MS0V8 mlir-stage-09-v1 passing 5000/5000

Selected stage: loom-lower-scf-to-dfg. Test exactly output obligation mlir-obligation:d927678b3d8d4549df5bd40f with its governing context; report any stage attr

Test report

5000generated samples
100.0%input coverage
100.0%output coverage
+6lines added
+8branches added
78.7%confidence
5000/5000checker passes
Confidence details

Estimated confidence: 78.7%. Conservative lower bound: 62.0% (95% level).

uniform over observed structural partitions. observed partitions; unseen partitions have no supplied target weight. Partitions use recursive production counts and derivation depth. Behavioral classes combine each input’s compiler coverage and assertion decision paths. Catalog partitions with no observations retain maximal missing mass.

Code coverage details

Baseline tests: Every tracked test file with a RUN line invoking loom-raise-opt (77 files); other executables and native unit tests excluded

Source fileBaseline coverageBaseline + inputContributing input
…/lib/Dataflow/IR/DataflowActorSemantics.cppMS0V
1089/1621lines67.2%
747/1330branches56.2%
1090/1621lines67.2%+1
750/1330branches56.4%+3
+1 line · +3 branchesseed 109 · 57 → 57 linesOpen PBT Review PR
+1 line · +3 branchesseed 39 · 65 → 58 linesOpen PBT Review PR
+1 line · +3 branchesseed 76 · 65 → 60 linesOpen PBT Review PR
+1 line · +3 branchesseed 230 · 64 → 63 linesOpen PBT Review PR
1 newly covered line · 3 newly covered branches
283    return {};284  auto invariant = demux.getInput().getDefiningOp<dataflow::InvariantOp>();285  if (!invariant || invariant.getCond() != stream.getPhase() ||true branchtrue branch286      invariant.getOutput() != demux.getInput())287    return {};288  return invariant.getInit();289}⋮306    auto stream = demux.getSel().getDefiningOp<dataflow::StreamOp>();307    if (stream && demux.getSel() == stream.getPhase() &&308        result.getResultNumber() == 1 && unwrapPhaseProjection(value, stream))false branch309      return;310  }
…/lib/Dataflow/IR/DataflowGraphValidation.cppMS0V
1033/1540lines67.1%
571/1056branches54.1%
1038/1540lines67.4%+5
575/1056branches54.5%+4
+1 branchseed 39 · 65 → 58 linesOpen PBT Review PR
+5 lines · +3 branchesseed 76 · 65 → 60 linesOpen PBT Review PR
+4 lines · +2 branchesseed 230 · 64 → 63 linesOpen PBT Review PR
+1 line · +2 branchesseed 335 · 65 → 62 linesOpen PBT Review PR
5 newly covered lines · 4 newly covered branches
711712  void inheritAssumptions(const GraphCardinalityAnalysis &parent) {713    for (mlir::Value value : parent.exactOneAssumptions)true branch714      insertExactOneAssumption(value);715    for (mlir::Value value : parent.alignedCarryAssumptions)716      insertAlignedCarryAssumption(value);⋮1121    };11221123    if (auto stream = childPhase.getDefiningOp<dataflow::StreamOp>()) {false branch1124      if (childPhase != stream.getPhase() || !assumeExact(stream.getInit()) ||1125          !assumeExact(stream.getLimit()) || !assumeExact(stream.getStep()))1126        return false;1127    } else {1128      llvm::SmallVector<dataflow::CarryOp, 4> carries;1129      graphIndex->collectCarries(childPhase, carries);1130      if (carries.empty())false branch1131        return false;1132    }11331134    llvm::SmallVector<mlir::Value, 4> inputs;⋮1435    graphIndex->collectCarries(phase, phaseCarries);1436    for (dataflow::CarryOp carry : phaseCarries)1437      if (isExactOne(carry.getInit()))false branch1438        carries.push_back(carry);1439  }
…/lib/Dataflow/IR/OperationSchema.cppMS0V
274/716lines38.3%
127/350branches36.3%
274/716lines38.3%+0
128/350branches36.6%+1
+1 branchseed 39 · 65 → 58 linesOpen PBT Review PR
+1 branchseed 76 · 65 → 60 linesOpen PBT Review PR
+1 branchseed 230 · 64 → 63 linesOpen PBT Review PR
1 newly covered branch
736      dataflow::operationSchemaOf(rhsOp);737  if (!lhsSchema || lhsSchema != rhsSchema ||738      dataflow::actorKind(*lhsSchema) !=true branch739          dataflow::CanonicalDataflowActorKind::Compute ||740      !dataflow::isDeterministic(*lhsSchema))741    return false;
Files without added coverage
…/loom/include/Common/Artifact.hMS0V
13/37lines35.1%
3/18branches16.7%
13/37lines35.1%+0
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Open PBT
…/include/Dataflow/IR/OperationSchema.hMS0V
8/91lines8.8%
5/66branches7.6%
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Open PBT
…/include/Frontend/Lowering/StreamLoopAttrs.hMS0V
31/41lines75.6%
10/14branches71.4%
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Open PBT
…/loom/lib/Common/DiagnosticVerbosity.cppMS0V
12/41lines29.3%
1/28branches3.6%
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Open PBT
…/loom/lib/Common/IndexWidth.cppMS0V
63/84lines75.0%
28/42branches66.7%
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Open PBT
…/loom/lib/Common/InvocationDiagnosticLog.cppMS0V
6/100lines6.0%
1/70branches1.4%
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Open PBT
…/lib/Dataflow/IR/DataflowChannelOps.cppMS0V
59/88lines67.0%
13/38branches34.2%
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Open PBT
…/lib/Dataflow/IR/DataflowDialect.cppMS0V
22/32lines68.8%
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…/lib/Dataflow/IR/DataflowFunctionLikeOps.cppMS0V
693/1097lines63.2%
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Open PBT
…/lib/Dataflow/IR/DataflowGraphCausality.cppMS0V
169/189lines89.4%
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+2 branchesseed 109 · 57 → 57 linesOpen PBT Review PR
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…/lib/Dataflow/IR/DataflowMemoryContracts.cppMS0V
198/371lines53.4%
98/218branches45.0%
198/371lines53.4%+0
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Open PBT
…/lib/Dataflow/IR/DataflowOps.cppMS0V
270/410lines65.9%
103/228branches45.2%
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103/228branches45.2%+0
Open PBT
…/lib/Dataflow/IR/DataflowProgramValidation.cppMS0V
367/502lines73.1%
156/276branches56.5%
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Open PBT
…/lib/Dataflow/IR/DataflowSyncRendezvous.cppMS0V
21/21lines100.0%
6/12branches50.0%
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Open PBT
…/lib/Dataflow/IR/DataflowThreadCompletion.cppMS0V
288/361lines79.8%
148/218branches67.9%
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Open PBT
…/lib/Dataflow/IR/DataflowVectorSemantics.cppMS0V
81/121lines66.9%
53/106branches50.0%
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Open PBT
…/lib/Dataflow/IR/OperationSchemaCodecInternal.hMS0V
28/120lines23.3%
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Open PBT
…/lib/Dataflow/IR/OperationSchemaTypeCodec.cppMS0V
85/516lines16.5%
55/374branches14.7%
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Open PBT
…/lib/Dataflow/Transforms/DataflowRewritePass.cppMS0V
338/559lines60.5%
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Open PBT
…/lib/Frontend/Analysis/MemoryProvenance.cppMS0V
153/317lines48.3%
80/326branches24.5%
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80/326branches24.5%+0
Open PBT
…/lib/Frontend/IR/LoomDialect.cppMS0V
6/6lines100.0%
branchesnot measured
6/6lines100.0%+0
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Open PBT
…/lib/Frontend/IR/LoomOps.cppMS0V
120/184lines65.2%
71/112branches63.4%
120/184lines65.2%+0
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Open PBT
…/lib/Frontend/Lowering/ExactMemRefLayout.cppMS0V
61/143lines42.7%
26/80branches32.5%
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Open PBT
…/lib/Frontend/Lowering/ExpandGraphMemrefCopyPass.cppMS0V
79/90lines87.8%
20/22branches90.9%
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Open PBT
…/lib/Frontend/Lowering/GraphIndexLowering.cppMS0V
260/288lines90.3%
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Open PBT
…/lib/Frontend/Lowering/GraphParallelLowering.cppMS0V
651/1243lines52.4%
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Open PBT
…/lib/Frontend/Lowering/GraphRegionAdmission.cppMS0V
58/110lines52.7%
29/92branches31.5%
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Open PBT
…/lib/Frontend/Lowering/GraphRegionLowering.cppMS0V
1416/1626lines87.1%
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Open PBT
…/lib/Frontend/Lowering/GraphStreamBoundaryLowering.cppMS0V
934/1072lines87.1%
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…/lib/Frontend/Lowering/GraphStreamBoundaryLowering.hMS0V
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Open PBT
…/lib/Frontend/Lowering/LowerForToGraphPass.cppMS0V
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…/lib/Frontend/Lowering/LowerForallToThreadPass.cppMS0V
30/34lines88.2%
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…/lib/Frontend/Lowering/LowerGraphConstantsPass.cppMS0V
80/83lines96.4%
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…/lib/Frontend/Lowering/LowerGraphMemoryPass.cppMS0V
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…/lib/Frontend/Lowering/Pipeline.cppMS0V
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…/lib/Frontend/Lowering/RankedMemRefLowering.cppMS0V
60/133lines45.1%
27/94branches28.7%
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…/lib/Frontend/Raising/DeduplicateSCFWhileStatePass.cppMS0V
13/135lines9.6%
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…/lib/Frontend/Raising/LLVMArithToArithPass.cppMS0V
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…/lib/Frontend/Raising/LLVMCfToCfPass.cppMS0V
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…/lib/Frontend/Raising/LiftCFToSCFPass.cppMS0V
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…/lib/Frontend/Raising/MaterializeFMulAddPass.cppMS0V
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…/lib/Frontend/Raising/NormalizeLiftedSCFExitPass.cppMS0V
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…/lib/Frontend/Raising/Pipeline.cppMS0V
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…/lib/Frontend/Raising/SCFForToForallPass.cppMS0V
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…/lib/Frontend/Raising/SCFWhileToForPass.cppMS0V
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…/loom/tools/loom-raise-opt/loom-raise-opt.cppMS0V
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Review PR: Regression test from seed 109

Review PR: Regression test from seed 39

Review PR: Regression test from seed 76

Review PR: Regression test from seed 230

Review PR: Regression test from seed 335

Source passages for this PBT

The Structured Transfer Algebra defines graph-owned parallel composition only after the Structured Program Candidate has materialized its P[] ownership and schedule form in semantic SCF. That fixed-domain SCF is the transient input representation for mechanical lowering. It is recursively replicated into static lanes and removed; no parallel control op or schedule record survives in canonical graph IR.

docs/spec-compiler-part-3-dfg.md lines 127–132

Minimized conforming example

57lines−0lines removed

Review regression test PR

Minimized passing input
llvm.func @imported_kernel(i64)

dataflow.thread private @t0 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  %rzero = arith.constant 0 : index
  %rval = arith.constant 3 : index
  memref.store %rval, %scratch[%rzero] : memref<8xindex>
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 4 : index
      %kv = arith.constant 7 : index
        scf.parallel (%pi) = (%c0) to (%cw) step (%c1) {
          scf.parallel (%pj) = (%c0) to (%cw) step (%c1) {
            memref.store %kv, %tile[%pi, %pj] : memref<4x4xindex>
            scf.reduce
          }
          scf.reduce
        }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t0_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

dataflow.thread private @t1 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 4 : index
      %kv = arith.constant 7 : index
      scf.for %oi = %c0 to %limit step %c1 {
        scf.parallel (%lane) = (%c0) to (%cw) step (%c1) {
          %bcond = arith.cmpi slt, %lane, %cw : index
          scf.if %bcond {
            memref.store %kv, %target[%lane] : memref<8xindex>
          }
          scf.reduce
        }
      }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t1_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

Conditions

input conditions — what generated inputs satisfy

Conforming input

dataflow.thread private @t0 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  %rzero = arith.constant 0 : index
  %rval = arith.constant 3 : index
  memref.store %rval, %scratch[%rzero] : memref<8xindex>
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 2 : index
      %kv = arith.constant 7 : index
      scf.for %oi = %c0 to %limit step %c1 {
        scf.parallel (%lane) = (%c0) to (%cw) step (%c1) {
          %bcond = arith.cmpi slt, %lane, %cw : index
          scf.if %bcond {
            memref.store %kv, %target[%lane] : memref<8xindex>
          }
          scf.reduce
        }
      }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t0_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

dataflow.thread private @t1 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  %rzero = arith.constant 0 : index
  %rval = arith.constant 3 : index
  memref.store %rval, %scratch[%rzero] : memref<8xindex>
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 2 : index
      %kv = arith.constant 7 : index
        scf.parallel (%pi) = (%c0) to (%cw) step (%c1) {
          scf.parallel (%pj) = (%c0) to (%cw) step (%c1) {
            memref.store %kv, %tile[%pi, %pj] : memref<4x4xindex>
            scf.reduce
          }
          scf.reduce
        }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t1_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

2 linked-input-69 · linked input 69

The recursive lowering contract accepts arbitrary nesting of scf.if, source-sequential scf.for, scf.while, and fixed-width graph-owned scf.parallel or effect-form scf.forall. A graph-owned parallel op must have a compile-time fixed domain, and all facts needed to establish ownership, width, and cross-lane legality must be present in the current Structured Program Candidate's semantic IR and resolved lowering config.

docs/spec-compiler-part-3-dfg.md lines 110–117

3 linked-input-76 · linked input 76

Input to graph extraction is an MLIR module containing module-scope dataflow.thread definitions. Every selected SpatialCore candidate is already materialized as a loom.spatial_region inside exactly one thread.

docs/spec-compiler-part-3-dfg.md lines 92–100

4 linked-input-83 · linked input 83

This section records Dataflow templates for SCF boundaries. Recursive lowering applies the same transfer to scf.if, normalized scf.index_switch, source-sequential scf.for, scf.while, and fixed-domain effect-form scf.parallel / scf.forall.

docs/spec-compiler-part-3-dfg.md lines 1454–1461

5 linked-input-92 · linked input 92

Dynamic-width, resource-mapped, and result or reduction forms fail before any graph is mutated; the graph owner does not infer ownership, serialization, unrolling, or reduction order.

docs/spec-compiler-part-3-dfg.md lines 117–120

6 linked-input-176 · linked input 176

The Structured Transfer Algebra defines graph-owned parallel composition only after the Structured Program Candidate has materialized its P[] ownership and schedule form in semantic SCF. That fixed-domain SCF is the transient input representation for mechanical lowering.

docs/spec-compiler-part-3-dfg.md lines 127–132

7 linked-input-203 · linked input 203

Between Parts 2 and 3, SCF optimization and DSE produce the selected Structured Program Candidate. That domain owns all performance-distinct structured choices.

docs/spec-compiler-part-3-dfg.md lines 87–90

Generator grammar · candidate.pg
// Structured Program Candidate handoff modules for loom-lower-scf-to-dfg.
// Module scope: optional llvm.func / func.func callables plus dataflow.thread
// definitions; every spatial candidate is an explicit loom.spatial_region in
// exactly one thread, holding fixed-domain graph-owned parallel SCF with
// arbitrary nesting of scf.if / scf.for / scf.while.

start: {new TCOUNT = random.randint(1, 2); new TI = 0; new PRELUDE = random.choice(['none', 'llvm', 'func'])}
       prelude threads;

prelude: (PRELUDE == 'none') ''
       | (PRELUDE == 'llvm') 'llvm.func @imported_kernel(i64)\n\n'
       | (PRELUDE == 'func') 'func.func @native_helper(%arg0: index) -> index {\n  return %arg0 : index\n}\n\n';

threads: (TI < TCOUNT) thread_def {TI += 1} threads
       | (TI == TCOUNT) '';

thread_def: {new RESIDENT = random.choice([0, 1]); new W = random.choice([1, 2, 4]); new PAR = random.choice([0, 1, 2]); new OUTER = random.choice([0, 1, 2]); new INNER = random.choice([0, 1, 2, 3])}
    'dataflow.thread private @t' tname ' domain(#dataflow.thread_domain<dense>)(\n'
    '    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,\n'
    '    %n: index) ctrl (%ctrl: none) {\n'
    resident
    spatial_region
    '  dataflow.thread.yield\n}\n\n';

tname: [str(TI)];

// InstructionCore-resident thread body code outside the spatial boundary.
resident: (RESIDENT == 0) ''
        | (RESIDENT == 1) '  %rzero = arith.constant 0 : index\n  %rval = arith.constant 3 : index\n  memref.store %rval, %scratch[%rzero] : memref<8xindex>\n';

spatial_region:
    '  "loom.spatial_region"(%n, %memory, %grid)\n'
    '      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,\n'
    '        resultSegmentSizes = array<i32: 0, 0>}> ({\n'
    '    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):\n'
    consts
    outer
    '      "loom.spatial_yield"()\n'
    '          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()\n'
    '  }) {graph_name = "g_t' tname '_0", source_maps = []} :\n'
    '      (index, memref<8xindex>, memref<4x4xindex>) -> ()\n';

consts: '      %c0 = arith.constant 0 : index\n'
        '      %c1 = arith.constant 1 : index\n'
        '      %cw = arith.constant ' width ' : index\n'
        '      %kv = arith.constant 7 : index\n';

width: [str(W)];

// Optional sequential nesting around the graph-owned parallel op.
outer: (OUTER == 0) par
     | (OUTER == 1) '      %ocond = arith.cmpi slt, %c0, %limit : index\n      scf.if %ocond {\n' par '      }\n'
     | (OUTER == 2) '      scf.for %oi = %c0 to %limit step %c1 {\n' par '      }\n';

// Fixed-width graph-owned parallel composition: effect-form scf.forall or
// fixed-domain scf.parallel with compile-time constant bounds.
par: (PAR == 0) '        scf.forall (%lane) in (' width ') {\n' inner '        }\n'
   | (PAR == 1) '        scf.parallel (%lane) = (%c0) to (%cw) step (%c1) {\n' inner '          scf.reduce\n        }\n'
   | (PAR == 2) '        scf.parallel (%pi) = (%c0) to (%cw) step (%c1) {\n          scf.parallel (%pj) = (%c0) to (%cw) step (%c1) {\n            memref.store %kv, %tile[%pi, %pj] : memref<4x4xindex>\n            scf.reduce\n          }\n          scf.reduce\n        }\n';

// Lane-disjoint body: arbitrary nesting of scf.if / scf.for / scf.while.
inner: (INNER == 0) '          memref.store %kv, %target[%lane] : memref<8xindex>\n'
     | (INNER == 1) '          %bcond = arith.cmpi slt, %lane, %cw : index\n          scf.if %bcond {\n            memref.store %kv, %target[%lane] : memref<8xindex>\n          }\n'
     | (INNER == 2) '          %bsum = scf.for %bi = %c0 to %limit step %c1 iter_args(%bacc = %lane) -> (index) {\n            %bnext = arith.addi %bacc, %c1 : index\n            scf.yield %bnext : index\n          }\n          memref.store %bsum, %target[%lane] : memref<8xindex>\n'
     | (INNER == 3) '          %wres = scf.while (%wi = %c0) : (index) -> index {\n            %wc = arith.cmpi slt, %wi, %limit : index\n            scf.condition(%wc) %wi : index\n          } do {\n          ^bb0(%wb: index):\n            %wn = arith.addi %wb, %c1 : index\n            scf.yield %wn : index\n          }\n          memref.store %wres, %target[%lane] : memref<8xindex>\n';

output condition — what every compiled pair must satisfy

no_parallel_control_survives_in_graph_ir · 3 assertion sites

derived from 1 passage: 1selected-output

The Structured Transfer Algebra defines graph-owned parallel composition only after the Structured Program Candidate has materialized its P[] ownership and schedule form in semantic SCF. That fixed-domain SCF is the transient input representation for mechanical lowering.

