ci-mockup-figure-667483 — independently scanned and version-tracked by SaferSkills.
SaferSkills independently audited ci-mockup-figure-667483 (Agent Skill) and scored it 100/100 (green). The audit ran 55 deterministic rules across Security, Supply Chain, Maintenance, Transparency, and Community; it found 0 high-severity and 0 lower-severity findings. The full rule-by-rule trace and per-finding evidence are below. Free, methodology-open.
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Every scanned point with the score it earned and what moved between them.
First recorded scan — no prior version to compare against.
The primary manifest — the file an agent reads to learn what this artifact does.
The goal is space-efficient, information-dense figures that communicate a system's design, a method's pipeline, or an architectural flowchart in minimal page area. Two paths depending on figure type:
timelines, and any figure where content is rectangular with no cross-node arrows. Build interactive HTML, capture screenshots, insert into LaTeX.
architecture overviews, dependency topologies, and any figure needing arrow routing between non-adjacent nodes. Use TikZ, skia-canvas, or Illustrator ExtendScript.
Every figure must pass the space test: does this figure communicate more per square inch than the text it displaces? If a full-width figure takes half a page but only says "A → B → C → D", it fails. A wrapfigure showing an interactive prototype with search results, graph nodes, and real data labels passes because it communicates system design, data model, and UX simultaneously.
This skill works for any document where figures need to communicate design or methodology credibly: research papers (method overview, architecture diagrams, pipeline flowcharts), proposals (NSF, NIH, DOE, etc.), technical reports, or demo writeups. It is especially effective when the figure needs to show multi-component structure, data flow, or step-by-step methodology and reviewers evaluate whether the design is credible and well-conceived.
HTML and TikZ each have a clear strength. The deciding factor is whether the figure needs arrow routing between non-adjacent nodes.
| HTML mockup | TikZ | |
|---|---|---|
| Visual polish | Modern CSS, shadows, gradients, rounded cards | Flat, academic-looking boxes |
| Iteration speed | Change CSS and refresh | Recompile LaTeX, debug positioning |
| Layout control | Flexbox/grid, responsive | Manual coordinate math |
| Color/font variety | Full CSS + web fonts | Limited, verbose color defs |
| Interactivity | View switching, capture mode | Static only |
| Arrow routing | Breaks on cross-row/non-adjacent nodes | Node anchoring solves this natively |
| Font matching | Separate from LaTeX | Perfect match with document body |
Prefer HTML for system mockups, dashboards, Gantt/timeline figures, and any figure where the content is inherently rectangular and flows naturally (no cross-node arrows needed).
Prefer TikZ for abstract framework diagrams, dependency topologies, and architecture overviews where arrows must route between non-adjacent nodes (L-shaped, curved, crossing rows). TikZ node anchoring (node.south, node.east) handles this natively. Also prefer TikZ for small inline diagrams that must live inside the LaTeX source or when exact font matching is critical.
Prefer skia-canvas (Node.js) when you need the arrow-routing control of TikZ but want faster iteration (edit .mjs, run, get PDF) and richer visual styling than TikZ provides.
HTML mockups are strictly better than AI-generated images for system and method figures. AI image generation is acceptable only for artistic/conceptual overview diagrams.
| HTML mockup | AI image generation | |
|---|---|---|
| Text legibility | Pixel-perfect, real fonts | Often garbled or blurry |
| Data accuracy | Every number/label controlled | Hallucinated values |
| Iteration speed | Change CSS and refresh | Re-prompt and hope |
| Consistency | Same palette across figures | Each generation varies |
| Print quality | Vector PDF via browser print | Always raster |
| Reviewer trust | Looks like a system you could build | Looks like a concept sketch |
HTML is also better than PPTX for Gantt/timeline figures:
| HTML | PowerPoint | |
|---|---|---|
| Alignment | CSS grid, pixel-perfect | Manual drag |
| Edits | Change one label, everything reflows | Reposition every box |
| Color consistency | CSS variables, one source of truth | Manual color matching |
| Capture | Browser Print → PDF (vector) | Export PDF (often wrong margins) |
(e.g., "representation layer + discovery service + workflow engine", or "data collection → feature extraction → model training → evaluation")
pipeline with real labels, not just boxes and arrows
use Python (matplotlib, seaborn, plotly) or LaTeX (pgfplots, tikz) instead. This skill is for system/method diagrams, not data visualization.
