{"uid":"cap_d4qIiHt1KtLAtZgqdPE50","slug":"rqm-rotate-and-validate-two-channel-frame-d5a99003","name":"RQM Rotate And Validate Two Channel Frame","description":"Rotate And Validate Two Channel Frame: Rotate these two coordinated complex channels with the supplied rotor and vali... Use when: The caller needs a bounded objective result that can directly gate or feed its next step. Returns: strict JSON summary, checksummed artifact manifest. Boundaries: Deterministic bounded local signal processing only; no causal, hardware, physical, regulatory, safety, or...","url":"https://jobs.rqmtechnologies.com/x402/buyer-jobs/wave.rotate-and-validate-two-channel-frame.v1","method":"POST","headers":{},"bodySchema":{"type":"object","properties":{"request":{"type":"object","description":"Rotate And Validate Two Channel Frame request metadata is discovery-only while execution is disabled.","additionalProperties":true},"schema_version":{"const":"rqm.jobs.bazaar-buyer-job-request.v1"},"idempotency_key":{"type":"string","pattern":"^[A-Za-z0-9][A-Za-z0-9._:-]*$","maxLength":128,"minLength":1},"max_total_price":{"type":"string","pattern":"^(?:0|[1-9]\\d{0,13})(?:\\.\\d{1,6})?$"}}},"responseSchema":null,"example":null,"exampleRequest":null,"tags":["x402"],"displayCostAmount":"0.005","displayCostAsset":"USDC","priceDynamic":false,"priceHint":null,"priceStatus":"priced","priceSource":"probe","requiresHandshake":false,"reviewCount":0,"rating":{"score":"0.00","successRate":"0.00","reviews":0,"stars":null,"state":"unrated"},"availabilityStatus":"unknown","priceObserved":null,"sessionDeposit":null,"pricing":{"kind":"static","summary":"$0.005/call","primary":{"kind":"static","protocol":"x402","network":"base","amountUsd":"0.005","per":"call","confidence":"exact"},"accepted":[{"kind":"static","protocol":"x402","network":"base","amountUsd":"0.005","per":"call","confidence":"exact"}]},"paymentMethods":[{"uid":"pm_C6coNJ4jBaCXHqETICXxl","protocol":"x402","methodType":"crypto","chain":"base","mode":"charge","costAmount":"0.005","costPer":"request","priority":0,"asset":"0x833589fCD6eDb6E08f4c7C32D4f71b54bdA02913","unit":"request","depositMicros":null,"planRef":null}],"brandName":null,"brandSlug":null,"brandBaseUrl":null,"brandDocsUrl":null,"whatItDoes":"Rotates two coordinated complex-sample channels using a quaternion rotor and validates the result against caller-supplied energy-error and round-trip RMSE invariants","exampleAgentPrompt":"Rotate my two I/Q channel frames — channel 'ch_A' and 'ch_B' — using the quaternion rotor w=0.7071, x=0.0, y=0.7071, z=0.0, and validate that the energy error stays below 1e-6 and the inverse round-trip RMSE stays below 1e-5; here are the complex samples for both channels.","exampleUseCases":[{"title":"Validating quaternion rotation in RF pipeline","prompt":"I need to rotate these two baseband I/Q channels using quaternion w=1.0, x=0.0, y=0.0, z=0.0 and confirm the energy error is under 0.001 and round-trip RMSE is under 0.0001 before passing the result downstream — here are up to 512 complex samples per channel."},{"title":"Gating next workflow step on frame rotation fidelity","prompt":"Run a quaternion rotation on my two correlated complex channels 'sensor_left' and 'sensor_right' with rotor w=0.5, x=0.5, y=0.5, z=0.5, enforce maximum energy error of 1e-4 and max inverse RMSE of 1e-4, and tell me whether the invariants passed so I can decide whether to continue the workflow."},{"title":"Phase correction of dual-channel quantum sensor data","prompt":"Apply a quaternion phase-rotation to these two quantum sensor channels using rotor w=0.866, x=0.0, y=0.0, z=0.5, then validate that energy is conserved to within 1e-7 and the inverse round-trip error is below 1e-6 — I need a bounded pass/fail result before the next calibration step."}],"resultDescription":"Returns the rotated complex sample arrays for both channels after applying the quaternion rotor, along with computed energy error and inverse round-trip RMSE values, and a validation outcome indicating whether the caller-supplied invariant thresholds were satisfied. The result is bounded and suitable for directly gating or feeding the next processing step.","failureModes":["Invariant violation: energy error or round-trip RMSE exceeds supplied maximum thresholds — returns failure with computed metric values","Invalid rotor: quaternion (w,x,y,z) is not unit-normalized or malformed — returns validation error","Wrong channel count: fewer or more than exactly 2 channels supplied — returns schema error","Sample count out of range: fewer than 1 or more than 4096 samples per channel — returns schema error","Invalid channel_id format: channel ID does not match pattern ^[A-Za-z0-9._-]{1,64}$ — returns schema error","Payment failure: insufficient USDC balance or x402 payment not accepted — returns 402 error","Duplicate idempotency key with conflicting payload — returns conflict error"],"whenToPreferThis":"Choose this endpoint when you need a deterministic, bounded quaternion rotation applied to exactly two coordinated complex-sample channels simultaneously, with built-in validation of energy conservation and inverse round-trip fidelity before proceeding to the next processing stage. It is ideal when you need a pass/fail gate on rotation quality rather than just the rotated data. Prefer it over general-purpose math libraries when you need the validation invariants enforced atomically with the rotation. Do not use it when you need hardware-level truth, causal diagnostics, unbounded streaming data, more than 2 channels, or more than 4096 samples per channel.","instructions":null,"reviewSummary":null,"reviewSummaryHighlights":null,"reviewSummaryConcerns":null,"reviewSummaryGeneratedAt":null,"activationCount":0,"lastUsedAt":null,"lastSuccessfullyRanAt":null,"lastHealthCheckAt":"2026-09-14T00:41:51.456Z","isFirstParty":false}