.local_lane_id);
114
                break;
115
        case out_of_order_engine::target::device_queue:
116
                fiber_name = tracy_detail::leak_name(fmt::format("cy-async-device D{} #{}", id.device.value(), id.local_lane_id));
117
                fiber_order = tracy_detail::lane_order::first_device_first_lane
118
                              + static_cast<int32_t>(id.device.value()) * tracy_detail::lane_order::num_lanes_per_device + static_cast<int32_t>(id.local_lane_id);
119
                break;
120
        default: utils::unreachable();
121
        }
122
}
123

124
tracy_integration::async_lane_cursor tracy_integration::get_async_lane_cursor(const out_of_order_engine::assignment& assignment) {
125
        const auto target = assignment.target;
126
        // on alloc_queue, assignment.device signals on which device to allocate memory, not on which device to queue the instruction
127
        const auto device = assignment.target == out_of_order_engine::target::device_queue ? assignment.device : std::nullopt;
128
        // out_of_order_engine does not assign a lane for alloc_queue, but there exists a single (in-order) one which we identify as `0`,
129
        // to continue using `nullopt` to pick an arbitrary empty lane in the code below for the immediate-but-async send / receive instruction types.
130
        const auto local_lane_id = assignment.target == out_of_order_engine::target::alloc_queue ? std::optional<size_t>(0) : assignment.lane;
131

132
        size_t next_local_lane_id = 0;
133
        auto lane_it = std::find_if(async_lanes.begin(), async_lanes.end(), [&](const async_lane_state& lane) {
134
                if(lane.id.target != target || lane.id.device != device) return false;
135
                ++next_local_lane_id; // if lambda never returns true, this will identify an unused local lane id for insertion below
136
                return local_lane_id.has_value() ? lane.id.local_lane_id == *local_lane_id /* exact match */ : lane.zone_queue.empty() /* arbitrary empty lane */;
137
        });
138
        if(lane_it == async_lanes.end()) {
139
                lane_it = async_lanes.emplace(async_lanes.end(), async_lane_id{target, device, local_lane_id.value_or(next_local_lane_id)});
140
        }
141
        const auto global_lane_id = static_cast<size_t>(lane_it - async_lanes.begin());
142
        return async_lane_cursor{global_lane_id, lane_it->next_submission_idx++};
143
}
144

145
tracy_integration::instruction_info tracy_integration::make_instruction_info(const instruction& instr) {
146
        tracy_integration::instruction_info info;
147
        info.iid = instr.get_id();
148

149
        // Tracy stages zone tag and color in a static local, so we can't move TracyCZoneNC out of match statement
150
#define CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(INSTR, COLOR)                                                                                                   \
151
        [&](const INSTR##_instruction& /* instr */) {                                                                                                              \
152
                return [](const instruction_info& info, bool was_eagerly_submitted) {                                                                                  \
153
                        TracyCZoneNC(ctx, "executor::" #INSTR, tracy::Color::COLOR, true /* active */);                                                                    \
154
                        if(tracy_detail::is_enabled_full()) {                                                                                                              \
155
                                const auto name = fmt::format("{}I{} " #INSTR, was_eagerly_submitted ? "+" : "", info.iid);                                                    \
156
                                TracyCZoneName(ctx, name.data(), name.size());                                                                                                 \
157
                        }                                                                                                                                                  \
158
                        return ctx;                                                                                                                                        \
159
                };                                                                                                                                                     \
160
        }
161

162
        info.begin_zone = matchbox::match(instr,                                   //
163
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(clone_collective_group, Brown), //
164
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(alloc, Turquoise),              //
165
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(free, Turquoise),               //
166
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(copy, Lime),                    //
167
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(device_kernel, Orange),         //
168
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(host_task, Orange),             //
169
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(send, Violet),                  //
170
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(receive, DarkViolet),           //
171
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(split_receive, DarkViolet),     //
172
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(await_receive, DarkViolet),     //
173
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(gather_receive, DarkViolet),    //
174
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(fill_identity, Blue),           //
175
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(reduce, Blue),                  //
176
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(fence, Blue),                   //
177
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(destroy_host_object, Gray),     //
178
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(horizon, Gray),                 //
179
            CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE(epoch, Gray));
180

181
#undef CELERITY_DETAIL_BEGIN_INSTRUCTION_ZONE
182

183
        CELERITY_DETAIL_IF_TRACY_ENABLED_FULL({
184
                info.dependencies = instr.get_dependencies();
185
                info.priority = instr.get_priority();
186
                info.bytes_processed = matchbox::match<std::optional<size_t>>(
187
                    instr,                                                                                                          //
188
                    [](const alloc_instruction& ainstr) { return ainstr.get_size_bytes(); },                                        //
189
                    [](const copy_instruction& cinstr) { return cinstr.get_copy_region().get_area() * cinstr.get_element_size(); }, //
190
                    [](const send_instruction& sinstr) { return sinstr.get_send_range().size() * sinstr.get_element_size(); },      //
191
                    [](const device_kernel_instruction& dkinstr) { return dkinstr.get_estimated_global_memory_traffic_bytes(); },   //
192
                    [](const auto& /* other */) { return std::nullopt; });
193
        })
194

195
        return info;
196
}
197

198
TracyCZoneCtx tracy_integration::begin_instruction_zone(const instruction_info& info, bool was_eagerly_submitted) {
199
        assert(info.begin_zone != nullptr);
200
        return info.begin_zone(info, was_eagerly_submitted);
201
}
202

203
void tracy_integration::end_instruction_zone(const TracyCZoneCtx& ctx, const instruction_info& info, const std::string& trace, const async_event* opt_event) {
204
        if(tracy_detail::is_enabled_full()) {
205
                std::string text;
206
                text.reserve(512); // Observation: typical size for kernel instructions is 200 - 300 characters
207

208
                // Dump the trace collected from CELERITY_DETAIL_TRACE_INSTRUCTION, replacing /; */ with '\n' for better legibility
209
                for(size_t trace_line_start = 0; trace_line_start < trace.size();) {
210
                        const auto trace_line_end = trace.find(';', trace_line_start);
211
                        text.append(trace, trace_line_start, trace_line_end - trace_line_start);
212
                        if(trace_line_end == std::string::npos) break;
213
                        text.push_back('\n');
214
                        trace_line_start = trace.find_first_not_of(' ', trace_line_end + 1);
215
                }
216