Executable output condition · candidate.spct
postcondition no_parallel_control_survives_in_graph_ir {
  language v0;
  vocabulary mlir = mlir.generic@1;

  metadata {
    project = "PolyArch/loom";
    revision = "48615bc5925ef4b9db8b4550b5d4322933cf4b7b";
    source = "docs/spec-compiler-part-3-dfg.md:L127-L132";
  }

  constraints {
    let graphs = seq { g | g in output.operations where g.name == "dataflow.graph" };

    forall g in graphs {
      assert no_parallel_control_op_survives:
        none op in mlir::descendants(g) where
          op.name == "scf.parallel" or
          op.name == "scf.forall" or
          op.name == "scf.forall.in_parallel" or
          op.name == "scf.reduce" or
          op.name == "scf.reduce.return" or
          op.name == "scf.parallel_insert_slice" or
          op.name == "dataflow.parallel" or
          op.name == "dataflow.reduce";

      assert no_schedule_record_survives:
        none op in mlir::descendants(g) where
          "mapping" in op.attributes or
          "loom.parallel_schedule" in op.attributes or
          "loom.parallel_group" in op.attributes;

      assert graph_carries_no_schedule_record:
        not ("mapping" in g.attributes) and
        not ("loom.parallel_schedule" in g.attributes) and
        not ("loom.parallel_group" in g.attributes);
    }
  }
}
Minimized passing input
llvm.func @imported_kernel(i64)

dataflow.thread private @t0 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  %rzero = arith.constant 0 : index
  %rval = arith.constant 3 : index
  memref.store %rval, %scratch[%rzero] : memref<8xindex>
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 4 : index
      %kv = arith.constant 7 : index
        scf.parallel (%pi) = (%c0) to (%cw) step (%c1) {
          scf.parallel (%pj) = (%c0) to (%cw) step (%c1) {
            memref.store %kv, %tile[%pi, %pj] : memref<4x4xindex>
            scf.reduce
          }
          scf.reduce
        }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t0_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

dataflow.thread private @t1 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 4 : index
      %kv = arith.constant 7 : index
      scf.for %oi = %c0 to %limit step %c1 {
        scf.parallel (%lane) = (%c0) to (%cw) step (%c1) {
          %bcond = arith.cmpi slt, %lane, %cw : index
          scf.if %bcond {
            memref.store %kv, %target[%lane] : memref<8xindex>
          }
          scf.reduce
        }
      }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t1_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

Evidence

run20260911-082633started2026-09-11T08:26:34Zsubjectloom-raise-optsubject revision48615bc5925e

run results

5000saved inputs
5000accepted

output condition verdicts

5000pass
Additional trace diagnostics

raw trace evidence

1000accepted trace samples
213distinct trace classes
53classes seen once
sample pair · seed 0

generated input

dataflow.thread private @t0 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  %rzero = arith.constant 0 : index
  %rval = arith.constant 3 : index
  memref.store %rval, %scratch[%rzero] : memref<8xindex>
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 2 : index
      %kv = arith.constant 7 : index
      scf.for %oi = %c0 to %limit step %c1 {
        scf.parallel (%lane) = (%c0) to (%cw) step (%c1) {
          %bcond = arith.cmpi slt, %lane, %cw : index
          scf.if %bcond {
            memref.store %kv, %target[%lane] : memref<8xindex>
          }
          scf.reduce
        }
      }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t0_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

dataflow.thread private @t1 domain(#dataflow.thread_domain<dense>)(
    %scratch: memref<8xindex>, %memory: memref<8xindex>, %grid: memref<4x4xindex>,
    %n: index) ctrl (%ctrl: none) {
  %rzero = arith.constant 0 : index
  %rval = arith.constant 3 : index
  memref.store %rval, %scratch[%rzero] : memref<8xindex>
  "loom.spatial_region"(%n, %memory, %grid)
      <{operandSegmentSizes = array<i32: 1, 0, 2, 0>,
        resultSegmentSizes = array<i32: 0, 0>}> ({
    ^bb0(%limit: index, %target: memref<8xindex>, %tile: memref<4x4xindex>):
      %c0 = arith.constant 0 : index
      %c1 = arith.constant 1 : index
      %cw = arith.constant 2 : index
      %kv = arith.constant 7 : index
        scf.parallel (%pi) = (%c0) to (%cw) step (%c1) {
          scf.parallel (%pj) = (%c0) to (%cw) step (%c1) {
            memref.store %kv, %tile[%pi, %pj] : memref<4x4xindex>
            scf.reduce
          }
          scf.reduce
        }
      "loom.spatial_yield"()
          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()
  }) {graph_name = "g_t1_0", source_maps = []} :
      (index, memref<8xindex>, memref<4x4xindex>) -> ()
  dataflow.thread.yield
}

observed generic output

"builtin.module"() ({
  "dataflow.thread"() <{domain = #dataflow.thread_domain<dense>, function_type = (memref<8xindex>, memref<8xindex>, memref<4x4xindex>, index) -> (), sym_name = "t0", sym_visibility = "private"}> ({
  ^bb0(%arg13: memref<8xindex>, %arg14: memref<8xindex>, %arg15: memref<4x4xindex>, %arg16: index, %arg17: none):
    %76 = "arith.constant"() <{value = 0 : index}> : () -> index
    %77 = "arith.constant"() <{value = 3 : index}> : () -> index
    "memref.store"(%77, %arg13, %76) : (index, memref<8xindex>, index) -> ()
    %78 = "dataflow.graph.launch"(%arg17, %arg16, %arg14, %arg15) <{callee = @g_t0_0, operandSegmentSizes = array<i32: 1, 1, 0, 2, 0>, resultSegmentSizes = array<i32: 0, 0, 1>, source_maps = []}> : (none, index, memref<8xindex>, memref<4x4xindex>) -> none
    "dataflow.thread.yield"(%78) : (none) -> ()
  }) : () -> ()
  "dataflow.thread"() <{domain = #dataflow.thread_domain<dense>, function_type = (memref<8xindex>, memref<8xindex>, memref<4x4xindex>, index) -> (), sym_name = "t1", sym_visibility = "private"}> ({
  ^bb0(%arg8: memref<8xindex>, %arg9: memref<8xindex>, %arg10: memref<4x4xindex>, %arg11: index, %arg12: none):
    %73 = "arith.constant"() <{value = 0 : index}> : () -> index
    %74 = "arith.constant"() <{value = 3 : index}> : () -> index
    "memref.store"(%74, %arg8, %73) : (index, memref<8xindex>, index) -> ()
    %75 = "dataflow.graph.launch"(%arg12, %arg11, %arg9, %arg10) <{callee = @g_t1_0, operandSegmentSizes = array<i32: 1, 1, 0, 2, 0>, resultSegmentSizes = array<i32: 0, 0, 1>, source_maps = []}> : (none, index, memref<8xindex>, memref<4x4xindex>) -> none
    "dataflow.thread.yield"(%75) : (none) -> ()
  }) : () -> ()
  "dataflow.graph"() <{function_type = (index, memref<8xindex>, memref<4x4xindex>) -> (), input_segments = array<i32: 1, 0, 2>, result_segments = array<i32: 0, 0, 0>, sym_name = "g_t0_0", sym_visibility = "private"}> ({
  ^bb0(%arg4: none, %arg5: index, %arg6: memref<8xindex>, %arg7: memref<4x4xindex>):
    %20 = "dataflow.constant"(%arg4) <{const_value = 0 : index}> : (none) -> index
    %21 = "dataflow.constant"(%arg4) <{const_value = 1 : index}> : (none) -> index
    %22 = "dataflow.constant"(%arg4) <{const_value = 2 : index}> : (none) -> index
    %23 = "dataflow.constant"(%arg4) <{const_value = 7 : index}> : (none) -> index
    %24 = "arith.index_cast"(%20) : (index) -> i32
    %25 = "arith.index_cast"(%arg5) : (index) -> i32
    %26 = "arith.index_cast"(%21) : (index) -> i32
    %27:2 = "dataflow.stream"(%24, %25, %26) <{predicate = 2 : i64, step_kind = 0 : i32}> : (i32, i32, i32) -> (i32, i1)
    %28 = "dataflow.carry"(%27#1, %arg4, %64#0) : (i1, none, none) -> none
    %29:2 = "dataflow.demux"(%27#1, %28) : (i1, none) -> (none, none)
    %30 = "dataflow.invariant"(%27#1, %22) : (i1, index) -> index
    %31:2 = "dataflow.gate"(%27#1, %30) : (i1, index) -> (i1, index)
    %32:2 = "dataflow.demux"(%31#0, %31#1) : (i1, index) -> (index, index)
    %33 = "dataflow.invariant"(%27#1, %23) : (i1, index) -> index
    %34:2 = "dataflow.gate"(%27#1, %33) : (i1, index) -> (i1, index)
    %35:2 = "dataflow.demux"(%34#0, %34#1) : (i1, index) -> (index, index)
    %36 = "dataflow.invariant"(%27#1, %20) : (i1, index) -> index
    %37:2 = "dataflow.gate"(%27#1, %36) : (i1, index) -> (i1, index)
    %38:2 = "dataflow.demux"(%37#0, %37#1) : (i1, index) -> (index, index)
    %39 = "dataflow.invariant"(%27#1, %21) : (i1, index) -> index
    %40:2 = "dataflow.gate"(%27#1, %39) : (i1, index) -> (i1, index)
    %41:2 = "dataflow.demux"(%40#0, %40#1) : (i1, index) -> (index, index)
    %42 = "dataflow.carry"(%27#1, %arg4, %65#0) : (i1, none, none) -> none
    %43:2 = "dataflow.demux"(%27#1, %42) : (i1, none) -> (none, none)
    %44 = "dataflow.constant"(%29#1) <{const_value = 0 : index}> : (none) -> index
    %45 = "arith.cmpi"(%44, %31#1) <{predicate = 2 : i64}> : (index, index) -> i1
    %46:2 = "dataflow.demux"(%45, %29#1) : (i1, none) -> (none, none)
    %47:2 = "dataflow.demux"(%45, %43#1) : (i1, none) -> (none, none)
    %48:2 = "dataflow.demux"(%45, %34#1) : (i1, index) -> (index, index)
    %49:2 = "dataflow.demux"(%45, %44) : (i1, index) -> (index, index)
    %50:2 = "dataflow.sync"(%46#1, %47#1) : (none, none) -> (none, none)
    %51 = "dataflow.store"(%arg6, %49#1, %48#1, %50#0) : (memref<8xindex>, index, index, none) -> none
    %52 = "dataflow.mux"(%45, %47#0, %51) : (i1, none, none) -> none
    %53 = "dataflow.mux"(%45, %46#0, %46#1) : (i1, none, none) -> none
    %54 = "dataflow.constant"(%29#1) <{const_value = 1 : index}> : (none) -> index
    %55 = "arith.cmpi"(%54, %31#1) <{predicate = 2 : i64}> : (index, index) -> i1
    %56:2 = "dataflow.demux"(%55, %29#1) : (i1, none) -> (none, none)
    %57:2 = "dataflow.demux"(%55, %43#1) : (i1, none) -> (none, none)
    %58:2 = "dataflow.demux"(%55, %34#1) : (i1, index) -> (index, index)
    %59:2 = "dataflow.demux"(%55, %54) : (i1, index) -> (index, index)
    %60:2 = "dataflow.sync"(%56#1, %57#1) : (none, none) -> (none, none)
    %61 = "dataflow.store"(%arg6, %59#1, %58#1, %60#0) : (memref<8xindex>, index, index, none) -> none
    %62 = "dataflow.mux"(%55, %57#0, %61) : (i1, none, none) -> none
    %63 = "dataflow.mux"(%55, %56#0, %56#1) : (i1, none, none) -> none
    %64:2 = "dataflow.sync"(%53, %63) : (none, none) -> (none, none)
    %65:2 = "dataflow.sync"(%52, %62) : (none, none) -> (none, none)
    %66 = "arith.cmpi"(%24, %25) <{predicate = 2 : i64}> : (i32, i32) -> i1
    %67:2 = "dataflow.demux"(%66, %29#0) : (i1, none) -> (none, none)
    %68:2 = "dataflow.sync"(%67#1, %32#0) : (none, index) -> (none, index)
    %69:2 = "dataflow.sync"(%68#0, %35#0) : (none, index) -> (none, index)
    %70:2 = "dataflow.sync"(%38#0, %41#0) : (index, index) -> (index, index)
    %71:2 = "dataflow.sync"(%69#0, %70#0) : (none, index) -> (none, index)
    %72 = "dataflow.mux"(%66, %67#0, %71#0) : (i1, none, none) -> none
    "dataflow.graph.return"(%72, %43#0) <{operandSegmentSizes = array<i32: 0, 0, 0, 2>}> : (none, none) -> ()
  }) : () -> ()
  "dataflow.graph"() <{function_type = (index, memref<8xindex>, memref<4x4xindex>) -> (), input_segments = array<i32: 1, 0, 2>, result_segments = array<i32: 0, 0, 0>, sym_name = "g_t1_0", sym_visibility = "private"}> ({
  ^bb0(%arg0: none, %arg1: index, %arg2: memref<8xindex>, %arg3: memref<4x4xindex>):
    %0 = "dataflow.constant"(%arg0) <{const_value = 7 : index}> : (none) -> index
    %1 = "dataflow.constant"(%arg0) <{const_value = 0 : index}> : (none) -> index
    %2 = "dataflow.constant"(%arg0) <{const_value = 1 : index}> : (none) -> index
    %3 = "dataflow.constant"(%arg0) <{const_value = 4 : index}> : (none) -> index
    %4 = "arith.muli"(%1, %3) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %5 = "arith.addi"(%4, %1) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %6 = "dataflow.store"(%arg3, %5, %0, %arg0) : (memref<4x4xindex>, index, index, none) -> none
    %7 = "dataflow.constant"(%arg0) <{const_value = 4 : index}> : (none) -> index
    %8 = "arith.muli"(%1, %7) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %9 = "arith.addi"(%8, %2) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %10 = "dataflow.store"(%arg3, %9, %0, %arg0) : (memref<4x4xindex>, index, index, none) -> none
    %11 = "dataflow.constant"(%arg0) <{const_value = 4 : index}> : (none) -> index
    %12 = "arith.muli"(%2, %11) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %13 = "arith.addi"(%12, %1) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %14 = "dataflow.store"(%arg3, %13, %0, %arg0) : (memref<4x4xindex>, index, index, none) -> none
    %15 = "dataflow.constant"(%arg0) <{const_value = 4 : index}> : (none) -> index
    %16 = "arith.muli"(%2, %15) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %17 = "arith.addi"(%16, %2) <{overflowFlags = #arith.overflow<none>}> : (index, index) -> index
    %18 = "dataflow.store"(%arg3, %17, %0, %arg0) : (memref<4x4xindex>, index, index, none) -> none
    %19:4 = "dataflow.sync"(%6, %10, %14, %18) : (none, none, none, none) -> (none, none, none, none)
    "dataflow.graph.return"(%19#0) <{operandSegmentSizes = array<i32: 0, 0, 0, 1>}> : (none) -> ()
  }) : () -> ()
}) : () -> ()

