Files
reasampler/tests/test_sample_chrome.cpp
T
daniel 65f6070348 Bake window: derived note lengths carry exact durations, not ladder rungs — a long take is no longer cut at 384 beats
Hold keeps its picker. Also: one home for the %-fold, duration-ordered Hold travel, and a corrupt tail degrades to absent rather than fabricating one.
2026-08-01 21:10:38 -04:00

221 lines
10 KiB
C++

// Standalone tests for reasampler::instrument::ui::sample_chrome — no VST3, no REAPER, no
// test framework.
//
// Covers: the chrome band's two rows (toolbar over strip row, tiling the band exactly); the
// toolbar's fixed right-anchored run in order (Hold, bake, preview, velocity cell,
// Mono|Stereo, Browse) with the title taking the remainder; the velocity and Hold knobs
// centred in their cells above their labels; the piano strip owning its whole row at every
// width; no rect on the
// toolbar overlapping any other; degenerate bands yielding no inverted rects; and the preview
// button's play-triangle glyph, which sits inside the button without changing its rect.
#include "../src/core/instrument/ui/knob_deck.h"
#include "../src/core/instrument/ui/sample_bands.h"
#include "../src/core/instrument/ui/sample_chrome.h"
#include <cstdio>
#include <initializer_list>
using namespace reasampler;
using namespace reasampler::instrument::ui;
static int g_fail = 0;
#define CHECK(cond) do { if(!(cond)) { \
std::printf("FAIL line %d: %s\n", __LINE__, #cond); ++g_fail; } } while(0)
// The real constant, not a copy: the shell passes kDeckKnobSize into chromeRects, and a
// hand-copied stand-in here had already drifted from it once.
static constexpr int kKnob = kDeckKnobSize;
static Rect chromeBand(int w = kEditorMinWidth, int h = kEditorMinHeight) {
return computeSampleBands(w, h, 120).chrome;
}
// True when the two rects share at least one pixel.
static bool overlaps(const Rect& a, const Rect& b) {
if (a.empty() || b.empty()) return false;
return a.x < b.right() && b.x < a.right() && a.y < b.bottom() && b.y < a.bottom();
}
static void testRowsTileTheBandExactly() {
const Rect band = chromeBand();
const ChromeRects r = chromeRects(band, kKnob);
CHECK(r.toolbar.y == band.y);
CHECK(r.controls.y == r.toolbar.bottom());
CHECK(r.controls.bottom() == band.bottom());
CHECK(r.toolbar.x == band.x && r.toolbar.right() == band.right());
CHECK(r.controls.x == band.x && r.controls.right() == band.right());
// The toolbar has to be tall enough for the velocity knob cell it now carries.
CHECK(r.toolbar.height >= kKnob);
CHECK(r.controls.height > 0);
}
static void testToolbarRunIsOrderedRightToLeftWithoutOverlap() {
const Rect band = chromeBand();
const ChromeRects r = chromeRects(band, kKnob);
// Rightmost first: Browse, stereo, mono, velocity cell, preview, title.
CHECK(r.navBrowse.right() == band.right() - kPad);
CHECK(r.navBrowse.width == kNavButtonWidth);
CHECK(r.chanStereo.right() <= r.navBrowse.x);
CHECK(r.chanMono.right() == r.chanStereo.x);
CHECK(r.velCell.right() <= r.chanMono.x);
CHECK(r.preview.right() <= r.velCell.x);
CHECK(r.bake.right() <= r.preview.x);
CHECK(r.bake.width == kBakeButtonWidth);
CHECK(r.bake.y == r.preview.y); // shares the run's button baseline
CHECK(r.bake.height == r.preview.height);
CHECK(r.holdCell.right() <= r.bake.x);
CHECK(r.title.right() <= r.holdCell.x); // the title yields to the whole run
CHECK(r.title.x == band.x + kPad);
CHECK(r.title.width > 0);
// Every toolbar rect sits inside the toolbar row.
const Rect items[] = {r.title, r.holdCell, r.bake, r.preview, r.velCell, r.chanMono,
r.chanStereo, r.navBrowse};
for (const Rect& it : items) {
CHECK(it.y >= r.toolbar.y && it.bottom() <= r.toolbar.bottom());
}
}
static void testChromePartsNeverOverlapAtAnyWidth() {
for (int w = 560; w <= 2400; w += 37) {
const ChromeRects r = chromeRects(chromeBand(w, 620), kKnob);
// The strip row and the toolbar row are disjoint by construction; the strip must
// stay inside its own row, clear of every control.
