com.rqmtechnologies/waveengine

RQM WaveEngine Jobs

Delegate 20 typed, evidence-backed WaveEngine signal work products with fixed-request x402.

1.6.0
Version
remote
Transport
34
Tools

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Reviewed Jan 1, 2000.

  • tools: 34 tools scanned
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Tools (34)

  • 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_wave_capabilities

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

  • get_wave_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.

  • wave_gate_signal_capture_v1

    Problem: Accept or reject this bounded signal capture against the caller-supplied metric rules and return every measurement and violation. Input: JSON with sample rate hz, channels, rules. Result: measurements, violations and checksummed artifacts. Limits: Bounded signal processing only; 8 channels; 1024 samples/channel.

  • wave_diagnose_multichannel_capture_v1

    Problem: Diagnose this coordinated complex capture for bounded Wave-Intelligence degradation findings without inferring a physical cause. Input: JSON with sample rate hz, channels. Result: bounded capture findings and artifacts. Limits: Bounded signal processing only; 8 channels; 1024 samples/channel.

  • wave_measure_phase_drift_v1

    Problem: Measure phase drift in this bounded complex observation against the supplied reference and tolerances. Input: JSON with reference, observation, maximum absolute drift radians, maximum rms.... Result: phase drift measurements and tolerance checks. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_extract_wave_features_v1

    Problem: Convert this coordinated complex capture into the deterministic versioned Wave-Intelligence feature vector. Input: JSON with sample rate hz, channels. Result: versioned feature vector and artifacts. Limits: Bounded signal processing only; 8 channels; 1024 samples/channel.

  • wave_reconstruct_bounded_capture_v1

    Problem: Reconstruct this bounded capture under the supplied transfer assumption and verify it against the reference rules. Input: JSON with observation, reference, assumed transfer, maximum rmse, maximum.... Result: reconstructed capture and reference-rule checks. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_equalize_pilot_capture_v1

    Problem: Fit a bounded quaternion NLMS equalizer to this received and desired pilot capture. Input: JSON with input channels, output channels, received, desired, pilot mask. Result: fitted equalizer and pilot-fit evidence. Limits: Bounded signal processing only; 4 channels; 1024 samples/channel.

  • wave_transport_polarization_frame_v1

    Problem: Transform these Jones vectors or channel operators between the explicitly named SU(2) frames and verify invariants. Input: JSON with mode, rotor. Result: transformed vectors/operators and invariant checks. Limits: Bounded signal processing only; 4 channels; 1024 samples/channel.

  • wave_generate_validated_signal_fixture_v1

    Problem: Generate this bounded sine or safe-formula signal fixture and return reproducibility, measurement, checksum, and validation evidence. Input: JSON with fixture. Result: signal fixture, checksums and validation evidence. Limits: Bounded signal processing only; 8 channels; 16384 samples/channel.

  • wave_compare_waveform_captures_v1

    Problem: Compare these two bounded waveforms against the supplied alignment and numeric rules. Input: JSON with sample rate hz, channels, reference channel id, candidate channel id, rules. Result: waveform differences and caller-rule results. Limits: Bounded signal processing only; 2 channels; 1024 samples/channel.

  • wave_fit_coupled_channel_model_v1

    Problem: Fit a bounded structured quaternion ridge model to these coupled channel features and targets. Input: JSON with feature count, output count, features, targets. Result: fitted channel model and fit evidence. Limits: Bounded signal processing only; 16 channels; 512 samples/channel.

  • wave_verify_wave_pipeline_v1

    Problem: Execute and verify this bounded Wave IR pipeline against the required representation, shape, and optional round-trip assertions. Input: JSON with sample rate hz, channels, operators, assertions. Result: execution result and shape/round-trip checks. Limits: Bounded signal processing only; 2 channels; 1024 samples/channel.

  • wave_rotate_and_validate_two_channel_frame_v1

    Problem: Rotate these two coordinated complex channels with the supplied rotor and validate caller invariants. Input: JSON with channels, rotor, rules. Result: rotated channels and invariant checks. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_convert_capture_to_spectrum_v1

    Problem: Convert this bounded complex capture into a checksummed spectral artifact with declared normalization. Input: JSON with sample rate hz, channel, normalization. Result: spectrum with normalization and checksums. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_reconstruct_time_domain_signal_v1

    Problem: Convert these bounded frequency bins into time-domain samples and verify the caller's round-trip rule. Input: JSON with sample rate hz, frequency bins, normalization, rules. Result: time-domain samples and round-trip verification. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_optimize_processing_pipeline_v1

    Problem: Optimize this supported Wave pipeline against the supplied operation-count objective and equivalence rule. Input: JSON with operations, fixture, objective, maximum operations, maximum equivalence.... Result: candidate pipeline and equivalence checks. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_compile_curated_processing_recipe_v1

    Problem: Compile this curated processing recipe and return its validated pipeline and execution trace. Input: JSON with fixture, maximum round trip rmse. Result: validated pipeline and execution trace. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_apply_verified_phase_correction_v1

    Problem: Apply this bounded phase correction and verify the supplied preservation assertions. Input: JSON with sample rate hz, channels, angle radians, assertions. Result: corrected capture and preservation checks. Limits: Bounded signal processing only; 2 channels; 1024 samples/channel.

  • wave_validate_spectral_criteria_v1

    Problem: Accept or reject this bounded capture against the caller's supplied spectral criteria. Input: JSON with sample rate hz, channel, normalization, rules. Result: spectral metrics and caller-rule verdict. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_validate_reconstruction_quality_v1

    Problem: Compare this reconstruction with the supplied reference and acceptance rules. Input: JSON with reference, reconstruction, rules. Result: reconstruction differences and rule results. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • wave_compare_pipeline_responses_v1

    Problem: Compare these two supported Wave pipelines on the supplied fixture and caller tolerances. Input: JSON with left pipeline, right pipeline, fixture, maximum rmse, maximum absolute.... Result: response differences and tolerance checks. Limits: Bounded signal processing only; 8 channels; 4096 samples/channel.

  • search_wave_capabilities

    Deterministically rank executable WaveEngine capabilities for a natural-language task and bounded filters.

  • get_wave_example

    Return one realistic illustrative request/result shape, artifact list, expected duration, and price guard.

  • run_wave_example

    Execute the catalog-owned bounded example through the real typed WaveEngine adapter without accepting arbitrary input.

  • estimate_wave_job

    Validate a bounded request against the live catalog and return a non-binding price and duration estimate without authentication.

  • run_wave_job

    Pay anonymously with x402 by default, or explicitly use an authenticated Account Core balance, then submit one idempotent WaveEngine job.

  • get_wave_receipt

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

  • get_wave_job_status

    Read one authorized Wave or Studio managed-simulator job.

  • get_wave_job_result

    Read one completed and already-settled product result.

  • get_wave_job_artifact

    Retrieve one principal-scoped bounded Wave result artifact.