
Geo Technical
- 432 installs
- 9.2k repo stars
- Updated August 4, 2026
- zubair-trabzada/geo-seo-claude
geo-technical is a version 1.0.0 Claude skill that audits website technical SEO across 8 health categories—including SSR, robots.txt, AI crawler access, and Core Web Vitals—for developers who need AI search engine visibi
About
geo-technical is a version 1.0.0 technical SEO audit skill from geo-seo-claude with GEO-specific checks for crawlability, indexability, security, performance, server-side rendering, and AI crawler access. It states that technically broken sites cannot be crawled, indexed, or cited by any platform, with SSR called out as critical for AI search citation. Allowed tools include Read, Grep, Glob, Bash, WebFetch, and Write. Developers reach for geo-technical when auditing robots.txt, HTTP headers, rendering strategy, and performance foundations before optimizing content for traditional SEO and generative engine optimization.
- Audits 8 technical SEO categories including AI crawler access
- Checks robots.txt for AI bot permissions
- Evaluates server-side rendering for AI indexability
- Analyzes HTTP headers and raw HTML
- Part of a comprehensive GEO audit toolkit with 8.2K GitHub stars
Geo Technical by the numbers
- 432 all-time installs (skills.sh)
- Ranked #798 of 1,879 Marketing & SEO skills by installs in the Skillselion catalog
- Data as of Aug 5, 2026 (Skillselion catalog sync)
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| Installs | 432 |
|---|---|
| repo stars | ★ 9.2k |
| Last updated | August 4, 2026 |
| Repository | zubair-trabzada/geo-seo-claude ↗ |
How do you audit technical SEO for AI search crawlers?
Audits a website technical SEO foundation for AI crawler access, robots.txt config, server-side rendering, and HTTP headers to ensure visibility in AI-powered search engines.
Who is it for?
Developers auditing site foundations for AI search citation who need SSR, robots.txt, and crawler-access checks beyond content SEO.
Skip if: Teams seeking keyword research, content writing, or link-building without underlying technical crawl and render fixes.
When should I use this skill?
A developer asks to audit technical SEO, GEO crawlability, SSR rendering, robots.txt, or AI crawler access for a website.
What you get
Technical SEO audit report covering 8 health categories with SSR, crawlability, indexability, security, and AI crawler access findings.
- Technical SEO audit report
- SSR and crawler-access findings
- Remediation recommendations for indexability
By the numbers
- Skill version 1.0.0
- Audits 8 categories of technical site health
Files
GEO Technical SEO Audit
Purpose
Technical SEO forms the foundation of both traditional search visibility and AI search citation. A technically broken site cannot be crawled, indexed, or cited by any platform. This skill audits 8 categories of technical health with specific attention to GEO requirements — most critically, server-side rendering (AI crawlers do not execute JavaScript) and AI crawler access (many sites inadvertently block AI crawlers in robots.txt).
How to Use This Skill
1. Collect the target URL (homepage + 2-3 key inner pages) 2. Fetch each page using curl/WebFetch to get raw HTML and HTTP headers 3. Run through each of the 8 audit categories below 4. Score each category using the rubric 5. Generate GEO-TECHNICAL-AUDIT.md with results
---
Category 1: Crawlability (15 points)
1.1 robots.txt Validity
- Fetch
https://[domain]/robots.txt - Check for syntactic validity: proper
User-agent,Allow,Disallowdirectives - Check for common errors: missing User-agent, wildcards blocking important paths, Disallow: / blocking entire site
- Verify XML sitemap is referenced:
Sitemap: https://[domain]/sitemap.xml
1.2 AI Crawler Access (CRITICAL for GEO)
Check robots.txt for directives targeting these AI crawlers:
| Crawler | User-Agent | Platform |
|---|---|---|
| GPTBot | GPTBot | ChatGPT / OpenAI |
| Google-Extended | Google-Extended | Gemini / Google AI training |
| Googlebot | Googlebot | Google Search + AI Overviews |
| Bingbot | bingbot | Bing Copilot + ChatGPT (via Bing) |
| PerplexityBot | PerplexityBot | Perplexity AI |
| ClaudeBot | ClaudeBot | Anthropic Claude |
| Amazonbot | Amazonbot | Alexa / Amazon AI |
| CCBot | CCBot | Common Crawl (used by many AI models) |
| FacebookBot | FacebookExternalHit | Meta AI |
| Bytespider | Bytespider | TikTok / ByteDance AI |
| Applebot-Extended | Applebot-Extended | Apple Intelligence |
Scoring for AI crawler access:
- All major AI crawlers allowed: 5 points
- Some blocked but Googlebot + Bingbot allowed: 3 points
- GPTBot or PerplexityBot blocked: 1 point (significant GEO impact)
- Googlebot blocked: 0 points (fatal)
Important nuance: Blocking Google-Extended does NOT block Googlebot. Google-Extended only controls AI training data usage, not search indexing. However, blocking Google-Extended may reduce presence in AI Overviews. Recommend allowing Google-Extended unless there is a specific data licensing concern.
