Skip to content

chore(deps): update rust crate insta to 1.48.0 - #1526

Merged
renovate[bot] merged 1 commit into
mainfrom
renovate/insta-1.x
Jul 29, 2026
Merged

renovate[bot] merged 1 commit into
mainfrom
renovate/insta-1.x

Conversation

@renovate

@renovate renovate Bot commented Jul 28, 2026 •

Copy link
Copy Markdown
Contributor

This PR contains the following updates:

Package Type Update Change
insta (source) workspace.dependencies patch 1.47.2 → 1.48.0

Configuration

📅 Schedule: (UTC)

  • Branch creation
    • At any time (no schedule defined)
  • Automerge
    • At any time (no schedule defined)

🚦 Automerge: Enabled.

♻ Rebasing: Whenever PR is behind base branch, or you tick the rebase/retry checkbox.

🔕 Ignore: Close this PR and you won't be reminded about this update again.


  • If you want to rebase/retry this PR, check this box

This PR was generated by Mend Renovate. View the repository job log.


View with [code]smith Autofix with [code]smith
Need help on this PR? Tag @codesmith-bot with what you need. Autofix is disabled.

@cloudflare-workers-and-pages

cloudflare-workers-and-pages Bot commented Jul 28, 2026 •

Copy link
Copy Markdown

Deploying with  Cloudflare Workers  Cloudflare Workers

The latest updates on your project. Learn more about integrating Git with Workers.

Status Name Latest Commit Preview URL Updated (UTC)
✅ Deployment successful!
View logs
ccusage-guide 97ed8d8 Commit Preview URL

Branch Preview URL
Jul 29 2026, 01:42 AM

@renovate
renovate Bot force-pushed the renovate/insta-1.x branch from 81f47ab to 8bbdab7 Compare July 28, 2026 13:16
@pkg-pr-new

pkg-pr-new Bot commented Jul 28, 2026 •

Copy link
Copy Markdown

Open in StackBlitz

ccusage

npx https://pkg.pr.new/ccusage@1526

@ccusage/ccusage-darwin-arm64

npx https://pkg.pr.new/@ccusage/ccusage-darwin-arm64@1526

@ccusage/ccusage-darwin-x64

npx https://pkg.pr.new/@ccusage/ccusage-darwin-x64@1526

@ccusage/ccusage-linux-arm64

npx https://pkg.pr.new/@ccusage/ccusage-linux-arm64@1526

@ccusage/ccusage-linux-x64

npx https://pkg.pr.new/@ccusage/ccusage-linux-x64@1526

@ccusage/ccusage-win32-x64

npx https://pkg.pr.new/@ccusage/ccusage-win32-x64@1526

commit: 97ed8d8

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 81f47ab0ee11
Base SHA: 731c7412ac2c

This compares the PR package against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 349.7ms 2.88 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 310.1ms 3.25 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 123.6ms 8.14 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 91.5ms 11.01 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.8ms 25.1ms 1.19x 55.25 MiB 55.00 MiB 1.00x 0.05 MiB/s 0.06 MiB/s
claude session --offline --json 0.00 MiB 27.4ms 24.9ms 1.10x 55.00 MiB 55.25 MiB 1.00x 0.06 MiB/s 0.06 MiB/s
codex daily --offline --json 0.00 MiB 26.1ms 24.9ms 1.05x 55.00 MiB 55.00 MiB 1.00x 0.03 MiB/s 0.03 MiB/s
codex session --offline --json 0.00 MiB 22.1ms 24.3ms 0.91x 55.25 MiB 54.75 MiB 0.99x 0.04 MiB/s 0.04 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 368.6ms 353.6ms 1.04x 944.58 MiB 952.57 MiB 1.01x 2.73 GiB/s 2.85 GiB/s
codex --offline --json 1.01 GiB 111.6ms 115.7ms 0.97x 414.89 MiB 416.90 MiB 1.00x 9.02 GiB/s 8.70 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 81f47ab0ee11
Base SHA: 731c7412ac2c