dependency topologies, architecture overviews with curved arrows between non-adjacent nodes, box-and-arrow conceptual figures. HTML/CSS fails at arrow routing: JS-positioned SVG arrows drift and misalign, CSS pseudo-element arrows work only for simple adjacent connections, and card grid layouts read as a product dashboard, not a research diagram. Use the Abstract Figure Toolchain section below.
When the figure is NOT a UI mockup, dashboard, or timeline (i.e., it needs arrows between nodes, dependency edges, or architectural flow), HTML/CSS is the wrong tool. The core problem: arrow routing is the bottleneck, not box/text rendering. Any tool with node-anchor-based arrow endpoints works; any tool relying on CSS layout for arrow positioning will struggle.
| Problem | Why |
|---|---|
| Curved arrows between components | Requires absolute-positioned SVG overlay that fights CSS layout |
| External screenshots as hero images | Multi-panel screenshots break object-fit: cover and explode containers |
| Card grid layout | Reads as a product dashboard, not a research diagram |
| Print fidelity | Browser print rescales unpredictably for non-page layouts |
| Emoji/icons for decoration | Instantly makes the figure look unprofessional |
| Context | Tool | Why |
|---|---|---|
| LaTeX paper, arrow-heavy | TikZ | Node anchoring (node.south, node.east) handles arrow routing natively. Font/style consistency with the paper is free. Academic gold standard. |
| Programmatic iteration needed | skia-canvas (Node.js) | Same Canvas API as HTML but headless, with direct PDF/SVG vector export. Edit coordinates in .mjs, run node script.mjs, get PDF. No browser, no capture, no pdfcrop. |
| Final hand-polish needed | Illustrator ExtendScript (.jsx) | Generate programmatically, then hand-adjust. Best for figures that need to look "designed." Requires Illustrator. |
| Python-only environment | drawsvg (pip install drawsvg) | SVG-first imperative drawing. For PDF, convert the output SVG externally (e.g., Inkscape CLI or cairosvg, which needs the Cairo C library and is tricky on Windows). |
Not recommended: D2 (auto layout too unpredictable for precise academic figures), Graphviz (limited custom styling), matplotlib (designed for data plots, not diagrams).
A parallel capture path to the HTML workflow, for abstract figures:
npm install skia-canvas
# edit generate-figure.mjs (Canvas API: ctx.roundRect, ctx.fillText, ctx.lineTo)
node generate-figure.mjs
# outputs figure.pdf (vector), figure.svg, figure.png
# use figure.pdf directly in \includegraphics — no pdfcrop neededScript structure pattern:
gen_overview.mjs
├── helpers: roundRect(), text(), drawArrow(), drawImage()
├── layout constants: W, H, panel positions, gap sizes
├── draw():
│ ├── header bar (title + thumbnails)
│ ├── component panels (frame + internal diagram + footer)
│ ├── inter-component arrows with labeled handoffs
│ └── bottom strip (use cases + running example)
└── export: PDF + PNG previewAdjust coordinates, rerun, get new PDF instantly. No browser, no print quirks.
programmatically (nodes, edges, flow stages). Screenshots are not made for your figure's aspect ratio and will break.
ribbons) where they are decorative context, not structural elements.
Vertical stacking wastes landscape width.
description, one output line.
rgba(..., 0.06-0.08)), thick top-border accentper component. No saturated card backgrounds, no shadows, no pills/chips.
"Discovery Trace") as explicit connectors, not just whitespace.
(Georgia). Never playful fonts. No emoji.
