Files
LEDMatrix/test/test_vegas_density.py
T
ChuckBuildsandClaude a413849891 Add overflow handling: keep ordered content whole instead of rotating a window
The width budget split any oversized plugin by advancing a window each cycle.
That is right for interchangeable items — news headlines, odds, stock prices —
but wrong for ordered content: a league table showed ranks 1-6, then resumed at
7 two rotations later, which reads as out of order and out of context. Nobody
needs rank 23 in a ticker; they need the top of the table, every time.

overflow_mode chooses between them:

  rotate   — advance a window each cycle so everything is seen eventually
             (unchanged default)
  truncate — always show the start and drop the rest, keeping ordered content
             coherent. Records no window state, so every pass starts at the top.

Per-plugin vegas_overflow overrides the global setting, since one install has
both kinds of plugin. Also adds per-plugin vegas_max_width_screens, so content
that must stay whole can be given more room — or uncapped with 0 — without
lifting the cap on every ticker.

Applied on the test rig: f1-scoreboard and ledmatrix-leaderboard set to
truncate, and baseball given 4.5 screens because it was showing 8 of 9 games
when the whole slate needed only a little more room. Verified: F1 now reports
"the first 10 of 116 ... the rest are not shown", baseball has dropped out of
the budget log entirely, and stocks, odds-ticker and stock-news still rotate.

Also corrects the crop log, which claimed "window advances next cycle"
unconditionally and so misreported truncated crops. A test now pins the
behaviour behind the message: truncate must leave no offset recorded.

Co-Authored-By: Claude <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01KEZK1P1Q1fu5pcuVrkrCFZ
2026-07-29 15:40:37 -04:00

1640 lines
67 KiB
Python

"""
Tests for the Vegas mode density work: dead-space trimming in PluginAdapter
and the configurable lead-in gap in ScrollHelper.
"""
from contextlib import contextmanager
import pytest
from PIL import Image
from src.common.scroll_helper import ScrollHelper
from src.vegas_mode.config import VegasModeConfig
from src.vegas_mode.geometry import column_has_ink
from src.vegas_mode.plugin_adapter import PluginAdapter
DISPLAY_W = 512
DISPLAY_H = 64
class FakeDisplayManager:
"""Stand-in offering the same contexts the real DisplayManager does.
capture_mode and render_size must both be present: the adapter degrades
gracefully when they are missing, so a fake without them would silently
exercise the degraded path instead of the real one.
"""
width = DISPLAY_W
height = DISPLAY_H
def __init__(self):
self.image = Image.new('RGB', (DISPLAY_W, DISPLAY_H))
self.draw = None
self._capture_mode_active = False
@contextmanager
def capture_mode(self):
self._capture_mode_active = True
try:
yield
finally:
self._capture_mode_active = False
@contextmanager
def render_size(self, width, height=None):
prev = self.image
target_w = max(1, min(int(width), DISPLAY_W))
target_h = max(1, min(int(height) if height else DISPLAY_H, DISPLAY_H))
try:
self.image = Image.new('RGB', (target_w, target_h))
yield
finally:
self.image = prev
def clear(self):
self.image = Image.new('RGB', self.image.size)
def update_display(self):
pass
class NativePlugin:
"""Plugin that returns pre-rendered Vegas content."""
def __init__(self, images):
self._images = images
def get_vegas_content(self):
return self._images
def canvas(content_spans, width=DISPLAY_W, height=DISPLAY_H):
"""Full-display canvas with white content in the given [x0, x1) spans."""
img = Image.new('RGB', (width, height), (0, 0, 0))
for x0, x1 in content_spans:
img.paste(Image.new('RGB', (x1 - x0, height), (255, 255, 255)), (x0, 0))
return img
def adapter_with(**overrides):
cfg = VegasModeConfig(**overrides)
return PluginAdapter(FakeDisplayManager(), cfg)
class TestAdapterTrimming:
def test_of_the_day_case_is_reclaimed(self):
# Measured on devpi: "No Data" occupying 35px of a 512px canvas bought
# 9.5s of black at 50px/s.
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([canvas([(4, 39)])])
images = adapter.get_content(plugin, 'of-the-day')
assert len(images) == 1
assert images[0].width == 35
def test_youtube_stats_case_is_reclaimed(self):
# Centred 142px of content on a 512px canvas: 185px black each side.
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([canvas([(185, 327)])])
images = adapter.get_content(plugin, 'youtube-stats')
assert images[0].width == 142
def test_padding_is_applied_within_available_margin(self):
adapter = adapter_with(content_padding=8)
plugin = NativePlugin([canvas([(185, 327)])])
images = adapter.get_content(plugin, 'youtube-stats')
assert images[0].width == 142 + 16
def test_interior_layout_gap_survives(self):
# A logo far left and a score far right is deliberate layout; closing
# the gap would corrupt the design rather than reclaim dead space.
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([canvas([(10, 40), (400, 460)])])
images = adapter.get_content(plugin, 'scoreboard')
assert images[0].width == 450 # 10..459
assert int(column_has_ink(images[0]).sum()) == 90
def test_wide_legitimate_content_is_left_alone(self):
# geochron uses 444 of 512 columns; only the real tail should go.
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([canvas([(0, 444)])])
images = adapter.get_content(plugin, 'geochron')
assert images[0].width == 444
def test_non_black_background_is_untouched(self):
adapter = adapter_with(content_padding=0)
bg = Image.new('RGB', (DISPLAY_W, DISPLAY_H), (0, 0, 40))
plugin = NativePlugin([bg])
images = adapter.get_content(plugin, 'weather')
assert images[0].width == DISPLAY_W
def test_each_image_of_a_multi_item_segment_is_trimmed(self):
# compose_scroll_content treats every image as its own item, so a
# per-image trim is what makes separator_width the real gap.
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([
canvas([(168, 344)]),
canvas([(200, 300)]),
canvas([(0, 512)]),
])
images = adapter.get_content(plugin, 'ledmatrix-flights')
assert [img.width for img in images] == [176, 100, 512]
def test_fully_blank_segment_contributes_nothing(self):
adapter = adapter_with()
plugin = NativePlugin([Image.new('RGB', (DISPLAY_W, DISPLAY_H))])
assert adapter.get_content(plugin, 'empty') is None
def test_blank_images_are_dropped_but_others_kept(self):
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([
canvas([(100, 150)]),
Image.new('RGB', (DISPLAY_W, DISPLAY_H)),
canvas([(200, 260)]),
])
images = adapter.get_content(plugin, 'mixed')
assert [img.width for img in images] == [50, 60]
def test_min_plugin_width_rejects_noise(self):
adapter = adapter_with(content_padding=0, min_plugin_width=32)
plugin = NativePlugin([canvas([(10, 14)])])
assert adapter.get_content(plugin, 'sliver') is None
def test_min_plugin_width_of_zero_keeps_everything(self):
adapter = adapter_with(content_padding=0, min_plugin_width=0)
plugin = NativePlugin([canvas([(10, 14)])])
images = adapter.get_content(plugin, 'sliver')
assert images[0].width == 4
def test_auto_trim_off_preserves_original_behaviour(self):
adapter = adapter_with(auto_trim=False)
plugin = NativePlugin([canvas([(4, 39)])])
images = adapter.get_content(plugin, 'of-the-day')
assert images[0].width == DISPLAY_W
def test_trim_threshold_ignores_near_black_noise(self):
# A very dark band should not be mistaken for content.
img = Image.new('RGB', (DISPLAY_W, DISPLAY_H), (0, 0, 0))
img.paste(Image.new('RGB', (100, DISPLAY_H), (3, 3, 3)), (0, 0))
img.paste(Image.new('RGB', (50, DISPLAY_H), (255, 255, 255)), (200, 0))
adapter = adapter_with(content_padding=0, trim_threshold=10)
images = adapter.get_content(NativePlugin([img]), 'noisy')
assert images[0].width == 50
def test_height_is_preserved_through_trim(self):
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([canvas([(100, 200)])])
images = adapter.get_content(plugin, 'x')
assert images[0].height == DISPLAY_H
def test_trimmed_result_is_cached(self):
adapter = adapter_with(content_padding=0)
plugin = NativePlugin([canvas([(100, 200)])])
first = adapter.get_content(plugin, 'cached')
# Swap the plugin's content; the cache should still serve the old size.
plugin._images = [canvas([(0, 512)])]
second = adapter.get_content(plugin, 'cached')
assert first[0].width == second[0].width == 100
def test_default_adapter_construction_still_works(self):
# Existing callers pass only the display manager.
adapter = PluginAdapter(FakeDisplayManager())
assert adapter.config.auto_trim is True
class TestWidthBudget:
def test_segment_within_budget_is_untouched(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=3.0)
plugin = NativePlugin([canvas([(0, 400)])])
assert adapter.get_content(plugin, 'small')[0].width == 400
def test_oversized_multi_item_segment_is_capped(self):
