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optional draw
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32
graphs.hpp
32
graphs.hpp
@ -807,11 +807,24 @@ namespace graphs
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bool draw_immediately = true; // draw graph immediately after creation. otherwise call draw/graph with the returned texture
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bool draw_immediately = true; // draw graph immediately after creation. otherwise call draw/graph with the returned texture
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};
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};
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// use a graph texture to draw a graph into the terminal
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// use a graph texture to draw a graph into the terminal
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void graph(Texture& texture, Options &options) {
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inline void graph(Texture& texture, const Options &options) {
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// TODO
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vector<Fragment>& tex = *texture;
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// draw graph for experimental preview purposes only
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for (size_t y = 0; y < options.height; y++) {
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for (size_t x = 0; x < options.width; x++) {
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const size_t index = x + y * options.width;
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const auto& frag = tex[index];
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// draw Fragment
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cout << colors[frag.color.col_4];
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cout << bars[frag.data];
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cout << colors[0];
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}
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cout << '\n';
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}
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}
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}
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// use a graph texture to draw a graph into the terminal
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// use a graph texture to draw a graph into the terminal
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void draw(Texture& texture, Options &options) {
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inline void draw(Texture& texture, const Options &options) {
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graph(texture, options);
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graph(texture, options);
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}
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}
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// print histogram using single data set, optionally drawn on top of existing texture
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// print histogram using single data set, optionally drawn on top of existing texture
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@ -895,18 +908,7 @@ namespace graphs
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}
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}
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}
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}
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// draw graph for experimental preview purposes only
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if (options.draw_immediately) draw(texture, options);
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for (size_t y = 0; y < height; y++) {
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for (size_t x = 0; x < width; x++) {
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const size_t index = x + y * width;
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const auto& frag = tex[index];
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// draw Fragment
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cout << colors[frag.color.col_4];
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cout << bars[frag.data];
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cout << colors[0];
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}
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cout << '\n';
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}
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return std::move(texture);
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return std::move(texture);
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}
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}
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// print histogram using multiple data sets, drawn on top of existing texture
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// print histogram using multiple data sets, drawn on top of existing texture
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