per-seed evidence (1000 seeds)
seedsubjectverdictartifacts
0accepted exit 0 · 0.5989093630014395sPASSinput · generic input · output · check report
1accepted exit 0 · 0.6304758570004196sPASSinput · generic input · output · check report
2accepted exit 0 · 0.6608831969970197sPASSinput · generic input · output · check report
3accepted exit 0 · 0.6237989580004069sPASSinput · generic input · output · check report
4accepted exit 0 · 0.6108864220004762sPASSinput · generic input · output · check report
5accepted exit 0 · 0.6140317969984608sPASSinput · generic input · output · check report
6accepted exit 0 · 0.6109268870022788sPASSinput · generic input · output · check report
7accepted exit 0 · 0.6459747590015468sPASSinput · generic input · output · check report
8accepted exit 0 · 0.6359339730006468sPASSinput · generic input · output · check report
9accepted exit 0 · 0.6123358479999297sPASSinput · generic input · output · check report
10accepted exit 0 · 0.5992723790004675sPASSinput · generic input · output · check report
11accepted exit 0 · 0.6494429090016638sPASSinput · generic input · output · check report
12accepted exit 0 · 0.634163204998913sPASSinput · generic input · output · check report
13accepted exit 0 · 0.6280476430001727sPASSinput · generic input · output · check report
14accepted exit 0 · 0.6184945969980618sPASSinput · generic input · output · check report
15accepted exit 0 · 0.6270363869989524sPASSinput · generic input · output · check report
16accepted exit 0 · 0.5780940299991926sPASSinput · generic input · output · check report
17accepted exit 0 · 0.6456421849979961sPASSinput · generic input · output · check report
18accepted exit 0 · 0.6563712849965668sPASSinput · generic input · output · check report
19accepted exit 0 · 0.6371409989988024sPASSinput · generic input · output · check report
20accepted exit 0 · 0.6139022120005393sPASSinput · generic input · output · check report
21accepted exit 0 · 0.6456977560010273sPASSinput · generic input · output · check report
22accepted exit 0 · 0.6086519999989832sPASSinput · generic input · output · check report
23accepted exit 0 · 0.6280091129992798sPASSinput · generic input · output · check report
24accepted exit 0 · 0.6544879440007207sPASSinput · generic input · output · check report
25accepted exit 0 · 0.6124568450031802sPASSinput · generic input · output · check report
26accepted exit 0 · 0.6199887930015393sPASSinput · generic input · output · check report
27accepted exit 0 · 0.6136502929984999sPASSinput · generic input · output · check report
28accepted exit 0 · 0.6263005920009164sPASSinput · generic input · output · check report
29accepted exit 0 · 0.5979332950009848sPASSinput · generic input · output · check report
30accepted exit 0 · 0.9716800550013431sPASSinput · generic input · output · check report
31accepted exit 0 · 0.6085592809977243sPASSinput · generic input · output · check report
32accepted exit 0 · 0.6230447359994287sPASSinput · generic input · output · check report
33accepted exit 0 · 0.5771289580006851sPASSinput · generic input · output · check report
34accepted exit 0 · 0.5725631740060635sPASSinput · generic input · output · check report
35accepted exit 0 · 0.6087719810020644sPASSinput · generic input · output · check report
36accepted exit 0 · 0.7168375779947382sPASSinput · generic input · output · check report
37accepted exit 0 · 3.015829683994525sPASSinput · generic input · output · check report
38accepted exit 0 · 0.5769346229935763sPASSinput · generic input · output · check report
39accepted exit 0 · 2.1822320120045333sPASSinput · generic input · output · check report
40accepted exit 0 · 1.7175142720006988sPASSinput · generic input · output · check report
41accepted exit 0 · 0.9375209719946724sPASSinput · generic input · output · check report
42accepted exit 0 · 2.0914349230006337sPASSinput · generic input · output · check report
43accepted exit 0 · 0.5926438880051137sPASSinput · generic input · output · check report
44accepted exit 0 · 0.5957473529997515sPASSinput · generic input · output · check report
45accepted exit 0 · 0.581478996995429sPASSinput · generic input · output · check report
46accepted exit 0 · 0.5933171040014713sPASSinput · generic input · output · check report
47accepted exit 0 · 2.0365720429981593sPASSinput · generic input · output · check report
48accepted exit 0 · 0.6123880599989207sPASSinput · generic input · output · check report
49accepted exit 0 · 0.5938700339975185sPASSinput · generic input · output · check report
50accepted exit 0 · 0.5780797160041402sPASSinput · generic input · output · check report
51accepted exit 0 · 0.5842702640002244sPASSinput · generic input · output · check report
52accepted exit 0 · 0.5832975049997913sPASSinput · generic input · output · check report
53accepted exit 0 · 0.5933363799995277sPASSinput · generic input · output · check report
54accepted exit 0 · 0.5681239979967359sPASSinput · generic input · output · check report
55accepted exit 0 · 0.5561969930058694sPASSinput · generic input · output · check report
56accepted exit 0 · 0.5580628919997253sPASSinput · generic input · output · check report
57accepted exit 0 · 0.5740693460029433sPASSinput · generic input · output · check report
58accepted exit 0 · 0.5803227119977237sPASSinput · generic input · output · check report
59accepted exit 0 · 0.6101649100019131sPASSinput · generic input · output · check report
60accepted exit 0 · 0.631193337001605sPASSinput · generic input · output · check report
61accepted exit 0 · 0.6047759979992406sPASSinput · generic input · output · check report
62accepted exit 0 · 0.665928663998784sPASSinput · generic input · output · check report
63accepted exit 0 · 0.5835648790016421sPASSinput · generic input · output · check report
64accepted exit 0 · 0.5710206630028551sPASSinput · generic input · output · check report
65accepted exit 0 · 0.5698832050038618sPASSinput · generic input · output · check report
66accepted exit 0 · 0.5858245880008326sPASSinput · generic input · output · check report
67accepted exit 0 · 0.5990130130012403sPASSinput · generic input · output · check report
68accepted exit 0 · 0.5804281419987092sPASSinput · generic input · output · check report
69accepted exit 0 · 0.5573018810027861sPASSinput · generic input · output · check report
70accepted exit 0 · 0.5827216429970576sPASSinput · generic input · output · check report
71accepted exit 0 · 0.567766426000162sPASSinput · generic input · output · check report
72accepted exit 0 · 0.5954540620004991sPASSinput · generic input · output · check report
73accepted exit 0 · 0.56921407799382sPASSinput · generic input · output · check report
74accepted exit 0 · 0.5771444979982334sPASSinput · generic input · output · check report
75accepted exit 0 · 0.5932446680017165sPASSinput · generic input · output · check report
76accepted exit 0 · 0.6287664029950975sPASSinput · generic input · output · check report
77accepted exit 0 · 0.6009692820007331sPASSinput · generic input · output · check report
78accepted exit 0 · 0.5814014610004961sPASSinput · generic input · output · check report
79accepted exit 0 · 0.5809196160043939sPASSinput · generic input · output · check report
80accepted exit 0 · 0.5746470820013201sPASSinput · generic input · output · check report
81accepted exit 0 · 0.5497884849974071sPASSinput · generic input · output · check report
82accepted exit 0 · 0.5666003029982676sPASSinput · generic input · output · check report
83accepted exit 0 · 0.5673640889945091sPASSinput · generic input · output · check report
84accepted exit 0 · 0.5610459200033802sPASSinput · generic input · output · check report
85accepted exit 0 · 0.6223822699976154sPASSinput · generic input · output · check report
86accepted exit 0 · 0.576146120998601sPASSinput · generic input · output · check report
87accepted exit 0 · 0.5863867340012803sPASSinput · generic input · output · check report
88accepted exit 0 · 0.5791717590036569sPASSinput · generic input · output · check report
89accepted exit 0 · 0.5810682340015774sPASSinput · generic input · output · check report
90accepted exit 0 · 0.5715394390063011sPASSinput · generic input · output · check report
91accepted exit 0 · 0.5652579189991229sPASSinput · generic input · output · check report
92accepted exit 0 · 0.5853227439947659sPASSinput · generic input · output · check report
93accepted exit 0 · 0.5857003029959742sPASSinput · generic input · output · check report
94accepted exit 0 · 0.772565424995264sPASSinput · generic input · output · check report
95accepted exit 0 · 0.5653050079999957sPASSinput · generic input · output · check report
96accepted exit 0 · 0.5877139489966794sPASSinput · generic input · output · check report
97accepted exit 0 · 0.6364341099979356sPASSinput · generic input · output · check report
98accepted exit 0 · 0.7012648400050239sPASSinput · generic input · output · check report
99accepted exit 0 · 0.5861196620026021sPASSinput · generic input · output · check report
100accepted exit 0 · 0.585094066000238sPASSinput · generic input · output · check report
101accepted exit 0 · 0.5286855289996311sPASSinput · generic input · output · check report
102accepted exit 0 · 0.4433872340000562sPASSinput · generic input · output · check report
103accepted exit 0 · 0.4350341760000447sPASSinput · generic input · output · check report
104accepted exit 0 · 0.6971826020003391sPASSinput · generic input · output · check report
105accepted exit 0 · 0.8630084900000838sPASSinput · generic input · output · check report
106accepted exit 0 · 0.5314293770002223sPASSinput · generic input · output · check report
107accepted exit 0 · 0.06589015700001255sPASSinput · generic input · output · check report
108accepted exit 0 · 0.04897443199979534sPASSinput · generic input · output · check report
109accepted exit 0 · 0.05185658800019155sPASSinput · generic input · output · check report
110accepted exit 0 · 0.06308723699976326sPASSinput · generic input · output · check report
111accepted exit 0 · 0.07065369399970223sPASSinput · generic input · output · check report
112accepted exit 0 · 0.06527814699984447sPASSinput · generic input · output · check report
113accepted exit 0 · 0.07733057199993709sPASSinput · generic input · output · check report
114accepted exit 0 · 0.0625091390002126sPASSinput · generic input · output · check report
115accepted exit 0 · 0.060565699000108sPASSinput · generic input · output · check report
116accepted exit 0 · 0.0609029939996617sPASSinput · generic input · output · check report
117accepted exit 0 · 0.10843750300000465sPASSinput · generic input · output · check report
118accepted exit 0 · 0.05775085400000535sPASSinput · generic input · output · check report
119accepted exit 0 · 0.048565064999820606sPASSinput · generic input · output · check report
120accepted exit 0 · 0.07273520899980213sPASSinput · generic input · output · check report
121accepted exit 0 · 0.05224554200003695sPASSinput · generic input · output · check report
122accepted exit 0 · 0.05270543699998598sPASSinput · generic input · output · check report
123accepted exit 0 · 0.05610028599994621sPASSinput · generic input · output · check report
124accepted exit 0 · 0.09769585100002587sPASSinput · generic input · output · check report
125accepted exit 0 · 0.06783997499996985sPASSinput · generic input · output · check report
126accepted exit 0 · 0.047717005999857065sPASSinput · generic input · output · check report
127accepted exit 0 · 0.09720118499990349sPASSinput · generic input · output · check report
128accepted exit 0 · 0.11079116099972453sPASSinput · generic input · output · check report
129accepted exit 0 · 0.05383022499972867sPASSinput · generic input · output · check report
130accepted exit 0 · 0.06145289899995987sPASSinput · generic input · output · check report
131accepted exit 0 · 0.09392762900006346sPASSinput · generic input · output · check report
132accepted exit 0 · 0.049320082000122056sPASSinput · generic input · output · check report
133accepted exit 0 · 0.07943006000004971sPASSinput · generic input · output · check report
134accepted exit 0 · 0.04797321300020485sPASSinput · generic input · output · check report
135accepted exit 0 · 0.05496735599990643sPASSinput · generic input · output · check report
136accepted exit 0 · 0.08313595600020562sPASSinput · generic input · output · check report
137accepted exit 0 · 0.05850952299988421sPASSinput · generic input · output · check report
138accepted exit 0 · 0.07317504999991797sPASSinput · generic input · output · check report
139accepted exit 0 · 0.0982821799998419sPASSinput · generic input · output · check report
140accepted exit 0 · 0.09545604999993884sPASSinput · generic input · output · check report
141accepted exit 0 · 0.05002539200040701sPASSinput · generic input · output · check report
142accepted exit 0 · 0.049604251999880944sPASSinput · generic input · output · check report
143accepted exit 0 · 0.10979376500017679sPASSinput · generic input · output · check report
144accepted exit 0 · 0.10887894699999379sPASSinput · generic input · output · check report
145accepted exit 0 · 0.053264089999629505sPASSinput · generic input · output · check report
146accepted exit 0 · 0.053328392000366875sPASSinput · generic input · output · check report
147accepted exit 0 · 0.048393969999779074sPASSinput · generic input · output · check report
148accepted exit 0 · 0.05354862799958937sPASSinput · generic input · output · check report
149accepted exit 0 · 0.05596974899981433sPASSinput · generic input · output · check report
150accepted exit 0 · 0.09212752800021917sPASSinput · generic input · output · check report
151accepted exit 0 · 0.052353776000018115sPASSinput · generic input · output · check report
152accepted exit 0 · 0.046940393000113545sPASSinput · generic input · output · check report
153accepted exit 0 · 0.04785788800018054sPASSinput · generic input · output · check report
154accepted exit 0 · 0.09010523400002057sPASSinput · generic input · output · check report
155accepted exit 0 · 0.05013046999965809sPASSinput · generic input · output · check report
156accepted exit 0 · 0.09230198499972175sPASSinput · generic input · output · check report
157accepted exit 0 · 0.08955146700009209sPASSinput · generic input · output · check report
158accepted exit 0 · 0.1504194990002361sPASSinput · generic input · output · check report
159accepted exit 0 · 0.10519012899976588sPASSinput · generic input · output · check report
160accepted exit 0 · 0.05580284400002711sPASSinput · generic input · output · check report
161accepted exit 0 · 0.04757034200019916sPASSinput · generic input · output · check report
162accepted exit 0 · 0.08539097099992432sPASSinput · generic input · output · check report
163accepted exit 0 · 0.050804440999854705sPASSinput · generic input · output · check report
164accepted exit 0 · 0.059653211000295414sPASSinput · generic input · output · check report
165accepted exit 0 · 0.05939411500003189sPASSinput · generic input · output · check report
166accepted exit 0 · 0.055268001000058575sPASSinput · generic input · output · check report
167accepted exit 0 · 0.07547354500002257sPASSinput · generic input · output · check report
168accepted exit 0 · 0.05977599400011968sPASSinput · generic input · output · check report
169accepted exit 0 · 0.10400401699962458sPASSinput · generic input · output · check report
170accepted exit 0 · 0.06073606900008599sPASSinput · generic input · output · check report
171accepted exit 0 · 0.055967047000194725sPASSinput · generic input · output · check report
172accepted exit 0 · 0.04811430900008418sPASSinput · generic input · output · check report
173accepted exit 0 · 0.058693202000085876sPASSinput · generic input · output · check report
174accepted exit 0 · 0.08234413399986806sPASSinput · generic input · output · check report
175accepted exit 0 · 0.04487637500005803sPASSinput · generic input · output · check report
176accepted exit 0 · 0.055967581999993854sPASSinput · generic input · output · check report
177accepted exit 0 · 0.052516827000090416sPASSinput · generic input · output · check report
178accepted exit 0 · 0.07831628800022372sPASSinput · generic input · output · check report
179accepted exit 0 · 0.052138067000214505sPASSinput · generic input · output · check report
180accepted exit 0 · 0.09650676100000055sPASSinput · generic input · output · check report
181accepted exit 0 · 0.05066794399999708sPASSinput · generic input · output · check report
182accepted exit 0 · 0.07257207600014226sPASSinput · generic input · output · check report
183accepted exit 0 · 0.09308695700019598sPASSinput · generic input · output · check report
184accepted exit 0 · 0.05537477400002899sPASSinput · generic input · output · check report
185accepted exit 0 · 0.052505341000141925sPASSinput · generic input · output · check report
186accepted exit 0 · 0.0644318290001138sPASSinput · generic input · output · check report
187accepted exit 0 · 0.06336201900012384sPASSinput · generic input · output · check report
188accepted exit 0 · 0.05697796100002961sPASSinput · generic input · output · check report
189accepted exit 0 · 0.09247543499986932sPASSinput · generic input · output · check report
190accepted exit 0 · 0.053716139999778534sPASSinput · generic input · output · check report
191accepted exit 0 · 0.048633986999902845sPASSinput · generic input · output · check report
192accepted exit 0 · 0.05104290700001002sPASSinput · generic input · output · check report
193accepted exit 0 · 0.051857949000350345sPASSinput · generic input · output · check report
194accepted exit 0 · 0.10376067399965905sPASSinput · generic input · output · check report
195accepted exit 0 · 0.053363200000148936sPASSinput · generic input · output · check report
196accepted exit 0 · 0.05362911100019119sPASSinput · generic input · output · check report
197accepted exit 0 · 0.11087298799975542sPASSinput · generic input · output · check report
198accepted exit 0 · 0.059100547000070947sPASSinput · generic input · output · check report
199accepted exit 0 · 0.062067825000212906sPASSinput · generic input · output · check report
200accepted exit 0 · 0.05014130000017758sPASSinput · generic input · output · check report
201accepted exit 0 · 0.05457113800002844sPASSinput · generic input · output · check report
202accepted exit 0 · 0.05733303999977579sPASSinput · generic input · output · check report
203accepted exit 0 · 0.05926222699963546sPASSinput · generic input · output · check report
204accepted exit 0 · 0.062047914000231685sPASSinput · generic input · output · check report
205accepted exit 0 · 0.06342735699990953sPASSinput · generic input · output · check report
206accepted exit 0 · 0.06302209500017852sPASSinput · generic input · output · check report
207accepted exit 0 · 0.076769368999976sPASSinput · generic input · output · check report
208accepted exit 0 · 0.06276827800002138sPASSinput · generic input · output · check report
209accepted exit 0 · 0.09850658400000611sPASSinput · generic input · output · check report
210accepted exit 0 · 0.10457249699993554sPASSinput · generic input · output · check report
211accepted exit 0 · 0.054109141000026284sPASSinput · generic input · output · check report
212accepted exit 0 · 0.056825688000117225sPASSinput · generic input · output · check report
213accepted exit 0 · 0.05294725699968694sPASSinput · generic input · output · check report
214accepted exit 0 · 0.09443736500043087sPASSinput · generic input · output · check report
215accepted exit 0 · 0.05308103900006245sPASSinput · generic input · output · check report
216accepted exit 0 · 0.05310166799972649sPASSinput · generic input · output · check report
217accepted exit 0 · 0.11874661599995306sPASSinput · generic input · output · check report
218accepted exit 0 · 0.05319861999987552sPASSinput · generic input · output · check report
219accepted exit 0 · 0.0832016740000654sPASSinput · generic input · output · check report
220accepted exit 0 · 0.04969691699989198sPASSinput · generic input · output · check report
221accepted exit 0 · 0.05402471399975184sPASSinput · generic input · output · check report
222accepted exit 0 · 0.05620719700027621sPASSinput · generic input · output · check report
223accepted exit 0 · 0.06109301200012851sPASSinput · generic input · output · check report
224accepted exit 0 · 0.055407022000053985sPASSinput · generic input · output · check report
225accepted exit 0 · 0.062037286999839125sPASSinput · generic input · output · check report
226accepted exit 0 · 0.06661651600006735sPASSinput · generic input · output · check report
227accepted exit 0 · 0.06312889999981053sPASSinput · generic input · output · check report
228accepted exit 0 · 0.06129378000014185sPASSinput · generic input · output · check report
229accepted exit 0 · 0.0536387189999914sPASSinput · generic input · output · check report
230accepted exit 0 · 0.06184899499976382sPASSinput · generic input · output · check report
231accepted exit 0 · 0.08885129899999811sPASSinput · generic input · output · check report
232accepted exit 0 · 0.06218425500037483sPASSinput · generic input · output · check report
233accepted exit 0 · 0.11976189999995768sPASSinput · generic input · output · check report
234accepted exit 0 · 0.09423448000006829sPASSinput · generic input · output · check report
235accepted exit 0 · 0.053817145000266464sPASSinput · generic input · output · check report
236accepted exit 0 · 0.09745518499994432sPASSinput · generic input · output · check report
237accepted exit 0 · 0.05458830499992473sPASSinput · generic input · output · check report
238accepted exit 0 · 0.04517938700018931sPASSinput · generic input · output · check report
239accepted exit 0 · 0.060184696999840526sPASSinput · generic input · output · check report
240accepted exit 0 · 0.09948232700025983sPASSinput · generic input · output · check report
241accepted exit 0 · 0.05428096800005733sPASSinput · generic input · output · check report
242accepted exit 0 · 0.05742136199978631sPASSinput · generic input · output · check report
243accepted exit 0 · 0.09399160399971151sPASSinput · generic input · output · check report
244accepted exit 0 · 0.06110506899995016sPASSinput · generic input · output · check report
245accepted exit 0 · 0.04958449000014298sPASSinput · generic input · output · check report
246accepted exit 0 · 0.0923237999995763sPASSinput · generic input · output · check report
247accepted exit 0 · 0.10190561499985051sPASSinput · generic input · output · check report
248accepted exit 0 · 0.05545413399977406sPASSinput · generic input · output · check report
249accepted exit 0 · 0.06093813500001488sPASSinput · generic input · output · check report
250accepted exit 0 · 0.05021106800040798sPASSinput · generic input · output · check report
