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memory-bridge

ar9av/obsidian-wiki

Browse and compare wiki knowledge by which AI tool originally produced it.

What is memory-bridge?

Memory Bridge lets you explore your Obsidian wiki filtered by source tool (Claude, Codex, Hermes, etc.) and surface knowledge gaps between them. Use it to understand which tools have contributed to which topics, find blind spots, and compare cross-tool memories.

  • Browse all wiki pages sourced from a specific AI tool
  • Search within a tool's knowledge for specific topics
  • Compare knowledge between two tools to find unique contributions and gaps
  • View a full matrix of which tools have touched each page
  • Identify blind spots—concepts one tool knows that others don't

How to install memory-bridge

npx skills add https://github.com/ar9av/obsidian-wiki --skill memory-bridge
Prerequisites
  • Obsidian vault with `.manifest.json` tracking source provenance
  • Pages with `sources:` frontmatter metadata (auto-populated by wiki-ingest or manual entry)
  • Config resolution via `.env`, `~/.obsidian-wiki/config`, or prompt setup to locate `OBSIDIAN_VAULT_PATH`
Claude Code
Cursor
Windsurf
Cline

How to use memory-bridge

  1. 1.Run `/memory-bridge <tool>` (e.g., `/memory-bridge claude`) to list all pages from that tool
  2. 2.Use `/memory-bridge <tool> "<topic>"` to search within one tool's knowledge
  3. 3.Run `/memory-bridge diff` to compare all tools and find unique/shared pages
  4. 4.Run `/memory-bridge diff <tool-a> <tool-b>` to compare two specific tools
  5. 5.Run `/memory-bridge map` to see a matrix of every page and which tools touched it

Use cases

Good for
  • Find what Codex knows about a topic that Claude has never encountered
  • Discover knowledge silos: pages only one tool has contributed to
  • Compare two AI tools' understanding of the same concept to spot asymmetries
  • Audit which tool produced which wiki pages to understand knowledge provenance
  • Map cross-tool collaboration on shared pages
Who it's for
  • Users managing knowledge from multiple AI tools in a single Obsidian vault
  • Researchers comparing AI tool capabilities and knowledge coverage
  • Teams tracking which tool contributed to which documentation
  • Anyone exploring blind spots between different AI assistants

memory-bridge FAQ

What tool names does Memory Bridge recognize?

claude, codex, hermes, openclaw, copilot, pi, manual (hand-written), and ingest (wiki-ingest documents). Source types in .manifest.json are mapped to these tool names automatically.

How does it know which tool created a page?

It reads `.manifest.json` and page `sources:` frontmatter to extract source_type and maps them to tool names. Pages can be attributed to multiple tools if they were updated by different sources.

What is diff mode and why is it useful?

Diff mode compares two tools and shows pages unique to each, shared pages, and notable gaps. It surfaces blind spots—concepts one tool knows that others don't—which is the skill's killer feature.

Will it read my entire wiki pages?

No. It reads only frontmatter (title, category, tags, updated) and section headers unless you explicitly ask for full content. This keeps queries fast.

What happens if my .manifest.json is empty?

The skill will tell you clearly and suggest running `/wiki-history-ingest` first to populate source metadata.

Full instructions (SKILL.md)

Source of truth, from ar9av/obsidian-wiki.


name: memory-bridge description: > Browse and compare wiki knowledge by which AI tool originally produced it. Use this skill when the user says "/memory-bridge", "browse codex memory", "what did codex know about X", "show me claude knowledge", "cross-tool memory", "what does hermes know that claude doesn't", "show me knowledge from <tool>", "compare my AI tool memories", or wants to explore knowledge gaps between tools. Works from any project. Diff mode ("what's different", "unique to codex", "gaps between tools") is the killer feature — it surfaces blind spots between tools that the user may not know exist.

Memory Bridge — Cross-Tool Knowledge Browser

You are helping the user browse and compare their Obsidian wiki knowledge filtered by which AI tool originally produced it. The wiki tracks source provenance in .manifest.json and page sources: frontmatter — this skill surfaces that metadata as a navigable view.

Before You Start

  1. Resolve config — follow the Config Resolution Protocol in llm-wiki/SKILL.md (walk up CWD for .env~/.obsidian-wiki/config → prompt setup). This gives OBSIDIAN_VAULT_PATH.
  2. Read $OBSIDIAN_VAULT_PATH/.manifest.json — this is the source-of-truth for what tool produced what.
  3. Read $OBSIDIAN_VAULT_PATH/index.md for page titles and one-line descriptions.