This compares the Rust PR release binary against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 352.3ms 2.86 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 324.8ms 3.10 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 142.0ms 7.09 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 100.1ms 10.06 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.8ms 5.7ms 5.22x 55.00 MiB 12.44 MiB 0.23x 0.05 MiB/s 0.27 MiB/s
claude session --offline --json 0.00 MiB 27.3ms 3.4ms 7.95x 55.25 MiB 12.45 MiB 0.23x 0.06 MiB/s 0.45 MiB/s
codex daily --offline --json 0.00 MiB 25.5ms 2.4ms 10.62x 55.00 MiB 10.69 MiB 0.19x 0.03 MiB/s 0.36 MiB/s
codex session --offline --json 0.00 MiB 22.9ms 2.4ms 9.44x 55.00 MiB 10.69 MiB 0.19x 0.04 MiB/s 0.35 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 369.4ms 316.6ms 1.17x 956.59 MiB 968.83 MiB 1.01x 2.73 GiB/s 3.18 GiB/s
codex --offline --json 1.01 GiB 114.6ms 96.1ms 1.19x 410.89 MiB 412.90 MiB 1.00x 8.78 GiB/s 10.48 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 8bbdab7d9ad9
Base SHA: 00739189f7cd

This compares the Rust PR release binary against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 339.7ms 2.96 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 312.8ms 3.22 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 136.0ms 7.40 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 97.3ms 10.35 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.9ms 6.0ms 4.97x 55.00 MiB 12.45 MiB 0.23x 0.05 MiB/s 0.26 MiB/s
claude session --offline --json 0.00 MiB 24.5ms 5.0ms 4.93x 55.00 MiB 12.45 MiB 0.23x 0.06 MiB/s 0.31 MiB/s
codex daily --offline --json 0.00 MiB 25.8ms 2.6ms 9.94x 55.00 MiB 10.69 MiB 0.19x 0.03 MiB/s 0.33 MiB/s
codex session --offline --json 0.00 MiB 23.4ms 2.4ms 9.62x 55.00 MiB 10.70 MiB 0.19x 0.04 MiB/s 0.35 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 367.2ms 323.2ms 1.14x 928.57 MiB 936.58 MiB 1.01x 2.74 GiB/s 3.12 GiB/s
codex --offline --json 1.01 GiB 118.3ms 94.1ms 1.26x 422.90 MiB 406.89 MiB 0.96x 8.51 GiB/s 10.70 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB -0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 8bbdab7d9ad9
Base SHA: 00739189f7cd

This compares the PR package against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 344.4ms 2.92 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 308.8ms 3.26 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 115.8ms 8.69 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 96.5ms 10.44 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.0ms 23.4ms 1.24x 55.00 MiB 55.00 MiB 1.00x 0.05 MiB/s 0.07 MiB/s
claude session --offline --json 0.00 MiB 28.3ms 24.9ms 1.14x 55.00 MiB 55.25 MiB 1.00x 0.05 MiB/s 0.06 MiB/s
codex daily --offline --json 0.00 MiB 23.9ms 22.8ms 1.05x 55.00 MiB 55.25 MiB 1.00x 0.04 MiB/s 0.04 MiB/s
codex session --offline --json 0.00 MiB 22.5ms 22.8ms 0.99x 55.00 MiB 55.00 MiB 1.00x 0.04 MiB/s 0.04 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 374.6ms 367.9ms 1.02x 950.58 MiB 954.58 MiB 1.00x 2.69 GiB/s 2.74 GiB/s
codex --offline --json 1.01 GiB 116.9ms 125.0ms 0.93x 406.90 MiB 414.89 MiB 1.02x 8.61 GiB/s 8.05 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB -0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@renovate
renovate Bot force-pushed the renovate/insta-1.x branch from 8bbdab7 to 70ac9b8 Compare July 28, 2026 16:31
@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 70ac9b89af6f
Base SHA: ec95f9ffefc9