# 10 items of 400px = 4000px against a 1536px budget (3 x 512).
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=3.0)
items = [canvas([(0, 400)], width=400) for _ in range(10)]
images = adapter.get_content(NativePlugin(items), 'stock-news')
assert sum(i.width for i in images) <= 3 * DISPLAY_W
assert len(images) == 3 # 1200px; a 4th would exceed 1536
def test_deferred_items_appear_on_the_next_cycle(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
# Distinguish items by width so the rotation is observable.
items = [canvas([(0, w)], width=w) for w in (200, 210, 220, 230, 240)]
plugin = NativePlugin(items)
first = adapter.get_content(plugin, 'ticker')
adapter.invalidate_cache('ticker')
second = adapter.get_content(plugin, 'ticker')
assert [i.width for i in first] != [i.width for i in second]
def test_rotation_eventually_covers_every_item(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
widths = (200, 210, 220, 230, 240)
items = [canvas([(0, w)], width=w) for w in widths]
plugin = NativePlugin(items)
seen = set()
for _ in range(10):
adapter.invalidate_cache('ticker')
for img in adapter.get_content(plugin, 'ticker'):
seen.add(img.width)
assert seen == set(widths)
def test_single_oversized_image_is_cropped_to_budget(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
# A 6898px leaderboard strip, as measured on devpi. Solid ink means
# there is no blank column to snap to, so the cut lands on the budget.
plugin = NativePlugin([canvas([(0, 6898)], width=6898)])
images = adapter.get_content(plugin, 'ledmatrix-leaderboard')
assert len(images) == 1
assert images[0].width == DISPLAY_W
def test_single_image_crop_snaps_to_a_blank_column(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
# Content blocks with gaps; the cut should land in a gap, not mid-block.
spans = [(x, x + 90) for x in range(0, 2000, 100)]
plugin = NativePlugin([canvas(spans, width=2000)])
images = adapter.get_content(plugin, 'gapped')
assert images[0].width != DISPLAY_W
assert abs(images[0].width - DISPLAY_W) <= DISPLAY_W // 16 + 1
def test_single_image_window_advances_across_cycles(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
plugin = NativePlugin([canvas([(0, 3000)], width=3000)])
adapter.get_content(plugin, 'strip')
assert adapter._item_offsets['strip'] == DISPLAY_W
def test_budget_of_zero_disables_the_cap(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=0)
plugin = NativePlugin([canvas([(0, 6898)], width=6898)])
assert adapter.get_content(plugin, 'huge')[0].width == 6898
def test_rotation_resets_when_content_shrinks_to_fit(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
big = [canvas([(0, 300)], width=300) for _ in range(5)]
adapter.get_content(NativePlugin(big), 'shrink')
assert 'shrink' in adapter._item_offsets
adapter.invalidate_cache('shrink')
adapter.get_content(NativePlugin([canvas([(0, 100)], width=100)]), 'shrink')
assert 'shrink' not in adapter._item_offsets
def test_one_item_wider_than_budget_is_still_shown(self):
# Never return nothing just because the first whole item overflows.
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
items = [canvas([(0, 900)], width=900), canvas([(0, 100)], width=100)]
images = adapter.get_content(NativePlugin(items), 'wide-first')
assert len(images) >= 1
assert images[0].width == 900
class TestPluginBoundaryGaps:
"""separator_width belongs between plugins; intra_plugin_gap within one."""
def _pipeline(self, grouped, **cfg):
from src.vegas_mode.render_pipeline import RenderPipeline
class FakeStream:
def get_grouped_content_for_composition(self):
return grouped
def get_active_plugin_ids(self):
return [pid for pid, _ in grouped]
class DM:
width = DISPLAY_W
height = DISPLAY_H
def set_scrolling_state(self, *a):
pass
return RenderPipeline(VegasModeConfig(**cfg), DM(), FakeStream())
def test_separator_only_at_plugin_boundaries(self):
# Two plugins, two rows each. Expect: row row [sep] row row. These rows
# are drawn flush to their edges, so the intra-plugin gap is the full
# min_content_separation.
rows = [Image.new('RGB', (100, DISPLAY_H), (255, 255, 255)) for _ in range(4)]
pipeline = self._pipeline(
[('a', rows[:2]), ('b', rows[2:])],
separator_width=32, intra_plugin_gap=8, min_content_separation=24,
lead_in_width=0,
)
assert pipeline.compose_scroll_content()
ink = column_has_ink(pipeline.scroll_helper.cached_image)
assert ink[:100].all()
assert not ink[100:124].any() # measured gap inside plugin a
assert ink[124:224].all()
assert not ink[224:256].any() # separator between a and b
assert ink[256:356].all()
assert not ink[356:380].any() # measured gap inside plugin b
assert ink[380:480].all()
def test_total_width_uses_both_gap_sizes(self):
rows = [Image.new('RGB', (100, DISPLAY_H), (255, 255, 255)) for _ in range(4)]
pipeline = self._pipeline(
[('a', rows[:2]), ('b', rows[2:])],
separator_width=32, intra_plugin_gap=8, min_content_separation=24,
lead_in_width=0,
)
pipeline.compose_scroll_content()
# 4 rows + 2 measured intra gaps (24 each) + 1 separator
assert pipeline.scroll_helper.cached_image.width == 400 + 48 + 32
def test_f1_shaped_case_stays_below_the_separator_width(self):
# 12 rows from one plugin. Previously each boundary got the full 32px
# separator (352px of gap); rows are now spaced by measured separation,
# which for flush rows is min_content_separation.
rows = [Image.new('RGB', (128, DISPLAY_H), (255, 255, 255)) for _ in range(12)]
pipeline = self._pipeline(
[('f1-scoreboard', rows)],
separator_width=32, intra_plugin_gap=8, min_content_separation=24,
lead_in_width=0,
)
pipeline.compose_scroll_content()
width = pipeline.scroll_helper.cached_image.width
assert width == 12 * 128 + 11 * 24
assert width < 12 * 128 + 11 * 32 # cheaper than the old flat separator
def test_single_row_plugin_image_is_not_copied(self):
row = Image.new('RGB', (100, DISPLAY_H), (255, 255, 255))
pipeline = self._pipeline([('solo', [row])], lead_in_width=0)
assert pipeline._join_plugin_rows([row]) is row
def test_rows_butt_together_only_when_both_gap_settings_are_zero(self):
