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atlassian-mcp

Ein Model Context Protocol (MCP)-Server für selbst gehostetes Jira (Server / Data Center) und selbst gehostetes Bitbucket (Server / Data Center). Stellt Werkzeuge für Workflows in natürlicher Sprache rund um Tickets, Pull Requests, Review-Threads und Git-Kontext bereit.

Hinweis: Dieser Server unterstützt nur selbst gehostete Instanzen. Jira Cloud und Bitbucket Cloud verwenden andere APIs und werden nicht unterstützt.


Werkzeuge

Workflow

Werkzeug

Beschreibung

get_dev_context

Master-Einstiegspunkt: Git-Status + verknüpftes Jira-Ticket + offener PR mit Reviewer/Blocker-Status und Hinweisen für nächste Schritte

start_work

Startet ein Jira-Ticket: holt es, erstellt einen lokalen Branch (feature/FOO-123-slug) und überführt das Ticket optional in einen anderen Status

complete_work

Schließt abgeschlossene Arbeit ab: merged den offenen PR und setzt das Jira-Ticket auf Done

Git

Werkzeug

Beschreibung

git_get_context

Branch, Upstream-Status, Remote-URL, letzte Commits, Arbeitsbaum-Status, Diff-Statistik und Jira-Schlüssel im Branchnamen

git_get_diff

Diff von uncommitteten Änderungen oder zwischen zwei Refs; unterstützt Paging über charOffset

Jira

Werkzeug

Beschreibung

jira_search

Ressourcen entdecken: issues, projects, issue_types, boards, sprints, board_overview, versions, components, fields oder users über den Parameter resource

jira_get

Vollständige Details zu einem Issue: Zusammenfassung, Beschreibung, Status, Sprint, Übergänge, Kommentare und Anhangsliste

jira_get_attachment

Holt einen Jira-Anhang anhand der ID. Bilder, Videos, animierte Bilder (GIF/APNG/animiertes WebP), Audio und PDFs werden inline dekodiert, sodass das Modell sie sehen/hören kann. Text/JSON inline. Überdimensionierte oder nicht darstellbare Anhänge werden automatisch in eine temporäre Datei gespeichert und der Pfad zurückgegeben. saveTo=/absoluter/pfad streamt das Original auf die Festplatte

jira_mutate

Erstellen, Aktualisieren, Überführen, Kommentieren, Verknüpfen, zu Sprint hinzufügen oder Arbeit protokollieren – alles in einem Aufruf

jira_comment

Kommentar zu einem Issue hinzufügen, aktualisieren oder löschen (action: add / update / delete)

jira_version

Fix-Versionen/Releases verwalten (action: create / update / release / archive / delete)

Bitbucket

Werkzeug

Beschreibung

bitbucket_search

Ressourcen entdecken: pull_requests (Standard), repos, branches oder users über den Parameter resource; mine=true für deinen Posteingang

bitbucket_get_pr

Vollständige PR-Details: Metadaten, Commits, Kommentare, Blocker, Build-Status, optionales Diff und alle Anhänge, auf die in Beschreibung oder Kommentaren verwiesen wird

bitbucket_get_attachment

Holt einen Repo-Anhang anhand der ID. Gleiche Dekodierungs-Pipeline wie jira_get_attachment (Bilder, Videos, animierte Bilder, Audio, PDFs). Überdimensionierte oder nicht darstellbare Anhänge werden automatisch in eine temporäre Datei gespeichert und der Pfad zurückgegeben; saveTo streamt das Original auf die Festplatte

bitbucket_mutate

PR erstellen/aktualisieren oder Lebenszyklus-Aktionen ausführen: approve, unapprove, needs_work, merge, decline

bitbucket_comment

PR-Kommentar hinzufügen, aktualisieren oder löschen; für Codeänderungen suggestion verwenden, damit Bitbucket „Vorschlag anwenden“ anzeigt (kein nachfolgender Text nach einem Vorschlagsblock)

bitbucket_get_file

Rohen Dateiinhalt von Bitbucket auf einem Branch, Tag oder Commit

bitbucket_pr_tasks

PR-Aufgaben (Checklisten-Elemente) verwalten: list, create, resolve, reopen, delete

Beispiele in natürlicher Sprache

  • „Woran arbeite ich gerade?“ → get_dev_context

  • „Erstelle einen Branch für FOO-123“ → start_work

  • „Ship das / merge und schließe das Ticket“ → complete_work

  • „Zeig meine PRs, die auf Review warten“ → bitbucket_search mit mine=true

  • „Liste offene PRs für dieses Repo von feature/ABC-123“ → bitbucket_search mit fromBranch

  • „Gib mir eine vollständige Übersicht von PR 42“ → bitbucket_get_pr

  • „Eröffne einen PR von meinem aktuellen Branch zu master“ → bitbucket_mutate mit create

  • „Genehmige / merge / lehne PR 42 ab“ → bitbucket_mutate mit action

  • „Antworte auf Kommentar 123 bei PR 42“ → bitbucket_comment mit commentId=123

  • „Löse diesen Blocker bei PR 42“ → bitbucket_comment mit action=update, severity=BLOCKER, state=RESOLVED

  • „Liste PR-Checklisten-Aufgaben“ → bitbucket_pr_tasks mit action=list

  • „Finde Bugs, die mir im PAY-Projekt zugewiesen sind“ → jira_search mit mine=true, issueType=Bug

  • „Was ist im aktuellen Sprint?“ → jira_search mit resource=board_overview

  • „Setze FOO-123 auf In Progress“ → jira_mutate mit transitionName="In Progress"

  • „Protokolliere 2h bei FOO-123“ → jira_mutate mit worklog

  • „Erstelle Version 9.1.0 in PAY“ → jira_version mit action=create, projectKey=PAY, name=9.1.0

  • „Liste Releases für PAY“ → jira_search mit resource=versions, project=PAY

  • „Veröffentliche Version 12345“ → jira_version mit action=release, id=12345

  • „Setze Fix-Version 9.1.0 auf FOO-123“ → jira_mutate mit update.fixVersion=9.1.0

