Claude Opus 5.5 in a raw API call
raw API baseline
The model did not finish, so there is no output.
Wall time 21m 32sCost $2.56 estimated
Review
No verdict yet.
The full review
DNF. The model used up its own output budget (max_tokens) and stopped.
Attempt 4 of 6
Every try of this model in this harness on this prompt, oldest first. A later attempt is the cell's result: attempt 6.
Scores
Not scored: only runs that finished on their own are scored.
Downloads
Files actually published for this run. Original output, site-made previews and post-run conversions are labelled separately.
The exact prompt
raw API call, 3,370 characters. Every result for this prompt
Build a playable, cinematic single-page Three.js experience: a small boat drifting through a Norwegian-style fjord / coastal mountain landscape. Requirements: - ONE self-contained index.html file (HTML + CSS + JS inline). No external assets of any kind (no textures, models, fonts, audio files) EXCEPT Three.js itself, loaded via an import map from this exact pinned CDN: "three": "https://cdn.jsdelivr.net/npm/three@0.160.0/build/three.module.js", "three/addons/": "https://cdn.jsdelivr.net/npm/three@0.160.0/examples/jsm/" All textures (water normals, rock, snow, bark, clouds, etc.) must be generated procedurally in code (canvas / DataTexture / shaders). - Scene content: steep procedural fjord walls and mountains with snow caps, rock and grass coloring by height/slope; procedural conifer forests (instanced); a water surface with animated waves and sky/landscape reflections; a lighthouse on a rocky point with a rotating beam that matters at night; a small wooden boat with 2 simple stylized 3D characters on it (one rowing/steering, one looking around, with small idle animations); distant islands; birds or other small life if cheap. - Dynamic weather cycling clear -> fog -> rain -> storm -> clearing, with smooth transitions: fog density, cloud cover, rain particles, lightning flashes + wind and bigger waves in the storm. - A full day/night cycle: sunrise, day, golden hour, sunset, night with stars and moon, lit lighthouse and boat lantern. Sky color, sun/moon lights, and fog color must track time of day. - Controls: keyboard (WASD/arrows to steer and throttle the boat, C to switch camera, T toggles auto-tour, 1-5 to force weather, N to jump time) and touch (on-screen joystick/buttons on phones). Camera follows the boat in play mode. - An "auto-tour" cinematic camera mode: slow, smooth, film-like camera moves (orbits, low water-level glides, high establishing shots, close-ups of the characters) while the boat drifts along a path through the fjord and the weather and time of day progress. - Minimal, elegant UI: small title "Fjordlys" (or a better name of your choice), a tiny hint line for controls, fading out in tour mode. - Must run smoothly on desktop and phone browsers: keep geometry/particle counts moderate, cap devicePixelRatio at 2, handle resize/orientation. - IMPORTANT for automated video capture, support these URL parameters: ?tour=1 start directly in auto-tour mode ?capture=1 hide ALL UI overlays (title, hints, touch controls) ?cycle=40 when present, compress one complete showcase into that many seconds: the time of day goes from morning through golden hour, sunset and night, and the weather passes clear -> fog -> rain -> storm -> clearing within that span (so a 40-second recording shows everything). Without it, use a relaxed pace suited to live play. Drive all animation from the requestAnimationFrame timestamp / performance.now() (not from wall-clock-independent accumulators that ignore time), so that overriding those functions steps the scene deterministically. Set window.__sceneReady = true once the first frame has rendered. - No console errors or warnings in a current Chrome. Use modern Three.js r160 APIs only (no deprecated/removed ones). Output ONLY the complete index.html, starting with <!DOCTYPE html> and ending with </html>, with no explanation and no markdown fences.
How it was made
Step by step
The prompt, every agent turn and tool call (tool name and a one-line summary; inputs and outputs are not shown), then the final message. The full machine-format transcript is published as a scrubbed download.
Show all 4 steps
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Download the full transcript raw API response, 45 KB, gzip. Scrubbed: anything that looks like a key, token, e-mail address or phone number is replaced, and account details and the test machine's file paths are removed.
Cost breakdown
Headline cost $2.56, estimated from the token counts at list price.
| Tokens by type | Tokens | $ per 1M | Cost |
|---|---|---|---|
| Input (uncached) | 1,245 | $4.00 | $0.0050 |
| Cache write | 0 | $5.00 | $0 |
| Cache read | 0 | $0.20 | $0 |
| Output | 128,000 | $20.00 | $2.5600 |
| of which reasoning | 128,000 | billed as output |
- Total computed from tokens
- $2.5650
- Total reported by the harness
- none
Computed from harness-reported token counts x list prices.
Prices: Project price table (vendor list prices), 2026-09-22.
Run notes
- frozen prompt (verbatim): results.json: the text all 4 published raw-API runs of fjord used
- raw API baseline: one call, no tools, no self-review
- raw response JSON (model, stop_reason, usage, reasoning summary, content)
- Mode: single API call (raw baseline, no harness)
- Isolation audit: none