Q-W1 pt2: core/shell/app relocation + sub-namespaces; one concrete ui::Rect (LTRB fork retired); slot_map split from bank_book; BankIndex→BankModel; 59/59 green
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// component_geometry — pure implementation. See component_geometry.h. NO REAPER / SWELL /
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// LICE / vendor. Standard library only.
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#include "core/ui/component_geometry.h"
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namespace reasampler::ui {
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bool hitTestBox(int px, int py, const KitBox& box) {
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if (box.empty()) return false;
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return px >= box.x && px < box.x + box.width &&
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py >= box.y && py < box.y + box.height;
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}
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KitButtonBox computeButtonBox(const KitBox& cell, int padding) {
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if (cell.empty()) return {};
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if (padding < 0) padding = 0;
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KitBox b;
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b.x = cell.x + padding;
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b.y = cell.y + padding;
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b.width = cell.width - 2 * padding;
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b.height = cell.height - 2 * padding;
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if (b.empty()) return {}; // padding collapsed the cell -> suppress
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return KitButtonBox{b};
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}
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SliderGeometry computeSlider(const KitBox& control, double value,
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int handleSize, int trackThickness) {
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if (control.empty() || handleSize <= 0 || trackThickness <= 0) return {};
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// The handle must fit in both axes; too small -> nothing sensible to draw.
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if (control.width < handleSize || control.height < handleSize) return {};
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if (value < 0.0) value = 0.0;
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if (value > 1.0) value = 1.0;
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const int half = handleSize / 2;
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// Track: horizontally inset by half the handle at each end so the handle's centre
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// travels only within the control; vertically centred at trackThickness.
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KitBox track;
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track.x = control.x + half;
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track.width = control.width - handleSize; // travel span for the handle centre
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if (track.width < 0) track.width = 0;
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track.height = trackThickness;
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track.y = control.y + (control.height - trackThickness) / 2;
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// Handle centre travels [track.x, track.x + track.width]; its box is centred on that.
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const int centre = track.x + static_cast<int>(value * track.width + 0.5);
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KitBox handle;
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handle.x = centre - half;
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handle.y = control.y + (control.height - handleSize) / 2;
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handle.width = handleSize;
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handle.height = handleSize;
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// Filled portion: from the track's left up to the handle centre.
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KitBox filled;
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filled.x = track.x;
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filled.y = track.y;
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filled.width = centre - track.x;
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if (filled.width < 0) filled.width = 0;
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filled.height = track.height;
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return SliderGeometry{track, filled, handle};
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}
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double sliderValueAt(int px, const KitBox& control, int handleSize) {
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if (control.empty() || handleSize <= 0) return 0.0;
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if (control.width < handleSize) return 0.0;
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const int half = handleSize / 2;
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const int trackStart = control.x + half;
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const int trackSpan = control.width - handleSize; // matches computeSlider's travel
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if (trackSpan <= 0) return 0.0;
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if (px <= trackStart) return 0.0;
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if (px >= trackStart + trackSpan) return 1.0;
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return static_cast<double>(px - trackStart) / static_cast<double>(trackSpan);
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}
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ListRowBox computeListRow(const KitBox& list, int index, int rowHeight) {
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if (list.empty() || rowHeight <= 0 || index < 0) return {};
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const int top = list.y + index * rowHeight;
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// Fully below the list bottom -> clipped away entirely -> no box.
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if (top >= list.y + list.height) return {};
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KitBox b;
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b.x = list.x;
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b.y = top;
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b.width = list.width;
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b.height = rowHeight; // a partially-visible last row keeps full height; caller clips
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return ListRowBox{index, b};
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}
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int hitTestListRow(int px, int py, const KitBox& list, int rowHeight, int rowCount) {
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if (list.empty() || rowHeight <= 0 || rowCount <= 0) return -1;
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// Outside the list band entirely.
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if (px < list.x || px >= list.x + list.width ||
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py < list.y || py >= list.y + list.height)
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return -1;
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const int row = (py - list.y) / rowHeight;
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if (row < 0 || row >= rowCount) return -1; // in the empty tail past the last row
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return row;
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}
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int waveformColumnCount(const KitBox& box) {
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const int w = box.width - 4; // fixed 2px inset each side (matches drawWaveform)
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return w > 0 ? w : 0;
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}
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} // namespace reasampler::ui
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