  • „Erstelle eine Aufgabe unter dem Epic FOO-100“ → jira_mutate mit create.issueType=Task, create.parent=FOO-100 (erkennt Epic automatisch und setzt Epic Link)

  • „Verschiebe FOO-123 unter Epic FOO-100“ → jira_mutate mit update.epicLink=FOO-100

  • „Erstelle ein Epic“ → jira_mutate mit create.issueType=Epic (Epic-Name standardmäßig die Zusammenfassung)

  • „Setze Story Points auf 5“ → jira_mutate mit update.customFields={"Story Points": 5} – Werte sind einfach (Optionslabel, Benutzername, Datum, Array von Labels); der Server verpackt sie gemäß dem Feldschema

  • „Was kann ich bei diesem Ticket / bei einem Epic setzen?“ → jira_search resource=fields mit issueKey=FOO-123 (Bearbeitungsbildschirm) oder project=FOO+issueType=Epic (Erstellungsbildschirm): Pflicht- und optionale Felder, Wertformen, zulässige Werte


Related MCP server: Bitbucket Server MCP

Einrichtung

1. Konfigurationsdatei erstellen

Erstelle ~/.atlassian-mcp.json:

{
  "$schema": "https://raw.githubusercontent.com/stubbedev/atlassian-mcp/master/atlassian-mcp.schema.json",
  "jira": {
    "url": "https://jira.example.com",
    "token": "your-jira-personal-access-token"
  },
  "bitbucket": {
    "url": "https://bitbucket.example.com",
    "token": "your-bitbucket-personal-access-token"
  }
}

Das Feld $schema ist optional, ermöglicht aber Editor-Autovervollständigung und Validierung.

  • projectKey bedeutet einen Projektcode:

    • Jira-Beispiel: PAY im Ticket PAY-123

    • Bitbucket-Beispiel: Projekt ENG im Repo-Pfad ENG/payments-service

  • Du kannst auch ergonomische Aliase verwenden:

    • Jira: project (Alias von projectKey)

    • Bitbucket: project und repo (Aliase von projectKey und repoSlug)

  • Für Bitbucket-Werkzeuge werden projectKey und repoSlug normalerweise automatisch aus deinem lokalen origin-Remote erkannt.

  • bitbucket_create_pull_request erkennt auch fromBranch automatisch aus deinem aktuellen Branch und gibt den bereits vorhandenen offenen PR zurück, falls für diesen Branch bereits einer existiert.

  • Jira-Projektbezogene Aufrufe akzeptieren projectKey und funktionieren am besten, wenn sie angegeben werden.

  • Wenn projectKey für die Jira-Issue-Erstellung/Typ-Suche weggelassen wird, versucht der Server, ihn aus dem Ticket-Schlüssel deines aktuellen Branches abzuleiten, fällt auf automatische Auswahl zurück, wenn nur ein Projekt sichtbar ist, und gibt andernfalls eine nummerierte Projektliste zur Auswahl zurück.

Alternativ können Umgebungsvariablen (oder eine .env-Datei in diesem Verzeichnis) verwendet werden:

JIRA_URL=https://jira.example.com
JIRA_ACCESS_TOKEN=your-jira-personal-access-token
BITBUCKET_URL=https://bitbucket.example.com
BITBUCKET_ACCESS_TOKEN=your-bitbucket-personal-access-token

Die Konfiguration wird in dieser Reihenfolge aufgelöst: --config <pfad>-CLI-Argument → ATLASSIAN_MCP_CONFIG-Umgebungsvariable → ~/.atlassian-mcp.json$XDG_CONFIG_HOME/atlassian-mcp/config.json (Standard ~/.config/atlassian-mcp/config.json) → .atlassian-mcp.json im aktuellen Arbeitsverzeichnis → Umgebungsvariablen.

2. Mit deinem KI-Tool verbinden

Kein Klonen oder Bauen erforderlich – weise dein Tool einfach auf npx @stubbedev/atlassian-mcp@latest und es wird automatisch installiert und ausgeführt.

Hinweis: --prefer-online kann den MCP-Start in einigen Clients stören. Halte den Befehl einfach und verwende die unten stehenden Aktualisierungsschritte, wenn du aktualisieren möchtest.


Claude Code

claude mcp add atlassian -- npx -y @stubbedev/atlassian-mcp@latest --config ~/.atlassian-mcp.json

Cursor

Füge zu ~/.cursor/mcp.json (global) oder .cursor/mcp.json (nur Projekt) hinzu:

{
  "mcpServers": {
    "atlassian": {
      "command": "npx",
      "args": ["-y", "@stubbedev/atlassian-mcp@latest", "--config", "/Users/you/.atlassian-mcp.json"]
    }
  }
}

Windsurf

Füge zu ~/.codeium/windsurf/mcp_config.json hinzu:

{
  "mcpServers": {
    "atlassian": {
      "command": "npx",
      "args": ["-y", "@stubbedev/atlassian-mcp@latest", "--config", "/Users/you/.atlassian-mcp.json"]
    }
  }
}

Zed

Füge zu ~/.config/zed/settings.json hinzu:

{
  "context_servers": {
    "atlassian": {
      "command": {
        "path": "npx",
        "args": ["-y", "@stubbedev/atlassian-mcp@latest", "--config", "/home/you/.atlassian-mcp.json"]
      }
    }
  }
}

OpenCode

Füge zu opencode.json im Projektstamm hinzu (oder ~/.config/opencode/opencode.json für global):

{
  "$schema": "https://opencode.ai/config.json",
  "mcp": {
    "atlassian": {
      "type": "local",
      "command": ["npx", "-y", "@stubbedev/atlassian-mcp@latest", "--config", "/home/you/.atlassian-mcp.json"]
    }
  }
}

Codex CLI

Füge zu ~/.codex/config.yaml hinzu:

mcpServers:
  atlassian:
    command: npx
    args:
      - -y
      - @stubbedev/atlassian-mcp@latest
      - --config
      - /home/you/.atlassian-mcp.json

Jedes andere MCP-kompatible Tool

Die meisten Tools, die MCP unterstützen, akzeptieren dasselbe JSON-Format. Verwende npx als Befehl mit ["-y", "@stubbedev/atlassian-mcp@latest", "--config", "/pfad/zu/config.json"] als Argumente.

