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Download src/explicit_learning/renderers/plot.py from sungguk/visual-answerability: direct link, hf CLI and curl.
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40.1 kB
| """Deterministic, information-complete plot rendering. | |
| ``PlotRenderer`` draws directly from ``plot_world_v1`` with Pillow. Unlike the | |
| initial marker-only prototype, the image contains the information a solver needs: | |
| numeric or categorical x ticks, numeric y ticks, title/axis labels, a | |
| series-coloured legend, and line or grouped-bar geometry. | |
| Redacted points are never placed at their hidden y coordinate. A fixed vertical | |
| strip at the point's observed x spans the complete data region, and the hidden | |
| point breaks its line. Axis scaling uses ``world["render_domain"]`` when present; | |
| otherwise it is derived from visible points only. Consequently completion worlds | |
| that differ only in a hidden y value produce byte-identical pixel assets. | |
| """ | |
| from __future__ import annotations | |
| import io | |
| from collections.abc import Iterable, Mapping, Sequence | |
| from dataclasses import dataclass | |
| from fractions import Fraction | |
| from math import ceil, floor | |
| from typing import Any | |
| from ..dsl.ast import canonical_number_str, parse_number | |
| from ..sources.base import World | |
| from ..sources.world_ops import hidden_nodes | |
| from .base import ( | |
| GlyphRecord, | |
| RenderedAssets, | |
| RendererFamily, | |
| RendererKind, | |
| RenderError, | |
| _encode_uint32_png, | |
| build_render_manifest, | |
| build_text_manifest, | |
| font_sha256, | |
| validate_rendered_assets, | |
| ) | |
| _NAME = "plot_renderer" | |
| _VERSION = "3" | |
| _KIND: RendererKind = "plot" | |
| _MIN_WIDTH = 320 | |
| _MIN_HEIGHT = 220 | |
| _Y_TICKS = 5 | |
| _MAX_X_TICKS = 16 | |
| class _Point: | |
| node_id: str | |
| x_label: str | |
| x_value: Fraction | None | |
| y: Fraction | None | |
| y_label: str | |
| hidden: bool | |
| class _Series: | |
| node_id: str | |
| label: str | |
| points: tuple[_Point, ...] | |
| hidden: bool | |
| class _Domain: | |
| numeric_x: bool | |
| x_min: Fraction | |
| x_max: Fraction | |
| y_min: Fraction | |
| y_max: Fraction | |
| x_labels: tuple[str, ...] | |
| def manifest_record(self) -> dict[str, Any]: | |
| return { | |
| "numeric_x": self.numeric_x, | |
| "x_min": canonical_number_str(self.x_min) if self.numeric_x else None, | |
| "x_max": canonical_number_str(self.x_max) if self.numeric_x else None, | |
| "y_min": canonical_number_str(self.y_min), | |
| "y_max": canonical_number_str(self.y_max), | |
| "x_labels": list(self.x_labels), | |
| } | |
| class _Canvas: | |
| """Pillow RGBA canvas plus a same-pass integer owner canvas.""" | |
| def __init__(self, width: int, height: int, family: RendererFamily) -> None: | |
| import numpy as np | |
| from matplotlib.font_manager import findfont | |
| from PIL import Image, ImageDraw | |
| self.width = width | |
| self.height = height | |
| self.family = family | |
| self.image = Image.new("RGBA", (width, height), family.palette.get("background", "#FFFFFF")) | |
| self.owner_image = Image.new("I", (width, height), 0) | |
| self.draw = ImageDraw.Draw(self.image) | |
| self.owner_draw = ImageDraw.Draw(self.owner_image) | |
| self.owner_ids: list[str] = [] | |
| self.owner_index: dict[str, int] = {} | |
| self.glyphs: list[GlyphRecord] = [] | |
| self._font_path = findfont(family.font_name, fallback_to_default=False) | |
| self._font_sha256 = font_sha256(family.font_name) | |
| self._font_cache: dict[int, Any] = {} | |
| self._np = np | |
| def _owner(self, node_id: str) -> int: | |
| index = self.owner_index.get(node_id) | |
| if index is None: | |
| self.owner_ids.append(node_id) | |
| index = len(self.owner_ids) | |
| self.owner_index[node_id] = index | |
| return index | |
| def reserve(self, node_id: str) -> None: | |
| self._owner(node_id) | |
| def font(self, size: int) -> Any: | |
| from PIL import ImageFont | |
| size = max(7, int(size)) | |
| font = self._font_cache.get(size) | |
| if font is None: | |
| font = ImageFont.truetype(self._font_path, size=size) | |
| self._font_cache[size] = font | |
| return font | |
| def line( | |
| self, | |
| node_id: str, | |
| xy: Sequence[tuple[float, float]], | |
| *, | |
| fill: str, | |
| width: int, | |
| ) -> None: | |
| index = self._owner(node_id) | |
| self.draw.line(xy, fill=fill, width=width, joint="curve") | |
| self.owner_draw.line(xy, fill=index, width=max(1, width)) | |
| def rectangle( | |
| self, | |
| node_id: str | None, | |
| box: tuple[float, float, float, float], | |
| *, | |
| fill: str, | |