Before designing anything, decide the figure budget for the document. The table below uses LaTeX environments as examples; adapt to the target format.
| Figure type | Space cost | When to use |
|---|---|---|
wrapfigure{r}{0.55\textwidth} | ~55% column width, text wraps beside | Best default for system mockups — gives prose enough room |
wrapfigure{r}{0.46\textwidth} 2x2 grid | ~46% column width, 4 images in compact grid | Motivation figures with matched-ratio panels |
figure[t] full-width | Full column, ~3-4cm height for landscape | Timelines, overview diagrams, or mockups with small text |
subfloat 1x4 row in figure[t] | Full column, ~3cm height | Cross-domain motivation (all same aspect ratio) |
Lesson learned: 0.68\textwidth is too wide for most wrapfigures. At 0.68, the remaining text column is too narrow for comfortable reading and the prose wraps through multiple paragraphs. Default to 0.55–0.56\textwidth for system mockups. Use 0.68 only for simple figures with large text.
Rule of thumb for page-limited documents (e.g., 15-page proposal):
Horizontal layout is mandatory. Vertical/portrait screenshots waste 50%+ of their space on a landscape-format page. Design the mockup for wide capture from the start.
Do not cram multiple interfaces into one figure. If a system has a coordinator-facing view and a citizen-facing view, build both in one HTML file but capture them as separate screenshots, each inserted at its own relevant subtask in the LaTeX.
Add view-switching buttons (e.g., COORDINATOR / CITIZEN / BOTH) to the toolbar so the user can toggle views and capture each at full width. Each view mode should have its own CSS that expands sidebars, scales up fonts, and adjusts proportions for the full-width layout.
Each major thrust or component gets its own view. Typically 3-4 views:
Each thrust needs a distinct color palette with three tones (solid, mid, light) so bars, cards, and legends are consistent:
--t1: #0d9488; --t1-mid: #5eead4; --t1-light: #ccfbf1;
--t2: #2563eb; --t2-mid: #93c5fd; --t2-light: #dbeafe;Use the light tone for activity bars with a solid-tone border, the solid tone for milestone/completion bars, and the mid tone sparingly for hover states. Legend swatches must match the actual bar appearance — if bars are light with colored borders, show that in the legend, not a solid fill.
Use real, public-domain scientific imagery as low-opacity backgrounds to add geographic or domain credibility without overwhelming the schematic:
Embed as CSS background with opacity: 0.15–0.20 and filter: saturate(0.6). Add a small attribution credit (e.g., "Imagery: NASA/USGS Landsat 9, Jan 14 2025") in the corner. Download locally to figure-src/assets/ for offline reliability.
Use Lucide (ISC license) or similar SVG icon library. Define icons as an SVG sprite block at the top of the HTML so they are referenced once and used everywhere via <svg><use href="#icon-name"/></svg>. Inline SVG icons in panel headers add polish with zero external dependencies.
should be separate files, not crammed into one)
with explicit fallback stacks (e.g., Georgia, system-ui, Consolas)
CAPTURE button): hides toolbar and any titles thatduplicate the LaTeX caption, tightens spacing, scales up fonts for legibility
@media print): hides chrome, preserves background colors,forces landscape orientation, allows text wrapping in bars
not absolute pixels, so nodes survive container resize during print
Raw mockups that look like "developer prototypes" undermine credibility. These details make the difference:
(linear-gradient on surfaces)
metrics and audit trails, proper weight differentiation
Vary the layout between thrusts for visual interest:
px values break during print — use %wrapfigure in LaTeX needs text below it to wrap — place before a longparagraph, never at section end
at low opacity instead of giving them a full column
wrapfigure immediately beforea wraptable or another wrapfigure — LaTeX emits collision warnings and forces floats out of position. Separate them with at least one full paragraph of unwrapped text, or convert one to a figure[t]/table[t]
allow wrapping. Always test the print preview (Ctrl+P) before capturing. Remove nowrap, add line-height: 1.2, and increase row height to accommodate wrapped text.
provides the title. Duplicating it in the screenshot wastes vertical space.
