#!/usr/bin/env python3 """Figure 2: registry-derived observable-family and access-context matrix.""" from __future__ import annotations from collections import OrderedDict import matplotlib.pyplot as plt import yaml from matplotlib.patches import Rectangle from style import ( BLUE, INK, LIGHT_GREY, MID_GREY, HERE, REPO_ROOT, assert_text_inside_figure, assert_text_not_overlapping, save_figure, ) INPUT = REPO_ROOT / "observables" / "observables.yaml" OUTPUT = HERE / "fig_taxonomy_matrix.pdf" FIGURE_WIDTH_IN = 6.25 TABLE_TEXT_PT = 9.0 ACCESS_TEXT_PT = 8.5 DISPLAY_NAMES = OrderedDict( [ ("O01", "inventory and device state"), ("O02", "topology and capability"), ("O03", "scheduler and allocation"), ("O04", "cloud control plane"), ("O05", "accelerator telemetry"), # Follow the released registry rather than the manuscript's proposed # but unimplemented O06 profiling expansion. ("O06", "achieved-operation counters"), ("O07", "local accelerator interconnect"), ("O08", "scale-out fabric"), ("O09", "general network"), ("O10", "storage and data movement"), ("O11", "power and energy"), ("O12", "cooling and environment"), ("O13", "host and container resources"), ("O14", "maintenance and physical access"), ("O15", "site and electrical timing"), ] ) ACCESS = OrderedDict( [ ("public_or_out_of_band", "public /\nOOB"), ("facility_operator", "facility"), ("cluster_operator", "cluster"), ("cloud_provider_control_plane", "cloud /\ncontrol"), ("host_or_orchestrator_resource", "host /\norch."), ("storage_network_operator", "storage /\nnetwork"), ] ) def load_registry() -> list[dict]: data = yaml.safe_load(INPUT.read_text(encoding="utf-8")) if data.get("taxonomy_id") != "operator_visible_datacenter_observables": raise ValueError("unexpected taxonomy identifier") if data.get("version") != "2026-05-15": raise ValueError("taxonomy version changed; review Figure 2 before regeneration") if list(data.get("access_contexts", {})) != list(ACCESS): raise ValueError("access-context schema changed") families = data.get("observables", []) if [family.get("id") for family in families] != list(DISPLAY_NAMES): raise ValueError("expected exactly O01--O15 in registry order") if len(families) != 15: raise ValueError("expected 15 indirect families") features = [feature for family in families for feature in family.get("features", [])] if len(features) != 83: raise ValueError("expected 83 value-level features for taxonomy version 2026-05-15") feature_ids = [feature.get("id") for feature in features] if len(set(feature_ids)) != len(feature_ids): raise ValueError("feature identifiers are not globally unique") for family in families: unknown = set(family.get("access_contexts", [])) - set(ACCESS) if unknown: raise ValueError(f"{family['id']} contains unknown access contexts: {unknown}") return families def main() -> None: families = load_registry() fig, ax = plt.subplots(figsize=(FIGURE_WIDTH_IN, 4.15)) fig.subplots_adjust(left=0.018, right=0.985, bottom=0.035, top=0.965) ax.set_xlim(0.0, 1.0) ax.set_ylim(0.0, 1.0) ax.axis("off") # Coordinates are normalized so the access columns retain a fixed, # inspectable width when the physical output size changes. x_name = 0.004 x_count = 0.460 x_divider = 0.510 x_access = [0.555, 0.634, 0.713, 0.792, 0.871, 0.958] group_header_y = 0.947 header_y = 0.845 group_rule_y = 0.905 rule_y = 0.785 row_top = 0.752 row_step = 0.0476 header_text = [ ax.text( x_name, header_y, "observable family", ha="left", va="center", fontsize=TABLE_TEXT_PT, ), ax.text( x_count, header_y, "features\n$n$", ha="center", va="center", fontsize=TABLE_TEXT_PT, linespacing=0.95, ), ax.text( sum(x_access) / len(x_access), group_header_y, "declared access context", ha="center", va="center", fontsize=TABLE_TEXT_PT, color=MID_GREY, ), ] for x, label in zip(x_access, ACCESS.values()): header_text.append( ax.text( x, header_y, label, ha="center", va="center", fontsize=ACCESS_TEXT_PT, linespacing=0.93, ) ) ax.plot( [x_access[0] - 0.035, x_access[-1] + 0.035], [group_rule_y, group_rule_y], color=LIGHT_GREY, lw=0.55, ) ax.plot([0.0, 0.995], [rule_y, rule_y], color=INK, lw=0.75) ax.plot( [x_divider, x_divider], [0.045, group_rule_y], color=LIGHT_GREY, lw=0.7, ) for row, family in enumerate(families): y = row_top - row * row_step ax.plot( [0.0, 0.995], [y - row_step / 2, y - row_step / 2], color=LIGHT_GREY, lw=0.45, ) ax.text( x_name, y, rf"$\bf{{{family['id']}}}$ {DISPLAY_NAMES[family['id']]}", ha="left", va="center", fontsize=TABLE_TEXT_PT, ) ax.text( x_count, y, str(len(family["features"])), ha="center", va="center", fontsize=TABLE_TEXT_PT, ) declared = set(family["access_contexts"]) for x, key in zip(x_access, ACCESS): if key in declared: # Use one simple vector cell. PDFKit/Quick Look misplaces # repeated transformed circles and compound pseudo-circles, # while a single rectangle per declaration remains stable. ax.add_patch( Rectangle( (x - 0.0055, y - 0.0085), width=0.0110, height=0.0170, facecolor=BLUE, edgecolor=INK, lw=0.35, zorder=3, ) ) # This table uses a deliberately conservative inset beyond the global # one-point guard because multi-line column headers are easy to misread as # clipped even when their glyph boxes technically fit. assert_text_not_overlapping(fig, header_text, padding_points=1.5) assert_text_inside_figure(fig, padding_points=6.0) save_figure( fig, OUTPUT, subject="Access contexts for the fifteen indirect TRACE observable families", ) if __name__ == "__main__": main()