| outline: str | None = None, | |
| width: int = 1, | |
| ) -> None: | |
| self.draw.rectangle(box, fill=fill, outline=outline, width=width) | |
| index = 0 if node_id is None else self._owner(node_id) | |
| self.owner_draw.rectangle(box, fill=index) | |
| def ellipse( | |
| self, | |
| node_id: str, | |
| box: tuple[float, float, float, float], | |
| *, | |
| fill: str, | |
| outline: str, | |
| width: int = 1, | |
| ) -> None: | |
| index = self._owner(node_id) | |
| self.draw.ellipse(box, fill=fill, outline=outline, width=width) | |
| self.owner_draw.ellipse(box, fill=index) | |
| def text( | |
| self, | |
| node_id: str, | |
| text: str, | |
| xy: tuple[float, float], | |
| *, | |
| size: int, | |
| fill: str, | |
| anchor: str, | |
| max_width: float | None = None, | |
| ) -> tuple[int, int, int, int] | None: | |
| if not text: | |
| return None | |
| index = self._owner(node_id) | |
| x, y, font, bbox = self._text_layout( | |
| text, | |
| xy, | |
| size=size, | |
| anchor=anchor, | |
| max_width=max_width, | |
| ) | |
| self.draw.text((x, y), text, font=font, fill=fill, anchor=anchor) | |
| self.owner_draw.text((x, y), text, font=font, fill=index, anchor=anchor) | |
| self.glyphs.append( | |
| GlyphRecord( | |
| node_id=node_id, | |
| text=text, | |
| x0=bbox[0] / self.width, | |
| y0=(self.height - bbox[3]) / self.height, | |
| x1=bbox[2] / self.width, | |
| y1=(self.height - bbox[1]) / self.height, | |
| font_sha256=self._font_sha256, | |
| ) | |
| ) | |
| return bbox | |
| def text_bbox( | |
| self, | |
| text: str, | |
| xy: tuple[float, float], | |
| *, | |
| size: int, | |
| anchor: str, | |
| max_width: float | None = None, | |
| ) -> tuple[int, int, int, int]: | |
| """Measure text exactly as :meth:`text` will draw it, without painting.""" | |
| _, _, _, bbox = self._text_layout( | |
| text, | |
| xy, | |
| size=size, | |
| anchor=anchor, | |
| max_width=max_width, | |
| ) | |
| return bbox | |
| def _text_layout( | |
| self, | |
| text: str, | |
| xy: tuple[float, float], | |
| *, | |
| size: int, | |
| anchor: str, | |
| max_width: float | None, | |
| ) -> tuple[float, float, Any, tuple[int, int, int, int]]: | |
| font_size = size | |
| font = self.font(font_size) | |
| if max_width is not None: | |
| while font_size > 7: | |
| probe = self.draw.textbbox(xy, text, font=font, anchor=anchor) | |
| if probe[2] - probe[0] <= max_width: | |
| break | |
| font_size -= 1 | |
| font = self.font(font_size) | |
| x, y = xy | |
| bbox = self.draw.textbbox((x, y), text, font=font, anchor=anchor) | |
| if max_width is not None and bbox[2] - bbox[0] > max_width + 1: | |
| raise RenderError(f"plot text does not fit its allotted width: {text!r}") | |
| # Keep the complete glyph box within the raster while preserving its | |
| # requested alignment as closely as possible. | |
| if bbox[0] < 2: | |
| x += 2 - bbox[0] | |
| if bbox[2] > self.width - 2: | |
| x -= bbox[2] - (self.width - 2) | |
| if bbox[1] < 2: | |
| y += 2 - bbox[1] | |
| if bbox[3] > self.height - 2: | |
| y -= bbox[3] - (self.height - 2) | |
| raw_bbox = self.draw.textbbox((x, y), text, font=font, anchor=anchor) | |
| bbox = ( | |
| floor(raw_bbox[0]), | |
| floor(raw_bbox[1]), | |
| ceil(raw_bbox[2]), | |
| ceil(raw_bbox[3]), | |
| ) | |
| if bbox[0] < 0 or bbox[1] < 0 or bbox[2] > self.width or bbox[3] > self.height: | |
| raise RenderError(f"plot glyph is outside the canvas: {text!r}, bbox={bbox!r}") | |
| return x, y, font, bbox | |
| def finish(self) -> tuple[bytes, bytes, dict[str, int]]: | |
| owner_array = self._np.asarray(self.owner_image, dtype="<u4") | |
| rgba_buf = io.BytesIO() | |
| self.image.save(rgba_buf, format="PNG", compress_level=9, optimize=False) | |
| counts = { | |
| node_id: int(self._np.count_nonzero(owner_array == index)) | |
| for node_id, index in self.owner_index.items() | |
| } | |
| return rgba_buf.getvalue(), _encode_uint32_png(owner_array), counts | |
| class PlotRenderer: | |
| """Deterministic renderer for ``plot_world_v1``.""" | |
| name = _NAME | |
| version = _VERSION | |
| kind = _KIND | |
| def render( | |
| self, | |
| world: World, | |
| *, | |
| renderer_id: str, | |
| seed: int, | |
| width: int, | |
| height: int, | |
| family: RendererFamily | None = None, | |
| ) -> RenderedAssets: | |
| if world.get("world_schema") != "plot_world_v1": | |
| raise RenderError( | |
| f"plot renderer expects plot_world_v1, got {world.get('world_schema')!r}" | |
| ) | |
| family = family or _PLOT_TRAIN_FAMILY | |
| if family.kind != self.kind: | |
| raise RenderError( | |
| f"renderer family {family.name!r} has kind {family.kind!r}, expected {self.kind!r}" | |
| ) | |
| if renderer_id != family.name: | |