251accepted exit 0 · 0.09323430299991742sPASSinput · generic input · output · check report
252accepted exit 0 · 0.05261077999966801sPASSinput · generic input · output · check report
253accepted exit 0 · 0.05382423099990774sPASSinput · generic input · output · check report
254accepted exit 0 · 0.053530779000084294sPASSinput · generic input · output · check report
255accepted exit 0 · 0.09633976099985375sPASSinput · generic input · output · check report
256accepted exit 0 · 0.05929584800014709sPASSinput · generic input · output · check report
257accepted exit 0 · 0.08034971000006408sPASSinput · generic input · output · check report
258accepted exit 0 · 0.11072831299998143sPASSinput · generic input · output · check report
259accepted exit 0 · 0.08454942599973947sPASSinput · generic input · output · check report
260accepted exit 0 · 0.22260682000023735sPASSinput · generic input · output · check report
261accepted exit 0 · 0.05190876100004971sPASSinput · generic input · output · check report
262accepted exit 0 · 0.05047845100034465sPASSinput · generic input · output · check report
263accepted exit 0 · 0.0991806639999595sPASSinput · generic input · output · check report
264accepted exit 0 · 0.051723662999847875sPASSinput · generic input · output · check report
265accepted exit 0 · 0.08210483099992416sPASSinput · generic input · output · check report
266accepted exit 0 · 0.13812912999992477sPASSinput · generic input · output · check report
267accepted exit 0 · 0.08935192700027983sPASSinput · generic input · output · check report
268accepted exit 0 · 0.08691178900016894sPASSinput · generic input · output · check report
269accepted exit 0 · 0.06165539599987824sPASSinput · generic input · output · check report
270accepted exit 0 · 0.05202382800007399sPASSinput · generic input · output · check report
271accepted exit 0 · 0.09623534899992592sPASSinput · generic input · output · check report
272accepted exit 0 · 0.05480429599992931sPASSinput · generic input · output · check report
273accepted exit 0 · 0.08784149900020566sPASSinput · generic input · output · check report
274accepted exit 0 · 0.06090655900015918sPASSinput · generic input · output · check report
275accepted exit 0 · 0.06366238999999041sPASSinput · generic input · output · check report
276accepted exit 0 · 0.12500368699966202sPASSinput · generic input · output · check report
277accepted exit 0 · 0.059491339000032895sPASSinput · generic input · output · check report
278accepted exit 0 · 0.06074499600026684sPASSinput · generic input · output · check report
279accepted exit 0 · 0.12290090499982398sPASSinput · generic input · output · check report
280accepted exit 0 · 0.057117396000194276sPASSinput · generic input · output · check report
281accepted exit 0 · 0.058121965000282216sPASSinput · generic input · output · check report
282accepted exit 0 · 0.0510094129999743sPASSinput · generic input · output · check report
283accepted exit 0 · 0.05604733500013026sPASSinput · generic input · output · check report
284accepted exit 0 · 0.05568850100007694sPASSinput · generic input · output · check report
285accepted exit 0 · 0.051274942999953055sPASSinput · generic input · output · check report
286accepted exit 0 · 0.050572162000207754sPASSinput · generic input · output · check report
287accepted exit 0 · 0.062377226000080555sPASSinput · generic input · output · check report
288accepted exit 0 · 0.05131255299966142sPASSinput · generic input · output · check report
289accepted exit 0 · 0.09742671300000438sPASSinput · generic input · output · check report
290accepted exit 0 · 0.09256257900005949sPASSinput · generic input · output · check report
291accepted exit 0 · 0.08959887700029867sPASSinput · generic input · output · check report
292accepted exit 0 · 0.057249174999924435sPASSinput · generic input · output · check report
293accepted exit 0 · 0.054268481000235624sPASSinput · generic input · output · check report
294accepted exit 0 · 0.04989285400006338sPASSinput · generic input · output · check report
295accepted exit 0 · 0.07653631799985305sPASSinput · generic input · output · check report
296accepted exit 0 · 0.048335916999803885sPASSinput · generic input · output · check report
297accepted exit 0 · 0.045567162000224926sPASSinput · generic input · output · check report
298accepted exit 0 · 0.055014203999689926sPASSinput · generic input · output · check report
299accepted exit 0 · 0.05182405599998674sPASSinput · generic input · output · check report
300accepted exit 0 · 0.0478341289999662sPASSinput · generic input · output · check report
301accepted exit 0 · 0.115710656000374sPASSinput · generic input · output · check report
302accepted exit 0 · 0.05049199399945792sPASSinput · generic input · output · check report
303accepted exit 0 · 0.05638434299999062sPASSinput · generic input · output · check report
304accepted exit 0 · 0.06184569200013357sPASSinput · generic input · output · check report
305accepted exit 0 · 0.06102275100056431sPASSinput · generic input · output · check report
306accepted exit 0 · 0.07936399099980918sPASSinput · generic input · output · check report
307accepted exit 0 · 0.058212484999785374sPASSinput · generic input · output · check report
308accepted exit 0 · 0.060838780000267434sPASSinput · generic input · output · check report
309accepted exit 0 · 0.05454021199966519sPASSinput · generic input · output · check report
310accepted exit 0 · 0.056804687999829184sPASSinput · generic input · output · check report
311accepted exit 0 · 0.06186424600036844sPASSinput · generic input · output · check report
312accepted exit 0 · 0.08764108900049905sPASSinput · generic input · output · check report
313accepted exit 0 · 0.05346092099989619sPASSinput · generic input · output · check report
314accepted exit 0 · 0.059648584000569826sPASSinput · generic input · output · check report
315accepted exit 0 · 0.06445524900027522sPASSinput · generic input · output · check report
316accepted exit 0 · 0.05523293699934584sPASSinput · generic input · output · check report
317accepted exit 0 · 0.09655212699999538sPASSinput · generic input · output · check report
318accepted exit 0 · 0.08884025699990161sPASSinput · generic input · output · check report
319accepted exit 0 · 0.0526929569996355sPASSinput · generic input · output · check report
320accepted exit 0 · 0.05044356000053085sPASSinput · generic input · output · check report
321accepted exit 0 · 0.08823884399953386sPASSinput · generic input · output · check report
322accepted exit 0 · 0.052838623000752705sPASSinput · generic input · output · check report
323accepted exit 0 · 0.07280416499997955sPASSinput · generic input · output · check report
324accepted exit 0 · 0.05584511399956682sPASSinput · generic input · output · check report
325accepted exit 0 · 0.054853935000210186sPASSinput · generic input · output · check report
326accepted exit 0 · 0.07441632100017159sPASSinput · generic input · output · check report
327accepted exit 0 · 0.07742146799955663sPASSinput · generic input · output · check report
328accepted exit 0 · 0.05555430099957448sPASSinput · generic input · output · check report
329accepted exit 0 · 0.06110474099932617sPASSinput · generic input · output · check report
330accepted exit 0 · 0.05733657700056938sPASSinput · generic input · output · check report
331accepted exit 0 · 0.06764128299982985sPASSinput · generic input · output · check report
332accepted exit 0 · 0.05256920800002263sPASSinput · generic input · output · check report
333accepted exit 0 · 0.05726710900034959sPASSinput · generic input · output · check report
334accepted exit 0 · 0.054128204000335245sPASSinput · generic input · output · check report
335accepted exit 0 · 0.06370319100005872sPASSinput · generic input · output · check report
336accepted exit 0 · 0.046140354000272055sPASSinput · generic input · output · check report
337accepted exit 0 · 0.05057435100025032sPASSinput · generic input · output · check report
338accepted exit 0 · 0.05702121299964347sPASSinput · generic input · output · check report
339accepted exit 0 · 0.09521772100015369sPASSinput · generic input · output · check report
340accepted exit 0 · 0.05524666699966474sPASSinput · generic input · output · check report
341accepted exit 0 · 0.055510572000457614sPASSinput · generic input · output · check report
342accepted exit 0 · 0.057330597000145644sPASSinput · generic input · output · check report
343accepted exit 0 · 0.05405322200022056sPASSinput · generic input · output · check report
344accepted exit 0 · 0.05577557299966429sPASSinput · generic input · output · check report
345accepted exit 0 · 0.07746980400042958sPASSinput · generic input · output · check report
346accepted exit 0 · 0.05418706399996154sPASSinput · generic input · output · check report
347accepted exit 0 · 0.04531491499983531sPASSinput · generic input · output · check report
348accepted exit 0 · 0.05450905999987299sPASSinput · generic input · output · check report
349accepted exit 0 · 0.0525339059995531sPASSinput · generic input · output · check report
350accepted exit 0 · 0.07893722199969488sPASSinput · generic input · output · check report
351accepted exit 0 · 0.07475973800046631sPASSinput · generic input · output · check report
352accepted exit 0 · 0.06252316600057384sPASSinput · generic input · output · check report
353accepted exit 0 · 0.058231537000210665sPASSinput · generic input · output · check report
354accepted exit 0 · 0.04775475600035861sPASSinput · generic input · output · check report
355accepted exit 0 · 0.06382410999958665sPASSinput · generic input · output · check report
356accepted exit 0 · 0.05537842899957468sPASSinput · generic input · output · check report
357accepted exit 0 · 0.08181690299988986sPASSinput · generic input · output · check report
358accepted exit 0 · 0.051212305999797536sPASSinput · generic input · output · check report
359accepted exit 0 · 0.05333329400036746sPASSinput · generic input · output · check report
360accepted exit 0 · 0.05476130399983958sPASSinput · generic input · output · check report
361accepted exit 0 · 0.09631761899981939sPASSinput · generic input · output · check report
362accepted exit 0 · 0.05501918000027217sPASSinput · generic input · output · check report
363accepted exit 0 · 0.09344993299964699sPASSinput · generic input · output · check report
364accepted exit 0 · 0.05199313400044048sPASSinput · generic input · output · check report
365accepted exit 0 · 0.11094060699997499sPASSinput · generic input · output · check report
366accepted exit 0 · 0.09725507500024833sPASSinput · generic input · output · check report
367accepted exit 0 · 0.05765054999938002sPASSinput · generic input · output · check report
368accepted exit 0 · 0.06251945499934664sPASSinput · generic input · output · check report
369accepted exit 0 · 0.05443071100035013sPASSinput · generic input · output · check report
370accepted exit 0 · 0.058062133999555954sPASSinput · generic input · output · check report
371accepted exit 0 · 0.05829544299922418sPASSinput · generic input · output · check report
372accepted exit 0 · 0.11321868199956953sPASSinput · generic input · output · check report
373accepted exit 0 · 0.04506323099940346sPASSinput · generic input · output · check report
374accepted exit 0 · 0.0888771789996099sPASSinput · generic input · output · check report
375accepted exit 0 · 0.05235308800001803sPASSinput · generic input · output · check report
376accepted exit 0 · 0.04690440699960163sPASSinput · generic input · output · check report
377accepted exit 0 · 0.06663457400009065sPASSinput · generic input · output · check report
378accepted exit 0 · 0.053779777999807266sPASSinput · generic input · output · check report
379accepted exit 0 · 0.08339651400001458sPASSinput · generic input · output · check report
380accepted exit 0 · 0.0617949489997045sPASSinput · generic input · output · check report
381accepted exit 0 · 0.056855292999898666sPASSinput · generic input · output · check report
382accepted exit 0 · 0.05815835900011734sPASSinput · generic input · output · check report
383accepted exit 0 · 0.06737462199998845sPASSinput · generic input · output · check report
384accepted exit 0 · 0.05670988400015631sPASSinput · generic input · output · check report
385accepted exit 0 · 0.06037865899997996sPASSinput · generic input · output · check report
386accepted exit 0 · 0.05352398800005176sPASSinput · generic input · output · check report
387accepted exit 0 · 0.06646736500078987sPASSinput · generic input · output · check report
388accepted exit 0 · 0.06280894300016371sPASSinput · generic input · output · check report
389accepted exit 0 · 0.10792624199984857sPASSinput · generic input · output · check report
390accepted exit 0 · 0.08661292199940362sPASSinput · generic input · output · check report
391accepted exit 0 · 0.0970229480008129sPASSinput · generic input · output · check report
392accepted exit 0 · 0.09658505900006276sPASSinput · generic input · output · check report
393accepted exit 0 · 0.09100419900005363sPASSinput · generic input · output · check report
394accepted exit 0 · 0.05335226599981979sPASSinput · generic input · output · check report
395accepted exit 0 · 0.05499888800022745sPASSinput · generic input · output · check report
396accepted exit 0 · 0.107737907000228sPASSinput · generic input · output · check report
397accepted exit 0 · 0.05602434400043421sPASSinput · generic input · output · check report
398accepted exit 0 · 0.06337628199980827sPASSinput · generic input · output · check report
399accepted exit 0 · 0.06119915799990849sPASSinput · generic input · output · check report
400accepted exit 0 · 0.08641606400033197sPASSinput · generic input · output · check report
401accepted exit 0 · 0.06673234799927741sPASSinput · generic input · output · check report
402accepted exit 0 · 0.06442475299991202sPASSinput · generic input · output · check report
403accepted exit 0 · 0.07392440900002839sPASSinput · generic input · output · check report
404accepted exit 0 · 0.05873178000001644sPASSinput · generic input · output · check report
405accepted exit 0 · 0.08896623700002237sPASSinput · generic input · output · check report
406accepted exit 0 · 0.062149692000275536sPASSinput · generic input · output · check report
407accepted exit 0 · 0.06198830899938912sPASSinput · generic input · output · check report
408accepted exit 0 · 0.06268744299995888sPASSinput · generic input · output · check report
409accepted exit 0 · 0.10421095899982902sPASSinput · generic input · output · check report
410accepted exit 0 · 0.052480569000181276sPASSinput · generic input · output · check report
411accepted exit 0 · 0.0906836670001212sPASSinput · generic input · output · check report
412accepted exit 0 · 0.11016037699937442sPASSinput · generic input · output · check report
413accepted exit 0 · 0.06376433799960068sPASSinput · generic input · output · check report
414accepted exit 0 · 0.11288306300048134sPASSinput · generic input · output · check report
415accepted exit 0 · 0.11271705199942517sPASSinput · generic input · output · check report
416accepted exit 0 · 0.07075260700003128sPASSinput · generic input · output · check report
417accepted exit 0 · 0.0764773620003325sPASSinput · generic input · output · check report
418accepted exit 0 · 0.08221065399993677sPASSinput · generic input · output · check report
419accepted exit 0 · 0.07133911999972042sPASSinput · generic input · output · check report
420accepted exit 0 · 0.0844660520006073sPASSinput · generic input · output · check report
421accepted exit 0 · 0.06846889899952657sPASSinput · generic input · output · check report
422accepted exit 0 · 0.08329593500002375sPASSinput · generic input · output · check report
423accepted exit 0 · 0.07258544299929781sPASSinput · generic input · output · check report
424accepted exit 0 · 0.06503092200000538sPASSinput · generic input · output · check report
425accepted exit 0 · 0.09838420100004441sPASSinput · generic input · output · check report
426accepted exit 0 · 0.06669830400005594sPASSinput · generic input · output · check report
427accepted exit 0 · 0.06761488699976326sPASSinput · generic input · output · check report
428accepted exit 0 · 0.0892402140007107sPASSinput · generic input · output · check report
429accepted exit 0 · 0.0673954350004351sPASSinput · generic input · output · check report
430accepted exit 0 · 0.06095175900009053sPASSinput · generic input · output · check report
431accepted exit 0 · 0.1048315560001356sPASSinput · generic input · output · check report
432accepted exit 0 · 0.06221549400015647sPASSinput · generic input · output · check report
433accepted exit 0 · 0.06883584200022597sPASSinput · generic input · output · check report
434accepted exit 0 · 0.07182979699973657sPASSinput · generic input · output · check report
435accepted exit 0 · 0.09685764700043364sPASSinput · generic input · output · check report
436accepted exit 0 · 0.0548435859991514sPASSinput · generic input · output · check report
437accepted exit 0 · 0.05684279199977027sPASSinput · generic input · output · check report
438accepted exit 0 · 0.06106723900029465sPASSinput · generic input · output · check report
439accepted exit 0 · 0.10474833300031605sPASSinput · generic input · output · check report
440accepted exit 0 · 0.09509956600049918sPASSinput · generic input · output · check report
441accepted exit 0 · 0.059638695000103326sPASSinput · generic input · output · check report
442accepted exit 0 · 0.04633131399987178sPASSinput · generic input · output · check report
443accepted exit 0 · 0.06308700400040834sPASSinput · generic input · output · check report
444accepted exit 0 · 0.08940181299931282sPASSinput · generic input · output · check report
445accepted exit 0 · 0.06471343999965029sPASSinput · generic input · output · check report
446accepted exit 0 · 0.11086136099947907sPASSinput · generic input · output · check report
447accepted exit 0 · 0.06046621099994809sPASSinput · generic input · output · check report
448accepted exit 0 · 0.06007910400057881sPASSinput · generic input · output · check report
449accepted exit 0 · 0.06259801699980017sPASSinput · generic input · output · check report
450accepted exit 0 · 0.05862074400010897sPASSinput · generic input · output · check report
451accepted exit 0 · 0.05996749599944451sPASSinput · generic input · output · check report
452accepted exit 0 · 0.06560044900015782sPASSinput · generic input · output · check report
453accepted exit 0 · 0.06409738499951345sPASSinput · generic input · output · check report
454accepted exit 0 · 0.08759085399924516sPASSinput · generic input · output · check report
455accepted exit 0 · 0.0983409020000181sPASSinput · generic input · output · check report
456accepted exit 0 · 0.1322583549999763sPASSinput · generic input · output · check report
457accepted exit 0 · 0.06509475999973802sPASSinput · generic input · output · check report
458accepted exit 0 · 0.14021293200039509sPASSinput · generic input · output · check report
459accepted exit 0 · 0.08453792999989673sPASSinput · generic input · output · check report
460accepted exit 0 · 0.04890434200024174sPASSinput · generic input · output · check report
461accepted exit 0 · 0.06869488499978615sPASSinput · generic input · output · check report
462accepted exit 0 · 0.11577979899993807sPASSinput · generic input · output · check report
463accepted exit 0 · 0.06380111100042996sPASSinput · generic input · output · check report
464accepted exit 0 · 0.0620358349997332sPASSinput · generic input · output · check report
465accepted exit 0 · 0.08045736599979136sPASSinput · generic input · output · check report
466accepted exit 0 · 0.08158980299958785sPASSinput · generic input · output · check report
467accepted exit 0 · 0.08919621499990171sPASSinput · generic input · output · check report
468accepted exit 0 · 0.09852775700073835sPASSinput · generic input · output · check report
469accepted exit 0 · 0.10570218699922407sPASSinput · generic input · output · check report
470accepted exit 0 · 0.13392943200051377sPASSinput · generic input · output · check report
471accepted exit 0 · 0.09637787900010153sPASSinput · generic input · output · check report
472accepted exit 0 · 0.05727750599999126sPASSinput · generic input · output · check report
473accepted exit 0 · 0.09432590400047047sPASSinput · generic input · output · check report
474accepted exit 0 · 0.09269857699928252sPASSinput · generic input · output · check report
475accepted exit 0 · 0.06170593699971505sPASSinput · generic input · output · check report
476accepted exit 0 · 0.1104176090002511sPASSinput · generic input · output · check report
477accepted exit 0 · 0.10243533199991361sPASSinput · generic input · output · check report
478accepted exit 0 · 0.06065149599999131sPASSinput · generic input · output · check report
479accepted exit 0 · 0.07056485199973395sPASSinput · generic input · output · check report
480accepted exit 0 · 0.06083949000003486sPASSinput · generic input · output · check report
481accepted exit 0 · 0.07490334399972198sPASSinput · generic input · output · check report
482accepted exit 0 · 0.08731828100007988sPASSinput · generic input · output · check report
483accepted exit 0 · 0.060506083000291255sPASSinput · generic input · output · check report
484accepted exit 0 · 0.11915800499991747sPASSinput · generic input · output · check report
485accepted exit 0 · 0.07675438299975212sPASSinput · generic input · output · check report
486accepted exit 0 · 0.08000391799942008sPASSinput · generic input · output · check report
487accepted exit 0 · 0.0885404179998659sPASSinput · generic input · output · check report
488accepted exit 0 · 0.060249062000366393sPASSinput · generic input · output · check report
489accepted exit 0 · 0.05871098199986591sPASSinput · generic input · output · check report
490accepted exit 0 · 0.06787687500036554sPASSinput · generic input · output · check report
491accepted exit 0 · 0.06979919599962159sPASSinput · generic input · output · check report
492accepted exit 0 · 0.0562818390008033sPASSinput · generic input · output · check report
493accepted exit 0 · 0.055703032000565145sPASSinput · generic input · output · check report
494accepted exit 0 · 0.05279882400009228sPASSinput · generic input · output · check report
495accepted exit 0 · 0.09699080799964577sPASSinput · generic input · output · check report
496accepted exit 0 · 0.1022473050006738sPASSinput · generic input · output · check report
497accepted exit 0 · 0.05664590299966221sPASSinput · generic input · output · check report
498accepted exit 0 · 0.10095894400001271sPASSinput · generic input · output · check report
499accepted exit 0 · 0.06289703899983579sPASSinput · generic input · output · check report
500accepted exit 0 · 0.10489617099938187sPASSinput · generic input · output · check report