This compares the Rust PR release binary against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 350.2ms 2.87 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 310.3ms 3.24 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 117.4ms 8.58 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 93.7ms 10.75 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.5ms 5.6ms 5.22x 55.00 MiB 12.44 MiB 0.23x 0.05 MiB/s 0.27 MiB/s
claude session --offline --json 0.00 MiB 25.8ms 3.0ms 8.70x 55.00 MiB 12.45 MiB 0.23x 0.06 MiB/s 0.52 MiB/s
codex daily --offline --json 0.00 MiB 25.8ms 2.4ms 10.97x 55.00 MiB 10.70 MiB 0.19x 0.03 MiB/s 0.36 MiB/s
codex session --offline --json 0.00 MiB 24.0ms 2.4ms 10.20x 55.00 MiB 10.69 MiB 0.19x 0.04 MiB/s 0.36 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 380.6ms 325.2ms 1.17x 938.58 MiB 960.58 MiB 1.02x 2.64 GiB/s 3.10 GiB/s
codex --offline --json 1.01 GiB 122.3ms 97.1ms 1.26x 412.89 MiB 418.90 MiB 1.01x 8.23 GiB/s 10.37 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 70ac9b89af6f
Base SHA: ec95f9ffefc9

This compares the PR package against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 339.4ms 2.97 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 328.7ms 3.06 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 115.2ms 8.74 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 89.5ms 11.25 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.4ms 25.6ms 1.15x 55.25 MiB 55.00 MiB 1.00x 0.05 MiB/s 0.06 MiB/s
claude session --offline --json 0.00 MiB 26.8ms 26.1ms 1.02x 55.25 MiB 54.75 MiB 0.99x 0.06 MiB/s 0.06 MiB/s
codex daily --offline --json 0.00 MiB 24.6ms 24.8ms 0.99x 55.00 MiB 55.00 MiB 1.00x 0.03 MiB/s 0.03 MiB/s
codex session --offline --json 0.00 MiB 23.6ms 23.0ms 1.03x 55.00 MiB 55.25 MiB 1.00x 0.04 MiB/s 0.04 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 378.8ms 351.2ms 1.08x 952.58 MiB 954.83 MiB 1.00x 2.66 GiB/s 2.87 GiB/s
codex --offline --json 1.01 GiB 119.3ms 116.2ms 1.03x 408.90 MiB 424.90 MiB 1.04x 8.44 GiB/s 8.66 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@renovate
renovate Bot force-pushed the renovate/insta-1.x branch from 70ac9b8 to 86ff791 Compare July 28, 2026 19:35
@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 86ff79143f49
Base SHA: 8d4a59291a6d

This compares the Rust PR release binary against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 342.9ms 2.94 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 301.7ms 3.34 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 127.0ms 7.93 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 99.6ms 10.11 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 32.4ms 6.4ms 5.05x 55.25 MiB 12.45 MiB 0.23x 0.05 MiB/s 0.24 MiB/s
claude session --offline --json 0.00 MiB 30.1ms 5.1ms 5.95x 55.25 MiB 12.44 MiB 0.23x 0.05 MiB/s 0.31 MiB/s
codex daily --offline --json 0.00 MiB 28.3ms 2.8ms 10.10x 55.25 MiB 10.70 MiB 0.19x 0.03 MiB/s 0.31 MiB/s
codex session --offline --json 0.00 MiB 26.0ms 2.9ms 8.88x 55.25 MiB 10.70 MiB 0.19x 0.03 MiB/s 0.29 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 351.6ms 273.0ms 1.29x 960.83 MiB 954.57 MiB 0.99x 2.86 GiB/s 3.69 GiB/s
codex --offline --json 1.01 GiB 123.9ms 99.0ms 1.25x 404.89 MiB 408.91 MiB 1.01x 8.13 GiB/s 10.17 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 86ff79143f49
Base SHA: 8d4a59291a6d

This compares the PR package against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 331.6ms 3.04 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 294.4ms 3.42 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 118.8ms 8.47 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 100.9ms 9.98 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 30.1ms 31.0ms 0.97x 55.00 MiB 55.00 MiB 1.00x 0.05 MiB/s 0.05 MiB/s
claude session --offline --json 0.00 MiB 29.3ms 30.4ms 0.96x 54.75 MiB 55.50 MiB 1.01x 0.05 MiB/s 0.05 MiB/s
codex daily --offline --json 0.00 MiB 27.8ms 26.3ms 1.06x 54.75 MiB 55.25 MiB 1.01x 0.03 MiB/s 0.03 MiB/s
codex session --offline --json 0.00 MiB 27.7ms 27.9ms 0.99x 55.00 MiB 55.25 MiB 1.00x 0.03 MiB/s 0.03 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 349.8ms 322.5ms 1.08x 964.57 MiB 950.57 MiB 0.99x 2.88 GiB/s 3.12 GiB/s
codex --offline --json 1.01 GiB 130.1ms 127.0ms 1.02x 406.89 MiB 414.90 MiB 1.02x 7.74 GiB/s 7.93 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@renovate
renovate Bot force-pushed the renovate/insta-1.x branch from 86ff791 to e020619 Compare July 28, 2026 21:31
@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: e020619ae951
Base SHA: 809c4c74fc2c