| raise RenderError(f"renderer_id {renderer_id!r} does not match family {family.name!r}") | |
| if width < _MIN_WIDTH or height < _MIN_HEIGHT: | |
| raise RenderError( | |
| f"plot canvas must be at least {_MIN_WIDTH}x{_MIN_HEIGHT}, got {width}x{height}" | |
| ) | |
| series = _parse_series(world) | |
| domain = _build_domain(world, series) | |
| canvas = _Canvas(width, height, family) | |
| visible = _draw_plot(canvas, world, series, domain, family) | |
| rgba_png, node_map_png, counts = canvas.finish() | |
| manifest = build_render_manifest( | |
| renderer_id=renderer_id, | |
| renderer_name=self.name, | |
| renderer_version=self.version, | |
| family=family, | |
| world=world, | |
| seed=seed, | |
| width=width, | |
| height=height, | |
| rgba_png=rgba_png, | |
| node_map_png=node_map_png, | |
| visible_node_ids=visible, | |
| owner_ids=canvas.owner_ids, | |
| node_pixel_counts=counts, | |
| glyph_count=len(canvas.glyphs), | |
| backend="pillow", | |
| backend_version=_pillow_version(), | |
| ) | |
| manifest["render_domain"] = domain.manifest_record() | |
| manifest["plot_type"] = _plot_type(world) | |
| assets = RenderedAssets( | |
| rgba_png=rgba_png, | |
| node_map_png=node_map_png, | |
| render_manifest=manifest, | |
| text_manifest=build_text_manifest(canvas.glyphs, world=world), | |
| ) | |
| validate_rendered_assets(assets) | |
| return assets | |
| def _parse_series(world: World) -> tuple[_Series, ...]: | |
| hidden = hidden_nodes(world) | |
| raw_series = world.get("series", []) or [] | |
| if not isinstance(raw_series, list) or not raw_series: | |
| raise RenderError("plot world has no series") | |
| output: list[_Series] = [] | |
| seen: set[str] = set() | |
| for raw in raw_series: | |
| if not isinstance(raw, Mapping): | |
| raise RenderError("plot series is not an object") | |
| sid = str(raw.get("id", "")) | |
| if not sid or sid in seen: | |
| raise RenderError(f"plot series has a missing/duplicate id: {sid!r}") | |
| seen.add(sid) | |
| is_series_hidden = sid in hidden | |
| points: list[_Point] = [] | |
| raw_points = raw.get("points", []) or [] | |
| if not isinstance(raw_points, list): | |
| raise RenderError(f"plot series {sid!r} points are not a list") | |
| for raw_point in raw_points: | |
| if not isinstance(raw_point, Mapping): | |
| raise RenderError(f"plot series {sid!r} contains a non-object point") | |
| pid = str(raw_point.get("id", "")) | |
| if not pid or pid in seen: | |
| raise RenderError(f"plot point has a missing/duplicate id: {pid!r}") | |
| seen.add(pid) | |
| x_label = str(raw_point.get("x", "")) | |
| if not x_label: | |
| raise RenderError(f"plot point {pid!r} has no x value") | |
| try: | |
| x_value: Fraction | None = parse_number(x_label) | |
| except (TypeError, ValueError, ZeroDivisionError): | |
| x_value = None | |
| is_hidden = is_series_hidden or pid in hidden | |
| if is_hidden: | |
| # A redacted point's content is deliberately opaque to layout. | |
| # In particular, ``None`` and alternate completion values must | |
| # produce the same observed raster. | |
| y: Fraction | None = None | |
| y_label = "" | |
| else: | |
| try: | |
| y = parse_number(raw_point.get("y", "")) | |
| except (TypeError, ValueError, ZeroDivisionError) as exc: | |
| raise RenderError(f"plot point {pid!r} has an invalid y value") from exc | |
| y_label = _exact_value_label(y) | |
| points.append( | |
| _Point( | |
| node_id=pid, | |
| x_label=x_label, | |
| x_value=x_value, | |
| y=y, | |
| y_label=y_label, | |
| hidden=is_hidden, | |
| ) | |
| ) | |
| output.append( | |
| _Series( | |
| node_id=sid, | |
| label=str(raw.get("label", sid)), | |
| points=tuple(points), | |
| hidden=is_series_hidden, | |
| ) | |
| ) | |
| if not any(s.points for s in output): | |
| raise RenderError("plot world has no points") | |
| return tuple(output) | |
| def _build_domain(world: World, series: Sequence[_Series]) -> _Domain: | |
| all_points = [point for item in series for point in item.points] | |
| numeric_x = all(point.x_value is not None for point in all_points) | |
| axis_values = _axis_values(world.get("x_axis")) | |
| x_labels = _dedup([*axis_values, *(point.x_label for point in all_points)]) | |
| if not x_labels: | |
| raise RenderError("plot world has no x labels") | |
| render_domain = world.get("render_domain") | |
| domain_map = render_domain if isinstance(render_domain, Mapping) else {} | |
| if numeric_x: | |
| numeric_values = [point.x_value for point in all_points if point.x_value is not None] | |
| x_min_override = _domain_bound(domain_map, "x", "min") | |
| x_max_override = _domain_bound(domain_map, "x", "max") | |
| x_min = x_min_override if x_min_override is not None else min(numeric_values) | |