501accepted exit 0 · 0.06110978500055353sPASSinput · generic input · output · check report
502accepted exit 0 · 0.07573711700024433sPASSinput · generic input · output · check report
503accepted exit 0 · 0.06704347699997015sPASSinput · generic input · output · check report
504accepted exit 0 · 0.10532116000013048sPASSinput · generic input · output · check report
505accepted exit 0 · 0.0706524110000828sPASSinput · generic input · output · check report
506accepted exit 0 · 0.0670028109998384sPASSinput · generic input · output · check report
507accepted exit 0 · 0.05967741299991758sPASSinput · generic input · output · check report
508accepted exit 0 · 0.05833330699988437sPASSinput · generic input · output · check report
509accepted exit 0 · 0.0662519000006796sPASSinput · generic input · output · check report
510accepted exit 0 · 0.06630122299975483sPASSinput · generic input · output · check report
511accepted exit 0 · 0.06744139599959453sPASSinput · generic input · output · check report
512accepted exit 0 · 0.06731093100006547sPASSinput · generic input · output · check report
513accepted exit 0 · 0.07333394099987345sPASSinput · generic input · output · check report
514accepted exit 0 · 0.08391256400045677sPASSinput · generic input · output · check report
515accepted exit 0 · 0.06769657599943457sPASSinput · generic input · output · check report
516accepted exit 0 · 0.08725230100026238sPASSinput · generic input · output · check report
517accepted exit 0 · 0.07520708100037155sPASSinput · generic input · output · check report
518accepted exit 0 · 0.12759641699994972sPASSinput · generic input · output · check report
519accepted exit 0 · 0.06393360299989581sPASSinput · generic input · output · check report
520accepted exit 0 · 0.05552788499971939sPASSinput · generic input · output · check report
521accepted exit 0 · 0.06295479399977921sPASSinput · generic input · output · check report
522accepted exit 0 · 0.06822675200055528sPASSinput · generic input · output · check report
523accepted exit 0 · 0.06521327900009055sPASSinput · generic input · output · check report
524accepted exit 0 · 0.10853462100021716sPASSinput · generic input · output · check report
525accepted exit 0 · 0.06082595299994864sPASSinput · generic input · output · check report
526accepted exit 0 · 0.06584922399997595sPASSinput · generic input · output · check report
527accepted exit 0 · 0.06477012600043963sPASSinput · generic input · output · check report
528accepted exit 0 · 0.09489873299935425sPASSinput · generic input · output · check report
529accepted exit 0 · 0.05475160600053641sPASSinput · generic input · output · check report
530accepted exit 0 · 0.0668708040002457sPASSinput · generic input · output · check report
531accepted exit 0 · 0.05442353900070884sPASSinput · generic input · output · check report
532accepted exit 0 · 0.0647007460001987sPASSinput · generic input · output · check report
533accepted exit 0 · 0.06197903999964183sPASSinput · generic input · output · check report
534accepted exit 0 · 0.06250060999991547sPASSinput · generic input · output · check report
535accepted exit 0 · 0.06656002099953184sPASSinput · generic input · output · check report
536accepted exit 0 · 0.0604982069999096sPASSinput · generic input · output · check report
537accepted exit 0 · 0.0669554039996001sPASSinput · generic input · output · check report
538accepted exit 0 · 0.10299371799919754sPASSinput · generic input · output · check report
539accepted exit 0 · 0.06518966000021464sPASSinput · generic input · output · check report
540accepted exit 0 · 0.05853106300037325sPASSinput · generic input · output · check report
541accepted exit 0 · 0.05977565300054266sPASSinput · generic input · output · check report
542accepted exit 0 · 0.06750920100057556sPASSinput · generic input · output · check report
543accepted exit 0 · 0.05898895900008938sPASSinput · generic input · output · check report
544accepted exit 0 · 0.059358557000450674sPASSinput · generic input · output · check report
545accepted exit 0 · 0.06741364400022576sPASSinput · generic input · output · check report
546accepted exit 0 · 0.0739889120004591sPASSinput · generic input · output · check report
547accepted exit 0 · 0.10196357900076691sPASSinput · generic input · output · check report
548accepted exit 0 · 0.09284635400035768sPASSinput · generic input · output · check report
549accepted exit 0 · 0.06622402700031671sPASSinput · generic input · output · check report
550accepted exit 0 · 0.07702882000012323sPASSinput · generic input · output · check report
551accepted exit 0 · 0.06968105000032665sPASSinput · generic input · output · check report
552accepted exit 0 · 0.1169356880000123sPASSinput · generic input · output · check report
553accepted exit 0 · 0.12244725999971706sPASSinput · generic input · output · check report
554accepted exit 0 · 0.09968165999998746sPASSinput · generic input · output · check report
555accepted exit 0 · 0.05610229400008393sPASSinput · generic input · output · check report
556accepted exit 0 · 0.07365120000031311sPASSinput · generic input · output · check report
557accepted exit 0 · 0.05851609599994845sPASSinput · generic input · output · check report
558accepted exit 0 · 0.06561205700018036sPASSinput · generic input · output · check report
559accepted exit 0 · 0.06443605099957495sPASSinput · generic input · output · check report
560accepted exit 0 · 0.05905200200049876sPASSinput · generic input · output · check report
561accepted exit 0 · 0.06381255999986024sPASSinput · generic input · output · check report
562accepted exit 0 · 0.08846845399966696sPASSinput · generic input · output · check report
563accepted exit 0 · 0.05809401300030004sPASSinput · generic input · output · check report
564accepted exit 0 · 0.12265877600020758sPASSinput · generic input · output · check report
565accepted exit 0 · 0.08638903199971537sPASSinput · generic input · output · check report
566accepted exit 0 · 0.08970442500049103sPASSinput · generic input · output · check report
567accepted exit 0 · 0.08908458299993072sPASSinput · generic input · output · check report
568accepted exit 0 · 0.05928112699984922sPASSinput · generic input · output · check report
569accepted exit 0 · 0.06334113400043861sPASSinput · generic input · output · check report
570accepted exit 0 · 0.05851990600058343sPASSinput · generic input · output · check report
571accepted exit 0 · 0.06142203600029461sPASSinput · generic input · output · check report
572accepted exit 0 · 0.05728209100016102sPASSinput · generic input · output · check report
573accepted exit 0 · 0.05824117599968304sPASSinput · generic input · output · check report
574accepted exit 0 · 0.05662720199961768sPASSinput · generic input · output · check report
575accepted exit 0 · 0.0850532270005715sPASSinput · generic input · output · check report
576accepted exit 0 · 0.06127063099938823sPASSinput · generic input · output · check report
577accepted exit 0 · 0.0600893470000301sPASSinput · generic input · output · check report
578accepted exit 0 · 0.05623741100043844sPASSinput · generic input · output · check report
579accepted exit 0 · 0.05350698999973247sPASSinput · generic input · output · check report
580accepted exit 0 · 0.088044754999828sPASSinput · generic input · output · check report
581accepted exit 0 · 0.06246991700027138sPASSinput · generic input · output · check report
582accepted exit 0 · 0.059846249000656826sPASSinput · generic input · output · check report
583accepted exit 0 · 0.10107007399983559sPASSinput · generic input · output · check report
584accepted exit 0 · 0.0639623360002588sPASSinput · generic input · output · check report
585accepted exit 0 · 0.06811459399978048sPASSinput · generic input · output · check report
586accepted exit 0 · 0.060754006000024674sPASSinput · generic input · output · check report
587accepted exit 0 · 0.07456009300040023sPASSinput · generic input · output · check report
588accepted exit 0 · 0.06328396299977612sPASSinput · generic input · output · check report
589accepted exit 0 · 0.09089989900076034sPASSinput · generic input · output · check report
590accepted exit 0 · 0.08785238699965703sPASSinput · generic input · output · check report
591accepted exit 0 · 0.06404430400016281sPASSinput · generic input · output · check report
592accepted exit 0 · 0.0726382510001713sPASSinput · generic input · output · check report
593accepted exit 0 · 0.10400930699961464sPASSinput · generic input · output · check report
594accepted exit 0 · 0.1402996130000247sPASSinput · generic input · output · check report
595accepted exit 0 · 0.06378050100011023sPASSinput · generic input · output · check report
596accepted exit 0 · 0.061343758000475646sPASSinput · generic input · output · check report
597accepted exit 0 · 0.10704332200020872sPASSinput · generic input · output · check report
598accepted exit 0 · 0.07368635199964046sPASSinput · generic input · output · check report
599accepted exit 0 · 0.08479079100015952sPASSinput · generic input · output · check report
600accepted exit 0 · 0.06438022600013937sPASSinput · generic input · output · check report
601accepted exit 0 · 0.10252800800026307sPASSinput · generic input · output · check report
602accepted exit 0 · 0.05568881999988662sPASSinput · generic input · output · check report
603accepted exit 0 · 0.06502446900049108sPASSinput · generic input · output · check report
604accepted exit 0 · 0.06293378899954405sPASSinput · generic input · output · check report
605accepted exit 0 · 0.09962605700002314sPASSinput · generic input · output · check report
606accepted exit 0 · 0.08280618700064224sPASSinput · generic input · output · check report
607accepted exit 0 · 0.09960964400033845sPASSinput · generic input · output · check report
608accepted exit 0 · 0.059113229000104184sPASSinput · generic input · output · check report
609accepted exit 0 · 0.057277518999399035sPASSinput · generic input · output · check report
610accepted exit 0 · 0.05762099600087822sPASSinput · generic input · output · check report
611accepted exit 0 · 0.05743888300003164sPASSinput · generic input · output · check report
612accepted exit 0 · 0.059476030000041646sPASSinput · generic input · output · check report
613accepted exit 0 · 0.13378931100032787sPASSinput · generic input · output · check report
614accepted exit 0 · 0.11337550100051885sPASSinput · generic input · output · check report
615accepted exit 0 · 0.06810920200041437sPASSinput · generic input · output · check report
616accepted exit 0 · 0.06124290600018867sPASSinput · generic input · output · check report
617accepted exit 0 · 0.059505573000024015sPASSinput · generic input · output · check report
618accepted exit 0 · 0.06200487099977181sPASSinput · generic input · output · check report
619accepted exit 0 · 0.08491673400021682sPASSinput · generic input · output · check report
620accepted exit 0 · 0.09800699299921689sPASSinput · generic input · output · check report
621accepted exit 0 · 0.08481355700041604sPASSinput · generic input · output · check report
622accepted exit 0 · 0.06926074700004392sPASSinput · generic input · output · check report
623accepted exit 0 · 0.059081701000650355sPASSinput · generic input · output · check report
624accepted exit 0 · 0.06163179499981197sPASSinput · generic input · output · check report
625accepted exit 0 · 0.06433281199952035sPASSinput · generic input · output · check report
626accepted exit 0 · 0.05937484100013535sPASSinput · generic input · output · check report
627accepted exit 0 · 0.0632025019995126sPASSinput · generic input · output · check report
628accepted exit 0 · 0.06224774299971614sPASSinput · generic input · output · check report
629accepted exit 0 · 0.06005401999937021sPASSinput · generic input · output · check report
630accepted exit 0 · 0.05677533299967763sPASSinput · generic input · output · check report
631accepted exit 0 · 0.05815888899996935sPASSinput · generic input · output · check report
632accepted exit 0 · 0.05771912999989581sPASSinput · generic input · output · check report
633accepted exit 0 · 0.05627003000063269sPASSinput · generic input · output · check report
634accepted exit 0 · 0.056536391000008734sPASSinput · generic input · output · check report
635accepted exit 0 · 0.05912768199959828sPASSinput · generic input · output · check report
636accepted exit 0 · 0.09690993299955153sPASSinput · generic input · output · check report
637accepted exit 0 · 0.0613394869997137sPASSinput · generic input · output · check report
638accepted exit 0 · 0.059306908000507974sPASSinput · generic input · output · check report
639accepted exit 0 · 0.09748749899972609sPASSinput · generic input · output · check report
640accepted exit 0 · 0.12478320500031259sPASSinput · generic input · output · check report
641accepted exit 0 · 0.07829197899991414sPASSinput · generic input · output · check report
642accepted exit 0 · 0.061496530000113125sPASSinput · generic input · output · check report
643accepted exit 0 · 0.06137504100024671sPASSinput · generic input · output · check report
644accepted exit 0 · 0.0604668899995886sPASSinput · generic input · output · check report
645accepted exit 0 · 0.06223311600024317sPASSinput · generic input · output · check report
646accepted exit 0 · 0.10303838900017581sPASSinput · generic input · output · check report
647accepted exit 0 · 0.060698764999870036sPASSinput · generic input · output · check report
648accepted exit 0 · 0.056926690000182134sPASSinput · generic input · output · check report
649accepted exit 0 · 0.06327192099979584sPASSinput · generic input · output · check report
650accepted exit 0 · 0.060588215999814565sPASSinput · generic input · output · check report
651accepted exit 0 · 0.05331314199975168sPASSinput · generic input · output · check report
652accepted exit 0 · 0.05995209600041562sPASSinput · generic input · output · check report
653accepted exit 0 · 0.0599172610000096sPASSinput · generic input · output · check report
654accepted exit 0 · 0.05986278699947434sPASSinput · generic input · output · check report
655accepted exit 0 · 0.05608556200058956sPASSinput · generic input · output · check report
656accepted exit 0 · 0.058540536000691645sPASSinput · generic input · output · check report
657accepted exit 0 · 0.053804324000338966sPASSinput · generic input · output · check report
658accepted exit 0 · 0.10471681099988928sPASSinput · generic input · output · check report
659accepted exit 0 · 0.05809749099989858sPASSinput · generic input · output · check report
660accepted exit 0 · 0.06043460200089612sPASSinput · generic input · output · check report
661accepted exit 0 · 0.06633533599961083sPASSinput · generic input · output · check report
662accepted exit 0 · 0.1148451950002709sPASSinput · generic input · output · check report
663accepted exit 0 · 0.10246584800006531sPASSinput · generic input · output · check report
664accepted exit 0 · 0.10139883700048813sPASSinput · generic input · output · check report
665accepted exit 0 · 0.055077961000279174sPASSinput · generic input · output · check report
666accepted exit 0 · 0.05843045500023436sPASSinput · generic input · output · check report
667accepted exit 0 · 0.06253175799974997sPASSinput · generic input · output · check report
668accepted exit 0 · 0.08446657200056507sPASSinput · generic input · output · check report
669accepted exit 0 · 0.06420989799971721sPASSinput · generic input · output · check report
670accepted exit 0 · 0.0780477210000754sPASSinput · generic input · output · check report
671accepted exit 0 · 0.06262526299997262sPASSinput · generic input · output · check report
672accepted exit 0 · 0.06730272300046636sPASSinput · generic input · output · check report
673accepted exit 0 · 0.10301752800023678sPASSinput · generic input · output · check report
674accepted exit 0 · 0.11835990499912441sPASSinput · generic input · output · check report
675accepted exit 0 · 0.0671438709996437sPASSinput · generic input · output · check report
676accepted exit 0 · 0.062007116000131646sPASSinput · generic input · output · check report
677accepted exit 0 · 0.05380053899989434sPASSinput · generic input · output · check report
678accepted exit 0 · 0.05592656399949192sPASSinput · generic input · output · check report
679accepted exit 0 · 0.052783322999857774sPASSinput · generic input · output · check report
680accepted exit 0 · 0.05587190899950656sPASSinput · generic input · output · check report
681accepted exit 0 · 0.06469208099952084sPASSinput · generic input · output · check report
682accepted exit 0 · 0.05873719500050356sPASSinput · generic input · output · check report
683accepted exit 0 · 0.1053485209995415sPASSinput · generic input · output · check report
684accepted exit 0 · 0.05951152199941134sPASSinput · generic input · output · check report
685accepted exit 0 · 0.10285849100000632sPASSinput · generic input · output · check report
686accepted exit 0 · 0.06365599699984159sPASSinput · generic input · output · check report
687accepted exit 0 · 0.10903707599936752sPASSinput · generic input · output · check report
688accepted exit 0 · 0.0979648319998887sPASSinput · generic input · output · check report
689accepted exit 0 · 0.06305217800036189sPASSinput · generic input · output · check report
690accepted exit 0 · 0.06157476600037626sPASSinput · generic input · output · check report
691accepted exit 0 · 0.06097268099983921sPASSinput · generic input · output · check report
692accepted exit 0 · 0.09556040099960228sPASSinput · generic input · output · check report
693accepted exit 0 · 0.056423953999910736sPASSinput · generic input · output · check report
694accepted exit 0 · 0.09855049100042379sPASSinput · generic input · output · check report
695accepted exit 0 · 0.0627967450000142sPASSinput · generic input · output · check report
696accepted exit 0 · 0.057875425999554864sPASSinput · generic input · output · check report
697accepted exit 0 · 0.05618255799981853sPASSinput · generic input · output · check report
698accepted exit 0 · 0.1078125510002792sPASSinput · generic input · output · check report
699accepted exit 0 · 0.053965731999596755sPASSinput · generic input · output · check report
700accepted exit 0 · 0.07166854400020384sPASSinput · generic input · output · check report
701accepted exit 0 · 0.09852673299974413sPASSinput · generic input · output · check report
702accepted exit 0 · 0.0936859760004154sPASSinput · generic input · output · check report
703accepted exit 0 · 0.053096423000170034sPASSinput · generic input · output · check report
704accepted exit 0 · 0.052903777001120034sPASSinput · generic input · output · check report
705accepted exit 0 · 0.04993173900038528sPASSinput · generic input · output · check report
706accepted exit 0 · 0.06335824100096943sPASSinput · generic input · output · check report
707accepted exit 0 · 0.08684803699907206sPASSinput · generic input · output · check report
708accepted exit 0 · 0.12794231199950445sPASSinput · generic input · output · check report
709accepted exit 0 · 0.07651700799942773sPASSinput · generic input · output · check report
710accepted exit 0 · 0.059465133999765385sPASSinput · generic input · output · check report
711accepted exit 0 · 0.060411201000533765sPASSinput · generic input · output · check report
712accepted exit 0 · 0.059102954000991303sPASSinput · generic input · output · check report
713accepted exit 0 · 0.05379281199930119sPASSinput · generic input · output · check report
714accepted exit 0 · 0.0526866769996559sPASSinput · generic input · output · check report
715accepted exit 0 · 0.09653674699984549sPASSinput · generic input · output · check report
716accepted exit 0 · 0.05368852899846388sPASSinput · generic input · output · check report
717accepted exit 0 · 0.04888393600049312sPASSinput · generic input · output · check report
718accepted exit 0 · 0.050590773000294575sPASSinput · generic input · output · check report
719accepted exit 0 · 0.05299612299859291sPASSinput · generic input · output · check report
720accepted exit 0 · 0.06411491200015007sPASSinput · generic input · output · check report
721accepted exit 0 · 0.09458264100067026sPASSinput · generic input · output · check report
722accepted exit 0 · 0.055099727998822345sPASSinput · generic input · output · check report
723accepted exit 0 · 0.057644722999611986sPASSinput · generic input · output · check report
724accepted exit 0 · 0.053404948999741464sPASSinput · generic input · output · check report
725accepted exit 0 · 0.09423929900003714sPASSinput · generic input · output · check report
726accepted exit 0 · 0.05390471100145078sPASSinput · generic input · output · check report
727accepted exit 0 · 0.05029036999985692sPASSinput · generic input · output · check report
728accepted exit 0 · 0.055402871999831405sPASSinput · generic input · output · check report
729accepted exit 0 · 0.06462401600037992sPASSinput · generic input · output · check report
730accepted exit 0 · 0.060114903000794584sPASSinput · generic input · output · check report
731accepted exit 0 · 0.09869751499900303sPASSinput · generic input · output · check report
732accepted exit 0 · 0.056042864998744335sPASSinput · generic input · output · check report
733accepted exit 0 · 0.05663389200162783sPASSinput · generic input · output · check report
734accepted exit 0 · 0.06482125900038227sPASSinput · generic input · output · check report
735accepted exit 0 · 0.050177745000837604sPASSinput · generic input · output · check report
736accepted exit 0 · 0.05214667700056452sPASSinput · generic input · output · check report
737accepted exit 0 · 0.050910096999359666sPASSinput · generic input · output · check report
738accepted exit 0 · 0.05418358799943235sPASSinput · generic input · output · check report
739accepted exit 0 · 0.050427589998434996sPASSinput · generic input · output · check report
740accepted exit 0 · 0.050529170999652706sPASSinput · generic input · output · check report
741accepted exit 0 · 0.0483759069993539sPASSinput · generic input · output · check report
742accepted exit 0 · 0.09886233299948799sPASSinput · generic input · output · check report
743accepted exit 0 · 0.10081923100005952sPASSinput · generic input · output · check report
744accepted exit 0 · 0.05711214700022538sPASSinput · generic input · output · check report
745accepted exit 0 · 0.05603703199994925sPASSinput · generic input · output · check report
746accepted exit 0 · 0.05803058000128658sPASSinput · generic input · output · check report
747accepted exit 0 · 0.06002918800004409sPASSinput · generic input · output · check report
748accepted exit 0 · 0.06355531600092945sPASSinput · generic input · output · check report
749accepted exit 0 · 0.05263456799912092sPASSinput · generic input · output · check report
750accepted exit 0 · 0.05436656199890422sPASSinput · generic input · output · check report
