com.rqmtechnologies/studio

RQM Studio Jobs

Delegate 20 fail-closed RQM Studio quantum work products with fixed-request x402.

1.6.0
Version
remote
Transport
43
Tools

Security review

Review passed

Reviewed Jan 1, 2000.

  • tools: 43 tools scanned
  • metadata: scanned

No findings.

Tools (43)

  • list_buyer_jobs

    Return complete agent discovery contracts and readiness for the exact 20/20/20 RQM specialist work portfolio.

  • search_buyer_jobs

    Select RQM buyer jobs from work-language requests using deterministic semantic scoring over instructions, examples, outputs, and next steps.

  • list_capabilities

    Describe the preserved v0/v1 surface or the dynamic v2/v3 Wave catalog.

  • get_capability

    Return one full approved public Wave capability descriptor.

  • run_buyer_job

    Quote, settle, and submit one allowlisted WaveEngine, Studio, or Robotics buyer job using x402.

  • quantum_failed_workflow_diagnosis_v1

    Problem: Diagnose why this bounded quantum workflow failed and return supported corrective actions. Input: JSON with stage, error text. Result: failure class, evidence terms, bounded corrective actions. Limits: Local software evidence only; 65536 request bytes.

  • quantum_phase_sensitive_inspection_v1

    Problem: Diagnose the phase, rotation, ordering, or convention difference between these supported operations. Input: JSON with reference, candidate, phase context. Result: difference kind, angle delta, correction hint. Limits: Local software evidence only; 65536 request bytes.

  • quantum_openqasm3_preflight_v1

    Problem: Parse, normalize, and assess OpenQASM 3 before downstream execution. Input: JSON with source. Result: go, no-go, or unsupported verdict, normalized source, warnings and evidence. Limits: Local software evidence only; 3 verification qubits; 65536 source bytes.

  • quantum_simulation_anomaly_diagnostic_v1

    Problem: Compare this bounded simulation result with the supplied expectation and anomaly rules. Input: JSON with observed probabilities, expected probabilities, maximum l1 error.... Result: L1 and bin deltas, violating outcomes, anomaly verdict. Limits: Local software evidence only; 65536 request bytes.

  • quantum_openqasm3_repair_v1

    Problem: Repair this bounded OpenQASM 3 program only with the supplied conservative repair policy. Input: JSON with source, allowed repairs. Result: repaired or withheld source, exact edit list, post-repair validation verdict. Limits: Local software evidence only; 65536 source bytes.

  • quantum_gate_basis_decomposition_v1

    Problem: Decompose this supported circuit operation into the supplied bounded gate basis and verify the declared relation. Input: JSON with operation, target basis, phase context. Result: decomposition or withheld candidate, gate list, verification status. Limits: Local software evidence only; 65536 request bytes.

  • quantum_cross_provider_portability_v1

    Problem: Translate this supported OpenQASM 3 circuit to the supplied local toolchain format without silent gate substitution. Input: JSON with source, target format. Result: translated target artifact, explicit gate mapping, source and artifact digests. Limits: Local software evidence only; 65536 source bytes.

  • quantum_phase_aware_rewrite_v1

    Problem: Rewrite this supported circuit under the supplied phase-equivalence and target constraints. Input: JSON with operation, target gate, phase context. Result: rewritten operation or original, candidate withholding, verification status. Limits: Local software evidence only; 65536 request bytes.

  • quantum_supported_circuit_equivalence_v1

    Problem: Compare two RQM Circuit IR circuits within the supported verifier scope. Input: JSON with original circuit, candidate circuit. Result: equivalent, not-equivalent, or unsupported verdict, verification evidence, input.... Limits: Local software evidence only; 3 verification qubits; 65536 request bytes.

  • quantum_provider_result_compare_v1

    Problem: Compare these bounded provider results using the supplied normalization and difference rules. Input: JSON with left counts, right counts, normalization, rules. Result: normalized deltas, probability metrics, caller-rule verdict. Limits: Local software evidence only; 4096 operations; 65536 request bytes.

  • quantum_simulation_result_compare_v1

    Problem: Compare these bounded simulation results using the supplied deterministic probability rules. Input: JSON with left probabilities, right probabilities, rules. Result: probability deltas, distance metrics, threshold verdict. Limits: Local software evidence only; 4096 operations; 65536 request bytes.

  • quantum_two_qubit_local_equivalence_v1

    Problem: Classify this supported two-qubit operation by its bounded local-equivalence class and phase context. Input: JSON with operation, phase context. Result: local-equivalence class, canonical coordinates, explicit phase treatment. Limits: Local software evidence only; 2 qubits.