# intra_plugin_gap alone no longer decides this: min_content_separation
# would still push flush rows apart, which is the point of it.
rows = [Image.new('RGB', (50, DISPLAY_H), (255, 255, 255)) for _ in range(3)]
pipeline = self._pipeline(
[('a', rows)], separator_width=32, intra_plugin_gap=0,
min_content_separation=0, lead_in_width=0)
pipeline.compose_scroll_content()
assert pipeline.scroll_helper.cached_image.width == 150
assert column_has_ink(pipeline.scroll_helper.cached_image).all()
def test_empty_grouping_fails_composition(self):
pipeline = self._pipeline([])
assert pipeline.compose_scroll_content() is False
class TestWidthBudgetCountsGaps:
def test_budget_accounts_for_intra_plugin_gaps(self):
# 8 rows of 200px = 1600px of pixels, but with 8px gaps the real
# occupancy is 1600 + 56 = 1656px. Against a 512px budget the row count
# must be chosen using the gap-inclusive cost.
adapter = adapter_with(
content_padding=0, max_plugin_width_ratio=1.0, intra_plugin_gap=8)
items = [canvas([(0, 200)], width=200) for _ in range(8)]
images = adapter.get_content(NativePlugin(items), 'rows')
n = len(images)
assert 200 * n + 8 * (n - 1) <= DISPLAY_W
def test_gap_free_config_fits_more_rows(self):
items = [canvas([(0, 200)], width=200) for _ in range(8)]
with_gap = adapter_with(
content_padding=0, max_plugin_width_ratio=1.0, intra_plugin_gap=64)
without = adapter_with(
content_padding=0, max_plugin_width_ratio=1.0, intra_plugin_gap=0)
assert len(without.get_content(NativePlugin(items), 'r')) >= \
len(with_gap.get_content(NativePlugin(items), 'r'))
class TestStreamGrouping:
def _stream(self, segments):
from src.vegas_mode.stream_manager import StreamManager
from collections import deque
sm = StreamManager.__new__(StreamManager)
import threading
sm._buffer_lock = threading.RLock()
sm._active_buffer = deque(segments)
return sm
def _seg(self, plugin_id, count, mode=None):
from src.vegas_mode.stream_manager import ContentSegment
from src.plugin_system.base_plugin import VegasDisplayMode
imgs = [Image.new('RGB', (10, 8)) for _ in range(count)]
return ContentSegment(
plugin_id=plugin_id, images=imgs, total_width=10 * count,
display_mode=mode or VegasDisplayMode.SCROLL)
def test_grouping_preserves_plugin_boundaries(self):
sm = self._stream([self._seg('a', 3), self._seg('b', 1)])
grouped = sm.get_grouped_content_for_composition()
assert [(pid, len(imgs)) for pid, imgs in grouped] == [('a', 3), ('b', 1)]
def test_static_segments_are_skipped(self):
from src.plugin_system.base_plugin import VegasDisplayMode
sm = self._stream([
self._seg('a', 2),
self._seg('paused', 1, VegasDisplayMode.STATIC),
self._seg('b', 1),
])
assert [pid for pid, _ in sm.get_grouped_content_for_composition()] == ['a', 'b']
def test_imageless_segments_are_skipped(self):
sm = self._stream([self._seg('a', 0), self._seg('b', 2)])
assert [pid for pid, _ in sm.get_grouped_content_for_composition()] == ['b']
def test_flat_accessor_still_matches_grouped_total(self):
sm = self._stream([self._seg('a', 3), self._seg('b', 2)])
assert len(sm.get_all_content_for_composition()) == 5
class TestApiBoundsMatchValidate:
"""
The web API's accepted range for each Vegas setting must agree with
VegasModeConfig.validate(), which is what actually gates Vegas starting.
A looser API bound saves a value with a 200 and then makes
VegasModeCoordinator.start() bail out with only a log line, so the ticker
silently never runs. A tighter one rejects a legitimate value with a 400.
Both happened before this test existed.
"""
# (config key, min, max) as validate() enforces them.
EXPECTED = {
'scroll_speed': (1, 200),
'separator_width': (0, 128),
'intra_plugin_gap': (0, 128),
'target_fps': (30, 200),
'buffer_ahead': (1, 5),
'trim_threshold': (0, 254),
'content_padding': (0, 128),
'min_plugin_width': (0, 512),
'plugins_per_cycle': (1, 50),
}
def _api_numeric_fields(self):
"""Extract the numeric_fields map from api_v3 without importing Flask."""
import ast
import pathlib
src = pathlib.Path('web_interface/blueprints/api_v3.py').read_text()
tree = ast.parse(src)
for node in ast.walk(tree):
if not isinstance(node, ast.Assign):
continue
targets = [t.id for t in node.targets if isinstance(t, ast.Name)]
if 'numeric_fields' not in targets:
continue
if not isinstance(node.value, ast.Dict):
continue
found = {}
for key, value in zip(node.value.keys, node.value.values):
if not isinstance(key, ast.Constant):
continue
if not str(key.value).startswith('vegas_'):
break
cfg_key, lo, hi = [ast.literal_eval(e) for e in value.elts]
found[cfg_key] = (lo, hi)
if found:
return found
raise AssertionError("could not locate the vegas numeric_fields map")
def test_every_bound_matches_validate(self):
api = self._api_numeric_fields()
mismatched = {
key: (api[key], expected)
for key, expected in self.EXPECTED.items()
if key in api and api[key] != expected
}
assert not mismatched, f"API bounds disagree with validate(): {mismatched}"
@pytest.mark.parametrize('key,bounds', sorted(EXPECTED.items()))
def test_validate_accepts_both_endpoints(self, key, bounds):
lo, hi = bounds
for value in (lo, hi):
cfg = VegasModeConfig(**{key: value})
errors = [e for e in cfg.validate() if key in e]
assert not errors, f"{key}={value} should be valid, got {errors}"
@pytest.mark.parametrize('key,bounds', sorted(EXPECTED.items()))
def test_validate_rejects_just_outside(self, key, bounds):
lo, hi = bounds
for value in (lo - 1, hi + 1):
cfg = VegasModeConfig(**{key: value})
errors = [e for e in cfg.validate() if key in e]
assert errors, f"{key}={value} should be rejected"
class TestCycleSizing:
def test_plugins_per_cycle_defaults_above_buffer_ahead(self):
cfg = VegasModeConfig()
assert cfg.plugins_per_cycle == 6
assert cfg.plugins_per_cycle > cfg.buffer_ahead + 1
def test_plugins_per_cycle_parses(self):
cfg = VegasModeConfig.from_config(
{'display': {'vegas_scroll': {'plugins_per_cycle': 10}}})
assert cfg.plugins_per_cycle == 10
def test_max_plugin_width_ratio_parses(self):
cfg = VegasModeConfig.from_config(
{'display': {'vegas_scroll': {'max_plugin_width_ratio': 1.5}}})
assert cfg.max_plugin_width_ratio == 1.5
@pytest.mark.parametrize('overrides,bad_key', [
({'plugins_per_cycle': 0}, 'plugins_per_cycle'),
({'plugins_per_cycle': 99}, 'plugins_per_cycle'),
({'max_plugin_width_ratio': -1.0}, 'max_plugin_width_ratio'),
])
def test_validate_rejects_out_of_range(self, overrides, bad_key):
errors = VegasModeConfig(**overrides).validate()
assert any(bad_key in e for e in errors), errors
class TestScrollHelperLeadGap:
def test_default_lead_gap_is_display_width(self):
# Standalone tickers rely on scrolling in from off-screen; that
# behaviour must not change for the many non-Vegas callers.
sh = ScrollHelper(128, 32)
sh.create_scrolling_image([Image.new('RGB', (100, 32), (255, 0, 0))],
item_gap=0, element_gap=0)
assert sh.cached_image.width == 128 + 100
assert not column_has_ink(sh.cached_image)[:128].any()
def test_zero_lead_gap_starts_on_content(self):
sh = ScrollHelper(128, 32)
sh.create_scrolling_image([Image.new('RGB', (100, 32), (255, 0, 0))],
item_gap=0, element_gap=0, lead_gap=0)
assert sh.cached_image.width == 100
assert column_has_ink(sh.cached_image)[0]
def test_explicit_lead_gap_is_honoured(self):
sh = ScrollHelper(128, 32)
sh.create_scrolling_image([Image.new('RGB', (100, 32), (255, 0, 0))],
item_gap=0, element_gap=0, lead_gap=16)
assert sh.cached_image.width == 116
ink = column_has_ink(sh.cached_image)
assert not ink[:16].any()
assert ink[16:].all()
def test_negative_lead_gap_is_clamped(self):
sh = ScrollHelper(128, 32)
sh.create_scrolling_image([Image.new('RGB', (100, 32), (255, 0, 0))],
item_gap=0, element_gap=0, lead_gap=-50)
assert sh.cached_image.width == 100
def test_total_scroll_width_matches_image(self):