This compares the Rust PR release binary against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 353.0ms 2.85 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 309.8ms 3.25 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 119.6ms 8.41 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 91.9ms 10.95 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 27.7ms 5.9ms 4.71x 55.00 MiB 12.45 MiB 0.23x 0.06 MiB/s 0.26 MiB/s
claude session --offline --json 0.00 MiB 26.6ms 2.8ms 9.60x 55.25 MiB 12.44 MiB 0.23x 0.06 MiB/s 0.56 MiB/s
codex daily --offline --json 0.00 MiB 22.8ms 2.4ms 9.68x 55.00 MiB 10.69 MiB 0.19x 0.04 MiB/s 0.36 MiB/s
codex session --offline --json 0.00 MiB 23.7ms 2.3ms 10.23x 54.75 MiB 10.69 MiB 0.20x 0.04 MiB/s 0.37 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 378.4ms 327.4ms 1.16x 948.58 MiB 968.58 MiB 1.02x 2.66 GiB/s 3.08 GiB/s
codex --offline --json 1.01 GiB 117.6ms 94.2ms 1.25x 398.89 MiB 406.91 MiB 1.02x 8.56 GiB/s 10.69 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB -0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: e020619ae951
Base SHA: 809c4c74fc2c

This compares the PR package against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 340.7ms 2.95 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 317.8ms 3.17 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 117.4ms 8.57 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 93.8ms 10.73 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 26.9ms 27.0ms 1.00x 55.00 MiB 55.00 MiB 1.00x 0.06 MiB/s 0.06 MiB/s
claude session --offline --json 0.00 MiB 28.0ms 27.0ms 1.04x 54.75 MiB 55.00 MiB 1.00x 0.06 MiB/s 0.06 MiB/s
codex daily --offline --json 0.00 MiB 23.4ms 23.4ms 1.00x 55.00 MiB 54.75 MiB 1.00x 0.04 MiB/s 0.04 MiB/s
codex session --offline --json 0.00 MiB 23.4ms 24.2ms 0.97x 55.25 MiB 55.00 MiB 1.00x 0.04 MiB/s 0.04 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 381.9ms 336.4ms 1.14x 954.58 MiB 954.57 MiB 1.00x 2.64 GiB/s 2.99 GiB/s
codex --offline --json 1.01 GiB 130.6ms 118.2ms 1.10x 434.90 MiB 422.89 MiB 0.97x 7.71 GiB/s 8.51 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB -0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@renovate
renovate Bot force-pushed the renovate/insta-1.x branch from e020619 to 97ed8d8 Compare July 29, 2026 01:41
@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 97ed8d8f36dd
Base SHA: c0884bdee42c

This compares the Rust PR release binary against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 366.4ms 2.75 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 315.5ms 3.19 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 121.9ms 8.26 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 96.9ms 10.39 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 29.1ms 5.2ms 5.54x 55.00 MiB 12.45 MiB 0.23x 0.05 MiB/s 0.29 MiB/s
claude session --offline --json 0.00 MiB 26.6ms 2.8ms 9.61x 55.00 MiB 12.45 MiB 0.23x 0.06 MiB/s 0.56 MiB/s
codex daily --offline --json 0.00 MiB 26.1ms 2.5ms 10.58x 55.00 MiB 10.69 MiB 0.19x 0.03 MiB/s 0.35 MiB/s
codex session --offline --json 0.00 MiB 24.1ms 2.4ms 9.97x 55.00 MiB 10.69 MiB 0.19x 0.04 MiB/s 0.35 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published native ccusage binary from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 371.7ms 332.6ms 1.12x 944.58 MiB 924.57 MiB 0.98x 2.71 GiB/s 3.03 GiB/s
codex --offline --json 1.01 GiB 120.7ms 101.2ms 1.19x 422.90 MiB 410.90 MiB 0.97x 8.34 GiB/s 9.95 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@github-actions

Copy link
Copy Markdown
Contributor

ccusage performance comparison

PR SHA: 97ed8d8f36dd
Base SHA: c0884bdee42c

This compares the PR package against the configured base package on the same CI runner.

