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2.18k
009dfc4e83422be8d3daa41cfda78036b2cd
[ "claude-opus-4-7" ]
64
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0af3e551f4b5f408f6f5fd060efc0fda2a02
[ "claude-haiku-4-5-20251001", "claude-opus-4-7" ]
64
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[{"t":0.0,"model":"claude-opus-4-7","in":55083,"out":205,"hash_ids":[0,1,2,3,4,5,6,7,8,9,10,11,12,13(...TRUNCATED)
0b1825a4864ed8e4f4a14c43d34b634462ae
[ "claude-opus-4-7" ]
64
local
[{"t":0.0,"model":"claude-opus-4-7","in":402,"out":24,"hash_ids":[0,1,2,3,4,5,6],"api_time":2.998,"t(...TRUNCATED)
0c80f810ee39c9ff7fd1da753062021f61ca
[ "claude-opus-4-7" ]
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0d16b460e49f5f0a3188ec9cc37bb38bf567
[ "claude-opus-4-7" ]
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[{"t":0.0,"model":"claude-opus-4-7","in":587,"out":25,"hash_ids":[0,1,2,3,4,5,6,7,8,9],"api_time":3.(...TRUNCATED)
0dd65f69a351babb9be3191d1c03af492683
[ "claude-opus-4-7" ]
64
local
[{"t":0.0,"model":"claude-opus-4-7","in":434,"out":24,"hash_ids":[0,1,2,3,4,5,6],"api_time":1.97,"ty(...TRUNCATED)
0fbcd81b70613cb62405d69776f6c2932e8f
[ "claude-opus-4-7" ]
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[{"t":0.0,"model":"claude-opus-4-7","in":443,"out":26,"hash_ids":[0,1,2,3,4,5,6],"api_time":2.569,"t(...TRUNCATED)
10f4a17d5dadb7c65175f0be58aae0ef5317
[ "claude-haiku-4-5-20251001", "claude-opus-4-7" ]
64
local
[{"t":0.0,"model":"claude-opus-4-7","in":404,"out":24,"hash_ids":[0,1,2,3,4,5,6],"api_time":1.619,"t(...TRUNCATED)
146f199fbf17eb44217390f0c78403ad7b28
[ "claude-opus-4-7" ]
64
local
[{"t":0.0,"model":"claude-opus-4-7","in":107221,"out":325,"hash_ids":[0,1,2,3,4,5,6,7,8,9,10,11,12,1(...TRUNCATED)
155fca8f24b67a1265a0ea3fa24c4ed8afa8
[ "claude-opus-4-7" ]
64
local
[{"t":0.0,"model":"claude-opus-4-7","in":713,"out":26,"hash_ids":[0,1,2,3,4,5,6,7,8,9,10,11],"api_ti(...TRUNCATED)
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CC Traces — Weka, With Subagents, v5 only (May 18 2026)

A collection of 98 multi-turn agentic traces drawn from real production traffic against Claude Code CLI ≥ 2.1.139. Each trace captures the full request/response sequence of a single agent session, including per-request KV block hashes AND the original sub-agent fan-out structure (Task-tool spawned sub-agents grouped into WekaSubagentEntry blocks).

With-subagents, v5-only, CC ≥ 2.1.139 variant. Companion to cc-traces-weka-no-subagents-051826, which is the same 98 traces with all WekaSubagentEntry blocks stripped.

Three filters:

  1. v5 only. Every replayable request in every included session has trace_version = 5 (latest proxy schema, o200k_base tokenizer).
  2. Claude Code CLI ≥ 2.1.139. Every successful request in every included session is on a CC build that ships the x-claude-code-agent-id HTTP header — the canonical signal sub-agent grouping depends on. Sessions without it would have unreliable grouping (legacy stretch-based fallback can mis-group concurrent same-label sub-agents) and are excluded entirely.
  3. ≥ 20 main-agent turns post-strip. Sub-agent fan-out is on top of that.
  • Traces: 98
  • Top-level entries: 23,443 (22,822 main turns + 621 subagent groups)
  • Sub-agent inner requests: 16,332
  • Total individual model requests: 39,154
  • Models: claude-opus-4-7, claude-haiku-4-5-20251001, claude-opus-4-6, claude-sonnet-4-6
  • KV block size: 64 tokens
  • Hash scope: local