For work plan timeline figures, use a standalone HTML file with CSS grid.
repeat(16, 1fr)` for a 4-year / 16-quarter layout
grid-column: N / M to span consecutive phases as single continuous blocks.
If Thrust 2 depends on Thrust 1 outputs, start Thrust 2's bar in Q2 or Q3.
so reviewers can cross-reference to the thrust text.
quarters, bordered-light bars for activity phases.
across all thrusts (M1: Component demos, M2: End-to-end pipeline, etc.).
solid for milestone, diamond for marker, dark pill for integration).
Ctrl+P → Destination: Save as PDF → Layout: Landscape→ Margins: None → Save.
figure[t] full-width (timelines need the detail).Use the implement-review skill to send the staged figure to Codex for review. Key review points (apply to both HTML and abstract paths):
plausible for the target domain?
0.55\textwidth?vs HV-owning), does the caption explicitly label which branch is shown?
Figure~\ref{}callout in the prose. Figures without cross-references feel decorative.
Additional review points for the abstract path:
floating or misaligned endpoints.
not a product UI.
Iterate based on feedback. Typical: 2-3 rounds.
CAPTURE to hide toolbar and titlesCtrl+P → Save as PDF (landscape, no margins) for vector output, ortake a screenshot for PNG
figure/thrustN.pdf (or .png)Prefer PDF — text and SVG elements stay vector (sharp at any zoom). Only the embedded satellite imagery stays raster. Drop the file extension in \includegraphics so LaTeX auto-selects the best available format:
\includegraphics[width=0.55\textwidth]{figure/thrust4-coord}pdfcropBrowser-exported PDFs have full-page white margins that waste space in LaTeX. Use pdfcrop (bundled with TeX Live) to trim to the content bounding box.
pdfcrop figure/timeline.pdf figure/timeline-trimmed.pdf
pdfcrop --margins 4 figure/thrust1.pdf figure/thrust1-trimmed.pdfAlways keep the original and write to a separate `-trimmed` file. This preserves the full-page source for re-trimming with different margins later. Use the trimmed file in \includegraphics.
pdfcrop uses Ghostscript for bounding box detection, which is reliablefor both vector and raster content.
--margins N to add N bp on all sides (2-4is typical for proposal figures).
similar — these methods frequently misdetect content bounds on browser-exported PDFs.
Default to wrapfigure at 0.55–0.56\textwidth:
\begin{wrapfigure}{r}{0.56\textwidth}
\vspace{-1.2em}
\centering
\includegraphics[width=0.55\textwidth]{figure/thrust1}
\caption{\textbf{Thrust 1 title.} Brief description of what the
screenshot shows, referencing left and right panels. If the system
has multiple modes, state which mode is shown (e.g., ``zero-vehicle
branch; the HV-owning branch provides departure/route guidance'').}
\label{fig:thrust1}
\vspace{-1.4em}
\end{wrapfigure}Place the wrapfigure before a paragraph with 10+ lines of text below it. Never place at the end of a section.
For timelines, use full-width figure[t]:
\begin{figure}[t]
\centering
\includegraphics[width=\textwidth]{figure/timeline}
\caption{\textbf{Four-year work plan and integration timeline.}
Colored bars show per-thrust activities by quarter; diamonds mark
milestones; bottom row shows integration checkpoints (M1--M4).}
\label{fig:timeline}
\vspace{-1em}
\end{figure}For a cross-domain motivation figure (e.g., "spatio-temporal data spans multiple national-priority domains"):
Earth Observatory)
\subfloat with height= for equal-height tiling@misc bib entries using institutional authorsfigure-src/ with all assets in figure-src/assets/figure/ (originals kept, trimmed copies via pdfcrop).mjs for skia-canvas, .tex for TikZ, .jsx for Illustrator) in figure-src/figure/ — no browser capture neededwrapfigure (0.55–0.56) or figure[t] environments in tex filesFigure~\ref{} callouts in the prose for every figure~30 seconds. Free. No account. Every finding cites a rule and a line of evidence.