751accepted exit 0 · 0.05460422999931325sPASSinput · generic input · output · check report
752accepted exit 0 · 0.06221223500142514sPASSinput · generic input · output · check report
753accepted exit 0 · 0.05881771399981517sPASSinput · generic input · output · check report
754accepted exit 0 · 0.05177183900013915sPASSinput · generic input · output · check report
755accepted exit 0 · 0.059785340999951586sPASSinput · generic input · output · check report
756accepted exit 0 · 0.054028943999583134sPASSinput · generic input · output · check report
757accepted exit 0 · 0.05573349600126676sPASSinput · generic input · output · check report
758accepted exit 0 · 0.058670226999311126sPASSinput · generic input · output · check report
759accepted exit 0 · 0.05719461599983333sPASSinput · generic input · output · check report
760accepted exit 0 · 0.054567437000514474sPASSinput · generic input · output · check report
761accepted exit 0 · 0.053457456999240094sPASSinput · generic input · output · check report
762accepted exit 0 · 0.059567997999693034sPASSinput · generic input · output · check report
763accepted exit 0 · 0.05686772100125381sPASSinput · generic input · output · check report
764accepted exit 0 · 0.09696402000008675sPASSinput · generic input · output · check report
765accepted exit 0 · 0.06651856499956921sPASSinput · generic input · output · check report
766accepted exit 0 · 0.09662091500103998sPASSinput · generic input · output · check report
767accepted exit 0 · 0.054703654001059476sPASSinput · generic input · output · check report
768accepted exit 0 · 0.09912399299901153sPASSinput · generic input · output · check report
769accepted exit 0 · 0.05562864899911801sPASSinput · generic input · output · check report
770accepted exit 0 · 0.060453460000644554sPASSinput · generic input · output · check report
771accepted exit 0 · 0.06958827800008294sPASSinput · generic input · output · check report
772accepted exit 0 · 0.05424174300060258sPASSinput · generic input · output · check report
773accepted exit 0 · 0.05515526800081716sPASSinput · generic input · output · check report
774accepted exit 0 · 0.05789638999885938sPASSinput · generic input · output · check report
775accepted exit 0 · 0.05565620299967122sPASSinput · generic input · output · check report
776accepted exit 0 · 0.060687793000397505sPASSinput · generic input · output · check report
777accepted exit 0 · 0.05676828200012096sPASSinput · generic input · output · check report
778accepted exit 0 · 0.0517694809987006sPASSinput · generic input · output · check report
779accepted exit 0 · 0.0514342160004162sPASSinput · generic input · output · check report
780accepted exit 0 · 0.05073059500136878sPASSinput · generic input · output · check report
781accepted exit 0 · 0.051925122999818996sPASSinput · generic input · output · check report
782accepted exit 0 · 0.05461624700001266sPASSinput · generic input · output · check report
783accepted exit 0 · 0.05117517200051225sPASSinput · generic input · output · check report
784accepted exit 0 · 0.08536199000081979sPASSinput · generic input · output · check report
785accepted exit 0 · 0.09648308800024097sPASSinput · generic input · output · check report
786accepted exit 0 · 0.09106445299948973sPASSinput · generic input · output · check report
787accepted exit 0 · 0.06269584199981182sPASSinput · generic input · output · check report
788accepted exit 0 · 0.05493933000070683sPASSinput · generic input · output · check report
789accepted exit 0 · 0.07762147799985541sPASSinput · generic input · output · check report
790accepted exit 0 · 0.09883171500041499sPASSinput · generic input · output · check report
791accepted exit 0 · 0.056948823999846354sPASSinput · generic input · output · check report
792accepted exit 0 · 0.056754576000457746sPASSinput · generic input · output · check report
793accepted exit 0 · 0.10439306799889891sPASSinput · generic input · output · check report
794accepted exit 0 · 0.05376624400014407sPASSinput · generic input · output · check report
795accepted exit 0 · 0.05522246599866776sPASSinput · generic input · output · check report
796accepted exit 0 · 0.05523930600065796sPASSinput · generic input · output · check report
797accepted exit 0 · 0.0978778449989477sPASSinput · generic input · output · check report
798accepted exit 0 · 0.058339932998933364sPASSinput · generic input · output · check report
799accepted exit 0 · 0.05585443400013901sPASSinput · generic input · output · check report
800accepted exit 0 · 0.09852556300029391sPASSinput · generic input · output · check report
801accepted exit 0 · 0.06229832700046245sPASSinput · generic input · output · check report
802accepted exit 0 · 0.08335155299937469sPASSinput · generic input · output · check report
803accepted exit 0 · 0.05683932200008712sPASSinput · generic input · output · check report
804accepted exit 0 · 0.07932234100007918sPASSinput · generic input · output · check report
805accepted exit 0 · 0.10228528600055142sPASSinput · generic input · output · check report
806accepted exit 0 · 0.06771327899878088sPASSinput · generic input · output · check report
807accepted exit 0 · 0.10294454799986852sPASSinput · generic input · output · check report
808accepted exit 0 · 0.06590228599998227sPASSinput · generic input · output · check report
809accepted exit 0 · 0.1013054489994829sPASSinput · generic input · output · check report
810accepted exit 0 · 0.10418225899957179sPASSinput · generic input · output · check report
811accepted exit 0 · 0.058743939000123646sPASSinput · generic input · output · check report
812accepted exit 0 · 0.053431519998412114sPASSinput · generic input · output · check report
813accepted exit 0 · 0.054831356999784475sPASSinput · generic input · output · check report
814accepted exit 0 · 0.08987761699972907sPASSinput · generic input · output · check report
815accepted exit 0 · 0.07824231400081771sPASSinput · generic input · output · check report
816accepted exit 0 · 0.07657090600150696sPASSinput · generic input · output · check report
817accepted exit 0 · 0.09781288700105506sPASSinput · generic input · output · check report
818accepted exit 0 · 0.10240519900071376sPASSinput · generic input · output · check report
819accepted exit 0 · 0.06142630199974519sPASSinput · generic input · output · check report
820accepted exit 0 · 0.10368085200025234sPASSinput · generic input · output · check report
821accepted exit 0 · 0.09973309399902064sPASSinput · generic input · output · check report
822accepted exit 0 · 0.05530195200117305sPASSinput · generic input · output · check report
823accepted exit 0 · 0.06033081700115872sPASSinput · generic input · output · check report
824accepted exit 0 · 0.055339022999760346sPASSinput · generic input · output · check report
825accepted exit 0 · 0.061954966999110184sPASSinput · generic input · output · check report
826accepted exit 0 · 0.06339134299923899sPASSinput · generic input · output · check report
827accepted exit 0 · 0.05587978099902102sPASSinput · generic input · output · check report
828accepted exit 0 · 0.054406926001320244sPASSinput · generic input · output · check report
829accepted exit 0 · 0.05704735000108485sPASSinput · generic input · output · check report
830accepted exit 0 · 0.05181978099972184sPASSinput · generic input · output · check report
831accepted exit 0 · 0.05613747600000352sPASSinput · generic input · output · check report
832accepted exit 0 · 0.05084770999928878sPASSinput · generic input · output · check report
833accepted exit 0 · 0.055724036999890814sPASSinput · generic input · output · check report
834accepted exit 0 · 0.05637962200125912sPASSinput · generic input · output · check report
835accepted exit 0 · 0.054255400000329246sPASSinput · generic input · output · check report
836accepted exit 0 · 0.053564097001071787sPASSinput · generic input · output · check report
837accepted exit 0 · 0.09259752799880516sPASSinput · generic input · output · check report
838accepted exit 0 · 0.05711474700001418sPASSinput · generic input · output · check report
839accepted exit 0 · 0.056838034999600495sPASSinput · generic input · output · check report
840accepted exit 0 · 0.056005937000009sPASSinput · generic input · output · check report
841accepted exit 0 · 0.05411463399832428sPASSinput · generic input · output · check report
842accepted exit 0 · 0.048653374000423355sPASSinput · generic input · output · check report
843accepted exit 0 · 0.05131250399972487sPASSinput · generic input · output · check report
844accepted exit 0 · 0.0537929570000415sPASSinput · generic input · output · check report
845accepted exit 0 · 0.056788371000948246sPASSinput · generic input · output · check report
846accepted exit 0 · 0.057517233999533346sPASSinput · generic input · output · check report
847accepted exit 0 · 0.09869690699997591sPASSinput · generic input · output · check report
848accepted exit 0 · 0.05946597500042117sPASSinput · generic input · output · check report
849accepted exit 0 · 0.05516650399840728sPASSinput · generic input · output · check report
850accepted exit 0 · 0.10214212699975178sPASSinput · generic input · output · check report
851accepted exit 0 · 0.10442648100070073sPASSinput · generic input · output · check report
852accepted exit 0 · 0.05846466799994232sPASSinput · generic input · output · check report
853accepted exit 0 · 0.060621692000495386sPASSinput · generic input · output · check report
854accepted exit 0 · 0.05870021200098563sPASSinput · generic input · output · check report
855accepted exit 0 · 0.10493601000052877sPASSinput · generic input · output · check report
856accepted exit 0 · 0.06013794999853417sPASSinput · generic input · output · check report
857accepted exit 0 · 0.05587629100045888sPASSinput · generic input · output · check report
858accepted exit 0 · 0.052549723999618436sPASSinput · generic input · output · check report
859accepted exit 0 · 0.06040381099955994sPASSinput · generic input · output · check report
860accepted exit 0 · 0.09420921999844722sPASSinput · generic input · output · check report
861accepted exit 0 · 0.05712356100048055sPASSinput · generic input · output · check report
862accepted exit 0 · 0.04970073599906755sPASSinput · generic input · output · check report
863accepted exit 0 · 0.0557094159994449sPASSinput · generic input · output · check report
864accepted exit 0 · 0.0855384940005024sPASSinput · generic input · output · check report
865accepted exit 0 · 0.06850495300022885sPASSinput · generic input · output · check report
866accepted exit 0 · 0.05649651900057506sPASSinput · generic input · output · check report
867accepted exit 0 · 0.05994988499878673sPASSinput · generic input · output · check report
868accepted exit 0 · 0.06091521300004388sPASSinput · generic input · output · check report
869accepted exit 0 · 0.09762499400130764sPASSinput · generic input · output · check report
870accepted exit 0 · 0.06573908100108383sPASSinput · generic input · output · check report
871accepted exit 0 · 0.054605145000095945sPASSinput · generic input · output · check report
872accepted exit 0 · 0.05860561200097436sPASSinput · generic input · output · check report
873accepted exit 0 · 0.05876335900029517sPASSinput · generic input · output · check report
874accepted exit 0 · 0.06058313699941209sPASSinput · generic input · output · check report
875accepted exit 0 · 0.06570457599991641sPASSinput · generic input · output · check report
876accepted exit 0 · 0.05818077100047958sPASSinput · generic input · output · check report
877accepted exit 0 · 0.060740663999240496sPASSinput · generic input · output · check report
878accepted exit 0 · 0.06179184400025406sPASSinput · generic input · output · check report
879accepted exit 0 · 0.059725441000409774sPASSinput · generic input · output · check report
880accepted exit 0 · 0.05313116700017417sPASSinput · generic input · output · check report
881accepted exit 0 · 0.05086185199979809sPASSinput · generic input · output · check report
882accepted exit 0 · 0.055792511000618106sPASSinput · generic input · output · check report
883accepted exit 0 · 0.09587695899972459sPASSinput · generic input · output · check report
884accepted exit 0 · 0.057343974000104936sPASSinput · generic input · output · check report
885accepted exit 0 · 0.050492246000430896sPASSinput · generic input · output · check report
886accepted exit 0 · 0.09509621700090065sPASSinput · generic input · output · check report
887accepted exit 0 · 0.05528668800070591sPASSinput · generic input · output · check report
888accepted exit 0 · 0.10827550599969982sPASSinput · generic input · output · check report
889accepted exit 0 · 0.07357771700117155sPASSinput · generic input · output · check report
890accepted exit 0 · 0.07139845100027742sPASSinput · generic input · output · check report
891accepted exit 0 · 0.05930237299980945sPASSinput · generic input · output · check report
892accepted exit 0 · 0.05756716299947584sPASSinput · generic input · output · check report
893accepted exit 0 · 0.10235501100032707sPASSinput · generic input · output · check report
894accepted exit 0 · 0.10390282700063835sPASSinput · generic input · output · check report
895accepted exit 0 · 0.05885864599986235sPASSinput · generic input · output · check report
896accepted exit 0 · 0.05478107500130136sPASSinput · generic input · output · check report
897accepted exit 0 · 0.062173501999495784sPASSinput · generic input · output · check report
898accepted exit 0 · 0.05323173599936126sPASSinput · generic input · output · check report
899accepted exit 0 · 0.04959837999922456sPASSinput · generic input · output · check report
900accepted exit 0 · 0.06623896499877446sPASSinput · generic input · output · check report
901accepted exit 0 · 0.0674978770002781sPASSinput · generic input · output · check report
902accepted exit 0 · 0.09864385099899664sPASSinput · generic input · output · check report
903accepted exit 0 · 0.06015158700029133sPASSinput · generic input · output · check report
904accepted exit 0 · 0.054200305999984266sPASSinput · generic input · output · check report
905accepted exit 0 · 0.10096627600069041sPASSinput · generic input · output · check report
906accepted exit 0 · 0.05615107999983593sPASSinput · generic input · output · check report
907accepted exit 0 · 0.10112334200130135sPASSinput · generic input · output · check report
908accepted exit 0 · 0.0705799429997569sPASSinput · generic input · output · check report
909accepted exit 0 · 0.07580096899982891sPASSinput · generic input · output · check report
910accepted exit 0 · 0.06406974799938325sPASSinput · generic input · output · check report
911accepted exit 0 · 0.0668792910000775sPASSinput · generic input · output · check report
912accepted exit 0 · 0.06119047399988631sPASSinput · generic input · output · check report
913accepted exit 0 · 0.06087682299948938sPASSinput · generic input · output · check report
914accepted exit 0 · 0.0992426989996602sPASSinput · generic input · output · check report
915accepted exit 0 · 0.09711604199947033sPASSinput · generic input · output · check report
916accepted exit 0 · 0.05514233000030799sPASSinput · generic input · output · check report
917accepted exit 0 · 0.05757545400047093sPASSinput · generic input · output · check report
918accepted exit 0 · 0.0547739260000526sPASSinput · generic input · output · check report
919accepted exit 0 · 0.09531466899898078sPASSinput · generic input · output · check report
920accepted exit 0 · 0.05809981099992001sPASSinput · generic input · output · check report
921accepted exit 0 · 0.05949679299919808sPASSinput · generic input · output · check report
922accepted exit 0 · 0.053912232999209664sPASSinput · generic input · output · check report
923accepted exit 0 · 0.051841300999512896sPASSinput · generic input · output · check report
924accepted exit 0 · 0.09549624099963694sPASSinput · generic input · output · check report
925accepted exit 0 · 0.08885070200085465sPASSinput · generic input · output · check report
926accepted exit 0 · 0.055236598000192316sPASSinput · generic input · output · check report
927accepted exit 0 · 0.054433936000350513sPASSinput · generic input · output · check report
928accepted exit 0 · 0.09671294299914734sPASSinput · generic input · output · check report
929accepted exit 0 · 0.09786322999934782sPASSinput · generic input · output · check report
930accepted exit 0 · 0.057876130000295234sPASSinput · generic input · output · check report
931accepted exit 0 · 0.05736745200010773sPASSinput · generic input · output · check report
932accepted exit 0 · 0.09687582900005509sPASSinput · generic input · output · check report
933accepted exit 0 · 0.06489953100026469sPASSinput · generic input · output · check report
934accepted exit 0 · 0.09880126700045366sPASSinput · generic input · output · check report
935accepted exit 0 · 0.062248115998954745sPASSinput · generic input · output · check report
936accepted exit 0 · 0.06375766999917687sPASSinput · generic input · output · check report
937accepted exit 0 · 0.0598775909984397sPASSinput · generic input · output · check report
938accepted exit 0 · 0.05915726299826929sPASSinput · generic input · output · check report
939accepted exit 0 · 0.056491180999728385sPASSinput · generic input · output · check report
940accepted exit 0 · 0.06370173399955092sPASSinput · generic input · output · check report
941accepted exit 0 · 0.06100832099946274sPASSinput · generic input · output · check report
942accepted exit 0 · 0.054878974000530434sPASSinput · generic input · output · check report
943accepted exit 0 · 0.0564243950011587sPASSinput · generic input · output · check report
944accepted exit 0 · 0.06458757299878926sPASSinput · generic input · output · check report
945accepted exit 0 · 0.06282759700116003sPASSinput · generic input · output · check report
946accepted exit 0 · 0.05777994800155284sPASSinput · generic input · output · check report
947accepted exit 0 · 0.05852743699870189sPASSinput · generic input · output · check report
948accepted exit 0 · 0.054930279999098275sPASSinput · generic input · output · check report
949accepted exit 0 · 0.10806470699935744sPASSinput · generic input · output · check report
950accepted exit 0 · 0.059112740000273334sPASSinput · generic input · output · check report
951accepted exit 0 · 0.05574720000004163sPASSinput · generic input · output · check report
952accepted exit 0 · 0.06715108299977146sPASSinput · generic input · output · check report
953accepted exit 0 · 0.09802255899921875sPASSinput · generic input · output · check report
954accepted exit 0 · 0.10770884600060526sPASSinput · generic input · output · check report
955accepted exit 0 · 0.06193915299991204sPASSinput · generic input · output · check report
956accepted exit 0 · 0.060619378000410507sPASSinput · generic input · output · check report
957accepted exit 0 · 0.0587472200004413sPASSinput · generic input · output · check report
958accepted exit 0 · 0.056595857999127475sPASSinput · generic input · output · check report
959accepted exit 0 · 0.09735790699960489sPASSinput · generic input · output · check report
960accepted exit 0 · 0.06452975399952265sPASSinput · generic input · output · check report
961accepted exit 0 · 0.051879653001378756sPASSinput · generic input · output · check report
962accepted exit 0 · 0.05984367700148141sPASSinput · generic input · output · check report
963accepted exit 0 · 0.11007260000042152sPASSinput · generic input · output · check report
964accepted exit 0 · 0.05516728699876694sPASSinput · generic input · output · check report
965accepted exit 0 · 0.05841517499902693sPASSinput · generic input · output · check report
966accepted exit 0 · 0.05837411799984693sPASSinput · generic input · output · check report
967accepted exit 0 · 0.06415366500004893sPASSinput · generic input · output · check report
968accepted exit 0 · 0.06288065800072218sPASSinput · generic input · output · check report
969accepted exit 0 · 0.06873404399993888sPASSinput · generic input · output · check report
970accepted exit 0 · 0.11096796599849768sPASSinput · generic input · output · check report
971accepted exit 0 · 0.0870961750006245sPASSinput · generic input · output · check report
972accepted exit 0 · 0.10543776800113847sPASSinput · generic input · output · check report
973accepted exit 0 · 0.06883910199940146sPASSinput · generic input · output · check report
974accepted exit 0 · 0.049920200999622466sPASSinput · generic input · output · check report
975accepted exit 0 · 0.05265964200043527sPASSinput · generic input · output · check report
976accepted exit 0 · 0.04970791199957603sPASSinput · generic input · output · check report
977accepted exit 0 · 0.054328877000443754sPASSinput · generic input · output · check report
978accepted exit 0 · 0.05029562900017481sPASSinput · generic input · output · check report
979accepted exit 0 · 0.0979625660002057sPASSinput · generic input · output · check report
980accepted exit 0 · 0.063949359999242sPASSinput · generic input · output · check report
981accepted exit 0 · 0.054532951000510366sPASSinput · generic input · output · check report
982accepted exit 0 · 0.05600085600053717sPASSinput · generic input · output · check report
983accepted exit 0 · 0.05667632900076569sPASSinput · generic input · output · check report
984accepted exit 0 · 0.050319523999860394sPASSinput · generic input · output · check report
985accepted exit 0 · 0.060542782999618794sPASSinput · generic input · output · check report
986accepted exit 0 · 0.05023239000001922sPASSinput · generic input · output · check report
987accepted exit 0 · 0.055772556999727385sPASSinput · generic input · output · check report
988accepted exit 0 · 0.05349489499894844sPASSinput · generic input · output · check report
989accepted exit 0 · 0.06926885199936805sPASSinput · generic input · output · check report
990accepted exit 0 · 0.09854344000086712sPASSinput · generic input · output · check report
991accepted exit 0 · 0.05365778300074453sPASSinput · generic input · output · check report
992accepted exit 0 · 0.05203647900088981sPASSinput · generic input · output · check report
993accepted exit 0 · 0.0516379880009481sPASSinput · generic input · output · check report
994accepted exit 0 · 0.05576236699926085sPASSinput · generic input · output · check report
995accepted exit 0 · 0.06898643000022275sPASSinput · generic input · output · check report
996accepted exit 0 · 0.056910118999439874sPASSinput · generic input · output · check report
997accepted exit 0 · 0.061282124999706866sPASSinput · generic input · output · check report
998accepted exit 0 · 0.059239948001049925sPASSinput · generic input · output · check report
999accepted exit 0 · 0.094519570000557sPASSinput · generic input · output · check report
How this PBT was generated and reviewed