217
                // Dump time and throughput measures if available. We pass an `async_event*` instead of a `optional<duration>` to this function because querying
218
                // execution time of SYCL events is comparatively costly (~1µs) and can be skipped when CELERITY_TRACE=fast.
219
                if(opt_event != nullptr) {
220
                        if(const auto native_execution_time = opt_event->get_native_execution_time(); native_execution_time.has_value()) {
221
                                fmt::format_to(std::back_inserter(text), "\nnative execution time: {:.2f}", as_sub_second(*native_execution_time));
222
                                if(info.bytes_processed.has_value()) {
223
                                        fmt::format_to(std::back_inserter(text), "\nthroughput: {:.2f}", as_decimal_throughput(*info.bytes_processed, *native_execution_time));
224
                                }
225
                        }
226
                }
227

228
                for(size_t i = 0; i < info.dependencies.size(); ++i) {
229
                        text += i == 0 ? "\ndepends: " : ", ";
230
                        fmt::format_to(std::back_inserter(text), "I{}", info.dependencies[i]);
231
                }
232
                fmt::format_to(std::back_inserter(text), "\npriority: {}", info.priority);
233

234
                TracyCZoneText(ctx, text.data(), text.size());
235
        }
236

237
        TracyCZoneEnd(ctx);
238
}
239

240
tracy_integration::async_lane_cursor tracy_integration::issue_async_instruction(
241
    instruction_info&& info, const out_of_order_engine::assignment& assignment, std::string&& trace) //
242
{
243
        const auto cursor = get_async_lane_cursor(assignment);
244

245
        auto& lane = async_lanes[cursor.global_lane_id];
246
        lane.zone_queue.push_back({cursor.submission_idx_on_lane, std::move(info), std::move(trace)});
247
        auto& info_enqueued = lane.zone_queue.back().info;
248

249
        if(lane.zone_queue.size() == 1) {
250
                // zone_queue.back() == zone_queue.front(): The instruction starts immediately
251
                assert(!lane.active_zone_ctx.has_value());
252
                TracyFiberEnterHint(lane.fiber_name, lane.fiber_order);
253
                lane.active_zone_ctx = begin_instruction_zone(info_enqueued, false /* eager */);
254
                TracyFiberLeave;
255
        } else if(tracy_detail::is_enabled_full()) {
256
                // The instruction zone will be started as soon as its predecessor is retired - indicate when it was issued
257
                const auto mark = fmt::format("I{} issued", info_enqueued.iid);
258
                TracyFiberEnterHint(lane.fiber_name, lane.fiber_order);
259
                TracyMessageC(mark.data(), mark.size(), tracy::Color::DarkGray);
260
                TracyFiberLeave;
261
        }
262

263
        return cursor;
264
}
265

266
void tracy_integration::retire_async_instruction(const async_lane_cursor& cursor, const async_event& event) {
267
        auto& lane = async_lanes.at(cursor.global_lane_id);
268

269
        TracyFiberEnterHint(lane.fiber_name, lane.fiber_order);
270
        while(!lane.zone_queue.empty() && lane.zone_queue.front().submission_idx_on_lane <= cursor.submission_idx_on_lane) {
271
                // Complete the front() == active zone in the lane.
272
                {
273
                        auto& completed_zone = lane.zone_queue.front();
274
                        assert(lane.active_zone_ctx.has_value());
275
                        end_instruction_zone(*lane.active_zone_ctx, completed_zone.info, completed_zone.trace, &event);
276
                        lane.active_zone_ctx.reset();
277
                        lane.zone_queue.pop_front();
278
                }
279
                // If there remains another (eagerly issued) instruction in the queue after popping the active one, show it as having started immediately.
280
                if(!lane.zone_queue.empty()) {
281
                        auto& eagerly_following_zone = lane.zone_queue.front();
282
                        assert(!lane.active_zone_ctx.has_value());
283
                        lane.active_zone_ctx = begin_instruction_zone(eagerly_following_zone.info, true /* eager */);
284
                }
285
        }
286
        TracyFiberLeave;
287
}
288

289
#endif // CELERITY_DETAIL_ENABLE_TRACY
290

291

292
#if CELERITY_ACCESSOR_BOUNDARY_CHECK
293

294
struct boundary_check_info {
295
        struct accessor_info {
296
                detail::buffer_id buffer_id = 0;
297
                std::string buffer_name;
298
                box<3> accessible_box;
299
        };
300

301
        detail::task_type task_type;
302
        detail::task_id task_id;
303
        std::string task_name;
304

305
        oob_bounding_box* illegal_access_bounding_boxes = nullptr;
306
        std::vector<accessor_info> accessors;
307

308
        boundary_check_info(detail::task_type tt, detail::task_id tid, const std::string& task_name) : task_type(tt), task_id(tid), task_name(task_name) {}
1,990✔
309
};
310

311
#endif // CELERITY_ACCESSOR_BOUNDARY_CHECK
312

313

314
#define CELERITY_DETAIL_TRACE_INSTRUCTION(INSTR, FMT_STRING, ...)                                                                                              \
315
        CELERITY_TRACE("[executor] I{}: " FMT_STRING, INSTR.get_id(), ##__VA_ARGS__);                                                                              \
316
        CELERITY_DETAIL_IF_TRACY_ENABLED_FULL(tracy->last_instruction_trace = fmt::format(FMT_STRING, ##__VA_ARGS__))
317

318

319
struct async_instruction_state {
320
        allocation_id alloc_aid = null_allocation_id; ///< non-null iff instruction is an alloc_instruction
321
        async_event event;
322
        CELERITY_DETAIL_IF_ACCESSOR_BOUNDARY_CHECK(std::unique_ptr<boundary_check_info> oob_info;) // unique_ptr: oob_info is optional and rather large
323
        CELERITY_DETAIL_IF_TRACY_SUPPORTED(std::optional<tracy_integration::async_lane_cursor> tracy_lane_cursor;)
324
};
325

326
struct executor_impl {
327
        const std::unique_ptr<detail::backend> backend;
328
        communicator* const root_communicator;
329
        double_buffered_queue<submission>* const submission_queue;
330
        executor::delegate* const delegate;
331
        const live_executor::policy_set policy;
332

333
        receive_arbiter recv_arbiter{*root_communicator};
334
        out_of_order_engine engine{backend->get_system_info()};
335

336
        bool expecting_more_submissions = true; ///< shutdown epoch has not been executed yet
337
        std::unordered_map<instruction_id, async_instruction_state> in_flight_async_instructions;
338
        std::unordered_map<allocation_id, void*> allocations{{null_allocation_id, nullptr}}; ///< obtained from alloc_instruction or track_user_allocation
339
        std::unordered_map<host_object_id, std::unique_ptr<host_object_instance>> host_object_instances; ///< passed in through track_host_object_instance
340
        std::unordered_map<collective_group_id, std::unique_ptr<communicator>> cloned_communicators;     ///< transitive clones of root_communicator
341
        std::unordered_map<reduction_id, std::unique_ptr<reducer>> reducers; ///< passed in through track_reducer, erased on epochs / horizons
342