  • quantum_verified_circuit_optimization_v1

    Problem: Optimize RQM Circuit IR and return the original unless preservation is verified. Input: JSON with circuit. Result: verified candidate or original fallback, metric deltas, preservation evidence. Limits: Local software evidence only; 3 verification qubits; 65536 request bytes.

  • quantum_two_qubit_target_synthesis_v1

    Problem: Choose and verify a bounded target-basis implementation for this supported two-qubit operation under supplied objectives. Input: JSON with operation, target basis, phase context, objectives. Result: verified circuit or original-retained outcome, gate count and depth, class and.... Limits: Local software evidence only; 2 qubits.

  • quantum_provider_target_compile_v1

    Problem: Compile this bounded circuit to the supplied pinned provider target and return compatibility evidence. Input: JSON with qubit count, operations, target. Result: compiled artifact, gate mapping, pinned target snapshot and blockers. Limits: Local software evidence only; 4096 operations; 65536 request bytes.

  • quantum_execution_plan_select_v1

    Problem: Select a supported execution plan against the supplied cost, depth, duration limits, and weights. Input: JSON with plans, weights, maximum cost usd, maximum depth, maximum duration seconds. Result: ranked feasible plans, objective scores, selected plan identity. Limits: Local software evidence only; 4096 operations; 65536 request bytes.

  • quantum_circuit_assurance_report_v1

    Problem: Validate, compile, and report bounded assurance evidence for OpenQASM 3. Input: JSON with source. Result: assurance outcome, warnings, normalized source and evidence. Limits: Local software evidence only; 3 verification qubits; 65536 source bytes.

  • quantum_optimization_preservation_audit_v1

    Problem: Audit candidate optimization equivalence and qualitative coupling preservation. Input: JSON with original circuit, candidate circuit. Result: preserved or candidate-withheld outcome, input and output hashes, metric and.... Limits: Local software evidence only; 3 verification qubits; 65536 request bytes.

  • quantum_managed_simulator_v1

    Problem: Execute a bounded RQM Circuit IR circuit on the managed local statevector simulator. Input: JSON with circuit ir. Result: typed counts, probabilities, simulation configuration evidence. Limits: Local software evidence only; 16 qubits; 250 operations.

  • quantum_provider_readiness_check_v1

    Problem: Accept or reject this bounded circuit for the supplied pinned provider target and readiness rules. Input: JSON with qubit count, operations, target, rules. Result: readiness verdict, rule results and blockers, target provenance. Limits: Local software evidence only; 4096 operations; 65536 request bytes.

  • quote_job

    Return a preserved v0 placeholder or a durable v1 Account Core USD quote.

  • check_quantum_circuit

    Check whether this quantum circuit is safe to send downstream, and return a bounded go, no-go, or unsupported decision with evidence.

  • compare_quantum_circuits

    Tell me whether these two quantum circuits implement the same operation within the stated phase context.

  • repair_openqasm3

    Repair this invalid OpenQASM 3 program conservatively, or tell me exactly why a safe repair cannot be made.

  • optimize_quantum_circuit

    Make this quantum circuit smaller, but return the original unless equivalence is verified.

  • diagnose_quantum_workflow

    Diagnose why this quantum workflow failed and return bounded corrective actions.

  • audit_quantum_transformation

    Audit what another compiler or AI changed, and withhold the candidate unless preservation is verified.

  • translate_quantum_circuit

    Translate this circuit to Qiskit/OpenQASM 3 or Braket without silently changing its supported semantics.

  • diagnose_quantum_phase

    Find the phase, rotation, ordering, or convention bug in this quantum operation.

  • synthesize_two_qubit_target

    Choose the best verified target-native implementation of this two-qubit block.

  • classify_two_qubit_operation

    Classify this two-qubit operation by its nonlocal content and local-equivalence class.

  • get_account_balance

    Read the authenticated canonical Account Core prepaid USD balance.

  • get_studio_receipt

    Retrieve the durable Account Core receipt for one settled Studio reservation.

  • create_funding_session

    Create an idempotent Stripe Checkout URL for human prepaid funding.

  • submit_quantum_job

    Reserve an exact quote and submit one bounded managed-simulator job.

  • get_job_status

    Read one authorized Wave or Studio managed-simulator job.

  • get_job_result

    Read one completed and already-settled product result.

  • cancel_job

    Request cancellation of one authorized product job.