# The cycle-complete check compares against total_scroll_width, so a
# mismatch here would cut cycles short or overrun them.
sh = ScrollHelper(128, 32)
items = [Image.new('RGB', (60, 32), (255, 0, 0)) for _ in range(3)]
sh.create_scrolling_image(items, item_gap=32, element_gap=0, lead_gap=0)
assert sh.total_scroll_width == sh.cached_image.width
assert sh.cached_image.width == 60 * 3 + 32 * 2
def test_item_gaps_are_unaffected_by_lead_gap(self):
sh = ScrollHelper(128, 32)
items = [Image.new('RGB', (10, 32), (255, 0, 0)) for _ in range(2)]
sh.create_scrolling_image(items, item_gap=20, element_gap=0, lead_gap=0)
ink = column_has_ink(sh.cached_image)
assert ink[:10].all()
assert not ink[10:30].any()
assert ink[30:40].all()
class TestConfigSurface:
def test_new_keys_parse_from_config(self):
cfg = VegasModeConfig.from_config({'display': {'vegas_scroll': {
'auto_trim': False,
'trim_threshold': 25,
'content_padding': 4,
'min_plugin_width': 64,
'lead_in_width': 32,
}}})
assert cfg.auto_trim is False
assert cfg.trim_threshold == 25
assert cfg.content_padding == 4
assert cfg.min_plugin_width == 64
assert cfg.lead_in_width == 32
def test_defaults_favour_trimming(self):
cfg = VegasModeConfig.from_config({})
assert cfg.auto_trim is True
assert cfg.lead_in_width == 0
assert cfg.content_padding == 8
def test_round_trips_through_to_dict(self):
cfg = VegasModeConfig(trim_threshold=20, lead_in_width=64)
restored = VegasModeConfig.from_config(
{'display': {'vegas_scroll': cfg.to_dict()}})
assert restored.trim_threshold == 20
assert restored.lead_in_width == 64
def test_update_applies_new_keys(self):
cfg = VegasModeConfig()
cfg.update({'display': {'vegas_scroll': {'content_padding': 16}}})
assert cfg.content_padding == 16
@pytest.mark.parametrize('overrides,bad_key', [
({'trim_threshold': 300}, 'trim_threshold'),
({'trim_threshold': -1}, 'trim_threshold'),
({'content_padding': -5}, 'content_padding'),
({'content_padding': 500}, 'content_padding'),
({'min_plugin_width': -1}, 'min_plugin_width'),
({'lead_in_width': -1}, 'lead_in_width'),
])
def test_validate_rejects_out_of_range(self, overrides, bad_key):
errors = VegasModeConfig(**overrides).validate()
assert any(bad_key in e for e in errors), errors
def test_valid_config_has_no_errors(self):
assert VegasModeConfig(
trim_threshold=10, content_padding=8,
min_plugin_width=8, lead_in_width=0,
).validate() == []
class TestRenderWidthResolution:
"""Vegas asks plugins to render narrower so layouts compact, not crop."""
class CfgPlugin:
def __init__(self, cfg=None):
self.config = cfg or {}
def get_vegas_content(self):
return None
def test_defaults_to_full_width(self):
adapter = adapter_with()
assert adapter.resolve_render_width(self.CfgPlugin(), 'p') == DISPLAY_W
def test_global_percentage_applies(self):
adapter = adapter_with(render_width_pct=50)
assert adapter.resolve_render_width(self.CfgPlugin(), 'p') == DISPLAY_W // 2
def test_per_plugin_override_beats_global(self):
adapter = adapter_with(render_width_pct=50)
plugin = self.CfgPlugin({'vegas_width_pct': 30})
assert adapter.resolve_render_width(plugin, 'p') == int(DISPLAY_W * 0.3)
def test_per_plugin_can_opt_back_to_full_width(self):
adapter = adapter_with(render_width_pct=30)
plugin = self.CfgPlugin({'vegas_width_pct': 100})
assert adapter.resolve_render_width(plugin, 'p') == DISPLAY_W
@pytest.mark.parametrize('bad', [0, 5, 150, -10, 'wide', None, ''])
def test_invalid_override_falls_back_to_global(self, bad):
adapter = adapter_with(render_width_pct=50)
plugin = self.CfgPlugin({'vegas_width_pct': bad})
assert adapter.resolve_render_width(plugin, 'p') == DISPLAY_W // 2
def test_plugin_without_config_is_safe(self):
adapter = adapter_with(render_width_pct=50)
class NoCfg:
pass
assert adapter.resolve_render_width(NoCfg(), 'p') == DISPLAY_W // 2
def test_never_exceeds_panel_width(self):
adapter = adapter_with(render_width_pct=100)
assert adapter.resolve_render_width(self.CfgPlugin(), 'p') <= DISPLAY_W
class TestMeasuredSeparation:
"""Rows are spaced by measured blank, not a flat additive gap."""
def _pipeline(self, grouped, **cfg):
from src.vegas_mode.render_pipeline import RenderPipeline
class FakeStream:
def get_grouped_content_for_composition(self):
return grouped
def get_active_plugin_ids(self):
return [pid for pid, _ in grouped]
class DM:
width = DISPLAY_W
height = DISPLAY_H
def set_scrolling_state(self, *a):
pass
return RenderPipeline(VegasModeConfig(**cfg), DM(), FakeStream())
def test_flush_rows_are_pushed_to_the_target(self):
# The reported problem: score cards drawn edge to edge sat 8px apart.
rows = [Image.new('RGB', (100, DISPLAY_H), (255, 255, 255)) for _ in range(3)]
p = self._pipeline([('scores', rows)],
intra_plugin_gap=8, min_content_separation=24,
lead_in_width=0)
block = p._join_plugin_rows(rows)
assert block.width == 300 + 24 * 2
ink = column_has_ink(block)
assert not ink[100:124].any()
assert ink[124:224].all()
def test_rows_with_margins_are_not_pushed_further(self):
# Each row already carries 12px blank per side = 24px facing total,
# which meets the target, so only the floor is added.
rows = [canvas([(12, 88)], width=100) for _ in range(3)]
p = self._pipeline([('padded', rows)],
intra_plugin_gap=0, min_content_separation=24,
lead_in_width=0)
block = p._join_plugin_rows(rows)
assert block.width == 300
def test_floor_still_applies_when_target_is_met(self):
rows = [canvas([(12, 88)], width=100) for _ in range(2)]
p = self._pipeline([('padded', rows)],
intra_plugin_gap=6, min_content_separation=24,
lead_in_width=0)
assert p._join_plugin_rows(rows).width == 200 + 6
def test_gaps_are_per_pair_not_uniform(self):