1.3 XML Sitemaps
- Fetch sitemap (check robots.txt for location, or try
/sitemap.xml,/sitemap_index.xml) - Validate XML syntax
- Check for
<lastmod>dates (should be present and accurate) - Count URLs — compare to expected number of indexable pages
- Check for sitemap index if large site (50,000+ URLs per sitemap max)
- Verify all sitemap URLs return 200 status codes (sample check)
1.4 Crawl Depth
- Homepage = depth 0. Check that all important pages are reachable within 3 clicks (depth 3)
- Pages at depth 4+ receive significantly less crawl budget and are less likely to be cited by AI
- Check internal linking: are key content pages linked from the homepage or main navigation?
1.5 Noindex Management
- Check for
<meta name="robots" content="noindex">on pages that SHOULD be indexed - Check for
X-Robots-Tag: noindexHTTP headers - Common mistakes: noindex on paginated pages, category pages, or key landing pages
Category Scoring:
| Check | Points |
|---|---|
| robots.txt valid and complete | 3 |
| AI crawlers allowed | 5 |
| XML sitemap present and valid | 3 |
| Crawl depth within 3 clicks | 2 |
| No erroneous noindex directives | 2 |
---
Category 2: Indexability (12 points)
2.1 Canonical Tags
- Every indexable page must have a
<link rel="canonical" href="...">tag - Canonical must point to itself (self-referencing) for the authoritative version
- Check for conflicting canonicals (canonical in HTML vs. HTTP header)
- Check for canonical chains (A canonicals to B, B canonicals to C — should be A to C)
2.2 Duplicate Content
- Check for www vs. non-www (both should resolve, one should redirect)
- Check for HTTP vs. HTTPS (HTTP should redirect to HTTPS)
- Check for trailing slash consistency (pick one pattern and redirect the other)
- Check for parameter-based duplicates (
?sort=pricecreating duplicate pages)
2.3 Pagination
- If paginated content exists, check for
rel="next"/rel="prev"(note: Google ignores these as of 2019, but Bing still uses them) - Preferred: use
rel="canonical"on paginated pages pointing to a view-all page or the first page - Ensure paginated pages are not noindexed if they contain unique content
2.4 Hreflang (international sites)
- Check for
<link rel="alternate" hreflang="xx">tags - Validate: reciprocal hreflang (if page A points to page B, B must point back to A)
- Validate: x-default fallback exists
- Check for language/region code validity (ISO 639-1 / ISO 3166-1)
2.5 Index Bloat
- Estimate number of indexed pages (check sitemap count, use
site:domain.comestimate) - Compare indexed pages to actual valuable content pages
- Flag if indexed pages significantly exceed content pages (index bloat from thin/duplicate/parameter pages)
Category Scoring:
| Check | Points |
|---|---|
| Canonical tags correct on all pages | 3 |
| No duplicate content issues | 3 |
| Pagination handled correctly | 2 |
| Hreflang correct (if applicable) | 2 |
| No index bloat | 2 |
---
Category 3: Security (10 points)
3.1 HTTPS Enforcement
- Site must load over HTTPS
- HTTP must redirect to HTTPS (301 redirect)
- No mixed content warnings (HTTP resources on HTTPS pages)
- SSL/TLS certificate must be valid and not expired
3.2 Security Headers
Check HTTP response headers for:
| Header | Required Value | Purpose |
|---|---|---|
Strict-Transport-Security | max-age=31536000; includeSubDomains | Forces HTTPS |
Content-Security-Policy | Appropriate policy | Prevents XSS |
X-Content-Type-Options | nosniff | Prevents MIME sniffing |
X-Frame-Options | DENY or SAMEORIGIN | Prevents clickjacking |
Referrer-Policy | strict-origin-when-cross-origin or stricter | Controls referrer data |
Permissions-Policy | Appropriate restrictions | Controls browser features |