| x_max = x_max_override if x_max_override is not None else max(numeric_values) | |
| else: | |
| x_min = Fraction(0) | |
| x_max = Fraction(max(1, len(x_labels) - 1)) | |
| x_min, x_max = _nondegenerate(x_min, x_max) | |
| visible_y = [ | |
| point.y | |
| for item in series | |
| if not item.hidden | |
| for point in item.points | |
| if not point.hidden and point.y is not None | |
| ] | |
| y_min_override = _domain_bound(domain_map, "y", "min") | |
| y_max_override = _domain_bound(domain_map, "y", "max") | |
| if visible_y: | |
| y_min = y_min_override if y_min_override is not None else min(visible_y) | |
| y_max = y_max_override if y_max_override is not None else max(visible_y) | |
| else: | |
| y_min = y_min_override if y_min_override is not None else Fraction(0) | |
| y_max = y_max_override if y_max_override is not None else Fraction(1) | |
| if "bar" in _plot_type(world) and y_min_override is None and y_max_override is None: | |
| y_min = min(y_min, Fraction(0)) | |
| y_max = max(y_max, Fraction(0)) | |
| y_min, y_max = _nondegenerate(y_min, y_max) | |
| if y_min_override is None and y_max_override is None: | |
| padding = (y_max - y_min) / 10 | |
| y_min -= padding | |
| y_max += padding | |
| return _Domain( | |
| numeric_x=numeric_x, | |
| x_min=x_min, | |
| x_max=x_max, | |
| y_min=y_min, | |
| y_max=y_max, | |
| x_labels=tuple(x_labels), | |
| ) | |
| def _draw_plot( | |
| canvas: _Canvas, | |
| world: World, | |
| series: Sequence[_Series], | |
| domain: _Domain, | |
| family: RendererFamily, | |
| ) -> tuple[str, ...]: | |
| width, height = canvas.width, canvas.height | |
| legend_width = max(118, min(210, int(width * 0.24))) | |
| left = max(62, int(width * 0.11)) | |
| right = width - legend_width | |
| top = max(54, int(height * 0.12)) | |
| bottom = height - max(58, int(height * 0.15)) | |
| if right - left < 140 or bottom - top < 100: | |
| raise RenderError("plot canvas leaves insufficient data area after labels/legend") | |
| text_color = family.palette.get("text", "#202020") | |
| axis_color = family.palette.get("axis", "#444444") | |
| grid_color = family.palette.get("grid", "#D8D8D8") | |
| plot_type = _plot_type(world) | |
| visible_series_count = sum(not item.hidden for item in series) | |
| x_padding = 0.0 | |
| if "bar" in plot_type: | |
| _, bar_width = _bar_dimensions(canvas.width, len(domain.x_labels), visible_series_count) | |
| x_padding = ((max(1, visible_series_count) - 1) / 2 + 0.42) * bar_width + 2 | |
| x_span = right - left - 2 * x_padding | |
| if x_span <= 0: | |
| raise RenderError("plot data area is too narrow for grouped bars") | |
| # Title and axis captions. | |
| title = _display_text(world.get("title")) or "Chart" | |
| x_axis_label = _axis_label(world.get("x_axis")) or "X" | |
| y_axis_label = _axis_label(world.get("y_axis")) or "Value" | |
| canvas.text( | |
| "plot:title", | |
| title, | |
| (width / 2, 18), | |
| size=max(14, min(20, width // 45)), | |
| fill=text_color, | |
| anchor="ma", | |
| max_width=width - 20, | |
| ) | |
| canvas.text( | |
| "axis:y:label", | |
| y_axis_label, | |
| (left, top - 9), | |
| size=11, | |
| fill=text_color, | |
| anchor="ld", | |
| max_width=max(80, (right - left) * 0.45), | |
| ) | |
| canvas.text( | |
| "axis:x:label", | |
| x_axis_label, | |
| ((left + right) / 2, height - 8), | |
| size=11, | |
| fill=text_color, | |
| anchor="md", | |
| max_width=right - left, | |
| ) | |
| def x_position(point: _Point) -> float: | |
| if domain.numeric_x: | |
| assert point.x_value is not None | |
| ratio = float((point.x_value - domain.x_min) / (domain.x_max - domain.x_min)) | |
| else: | |
| ratio = ( | |
| domain.x_labels.index(point.x_label) / (len(domain.x_labels) - 1) | |
| if len(domain.x_labels) > 1 | |
| else 0.5 | |
| ) | |
| if ratio < -1e-9 or ratio > 1 + 1e-9: | |
| raise RenderError(f"x value {point.x_label!r} is outside render_domain") | |
| return left + x_padding + min(1.0, max(0.0, ratio)) * x_span | |
| def x_label_position(label: str) -> float: | |
| if domain.numeric_x: | |
| value = parse_number(label) | |
| ratio = float((value - domain.x_min) / (domain.x_max - domain.x_min)) | |
| else: | |
| ratio = ( | |
| domain.x_labels.index(label) / (len(domain.x_labels) - 1) | |
| if len(domain.x_labels) > 1 | |
| else 0.5 | |
| ) | |
| return left + x_padding + min(1.0, max(0.0, ratio)) * x_span | |
| def y_position(value: Fraction) -> float: | |
| ratio = float((value - domain.y_min) / (domain.y_max - domain.y_min)) | |
| if ratio < -1e-9 or ratio > 1 + 1e-9: | |
| raise RenderError(f"y value {canonical_number_str(value)!r} is outside render_domain") | |
| return bottom - min(1.0, max(0.0, ratio)) * (bottom - top) | |
| # Grid, axes, and numeric y ticks. | |
| for i in range(_Y_TICKS): | |