343
        std::optional<std::chrono::steady_clock::time_point> last_progress_timestamp; ///< last successful call to check_progress
344
        bool made_progress = false;                                                   ///< progress was made since `last_progress_timestamp`
345
        bool progress_warning_emitted = false;                                        ///< no progress was made since warning was emitted
346

347
        CELERITY_DETAIL_IF_TRACY_SUPPORTED(std::unique_ptr<tracy_integration> tracy;)
348

349
        executor_impl(std::unique_ptr<detail::backend> backend, communicator* root_comm, double_buffered_queue<submission>& submission_queue,
350
            executor::delegate* dlg, const live_executor::policy_set& policy);
351

352
        void run();
353
        void poll_in_flight_async_instructions();
354
        void poll_submission_queue();
355
        void try_issue_one_instruction();
356
        void retire_async_instruction(instruction_id iid, async_instruction_state& async);
357
        void check_progress();
358

359
        // Instruction types that complete synchronously within the executor.
360
        void issue(const clone_collective_group_instruction& ccginstr);
361
        void issue(const split_receive_instruction& srinstr);
362
        void issue(const fill_identity_instruction& fiinstr);
363
        void issue(const reduce_instruction& rinstr);
364
        void issue(const fence_instruction& finstr);
365
        void issue(const destroy_host_object_instruction& dhoinstr);
366
        void issue(const horizon_instruction& hinstr);
367
        void issue(const epoch_instruction& einstr);
368

369
        template <typename Instr>
370
        auto dispatch(const Instr& instr, const out_of_order_engine::assignment& assignment)
371
            // SFINAE: there is a (synchronous) `issue` overload above for the concrete Instr type
372
            -> decltype(issue(instr));
373

374
        // Instruction types that complete asynchronously via async_event, outside the executor.
375
        void issue_async(const alloc_instruction& ainstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
376
        void issue_async(const free_instruction& finstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
377
        void issue_async(const copy_instruction& cinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
378
        void issue_async(const device_kernel_instruction& dkinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
379
        void issue_async(const host_task_instruction& htinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
380
        void issue_async(const send_instruction& sinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
381
        void issue_async(const receive_instruction& rinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
382
        void issue_async(const await_receive_instruction& arinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
383
        void issue_async(const gather_receive_instruction& grinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async);
384

385
        template <typename Instr>
386
        auto dispatch(const Instr& instr, const out_of_order_engine::assignment& assignment)
387
            // SFINAE: there is an `issue_async` overload above for the concrete Instr type
388
            -> decltype(issue_async(instr, assignment, std::declval<async_instruction_state&>()));
389

390
        std::vector<closure_hydrator::accessor_info> make_accessor_infos(const buffer_access_allocation_map& amap) const;
391

392
#if CELERITY_ACCESSOR_BOUNDARY_CHECK
393
        std::unique_ptr<boundary_check_info> attach_boundary_check_info(std::vector<closure_hydrator::accessor_info>& accessor_infos,
394
            const buffer_access_allocation_map& amap, task_type tt, task_id tid, const std::string& task_name) const;
395
#endif
396

397
        void collect(const instruction_garbage& garbage);
398
};
399

400
executor_impl::executor_impl(std::unique_ptr<detail::backend> backend, communicator* const root_comm, double_buffered_queue<submission>& submission_queue,
243✔
401
    executor::delegate* const dlg, const live_executor::policy_set& policy)
243✔
402
    : backend(std::move(backend)), root_communicator(root_comm), submission_queue(&submission_queue), delegate(dlg), policy(policy) //
729✔
403
{
404
        CELERITY_DETAIL_IF_TRACY_ENABLED(tracy = std::make_unique<tracy_integration>();)
405
}
243✔
406

407
void executor_impl::run() {
243✔
408
        // this closure hydrator instantiation is not necessary in normal execution iff device submission threads are enabled,
409
        // but it is still required for testing purposes, so always making it available on this thread is the simplest solution
410
        closure_hydrator::make_available();
243✔
411
        backend->init();
243✔
412

413
        uint8_t check_overflow_counter = 0;
243✔
414
        for(;;) {
415
                if(engine.is_idle()) {
3,290,003✔
416
                        if(!expecting_more_submissions) break; // shutdown complete
2,478✔
417

418
                        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::starve", DarkSlateGray);
419
                        submission_queue->wait_while_empty(); // we are stalled on the scheduler, suspend thread
2,235✔
420
                        last_progress_timestamp.reset();      // do not treat suspension as being stuck
2,235✔
421
                }
422

423
                recv_arbiter.poll_communicator();
3,289,760✔
424
                poll_in_flight_async_instructions();
3,289,760✔
425
                poll_submission_queue();
3,289,760✔
426
                try_issue_one_instruction(); // potentially expensive, so only issue one per loop to continue checking for async completion in between
3,289,760✔
427

428
                if(++check_overflow_counter == 0) { // once every 256 iterations
3,289,760✔
429
                        backend->check_async_errors();
12,777✔
430
                        check_progress();
12,777✔
431
                }
432
        }
433

434
        assert(in_flight_async_instructions.empty());
243✔
435
        // check that for each alloc_instruction, we executed a corresponding free_instruction
436
        assert(std::all_of(allocations.begin(), allocations.end(),
486✔
437
            [](const std::pair<allocation_id, void*>& p) { return p.first == null_allocation_id || p.first.get_memory_id() == user_memory_id; }));
438
        // check that for each track_host_object_instance, we executed a destroy_host_object_instruction
439
        assert(host_object_instances.empty());
243✔
440

441
        closure_hydrator::teardown();
243✔
442
}
243✔
443

444
void executor_impl::poll_in_flight_async_instructions() {
3,289,760✔
445
        // collect completed instruction ids up-front, since retire_async_instruction would alter the execution front
446
        std::vector<instruction_id> completed_now; // std::vector because it will be empty in the common case
3,289,760✔
447
        for(const auto iid : engine.get_execution_front()) {
8,237,489✔
448
                if(in_flight_async_instructions.at(iid).event.is_complete()) { completed_now.push_back(iid); }
4,947,729✔
449
        }
450
        for(const auto iid : completed_now) {
3,297,238✔
451
                retire_async_instruction(iid, in_flight_async_instructions.at(iid));
7,478✔
452
                in_flight_async_instructions.erase(iid);
7,478✔
453
                made_progress = true;
7,478✔
454
        }
455