CHECK(!overlaps(r.toolbar, r.rootStrip));
CHECK(r.rootStrip.y >= r.controls.y && r.rootStrip.bottom() <= r.controls.bottom());
const Rect items[] = {r.holdCell, r.bake, r.preview, r.velCell, r.chanMono,
r.chanStereo, r.navBrowse};
for (const Rect& it : items) {
CHECK(!overlaps(it, r.rootStrip));
CHECK(!overlaps(it, r.title));
}
// The run's own members are pairwise disjoint (the knob/label pairs are inside their
// cells, so they are checked against the cell's neighbours, not the cell).
constexpr int kRunCount = static_cast<int>(sizeof(items) / sizeof(items[0]));
for (int i = 0; i < kRunCount; ++i) {
for (int j = i + 1; j < kRunCount; ++j) CHECK(!overlaps(items[i], items[j]));
}
}
}
static void testStripOwnsItsWholeRowAndGrowsWithTheWindow() {
const ChromeRects narrow = chromeRects(chromeBand(600, 620), kKnob);
const ChromeRects wide = chromeRects(chromeBand(1000, 620), kKnob);
for (const ChromeRects* r : {&narrow, &wide}) {
// Inset only by the shared band pad — the same inset the waveform band beneath uses,
// so the two line up. No control shortens it.
CHECK(r->rootStrip.x == r->controls.x + kPad);
CHECK(r->rootStrip.right() == r->controls.right() - kPad);
}
CHECK(wide.rootStrip.width == narrow.rootStrip.width + 400);
// The fixed run keeps its size; every extra pixel goes to the title, not the run.
CHECK(wide.preview.width == narrow.preview.width);
CHECK(wide.velCell.width == narrow.velCell.width);
CHECK(wide.title.width == narrow.title.width + 400);
}
static void testVelocityKnobIsCentredInItsCellAboveTheLabel() {
const ChromeRects r = chromeRects(chromeBand(), kKnob);
CHECK(r.velKnob.width == kKnob && r.velKnob.height == kKnob);
CHECK(r.velKnob.y == r.velCell.y);
const int leftGap = r.velKnob.x - r.velCell.x;
const int rightGap = r.velCell.right() - r.velKnob.right();
CHECK(leftGap == rightGap); // horizontally centred in the cell
CHECK(r.velLabel.y == r.velKnob.bottom());
CHECK(r.velLabel.bottom() == r.velCell.bottom());
CHECK(r.velLabel.height > 0);
CHECK(r.velLabel.x == r.velCell.x && r.velLabel.right() == r.velCell.right());
}
// The Hold cell reserves its width whether or not the control is drawn, so the title slot
// beside it holds still (sample_chrome.h owns the reasoning). Its interior follows the
// velocity cell's grammar exactly.
static void testHoldCellIsReservedAndFollowsTheVelocityCellGrammar() {
const ChromeRects r = chromeRects(chromeBand(), kKnob);
CHECK(r.holdCell.width == r.velCell.width);
CHECK(r.holdCell.y == r.velCell.y && r.holdCell.height == r.velCell.height);
CHECK(r.holdKnob.width == kKnob && r.holdKnob.height == kKnob);
CHECK(r.holdKnob.y == r.holdCell.y);
CHECK(r.holdKnob.x - r.holdCell.x == r.holdCell.right() - r.holdKnob.right());
CHECK(r.holdLabel.y == r.holdKnob.bottom());
CHECK(r.holdLabel.bottom() == r.holdCell.bottom());
CHECK(r.holdLabel.x == r.holdCell.x && r.holdLabel.right() == r.holdCell.right());
// Widening the window leaves the reservation alone; the title takes the extra pixels.