Vorhandene Installationen aktualisieren

Wenn Ihr MCP-Client bereits konfiguriert ist und Sie die neueste Paketversion möchten:

npx clear-npx-cache

Starten Sie dann Ihren MCP-Client neu.


Installation ohne npm

Der Server ist ein einzelnes statisches Go-Binary. Der npx-Pfad oben lädt das vorgefertigte Binary für Ihre Plattform beim ersten Start herunter; diese Alternativen überspringen Node vollständig:

# Go toolchain — installs to $GOBIN / $GOPATH/bin
go install github.com/stubbedev/atlassian-mcp@latest

# Nix flake
nix run github:stubbedev/atlassian-mcp -- --config ~/.atlassian-mcp.json

Richten Sie dann den command Ihres MCP-Clients auf das resultierende atlassian-mcp-Binary statt auf npx. Auf diesen Pfaden müssen ffmpeg/ffprobe im PATH verfügbar sein (oder setzen Sie ATLASSIAN_MCP_FFMPEG_PATH / ATLASSIAN_MCP_FFPROBE_PATH); der npm-Wrapper bündelt sie automatisch.

Ausführung als HTTP-Server (gemeinsam genutzt / hinter einem Proxy)

Standardmäßig kommuniziert der Server über stdio per MCP (ein Prozess pro Client, von Ihrem Editor gestartet). Er kann stattdessen als langlebiger Streamable-HTTP-Server laufen, den viele Clients gemeinsam nutzen — nützlich hinter einem Reverse-Proxy:

atlassian-mcp --http                 # binds 127.0.0.1:7337
atlassian-mcp --http 127.0.0.1:9000  # custom address
ATLASSIAN_MCP_HTTP=1 atlassian-mcp   # same, via env
  • Ein einzelner Endpunkt POST /mcp (JSON-RPC) plus ein optionaler GET /mcp-SSE-Stream, der Server→Client-Anfragen (roots/list, Elicitation) überträgt. Der Server ist zustandsbehaftet: initialize erstellt eine Sitzung und gibt einen Mcp-Session-Id-Header zurück, den der Client bei jeder nachfolgenden Anfrage und im SSE-Stream zurücksenden muss. Anfragen mit fehlender/unbekannter/abgelaufener Sitzungs-ID erhalten HTTP 404, sodass der Client neu initialisiert (Standardverhalten von MCP-Clients). Jeder verbundene Client/Worktree ist eine isolierte Sitzung.

  • Auth: Bei einem Loopback-Bind ist kein Token erforderlich. Das Binden einer Nicht-Loopback-Adresse erfordert ATLASSIAN_MCP_HTTP_TOKEN (von Clients als Authorization: Bearer … gesendet); andernfalls weigert sich der Server zu starten. Beenden Sie TLS an Ihrem Proxy.

  • GET /healthz ist ein nicht authentifizierter Liveness-Healthcheck (gibt ok zurück) für Proxys/Load-Balancer. Leerlaufende Sitzungen werden nach 1 Stunde entfernt.

Der Repo-Kontext stammt vom Client, nicht vom Arbeitsverzeichnis des Servers. Tools, die ein Repo benötigen (die git_*-Tools, get_dev_context, start_work, complete_work und die Bitbucket-Projekt-/Repo-Autoerkennung), lösen es in dieser Reihenfolge auf: ein explizites repoPath-Argument → eine über einen Request-Header gepinnte Root (siehe unten) → die MCP-Workspace-Roots des Clients (der Server fragt über roots/list, cached pro Sitzung und aktualisiert bei notifications/roots/list_changed) → das Prozess-CWD (nur stdio). So verwaltet ein gemeinsamer HTTP-Server viele Worktrees: Der eigene Workspace jedes Clients steuert dessen Aufrufe. Wenn eine Sitzung mehrere Roots verfügbar macht (mehrere Worktrees), verwendet ein Tool ohne repoPath die erste Git-Repo-Root; übergeben Sie repoPath (einen absoluten Pfad oder einen Worktree-Namen/Basisnamen, der einer der Roots entspricht), um einen bestimmten Worktree anzusprechen. Bei Bitbucket überspringt die explizite Übergabe von projectKey+repoSlug die Repo-Erkennung vollständig. Die Repos müssen auf dem Host des Servers erreichbar sein (die Git-Tools führen git lokal aus).

Pinnen der Root über einen Request-Header (HTTP). Ein Reverse-Proxy oder eine Testumgebung, die den Arbeitsbaum bereits kennt, kann ihn direkt an den Server übergeben und so den roots/list-Roundtrip überspringen (und funktioniert auch, wenn der Client die roots-Fähigkeit nie angekündigt hat). Senden Sie eine file://-URI oder einen absoluten Pfad (durch Kommas getrennt für mehrere; das erste Git-Repo gewinnt):

X-Mcp-Root: file:///srv/myrepo
X-Mcp-Roots: /srv/a, /srv/b

Akzeptierte Header-Namen: X-Mcp-Roots, X-Mcp-Root, Mcp-Roots, Mcp-Root. Ein Header-Wert ist maßgeblich — er hat Vorrang vor roots/list und übersteht list_changed.