456
        CELERITY_DETAIL_IF_TRACY_ENABLED(tracy->assigned_instructions_plot.update(in_flight_async_instructions.size()));
457
}
6,579,520✔
458

459
void executor_impl::poll_submission_queue() {
3,289,760✔
460
        for(auto& submission : submission_queue->pop_all()) {
3,293,992✔
461
                CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::fetch", Gray);
462
                matchbox::match(
4,232✔
463
                    submission,
464
                    [&](const instruction_pilot_batch& batch) {
4,232✔
465
                            for(const auto incoming_instr : batch.instructions) {
13,121✔
466
                                    engine.submit(incoming_instr);
9,100✔
467
                            }
468
                            for(const auto& pilot : batch.pilots) {
4,683✔
469
                                    root_communicator->send_outbound_pilot(pilot);
662✔
470
                            }
471
                            CELERITY_DETAIL_IF_TRACY_ENABLED(tracy->assignment_queue_length_plot.update(engine.get_assignment_queue_length()));
472
                    },
4,021✔
473
                    [&](const user_allocation_transfer& uat) {
8,464✔
474
                            assert(uat.aid != null_allocation_id);
113✔
475
                            assert(uat.aid.get_memory_id() == user_memory_id);
113✔
476
                            assert(allocations.count(uat.aid) == 0);
113✔
477
                            allocations.emplace(uat.aid, uat.ptr);
113✔
478
                    },
113✔
479
                    [&](host_object_transfer& hot) {
8,464✔
480
                            assert(host_object_instances.count(hot.hoid) == 0);
30✔
481
                            host_object_instances.emplace(hot.hoid, std::move(hot.instance));
30✔
482
                    },
30✔
483
                    [&](reducer_transfer& rt) {
8,464✔
484
                            assert(reducers.count(rt.rid) == 0);
68✔
485
                            reducers.emplace(rt.rid, std::move(rt.reduction));
68✔
486
                    });
68✔
487
        }
488
}
3,289,760✔
489

490
void executor_impl::retire_async_instruction(const instruction_id iid, async_instruction_state& async) {
7,478✔
491
        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::retire", Brown);
492

493
#if CELERITY_ACCESSOR_BOUNDARY_CHECK
494
        if(async.oob_info != nullptr) {
7,478✔
495
                CELERITY_DETAIL_TRACY_ZONE_SCOPED_V("executor::oob_check", Red, "I{} bounds check", iid);
496
                const auto& oob_info = *async.oob_info;
1,990✔
497
                for(size_t i = 0; i < oob_info.accessors.size(); ++i) {
4,590✔
498
                        if(const auto oob_box = oob_info.illegal_access_bounding_boxes[i].into_box(); !oob_box.empty()) {
2,600✔
499
                                const auto& accessor_info = oob_info.accessors[i];
12✔
500
                                CELERITY_ERROR("Out-of-bounds access detected in {}: accessor {} attempted to access buffer {} indicies between {} and outside the "
12✔
501
                                               "declared range {}.",
502
                                    utils::make_task_debug_label(oob_info.task_type, oob_info.task_id, oob_info.task_name), i,
503
                                    utils::make_buffer_debug_label(accessor_info.buffer_id, accessor_info.buffer_name), oob_box, accessor_info.accessible_box);
504
                        }
505
                }
506
                if(oob_info.illegal_access_bounding_boxes != nullptr /* i.e. there was at least one accessor */) {
1,990!
507
                        backend->debug_free(oob_info.illegal_access_bounding_boxes);
1,990✔
508
                }
509
        }
510
#endif
511

512
        if(spdlog::should_log(spdlog::level::trace)) {
7,478✔
513
                if(const auto native_time = async.event.get_native_execution_time(); native_time.has_value()) {
3,705!
514
                        CELERITY_TRACE("[executor] retired I{} after {:.2f}", iid, as_sub_second(*native_time));
×
515
                } else {
516
                        CELERITY_TRACE("[executor] retired I{}", iid);
3,705!
517
                }
518
        }
519

520
        CELERITY_DETAIL_IF_TRACY_ENABLED(tracy->retire_async_instruction(*async.tracy_lane_cursor, async.event));
521

522
        if(async.alloc_aid != null_allocation_id) {
7,478✔
523
                const auto ptr = async.event.get_result();
1,009✔
524
                assert(ptr != nullptr && "backend allocation returned nullptr");
1,009✔
525
                CELERITY_TRACE("[executor] {} allocated as {}", async.alloc_aid, ptr);
1,009!
526
                assert(allocations.count(async.alloc_aid) == 0);
1,009✔
527
                allocations.emplace(async.alloc_aid, ptr);
1,009✔
528
        }
529

530
        engine.complete_assigned(iid);
7,478✔
531

532
        CELERITY_DETAIL_IF_TRACY_ENABLED(tracy->assignment_queue_length_plot.update(engine.get_assignment_queue_length()));
533
}
7,478✔
534

535
template <typename Instr>
536
auto executor_impl::dispatch(const Instr& instr, const out_of_order_engine::assignment& assignment)
1,622✔
537
    // SFINAE: there is a (synchronous) `issue` overload above for the concrete Instr type
538
    -> decltype(issue(instr)) //
539
{
540
        assert(assignment.target == out_of_order_engine::target::immediate);
1,622✔
541
        assert(!assignment.lane.has_value());
1,622✔
542

543
        const auto iid = instr.get_id(); // instr may dangle after issue()
1,622✔
544

545
        CELERITY_DETAIL_IF_TRACY_SUPPORTED(TracyCZoneCtx ctx;)
546
        CELERITY_DETAIL_IF_TRACY_SUPPORTED(tracy_integration::instruction_info info);
547
        CELERITY_DETAIL_IF_TRACY_ENABLED({
548
                info = tracy_integration::make_instruction_info(instr);
549
                TracyFiberEnterHint("cy-immediate", tracy_detail::lane_order::immediate_lane);
550
                ctx = tracy->begin_instruction_zone(info, false /* eager */);
551
                tracy->assigned_instructions_plot.update(in_flight_async_instructions.size() + 1);
552
        })
553

554
        issue(instr); // completes immediately - instr may now dangle
1,622✔
555

556
        CELERITY_DETAIL_IF_TRACY_ENABLED({
557
                tracy->end_instruction_zone(ctx, info, tracy->last_instruction_trace);
558
                TracyFiberLeave;
559
        })
560

561
        engine.complete_assigned(iid);
1,622✔
562

563
        CELERITY_DETAIL_IF_TRACY_ENABLED({
564
                tracy->assigned_instructions_plot.update(in_flight_async_instructions.size());
565
                tracy->assignment_queue_length_plot.update(engine.get_assignment_queue_length());
566
        })
567
}
1,622✔
568