# Flush row then a padded row: the two gaps must differ.
flush = Image.new('RGB', (100, DISPLAY_H), (255, 255, 255))
padded = canvas([(20, 80)], width=100)
p = self._pipeline([('mixed', [flush, padded, flush])],
intra_plugin_gap=0, min_content_separation=24,
lead_in_width=0)
block = p._join_plugin_rows([flush, padded, flush])
# gap1: flush right(0) + padded left(20) = 20 -> add 4
# gap2: padded right(20) + flush left(0) = 20 -> add 4
assert block.width == 300 + 4 + 4
def test_zero_target_falls_back_to_the_floor(self):
rows = [Image.new('RGB', (50, DISPLAY_H), (255, 255, 255)) for _ in range(2)]
p = self._pipeline([('a', rows)],
intra_plugin_gap=5, min_content_separation=0,
lead_in_width=0)
assert p._join_plugin_rows(rows).width == 100 + 5
class TestNewConfigKeys:
def test_render_width_pct_parses(self):
cfg = VegasModeConfig.from_config(
{'display': {'vegas_scroll': {'render_width_pct': 40}}})
assert cfg.render_width_pct == 40
def test_min_content_separation_parses(self):
cfg = VegasModeConfig.from_config(
{'display': {'vegas_scroll': {'min_content_separation': 16}}})
assert cfg.min_content_separation == 16
def test_defaults(self):
cfg = VegasModeConfig()
assert cfg.render_width_pct == 100
assert cfg.min_content_separation == 24
@pytest.mark.parametrize('overrides,bad_key', [
({'render_width_pct': 5}, 'render_width_pct'),
({'render_width_pct': 101}, 'render_width_pct'),
({'min_content_separation': -1}, 'min_content_separation'),
({'min_content_separation': 300}, 'min_content_separation'),
])
def test_validate_rejects_out_of_range(self, overrides, bad_key):
errors = VegasModeConfig(**overrides).validate()
assert any(bad_key in e for e in errors), errors
class TestCycleEndsBeforeWrap:
"""
get_visible_portion wraps the head of the strip into the right side of the
frame once scroll_position + display_width passes the end. With a leading
blank that was invisible; with lead_in_width=0 it showed the cycle's first
plugin re-entering while the last one exited, then a recompose replaced
both — the reported "switched mid-scroll".
"""
def _pipeline(self, strip_width, **cfg):
from src.vegas_mode.render_pipeline import RenderPipeline
class FakeStream:
def get_grouped_content_for_composition(self):
return [('a', [Image.new('RGB', (strip_width, DISPLAY_H), (255, 255, 255))])]
def get_active_plugin_ids(self):
return ['a']
class DM:
width = DISPLAY_W
height = DISPLAY_H
def __init__(self):
self.image = Image.new('RGB', (DISPLAY_W, DISPLAY_H))
def set_scrolling_state(self, *a):
pass
def update_display(self):
pass
p = RenderPipeline(VegasModeConfig(lead_in_width=0, **cfg), DM(), FakeStream())
assert p.compose_scroll_content()
return p
def _advance_to(self, pipeline, distance):
pipeline.scroll_helper.total_distance_scrolled = distance
pipeline.scroll_helper.scroll_position = float(distance)
def test_cycle_is_not_complete_before_the_wrap_point(self):
p = self._pipeline(2000)
self._advance_to(p, 2000 - DISPLAY_W - 1)
p.render_frame()
assert not p.is_cycle_complete()
def test_cycle_completes_exactly_at_the_wrap_point(self):
p = self._pipeline(2000)
self._advance_to(p, 2000 - DISPLAY_W)
p.render_frame()
assert p.is_cycle_complete()
def test_completes_a_full_display_width_earlier_than_the_strip_end(self):
# The whole point: it must not run to total_scroll_width, which is
# where the wrapped content has already been on screen for 10s at
# 50px/s on a 512px panel.
p = self._pipeline(3000)
self._advance_to(p, 3000 - DISPLAY_W - 1)
p.render_frame()
assert not p.is_cycle_complete()
self._advance_to(p, 3000 - DISPLAY_W)
p.render_frame()
assert p.is_cycle_complete()
def test_strip_narrower_than_the_display_does_not_complete_instantly(self):
# Subtracting the display width would go negative and end the cycle on
# the very first frame, spinning the recompose loop.
p = self._pipeline(200)
self._advance_to(p, 0)
p.render_frame()
assert not p.is_cycle_complete()
def test_strip_narrower_than_the_display_still_completes(self):
p = self._pipeline(200)
self._advance_to(p, 200)
p.render_frame()
assert p.is_cycle_complete()
def test_strip_exactly_the_display_width(self):
p = self._pipeline(DISPLAY_W)
self._advance_to(p, 0)
p.render_frame()
assert not p.is_cycle_complete()
self._advance_to(p, DISPLAY_W)
p.render_frame()
assert p.is_cycle_complete()
class TestBudgetIndependentOfTrim:
"""
Turning off margin trimming must not disable the per-plugin width cap —
they are unrelated concerns. Found in the field: with auto_trim off, the F1
scoreboard contributed 116 images / 14,848px untouched, producing a 33,821px
cycle.
"""
def test_budget_still_applies_with_trim_off(self):
adapter = adapter_with(auto_trim=False, max_plugin_width_ratio=1.0,
intra_plugin_gap=0, min_content_separation=0)
items = [canvas([(0, 400)], width=400) for _ in range(10)]
images = adapter.get_content(NativePlugin(items), 'f1-scoreboard')
assert sum(i.width for i in images) <= DISPLAY_W
def test_trim_off_still_leaves_content_untrimmed(self):
# The margins must survive; only the cap should act.
adapter = adapter_with(auto_trim=False, max_plugin_width_ratio=0)
images = adapter.get_content(NativePlugin([canvas([(4, 39)])]), 'x')
assert images[0].width == DISPLAY_W
def test_single_oversized_image_capped_with_trim_off(self):
adapter = adapter_with(auto_trim=False, max_plugin_width_ratio=1.0)
images = adapter.get_content(
NativePlugin([canvas([(0, 6898)], width=6898)]), 'leaderboard')
assert images[0].width <= DISPLAY_W + DISPLAY_W // 16
class TestBudgetUsesMeasuredGaps:
"""
The budget must count the gaps the compositor actually inserts. Assuming the
flat intra_plugin_gap under-counted by up to
(min_content_separation - intra_plugin_gap) per row, so a many-row plugin
overran its cap.
"""
def test_flush_rows_are_budgeted_with_the_measured_gap(self):
# 6 flush rows of 100px against a 512px budget. With 24px measured gaps
# only 4 fit (400 + 3*24 = 472; a 5th would be 596).
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
intra_plugin_gap=8, min_content_separation=24)
rows = [Image.new('RGB', (100, DISPLAY_H), (255, 255, 255)) for _ in range(6)]
images = adapter.get_content(NativePlugin(rows), 'rows')
n = len(images)
assert 100 * n + 24 * (n - 1) <= DISPLAY_W
assert n == 4
def test_larger_separation_fits_fewer_rows(self):
rows = [Image.new('RGB', (100, DISPLAY_H), (255, 255, 255)) for _ in range(8)]
tight = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
intra_plugin_gap=0, min_content_separation=0)
loose = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
intra_plugin_gap=0, min_content_separation=48)
assert len(loose.get_content(NativePlugin(rows), 'r')) < \
len(tight.get_content(NativePlugin(rows), 'r'))
def test_composed_block_respects_the_budget_end_to_end(self):
# The real invariant: what the compositor produces must fit the cap.
from src.vegas_mode.render_pipeline import RenderPipeline
cfg = dict(content_padding=0, max_plugin_width_ratio=1.0,
intra_plugin_gap=8, min_content_separation=24)
adapter = adapter_with(**cfg)
rows = [Image.new('RGB', (90, DISPLAY_H), (255, 255, 255)) for _ in range(9)]
selected = adapter.get_content(NativePlugin(rows), 'rows')
class FakeStream:
def get_grouped_content_for_composition(self):
return [('rows', selected)]
def get_active_plugin_ids(self):
return ['rows']
class DM:
width = DISPLAY_W
height = DISPLAY_H
def set_scrolling_state(self, *a):
pass
p = RenderPipeline(VegasModeConfig(lead_in_width=0, **cfg), DM(), FakeStream())
assert p._join_plugin_rows(selected).width <= DISPLAY_W
class TestRotationAcrossMultipleCycles:
"""
The single-image crop advances a window across cycles. The second and later
passes are where start + budget can land exactly on the image width, which
crashed find_blank_cut in the field and lost that plugin's content for the
cycle. First-pass-only tests never reach it.