paired production revision · manifest.json · review.json

partial source coverage: Approved for execution and public reporting; translation accuracy and completeness remain separately unvalidated.

Independent replay: 20 generated, 20 compiler-accepted; checker verdicts {"PASS": 20}. Compiler binary and revision identities matched.

Covered requirements

  • Absence of the enumerated parallel-control operations and schedule attributes in graph output.

Uncovered requirements

  • Full correspondence to the source passage and coverage beyond the authored generator/checker have not been established; empty selections may pass without exercising assertions.
Agent-selected pinned authoring context · authoring-context.json
{"entries":[{"file_sha256":"d76b4cb1e888697d5f011a939e68cbc6230647c4d457c12d22689740aa43a44d","kind":"documentation_input","lines":"87-100","path":"docs/spec-compiler-part-3-dfg.md","roles":["input_construction","input_well_formedness"],"text":"Between Parts 2 and 3, SCF optimization and DSE produce the selected\nStructured Program Candidate. That domain owns all performance-distinct\nstructured choices. Part 3 begins only after those choices and their typed\nownership carriers are explicit.\n\nInput to graph extraction is an MLIR module containing module-scope\n`dataflow.thread` definitions. Every selected SpatialCore candidate is already\nmaterialized as a `loom.spatial_region` inside exactly one thread. Other thread\nbody code remains InstructionCore-resident, including SCF-shaped code outside\nan explicit spatial boundary. Imported Host or InstructionCore code remains in\nits `llvm.func` envelope; genuinely standard-MLIR-native `func.func` callables\nmay coexist in the module. Either callable is ownership-neutral and does not\nauthorize graph creation through its signature, body shape, memory effects, or\nreturn convention.","why":"Normative handoff shape for Part 3 input: module-scope dataflow.thread definitions, each selected SpatialCore candidate already materialized as a loom.spatial_region in exactly one thread, InstructionCore-resident SCF outside the boundary, and ownership-neutral llvm.func / func.func callables. Drives the module skeleton, the resident-code alternative, and the prelude alternatives in candidate.pg."},{"file_sha256":"d76b4cb1e888697d5f011a939e68cbc6230647c4d457c12d22689740aa43a44d","kind":"documentation_input","lines":"102-135","path":"docs/spec-compiler-part-3-dfg.md","roles":["applicability","context","input_construction"],"text":"Output is an initial Canonical Dataflow Program: module-level `llvm.func`\nsymbols for imported LLVM callables, any genuinely native `func.func` helpers,\nmodule-level\n`dataflow.thread` definitions reached by zero or more\n`dataflow.thread.launch` ops; and module-level `dataflow.graph`\ndefinitions reached by zero or more `dataflow.graph.launch` ops\ninside thread definitions. No `scf.*` op is left inside any\n`dataflow.graph` definition's body after successful graph-region lowering.\nThe recursive lowering contract accepts arbitrary nesting of\n`scf.if`, source-sequential `scf.for`, `scf.while`, and fixed-width\ngraph-owned `scf.parallel` or effect-form `scf.forall`. A graph-owned parallel\nop must have a compile-time fixed domain, and all facts needed to establish\nownership, width, and cross-lane legality must be present in the current\nStructured Program Candidate's semantic IR and resolved lowering config.\nThe lowerer re-proves those facts; lineage, cached analyses, and external\nprovenance cannot make an otherwise invalid candidate legal. Dynamic-width,\nresource-mapped, and result or reduction forms fail before any graph is\nmutated; the graph owner does not infer ownership, serialization, unrolling,\nor reduction order. The\n`dataflow.thread.launch` op carries the completion token and\nmapped-memory data transfer; the def remains a callable kernel\nbody, not a tensor-result returning op. Memory dependence\nconstruction runs in the recursive graph owner using basic graph-local alias\nroots and per-partition write/read frontiers (see\n`docs/spec-compiler-part-3-mem.md`).\nThe Structured Transfer Algebra defines graph-owned parallel composition only\nafter the Structured Program Candidate has materialized its P[] ownership and\nschedule form in semantic SCF. That fixed-domain SCF is the transient input\nrepresentation for mechanical lowering. It is recursively replicated into\nstatic lanes and removed; no parallel control op or schedule record survives\nin canonical graph IR.\nGraph candidate eligibility and atomic publication are governed by this\ndocument. TechMapping, SpatialMapping, and SystemMapping realization are\noutside this IR.","why":"Governing context of the sampled obligation: defines canonical graph IR (module-level dataflow.graph definitions launched from threads) that the postcondition selects, and states the accepted recursive lowering contract (arbitrary nesting of scf.if / scf.for / scf.while with fixed-width graph-owned scf.parallel or effect-form scf.forall) that the grammar samples."},{"file_sha256":"d76b4cb1e888697d5f011a939e68cbc6230647c4d457c12d22689740aa43a44d","kind":"documentation_input","lines":"117-120","path":"docs/spec-compiler-part-3-dfg.md","roles":["input_well_formedness"],"text":"provenance cannot make an otherwise invalid candidate legal. Dynamic-width,\nresource-mapped, and result or reduction forms fail before any graph is\nmutated; the graph owner does not infer ownership, serialization, unrolling,\nor reduction order. The","why":"Dynamic-width, resource-mapped, and result/reduction parallel forms fail before any graph is mutated; the grammar therefore only emits compile-time constant lane domains, effect-form scf.forall, and scf.parallel with an empty scf.reduce."},{"file_sha256":"d76b4cb1e888697d5f011a939e68cbc6230647c4d457c12d22689740aa43a44d","kind":"documentation_input","lines":"1454-1461","path":"docs/spec-compiler-part-3-dfg.md","roles":["input_construction","input_well_formedness"],"text":"This section records Dataflow templates for SCF boundaries. Recursive lowering\napplies the same transfer to `scf.if`, normalized `scf.index_switch`,\nsource-sequential `scf.for`, `scf.while`, and fixed-domain\neffect-form `scf.parallel` / `scf.forall`. A zero-case `scf.index_switch` is\nreplaced by its default region during structured normalization. Other\nunsupported source forms must be normalized by Part 2 before handoff of the\nselected Structured Program Candidate and are rejected if they remain in a\ngraph.","why":"Enumerates the SCF boundary forms the recursive transfer accepts inside a graph candidate and states that other source forms must have been normalized before handoff; bounds the nesting alternatives sampled by the grammar."},{"file_sha256":"d76b4cb1e888697d5f011a939e68cbc6230647c4d457c12d22689740aa43a44d","kind":"documentation_input","lines":"2140-2171","path":"docs/spec-compiler-part-3-dfg.md","roles":["context","input_construction"],"text":"For an accepted one-dimensional effect-form loop, `%N` denotes a\ncompile-time-resolved extent and the candidate has already selected\n`P[] = [%N]`:\n\n```mlir\nscf.parallel (%i) = (%c0) to (%N) step (%c1) {\n  %x = memref.load %A[%i] : memref<?xf32>\n  %y = arith.mulf %x, %x : f32\n  memref.store %y, %B[%i] : memref<?xf32>\n  scf.reduce\n}\n```\n\n`scf.parallel` is not a second Dataflow loop primitive. No\n`dataflow.parallel`, `dataflow.reduce`, reduction enum, schedule record, or\nparallel control op is introduced.\n\n#### Parallel Boundary Translation\n\nFor rank `r` and fixed widths `P[]`, the graph owner creates one static lane\nfor each logical coordinate tuple in the selected Cartesian domain. Each lane\nstarts from the same incoming execution and per-partition `(W, R)` frontier,\nsubstitutes its already selected source induction values, and recursively\nlowers the existing body. Incomparable exits are joined with fixed-arity\nall-of; an empty domain is an identity transfer. The Cartesian rank is not\nbounded by this lowering contract.\n\nLane enumeration is an implementation detail and never creates\ncross-iteration program order. A failed independence or ownership re-proof\ncauses atomic failure. No parallel boundary, coordinate tuple, `P[]` record,\ndependence summary, or traversal order survives into canonical graph IR.","why":"Terminology for the sampled obligation: the fixed-domain scf.parallel template for an already-selected P[], and the statement that no dataflow.parallel, dataflow.reduce, reduction enum, schedule record, or parallel control op is introduced and no parallel boundary or P[] record survives into canonical graph IR. Fixes what 'parallel control op' and 'schedule record' name in this IR."},{"file_sha256":"30c9c0c7b66af358b2cbdbeed35564e3c71f3e3dbcd88fa3a901229479c606b1","kind":"implementation","lines":"24-65","path":"include/Frontend/Lowering/Passes.h","roles":["applicability"],"text":"// transaction succeeds.\n//\n// Published graph symbols are deterministic, collision-free, and\n// construction-local. graph_name may supply a readability/debug stem; symbol\n// spelling is not ownership, graph identity, or artifact identity.\nstd::unique_ptr<::mlir::Pass> createLowerForToGraphPass();\n\n// Module-scope pass that expands SpatialCore-owned `memref.copy` inside\n// dataflow.graph bodies into a structured memref.load/memref.store element\n// loop. The graph-memory owner then derives the ordinary dataflow.load/store\n// pair and its ctrl/done network, so the canonical program keeps no bulk\n// transfer op. A copy outside the supported profile fails here, inside the\n// publication transaction.\nstd::unique_ptr<::mlir::Pass> createExpandGraphMemrefCopyPass();\n\n// Module-scope owner for graph-local memory and structured regions. It\n// normalizes supported scalar LLVM and memref accesses to dataflow.load/store,\n// computes basic graph-local alias-root partitions, and recursively lowers\n// scf.if/scf.for/scf.while while carrying execution, values, and independent\n// write/read frontiers. Raw parallel SCF fails before mutation.\nstd::unique_ptr<::mlir::Pass> createLowerGraphMemoryPass();\n\n// Module-scope pass that promotes each used `arith.constant` op inside a\n// dataflow.graph body into a `dataflow.constant` op driven by the body's\n// leading `thread_ctrl` block argument. Graph-local scalar literals therefore\n// remain visible to PnR as configurable hardware constants, including literals\n// feeding scalar arithmetic, structured loop bounds, or streaming primitives.\nstd::unique_ptr<::mlir::Pass> createLowerGraphConstantsPass();\n\n// Register the lowering passes with the global pass registry so\n// loom-raise-opt can drive them via --loom-lower-forall-to-thread /\n// --loom-lower-for-to-graph / --loom-expand-graph-memref-copy /\n// --loom-lower-graph-memory / --loom-lower-graph-constants plus the combined\n// --loom-lower-scf-to-dfg pipeline.\nvoid registerLoweringPasses();\n\n// Append the SCF-to-DFG lowering pipeline to the given pass manager:\n//   loom-lower-for-to-graph            (module-level)\n// The for-to-graph publisher internally owns canonicalization, graph\n// memref-copy expansion, graph memory/control lowering, constant promotion,\n// and native validation.\nvoid buildLoweringPipeline(::mlir::PassManager &pm);","why":"Identifies --loom-lower-scf-to-dfg as the combined SCF-to-DFG pipeline built from the module-level for-to-graph publisher (which internally owns canonicalization, graph memory/control lowering, constant promotion, and native validation). Evidence that the supplied stage flag is the one that publishes graphs and removes parallel SCF; no stage attribution mismatch."},{"file_sha256":"73f239de628bbf8d40145ecde732142ffcf6567c9483e6dc2286ae9176a6907c","kind":"language_definition","lines":"8-101","path":"include/Frontend/IR/LoomOps.td","roles":["input_construction","input_well_formedness"],"text":"def Loom_SpatialRegionOp : Loom_Op<\"spatial_region\", [\n    IsolatedFromAbove,\n    SingleBlock,\n    AttrSizedOperandSegments,\n    AttrSizedResultSegments,\n    RecursiveMemoryEffects\n]> {\n  let summary = \"Structured candidate for one SpatialCore graph\";\n  let description = [{\n    Holds one structured candidate inside a `dataflow.thread`. Operands are\n    normalized as value inputs, stream input channels, memory inputs, and\n    stream output channels. Results are normalized as value outputs followed\n    by memory outputs. Each stream input has one affine `source_map`.\n\n    This operation is temporary compiler IR. Successful publication replaces\n    it with one native-valid `dataflow.graph` and its matching launch.\n  }];\n\n  let arguments = (ins\n      Variadic<AnyType>:$valueInputs,\n      Variadic<Dataflow_ChannelType>:$streamInputs,\n      Variadic<AnyType>:$memoryInputs,\n      Variadic<Dataflow_ChannelType>:$streamOutputs,\n      AffineMapArrayAttr:$source_maps,\n      OptionalAttr<StrAttr>:$graph_name);\n\n  let results = (outs\n      Variadic<AnyType>:$valueResults,\n      Variadic<AnyType>:$memoryResults);\n\n  let regions = (region AnyRegion:$body);\n\n  let skipDefaultBuilders = 1;\n  let builders = [\n    OpBuilder<(ins\n        \"::mlir::ValueRange\":$valueInputs,\n        \"::mlir::ValueRange\":$streamInputs,\n        \"::mlir::ValueRange\":$memoryInputs,\n        \"::mlir::ValueRange\":$streamOutputs,\n        \"::mlir::TypeRange\":$valueResultTypes,\n        \"::mlir::TypeRange\":$memoryResultTypes,\n        \"::mlir::ArrayAttr\":$sourceMaps,\n        CArg<\"::mlir::StringAttr\", \"{}\">:$graphName), [{\n      $_state.addOperands(valueInputs);\n      $_state.addOperands(streamInputs);\n      $_state.addOperands(memoryInputs);\n      $_state.addOperands(streamOutputs);\n      $_state.addTypes(valueResultTypes);\n      $_state.addTypes(memoryResultTypes);\n      $_state.addAttribute(\"source_maps\", sourceMaps);\n      if (graphName)\n        $_state.addAttribute(\"graph_name\", graphName);\n      auto &properties = $_state.getOrAddProperties<Properties>();\n      properties.operandSegmentSizes = {\n          static_cast<int32_t>(valueInputs.size()),\n          static_cast<int32_t>(streamInputs.size()),\n          static_cast<int32_t>(memoryInputs.size()),\n          static_cast<int32_t>(streamOutputs.size())};\n      properties.resultSegmentSizes = {\n          static_cast<int32_t>(valueResultTypes.size()),\n          static_cast<int32_t>(memoryResultTypes.size())};\n      $_state.addRegion();\n    }]>\n  ];\n\n  let hasVerifier = 1;\n}\n\ndef Loom_SpatialYieldOp : Loom_Op<\"spatial_yield\", [\n    Terminator,\n    ParentOneOf<[\"::loom::SpatialRegionOp\"]>,\n    AttrSizedOperandSegments,\n    Pure\n]> {\n  let summary = \"Yield value and memory results from a spatial candidate\";\n\n  let arguments = (ins\n      Variadic<AnyType>:$values,\n      Variadic<AnyType>:$memories);\n\n  let skipDefaultBuilders = 1;\n  let builders = [\n    OpBuilder<(ins\n        \"::mlir::ValueRange\":$values,\n        \"::mlir::ValueRange\":$memories), [{\n      $_state.addOperands(values);\n      $_state.addOperands(memories);\n      auto &properties = $_state.getOrAddProperties<Properties>();\n      properties.operandSegmentSizes = {\n          static_cast<int32_t>(values.size()),\n          static_cast<int32_t>(memories.size())};\n    }]>\n  ];","why":"Operand/result segmentation (valueInputs, streamInputs, memoryInputs, streamOutputs), source_maps and graph_name attributes of loom.spatial_region, and the loom.spatial_yield terminator; fixes the exact generic-form spelling the grammar emits for each spatial candidate."},{"file_sha256":"f4e60b2e62b496c3714437bd100ab5236540abebd3685dfbd25eeddb37cb7160","kind":"language_definition","lines":"614-676","path":"include/Dataflow/IR/DataflowOps.td","roles":["input_construction","input_well_formedness"],"text":"def Dataflow_ThreadOp : Dataflow_Op<\"thread\", [\n    AutomaticAllocationScope,\n    IsolatedFromAbove,\n    HasParent<\"::mlir::ModuleOp\">,\n    SingleBlockImplicitTerminator<\"ThreadYieldOp\">,\n    FunctionOpInterface,\n    RecursiveMemoryEffects\n]> {\n  let summary = \"Symbol-bearing function-like AccCore kernel definition\";\n  let description = [{\n    Module-scope, function-like callable that holds an AccCore kernel\n    body. It does not itself execute; one or more\n    `dataflow.thread.launch` ops materialize launches of it.\n\n    The body's entry block has the layout\n    `(args_*, thread_ctrl: none, iv_*: index)` (per spec section\n    5.4.1). The first N block args mirror `function_type.inputs`; the\n    trailing `thread_ctrl` and grid index args are NOT in\n    `function_type` (they are launch-instance extras). Specifically:\n\n      * Args[0 .. N-1]   match `function_type.inputs` position-wise.\n      * Args[N]          is `none` -- the per-launch `thread_ctrl`\n                         slot, used as the AccCore start signal and\n                         consumed by root `dataflow.graph.launch` ops\n                         in the body as a dependency event.\n      * Args[N+1 .. end] are all `index` -- one per grid dim.\n\n    The custom assembly format prints the required `domain(...)` immediately\n    after the symbol and the trailing extras after the function-style\n    signature using a separate `ctrl ( ... )` clause\n    (the `thread_ctrl` slot) and an `iv ( ... )` clause (the\n    grid-index slots). Either / both clauses are optional; threads\n    written without them are accepted at parse time only when the op\n    is external (i.e., body is empty), since a body-having thread\n    must carry the trailing `thread_ctrl` slot per the verifier.\n\n    The op is `IsolatedFromAbove`; values flow in only through the\n    matching `dataflow.thread.launch` body operands.\n\n    Every definition carries one closed `domain`: DenseRectangular or\n    DynamicWork. Dense rank is derived solely from the trailing index block\n    arguments. DynamicWork carries one ordinary function-input ordinal and has\n    no coordinate suffix.\n  }];\n\n  let arguments = (ins\n      SymbolNameAttr:$sym_name,\n      TypeAttrOf<FunctionType>:$function_type,\n      Dataflow_ThreadDomainAttr:$domain,\n      OptionalAttr<StrAttr>:$sym_visibility,\n      OptionalAttr<DictArrayAttr>:$arg_attrs,\n      OptionalAttr<DictArrayAttr>:$res_attrs);\n\n  let regions = (region SizedRegion<1>:$body);\n\n  let hasCustomAssemblyFormat = 1;\n  let hasVerifier = 1;\n\n  let builders = [\n    OpBuilder<(ins\n        \"::llvm::StringRef\":$name,\n        \"::mlir::FunctionType\":$type,\n        \"::dataflow::ThreadDomainAttr\":$domain,","why":"dataflow.thread definition: module-scope symbol, required domain attribute, and the entry-block layout (args_*, thread_ctrl: none, iv_*) printed with the ctrl(...) clause; fixes the thread header the grammar emits."},{"file_sha256":"f4e60b2e62b496c3714437bd100ab5236540abebd3685dfbd25eeddb37cb7160","kind":"language_definition","lines":"839-860","path":"include/Dataflow/IR/DataflowOps.td","roles":["context"],"text":"def Dataflow_GraphOp : Dataflow_Op<\"graph\", [\n    IsolatedFromAbove,\n    HasParent<\"::mlir::ModuleOp\">,\n    SingleBlockImplicitTerminator<\"GraphReturnOp\">,\n    FunctionOpInterface,\n    RecursiveMemoryEffects,\n    DeclareOpInterfaceMethods<RegionKindInterface>\n]> {\n  let summary = \"Symbol-bearing function-like SpatialCore graph definition\";\n  let description = [{\n    Module-scope, function-like callable holding the SpatialCore body\n    of a leaf dataflow graph. It does not itself execute; one or more\n    `dataflow.graph.launch` ops materialise launches of it inside the\n    body of a `dataflow.thread` definition.\n\n    `function_type` contains only application payload ports. Normalized\n    `input_segments` and `result_segments` classify those payloads as value,\n    stream, and memory ports. The body's distinguished leading `none` block\n    argument is the invocation start protocol endpoint, while launch `done`\n    is derived exclusively from `dataflow.graph.return.complete`; neither is\n    stored in the function type.","why":"dataflow.graph op definition; fixes the operation name used to select canonical graph definitions in the postcondition."},{"file_sha256":"320a66521bba7346cf97dce9b11dce757385efbfbe7c36cc03f44198965edb4b","kind":"verifier","lines":"125-165","path":"lib/Frontend/Lowering/GraphParallelLowering.cpp","roles":["input_well_formedness"],"text":"return std::nullopt;\n    result.push_back(*constant);\n  }\n  return result;\n}\n\nstd::optional<FixedParallelDomain>\ngetFixedParallelDomain(::mlir::scf::ForallOp forall) {\n  auto lower = getConstantIndices(forall.getMixedLowerBound());\n  auto upper = getConstantIndices(forall.getMixedUpperBound());\n  auto step = getConstantIndices(forall.getMixedStep());\n  if (!lower || !upper || !step)\n    return std::nullopt;\n  return FixedParallelDomain{std::move(*lower), std::move(*upper),\n                             std::move(*step)};\n}\n\nstd::optional<FixedParallelDomain>\ngetFixedParallelDomain(::mlir::scf::ParallelOp parallel) {\n  FixedParallelDomain domain;\n  for (::mlir::Value value : parallel.getLowerBound()) {\n    auto constant = getConstantIndex(value);\n    if (!constant)\n      return std::nullopt;\n    domain.lower.push_back(*constant);\n  }\n  for (::mlir::Value value : parallel.getUpperBound()) {\n    auto constant = getConstantIndex(value);\n    if (!constant)\n      return std::nullopt;\n    domain.upper.push_back(*constant);\n  }\n  for (::mlir::Value value : parallel.getStep()) {\n    auto constant = getConstantIndex(value);\n    if (!constant)\n      return std::nullopt;\n    domain.step.push_back(*constant);\n  }\n  return domain;\n}","why":"getFixedParallelDomain for scf.forall and scf.parallel requires constant lower/upper/step; establishes that the generated lane domains must be arith.constant-backed for the candidate to be accepted rather than rejected before mutation."