569
template <typename Instr>
570
auto executor_impl::dispatch(const Instr& instr, const out_of_order_engine::assignment& assignment)
7,478✔
571
    // SFINAE: there is an `issue_async` overload above for the concrete Instr type
572
    -> decltype(issue_async(instr, assignment, std::declval<async_instruction_state&>())) //
573
{
574
        CELERITY_DETAIL_IF_TRACY_SUPPORTED(tracy_integration::instruction_info info);
575
        CELERITY_DETAIL_IF_TRACY_ENABLED(info = tracy_integration::make_instruction_info(instr));
576

577
        auto& async = in_flight_async_instructions.emplace(assignment.instruction->get_id(), async_instruction_state{}).first->second;
14,956✔
578
        issue_async(instr, assignment, async); // stores event in `async` and completes asynchronously
7,478✔
579
        // instr may now dangle
580

581
        CELERITY_DETAIL_IF_TRACY_ENABLED({
582
                async.tracy_lane_cursor = tracy->issue_async_instruction(std::move(info), assignment, std::move(tracy->last_instruction_trace));
583
                tracy->assigned_instructions_plot.update(in_flight_async_instructions.size());
584
        })
585
}
14,956✔
586

587
void executor_impl::try_issue_one_instruction() {
3,289,760✔
588
        auto assignment = engine.assign_one();
3,289,760✔
589
        if(!assignment.has_value()) return;
3,289,760✔
590

591
        CELERITY_DETAIL_IF_TRACY_ENABLED(tracy->assignment_queue_length_plot.update(engine.get_assignment_queue_length()));
592

593
        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::issue", Blue);
594
        matchbox::match(*assignment->instruction, [&](const auto& instr) { dispatch(instr, *assignment); });
18,200✔
595
        made_progress = true;
9,100✔
596
}
597

598
void executor_impl::check_progress() {
12,777✔
599
        if(!policy.progress_warning_timeout.has_value()) return;
12,777!
600

601
        if(made_progress) {
12,777✔
602
                last_progress_timestamp = std::chrono::steady_clock::now();
345✔
603
                progress_warning_emitted = false;
345✔
604
                made_progress = false;
345✔
605
        } else if(last_progress_timestamp.has_value()) {
12,432!
606
                // being stuck either means a deadlock in the user application, or a bug in Celerity.
607
                const auto elapsed_since_last_progress = std::chrono::steady_clock::now() - *last_progress_timestamp;
12,432✔
608
                if(elapsed_since_last_progress > *policy.progress_warning_timeout && !progress_warning_emitted) {
12,432✔
609
                        std::string instr_list;
1✔
610
                        for(auto& [iid, async] : in_flight_async_instructions) {
2✔
611
                                if(!instr_list.empty()) instr_list += ", ";
1!
612
                                fmt::format_to(std::back_inserter(instr_list), "I{}", iid);
1✔
613
                        }
614
                        CELERITY_WARN("[executor] no progress for {:.0f}, might be stuck. Active instructions: {}", as_sub_second(elapsed_since_last_progress),
1✔
615
                            in_flight_async_instructions.empty() ? "none" : instr_list);
616
                        progress_warning_emitted = true;
1✔
617
                }
1✔
618
        }
619
}
620

621
void executor_impl::issue(const clone_collective_group_instruction& ccginstr) {
33✔
622
        const auto original_cgid = ccginstr.get_original_collective_group_id();
33✔
623
        assert(original_cgid != non_collective_group_id);
33✔
624
        assert(original_cgid == root_collective_group_id || cloned_communicators.count(original_cgid) != 0);
33✔
625

626
        const auto new_cgid = ccginstr.get_new_collective_group_id();
33✔
627
        assert(new_cgid != non_collective_group_id && new_cgid != root_collective_group_id);
33✔
628
        assert(cloned_communicators.count(new_cgid) == 0);
33✔
629

630
        CELERITY_DETAIL_TRACE_INSTRUCTION(ccginstr, "clone collective group CG{} -> CG{}", original_cgid, new_cgid);
33✔
631

632
        const auto original_communicator = original_cgid == root_collective_group_id ? root_communicator : cloned_communicators.at(original_cgid).get();
33✔
633
        cloned_communicators.emplace(new_cgid, original_communicator->collective_clone());
33✔
634
}
33✔
635

636

637
void executor_impl::issue(const split_receive_instruction& srinstr) {
20✔
638
        CELERITY_DETAIL_TRACE_INSTRUCTION(srinstr, "split receive {} {}x{} bytes into {} ({}),", srinstr.get_transfer_id(), srinstr.get_requested_region(),
20✔
639
            srinstr.get_element_size(), srinstr.get_dest_allocation_id(), srinstr.get_allocated_box());
640

641
        const auto allocation = allocations.at(srinstr.get_dest_allocation_id());
20✔
642
        recv_arbiter.begin_split_receive(
20✔
643
            srinstr.get_transfer_id(), srinstr.get_requested_region(), allocation, srinstr.get_allocated_box(), srinstr.get_element_size());
644
}
20✔
645

646
void executor_impl::issue(const fill_identity_instruction& fiinstr) {
19✔
647
        CELERITY_DETAIL_TRACE_INSTRUCTION(
19✔
648
            fiinstr, "fill identity {} x{} values for R{}", fiinstr.get_allocation_id(), fiinstr.get_num_values(), fiinstr.get_reduction_id());
649

650
        const auto allocation = allocations.at(fiinstr.get_allocation_id());
19✔
651
        const auto& reduction = *reducers.at(fiinstr.get_reduction_id());
19✔
652
        reduction.fill_identity(allocation, fiinstr.get_num_values());
19✔
653
}
19✔
654

655
void executor_impl::issue(const reduce_instruction& rinstr) {
47✔
656
        CELERITY_DETAIL_TRACE_INSTRUCTION(rinstr, "reduce {} x{} values into {} for R{}", rinstr.get_source_allocation_id(), rinstr.get_num_source_values(),
47✔
657
            rinstr.get_dest_allocation_id(), rinstr.get_reduction_id());
658

659
        const auto gather_allocation = allocations.at(rinstr.get_source_allocation_id());
47✔
660
        const auto dest_allocation = allocations.at(rinstr.get_dest_allocation_id());
47✔
661
        const auto& reduction = *reducers.at(rinstr.get_reduction_id());
47✔
662
        reduction.reduce(dest_allocation, gather_allocation, rinstr.get_num_source_values());
47✔
663
}
47✔
664