Category Scoring:
| Check | Points |
|---|---|
| HTTPS enforced with valid cert | 4 |
| HSTS header present | 2 |
| X-Content-Type-Options | 1 |
| X-Frame-Options | 1 |
| Referrer-Policy | 1 |
| Content-Security-Policy | 1 |
---
Category 4: URL Structure (8 points)
4.1 Clean URLs
- URLs should be human-readable:
/blog/seo-guidenot/blog?id=12345 - No session IDs in URLs
- Lowercase only (no mixed case)
- Hyphens for word separation (not underscores)
- No special characters or encoded spaces
4.2 Logical Hierarchy
- URL path should reflect site architecture:
/category/subcategory/page - Flat where appropriate — avoid unnecessarily deep nesting
- Consistent pattern across the site
4.3 Redirect Chains
- Check for redirect chains (A redirects to B redirects to C)
- Maximum 1 hop recommended (A redirects to C directly)
- Check for redirect loops
- All redirects should be 301 (permanent), not 302 (temporary), unless intentionally temporary
4.4 Parameter Handling
- URL parameters should not create duplicate indexable pages
- Use canonical tags or
robots.txtDisallow for parameter variations - Configure parameter handling in Google Search Console and Bing Webmaster Tools
Category Scoring:
| Check | Points |
|---|---|
| Clean, readable URLs | 2 |
| Logical hierarchy | 2 |
| No redirect chains (max 1 hop) | 2 |
| Parameter handling configured | 2 |
---
Category 5: Mobile Optimization (10 points)
Critical Context
As of July 2024, Google crawls ALL sites exclusively with mobile Googlebot. There is no desktop crawling. If your site does not work on mobile, it does not work for Google. Period.
5.1 Responsive Design
- Check for
<meta name="viewport" content="width=device-width, initial-scale=1"> - Content must not require horizontal scrolling on mobile
- No fixed-width layouts wider than viewport
5.2 Tap Targets
- Interactive elements (buttons, links) must be at least 48x48 CSS pixels
- Minimum 8px spacing between tap targets
- Check that navigation is usable on mobile
5.3 Font Sizes
- Base font size should be at least 16px
- No text requiring zoom to read
- Sufficient contrast ratio (WCAG AA: 4.5:1 for normal text, 3:1 for large text)
5.4 Mobile Content Parity
- All content visible on desktop must also be visible on mobile
- No hidden content behind "read more" toggles that Googlebot cannot expand (though Google has improved at expanding these as of 2025)
- Images and media must load on mobile
Category Scoring:
| Check | Points |
|---|---|
| Viewport meta tag correct | 3 |
| Responsive layout (no horizontal scroll) | 3 |
| Tap targets appropriately sized | 2 |
| Font sizes legible | 2 |
---
Category 6: Core Web Vitals (15 points)
2026 Metrics and Thresholds
Core Web Vitals use the 75th percentile of real user data (field data) as the benchmark. Lab data is useful for debugging but field data determines the ranking signal.
| Metric | Good | Needs Improvement | Poor | Notes |
|---|---|---|---|---|
| LCP (Largest Contentful Paint) | < 2.5s | 2.5s - 4.0s | > 4.0s | Measures loading — time until largest visible element renders |
| INP (Interaction to Next Paint) | < 200ms | 200ms - 500ms | > 500ms | Replaced FID in March 2024. Measures ALL interactions, not just first |
| CLS (Cumulative Layout Shift) | < 0.1 | 0.1 - 0.25 | > 0.25 | Measures visual stability — unexpected layout movements |
How to Assess Without CrUX Data
When real user data is unavailable, estimate from page characteristics:
- LCP: Check largest above-fold element. Is it an image (check size/format)? Is it text (check web font loading)? Server response time (TTFB)?
- INP: Check for heavy JavaScript on page. Long tasks (>50ms) block interactivity. Check for third-party scripts.