Client-Konfiguration für einen bereits laufenden HTTP-Server (Claude-Code-Beispiel):

claude mcp add --transport http atlassian http://127.0.0.1:7337/mcp

Pipeline zur Dekodierung von Anhängen

Die Anhang-Tools (jira_get_attachment, bitbucket_get_attachment) dekodieren binäre Anhänge in modelllesbaren Inhalt, bevor sie sie zurückgeben:

Eingabe

Was zurückgegeben wird

Wie

Statische Bilder (PNG/JPEG/WebP/BMP/TIFF/GIF/SVG…)

In der Größe angepasste Bild-Inhaltsblöcke

natives Go (imaging, lange Kante ≤ maxDimension, Standard 1568; EXIF-Auto-Orientierung; PNG bei Alpha, sonst JPEG)

Animierte Bilder (GIF/APNG/animiertes WebP)

N abgetastete Frames als Bild-Inhaltsblöcke

ffmpeg + natives Go-Re-Encoding (Standard 6 Frames @ 768 px)

Video (mp4/webm/mov/…)

N abgetastete Frames als Bild-Inhaltsblöcke

ffmpeg/ffprobe. Gleichmäßige oder Szenenwechsel-Abtastung. Erneuter Aufruf mit start, end, frames, mode, sceneThreshold zum Hineinzoomen

Audio (mp3/wav/ogg/…)

MCP-Audio-Inhaltsblock

Durchleitung

PDFs

Extrahierter Text — oder gerasterte Seiten, wenn der Text leer ist (gescannte PDFs)

native Go-Text-Extraktion (ledongthuc/pdf); Rasterung greift auf pdftoppm/mutool zurück, falls vorhanden, sonst wird das Original auf der Festplatte gespeichert

Textähnlich (json/xml/yaml/…)

Text-Inhaltsblock

Durchleitung

Alles andere (oder zu groß)

Automatisch in einer temporären Datei gespeichert; Pfad wird zurückgegeben

os.TempDir() mit atlmcp--Präfix

Automatisch gespeicherte Dateien werden regelmäßig per TTL und Gesamtgrößen-Kontingent bereinigt — siehe Umgebungsüberschreibungen unten.

Externe Tools (optional)

Bild- und PDF-Text-Dekodierung sind reines Go und benötigen nichts Zusätzliches. Die beiden Pipelines ohne reine Go-Implementierung greifen auf externe Binaries zurück:

  • ffmpeg + ffprobe — Frame-Abtastung für Videos und animierte Bilder. Der npm-Wrapper bündelt ffmpeg-static / ffprobe-static und injiziert deren Pfade, sodass der npx-Installationspfad ohne Konfiguration auskommt. Bei den go install-/Nix-Pfaden installieren Sie ffmpeg (das ffprobe bereitstellt) oder setzen Sie die unten genannten Umgebungsvariablen.

  • pdftoppm (poppler) oder mutool (MuPDF) — nur erforderlich, um gescannte PDFs ohne extrahierbaren Text zu rastern. Wenn keines im PATH ist, werden solche PDFs stattdessen auf der Festplatte gespeichert.

Umgebungsüberschreibungen

Variable

Zweck

Standard

ATLASSIAN_MCP_HTTP

Als Streamable-HTTP-Server statt stdio ausführen. 1/true127.0.0.1:7337; oder ein explizites host:port setzen. Wie --http.

nicht gesetzt (stdio)

ATLASSIAN_MCP_HTTP_TOKEN

Bearer-Token für den HTTP-Modus. Optional bei Loopback-Binds; erforderlich bei Nicht-Loopback-Binds.

nicht gesetzt

ATLASSIAN_MCP_FFMPEG_PATH

Pfad zum ffmpeg-Binary.

npm: gebündeltes ffmpeg-static; andernfalls ffmpeg im PATH

ATLASSIAN_MCP_FFPROBE_PATH

Pfad zum ffprobe-Binary.

npm: gebündeltes ffprobe-static; andernfalls ffprobe im PATH

ATLASSIAN_MCP_TMP_TTL_DAYS

Automatisch gespeicherte Anhänge, die älter als dieser Wert sind, werden bereinigt.

7

ATLASSIAN_MCP_TMP_MAX_BYTES

Gesamtgrößen-Kontingent für automatisch gespeicherte Anhänge in os.tmpdir(). Bei Überschreitung werden die ältesten entfernt.

1073741824 (1 GB)


Releases (Maintainer)

Dieses Paket wird als @stubbedev/atlassian-mcp auf npm veröffentlicht.

Verwenden Sie semantische Versionierung für Releases. Bahnbrechende Änderungen an der Tool-Oberfläche sollten die Nebenversion erhöhen, solange <1.0.0 (z. B. 0.0.x -> 0.1.0).

Bei einem gepushten v*-Tag kompiliert .github/workflows/publish.yml das Go-Binary für 14 OS/Arch-Ziele, hängt sie an ein GitHub-Release an und veröffentlicht den npm-Wrapper (der das passende Binary bei der Installation herunterlädt).

Release-Ablauf:

# choose one: patch | minor | major (also: npm run release:patch / :minor / :major)
npm version patch          # bumps package.json, commits, tags vX.Y.Z
git push origin HEAD --follow-tags

flake.nix liest seine Version aus package.json, sodass das Nix-Paket denselben Versionssprung automatisch übernimmt. GitHub Actions baut und veröffentlicht vom gepushten Tag.

  • Der Workflow ist für npm Trusted Publisher (OIDC) konfiguriert, sodass kein NPM_TOKEN-Secret erforderlich ist

Erforderliche npm-Einrichtung (einmalig):

  • Fügen Sie in den npm-Paketeinstellungen dieses GitHub-Repo/diesen Workflow als Trusted Publisher hinzu


Erstellen von Personal Access Tokens

Jira Server / Data Center

Personal Access Tokens werden ab Jira 8.14 unterstützt.

  1. Melden Sie sich bei Ihrer Jira-Instanz an.

  2. Klicken Sie oben rechts auf Ihren Profil-Avatar und wählen Sie Profil.

  3. Klicken Sie in der linken Seitenleiste auf Personal Access Tokens.

  4. Klicken Sie auf Token erstellen.

  5. Geben Sie dem Token einen Namen (z. B. atlassian-mcp) und legen Sie optional ein Ablaufdatum fest.

  6. Klicken Sie auf Erstellen und kopieren Sie das Token — es wird nur einmal angezeigt.

Fügen Sie das Token als token-Wert unter jira in Ihrer Konfigurationsdatei ein.