665
void executor_impl::issue(const fence_instruction& finstr) { // NOLINT(readability-make-member-function-const, readability-convert-member-functions-to-static)
66✔
666
        CELERITY_DETAIL_TRACE_INSTRUCTION(finstr, "fence");
66✔
667

668
        finstr.get_promise()->fulfill();
66✔
669
}
66✔
670

671
void executor_impl::issue(const destroy_host_object_instruction& dhoinstr) {
30✔
672
        assert(host_object_instances.count(dhoinstr.get_host_object_id()) != 0);
30✔
673
        CELERITY_DETAIL_TRACE_INSTRUCTION(dhoinstr, "destroy H{}", dhoinstr.get_host_object_id());
30✔
674

675
        host_object_instances.erase(dhoinstr.get_host_object_id());
30✔
676
}
30✔
677

678
void executor_impl::issue(const horizon_instruction& hinstr) {
582✔
679
        CELERITY_DETAIL_TRACE_INSTRUCTION(hinstr, "horizon");
582✔
680

681
        if(delegate != nullptr) { delegate->horizon_reached(hinstr.get_horizon_task_id()); }
582!
682
        collect(hinstr.get_garbage());
582✔
683

684
        CELERITY_DETAIL_IF_TRACY_ENABLED(FrameMarkNamed("Horizon"));
685
}
582✔
686

687
void executor_impl::issue(const epoch_instruction& einstr) {
825✔
688
        switch(einstr.get_epoch_action()) {
825!
689
        case epoch_action::none: //
337✔
690
                CELERITY_DETAIL_TRACE_INSTRUCTION(einstr, "epoch");
337✔
691
                break;
337✔
692
        case epoch_action::init: //
243✔
693
                CELERITY_DETAIL_TRACE_INSTRUCTION(einstr, "epoch (init)");
243✔
694
                break;
243✔
695
        case epoch_action::barrier: //
2✔
696
                CELERITY_DETAIL_TRACE_INSTRUCTION(einstr, "epoch (barrier)");
2✔
697
                root_communicator->collective_barrier();
2✔
698
                break;
2✔
699
        case epoch_action::shutdown: //
243✔
700
                CELERITY_DETAIL_TRACE_INSTRUCTION(einstr, "epoch (shutdown)");
243✔
701
                expecting_more_submissions = false;
243✔
702
                break;
243✔
703
        }
704

705
        // Update the runtime last-epoch *before* fulfilling the promise to ensure that the new state can be observed as soon as runtime::sync returns.
706
        // This in turn allows the TDAG to be pruned before any new work is submitted after the epoch.
707
        if(delegate != nullptr) { delegate->epoch_reached(einstr.get_epoch_task_id()); }
825!
708

709
        if(einstr.get_promise() != nullptr) { einstr.get_promise()->fulfill(); }
825✔
710
        collect(einstr.get_garbage());
825✔
711

712
        CELERITY_DETAIL_IF_TRACY_ENABLED(FrameMarkNamed("Horizon"));
713
        CELERITY_DETAIL_IF_TRACY_ENABLED(FrameMark); // top-level "Frame"
714
}
825✔
715

716
void executor_impl::issue_async(const alloc_instruction& ainstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async) {
1,009✔
717
        assert(ainstr.get_allocation_id().get_memory_id() != user_memory_id);
1,009✔
718
        assert(assignment.target == out_of_order_engine::target::alloc_queue);
1,009✔
719
        assert(!assignment.lane.has_value());
1,009✔
720
        assert(assignment.device.has_value() == (ainstr.get_allocation_id().get_memory_id() > host_memory_id));
1,009✔
721

722
        CELERITY_DETAIL_TRACE_INSTRUCTION(ainstr, "alloc {}, {} % {} bytes", ainstr.get_allocation_id(), ainstr.get_size_bytes(), ainstr.get_alignment_bytes());
1,009✔
723

724
        if(assignment.device.has_value()) {
1,009✔
725
                async.event = backend->enqueue_device_alloc(*assignment.device, ainstr.get_size_bytes(), ainstr.get_alignment_bytes());
478✔
726
        } else {
727
                async.event = backend->enqueue_host_alloc(ainstr.get_size_bytes(), ainstr.get_alignment_bytes());
531✔
728
        }
729
        async.alloc_aid = ainstr.get_allocation_id(); // setting alloc_aid != null will make `retire_async_instruction` insert the result into `allocations`
1,009✔
730
}
1,009✔
731

732
void executor_impl::issue_async(const free_instruction& finstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async) {
1,009✔
733
        const auto it = allocations.find(finstr.get_allocation_id());
1,009✔
734
        assert(it != allocations.end());
1,009✔
735
        const auto ptr = it->second;
1,009✔
736
        allocations.erase(it);
1,009✔
737

738
        CELERITY_DETAIL_TRACE_INSTRUCTION(finstr, "free {}", finstr.get_allocation_id());
1,009✔
739

740
        if(assignment.device.has_value()) {
1,009✔
741
                async.event = backend->enqueue_device_free(*assignment.device, ptr);
478✔
742
        } else {
743
                async.event = backend->enqueue_host_free(ptr);
531✔
744
        }
745
}
1,009✔
746

747
void executor_impl::issue_async(const copy_instruction& cinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async) {
2,267✔
748
        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::issue_copy", Green4);
749

750
        assert(assignment.target == out_of_order_engine::target::host_queue || assignment.target == out_of_order_engine::target::device_queue);
2,267✔
751
        assert((assignment.target == out_of_order_engine::target::device_queue) == assignment.device.has_value());
2,267✔
752
        assert(assignment.lane.has_value());
2,267✔
753

754
        CELERITY_DETAIL_TRACE_INSTRUCTION(cinstr, "copy {} ({}) -> {} ({}); {}x{} bytes, {} bytes total", cinstr.get_source_allocation_id(),
2,267✔
755
            cinstr.get_source_layout(), cinstr.get_dest_allocation_id(), cinstr.get_dest_layout(), cinstr.get_copy_region(), cinstr.get_element_size(),
756
            cinstr.get_copy_region().get_area() * cinstr.get_element_size());
757

758
        const auto source_base = allocations.at(cinstr.get_source_allocation_id());
2,267✔
759
        const auto dest_base = allocations.at(cinstr.get_dest_allocation_id());
2,267✔
760

761
        if(assignment.device.has_value()) {
2,267✔
762
                async.event = backend->enqueue_device_copy(*assignment.device, *assignment.lane, source_base, dest_base, cinstr.get_source_layout(),
4,180✔
763
                    cinstr.get_dest_layout(), cinstr.get_copy_region(), cinstr.get_element_size());
2,090✔
764
        } else {
765
                async.event = backend->enqueue_host_copy(*assignment.lane, source_base, dest_base, cinstr.get_source_layout(), cinstr.get_dest_layout(),
354✔
766
                    cinstr.get_copy_region(), cinstr.get_element_size());
177✔
767
        }
768
}
2,267✔
769