- CLS: Check for images without explicit width/height. Check for dynamically inserted content above the fold. Check for web fonts causing layout shift (FOUT/FOIT).
Common LCP Fixes
1. Optimize hero images: WebP/AVIF format, correct sizing, preload with <link rel="preload"> 2. Reduce server response time (TTFB < 800ms) 3. Eliminate render-blocking CSS/JS 4. Preconnect to critical third-party origins
Common INP Fixes
1. Break up long tasks (>50ms) into smaller chunks using requestIdleCallback or scheduler.yield() 2. Reduce third-party JavaScript 3. Use content-visibility: auto for off-screen content 4. Debounce/throttle event handlers
Common CLS Fixes
1. Always include width and height attributes on images and videos 2. Reserve space for ads and embeds with CSS aspect-ratio or explicit dimensions 3. Use font-display: swap with size-adjusted fallback fonts 4. Avoid inserting content above existing content after page load
Category Scoring:
| Check | Points |
|---|---|
| LCP < 2.5s | 5 |
| INP < 200ms | 5 |
| CLS < 0.1 | 5 |
---
Category 7: Server-Side Rendering (15 points) — CRITICAL FOR GEO
Why SSR Is Mandatory for AI Visibility
AI crawlers (GPTBot, PerplexityBot, ClaudeBot, etc.) do NOT execute JavaScript. They fetch the raw HTML and parse it. If your content is rendered client-side by React, Vue, Angular, or any other JavaScript framework, AI crawlers see an empty page.
Even Googlebot, which does execute JavaScript, deprioritizes JS-rendered content due to the additional crawl budget required. Google processes JS rendering in a separate "rendering queue" that can delay indexing by days or weeks.
Detection Method
1. Fetch the page with curl (no JavaScript execution): curl -s [URL] 2. Compare the raw HTML to the rendered DOM (via browser) 3. If key content (headings, paragraphs, product info, article text) is MISSING from the curl output, the site relies on client-side rendering
What to Check
- Main content text: Is the article body / product description / page content in the raw HTML?
- Headings: Are H1, H2, H3 tags present in raw HTML?
- Navigation: Is the main navigation server-rendered?
- Structured data: Is JSON-LD in the raw HTML or injected by JavaScript?
- Meta tags: Are title, description, canonical, OG tags in the raw HTML?
- Internal links: Are navigation and content links in the raw HTML? (Critical for crawlability)
SSR Solutions to Recommend
| Framework | SSR Solution |
|---|---|
| React | Next.js (SSR/SSG), Remix, Gatsby (SSG) |
| Vue | Nuxt.js (SSR/SSG) |
| Angular | Angular Universal |
| Svelte | SvelteKit |
| Generic | Prerender.io (prerendering service), Rendertron |
Scoring Detail
- All key content server-rendered: 15 points
- Main content server-rendered but some elements JS-only: 10 points
- Critical content requires JS (product info, article text): 5 points
- Entire page is client-rendered (empty body in raw HTML): 0 points
Category Scoring:
| Check | Points |
|---|---|
| Main content in raw HTML | 8 |
| Meta tags + structured data in raw HTML | 4 |
| Internal links in raw HTML | 3 |
---
Category 8: Page Speed & Server Performance (15 points)
8.1 Time to First Byte (TTFB)
- Target: < 800ms (ideally < 200ms)
- Measure with curl:
curl -o /dev/null -s -w 'TTFB: %{time_starttransfer}s\n' [URL] - If TTFB > 800ms: check server location, caching, database queries, CDN usage
8.2 Resource Optimization
- Total page weight target: < 2MB (critical pages < 1MB)
- Check for uncompressed resources (gzip/brotli compression should be enabled)
- Check for unminified CSS and JavaScript
- Check for unused CSS/JS (can represent 50%+ of downloaded bytes on many sites)
8.3 Image Optimization
- Check image formats: WebP or AVIF preferred over JPEG/PNG
- Check for oversized images (images larger than display size)
- Check for lazy loading: images below fold should have
loading="lazy" - Check for explicit dimensions (width/height attributes prevent CLS)
- Above-fold images should NOT be lazy loaded (harms LCP)
8.4 Code Splitting and Lazy Loading
- JavaScript should be code-split so each page only loads what it needs
- Check for large JavaScript bundles (> 200KB compressed is a warning, > 500KB is critical)
- Third-party scripts should load asynchronously (
asyncordefer) - Check for render-blocking resources in
<head>
8.5 Caching
- Check