},{"file_sha256":"320a66521bba7346cf97dce9b11dce757385efbfbe7c36cc03f44198965edb4b","kind":"verifier","lines":"1359-1425","path":"lib/Frontend/Lowering/GraphParallelLowering.cpp","roles":["input_well_formedness","context"],"text":"::mlir::LogicalResult\ncheckParallelPreconditions(::llvm::ArrayRef<::mlir::Operation *> parallelOps,\n                           bool requireFixedDomain, bool selectedOwnership) {\n  if (parallelOps.empty())\n    return ::mlir::success();\n\n  ::llvm::DenseMap<::mlir::Operation *, ParallelCheckInfo> checks;\n  ::llvm::DenseSet<::mlir::Operation *> provenParallelOps;\n  for (::mlir::Operation *op : parallelOps) {\n    if (op->hasAttr(\"loom.parallel_group\") ||\n        op->hasAttr(\"loom.parallel_schedule\"))\n      return op->emitError(\n          \"loom-lower-graph-memory: parallel SCF carries unsupported author \"\n          \"metadata\");\n\n    if (auto mapping = op->getAttrOfType<::mlir::ArrayAttr>(\"mapping\");\n        mapping && !mapping.empty())\n      return op->emitError(\n          \"loom-lower-graph-memory: graph-owned parallel SCF must not retain \"\n          \"an execution-resource mapping\");\n\n    if (auto forall = ::llvm::dyn_cast<::mlir::scf::ForallOp>(op)) {\n      auto inParallel = forall.getTerminator();\n      if (!forall.getOutputs().empty() || forall.getNumResults() != 0 ||\n          inParallel.getRegion().empty() ||\n          !inParallel.getRegion().front().empty())\n        return forall.emitError(\n            \"loom-lower-graph-memory: graph-owned scf.forall must be in \"\n            \"effect form before fixed-lane lowering\");\n    } else {\n      auto parallel = ::mlir::cast<::mlir::scf::ParallelOp>(op);\n      auto reduce = ::mlir::cast<::mlir::scf::ReduceOp>(\n          parallel.getBody()->getTerminator());\n      if (!parallel.getInitVals().empty() || parallel.getNumResults() != 0 ||\n          !reduce.getOperands().empty() || !reduce.getReductions().empty())\n        return parallel.emitError(\n            \"loom-lower-graph-memory: graph-owned scf.parallel reductions \"\n            \"must be normalized before fixed-lane lowering\");\n    }\n\n    std::optional<FixedParallelDomain> domain;\n    if (auto forall = ::llvm::dyn_cast<::mlir::scf::ForallOp>(op))\n      domain = getFixedParallelDomain(forall);\n    else if (auto parallel = ::llvm::dyn_cast<::mlir::scf::ParallelOp>(op))\n      domain = getFixedParallelDomain(parallel);\n    if (requireFixedDomain && !domain)\n      return op->emitError(\n          \"loom-lower-graph-memory: selected graph-owned parallel SCF \"\n          \"requires a fixed compile-time lane domain\");\n    if (domain &&\n        ::llvm::any_of(domain->step, [](int64_t step) { return step <= 0; }))\n      return op->emitError(\n          \"loom-lower-graph-memory: selected graph-owned parallel SCF \"\n          \"requires positive fixed lane steps\");\n\n    bool graphOwned =\n        static_cast<bool>(op->getParentOfType<::dataflow::GraphOp>());\n    checks.try_emplace(op, ParallelCheckInfo{op,\n                                             std::move(domain),\n                                             selectedOwnership || graphOwned ||\n                                                 hasSpatialCarrierAncestor(op),\n                                             {},\n                                             nullptr});\n    provenParallelOps.insert(op);\n  }\n\n  ::mlir::Operation *root = parallelOps.front();","why":"checkParallelPreconditions rejects parallel SCF carrying loom.parallel_group / loom.parallel_schedule author metadata or a non-empty mapping array, and requires effect-form scf.forall and reduction-free scf.parallel. Fixes both the accepted input spelling and the concrete attribute names that a surviving schedule record would use."},{"file_sha256":"dcb708e61fd42fa8e3f9a37ef7669b0fbd5b19123b648d5d66dd735b763e018d","kind":"test","lines":"18-41","path":"test/raise/scf-to-dfg-graph-owned-parallel-recurrence.mlir","roles":["input_construction"],"text":"// CHECK-NOT: scf.\n// CHECK: dataflow.graph.return\n\ndataflow.thread private @parallel_recurrence domain(#dataflow.thread_domain<dense>)(\n    %n: index, %memory: memref<?xindex>) ctrl (%ctrl: none) {\n  \"loom.spatial_region\"(%n, %memory)\n      <{operandSegmentSizes = array<i32: 1, 0, 1, 0>,\n        resultSegmentSizes = array<i32: 0, 0>}> ({\n    ^bb0(%limit: index, %target: memref<?xindex>):\n      %zero = arith.constant 0 : index\n      %one = arith.constant 1 : index\n      scf.forall (%lane) in (2) {\n        %sum = scf.for %i = %zero to %limit step %one\n            iter_args(%state = %lane) -> (index) {\n          %next = arith.addi %state, %i : index\n          scf.yield %next : index\n        }\n        memref.store %sum, %target[%lane] : memref<?xindex>\n      }\n      \"loom.spatial_yield\"()\n          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()\n  }) {graph_name = \"g_parallel_recurrence_0\", source_maps = []} :\n      (index, memref<?xindex>) -> ()\n  dataflow.thread.yield","why":"Accepted spelling of a dataflow.thread holding a loom.spatial_region whose body is a fixed-width scf.forall with nested scf.for; models the grammar's thread/region/parallel nesting."},{"file_sha256":"c25a72ad99349973a47f2a1e081b6b269920e25cc5f59f74619c2e7ce0c2b65d","kind":"test","lines":"36-52","path":"test/raise/scf-to-dfg-explicit-spatial-ownership.mlir","roles":["input_construction"],"text":"dataflow.thread.yield\n}\n\ndataflow.thread private @selected_spatial domain(#dataflow.thread_domain<dense>)(\n    %target: memref<1xi32>, %value: i32) ctrl (%ctrl: none) {\n  \"loom.spatial_region\"(%value, %target)\n      <{operandSegmentSizes = array<i32: 1, 0, 1, 0>,\n        resultSegmentSizes = array<i32: 0, 0>}> ({\n    ^bb0(%payload: i32, %memory: memref<1xi32>):\n      %zero = arith.constant 0 : index\n      memref.store %payload, %memory[%zero] : memref<1xi32>\n      \"loom.spatial_yield\"()\n          <{operandSegmentSizes = array<i32: 0, 0>}> : () -> ()\n  }) {graph_name = \"selected_graph\", source_maps = []} :\n      (i32, memref<1xi32>) -> ()\n  dataflow.thread.yield\n}","why":"Accepted generic-form spelling of loom.spatial_region with operandSegmentSizes / resultSegmentSizes, graph_name and source_maps, plus loom.spatial_yield and dataflow.thread.yield; copied structurally by the grammar."},{"file_sha256":"91580d3883ebdf55b76d5adca6caa06d3e823f9e0b5114dfd795e16c185c3ec1","kind":"test","lines":"12-30,78-100","path":"test/raise/scf-to-dfg-memory-frontier-parallel.mlir","roles":["input_construction","input_well_formedness"],"text":"dataflow.graph private @repeat_parallel(\n    %start: none, %limit: index, %memory: memref<?xi32>) -> ()\n    attributes {input_segments = array<i32: 1, 0, 1>,\n                result_segments = array<i32: 0, 0, 0>} {\n  %c0 = arith.constant 0 : index\n  %c1 = arith.constant 1 : index\n  %c2 = arith.constant 2 : index\n  scf.for %outer = %c0 to %limit step %c1 {\n    scf.parallel (%lane) = (%c0) to (%c2) step (%c1) {\n      %index = arith.addi %outer, %lane : index\n      %value = memref.load %memory[%index] : memref<?xi32>\n      scf.reduce\n    }\n  }\n  dataflow.graph.return %start : none\n}\n\n// Branch-local parallel joins must precede the outer selected frontier.\n// CHECK-LABEL: dataflow.graph private @select_parallel(\n// dimensions. Descendant lane coordinates remain independent during an\n// ancestor proof.\n// CHECK-LABEL: dataflow.graph private @nested_parallel_matrix(\n// CHECK-COUNT-4: dataflow.store\n// CHECK-NOT: scf.\n// CHECK: dataflow.graph.return\ndataflow.graph private @nested_parallel_matrix(\n    %start: none, %memory: memref<2x2xi32>) -> ()\n    attributes {input_segments = array<i32: 0, 0, 1>,\n                result_segments = array<i32: 0, 0, 0>} {\n  %c0 = arith.constant 0 : index\n  %c1 = arith.constant 1 : index\n  %c2 = arith.constant 2 : index\n  %value = arith.constant 7 : i32\n  scf.parallel (%i) = (%c0) to (%c2) step (%c1) {\n    scf.parallel (%j) = (%c0) to (%c2) step (%c1) {\n      memref.store %value, %memory[%i, %j] : memref<2x2xi32>\n      scf.reduce\n    }\n    scf.reduce\n  }\n  dataflow.graph.return %start : none\n}","why":"Accepted fixed-domain scf.parallel spelling with a trailing scf.reduce, a parallel nested inside a sequential scf.for, and a lane-disjoint nested parallel-in-parallel form; guides the lane-indexed stores that keep the generated candidates legal."},{"file_sha256":"a30ba020ae6f3ea80191d996f787ba463974694f0e0032b5323072e7538cb5d7","kind":"test","lines":"1-10","path":"test/raise/scf-to-dfg-pipeline.mlir","roles":["applicability"],"text":"// RUN: loom-raise-opt --loom-lower-scf-to-dfg %s | FileCheck %s\n\n// The production pipeline does not infer thread ownership for an unmapped\n// host forall. It publishes only explicit loom.spatial_region operations\n// already nested in dataflow.thread definitions.\n\n// CHECK-LABEL: func.func @vecadd_like\n// CHECK: scf.forall\n// CHECK-NOT: dataflow.thread.launch @t_vecadd_like_0\n// CHECK-NOT: dataflow.thread.launch @t_vecadd_like_red","why":"Shows loom-raise-opt --loom-lower-scf-to-dfg driven over a module and that graphs are published only from explicit loom.spatial_region ops already nested in dataflow.thread definitions; confirms the subject invocation and why the grammar never relies on unmapped host SCF."}],"primary_bundle_sha256":"7ad676ea93f5d6cedff5da948eb05a79108b48381eb246e9b66a9b57fa0f9959","project":"PolyArch/loom","revision":"48615bc5925ef4b9db8b4550b5d4322933cf4b7b","schema":"spectriad.authoring-context/v1","selection_sha256":"880fa4fba504a817a777dd5c5d5ae12f06777550dbe8062388b85c65f96675d6"}
generator source-blind backtranslation · sessions/reverse-generator/session-evidence/result-events.json
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    "result": "## Preconditions\n\n1. Every emitted program is a single MLIR module body consisting of an optional top-level callable declaration/definition followed by one or more `dataflow.thread` symbol definitions, with no other top-level entities.\n2. Each `dataflow.thread` is declared `private`, carries a symbol name of the form `@t<index>`, and is annotated with `domain(#dataflow.thread_domain<dense>)`.\n3. Each thread's entry signature is fixed to exactly four data block arguments \u2014 `%scratch: memref<8xindex>`, `%memory: memref<8xindex>`, `%grid: memref<4x4xindex>`, `%n: index` \u2014 plus a separate control argument `ctrl (%ctrl: none)`.\n4. Each thread body is terminated by `dataflow.thread.yield` with no operands.\n5. Each thread body contains exactly one `loom.spatial_region`; spatial regions are never nested, never absent from a thread, and never appear more than once per thread.\n6. The `loom.spatial_region` is always written in generic (quoted) operation form with an explicit inherent-attribute dictionary rather than any custom assembly syntax.\n7. The spatial region op takes exactly three operands \u2014 the `index` value `%n`, the `memref<8xindex>` value `%memory`, and the `memref<4x4xindex>` value `%grid` \u2014 and produces no results, as declared by its function type `(index, memref<8xindex>, memref<4x4xindex>) -> ()`.\n8. The operand grouping is declared by `operandSegmentSizes = array<i32: 1, 0, 2, 0>` and the (empty) result grouping by `resultSegmentSizes = array<i32: 0, 0>`, and these segment sizes are consistent with the actual operand and result lists.\n9. The spatial region carries exactly one region with exactly one block `^bb0`, whose three arguments `%limit: index`, `%target: memref<8xindex>`, `%tile: memref<4x4xindex>` correspond positionally and type-wise to the three operands.\n10. Values defined outside the spatial region (`%scratch`, `%memory`, `%grid`, `%n`) are never referenced inside the region body; all uses inside the region go through the block arguments `%limit`, `%target`, `%tile`.\n11. The region is terminated by `\"loom.spatial_yield\"()` in generic form with `operandSegmentSizes = array<i32: 0, 0>` and type `() -> ()`, yielding no values, consistent with the region-holding op having no results.\n12. The spatial region op carries a `graph_name` string attribute and a `source_maps` attribute; `graph_name` is derived from the owning thread's index so that distinct regions in the module carry distinct graph names.\n13. All index constants used inside the region (`%c0`, `%c1`, `%cw`, `%kv`) are defined by `arith.constant ... : index` operations at the top of the region block, before any control-flow construct that uses them.\n14. Every emitted program satisfies SSA dominance: each value is defined textually before use and within a region that dominates the use, including loop induction variables, iteration arguments, and `while` \"do\"-block arguments.\n15. Inside the spatial region, exactly one graph-owned parallel operation is present on every path: either an `scf.forall` or an `scf.parallel` (possibly a `scf.parallel` immediately nested in another `scf.parallel`).\n16. The parallel operation's iteration domain is fixed at compile time: `scf.forall` uses a literal integer upper bound, and `scf.parallel` uses constant lower bound `%c0`, constant upper bound `%cw`, and constant step `%c1`, so no parallel bound depends on a runtime value such as `%limit`.\n17. Parallel operations are always one-dimensional per op (a single induction variable in each `scf.parallel`/`scf.forall` header); multi-dimensional parallelism is expressed only by nesting two one-dimensional `scf.parallel` ops.\n18. Every `scf.parallel` region is terminated by `scf.reduce` with no reduction operands, and every `scf.parallel` produces no results; `scf.forall` bodies carry no `shared_outs`, no mapping attribute, and rely on the implicit terminator.\n19. Memory writes performed by the parallel body are lane-disjoint: stores into `%target: memref<8xindex>` are always indexed by the parallel induction variable `%lane`, and stores into `%tile: memref<4x4xindex>` are always indexed by the pair of induction variables `(%pi, %pj)` of the enclosing nested parallel loops.\n20. No load operations, no cross-lane data movement, and no reduction or accumulation across lanes occur inside the parallel region; the only memory effects there are stores.\n21. Sequential control flow that encloses the parallel op (`scf.if` / `scf.for`) is value-free: the `scf.if` has no results and no `else` region, and the `scf.for` has no `iter_args` and no results, so no implicit `scf.yield` operands are required.\n22. Sequential control flow inside the parallel body may carry values: `scf.for` with `iter_args` yields exactly one `index` value per iteration via `scf.yield`, and `scf.while` carries a single `index` loop-carried value with `scf.condition(%cond) %v : index` in the \"before\" region and `scf.yield` of a single `index` in the \"after\" region, with matching `(index) -> index` typing.\n23. All predicates used by `scf.if` and `scf.while` are `i1` values produced by `arith.cmpi slt` on `index` operands.\n24. Runtime-dependent trip counts appear only in sequential constructs, where the bound is the region block argument `%limit`.\n25. Code placed in the thread body outside the spatial region is self-contained: it defines its own constants and only touches `%scratch`, never values defined inside the region.\n26. All memref accesses are type-consistent with the declared shapes `memref<8xindex>` (one index) and `memref<4x4xindex>` (two indices), and all stored values are of type `index`.\n27. The optional top-level callable, when present, is a well-formed declaration or definition (`llvm.func` declaration with no body, or `func.func` with a body terminated by `return` of a matching type) and is never called from any thread; threads contain no call operations at all.\n28. The `%ctrl: none` control argument is declared but never used in any emitted body.\n\n## Sampling conventions\n\n1. The module contains either one or two `dataflow.thread` definitions; zero threads and three or more threads are never emitted.\n2. Thread symbols are named by a counter starting at zero, yielding `@t0` and, when a second thread exists, `@t1`.\n3. The top-level preamble is one of exactly three forms: nothing, the fixed declaration `llvm.func @imported_kernel(i64)`, or the fixed definition `func.func @native_helper(%arg0: index) -> index` whose body is `return %arg0 : index`; no other callable signatures, dialects, or multiple preamble entities are emitted.\n4. The preamble choice is made once for the whole module rather than per thread, and the preamble is always separated from the threads by a blank line.\n5. Thread entry argument names and types are a fixed skeleton (`%scratch`, `%memory`, `%grid`, `%n`, `%ctrl`), with memref shapes hard-coded to `8xindex` and `4x4xindex`; sizes are never varied and no other argument counts or element types occur.\n6. The thread domain attribute is always `#dataflow.thread_domain<dense>`; no other domain kind is emitted.\n7. Pre-region resident code is either omitted entirely or is one fixed three-line block defining `%rzero = arith.constant 0 : index`, `%rval = arith.constant 3 : index`, and a single `memref.store %rval, %scratch[%rzero]`; no other resident code shapes, lengths, or targets occur.\n8. The in-region constant preamble is always the same four constants in the same order: `%c0 = 0`, `%c1 = 1`, `%cw = <width>`, `%kv = 7`.\n9. The parallel width constant `%cw` (and the `scf.forall` literal bound) is drawn from exactly `{1, 2, 4}`; other widths, non-power-of-two widths, and widths larger than the `memref<8xindex>` extent are never emitted, and the same width is reused for both `%cw` and any `scf.forall` bound within a thread.\n10. The stored payload constant is always `7` and the resident payload constant is always `3`.\n11. The `graph_name` attribute always follows the scheme `\"g_t<thread index>_0\"`, with a trailing `_0` suffix implying at most one region per thread; `source_maps` is always the empty list `[]`.\n12. Sequential nesting around the parallel op is limited to three alternatives: no wrapper, exactly one `scf.if` guarded by `%ocond = arith.cmpi slt, %c0, %limit`, or exactly one `scf.for %oi = %c0 to %limit step %c1`; wrappers are never stacked, never use `else`, and `scf.while` is never used at this outer level.\n13. The wrapper induction variable `%oi` and the wrapper predicate `%ocond` are defined but never used inside the parallel body.\n14. The graph-owned parallel form is one of exactly three shapes: a single `scf.forall` with a literal bound, a single `scf.parallel` with constant bounds, or two perfectly nested `scf.parallel` ops; deeper nests, `scf.forall` with `scf.parallel` mixing, and reduction-carrying parallel ops are never emitted.\n15. In the two-level nested `scf.parallel` shape, the body is a fixed single `memref.store %kv, %tile[%pi, %pj]`, and the separately chosen inner-body shape is not emitted at all in that case.\n16. The inner (lane-disjoint) body is one of exactly four fixed shapes: a bare store, a store guarded by `scf.if` on `arith.cmpi slt, %lane, %cw`, an `scf.for` with one `index` `iter_args` accumulator initialized to `%lane` and incremented by `%c1` whose result is stored, or an `scf.while` counting `%wi` from `%c0` while `slt %limit`, incrementing by `%c1`, whose result is stored.\n17. Each inner control-flow shape is at most one level deep; `if`/`for`/`while` are never combined or nested within one another inside the parallel body.\n18. All SSA value names are fixed mnemonics (`%c0`, `%c1`, `%cw`, `%kv`, `%lane`, `%pi`, `%pj`, `%oi`, `%ocond`, `%bcond`, `%bi`, `%bacc`, `%bnext`, `%bsum`, `%wi`, `%wc`, `%wb`, `%wn`, `%wres`, `%rzero`, `%rval`), reused identically across threads since each thread is a separate symbol scope.\n19. The four per-thread shape decisions (resident code presence, width, parallel form, outer wrapper, inner body) are made independently for each thread, so two threads in one module may differ in every dimension.\n20. Comparison predicates are always `slt`, arithmetic is always `arith.addi` by `%c1`, and no other `arith` opcodes or predicates appear.\n21. Formatting is a fixed skeleton: two-space indentation for thread-body lines, six spaces inside the spatial region block, eight spaces for the parallel op, ten spaces for its body, and one blank line after the preamble and after each thread definition.",
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]
postcondition source-blind backtranslation · sessions/reverse-postcondition/session-evidence/result-events.json
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    "result": "This postcondition quantifies universally over `graphs`, the sequence of every operation in the output program whose name is exactly `\"dataflow.graph\"`, gathered from `output.operations` and therefore including graphs at any nesting depth; the input program is never consulted, so nothing relates output to input. For each such graph it makes three negative assertions and no existence claim, so a graph satisfies it only by lacking the listed constructs. The first assertion rejects the graph if any strict descendant operation has a name exactly matching one of eight literals \u2014 `scf.parallel`, `scf.forall`, `scf.forall.in_parallel`, `scf.reduce`, `scf.reduce.return`, `scf.parallel_insert_slice`, `dataflow.parallel`, or `dataflow.reduce`; any other name, including other `scf.*` operations, is accepted, and the graph operation itself is not tested against this list because `mlir::descendants` excludes its argument. The second assertion rejects the graph if any strict descendant has an entry keyed `\"mapping\"`, `\"loom.parallel_schedule\"`, or `\"loom.parallel_group\"` in its attributes-and-properties map; only key presence is tested, and the attribute values, kinds, and texts are never read. The third assertion applies the same three key-presence tests to the graph operation itself, rejecting it if any of the three keys is present. The only value sources are operation names compared to string literals and attribute-key membership tests, both of which are total; no typed projections, operands, results, regions, types, or symbol resolutions are used, so no evaluation errors can arise. Behavior is vacuously accepting whenever the output contains no `dataflow.graph` operation, and the two `none` assertions are additionally vacuously true for a graph with no descendant operations, in which case only the third assertion carries force. Operations bearing the listed names or the listed attribute keys elsewhere in the module, outside every `dataflow.graph`, are accepted without comment.",
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]

Activation review

This paired revision was activated by an explicit partial-scope team review bound to both executable artifact hashes.

Approved for execution and public reporting; translation accuracy and completeness remain separately unvalidated.

Run and triage

Work progress