770
std::string format_access_log(const buffer_access_allocation_map& map) {
1,490✔
771
        std::string acc_log;
1,490✔
772
        for(size_t i = 0; i < map.size(); ++i) {
2,984✔
773
                auto& aa = map[i];
1,494✔
774
                const auto accessed_bounding_box_in_allocation = box(aa.accessed_bounding_box_in_buffer.get_min() - aa.allocated_box_in_buffer.get_offset(),
4,482✔
775
                    aa.accessed_bounding_box_in_buffer.get_max() - aa.allocated_box_in_buffer.get_offset());
4,482✔
776
                fmt::format_to(std::back_inserter(acc_log), "{} {} {}", i == 0 ? "; accessing" : ",", aa.allocation_id, accessed_bounding_box_in_allocation);
1,494✔
777
        }
778
        return acc_log;
1,490✔
779
}
×
780

781
void executor_impl::issue_async(const device_kernel_instruction& dkinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async) {
917✔
782
        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::issue_device_kernel", Yellow2);
783

784
        assert(assignment.target == out_of_order_engine::target::device_queue);
917✔
785
        assert(assignment.device == dkinstr.get_device_id());
917✔
786
        assert(assignment.lane.has_value());
917✔
787

788
        CELERITY_DETAIL_TRACE_INSTRUCTION(dkinstr, "device kernel on D{}, {}{}; estimated global memory traffic: {:.2f}", dkinstr.get_device_id(),
917✔
789
            dkinstr.get_execution_range(), format_access_log(dkinstr.get_access_allocations()),
790
            as_decimal_size(dkinstr.get_estimated_global_memory_traffic_bytes()));
791

792
        auto accessor_infos = make_accessor_infos(dkinstr.get_access_allocations());
917✔
793
#if CELERITY_ACCESSOR_BOUNDARY_CHECK
794
        async.oob_info = attach_boundary_check_info(
1,834✔
795
            accessor_infos, dkinstr.get_access_allocations(), dkinstr.get_oob_task_type(), dkinstr.get_oob_task_id(), dkinstr.get_oob_task_name());
917✔
796
#endif
797

798
        const auto& reduction_allocs = dkinstr.get_reduction_allocations();
917✔
799
        std::vector<void*> reduction_ptrs(reduction_allocs.size());
2,751✔
800
        for(size_t i = 0; i < reduction_allocs.size(); ++i) {
1,022✔
801
                reduction_ptrs[i] = allocations.at(reduction_allocs[i].allocation_id);
105✔
802
        }
803

804
        async.event = backend->enqueue_device_kernel(
3,668✔
805
            dkinstr.get_device_id(), *assignment.lane, dkinstr.get_launcher(), std::move(accessor_infos), dkinstr.get_execution_range(), reduction_ptrs);
2,751✔
806
}
1,834✔
807

808
void executor_impl::issue_async(const host_task_instruction& htinstr, const out_of_order_engine::assignment& assignment, async_instruction_state& async) {
1,178✔
809
        assert(assignment.target == out_of_order_engine::target::host_queue);
1,178✔
810
        assert(!assignment.device.has_value());
1,178✔
811
        assert(assignment.lane.has_value());
1,178✔
812

813
        CELERITY_DETAIL_TRACE_INSTRUCTION(htinstr, "host task, {}{}", htinstr.get_execution_range(), format_access_log(htinstr.get_access_allocations()));
1,178✔
814

815
        auto accessor_infos = make_accessor_infos(htinstr.get_access_allocations());
1,178✔
816
#if CELERITY_ACCESSOR_BOUNDARY_CHECK
817
        async.oob_info = attach_boundary_check_info(
2,356✔
818
            accessor_infos, htinstr.get_access_allocations(), htinstr.get_oob_task_type(), htinstr.get_oob_task_id(), htinstr.get_oob_task_name());
1,178✔
819
#endif
820

821
        const auto collective_comm =
822
            htinstr.get_collective_group_id() != non_collective_group_id ? cloned_communicators.at(htinstr.get_collective_group_id()).get() : nullptr;
1,178!
823

824
        async.event = backend->enqueue_host_task(
4,712✔
825
            *assignment.lane, htinstr.get_launcher(), std::move(accessor_infos), htinstr.get_global_range(), htinstr.get_execution_range(), collective_comm);
3,534✔
826
}
2,356✔
827

828
void executor_impl::issue_async(
662✔
829
    const send_instruction& sinstr, [[maybe_unused]] const out_of_order_engine::assignment& assignment, async_instruction_state& async) //
830
{
831
        assert(assignment.target == out_of_order_engine::target::immediate);
662✔
832

833
        CELERITY_DETAIL_TRACE_INSTRUCTION(sinstr, "send {}+{}, {}x{} bytes to N{} (MSG{})", sinstr.get_source_allocation_id(),
662✔
834
            sinstr.get_offset_in_source_allocation(), sinstr.get_send_range(), sinstr.get_element_size(), sinstr.get_dest_node_id(), sinstr.get_message_id());
835

836
        const auto allocation_base = allocations.at(sinstr.get_source_allocation_id());
662✔
837
        const communicator::stride stride{
662✔
838
            sinstr.get_source_allocation_range(),
662✔
839
            subrange<3>{sinstr.get_offset_in_source_allocation(), sinstr.get_send_range()},
840
            sinstr.get_element_size(),
662✔
841
        };
662✔
842
        async.event = root_communicator->send_payload(sinstr.get_dest_node_id(), sinstr.get_message_id(), allocation_base, stride);
662✔
843
}
662✔
844

845
void executor_impl::issue_async(
370✔
846
    const receive_instruction& rinstr, [[maybe_unused]] const out_of_order_engine::assignment& assignment, async_instruction_state& async) //
847
{
848
        assert(assignment.target == out_of_order_engine::target::immediate);
370✔
849

850
        CELERITY_DETAIL_TRACE_INSTRUCTION(rinstr, "receive {} {}x{} bytes into {} ({})", rinstr.get_transfer_id(), rinstr.get_requested_region(),
370✔
851
            rinstr.get_element_size(), rinstr.get_dest_allocation_id(), rinstr.get_allocated_box());
852

853
        const auto allocation = allocations.at(rinstr.get_dest_allocation_id());
370✔
854
        async.event =
370✔
855
            recv_arbiter.receive(rinstr.get_transfer_id(), rinstr.get_requested_region(), allocation, rinstr.get_allocated_box(), rinstr.get_element_size());
370✔
856
}
370✔
857