Wenn Ihre Jira-Version älter als 8.14 ist, können Sie stattdessen HTTP Basic Auth verwenden — dieser Server unterstützt jedoch nur die Bearer-Token-Authentifizierung (PAT).

Bitbucket Server / Data Center

Personal Access Tokens werden ab Bitbucket Server 5.5 unterstützt.

  1. Melden Sie sich bei Ihrer Bitbucket-Instanz an.

  2. Klicken Sie oben rechts auf Ihren Profil-Avatar und wählen Sie Konto verwalten.

  3. Klicken Sie in der linken Seitenleiste unter Sicherheit auf Personal access tokens.

  4. Klicken Sie auf Token erstellen.

  5. Geben Sie dem Token einen Namen (z. B. atlassian-mcp).

  6. Legen Sie die Berechtigungen fest:

    • Projekte: Lesen

    • Repositories: Lesen + Schreiben (Schreiben ist erforderlich, um Pull Requests zu erstellen und Kommentare hinzuzufügen)

  7. Legen Sie optional ein Ablaufdatum fest.

  8. Klicken Sie auf Erstellen und kopieren Sie das Token — es wird nur einmal angezeigt.

Fügen Sie das Token als token-Wert unter bitbucket in Ihrer Konfigurationsdatei ein.


Entwicklung

Der Server ist ein einzelnes Go-Modul im Repo-Root (kein src/-Baum).

# Build the binary
go build -o atlassian-mcp .

# Run it
./atlassian-mcp --config /path/to/config.json

# Vet + unit tests
go vet ./...
go test ./...

# Test the tool list
echo '{"jsonrpc":"2.0","id":1,"method":"tools/list","params":{}}' | ./atlassian-mcp

# Quick release smoke check (build + tools/list validation)
npm run smoke

Available Tools

10 tools
get_dev_contextA

Master entry point for "what am I working on / what's the status", and before any review or coding task. Returns: git branch + upstream state, Jira ticket overview (status, transitions, sprint, comments), open PR with reviewer approvals, and actionable next-step hints (create PR, merge, address blockers).

ParametersJSON Schema
NameRequiredDescriptionDefault
repoPathNoLocal path to the git repo (defaults to cwd)

TDQS

A4.2/5.0
Behavior4/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

No annotations are provided, so the description carries full burden. It discloses all returned data elements (git branch, Jira ticket overview, open PR, next-step hints), which is good transparency. It does not describe side effects or auth needs, but the tool appears read-only.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness4/5

Is the description appropriately sized, front-loaded, and free of redundancy?

Description is two sentences: first defines purpose, second lists returns. It is concise with no wasted words, though some structure (e.g., bullet points) could improve readability.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness5/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Given no output schema, the description adequately explains the return values. The tool has one optional parameter and simple behavior; the description covers what the agent needs to know for correct invocation.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters3/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema coverage is 100%, so baseline is 3. The parameter 'repoPath' is described in the schema as 'Local path to the git repo (defaults to cwd)'. The description does not add further meaning beyond what the schema provides.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

Description clearly states it is the master entry point for status and before tasks. It lists specific returned items (git branch, Jira ticket, PR, next steps) and distinguishes from sibling tools like git_get_context and jira_get by being a higher-level aggregator.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

Explicitly says to use before any review or coding task, and for getting status. This provides clear context. While it doesn't specify when not to use, the sibling tools imply alternatives for more granular needs.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

git_get_contextA

Start here for any coding or review task: current branch, upstream ahead/behind, remote URL, recent commits, working tree status, diff stat summary, and Jira keys detected in the branch name. Pass includeDiff=true to also include the full uncommitted diff.

ParametersJSON Schema
NameRequiredDescriptionDefault
repoPathNoPath to the git repository (defaults to cwd)
commitLimitNoNumber of recent commits to show (default 10)
includeDiffNoInclude full uncommitted diff (default false)

TDQS

A4/5.0
Behavior3/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

No annotations provided. Description lists outputs (branch, commits, status, diff, Jira keys) and the effect of includeDiff. However, does not state that the tool is read-only or specify any prerequisites (e.g., must be in a git repo).

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness5/5

Is the description appropriately sized, front-loaded, and free of redundancy?

Two sentences with no wasted words. First sentence front-loads all context items; second sentence adds optional flag. Efficient and clear.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Covers all key aspects: what is returned, optional diff, and Jira integration. Lacks details on output format and error conditions, but sufficient for a gathering tool without output schema.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters3/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema coverage is 100%. Description adds context for includeDiff ('full uncommitted diff') but does not significantly enhance understanding beyond schema descriptions. Falls to baseline due to high schema coverage.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

Description clearly states it provides a comprehensive set of git and Jira context items for coding/review tasks, distinguishing it from sibling tools like git_get_diff and get_dev_context.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

Explicitly says 'Start here', indicating primary usage for coding/review tasks. Mentions optional includeDiff parameter. Does not explicitly exclude alternatives but context signals and sibling names imply differentiation.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

git_get_diffA

Get a diff between two git refs or commits. Use when you need to compare a feature branch to main, inspect a specific commit range, or review changes between two refs. For large diffs, increase maxChars or use charOffset to page through them.

ParametersJSON Schema
NameRequiredDescriptionDefault
repoPathNoPath to the git repository (defaults to cwd)
fromRefNoBase ref or commit
toRefNoTarget ref or commit (requires fromRef)
maxCharsNoMax characters to return (default 8000). Increase for large diffs.
charOffsetNoSkip this many characters from the start (for paging large diffs)

TDQS

A3.9/5.0
Behavior3/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

No annotations are provided, so the description must carry behavioral transparency. It mentions paging via charOffset and maxChars, but does not describe the output format (e.g., unified diff), handling of errors, or limits. Adequate but not comprehensive.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness4/5

Is the description appropriately sized, front-loaded, and free of redundancy?

