lygia
/v1.1.6
/filter
/edge
/sobelDirectional
)Adapted version of directional Sobel edge detection from https://github.com/BradLarson/GPUImage2
Dependencies:
lygia
/v1.1.6
/sample
/clamp2edge
.glsl
Use:
edgeSobel_directional(<SAMPLER_TYPE> texture, <vec2> st, <vec2> pixels_scale)
#ifndef EDGESOBELDIRECTIONAL_SAMPLER_FNC
#ifdef EDGE_SAMPLER_FNC
#define EDGESOBELDIRECTIONAL_SAMPLER_FNC(TEX, UV) EDGE_SAMPLER_FNC(TEX, UV)
#else
#define EDGESOBELDIRECTIONAL_SAMPLER_FNC(TEX, UV) sampleClamp2edge(TEX, UV).r
#endif
#endif
#ifndef FNC_EDGESOBEL_DIRECTIONAL
#define FNC_EDGESOBEL_DIRECTIONAL
vec3 edgeSobelDirectional(in SAMPLER_TYPE tex, in vec2 st, in vec2 offset) {
// get samples around pixel
float tleft = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(-offset.x, offset.y));
float left = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(-offset.x, 0.));
float bleft = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(-offset.x, -offset.y));
float top = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(0., offset.y));
float bottom = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(0., -offset.y));
float tright = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + offset);
float right = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(offset.x, 0.));
float bright = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + vec2(offset.x, -offset.y));
vec2 gradientDirection = vec2(0.);
gradientDirection.x = -bleft - 2. * left - tleft + bright + 2. * right + tright;
gradientDirection.y = -tleft - 2. * top - tright + bleft + 2. * bottom + bright;
float gradientMagnitude = length(gradientDirection);
vec2 normalizedDirection = normalize(gradientDirection);
normalizedDirection = sign(normalizedDirection) * floor(abs(normalizedDirection) + .617316); // Offset by 1-sin(pi/8) to set to 0 if near axis, 1 if away
normalizedDirection = (normalizedDirection + 1.) * .5; // Place -1.0 - 1.0 within 0 - 1.0
return vec3(gradientMagnitude, normalizedDirection.x, normalizedDirection.y);
}
#endif
Dependencies:
Use:
edgeSobel_directional(<SAMPLER_TYPE> texture, <float2> st, <float2> pixels_scale)
#ifndef EDGESOBELDIRECTIONAL_SAMPLER_FNC
#ifdef EDGE_SAMPLER_FNC
#define EDGESOBELDIRECTIONAL_SAMPLER_FNC(TEX, UV) EDGE_SAMPLER_FNC(TEX, UV)
#else
#define EDGESOBELDIRECTIONAL_SAMPLER_FNC(TEX, UV) SAMPLER_FNC(TEX, UV).r
#endif
#endif
#ifndef FNC_EDGESOBEL_DIRECTIONAL
#define FNC_EDGESOBEL_DIRECTIONAL
float3 edgeSobelDirectional(in SAMPLER_TYPE tex, in float2 st, in float2 offset) {
// get samples around pixel
float tleft = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(-offset.x, offset.y));
float left = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(-offset.x, 0.));
float bleft = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(-offset.x, -offset.y));
float top = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(0., offset.y));
float bottom = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(0., -offset.y));
float tright = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + offset);
float right = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(offset.x, 0.));
float bright = EDGESOBELDIRECTIONAL_SAMPLER_FNC(tex, st + float2(offset.x, -offset.y));
float2 gradientDirection = float2(0., 0.);
gradientDirection.x = -bleft - 2. * left - tleft + bright + 2. * right + tright;
gradientDirection.y = -tleft - 2. * top - tright + bleft + 2. * bottom + bright;
float gradientMagnitude = length(gradientDirection);
float2 normalizedDirection = normalize(gradientDirection);
normalizedDirection = sign(normalizedDirection) * floor(abs(normalizedDirection) + .617316); // Offset by 1-sin(pi/8) to set to 0 if near axis, 1 if away
normalizedDirection = (normalizedDirection + 1.) * .5; // Place -1.0 - 1.0 within 0 - 1.0
return float3(gradientMagnitude, normalizedDirection.x, normalizedDirection.y);
}
#endif
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