| ratio = Fraction(i, _Y_TICKS - 1) | |
| value = domain.y_min + ratio * (domain.y_max - domain.y_min) | |
| y = bottom - float(ratio) * (bottom - top) | |
| node_id = f"axis:y:tick:{i}" | |
| canvas.line(node_id, [(left, y), (right, y)], fill=grid_color, width=1) | |
| canvas.text( | |
| node_id, | |
| _format_number(value), | |
| (left - 7, y), | |
| size=9, | |
| fill=text_color, | |
| anchor="rm", | |
| max_width=left - 12, | |
| ) | |
| canvas.line("axis:x", [(left, bottom), (right, bottom)], fill=axis_color, width=2) | |
| canvas.line("axis:y", [(left, top), (left, bottom)], fill=axis_color, width=2) | |
| tick_labels = _decimate(domain.x_labels, _MAX_X_TICKS) | |
| spacing = (right - left) / max(1, len(tick_labels) - 1) | |
| tick_size = max(7, min(10, int(spacing * 0.28))) | |
| for i, label in enumerate(tick_labels): | |
| x = x_label_position(label) | |
| node_id = f"axis:x:tick:{i}" | |
| canvas.line(node_id, [(x, bottom), (x, bottom + 5)], fill=axis_color, width=1) | |
| canvas.text( | |
| node_id, | |
| label, | |
| (x, bottom + 8 + (i % 2) * 10), | |
| size=tick_size, | |
| fill=text_color, | |
| anchor="ma", | |
| max_width=max(24, spacing * 1.8), | |
| ) | |
| # The redaction token is anchored only at observed x. It is painted after | |
| # the grid (and clears grid ownership) but before visible series, so unrelated | |
| # visible points at the same x remain readable. | |
| hidden_x = _dedup(point.x_label for item in series for point in item.points if point.hidden) | |
| strip_half_width = max(4, min(12, int((right - left) / max(24, len(domain.x_labels) * 8)))) | |
| for label in hidden_x: | |
| prototype = next( | |
| point for item in series for point in item.points if point.x_label == label | |
| ) | |
| x = x_position(prototype) | |
| canvas.rectangle( | |
| None, | |
| (x - strip_half_width, top, x + strip_half_width, bottom), | |
| fill=family.palette.get("redact", "#111111"), | |
| ) | |
| colours = _series_colours(family) | |
| visible: list[str] = [] | |
| # Reserve every visible semantic owner before drawing; this makes node-table | |
| # order independent of accidental primitive ordering. | |
| for item in series: | |
| if item.hidden: | |
| continue | |
| visible.append(item.node_id) | |
| canvas.reserve(item.node_id) | |
| for point in item.points: | |
| if not point.hidden: | |
| visible.append(point.node_id) | |
| canvas.reserve(point.node_id) | |
| if "bar" in plot_type: | |
| _draw_bars(canvas, series, domain, x_position, y_position, colours) | |
| else: | |
| _draw_lines(canvas, series, x_position, y_position, colours, scatter="scatter" in plot_type) | |
| _draw_value_labels( | |
| canvas, | |
| series, | |
| domain, | |
| x_position, | |
| y_position, | |
| colours, | |
| plot_type=plot_type, | |
| data_bounds=(left, top, right, bottom), | |
| ) | |
| # Series-coloured legend. The swatch and text are both owned by the series, | |
| # guaranteeing coverage even for a single-point series. | |
| legend_x = right + 17 | |
| legend_y = top + 8 | |
| visible_series = [item for item in series if not item.hidden] | |
| row_height = max(18, min(28, (bottom - top) // max(1, len(visible_series)))) | |
| for index, item in enumerate(visible_series): | |
| y = legend_y + index * row_height | |
| if y + 13 > bottom: | |
| raise RenderError("plot legend does not fit within the canvas") | |
| colour = colours[index % len(colours)] | |
| canvas.rectangle( | |
| item.node_id, | |
| (legend_x, y, legend_x + 18, y + 8), | |
| fill=colour, | |
| outline=axis_color, | |
| ) | |
| canvas.text( | |
| item.node_id, | |
| item.label, | |
| (legend_x + 24, y + 4), | |
| size=10, | |
| fill=text_color, | |
| anchor="lm", | |
| max_width=width - (legend_x + 28) - 4, | |
| ) | |
| return tuple(_dedup(visible)) | |
| def _draw_lines( | |
| canvas: _Canvas, | |
| series: Sequence[_Series], | |
| x_position: Any, | |
| y_position: Any, | |
| colours: Sequence[str], | |
| *, | |
| scatter: bool, | |
| ) -> None: | |
| visible_series = [item for item in series if not item.hidden] | |
| count = len(visible_series) | |
| for series_index, item in enumerate(visible_series): | |
| colour = colours[series_index % len(colours)] | |
| x_offset = (series_index - (count - 1) / 2) * min(4.0, 8.0 / max(1, count)) | |
| run: list[tuple[float, float]] = [] | |
| runs: list[list[tuple[float, float]]] = [] | |
| for point in item.points: | |
| if point.hidden: | |
| if len(run) >= 2: | |
| runs.append(run) | |
| run = [] | |
| continue | |
| assert point.y is not None | |
| run.append((x_position(point) + x_offset, y_position(point.y))) | |
| if len(run) >= 2: | |
| runs.append(run) | |
| if not scatter: | |
| for coordinates in runs: | |
