# Conflicts: # implementations/Crafter.Graphics-UI-Shared.cpp # interfaces/Crafter.Graphics-UI.cppm
175 lines
7.2 KiB
C++
175 lines
7.2 KiB
C++
/*
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Crafter®.Graphics
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Copyright (C) 2026 Catcrafts®
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catcrafts.net
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*/
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// Backend-agnostic UIRenderer methods. FillHeader and ShapeText do not
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// touch any GPU API; they only read window dimensions and (for ShapeText)
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// the CPU-side font atlas. Split out so both Vulkan and WebGPU impls
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// share the same source.
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module Crafter.Graphics:UI_shared_impl;
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import :UI;
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import :Window;
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import :Font;
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import :FontAtlas;
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import :GraphicsTypes;
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import std;
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using namespace Crafter;
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UIDispatchHeader UIRenderer::FillHeader(std::uint32_t itemBufferSlot,
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std::uint32_t itemCount,
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std::array<float,4> clipRectPx,
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std::uint32_t flags) const noexcept {
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UIDispatchHeader h{};
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h.outImage = outImageSlot_;
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h.itemBuffer = itemBufferSlot;
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h.surfaceWidth = window_->width;
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h.surfaceHeight = window_->height;
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h.clipX = clipRectPx[0];
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h.clipY = clipRectPx[1];
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h.clipW = clipRectPx[2];
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h.clipH = clipRectPx[3];
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h.itemCount = itemCount;
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#ifndef CRAFTER_GRAPHICS_WINDOW_DOM
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h.frameIdx = window_->currentBuffer;
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#else
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h.frameIdx = 0;
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#endif
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h.flags = ClipFlags(clipRectPx, window_->width, window_->height, flags);
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h._pad = 0;
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return h;
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}
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std::uint32_t UIRenderer::ClipFlags(std::array<float,4> clipRectPx,
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std::uint32_t surfaceWidth,
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std::uint32_t surfaceHeight,
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std::uint32_t flags) noexcept {
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// The reserved kUIFlagClip bit signals "clip rect is narrower than the
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// surface". When the rect already covers the whole surface (the common
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// {0,0,1e9,1e9} default), the four per-pixel clip compares in
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// uiResolveScreenPixel can never reject an in-surface pixel, so we leave
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// the bit clear and the shader skips them — pixel-identical output.
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const bool clipCoversSurface =
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clipRectPx[0] <= 0.0f && clipRectPx[1] <= 0.0f
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&& clipRectPx[0] + clipRectPx[2] >= static_cast<float>(surfaceWidth)
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&& clipRectPx[1] + clipRectPx[3] >= static_cast<float>(surfaceHeight);
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return clipCoversSurface ? (flags & ~kUIFlagClip) : (flags | kUIFlagClip);
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}
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std::uint32_t UIRenderer::ShapeText(Font& font, float pxSize,
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float x, float baselineY,
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std::string_view utf8,
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std::array<float,4> color,
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GlyphItem* out, std::uint32_t outCapacity,
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float* outAdvance,
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TextAlign align) {
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if (fontAtlas == nullptr) {
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std::println("UIRenderer::ShapeText: no FontAtlas (set fontAtlas before Initialize)");
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std::abort();
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}
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// Look up (or build) the origin-relative shaped run. It is stored with
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// the pen starting at x=0, baseline=0 so a cache hit only needs the
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// translate below. The whole string is shaped (no outCapacity limit) so
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// a later call with a larger buffer still gets the full run.
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// Probe with a borrowing view key (text is a string_view onto utf8) so a
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// cache hit copies and hashes no string. The owning std::string is only
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// built on a miss, below, for the emplace.
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ShapedRunViewKey viewKey{&font, pxSize, color, utf8};
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auto it = shapedRuns_.find(viewKey);
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if (it == shapedRuns_.end()) {
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// Miss: shape from scratch. Ensure() each glyph so brand-new ones
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// rasterise into the atlas and mark it dirty for the next upload —
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// a hit skips this, which is safe because atlas entries are never
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// evicted once placed.
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const float scale = pxSize / FontAtlas::kBaseSize;
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ShapedRun run;
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float cursor = 0.0f;
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std::size_t i = 0;
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while (i < utf8.size()) {
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std::uint32_t cp = DecodeUtf8(utf8, i);
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if (cp == 0) break;
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if (cp == '\n') { continue; }
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const Glyph* g = fontAtlas->EnsureAndGet(font, cp);
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if (g == nullptr) continue;
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if (g->w > 0 && g->h > 0) {
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GlyphItem gi;
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gi.x = cursor + g->xoff * scale;
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gi.y = g->yoff * scale;
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gi.w = g->w * scale;
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gi.h = g->h * scale;
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gi.u0 = g->u0; gi.v0 = g->v0;
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gi.u1 = g->u1; gi.v1 = g->v1;
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gi.r = color[0]; gi.g = color[1]; gi.b = color[2]; gi.a = color[3];
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run.glyphs.push_back(gi);
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}
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cursor += g->advance * scale;
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}
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run.advance = cursor;
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// Evict the least-recently-used run (LRU list back) on overflow rather
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// than clearing the whole cache. The back is whatever has gone longest
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// without a reshape — a stale unique string, never a stable label
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// (those are reshaped every frame and sit at the front), so the hot set
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// survives and the next frame doesn't trigger a full-UI reshape.
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if (shapedRuns_.size() >= kMaxShapedRuns) {
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const ShapedRunKey* victim = shapedRunsLru_.back();
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shapedRunsLru_.pop_back();
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shapedRuns_.erase(*victim);
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}
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// Materialise the owning key (the probe above borrowed utf8) only now,
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// on the miss path, for the emplace.
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ShapedRunKey key{&font, pxSize, color, std::string(utf8)};
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it = shapedRuns_.emplace(std::move(key), std::move(run)).first;
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it->second.lruIt = shapedRunsLru_.insert(shapedRunsLru_.begin(), &it->first);
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} else {
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// Hit: promote to most-recently-used. splice is O(1) and keeps lruIt
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// (and every other iterator) valid.
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shapedRunsLru_.splice(shapedRunsLru_.begin(), shapedRunsLru_, it->second.lruIt);
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}
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const ShapedRun& run = it->second;
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if (outAdvance) *outAdvance = run.advance;
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// Fold the alignment shift into the translate so callers don't need a
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// second pass over the glyphs.
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const float alignShift = (align == TextAlign::Center) ? -run.advance * 0.5f
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: (align == TextAlign::Right) ? -run.advance
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: 0.0f;
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const float tx = x + alignShift;
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std::uint32_t written = 0;
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for (const GlyphItem& src : run.glyphs) {
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if (written >= outCapacity) break;
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GlyphItem& gi = out[written++];
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gi = src;
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gi.x += tx;
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gi.y += baselineY;
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}
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return written;
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}
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void UIRenderer::InvalidateFont(const Font& font) noexcept {
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// Drop matching runs from both the map and the LRU order list, keeping the
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// two in sync (the list points at keys owned by the map).
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for (auto it = shapedRuns_.begin(); it != shapedRuns_.end(); ) {
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if (it->first.font == &font) {
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shapedRunsLru_.erase(it->second.lruIt);
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it = shapedRuns_.erase(it);
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} else {
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++it;
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}
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}
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}
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bool UIRenderer::IsShapedRunCached(const Font& font, float pxSize,
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std::array<float,4> color,
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std::string_view utf8) const {
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return shapedRuns_.find(ShapedRunViewKey{&font, pxSize, color, utf8})
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!= shapedRuns_.end();
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}
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