"""
def test_window_advances_over_many_cycles_without_error(self):
# Mirrors the field case: 1840px stocks strip, 1536px budget, so the
# second pass starts at 1536 and start + budget == 3072 -> clamped to
# the 1840 width, i.e. target == img.width.
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=3.0)
strip = canvas([(0, 1840)], width=1840)
widths = []
for _ in range(8):
adapter.invalidate_cache('ledmatrix-stocks')
images = adapter.get_content(NativePlugin([strip]), 'ledmatrix-stocks')
assert images, "content must never be lost mid-rotation"
widths.append(images[0].width)
assert all(w > 0 for w in widths)
def test_offset_wraps_back_to_zero_at_the_end(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=3.0)
strip = canvas([(0, 1840)], width=1840)
seen_reset = False
for _ in range(6):
adapter.invalidate_cache('s')
adapter.get_content(NativePlugin([strip]), 's')
if adapter._item_offsets.get('s', 0) == 0:
seen_reset = True
assert seen_reset, "window should wrap round rather than stall at the end"
def test_multi_row_rotation_never_returns_empty(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
rows = [canvas([(0, 200)], width=200) for _ in range(7)]
for _ in range(10):
adapter.invalidate_cache('rows')
assert adapter.get_content(NativePlugin(rows), 'rows')
def word_strip(words, letter_w=7, letter_gap=1, item_gap=32, height=DISPLAY_H):
"""
Build a ticker-like strip: 'words' of solid blocks separated by 1px, with
a wide gap between words. Mirrors real rendered text, where the measured
gap between characters is a single column and the gap between items is 8px+.
Returns (image, list of (word_start, word_end) column ranges).
"""
spans = []
x = 0
for w_i, letters in enumerate(words):
start = x
for l_i in range(letters):
x += letter_w
if l_i < letters - 1:
x += letter_gap
spans.append((start, x))
if w_i < len(words) - 1:
x += item_gap
img = Image.new('RGB', (x, height), (0, 0, 0))
for w_i, letters in enumerate(words):
sx = spans[w_i][0]
for l_i in range(letters):
lx = sx + l_i * (letter_w + letter_gap)
img.paste(Image.new('RGB', (letter_w, height), (255, 255, 255)), (lx, 0))
return img, spans
class TestCutsNeverSplitWords:
"""
A cut placed in a 1px inter-letter gap orphans the tail of a word into the
next cycle. That is what produced a lone "y" from "Wednesday" floating
between two unrelated plugins.
"""
def test_cut_lands_in_an_item_gap_not_between_letters(self):
from src.vegas_mode.geometry import blank_runs
img, spans = word_strip([9, 9, 9, 9, 9]) # five 9-letter words
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=0.2,
min_cut_gap=6)
# Budget deliberately lands mid-word if cut naively.
images = adapter.get_content(NativePlugin([img]), 'ticker')
cut_width = images[0].width
# Every qualifying gap midpoint is a legal cut; assert we used one.
legal = {0, img.width} | {(a + b) // 2 for a, b in blank_runs(img, 6)}
assert cut_width in {c for c in legal}, \
f"cut at {cut_width} is not an item boundary; legal: {sorted(legal)}"
def test_no_partial_letter_at_either_edge(self):
# A split letter shows as a lit column touching the crop edge with the
# rest of its glyph missing. Requiring the edges to be blank is the
# simplest way to assert we cut inside a gap.
from src.vegas_mode.geometry import column_has_ink
img, _ = word_strip([9, 9, 9, 9, 9, 9])
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=0.25,
min_cut_gap=6)
out = adapter.get_content(NativePlugin([img]), 'ticker')[0]
ink = column_has_ink(out)
assert not ink[0] or not ink[-1] or out.width == img.width, \
"crop edges land on ink, so a glyph was cut through"
def test_rotation_never_orphans_a_fragment(self):
# Walk the window across the whole strip and assert no slice is a
# narrow sliver, which is what an orphaned letter looks like.
img, _ = word_strip([9] * 8)
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=0.2,
min_cut_gap=6)
widths = []
for _ in range(12):
adapter.invalidate_cache('ticker')
out = adapter.get_content(NativePlugin([img]), 'ticker')
assert out
widths.append(out[0].width)
# A single 7px letter is the fragment signature; nothing that narrow.
assert min(widths) > 10, f"orphaned fragment in {widths}"
def test_continuous_image_is_still_cut_to_budget(self):
# A map or chart has no item gaps; the gap rule must not let it escape
# the cap, because any column there is as good as another.
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
min_cut_gap=6)
solid = canvas([(0, 4000)], width=4000)
out = adapter.get_content(NativePlugin([solid]), 'geochron')[0]
assert out.width == DISPLAY_W
def test_overruns_budget_rather_than_splitting(self):
# One very long item with no internal gap: the cut must wait for the
# next real boundary even though that exceeds the budget.
img, spans = word_strip([80, 9], letter_gap=1, item_gap=32)
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=0.1,
min_cut_gap=6)
out = adapter.get_content(NativePlugin([img]), 'longitem')[0]
assert out.width > int(DISPLAY_W * 0.1), \
"should overrun to the next boundary instead of cutting the item"
def test_min_cut_gap_of_two_still_excludes_letter_spacing(self):
from src.vegas_mode.geometry import blank_runs
img, _ = word_strip([9, 9, 9])
# 1px letter gaps must never qualify, whatever the setting.
assert all(end - start >= 2 for start, end in blank_runs(img, 2))
def test_permissive_gap_rule_would_have_split_a_word(self):
"""
Pins the actual regression. With min_cut_gap=1 the 1px gaps between
letters qualify as cut points, so the crop lands inside a word; with the
default it can only land in the wide gaps between items.
"""
from src.vegas_mode.geometry import blank_runs
img, _ = word_strip([9, 9, 9, 9, 9])
letter_gaps = {(a + b) // 2 for a, b in blank_runs(img, 1)}
item_gaps = {(a + b) // 2 for a, b in blank_runs(img, 6)}
# The permissive rule offers many more cut points, and the extra ones
# are exactly the mid-word positions.
assert len(letter_gaps) > len(item_gaps)
mid_word = letter_gaps - item_gaps
assert mid_word, "expected inter-letter gaps to exist in the fixture"
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=0.2,
min_cut_gap=6)
out = adapter.get_content(NativePlugin([img]), 'ticker')[0]
assert out.width not in mid_word, \
f"cut at {out.width} is a mid-word position"
class TestCaptureModeAlwaysHeld:
"""
Building Vegas content is off-screen work, but plugins are free to call
update_display() while doing it. Outside capture_mode that write reaches the
hardware and flashes the panel mid-scroll, so every path that runs plugin
render code must hold capture_mode — including at full width, where the
narrowing context is a no-op.
"""
class RecordingDM:
width = DISPLAY_W
height = DISPLAY_H
def __init__(self):
self.image = Image.new('RGB', (DISPLAY_W, DISPLAY_H))
self.draw = None
self.capture_depth = 0
self.hardware_writes_while_uncaptured = 0
from contextlib import contextmanager
@contextmanager
def capture_mode(self):
self.capture_depth += 1
try:
yield
finally:
self.capture_depth -= 1
@contextmanager
def render_size(self, width, height=None):
yield
def clear(self):
self.image = Image.new('RGB', (DISPLAY_W, DISPLAY_H))
def update_display(self):
if self.capture_depth == 0:
self.hardware_writes_while_uncaptured += 1
class PushyPlugin:
"""A plugin that pushes to the display while building Vegas content."""
def __init__(self, dm, images):
self.display_manager = dm
self.config = {}
self._images = images
def get_vegas_content(self):
self.display_manager.update_display()
return self._images
def _run(self, **cfg):
dm = self.RecordingDM()
adapter = PluginAdapter(dm, VegasModeConfig(**cfg))
plugin = self.PushyPlugin(dm, [canvas([(100, 300)])])
adapter.get_content(plugin, 'pushy')
return dm
def test_no_hardware_write_escapes_at_full_width(self):
dm = self._run(render_width_pct=100)
assert dm.hardware_writes_while_uncaptured == 0
def test_no_hardware_write_escapes_when_narrowing(self):
dm = self._run(render_width_pct=50)
assert dm.hardware_writes_while_uncaptured == 0
def test_capture_mode_is_released_afterwards(self):
dm = self._run(render_width_pct=100)
assert dm.capture_depth == 0
def test_capture_mode_released_even_when_the_plugin_raises(self):
dm = self.RecordingDM()
adapter = PluginAdapter(dm, VegasModeConfig())
class Boom:
def __init__(self, d):
self.display_manager = d
self.config = {}
def get_vegas_content(self):
raise ValueError("boom")
adapter.get_content(Boom(dm), 'boom')
assert dm.capture_depth == 0
class TestContinuousExtension:
"""
Continuous mode extends one strip instead of swapping in a new one, so the
next group scrolls in from the right: no freeze, no substitution, and no
restart with the viewport already full.