| canvas.line(item.node_id, coordinates, fill=colour, width=3) | |
| for point_index, point in enumerate(point for point in item.points if not point.hidden): | |
| assert point.y is not None | |
| x = x_position(point) + x_offset | |
| y = y_position(point.y) | |
| radius = max(3.0, 6.0 - series_index * 0.35 + (point_index % 2) * 0.2) | |
| canvas.ellipse( | |
| point.node_id, | |
| (x - radius, y - radius, x + radius, y + radius), | |
| fill=colour, | |
| outline="#202020", | |
| width=1, | |
| ) | |
| def _draw_bars( | |
| canvas: _Canvas, | |
| series: Sequence[_Series], | |
| domain: _Domain, | |
| x_position: Any, | |
| y_position: Any, | |
| colours: Sequence[str], | |
| ) -> None: | |
| visible_series = [item for item in series if not item.hidden] | |
| count = max(1, len(visible_series)) | |
| _, bar_width = _bar_dimensions(canvas.width, len(domain.x_labels), count) | |
| baseline_value = min(max(Fraction(0), domain.y_min), domain.y_max) | |
| baseline = y_position(baseline_value) | |
| for series_index, item in enumerate(visible_series): | |
| colour = colours[series_index % len(colours)] | |
| offset = (series_index - (count - 1) / 2) * bar_width | |
| for point in item.points: | |
| if point.hidden: | |
| continue | |
| assert point.y is not None | |
| x = x_position(point) + offset | |
| y = y_position(point.y) | |
| y0, y1 = sorted((baseline, y)) | |
| if y1 - y0 < 1: | |
| y1 = y0 + 1 | |
| canvas.rectangle( | |
| point.node_id, | |
| (x - bar_width * 0.42, y0, x + bar_width * 0.42, y1), | |
| fill=colour, | |
| outline="#202020", | |
| ) | |
| def _draw_value_labels( | |
| canvas: _Canvas, | |
| series: Sequence[_Series], | |
| domain: _Domain, | |
| x_position: Any, | |
| y_position: Any, | |
| colours: Sequence[str], | |
| *, | |
| plot_type: str, | |
| data_bounds: tuple[float, float, float, float], | |
| ) -> None: | |
| """Draw every visible point's exact value with deterministic collision avoidance.""" | |
| left, top, right, bottom = data_bounds | |
| visible_series = [item for item in series if not item.hidden] | |
| count = max(1, len(visible_series)) | |
| if "bar" in plot_type: | |
| _, bar_width = _bar_dimensions(canvas.width, len(domain.x_labels), count) | |
| x_offsets = [(series_index - (count - 1) / 2) * bar_width for series_index in range(count)] | |
| else: | |
| x_offsets = [ | |
| (series_index - (count - 1) / 2) * min(4.0, 8.0 / count) | |
| for series_index in range(count) | |
| ] | |
| # Marker boxes are obstacles for line/scatter labels. Bar labels naturally | |
| # sit beyond the value endpoint and do not need the whole bar as an obstacle. | |
| occupied: list[tuple[int, int, int, int]] = [] | |
| if "bar" not in plot_type: | |
| for series_index, item in enumerate(visible_series): | |
| for point in item.points: | |
| if point.hidden: | |
| continue | |
| assert point.y is not None | |
| x = x_position(point) + x_offsets[series_index] | |
| y = y_position(point.y) | |
| occupied.append((round(x - 7), round(y - 7), round(x + 7), round(y + 7))) | |
| background = canvas.family.palette.get("background", "#FFFFFF") | |
| base_size = max(8, min(10, canvas.width // 72)) | |
| max_width = min(190.0, max(40.0, right - left - 8)) | |
| for series_index, item in enumerate(visible_series): | |
| colour = colours[series_index % len(colours)] | |
| for point_index, point in enumerate(point for point in item.points if not point.hidden): | |
| assert point.y is not None | |
| if not point.y_label: | |
| raise RenderError(f"visible point {point.node_id!r} has no exact value label") | |
| x = x_position(point) + x_offsets[series_index] | |
| y = y_position(point.y) | |
| candidates = _value_label_candidates( | |
| x, | |
| y, | |
| data_bounds=data_bounds, | |
| parity=(series_index + point_index) % 2, | |
| ) | |
| selected: ( | |
| tuple[ | |
| tuple[float, float], | |
| str, | |
| int, | |
| tuple[int, int, int, int], | |
| ] | |
| | None | |
| ) = None | |
| fallback: list[ | |
| tuple[ | |
| tuple[int, int, int], | |
| tuple[float, float], | |
| str, | |
| int, | |
| tuple[int, int, int, int], | |
| ] | |
| ] = [] | |
| for font_size in range(base_size, 6, -1): | |
| for candidate_index, (xy, anchor) in enumerate(candidates): | |
| bbox = canvas.text_bbox( | |
| point.y_label, | |
| xy, | |
| size=font_size, | |
| anchor=anchor, | |
| max_width=max_width, | |
| ) | |
| padded = _expand_bbox(bbox, 2) | |
| score = _label_overlap_score( | |
| padded, | |
| occupied, | |
| bounds=( | |
| round(left + 1), | |
| round(top + 1), | |
| round(right - 1), | |
| round(bottom - 1), | |
| ), | |
| ) | |
| if score == 0: | |
| selected = (xy, anchor, font_size, bbox) | |
| break | |
| fallback.append( | |