858
void executor_impl::issue_async(
48✔
859
    const await_receive_instruction& arinstr, [[maybe_unused]] const out_of_order_engine::assignment& assignment, async_instruction_state& async) //
860
{
861
        assert(assignment.target == out_of_order_engine::target::immediate);
48✔
862

863
        CELERITY_DETAIL_TRACE_INSTRUCTION(arinstr, "await receive {} {}", arinstr.get_transfer_id(), arinstr.get_received_region());
48✔
864

865
        async.event = recv_arbiter.await_split_receive_subregion(arinstr.get_transfer_id(), arinstr.get_received_region());
48✔
866
}
48✔
867

868
void executor_impl::issue_async(
18✔
869
    const gather_receive_instruction& grinstr, [[maybe_unused]] const out_of_order_engine::assignment& assignment, async_instruction_state& async) //
870
{
871
        assert(assignment.target == out_of_order_engine::target::immediate);
18✔
872

873
        CELERITY_DETAIL_TRACE_INSTRUCTION(
18✔
874
            grinstr, "gather receive {} into {}, {} bytes / node", grinstr.get_transfer_id(), grinstr.get_dest_allocation_id(), grinstr.get_node_chunk_size());
875

876
        const auto allocation = allocations.at(grinstr.get_dest_allocation_id());
18✔
877
        async.event = recv_arbiter.gather_receive(grinstr.get_transfer_id(), allocation, grinstr.get_node_chunk_size());
18✔
878
}
18✔
879

880
void executor_impl::collect(const instruction_garbage& garbage) {
1,407✔
881
        for(const auto rid : garbage.reductions) {
1,474✔
882
                assert(reducers.count(rid) != 0);
67✔
883
                reducers.erase(rid);
67✔
884
        }
885
        for(const auto aid : garbage.user_allocations) {
1,520✔
886
                assert(aid.get_memory_id() == user_memory_id);
113✔
887
                assert(allocations.count(aid) != 0);
113✔
888
                allocations.erase(aid);
113✔
889
        }
890
}
1,407✔
891

892
std::vector<closure_hydrator::accessor_info> executor_impl::make_accessor_infos(const buffer_access_allocation_map& amap) const {
2,095✔
893
        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::make_accessor_info", Magenta3);
894

895
        std::vector<closure_hydrator::accessor_info> accessor_infos(amap.size());
6,285✔
896
        for(size_t i = 0; i < amap.size(); ++i) {
4,695✔
897
                const auto ptr = allocations.at(amap[i].allocation_id);
2,600✔
898
                accessor_infos[i] = closure_hydrator::accessor_info{ptr, amap[i].allocated_box_in_buffer, amap[i].accessed_bounding_box_in_buffer};
2,600✔
899
        }
900
        return accessor_infos;
2,095✔
901
}
×
902

903
#if CELERITY_ACCESSOR_BOUNDARY_CHECK
904
std::unique_ptr<boundary_check_info> executor_impl::attach_boundary_check_info(std::vector<closure_hydrator::accessor_info>& accessor_infos,
2,095✔
905
    const buffer_access_allocation_map& amap, task_type tt, task_id tid, const std::string& task_name) const //
906
{
907
        if(amap.empty()) return nullptr;
2,095✔
908

909
        CELERITY_DETAIL_TRACY_ZONE_SCOPED("executor::oob_init", Red);
910
        auto oob_info = std::make_unique<boundary_check_info>(tt, tid, task_name);
1,990✔
911

912
        oob_info->illegal_access_bounding_boxes = static_cast<oob_bounding_box*>(backend->debug_alloc(amap.size() * sizeof(oob_bounding_box)));
1,990✔
913
        std::uninitialized_default_construct_n(oob_info->illegal_access_bounding_boxes, amap.size());
1,990✔
914

915
        oob_info->accessors.resize(amap.size());
1,990✔
916
        for(size_t i = 0; i < amap.size(); ++i) {
4,590✔
917
                oob_info->accessors[i] = boundary_check_info::accessor_info{amap[i].oob_buffer_id, amap[i].oob_buffer_name, amap[i].accessed_bounding_box_in_buffer};
2,600✔
918
                accessor_infos[i].out_of_bounds_indices = oob_info->illegal_access_bounding_boxes + i;
2,600✔
919
        }
920
        return oob_info;
1,990✔
921
}
1,990✔
922
#endif // CELERITY_ACCESSOR_BOUNDARY_CHECK
923

924
} // namespace celerity::detail::live_executor_detail
925

926
namespace celerity::detail {
927

928
live_executor::live_executor(std::unique_ptr<backend> backend, std::unique_ptr<communicator> root_comm, executor::delegate* const dlg, const policy_set& policy)
243✔
929
    : m_root_comm(std::move(root_comm)), m_thread(&live_executor::thread_main, this, std::move(backend), dlg, policy) {}
243✔
930

931
live_executor::~live_executor() {
486✔
932
        m_thread.join(); // thread_main will exit only after executing shutdown epoch
243✔
933
}
486✔
934

935
void live_executor::track_user_allocation(const allocation_id aid, void* const ptr) {
113✔
936
        m_submission_queue.push(live_executor_detail::user_allocation_transfer{aid, ptr});
113✔
937
}
113✔
938

939
void live_executor::track_host_object_instance(const host_object_id hoid, std::unique_ptr<host_object_instance> instance) {
30✔
940
        assert(instance != nullptr);
30✔
941
        m_submission_queue.push(live_executor_detail::host_object_transfer{hoid, std::move(instance)});
30✔
942
}
30✔
943

944
void live_executor::track_reducer(const reduction_id rid, std::unique_ptr<reducer> reducer) {
68✔
945
        assert(reducer != nullptr);
68✔
946
        m_submission_queue.push(live_executor_detail::reducer_transfer{rid, std::move(reducer)});
68✔
947
}
68✔
948

949
void live_executor::submit(std::vector<const instruction*> instructions, std::vector<outbound_pilot> pilots) {
4,021✔
950
        m_submission_queue.push(live_executor_detail::instruction_pilot_batch{std::move(instructions), std::move(pilots)});
4,021!
951
}
4,021✔
952

953
void live_executor::thread_main(std::unique_ptr<backend> backend, executor::delegate* const dlg, const policy_set& policy) {
243✔
954
        name_and_pin_and_order_this_thread(named_threads::thread_type::executor);
243✔
955
        live_executor_detail::executor_impl(std::move(backend), m_root_comm.get(), m_submission_queue, dlg, policy).run();
243✔
956
}
243✔
957

958
} // namespace celerity::detail
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