"""
def _pipeline(self, groups, **cfg):
"""groups: list of lists of (plugin_id, [images]) handed out in turn."""
from src.vegas_mode.render_pipeline import RenderPipeline
class FakeStream:
def __init__(self):
self.calls = []
self.plugin_manager = type('PM', (), {'plugins': {}})()
self.plugin_adapter = None
self._i = 0
def get_grouped_content_for_composition(self):
return groups[0] if groups else []
def get_active_plugin_ids(self):
return [pid for pid, _ in (groups[0] if groups else [])]
def take_next_group(self, count=None, offscreen_only=False):
self.calls.append(offscreen_only)
if self._i >= len(groups):
return []
g = groups[self._i]
self._i += 1
return g
class DM:
width = DISPLAY_W
height = DISPLAY_H
def __init__(self):
self.image = Image.new('RGB', (DISPLAY_W, DISPLAY_H))
self.pushes = 0
def set_scrolling_state(self, *a):
pass
def update_display(self):
self.pushes += 1
cfg.setdefault('lead_in_width', 0)
stream = FakeStream()
return RenderPipeline(VegasModeConfig(**cfg), DM(), stream), stream
def _block(self, w):
return Image.new('RGB', (w, DISPLAY_H), (255, 255, 255))
def test_needs_extension_only_near_the_end(self):
p, _ = self._pipeline([[('a', [self._block(400)])]],
continuous_scroll=True, extend_threshold_screens=2.0)
p.compose_scroll_content()
# 400px strip on a 512px display: already inside the threshold.
assert p.needs_extension()
def test_no_extension_when_plenty_remains(self):
p, _ = self._pipeline([[('a', [self._block(4000)])]],
continuous_scroll=True, extend_threshold_screens=2.0)
p.compose_scroll_content()
assert not p.needs_extension()
def test_disabled_never_extends(self):
p, _ = self._pipeline([[('a', [self._block(100)])]],
continuous_scroll=False)
p.compose_scroll_content()
assert not p.needs_extension()
def test_extension_grows_the_strip_and_keeps_position(self):
groups = [[('a', [self._block(600)])], [('b', [self._block(600)])]]
p, _ = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
before_width = p.scroll_helper.total_scroll_width
p.scroll_helper.scroll_position = 120.0
assert p.extend_scroll_content()
assert p.scroll_helper.total_scroll_width > before_width
assert p.scroll_helper.scroll_position == 120.0
def test_extension_never_completes_the_cycle(self):
groups = [[('a', [self._block(600)])], [('b', [self._block(600)])]]
p, _ = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
p.extend_scroll_content()
assert not p.scroll_helper.scroll_complete
def test_deferred_plugins_are_dropped_when_unresolvable(self):
# A None entry means "needs the render thread"; with no plugin instance
# available it must be skipped rather than crashing or inserting a gap.
groups = [[('a', [self._block(300)])],
[('needs-canvas', None), ('b', [self._block(300)])]]
p, _ = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
assert p.extend_scroll_content()
assert p.scroll_helper.total_scroll_width > 300
def test_empty_next_group_fails_cleanly(self):
# compose_scroll_content does not consume a group, so the first extend
# takes groups[0]; the second finds nothing left.
groups = [[('a', [self._block(300)])], []]
p, _ = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
assert p.extend_scroll_content() is True
assert p.extend_scroll_content() is False
def test_prefetch_requests_offscreen_only(self):
# The background thread must never take a canvas-touching path.
groups = [[('a', [self._block(600)])], [('b', [self._block(600)])]]
p, stream = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
p.start_prefetch()
if p._prefetch_thread:
p._prefetch_thread.join(timeout=5)
assert stream.calls == [True]
def test_prepared_group_is_used_without_refetching(self):
groups = [[('a', [self._block(600)])], [('b', [self._block(600)])]]
p, stream = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
p.start_prefetch()
if p._prefetch_thread:
p._prefetch_thread.join(timeout=5)
assert p.extend_scroll_content()
# One offscreen prefetch, then one more kicked off for the group after.
assert stream.calls[0] is True
assert p._prepared_group is None or isinstance(p._prepared_group, list)
def test_strip_stays_bounded_over_many_extensions(self):
groups = [[('g%d' % i, [self._block(600)])] for i in range(30)]
p, _ = self._pipeline(groups, continuous_scroll=True)
p.compose_scroll_content()
widths = []
for _ in range(25):
p.scroll_helper.scroll_position += 300
p.scroll_helper.total_distance_scrolled += 300
if p.needs_extension():
p.extend_scroll_content()
widths.append(p.scroll_helper.total_scroll_width)
assert max(widths) < 6000, f"strip grew unbounded: {max(widths)}"
class TestDeferredDraining:
"""
Canvas-bound plugins cannot be prepared off the render thread, so they are
queued and appended one per frame. Doing all of them at once held the render
thread for 1.75s on hardware.
"""
def _pipeline(self, group, plugin_images, **cfg):
from src.vegas_mode.render_pipeline import RenderPipeline
class FakeAdapter:
def __init__(self, mapping):
self.mapping = mapping
self.calls = []
def get_content(self, plugin, plugin_id, offscreen_only=False):
self.calls.append((plugin_id, offscreen_only))
return self.mapping.get(plugin_id)
class FakeStream:
def __init__(self):
self.plugin_manager = type(
'PM', (), {'plugins': {pid: object() for pid in plugin_images}})()
self.plugin_adapter = FakeAdapter(plugin_images)
self._served = False
def get_grouped_content_for_composition(self):
return [('seed', [Image.new('RGB', (600, DISPLAY_H), (255, 255, 255))])]
def get_active_plugin_ids(self):
return ['seed']
def take_next_group(self, count=None, offscreen_only=False):
if self._served:
return []
self._served = True
return group
class DM:
width = DISPLAY_W
height = DISPLAY_H
def __init__(self):
self.image = Image.new('RGB', (DISPLAY_W, DISPLAY_H))
def set_scrolling_state(self, *a):
pass
def update_display(self):
pass
cfg.setdefault('lead_in_width', 0)
cfg.setdefault('continuous_scroll', True)
stream = FakeStream()
p = RenderPipeline(VegasModeConfig(**cfg), DM(), stream)
p.compose_scroll_content()
return p, stream
def _img(self, w):
return [Image.new('RGB', (w, DISPLAY_H), (255, 255, 255))]
def test_deferred_plugins_are_queued_not_fetched_inline(self):
group = [('ready', self._img(200)), ('needs-canvas', None)]
p, stream = self._pipeline(group, {'needs-canvas': self._img(150)})
p.extend_scroll_content()