Cache-Controlheaders on static resources (images, CSS, JS) - Static assets should have long cache times:
max-age=31536000(1 year) with content-hashed filenames - HTML pages should have shorter cache or
no-cachewith validation (ETagorLast-Modified)
8.6 CDN Usage
- Check if static resources are served from a CDN (different domain or CDN-specific headers)
- For global audience, CDN is critical for consistent performance
- Check for CDN-specific headers:
CF-Ray(Cloudflare),X-Cache(AWS CloudFront),X-Served-By(Fastly)
Category Scoring:
| Check | Points |
|---|---|
| TTFB < 800ms | 3 |
| Page weight < 2MB | 2 |
| Images optimized (format, size, lazy) | 3 |
| JS bundles reasonable (< 200KB compressed) | 2 |
| Compression enabled (gzip/brotli) | 2 |
| Cache headers on static resources | 2 |
| CDN in use | 1 |
---
Category 9: Agent-Readiness Signals (non-scoring)
These checks surface emerging AI agent compatibility signals. None contribute to the numeric score — they produce a pass or a recommendation. The underlying standards are either IETF drafts or early-adoption features; penalizing absence would be unfair.
9.1 RFC 8288 Link Headers (Service Discovery)
RFC 8288 (Web Linking) defines the HTTP Link: response header. Servers can use it to advertise related resources — API catalog, service docs, MCP server card — in a machine-readable way, without HTML parsing.
How to check: Capture all Link: response headers from the standard homepage fetch (no extra request).
What to look for:
- Parse
<url>; rel="relation-type"pairs. - High-value rel types:
api-catalog(RFC 9609),describedby,service-doc,mcp-server-card.
When to surface a recommendation: Only for API-first sites (API docs linked in nav, /api/ or /developers/ paths, swagger/OpenAPI in sitemap). Omit this section entirely for standard business sites — absence is expected and not noteworthy.
| State | Treatment |
|---|---|
Link: headers present, known rel types | Informational — document what was found |
Link: headers present, unknown rel types | Informational — note and explain |
| Absent, API-first site | Recommendation — explain and suggest implementation |
| Absent, standard business site | Omit — do not surface |
9.2 Markdown Content Negotiation
Checks if the server responds to Accept: text/markdown with Content-Type: text/markdown. Cloudflare's "Markdown for Agents" feature enables this — AI agents receive clean Markdown instead of HTML, eliminating boilerplate stripping and improving content extraction accuracy.
How to check: Send a GET to the homepage with Accept: text/markdown. This is one additional HTTP request per audit.
Evaluation:
- If response
Content-Typeistext/markdown(ortext/markdown; charset=utf-8): pass — note as a leading-edge capability. - Otherwise: forward-looking recommendation, not a failure.
- If the request errors or returns non-200: skip and note the error. Do not penalize.
| State | Treatment |
|---|---|
text/markdown returned | Bonus — note as a leading-edge capability |
| Standard HTML returned | Forward-looking recommendation |
| Request errors / non-200 | Skip, note the error, do not penalize |
---
IndexNow Protocol
What It Is
IndexNow is an open protocol that allows websites to notify search engines instantly when content is created, updated, or deleted. Supported by Bing, Yandex, Seznam, and Naver. Google does NOT support IndexNow but monitors the protocol.
Why It Matters for GEO
ChatGPT uses Bing's index. Bing Copilot uses Bing's index. Faster Bing indexing means faster AI visibility on two major platforms.
Implementation Check
1. Check for IndexNow key file: https://[domain]/.well-known/indexnow-key.txt or similar 2. Check if CMS has IndexNow plugin (WordPress: IndexNow plugin; many modern CMS platforms support it natively) 3. If not implemented, recommend adding it with instructions
---
Overall Scoring
| Category | Max Points | Weight |
|---|---|---|
| Crawlability | 15 | Core foundation |
| Indexability | 12 | Core foundation |
| Security | 10 | Trust signal |
| URL Structure | 8 | Crawl efficiency |
| Mobile Optimization | 10 | Google requirement |
| Core Web Vitals | 15 | Ranking signal |
| Server-Side Rendering | 15 | GEO critical |
| Page Speed & Server | 15 | Performance |
| Total | 100 |
Non-scoring checks (Category 9) appear in the output under "Agent-Readiness Signals" and do not affect this total.
