// sample_chrome.cpp — see sample_chrome.h. Pure math; no host types. #include "core/instrument/ui/sample_chrome.h" #include #include "core/instrument/ui/sample_bands.h" // kPad namespace reasampler::instrument::ui { namespace { // The toolbar row carries the whole control run, so it is taller than the Browse modal's // plain kTitleHeight bar — the velocity knob cell (knob over label) sets the floor. Both // rows still fit the band the allocator hands out (kTitleHeight + kChromeRowHeight). constexpr int kToolbarHeight = 44; constexpr int kStripBandHeight = 30; constexpr int kRunGap = 6; // between adjacent items of the toolbar run constexpr int kChanSegW = 52; constexpr int kChanSegH = 18; constexpr int kCurveBtnSize = 24; constexpr int kVelCellW = 44; constexpr int kVelLabelH = 12; constexpr int kPreviewBtnW = 64; constexpr int kRunButtonH = 24; // Browse and Preview } // namespace ChromeRects chromeRects(const Rect& chrome, int knobSize) { ChromeRects r; if (chrome.empty()) return r; const int toolbarH = std::min(kToolbarHeight, chrome.height); r.toolbar = Rect::ltrb(chrome.x, chrome.y, chrome.right(), chrome.y + toolbarH); r.controls = Rect::ltrb(chrome.x, r.toolbar.bottom(), chrome.right(), chrome.bottom()); const Rect& row = r.toolbar; const auto topFor = [&row](int h) { return row.y + (row.height - h) / 2; }; const auto leftOf = [&row](int edge, int w) { return std::max(row.x, edge - w); }; // The fixed run, right to left: Browse, Mono|Stereo, curve, velocity cell, preview. const int navH = std::min(kRunButtonH, row.height); const int navTop = topFor(navH); const int navRight = std::max(row.x, row.right() - kPad); r.navBrowse = Rect::ltrb(leftOf(navRight, kNavButtonWidth), navTop, navRight, navTop + navH); const int chanTop = topFor(kChanSegH); const int chanRight = leftOf(r.navBrowse.x, kRunGap); r.chanStereo = Rect::ltrb(leftOf(chanRight, kChanSegW), chanTop, chanRight, chanTop + kChanSegH); r.chanMono = Rect::ltrb(leftOf(r.chanStereo.x, kChanSegW), chanTop, r.chanStereo.x, chanTop + kChanSegH); const int curveTop = topFor(kCurveBtnSize); const int curveRight = leftOf(r.chanMono.x, kRunGap); r.curveBtn = Rect::ltrb(leftOf(curveRight, kCurveBtnSize), curveTop, curveRight, curveTop + kCurveBtnSize); const int cellH = std::min(row.height, knobSize + kVelLabelH); const int cellTop = topFor(cellH); const int cellRight = leftOf(r.curveBtn.x, kRunGap); r.velCell = Rect::ltrb(leftOf(cellRight, kVelCellW), cellTop, cellRight, cellTop + cellH); const int knobLeft = r.velCell.x + (r.velCell.width - knobSize) / 2; r.velKnob = Rect::ltrb(knobLeft, r.velCell.y, knobLeft + knobSize, r.velCell.y + std::min(knobSize, cellH)); r.velLabel = Rect::ltrb(r.velCell.x, r.velKnob.bottom(), r.velCell.right(), r.velCell.bottom()); const int prevTop = topFor(std::min(kRunButtonH, row.height)); const int prevRight = leftOf(r.velCell.x, kRunGap); r.preview = Rect::ltrb(leftOf(prevRight, kPreviewBtnW), prevTop, prevRight, prevTop + std::min(kRunButtonH, row.height)); // The title takes what the run leaves; clamped so a narrow window collapses it rather // than inverting it. r.title = Rect::ltrb(row.x + kPad, row.y, std::max(row.x + kPad, r.preview.x - kRunGap), row.bottom()); if (r.controls.empty()) return r; // The strip row belongs to the strip alone — inset only by the shared band pad, so it // lines up with the waveform band directly beneath it. const int stripH = std::min(kStripBandHeight, r.controls.height); const int stripTop = r.controls.y + (r.controls.height - stripH) / 2; r.rootStrip = Rect::ltrb(r.controls.x + kPad, stripTop, std::max(r.controls.x + kPad, r.controls.right() - kPad), stripTop + stripH); return r; } } // namespace reasampler::instrument::ui