diff --git a/src/rshapes.c b/src/rshapes.c index 12ae6a164..def6d36b2 100644 --- a/src/rshapes.c +++ b/src/rshapes.c @@ -888,14 +888,13 @@ void DrawRectangleRounded(Rectangle rec, float roundness, int segments, Color co // Draw rectangle with rounded edges void DrawRectangleRoundedLines(Rectangle rec, float roundness, int segments, Color color) { - // NOTE: For line thicknes <=1.0f using RL_LINES, otherwise using RL_QUADS/RL_TRIANGLES DrawRectangleRoundedLinesEx(rec, roundness, segments, 1.0f, color); } // Draw rectangle with rounded edges outline with line thickness void DrawRectangleRoundedLinesEx(Rectangle rec, float roundness, int segments, float thick, Color color) { - if (thick < 0) thick = 0; + if (thick <= 0) return; // Not a rounded rectangle if (roundness <= 0.0f) @@ -966,176 +965,145 @@ void DrawRectangleRoundedLinesEx(Rectangle rec, float roundness, int segments, f const float angles[4] = { 180.0f, 270.0f, 0.0f, 90.0f }; - if (thick > 1) - { #if SUPPORT_QUADS_DRAW_MODE - rlSetTexture(GetShapesTexture().id); - Rectangle shapeRect = GetShapesTextureRectangle(); + rlSetTexture(GetShapesTexture().id); + Rectangle shapeRect = GetShapesTextureRectangle(); - rlBegin(RL_QUADS); + rlBegin(RL_QUADS); - // Draw all the 4 corners first: Upper Left Corner, Upper Right Corner, Lower Right Corner, Lower Left Corner - for (int k = 0; k < 4; ++k) // Hope the compiler is smart enough to unroll this loop - { - float angle = angles[k]; - const Vector2 center = centers[k]; - for (int i = 0; i < segments; i++) - { - rlColor4ub(color.r, color.g, color.b, color.a); - - rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(center.x + cosf(DEG2RAD*angle)*innerRadius, center.y + sinf(DEG2RAD*angle)*innerRadius); - - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*innerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*innerRadius); - - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*outerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*outerRadius); - - rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); - - angle += stepLength; - } - } - - // Upper rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[0].x, point[0].y); - rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[8].x, point[8].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[9].x, point[9].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[1].x, point[1].y); - - // Right rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[2].x, point[2].y); - rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[10].x, point[10].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[11].x, point[11].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[3].x, point[3].y); - - // Lower rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[13].x, point[13].y); - rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[5].x, point[5].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[4].x, point[4].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[12].x, point[12].y); - - // Left rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[15].x, point[15].y); - rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[7].x, point[7].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); - rlVertex2f(point[6].x, point[6].y); - rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); - rlVertex2f(point[14].x, point[14].y); - - rlEnd(); - rlSetTexture(0); -#else - rlBegin(RL_TRIANGLES); - - // Draw all of the 4 corners first: Upper Left Corner, Upper Right Corner, Lower Right Corner, Lower Left Corner - for (int k = 0; k < 4; ++k) // Hope the compiler is smart enough to unroll this loop - { - float angle = angles[k]; - const Vector2 center = centers[k]; - - for (int i = 0; i < segments; i++) - { - rlColor4ub(color.r, color.g, color.b, color.a); - - rlVertex2f(center.x + cosf(DEG2RAD*angle)*innerRadius, center.y + sinf(DEG2RAD*angle)*innerRadius); - rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*innerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*innerRadius); - rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); - - rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*innerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*innerRadius); - rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*outerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*outerRadius); - rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); - - angle += stepLength; - } - } - - // Upper rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlVertex2f(point[0].x, point[0].y); - rlVertex2f(point[8].x, point[8].y); - rlVertex2f(point[9].x, point[9].y); - rlVertex2f(point[1].x, point[1].y); - rlVertex2f(point[0].x, point[0].y); - rlVertex2f(point[9].x, point[9].y); - - // Right rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlVertex2f(point[10].x, point[10].y); - rlVertex2f(point[11].x, point[11].y); - rlVertex2f(point[3].x, point[3].y); - rlVertex2f(point[2].x, point[2].y); - rlVertex2f(point[10].x, point[10].y); - rlVertex2f(point[3].x, point[3].y); - - // Lower rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlVertex2f(point[13].x, point[13].y); - rlVertex2f(point[5].x, point[5].y); - rlVertex2f(point[4].x, point[4].y); - rlVertex2f(point[12].x, point[12].y); - rlVertex2f(point[13].x, point[13].y); - rlVertex2f(point[4].x, point[4].y); - - // Left rectangle - rlColor4ub(color.r, color.g, color.b, color.a); - rlVertex2f(point[7].x, point[7].y); - rlVertex2f(point[6].x, point[6].y); - rlVertex2f(point[14].x, point[14].y); - rlVertex2f(point[15].x, point[15].y); - rlVertex2f(point[7].x, point[7].y); - rlVertex2f(point[14].x, point[14].y); - rlEnd(); -#endif - } - else - { - // Use LINES to draw the outline - rlBegin(RL_LINES); - // Draw all the 4 corners first: Upper Left Corner, Upper Right Corner, Lower Right Corner, Lower Left Corner - for (int k = 0; k < 4; ++k) // Hope the compiler is smart enough to unroll this loop - { - float angle = angles[k]; - const Vector2 center = centers[k]; - - for (int i = 0; i < segments; i++) - { - rlColor4ub(color.r, color.g, color.b, color.a); - rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); - rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*outerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*outerRadius); - angle += stepLength; - } - } - - // And now the remaining 4 lines - for (int i = 0; i < 8; i += 2) + // Draw all the 4 corners first: Upper Left Corner, Upper Right Corner, Lower Right Corner, Lower Left Corner + for (int k = 0; k < 4; ++k) // Hope the compiler is smart enough to unroll this loop + { + float angle = angles[k]; + const Vector2 center = centers[k]; + for (int i = 0; i < segments; i++) { rlColor4ub(color.r, color.g, color.b, color.a); - rlVertex2f(point[i].x, point[i].y); - rlVertex2f(point[i + 1].x, point[i + 1].y); + + rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(center.x + cosf(DEG2RAD*angle)*innerRadius, center.y + sinf(DEG2RAD*angle)*innerRadius); + + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*innerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*innerRadius); + + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*outerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*outerRadius); + + rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); + + angle += stepLength; } - rlEnd(); - } + } + + // Upper rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[0].x, point[0].y); + rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[8].x, point[8].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[9].x, point[9].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[1].x, point[1].y); + + // Right rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[2].x, point[2].y); + rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[10].x, point[10].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[11].x, point[11].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[3].x, point[3].y); + + // Lower rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[13].x, point[13].y); + rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[5].x, point[5].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[4].x, point[4].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[12].x, point[12].y); + + // Left rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlTexCoord2f(shapeRect.x/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[15].x, point[15].y); + rlTexCoord2f(shapeRect.x/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[7].x, point[7].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, (shapeRect.y + shapeRect.height)/texShapes.height); + rlVertex2f(point[6].x, point[6].y); + rlTexCoord2f((shapeRect.x + shapeRect.width)/texShapes.width, shapeRect.y/texShapes.height); + rlVertex2f(point[14].x, point[14].y); + + rlEnd(); + rlSetTexture(0); +#else + rlBegin(RL_TRIANGLES); + + // Draw all of the 4 corners first: Upper Left Corner, Upper Right Corner, Lower Right Corner, Lower Left Corner + for (int k = 0; k < 4; ++k) // Hope the compiler is smart enough to unroll this loop + { + float angle = angles[k]; + const Vector2 center = centers[k]; + + for (int i = 0; i < segments; i++) + { + rlColor4ub(color.r, color.g, color.b, color.a); + + rlVertex2f(center.x + cosf(DEG2RAD*angle)*innerRadius, center.y + sinf(DEG2RAD*angle)*innerRadius); + rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*innerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*innerRadius); + rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); + + rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*innerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*innerRadius); + rlVertex2f(center.x + cosf(DEG2RAD*(angle + stepLength))*outerRadius, center.y + sinf(DEG2RAD*(angle + stepLength))*outerRadius); + rlVertex2f(center.x + cosf(DEG2RAD*angle)*outerRadius, center.y + sinf(DEG2RAD*angle)*outerRadius); + + angle += stepLength; + } + } + + // Upper rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlVertex2f(point[0].x, point[0].y); + rlVertex2f(point[8].x, point[8].y); + rlVertex2f(point[9].x, point[9].y); + rlVertex2f(point[1].x, point[1].y); + rlVertex2f(point[0].x, point[0].y); + rlVertex2f(point[9].x, point[9].y); + + // Right rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlVertex2f(point[10].x, point[10].y); + rlVertex2f(point[11].x, point[11].y); + rlVertex2f(point[3].x, point[3].y); + rlVertex2f(point[2].x, point[2].y); + rlVertex2f(point[10].x, point[10].y); + rlVertex2f(point[3].x, point[3].y); + + // Lower rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlVertex2f(point[13].x, point[13].y); + rlVertex2f(point[5].x, point[5].y); + rlVertex2f(point[4].x, point[4].y); + rlVertex2f(point[12].x, point[12].y); + rlVertex2f(point[13].x, point[13].y); + rlVertex2f(point[4].x, point[4].y); + + // Left rectangle + rlColor4ub(color.r, color.g, color.b, color.a); + rlVertex2f(point[7].x, point[7].y); + rlVertex2f(point[6].x, point[6].y); + rlVertex2f(point[14].x, point[14].y); + rlVertex2f(point[15].x, point[15].y); + rlVertex2f(point[7].x, point[7].y); + rlVertex2f(point[14].x, point[14].y); + rlEnd(); +#endif } // Draw a polygon of n sides