Commands

Parse the user's invocation to determine mode:

InvocationMode
/memory-bridge <tool>Browse — list all wiki pages sourced from <tool>
/memory-bridge <tool> "<topic>"Search — pages from <tool> that mention <topic>
/memory-bridge diffDiff — pages unique to each tool; overlap; blind spots
/memory-bridge diff <tool-a> <tool-b>Diff — compare two specific tools
/memory-bridge mapMap — full origin matrix: every page × every tool that touched it

Recognized tool names: claude, codex, hermes, openclaw, copilot, pi, manual (hand-written), ingest (wiki-ingest documents).

Step 1: Build the Source Map

Read .manifest.json. For each source entry, extract:

  • source_type — maps to tool name:
    • claude_conversation, claude_memory, claude_audit_log, claude_desktop_sessionclaude
    • codex_rollout, codex_index, codex_historycodex
    • hermes_memory, hermes_sessionhermes
    • openclaw_memory, openclaw_daily_note, openclaw_session, openclaw_dreamsopenclaw
    • copilot_session, copilot_checkpoint, copilot_transcript, copilot_memory_artifactcopilot
    • pi_sessionpi
    • documentingest
    • anything else → manual
  • pages_created and pages_updated — the wiki pages that came out of this source

Build a map:

tool_pages = {
  "claude": set(pages created/updated by claude sources),
  "codex":  set(pages created/updated by codex sources),
  ...
}

A page can appear in multiple tools' sets if multiple tools contributed to it.

Step 2: Execute the Mode

Browse Mode

Filter tool_pages[<tool>] and present as a grouped list:

## Knowledge from <tool> (<N> pages)

### By category
- concepts/ — N pages
- entities/ — N pages
- skills/   — N pages
...

### Pages
| Page | Category | Tags | Last updated |
|------|----------|------|--------------|
| [[page-name]] | concept | tag1, tag2 | 2026-04-10 |
...

Read frontmatter for the listed pages (grep for ^(title|category|tags|updated):) — do not read full page bodies unless the user asks.

Search Mode

Within the filtered page set, run:

grep -l "<topic>" <pages in tool set>

Then grep section headers (^##) around matches to give context without full reads. Present results as a ranked list with the matching excerpt.

Diff Mode

Compute:

  • only_in_a = tool_pages[a]tool_pages[b]
  • only_in_b = tool_pages[b]tool_pages[a]
  • shared = tool_pages[a]tool_pages[b]

If no specific tools are given, compare all tools pairwise (limit to pairs with >0 overlap or unique pages to keep output concise).

Present:

## Memory Bridge Diff — <tool-a> vs <tool-b>

### Only in <tool-a> (<N> pages)
These concepts exist in your wiki from <tool-a> sessions but <tool-b> has never touched them.
<list with one-line descriptions from index.md>

### Only in <tool-b> (<N> pages)
<list>

### Shared (<N> pages)
Both tools have contributed to these pages.
<list — only show if ≤15; otherwise just the count>

### Notable gaps
<highlight the most interesting asymmetries — e.g. "codex has 12 pages on build tooling that claude has never seen">

Map Mode

Build a matrix showing every page and which tools have touched it. Cap at 50 rows; sort by number of contributing tools descending (most cross-tool pages first — these are the richest nodes).

| Page | claude | codex | hermes | copilot | pi |
|------|--------|-------|--------|---------|----|
| [[react-patterns]] | ✓ | ✓ | — | ✓ | — |
| [[rust-ownership]] | — | ✓ | — | — | ✓ |

Step 3: Spawn impl-validator (if available)

After generating output, if the impl-validator skill is available in the current environment, spawn it as a subagent:

impl-validator check:
  goal: "Browse/diff wiki knowledge by source tool and surface cross-tool blind spots"
  artifacts: [the output you just generated]
  checks:
    - Did you correctly parse source_type from .manifest.json?
    - Are page counts plausible (not 0 unless vault is empty)?
    - Is the diff symmetric (a−b and b−a are disjoint)?
    - Did you avoid reading full page bodies when not needed?

Apply any issues it surfaces before presenting output to the user.

Step 4: Log

Append to $OBSIDIAN_VAULT_PATH/log.md:

- [TIMESTAMP] MEMORY-BRIDGE mode=<browse|search|diff|map> tool=<tool> pages_shown=N

Output Conventions

  • Always show page counts so the user can calibrate how much knowledge is in each tool's silo.
  • Use [[wikilinks]] for page references (or standard Markdown links if OBSIDIAN_LINK_FORMAT=markdown is set).
  • In diff mode, call out the most surprising asymmetry explicitly — that's the insight the user came for.
  • If .manifest.json is empty or missing, say so clearly and suggest running /wiki-history-ingest first.