| ( | |
| (score, -font_size, candidate_index), | |
| xy, | |
| anchor, | |
| font_size, | |
| bbox, | |
| ) | |
| ) | |
| if selected is not None: | |
| break | |
| if selected is None: | |
| if not fallback: | |
| raise RenderError(f"no value-label placement for point {point.node_id!r}") | |
| _, xy, anchor, font_size, bbox = min(fallback, key=lambda item: item[0]) | |
| else: | |
| xy, anchor, font_size, bbox = selected | |
| label_background = _clip_bbox( | |
| _expand_bbox(bbox, 2), | |
| width=canvas.width, | |
| height=canvas.height, | |
| ) | |
| canvas.rectangle(point.node_id, label_background, fill=background) | |
| drawn_bbox = canvas.text( | |
| point.node_id, | |
| point.y_label, | |
| xy, | |
| size=font_size, | |
| fill=colour, | |
| anchor=anchor, | |
| max_width=max_width, | |
| ) | |
| assert drawn_bbox is not None | |
| occupied.append(_expand_bbox(drawn_bbox, 2)) | |
| def _value_label_candidates( | |
| x: float, | |
| y: float, | |
| *, | |
| data_bounds: tuple[float, float, float, float], | |
| parity: int, | |
| ) -> tuple[tuple[tuple[float, float], str], ...]: | |
| left, top, right, bottom = data_bounds | |
| above = ((x, y - 9), "mb") | |
| below = ((x, y + 9), "mt") | |
| right_of = ((x + 10, y), "lm") | |
| left_of = ((x - 10, y), "rm") | |
| above_right = ((x + 7, y - 7), "lb") | |
| above_left = ((x - 7, y - 7), "rb") | |
| below_right = ((x + 7, y + 7), "lt") | |
| below_left = ((x - 7, y + 7), "rt") | |
| inward = right_of if x <= (left + right) / 2 else left_of | |
| outward = left_of if inward is right_of else right_of | |
| if y <= top + (bottom - top) * 0.32: | |
| primary, secondary = below, above | |
| diagonal_in = below_right if inward is right_of else below_left | |
| diagonal_out = below_left if inward is right_of else below_right | |
| elif y >= top + (bottom - top) * 0.68: | |
| primary, secondary = above, below | |
| diagonal_in = above_right if inward is right_of else above_left | |
| diagonal_out = above_left if inward is right_of else above_right | |
| elif parity: | |
| primary, secondary = below, above | |
| diagonal_in = below_right if inward is right_of else below_left | |
| diagonal_out = above_left if inward is right_of else above_right | |
| else: | |
| primary, secondary = above, below | |
| diagonal_in = above_right if inward is right_of else above_left | |
| diagonal_out = below_left if inward is right_of else below_right | |
| return ( | |
| primary, | |
| diagonal_in, | |
| inward, | |
| secondary, | |
| diagonal_out, | |
| outward, | |
| above_right, | |
| above_left, | |
| below_right, | |
| below_left, | |
| ) | |
| def _expand_bbox(bbox: tuple[int, int, int, int], padding: int) -> tuple[int, int, int, int]: | |
| return ( | |
| bbox[0] - padding, | |
| bbox[1] - padding, | |
| bbox[2] + padding, | |
| bbox[3] + padding, | |
| ) | |
| def _clip_bbox( | |
| bbox: tuple[int, int, int, int], *, width: int, height: int | |
| ) -> tuple[float, float, float, float]: | |
| return ( | |
| max(0, bbox[0]), | |
| max(0, bbox[1]), | |
| min(width - 1, bbox[2]), | |
| min(height - 1, bbox[3]), | |
| ) | |
| def _label_overlap_score( | |
| bbox: tuple[int, int, int, int], | |
| occupied: Sequence[tuple[int, int, int, int]], | |
| *, | |
| bounds: tuple[int, int, int, int], | |
| ) -> int: | |
| left, top, right, bottom = bounds | |
| overflow = ( | |
| max(0, left - bbox[0]) | |
| + max(0, top - bbox[1]) | |
| + max(0, bbox[2] - right) | |
| + max(0, bbox[3] - bottom) | |
| ) | |
| overlap = sum(_bbox_overlap_area(bbox, other) for other in occupied) | |
| return overflow * 1_000_000 + overlap | |
| def _bbox_overlap_area(first: tuple[int, int, int, int], second: tuple[int, int, int, int]) -> int: | |
| width = max(0, min(first[2], second[2]) - max(first[0], second[0])) | |
| height = max(0, min(first[3], second[3]) - max(first[1], second[1])) | |
| return width * height | |
| def _bar_dimensions( | |
| canvas_width: int, unique_x_count: int, series_count: int | |
| ) -> tuple[float, float]: | |
| group_width = max(12.0, min(56.0, (canvas_width * 0.58) / max(1, unique_x_count))) | |
| return group_width, max(3.0, group_width / (max(1, series_count) + 0.4)) | |
| def _domain_bound(domain: Mapping[str, Any], axis: str, bound: str) -> Fraction | None: | |
| direct = domain.get(f"{axis}_{bound}") | |
| nested = domain.get(axis) | |
| raw = direct | |
| if raw is None and isinstance(nested, Mapping): | |
| raw = nested.get(bound) | |
| if raw is None: | |
| return None | |
| try: | |
| return parse_number(raw) | |
| except (TypeError, ValueError, ZeroDivisionError) as exc: | |
| raise RenderError(f"invalid render_domain {axis}_{bound}: {raw!r}") from exc | |
| def _axis_values(axis: Any) -> list[str]: | |
