Creative Challenge
"Floating castle shaped like a teapot with cloud bridges"
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<path d="M-20 50 l40 0 l-20 40 l-20 -40 z" fill="#ffffff" />
<path d="M-10 100 q20 20 30 0 q20 -20 30 0 q-20 -20 -30 0 q-20 20 -30 0" fill="url(#cloudPattern)" />
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</svg>
<svg viewBox="0 0 300 300" xmlns="http://www.w3.org/2000/svg">
<!-- Sky background with gradient -->
<defs>
<radialGradient id="sky" cx="150" cy="50" r="200" fx="150" fy="50" spreadMethod="pad">
<stop offset="0" stop-color="#87CEEB" stop-opacity="1"/>
<stop offset="1" stop-color="#4682B4" stop-opacity="1"/>
</radialGradient>
<!-- Cloud pattern -->
<pattern id="clouds" x="0" y="0" width="100" height="100" patternUnits="userSpaceOnUse">
<path d="M0 0 Q 50 50 100 0 Q 150 -50 200 0 Q 250 50 300 0 L300 100 Q 250 150 200 100 Q 150 50 100 100 Q 50 150 0 100 L0 0" fill="#FFFFFF"/>
</pattern>
<!-- Stone texture -->
<pattern id="stone" x="0" y="0" width="20" height="20" patternUnits="userSpaceOnUse">
<rect width="20" height="20" fill="#888"/>
<circle cx="10" cy="10" r="2" fill="#666"/>
</pattern>
</defs>
<!-- Background -->
<rect width="300" height="300" fill="url(#sky)"/>
<!-- Floating castle-teapot -->
<g transform="translate(50 100)">
<!-- Teapot body -->
<ellipse cx="100" cy="100" rx="80" ry="50" fill="url(#stone)" transform="skewX(10)"/>
<!-- Spout -->
<path d="M150 80 Q 200 60 170 40 L160 35 L145 40 Q 100 60 100 80" fill="#888"/>
<!-- Handle -->
<path d="M50 80 Q 0 60 10 40 L20 35 L35 40 Q 100 60 100 80" fill="#888"/>
<!-- Towers -->
<rect x="20" y="30" width="30" height="70" fill="#888" rx="5"/>
<rect x="250" y="30" width="30" height="70" fill="#888" rx="5"/>
<rect x="140" y="20" width="20" height="80" fill="#888" rx="5"/>
<!-- Windows -->
<rect x="60" y="60" width="20" height="10" fill="#FFD700"/>
<rect x="220" y="60" width="20" height="10" fill="#FFD700"/>
<rect x="170" y="40" width="20" height="10" fill="#FFD700"/>
<!-- Door -->
<rect x="90" y="120" width="40" height="60" fill="#FFD700"/>
<circle cx="120" cy="150" r="5" fill="#FFD700"/>
</g>
<!-- Cloud bridges -->
<path d="M50 200 Q 100 180 150 200" fill="url(#clouds)"/>
<path d="M250 200 Q 200 180 150 200" fill="url(#clouds)"/>
<path d="M150 250 Q 180 240 150 230" fill="url(#clouds)"/>
<!-- Birds -->
<path d="M100 50 L120 40 L110 35 L100 40 L90 35 L80 40" fill="#000"/>
<path d="M200 50 L220 40 L210 35 L200 40 L190 35 L180 40" fill="#000"/>
</svg>
Judge's Analysis
Player 2's submission more closely interprets the prompt with a clearer depiction of a teapot-shaped castle.
The use of cloud-like shapes and the overall design gives a better impression of floating elements, making it more visually appealing and aligned with the idea of a 'floating castle with cloud bridges.' Player 1's image, while colorful, lacks the distinct elements required by the prompt.
These metrics analyze technical aspects of both SVG drawings. Look for differences that might explain the judge's decision. Use the "View Code" button above to see the SVG code for each drawing.
Shapes Metrics
The total number of shape elements (rect, circle, ellipse, line, polygon, polyline, path) in the SVG.
The number of rectangle elements (rect) in the SVG.
The number of circle elements (circle) in the SVG.
The number of ellipse elements (ellipse) in the SVG.
The number of line elements (line) in the SVG.
The number of polygon elements (polygon) in the SVG.
The number of path elements (path) in the SVG.
The number of group elements (g) in the SVG.
Visual Effects Metrics
The number of gradient definitions (linearGradient, radialGradient) in the SVG.
The number of pattern definitions (pattern) in the SVG.
The number of filter definitions (filter) in the SVG.
The number of mask definitions (mask) in the SVG.
The number of clipping path definitions (clipPath) in the SVG.
The number of elements with opacity attributes in the SVG.
The number of elements with stroke attributes in the SVG.
Colors Metrics
The number of unique colors used in the SVG.
Interactivity Metrics
The number of animation elements (animate, animateMotion, animateTransform, set) in the SVG.
The number of elements with transform attributes in the SVG.
Complexity Metrics
The total number of path commands in all path elements (M, L, C, Q, etc.) in the SVG.
The maximum nesting level of group elements (g) in the SVG.
The number of elements defined within the defs element in the SVG.
The number of use elements (use) in the SVG.
Text Metrics
The number of text elements (text) in the SVG.
AI Judging Process
Creativity
Originality, innovative use of shapes and unique approach to the prompt.
Prompt Adherence
How accurately the SVG captures the essence of the prompt.
Visual Appeal
Aesthetic quality including composition, color usage and overall visual impact.
How does judging work?
SVG drawings are converted to static PNG images for evaluation. The AI judge receives the original prompt and both images, then determines which drawing better fulfills the evaluation criteria without seeing animations, interactivity, or SVG code.
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