243 lines
5.7 KiB
C++
243 lines
5.7 KiB
C++
#include <psemek/ui/painter_impl.hpp>
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#include <psemek/gfx/program.hpp>
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#include <psemek/gfx/mesh.hpp>
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#include <psemek/util/overload.hpp>
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#include <variant>
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namespace psemek::ui
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{
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static char const colored_vs[] =
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R"(#version 330
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uniform mat4 u_transform;
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layout (location = 0) in vec2 in_position;
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layout (location = 1) in float in_depth;
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layout (location = 2) in vec4 in_color;
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out vec4 color;
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void main()
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{
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gl_Position = u_transform * vec4(in_position, 1.0 - float(in_depth) / 16777216.0 * 2.0, 1.0);
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color = in_color;
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}
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)";
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static char const colored_fs[] =
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R"(#version 330
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in vec4 color;
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out vec4 out_color;
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void main()
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{
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out_color = color;
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}
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)";
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static char const textured_vs[] =
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R"(#version 330
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uniform mat4 u_transform;
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uniform vec2 u_texture_size;
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layout (location = 0) in vec2 in_position;
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layout (location = 1) in float in_depth;
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layout (location = 2) in vec4 in_color;
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layout (location = 3) in vec2 in_texcoord;
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out vec4 color;
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out vec2 texcoord;
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void main()
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{
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gl_Position = u_transform * vec4(in_position, 1.0 - float(in_depth) / 16777216.0 * 2.0, 1.0);
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color = in_color;
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texcoord = in_texcoord / u_texture_size;
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}
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)";
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static char const textured_fs[] =
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R"(#version 330
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uniform sampler2D u_texture;
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in vec2 texcoord;
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in vec4 color;
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out vec4 out_color;
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void main()
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{
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out_color = texture(u_texture, texcoord) * color;
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}
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)";
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struct colored_vertex
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{
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geom::point<float, 2> position;
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std::uint32_t depth;
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gfx::color_rgba color;
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};
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static_assert(sizeof(colored_vertex) == 16);
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struct colored_batch
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{
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std::vector<colored_vertex> vertices;
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std::vector<std::uint32_t> indices;
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};
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bool operator == (colored_batch const &, colored_batch const &)
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{
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return true;
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}
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struct textured_vertex
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{
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geom::point<float, 2> position;
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std::uint32_t depth;
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gfx::color_rgba color;
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geom::vector<std::uint16_t, 2> texcoords;
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};
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static_assert(sizeof(textured_vertex) == 20);
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struct textured_batch
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{
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gfx::texture_2d const * texture = nullptr;
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std::vector<textured_vertex> vertices{};
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std::vector<std::uint32_t> indices{};
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};
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bool operator == (textured_batch const & b1, textured_batch const & b2)
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{
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return b1.texture == b2.texture;
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}
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struct painter_impl::impl
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{
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std::uint32_t depth = 0;
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gfx::program colored_program;
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gfx::mesh colored_mesh;
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gfx::program textured_program;
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gfx::mesh textured_mesh;
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std::vector<std::variant<colored_batch, textured_batch>> batches;
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template <typename Batch>
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Batch & batch(Batch && n)
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{
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if (!batches.empty())
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{
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auto b = std::get_if<Batch>(&batches.back());
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if (b && *b == n) return *b;
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}
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batches.push_back(std::move(n));
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return std::get<Batch>(batches.back());
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}
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impl();
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};
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painter_impl::impl::impl()
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: colored_program{colored_vs, colored_fs}
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, textured_program{textured_vs, textured_fs}
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{
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textured_program.bind();
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textured_program["u_texture"] = 0;
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colored_mesh.setup<geom::point<float, 2>, std::uint32_t, gfx::normalized<gfx::color_rgba>>();
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textured_mesh.setup<geom::point<float, 2>, std::uint32_t, gfx::normalized<gfx::color_rgba>, geom::vector<std::uint16_t, 2>>();
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}
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painter_impl::painter_impl()
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: pimpl_{make_impl()}
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{}
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painter_impl::~painter_impl() = default;
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void painter_impl::draw_rect(geom::box<float, 2> const & rect, gfx::color_rgba const & color)
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{
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auto & batch = impl().batch<colored_batch>({});
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std::uint32_t const depth = impl().depth++;
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std::uint32_t const base = batch.vertices.size();
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batch.vertices.push_back({rect.corner(0.f, 0.f), depth, color});
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batch.vertices.push_back({rect.corner(1.f, 0.f), depth, color});
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batch.vertices.push_back({rect.corner(0.f, 1.f), depth, color});
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batch.vertices.push_back({rect.corner(1.f, 1.f), depth, color});
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batch.indices.insert(batch.indices.end(), {base + 0, base + 1, base + 2, base + 2, base + 1, base + 3});
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}
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void painter_impl::draw_glyph(font const & f, char32_t c, geom::box<float, 2> const & rect, gfx::color_rgba const & color)
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{
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auto tbox = f.texcoords(c);
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if (!tbox) return;
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auto size = f.atlas().size();
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auto const tc = [&](float x, float y)
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{
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auto t = tbox->corner(x, y);
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geom::vector<std::uint16_t, 2> r;
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r[0] = geom::clamp(t[0], {0, size[0]});
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r[1] = geom::clamp(t[1], {0, size[1]});
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return r;
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};
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auto & batch = impl().batch<textured_batch>(textured_batch{&f.atlas()});
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std::uint32_t const depth = impl().depth++;
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std::uint32_t const base = batch.vertices.size();
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batch.vertices.push_back({rect.corner(0.f, 0.f), depth, color, tc(0.f, 0.f)});
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batch.vertices.push_back({rect.corner(1.f, 0.f), depth, color, tc(1.f, 0.f)});
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batch.vertices.push_back({rect.corner(0.f, 1.f), depth, color, tc(0.f, 1.f)});
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batch.vertices.push_back({rect.corner(1.f, 1.f), depth, color, tc(1.f, 1.f)});
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batch.indices.insert(batch.indices.end(), {base + 0, base + 1, base + 2, base + 2, base + 1, base + 3});
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}
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void painter_impl::render(geom::matrix<float, 4, 4> const & transform)
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{
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impl().colored_program.bind();
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impl().colored_program["u_transform"] = transform;
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impl().textured_program.bind();
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impl().textured_program["u_transform"] = transform;
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gl::ActiveTexture(gl::TEXTURE0);
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auto batch_visitor = util::overload([&](colored_batch const & b){
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impl().colored_program.bind();
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impl().colored_mesh.load(b.vertices, b.indices, gl::TRIANGLES);
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impl().colored_mesh.draw();
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},
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[&](textured_batch const & b){
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if (!b.texture) return;
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impl().textured_program.bind();
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impl().textured_program["u_texture_size"] = geom::cast<float>(b.texture->size());
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b.texture->bind();
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impl().textured_mesh.load(b.vertices, b.indices, gl::TRIANGLES);
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impl().textured_mesh.draw();
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});
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for (auto const & b : impl().batches)
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std::visit(batch_visitor, b);
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impl().depth = 0;
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impl().batches.clear();
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}
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}
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