Two sentences: first states purpose, second provides usage scenarios. Very concise with no wasted words. Could be slightly more structured, but efficient.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

With 5 well-documented parameters, no output schema, and no annotations, the description explains the core functionality and provides paging guidance. It misses details about diff output format but is fairly complete for a simple tool.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters3/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema coverage is 100% with descriptions for each parameter. The description reinforces usage of maxChars and charOffset for large diffs, adding marginal value beyond the schema. Baseline 3 is appropriate.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

The description clearly states 'Get a diff between two git refs or commits' and lists specific use cases like comparing a feature branch to main. It distinguishes itself from siblings like git_get_context and JIRA tools by focusing on git diffs.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

The description explicitly says when to use this tool ('when you need to compare a feature branch to main...') and provides guidance for large diffs. It does not include when-not-to-use or alternative tools, but the sibling names provide context.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

jira_commentA

Add, update, or delete a comment on a Jira issue. action defaults to "add". Can only edit/delete your own comments. Use Jira wiki markup (Atlassian renderer syntax), not GitHub/CommonMark markdown.

ParametersJSON Schema
NameRequiredDescriptionDefault
actionNoOperation (default: add)
issueKeyYesJira issue key, e.g. FOO-123
commentIdNoComment ID (required for update/delete)
bodyNoComment text. Use Jira wiki markup (Atlassian renderer syntax), not GitHub/CommonMark markdown. Required for add/update.

TDQS

A4.4/5.0
Behavior4/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

With no annotations, the description fully covers behavioral aspects: it restricts editing/deleting to own comments and specifies markup format. It lacks some details like rate limits or response format, but for a CRUD tool, it is reasonably transparent.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness5/5

Is the description appropriately sized, front-loaded, and free of redundancy?

The description is three sentences, each carrying essential information. No filler or redundancy. It is front-loaded with the core purpose and proceeds to key constraints. Exceptionally concise and well-structured.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Given the tool's complexity (4 parameters, no output schema, no annotations), the description covers the main functional aspects: operations, own-comment limitation, and markup. It could include an example or mention return values, but it is adequately complete for an agent to invoke correctly.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters4/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

The input schema already has 100% coverage with descriptions for all parameters. The description adds value by stating the default action and the own-comment restriction, which are not in the schema. It thus enhances understanding beyond the schema.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

The description explicitly states the action: Add, update, or delete a comment on a Jira issue. It clearly identifies the resource (Jira issue comment) and the specific operations, distinguishing it from sibling tools like jira_get or jira_mutate.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

The description specifies that action defaults to 'add', can only edit/delete own comments, and must use Jira wiki markup. This provides clear context for using the tool, though it does not explicitly mention when not to use it or name specific alternatives among siblings.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

jira_getA

Full details for one Jira issue: summary, description, status, assignee, sprint, available transitions, recent comments, and a list of attachments (filename, size, mime type, attachment ID). To view an attachment's contents (e.g. an image), call jira_get_attachment with the attachment ID surfaced here.

ParametersJSON Schema
NameRequiredDescriptionDefault
issueKeyYesJira issue key, e.g. FOO-123
includeCommentsNoInclude comments (default true)
commentsMaxResultsNoMax comments (default 10)
commentsStartAtNoComment pagination offset (default 0)
includeTransitionsNoInclude available transitions (default true)
includeSprintNoInclude sprint data (default true)
fullDescriptionNoReturn the full description even when long (default false — descriptions over ~2000 chars are truncated to save context)

TDQS

A4.2/5.0
Behavior3/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

No annotations are provided, so the description carries the full behavioral disclosure burden. It explains the effect of the fullDescription parameter (truncation) and mentions 'recent comments', but does not specify recency limits, pagination for attachments, authentication needs, or error behavior. Adequate but not thorough.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness5/5

Is the description appropriately sized, front-loaded, and free of redundancy?

Two sentences, front-loaded with the main purpose, no redundant words. Every sentence provides essential information about what the tool returns and how to use related tools. Highly efficient.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Given no output schema, the description lists the key return fields (summary, description, status, etc.), which is sufficient for an agent to understand the output. It also references a sibling tool for next steps. Some details (e.g., comment structure) are omitted, but overall it is complete enough for a read operation with 7 parameters.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters4/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema coverage is 100%, so baseline is 3. The description adds value by explaining the fullDescription truncation behavior and explicitly linking jira_get_attachment to the attachment ID surfaced by this tool, which is not in the schema. This enriches parameter understanding.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

The description clearly states the tool retrieves full details for one Jira issue, listing specific fields (summary, description, status, assignee, sprint, transitions, comments, attachments). It distinguishes from sibling tools by mentioning jira_get_attachment for attachment contents, and implicitly from jira_search (multiple issues) and jira_mutate (updates).

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

The description provides explicit when-to-use and an alternative: 'To view an attachment's contents... call jira_get_attachment'. It does not cover when to use this vs. jira_search for listing issues, but the alternative guidance is clear and valuable.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

jira_get_attachmentA

Fetch a Jira attachment by ID and return its contents inline. Images are auto-resized + re-encoded; text/JSON/XML return as text; videos and animated images (GIF/APNG/animated WebP) are decoded with ffmpeg into sampled frames (re-call with start/end/frames or mode=scenes to refine); audio returns as an audio block; PDFs return extracted text. Oversized/non-renderable files are saved to a temp file and the path returned. Use jira_get first to discover attachment IDs.

ParametersJSON Schema
NameRequiredDescriptionDefault
attachmentIdYesNumeric attachment ID from jira_get output
saveToNoOptional absolute path to save the original (un-resized) file to disk instead of returning inline
maxDimensionNoMax long-edge size in pixels for inline images (default 1568 for images, 768 for video frames).
qualityNoJPEG quality for re-encoded inline images (1-100, default 85 for images, 65 for video frames). Ignored for images with alpha (encoded as PNG).
framesNoVideo/animated-image only: number of frames to sample (default 6, range 1-60). Higher = more detail + more context.
startNoVideo/animated-image only: start of sample window in seconds (default 0). Use with end/frames to zoom into a moment of interest after a coarse first pass.
endNoVideo/animated-image only: end of sample window in seconds (default full duration). Must be greater than start.
modeNoVideo/animated-image only: "uniform" samples N frames evenly (default); "scenes" uses ffmpeg scene-change detection, better for screencasts/narrative content.
sceneThresholdNoVideo/animated-image only: scene-change sensitivity in 0-1 (default 0.3). Only used when mode=scenes. Lower = more frames, higher = fewer.