const ChromeRects wide = chromeRects(chromeBand(1000, 620), kKnob);
CHECK(wide.holdCell.width == r.holdCell.width);
}
static void testDegenerateBandYieldsNoInvertedRects() {
const ChromeRects empty = chromeRects(Rect{}, kKnob);
CHECK(empty.toolbar.empty() && empty.controls.empty());
CHECK(empty.rootStrip.empty() && empty.preview.empty());
// A band far too narrow for the fixed run: everything collapses left, nothing inverts.
const ChromeRects tiny = chromeRects(Rect::ltrb(0, 0, 40, kTitleHeight + kChromeRowHeight),
kKnob);
const Rect items[] = {tiny.title, tiny.holdCell, tiny.holdKnob, tiny.holdLabel,
tiny.bake, tiny.preview, tiny.velCell, tiny.velKnob, tiny.velLabel,
tiny.chanMono, tiny.chanStereo, tiny.navBrowse,
tiny.rootStrip};
for (const Rect& it : items) CHECK(it.right() >= it.x && it.bottom() >= it.y);
}
static void testPreviewGlyphSitsInsideTheButtonAndPointsRight() {
const ChromeRects r = chromeRects(chromeBand(), kKnob);
const PreviewGlyph g = previewGlyph(r.preview);
CHECK(!g.empty());
// Wholly inside the button — the glyph replaces the label, it does not resize the target.
CHECK(g.leftX >= r.preview.x && g.apexX <= r.preview.right());
CHECK(g.topY >= r.preview.y && g.bottomY <= r.preview.bottom());
// Right-pointing, and the apex on the button's own centre line so it reads as balanced.
CHECK(g.apexX > g.leftX);
CHECK(g.apexY == r.preview.y + r.preview.height / 2);
CHECK(g.apexY - g.topY == g.bottomY - g.apexY); // isosceles about the centre line
// The button's rect is what the hit-test uses, and the glyph must not have moved it: the
// preview button still sits at the run's fixed size, exactly where the text button did.
CHECK(r.preview.width == 64 && r.preview.height == 24);
}
static void testPreviewGlyphDegradesRatherThanOverflowing() {
// An unusably small button yields an empty glyph (draw nothing) rather than a triangle
// spilling past the button edge.
CHECK(previewGlyph(Rect{}).empty());
CHECK(previewGlyph(Rect::ltrb(0, 0, 6, 6)).empty());
// A tall, wide button caps the glyph instead of scaling without bound.
const PreviewGlyph big = previewGlyph(Rect::ltrb(0, 0, 400, 200));
CHECK(!big.empty());
CHECK(big.bottomY - big.topY <= 14);
}
static void testToolbarOnlyBandStillPlacesTheNav() {
// A band clipped to just the toolbar row: the strip row is empty but Browse still
// resolves, so the empty state's call-to-action is never unreachable.
const ChromeRects r = chromeRects(Rect::ltrb(0, 0, 400, kTitleHeight), kKnob);
CHECK(r.toolbar.height == kTitleHeight);
CHECK(r.controls.empty());
CHECK(r.rootStrip.empty());
CHECK(r.navBrowse.width == kNavButtonWidth);
}
int main() {
testRowsTileTheBandExactly();
testToolbarRunIsOrderedRightToLeftWithoutOverlap();
testChromePartsNeverOverlapAtAnyWidth();
testStripOwnsItsWholeRowAndGrowsWithTheWindow();
testVelocityKnobIsCentredInItsCellAboveTheLabel();
testHoldCellIsReservedAndFollowsTheVelocityCellGrammar();
testDegenerateBandYieldsNoInvertedRects();
testPreviewGlyphSitsInsideTheButtonAndPointsRight();
testPreviewGlyphDegradesRatherThanOverflowing();
testToolbarOnlyBandStillPlacesTheNav();
if (g_fail == 0) {
std::printf("sample_chrome: all tests passed\n");
return 0;
}
std::printf("sample_chrome: %d failure(s)\n", g_fail);
return 1;
}