Score Interpretation
- 90-100: Excellent — technically sound for both traditional SEO and GEO
- 70-89: Good — minor issues to address but fundamentally solid
- 50-69: Needs Work — significant technical debt impacting visibility
- 30-49: Poor — major issues blocking crawling, indexing, or AI visibility
- 0-29: Critical — fundamental technical failures requiring immediate attention
---
Output Format
Generate GEO-TECHNICAL-AUDIT.md with:
# GEO Technical SEO Audit — [Domain]
Date: [Date]
## Technical Score: XX/100
## Score Breakdown
| Category | Score | Status |
|---|---|---|
| Crawlability | XX/15 | Pass/Warn/Fail |
| Indexability | XX/12 | Pass/Warn/Fail |
| Security | XX/10 | Pass/Warn/Fail |
| URL Structure | XX/8 | Pass/Warn/Fail |
| Mobile Optimization | XX/10 | Pass/Warn/Fail |
| Core Web Vitals | XX/15 | Pass/Warn/Fail |
| Server-Side Rendering | XX/15 | Pass/Warn/Fail |
| Page Speed & Server | XX/15 | Pass/Warn/Fail |
Status: Pass = 80%+ of category points, Warn = 50-79%, Fail = <50%
## AI Crawler Access
| Crawler | User-Agent | Status | Recommendation |
|---|---|---|---|
| GPTBot | GPTBot | Allowed/Blocked | [Action] |
| Googlebot | Googlebot | Allowed/Blocked | [Action] |
[Continue for all AI crawlers]
## Critical Issues (fix immediately)
[List with specific page URLs and what is wrong]
## Warnings (fix this month)
[List with details]
## Recommendations (optimize this quarter)
[List with details]
## Agent-Readiness Signals (non-scoring)
### RFC 8288 Link Headers (Service Discovery)
**Status:** Present / Absent / Not Applicable
<!-- If present: -->
| Relation Type | URL | Meaning |
|---|---|---|
| api-catalog | /.well-known/api-catalog | Machine-readable index of available APIs |
| mcp-server-card | /.well-known/mcp.json | MCP server capability declaration |
AI agents and API clients can discover your services without parsing HTML.
<!-- If absent, API-first site only: -->
**Informational Recommendation:** This site has API/developer-oriented content but no `Link:` headers advertising discoverable services.
Example: `Link: </.well-known/api-catalog>; rel="api-catalog"`
Relevant for: sites with public APIs, OpenAPI docs, or MCP server integrations.
Reference: RFC 8288, RFC 9609.
<!-- If absent, standard business site: omit this section entirely -->
### Markdown Content Negotiation
**Status:** Supported / Not Supported
**Test:** GET [url] with `Accept: text/markdown`
**Response Content-Type:** [value]
<!-- If supported: -->
This site serves clean Markdown to AI agents on request. AI crawlers that support content negotiation receive formatted text without HTML boilerplate.
<!-- If not supported: -->
**Forward-Looking Recommendation:** Cloudflare Workers/Pages sites can enable Markdown content negotiation with a one-line configuration change. When an AI agent sends `Accept: text/markdown`, the server responds with clean Markdown instead of HTML.
- Currently Cloudflare-specific
- Relevant for: sites already on Cloudflare infrastructure
- Other CDNs and frameworks expected to adopt this pattern as AI agent traffic grows
## Detailed Findings
[Per-category breakdown with evidence]Related skills
How it compares
Use geo-technical for foundation audits including AI crawler and SSR checks before content-focused GEO or keyword optimization skills.
FAQ
How many categories does geo-technical audit?
geo-technical audits 8 categories of technical health with GEO-specific attention to server-side rendering, crawlability, indexability, security, performance, and AI crawler access.
Why does geo-technical emphasize server-side rendering?
geo-technical states that technically broken sites cannot be crawled, indexed, or cited. Server-side rendering is flagged as most critical so AI search engines can access renderable content.