TDQS

A4.5/5.0
Behavior5/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

Without annotations, the description fully discloses behaviors: auto-resizing, re-encoding, video decoding with ffmpeg, text/PDF/audio handling, and fallback to temp file for oversized content. No contradictions.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness4/5

Is the description appropriately sized, front-loaded, and free of redundancy?

The description is concise and front-loaded with the main action, but could benefit from clearer structuring. All sentences contribute useful information without redundancy.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Covers all parameter details, return types, and media-specific behaviors. Missing error handling cases (e.g., invalid attachment ID), but overall complete given the complexity.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters4/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

With 100% schema coverage, baseline is 3. Description adds value by specifying parameter usage contexts (e.g., 'Video/animated-image only') and providing defaults, ranges, and refinements like 'start/end/frames or mode=scenes'.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

The description clearly states 'Fetch a Jira attachment by ID and return its contents inline', specifying the verb, resource, and outcome. It distinguishes from sibling tools by mentioning use with jira_get to discover IDs.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

The description advises to use jira_get first and explains handling of various media types, but lacks explicit when-not-to-use scenarios or detailed alternatives for optional parameters like saveTo vs inline.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

jira_mutateA

Create/update a ticket, transition status, assign, comment, link issues, or log work — bundles create/update/transition/comment/link/worklog in one call. Use Jira wiki markup (Atlassian renderer syntax), not GitHub/CommonMark markdown.

ParametersJSON Schema
NameRequiredDescriptionDefault
issueKeyNoExisting issue key to mutate (optional if create is provided)
createNo
updateNo
sprintIdNoSprint ID to add the issue into (optional)
removeFromSprintNoMove the issue to the backlog (remove from any sprint)
transitionIdNoTransition ID (optional if transitionName provided)
transitionNameNoTransition name, e.g. "In Progress" (optional if transitionId provided)
commentNoComment to add after other mutations (optional). Use Jira wiki markup (Atlassian renderer syntax), not GitHub/CommonMark markdown.
linkNoCreate an issue link, e.g. "FOO-123 blocks BAR-456"
worklogNoLog time spent on this issue

TDQS

A4.2/5.0
Behavior3/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

No annotations are provided, so the description carries full burden. It discloses the markup syntax requirement (Jira wiki vs. markdown), which is a behavioral trait. However, it does not mention error handling, ordering of multiple operations, authentication needs, or whether operations are atomic. The definition is incomplete for a complex mutation tool.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness5/5

Is the description appropriately sized, front-loaded, and free of redundancy?

The description is two sentences: the first lists all operations concisely, the second provides the critical markup warning. Every sentence adds value without redundancy. It is front-loaded and easy to scan.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Given the tool complexity (10 parameters, nested objects, no output schema), the description provides a high-level overview and the crucial markup constraint. It does not explain return values or operation ordering, but the rich schema compensates partially. Lacks some behavioral context but is fairly complete for an initial understanding.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters4/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema description coverage is high (80%), so baseline is 3. The description adds value by specifying the markup format requirement for description and comment fields, which is not in the schema. It also clarifies the bundling aspect. This goes beyond schema descriptions.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

The description clearly states the tool bundles multiple mutation operations (create, update, transition, comment, link, worklog) in one call. It uses specific verbs and identifies the resource (Jira ticket). This distinguishes it from siblings like jira_comment, which is only for comments, and jira_get (read-only).

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

The description implies usage when any combination of the listed mutations is needed. It emphasizes bundling (one call) which guides efficient usage. However, it does not explicitly contrast with siblings like jira_comment for standalone commenting, nor mention when not to use (e.g., read-only scenarios).

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

jira_versionA

Manage Jira fix versions (releases): create, update, release, archive, delete. action defaults to "create". For create pass projectKey + name. For update/release/archive/delete pass id (look it up via jira_search resource=versions). "release" sets released=true and defaults releaseDate to today. Once a version exists you can set it on tickets via jira_mutate update.fixVersion.

ParametersJSON Schema
NameRequiredDescriptionDefault
actionNoOperation (default: create)
projectKeyNoJira project code (required for create when not auto-resolvable)
projectNoAlias for projectKey
idNoVersion id (required for update/release/archive/delete; look up via jira_search resource=versions)
nameNoVersion name, e.g. "9.1.0" (required for create; optional rename for update)
descriptionNoVersion description (optional)
startDateNoStart date in YYYY-MM-DD (optional)
releaseDateNoRelease date in YYYY-MM-DD (optional; defaults to today on action=release)
releasedNoReleased flag (optional; action=release forces true)
archivedNoArchived flag (optional; action=archive forces true)

TDQS

A4.6/5.0
Behavior3/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

No annotations provided, so description carries full burden. It discloses action defaults, that 'release' sets released=true and defaults releaseDate to today. However, it does not mention side effects of delete/archive or any destructive behavior beyond the action names.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness5/5

Is the description appropriately sized, front-loaded, and free of redundancy?

Three sentences, front-loaded with purpose and actions, no wasted words. Every sentence adds value.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness5/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

Given 5 actions, 10 params, and no output schema, the description covers all actions, required params per action, links to sibling tools for lookup and usage, and provides a post-creation hint. Very complete.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters5/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema coverage is 100%, but description adds significant meaning: clarifies which parameters are required per action (projectKey+name for create, id for others), and explains defaults/forced values (released=true on release, archived=true on archive, releaseDate defaults to today). This goes well beyond the schema.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

Description clearly states it manages Jira fix versions with five specific actions, and references sibling tools jira_search and jira_mutate for lookup and ticket assignment, distinguishing itself.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines5/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

Explicitly tells when to use each action: create requires projectKey+name; other actions require id from jira_search. Also notes that after creation, jira_mutate can set the version on tickets. Provides clear context and alternatives.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

start_workA

Start working on a Jira ticket end-to-end: resolves the ticket (by key or free-text search with a picker when multiple match), creates a local branch with an auto-generated name, fetches the project README from Bitbucket so you have commit/PR conventions in context, and prints a next-steps summary. If issueKey is omitted, provide query for free-text search.