| if not isinstance(axis, Mapping): | |
| return [] | |
| values = axis.get("values") or [] | |
| if not isinstance(values, Sequence) or isinstance(values, (str, bytes)): | |
| return [] | |
| return [str(value) for value in values if str(value)] | |
| def _axis_label(axis: Any) -> str: | |
| if isinstance(axis, Mapping): | |
| return _display_text(axis.get("label")) | |
| return _display_text(axis) | |
| def _display_text(value: Any) -> str: | |
| if value is None: | |
| return "" | |
| if isinstance(value, Mapping): | |
| for key in ("text", "label", "title", "name"): | |
| if value.get(key) is not None: | |
| return str(value[key]) | |
| return "" | |
| if isinstance(value, Sequence) and not isinstance(value, (str, bytes)): | |
| return ", ".join(str(item) for item in value) | |
| return str(value) | |
| def _plot_type(world: World) -> str: | |
| return str(world.get("plot_type", "line")).strip().lower() or "line" | |
| def _nondegenerate(low: Fraction, high: Fraction) -> tuple[Fraction, Fraction]: | |
| if high < low: | |
| raise RenderError(f"render domain is reversed: {low} > {high}") | |
| if high == low: | |
| return low - 1, high + 1 | |
| return low, high | |
| def _format_number(value: Fraction) -> str: | |
| if value.denominator == 1: | |
| return str(value.numerator) | |
| decimal = f"{float(value):.2f}".rstrip("0").rstrip(".") | |
| return decimal if decimal not in {"-0", ""} else "0" | |
| def _exact_value_label(value: Fraction) -> str: | |
| """An exact human-readable value: terminating decimal when possible.""" | |
| if value.numerator == 0: | |
| return "0" | |
| denominator = value.denominator | |
| powers_of_two = 0 | |
| powers_of_five = 0 | |
| while denominator % 2 == 0: | |
| denominator //= 2 | |
| powers_of_two += 1 | |
| while denominator % 5 == 0: | |
| denominator //= 5 | |
| powers_of_five += 1 | |
| if denominator != 1: | |
| return canonical_number_str(value) | |
| decimal_places = max(powers_of_two, powers_of_five) | |
| scaled = abs(value.numerator) | |
| scaled *= 2 ** (decimal_places - powers_of_two) | |
| scaled *= 5 ** (decimal_places - powers_of_five) | |
| sign = "-" if value.numerator < 0 else "" | |
| if decimal_places == 0: | |
| return f"{sign}{scaled}" | |
| digits = str(scaled).rjust(decimal_places + 1, "0") | |
| integer = digits[:-decimal_places] | |
| fractional = digits[-decimal_places:].rstrip("0") | |
| return f"{sign}{integer}.{fractional}" if fractional else f"{sign}{integer}" | |
| def _dedup(values: Iterable[str]) -> list[str]: | |
| seen: set[str] = set() | |
| output: list[str] = [] | |
| for value in values: | |
| if value not in seen: | |
| seen.add(value) | |
| output.append(value) | |
| return output | |
| def _decimate(values: Sequence[str], maximum: int) -> tuple[str, ...]: | |
| if len(values) <= maximum: | |
| return tuple(values) | |
| indices = {round(index * (len(values) - 1) / (maximum - 1)) for index in range(maximum)} | |
| return tuple(values[index] for index in sorted(indices)) | |
| def _series_colours(family: RendererFamily) -> tuple[str, ...]: | |
| colours = tuple( | |
| family.palette[key] for key in sorted(family.palette) if key.startswith("series_") | |
| ) | |
| if colours: | |
| return colours | |
| return (family.palette.get("mark", "#1f77b4"),) | |
| def _pillow_version() -> str: | |
| import PIL | |
| return str(PIL.__version__) | |
| _PLOT_TRAIN_FAMILY = RendererFamily( | |
| name="plot_train_v1", | |
| kind="plot", | |
| font_name="DejaVu Sans", | |
| palette={ | |
| "background": "#FFFFFF", | |
| "text": "#202020", | |
| "axis": "#444444", | |
| "grid": "#D9DEE8", | |
| "redact": "#151515", | |
| "mark": "#2563EB", | |
| "series_0": "#2563EB", | |
| "series_1": "#EA580C", | |
| "series_2": "#16A34A", | |
| "series_3": "#DC2626", | |
| "series_4": "#7C3AED", | |
| "series_5": "#A16207", | |
| }, | |
| layout={"engine": "pillow_v3_exact_labels", "y_ticks": _Y_TICKS}, | |
| ) | |
| _PLOT_HELDOUT_FAMILY = RendererFamily( | |
| name="plot_heldout_v1", | |
| kind="plot", | |
| font_name="DejaVu Serif", | |
| palette={ | |
| "background": "#F7F7F0", | |
| "text": "#17212B", | |
| "axis": "#38434F", | |
| "grid": "#D5D2C8", | |
| "redact": "#303030", | |
| "mark": "#0F766E", | |
| "series_0": "#0F766E", | |
| "series_1": "#BE123C", | |
| "series_2": "#B7791F", | |
| "series_3": "#4338CA", | |
| "series_4": "#A21CAF", | |
| "series_5": "#475569", | |
| }, | |
| layout={"engine": "pillow_v3_exact_labels_heldout", "y_ticks": _Y_TICKS}, | |
| ) | |
| PLOT_FAMILIES: dict[str, RendererFamily] = { | |
| "plot_train_v1": _PLOT_TRAIN_FAMILY, | |
| "plot_heldout_v1": _PLOT_HELDOUT_FAMILY, | |
| } | |
| __all__ = ["PLOT_FAMILIES", "PlotRenderer"] | |