Package runtime diagnostics

Compares the PR package wrapper, the installed native optional dependency binary, and the workspace release binary on the same large fixture. This identifies whether slow package results come from JavaScript wrapper overhead, the published native binary build, or the Rust core itself.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
All rows run --offline --json, measured by hyperfine with 0 warmups and 1 runs. This isolates wrapper overhead from the installed native optional dependency and the workspace release binary built on the runner.

Command Runtime Input Median Throughput Samples
claude --offline --json Package wrapper 1.01 GiB 352.9ms 2.85 GiB/s 1
claude --offline --json Installed native binary 1.01 GiB 308.2ms 3.27 GiB/s 1
codex --offline --json Package wrapper 1.01 GiB 115.0ms 8.76 GiB/s 1
codex --offline --json Installed native binary 1.01 GiB 91.2ms 11.04 GiB/s 1

Committed fixture performance

Committed small fixtures for stable PR-to-PR feedback and explicit Claude/Codex command coverage.

Fixtures: Claude apps/ccusage/test/fixtures/claude (0.00 MiB, 2 files), Codex apps/ccusage/test/fixtures/codex (0.00 MiB, 1 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 2 warmups and 7 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude daily --offline --json 0.00 MiB 30.5ms 28.2ms 1.08x 55.25 MiB 54.75 MiB 0.99x 0.05 MiB/s 0.05 MiB/s
claude session --offline --json 0.00 MiB 27.4ms 26.0ms 1.05x 55.25 MiB 55.00 MiB 1.00x 0.06 MiB/s 0.06 MiB/s
codex daily --offline --json 0.00 MiB 23.6ms 23.4ms 1.01x 55.00 MiB 55.00 MiB 1.00x 0.04 MiB/s 0.04 MiB/s
codex session --offline --json 0.00 MiB 24.1ms 26.1ms 0.92x 55.00 MiB 55.25 MiB 1.00x 0.04 MiB/s 0.03 MiB/s

Large real-world-shaped fixture performance

Generated fixtures shaped from aggregate local log statistics: thousands of JSONL files, many small sessions, and a long tail of larger sessions. No real prompts, paths, or outputs are stored in the fixtures.

Fixtures: Claude /home/runner/_work/_temp/ccusage-large-fixture (1.01 GiB, 2597 files), Codex /home/runner/_work/_temp/ccusage-large-codex-fixture (1.01 GiB, 2597 files)
Base runs the published ccusage package from pkg.pr.new, installed before measurement; PR runs the published ccusage package from pkg.pr.new, installed before measurement. Both run --offline --json, measured by hyperfine with 0 warmups and 1 runs.
Peak RSS is measured separately with /usr/bin/time using 1 runs. Lower RSS ratios are better.

Command Input Base median PR median PR vs base Base peak RSS PR peak RSS PR/base RSS Base throughput PR throughput
claude --offline --json 1.01 GiB 358.6ms 339.4ms 1.06x 944.58 MiB 950.59 MiB 1.01x 2.81 GiB/s 2.97 GiB/s
codex --offline --json 1.01 GiB 118.7ms 122.5ms 0.97x 412.91 MiB 390.89 MiB 0.95x 8.48 GiB/s 8.22 GiB/s

Artifact size

Artifact Base PR Delta Ratio
packed ccusage-*.tgz 18.78 KiB 18.78 KiB +0.00 KiB 1.00x
installed native package binary 4160.78 KiB 4160.78 KiB +0.00 KiB 1.00x

Lower medians and smaller artifacts are better. CI runner noise still applies; use same-run ratios as directional PR feedback, not release guarantees.

@renovate
renovate Bot merged commit eec7971 into main Jul 29, 2026
39 checks passed
@renovate
renovate Bot deleted the renovate/insta-1.x branch July 29, 2026 05:51
Sign up for free to join this conversation on GitHub. Already have an account? Sign in to comment

Projects

None yet

Development

Successfully merging this pull request may close these issues.

0 participants