# Only queued at this point — no fetch for it yet.
assert p.has_deferred()
assert all(pid != 'needs-canvas' for pid, _ in stream.plugin_adapter.calls)
def test_draining_appends_one_at_a_time(self):
group = [('a', None), ('b', None), ('c', None)]
images = {k: self._img(120) for k in ('a', 'b', 'c')}
p, _ = self._pipeline(group, images)
p.extend_scroll_content()
widths = [p.scroll_helper.total_scroll_width]
drained = 0
while p.has_deferred():
assert p.drain_deferred()
drained += 1
widths.append(p.scroll_helper.total_scroll_width)
assert drained == 3
assert widths == sorted(widths), "each drain should extend the strip"
def test_drain_uses_the_full_path_not_offscreen(self):
group = [('needs-canvas', None)]
p, stream = self._pipeline(group, {'needs-canvas': self._img(150)})
p.extend_scroll_content()
p.drain_deferred()
assert ('needs-canvas', False) in stream.plugin_adapter.calls
def test_drain_is_a_no_op_with_an_empty_queue(self):
p, _ = self._pipeline([('a', self._img(200))], {})
p.extend_scroll_content()
assert not p.has_deferred()
assert p.drain_deferred() is False
def test_scroll_position_survives_draining(self):
group = [('a', None), ('b', None)]
p, _ = self._pipeline(group, {k: self._img(120) for k in ('a', 'b')})
p.extend_scroll_content()
p.scroll_helper.scroll_position = 200.0
while p.has_deferred():
p.drain_deferred()
assert p.scroll_helper.scroll_position == 200.0
def test_a_plugin_yielding_nothing_is_dropped_from_the_queue(self):
group = [('empty', None)]
p, _ = self._pipeline(group, {'empty': None})
p.extend_scroll_content()
assert p.drain_deferred() is False
assert not p.has_deferred(), "must not retry forever"
def test_all_deferred_group_still_reports_progress(self):
# Nothing appendable right now, but the queue will extend the strip.
group = [('a', None), ('b', None)]
p, _ = self._pipeline(group, {k: self._img(100) for k in ('a', 'b')})
assert p.extend_scroll_content() is True
assert p.has_deferred()
def test_drains_are_spaced_when_lookahead_is_healthy(self):
# With plenty of strip ahead there is no hurry, so consecutive drains
# must be throttled rather than firing back to back.
group = [('a', None), ('b', None)]
p, _ = self._pipeline(group, {k: self._img(4000) for k in ('a', 'b')})
p.extend_scroll_content()
assert p.drain_deferred() is True # first one goes through
# Strip is now long, so the next is deferred by the interval.
assert p.scroll_helper.remaining_unscrolled() > (
DISPLAY_W * p.config.extend_threshold_screens)
assert p.drain_deferred() is False
assert p.has_deferred(), "queue must be kept, not dropped"
def test_urgent_drain_ignores_the_throttle(self):
# When the strip is nearly exhausted, content matters more than smoothness.
group = [('a', None), ('b', None)]
p, _ = self._pipeline(group, {k: self._img(80) for k in ('a', 'b')})
p.extend_scroll_content()
assert p.drain_deferred() is True
assert p.drain_deferred() is True
class TestOverflowMode:
"""
Rotating a window through content only makes sense when the items are
interchangeable. For ordered content it shows the middle of a ranked list —
ranks 1-6, then 7 onwards two rotations later, which reads as out of order.
"""
class Cfg:
def __init__(self, cfg=None):
self.config = cfg or {}
def get_vegas_content(self):
return None
def test_default_is_rotate(self):
adapter = adapter_with()
assert adapter.resolve_overflow_mode(self.Cfg(), 'p') == 'rotate'
def test_global_mode_applies(self):
adapter = adapter_with(overflow_mode='truncate')
assert adapter.resolve_overflow_mode(self.Cfg(), 'p') == 'truncate'
def test_per_plugin_override_wins(self):
adapter = adapter_with(overflow_mode='rotate')
plugin = self.Cfg({'vegas_overflow': 'truncate'})
assert adapter.resolve_overflow_mode(plugin, 'p') == 'truncate'
@pytest.mark.parametrize('bad', ['sideways', '', None, 5])
def test_invalid_override_falls_back(self, bad):
adapter = adapter_with(overflow_mode='rotate')
plugin = self.Cfg({'vegas_overflow': bad})
assert adapter.resolve_overflow_mode(plugin, 'p') == 'rotate'
def test_truncate_always_shows_the_same_opening_rows(self):
# The reported problem: a ranked list should not resume from the middle.
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
intra_plugin_gap=0, min_content_separation=0,
overflow_mode='truncate')
rows = [canvas([(0, 200)], width=200) for _ in range(8)]
plugin = NativePlugin(rows)
first = adapter.get_content(plugin, 'ranks')
adapter.invalidate_cache('ranks')
second = adapter.get_content(plugin, 'ranks')
assert len(first) == len(second)
assert 'ranks' not in adapter._item_offsets, "must not advance a window"
def test_rotate_still_advances(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
intra_plugin_gap=0, min_content_separation=0,
overflow_mode='rotate')
rows = [canvas([(0, 200)], width=200) for _ in range(8)]
adapter.get_content(NativePlugin(rows), 'ticker')
assert adapter._item_offsets.get('ticker', 0) > 0
def test_truncate_on_a_single_wide_image_starts_at_zero(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
overflow_mode='truncate')
strip = canvas([(0, 5000)], width=5000)
plugin = NativePlugin([strip])
first = adapter.get_content(plugin, 'table')[0]
adapter.invalidate_cache('table')
second = adapter.get_content(plugin, 'table')[0]
assert first.tobytes() == second.tobytes(), "window must not advance"
class TestPerPluginWidthBudget:
class Cfg:
def __init__(self, cfg=None):
self.config = cfg or {}
def get_vegas_content(self):
return None
def test_global_ratio_by_default(self):
adapter = adapter_with(max_plugin_width_ratio=3.0)
assert adapter._width_budget(self.Cfg(), 'p') == DISPLAY_W * 3
def test_per_plugin_override_widens(self):
adapter = adapter_with(max_plugin_width_ratio=3.0)
plugin = self.Cfg({'vegas_max_width_screens': 8})
assert adapter._width_budget(plugin, 'p') == DISPLAY_W * 8
def test_per_plugin_zero_means_uncapped(self):
adapter = adapter_with(max_plugin_width_ratio=3.0)
plugin = self.Cfg({'vegas_max_width_screens': 0})
assert adapter._width_budget(plugin, 'p') == 0
def test_uncapped_plugin_keeps_all_its_content(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0)
class Wide(NativePlugin):
def __init__(self, images):
super().__init__(images)
self.config = {'vegas_max_width_screens': 0}
strip = canvas([(0, 6000)], width=6000)
assert adapter.get_content(Wide([strip]), 'whole')[0].width == 6000
@pytest.mark.parametrize('bad', ['wide', -1, None, ''])
def test_invalid_override_falls_back_to_global(self, bad):
adapter = adapter_with(max_plugin_width_ratio=2.0)
plugin = self.Cfg({'vegas_max_width_screens': bad})
assert adapter._width_budget(plugin, 'p') == DISPLAY_W * 2
def test_no_plugin_uses_the_global(self):
adapter = adapter_with(max_plugin_width_ratio=2.0)
assert adapter._width_budget() == DISPLAY_W * 2
def test_truncate_single_image_never_records_an_offset(self):
# The behavioural guarantee behind the log message: no window state is
# kept, so every pass starts at the top.
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
overflow_mode='truncate')
strip = canvas([(0, 5000)], width=5000)
for _ in range(4):
adapter.invalidate_cache('table')
adapter.get_content(NativePlugin([strip]), 'table')
assert 'table' not in adapter._item_offsets
def test_rotate_single_image_does_record_an_offset(self):
adapter = adapter_with(content_padding=0, max_plugin_width_ratio=1.0,
overflow_mode='rotate')
strip = canvas([(0, 5000)], width=5000)
adapter.get_content(NativePlugin([strip]), 'ticker')
assert adapter._item_offsets.get('ticker', 0) > 0