ParametersJSON Schema
NameRequiredDescriptionDefault
issueKeyNoJira issue key, e.g. FOO-123 (provide this OR query)
queryNoFree-text search when issueKey is unknown — shows a picker if multiple tickets match
repoPathNoLocal repo path (defaults to cwd)
baseBranchNoBranch to base off (default: master)
branchNameNoOverride the generated branch name
transitionNameNoJira transition to apply, e.g. "In Progress" (optional)
pushNoPush branch to remote after creation (default false)

TDQS

A4.2/5.0
Behavior4/5

Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?

The description discloses key behaviors: ticket resolution, branch creation, README fetch, summary printing, and optional push/transition. Without annotations, it carries the burden, and it covers most major actions, though omits details like error handling or default behaviors.

Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.

Conciseness5/5

Is the description appropriately sized, front-loaded, and free of redundancy?

The description is concise: two sentences that front-load the core action and key conditional guidance. No wasted words.

Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.

Completeness4/5

Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?

The description covers the main workflow steps and optional parameters, but could be more detailed about error cases or the exact Jira transitions applied. Given the lack of output schema and annotations, it provides a reasonable overview for an agent.

Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.

Parameters3/5

Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?

Schema coverage is 100%, so the baseline is 3. The description adds minor value by explaining the relationship between issueKey and query, but otherwise does not significantly enhance parameter semantics beyond the schema.

Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.

Purpose5/5

Does the description clearly state what the tool does and how it differs from similar tools?

The description clearly states the tool's purpose: to start working on a Jira ticket end-to-end, including resolving the ticket, creating a local branch, fetching a README, and printing a summary. It distinguishes from sibling tools by combining multiple actions.

Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.

Usage Guidelines4/5

Does the description explain when to use this tool, when not to, or what alternatives exist?

The description provides clear guidance on when to use the issueKey vs query parameters, but does not explicitly exclude use cases for sibling tools like jira_mutate or git_get_context. However, the tool's workflow-oriented purpose is clear.

Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.

Tool Schema Changelog

Recent tool additions, removals, and schema changes observed during successful MCP inspections. Dates show when Glama detected each change.

  1. 1 tool updatev0.4.2
    • Changedjira_get1 field changed
      • addedInput schema / properties / fullDescription
        Added value: +{
        +  "default": false,
        +  "description": "Return the full description even when long (default false — descriptions over ~2000 chars are truncated to save context)",
        +  "type": "boolean"
        +}
  2. 1 tool updatev0.4.1
    • Changedjira_get_attachment7 fields changed
      • addedInput schema / properties / end
        Added value: +{
        +  "description": "Video/animated-image only: end of sample window in seconds (default full duration). Must be greater than start.",
        +  "type": "number"
        +}
      • addedInput schema / properties / frames
        Added value: +{
        +  "description": "Video/animated-image only: number of frames to sample (default 6, range 1-60). Higher = more detail + more context.",
        +  "type": "number"
        +}
      • changedInput schema / properties / maxDimension / description
        Previous value: -"Max long-edge size in pixels for inline images (default 1568). Larger images are downscaled with sharp."New value: +"Max long-edge size in pixels for inline images (default 1568 for images, 768 for video frames)."
      • addedInput schema / properties / mode
        Added value: +{
        +  "description": "Video/animated-image only: \"uniform\" samples N frames evenly (default); \"scenes\" uses ffmpeg scene-change detection, better for screencasts/narrative content.",
        +  "enum": [
        +    "uniform",
        +    "scenes"
        +  ],
        +  "type": "string"
        +}
      • changedInput schema / properties / quality / description
        Previous value: -"JPEG quality for re-encoded inline images (1-100, default 85). Ignored for images with alpha (encoded as PNG)."New value: +"JPEG quality for re-encoded inline images (1-100, default 85 for images, 65 for video frames). Ignored for images with alpha (encoded as PNG)."
      • addedInput schema / properties / sceneThreshold
        Added value: +{
        +  "description": "Video/animated-image only: scene-change sensitivity in 0-1 (default 0.3). Only used when mode=scenes. Lower = more frames, higher = fewer.",
        +  "type": "number"
        +}
      • addedInput schema / properties / start
        Added value: +{
        +  "description": "Video/animated-image only: start of sample window in seconds (default 0). Use with end/frames to zoom into a moment of interest after a coarse first pass.",
        +  "type": "number"
        +}
  3. 10 tool updatesv0.3.10
    • First observedget_dev_context
    • First observedgit_get_context
    • First observedgit_get_diff
    • First observedjira_comment
    • First observedjira_get
    • First observedjira_get_attachment
    • First observedjira_mutate
    • First observedjira_search
    • First observedjira_version
    • First observedstart_work

TDQS

A4.2/5.0
Disambiguation5/5

Each tool has a clearly distinct purpose: git context, diffs, Jira CRUD, search, comments, attachments, version management, and a workflow starter. No overlap in functionality.

Naming Consistency4/5

Most tools use a verb_noun pattern with a prefix (git_, jira_), but get_dev_context and start_work break the pattern. jira_mutate is also slightly vague. Overall consistent.

Tool Count5/5

10 tools is well-scoped for a server integrating Git and Jira, providing comprehensive coverage without being overwhelming.

Completeness3/5

Covers Jira thoroughly but lacks tools for Git operations like creating PRs or pushing branches beyond start_work. Missing Jira issue deletion. Some gaps in workflow.

Maintenance

ActivityActive
ResponsivenessResponsive

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