Sub-agent grouping

Identical algorithm to the proxy dashboard's buildRequestRuns. Two passes over chronologically-sorted DB rows:

  1. Pre-collect header-keyed groups: for every row with x-claude-code-agent-id, gather ALL rows with the same id into one group across the entire session (not just contiguous stretches). Background sub-agents that overlap with main-agent turns collapse correctly.

  2. Emit chronologically:

    • subagent_label IS NULL → main turn at position
    • has agent-id, first sighting → emit the pre-collected group
    • has agent-id, already emitted → skip
    • has label but no agent-id → fallback contiguous-stretch grouping

For CC ≥ 2.1.139 all groups go through the header-keyed path; the fallback isn't exercised. That's why we require CC ≥ 2.1.139 — the fallback can mis-group concurrent same-label sub-agents.

Tokenizer caveat

in and hash_ids are in proxy tokenizer (o200k_base). Anthropic reports ~60 % of the o200k count for the same content. ISL numbers are bigger than what Anthropic would bill, but self-consistent between in and hash_ids for cache-hit simulation.

What's in each trace

Top-level: id, models, block_size: 64, hash_id_scope: "local", requests: list.

Main-agent request (type: "n" or "s")

field type description
t float seconds since trace start
type str n (non-streaming) or s (streaming)
model str target model
in int input tokens (proxy tokenizer)
out int output tokens
hash_ids list[int] per-trace local block IDs
api_time float end-to-end server seconds
think_time float? gap from previous request's end
ttft float? streaming only

Sub-agent group (type: "subagent")

field type description
t float start of the group
type str "subagent"
agent_id str stable id (slug + 8-char suffix from x-claude-code-agent-id)
subagent_type str "Subagent" for CC ≥ 2.1.139
duration_ms int first→last inner wall-clock
total_tokens int Σ(in+out) across inners
tool_use_count null not tracked
status str "completed"
requests list inner Shape-A entries (all type: "n")
models list[str] distinct models inside

Inner requests carry absolute t values, so flattening + chronological re-sort works directly: sorted(main + flatten(inner), key=lambda x: x['t']).

Summary statistics

Across all requests (main + sub-agent inner = 39,154):

p50 p75 p90 p95 p99 mean
ISL (tokens) 103,026 231,708 440,033 573,767 799,819 173,073
OSL (tokens) 223 476 1,152 1,907 5,413 527
Top entries/trace 126 304 571 733 1,120 239

Plots

Main-agent stream

Histograms across all 22,822 main-agent turns (sub-agent groups skipped). Identical to the no-subagents sibling.

Main-stream distributions — log x Main-stream distributions — linear x

Sub-agent fan-out analysis

Histograms across all 621 sub-agent groups and their 16,332 inner requests.

Sub-agent distributions — log x Sub-agent distributions — linear x

Six panels: groups per trace · inner requests per group · group wall-clock duration · group total tokens · inner-request ISL · intra-group cache hit rate.

Model composition

model requests (main + subagent inner)
claude-opus-4-7 38,058
claude-haiku-4-5-20251001 702
claude-opus-4-6 343
claude-sonnet-4-6 51

Source

Same proxy → weka pipeline as the no-subagents sibling, without the post-step that strips WekaSubagentEntry blocks.

  1. utils/sample_proxy_traces.py --min-trace-version 5 --min-main-turns 20 --require-cli-min 2.1.139 --privacy-mode anon
  2. utils/proxy_to_weka.py (subagent grouping per proxy lib/subagent-runs.ts)
  3. Concatenate the resulting weka JSONs into traces.jsonl — one trace per line.

The same-98-trace contract with the no-subagents sibling makes the two variants safe to A/B compare for any benchmark that cares about sub-agent fan-out's impact on cache-hit-rate or throughput.

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