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https://github.com/ChuckBuilds/LEDMatrix.git
synced 2026-08-22 02:48:15 +00:00
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Commits
| Author | SHA1 | Date | |
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29f1c68bea |
@@ -37,10 +37,6 @@ echo " systemctl: $SYSTEMCTL_PATH"
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echo ""
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echo "Step 1: Configuring sudo permissions for nmcli..."
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SUDOERS_FILE="/etc/sudoers.d/ledmatrix_wifi"
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SYSCTL_PATH=$(command -v sysctl || echo /usr/sbin/sysctl)
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NFT_PATH=$(command -v nft || echo /usr/sbin/nft)
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RFKILL_PATH=$(command -v rfkill || echo /usr/sbin/rfkill)
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MKDIR_PATH=$(command -v mkdir || echo /usr/bin/mkdir)
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# Create a temporary sudoers file using mktemp (handles permissions better)
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TEMP_SUDOERS=$(mktemp) || {
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@@ -66,36 +62,6 @@ $WEB_USER ALL=(ALL) NOPASSWD: $SYSTEMCTL_PATH start dnsmasq
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$WEB_USER ALL=(ALL) NOPASSWD: $SYSTEMCTL_PATH stop dnsmasq
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$WEB_USER ALL=(ALL) NOPASSWD: $SYSTEMCTL_PATH restart dnsmasq
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$WEB_USER ALL=(ALL) NOPASSWD: $SYSTEMCTL_PATH restart NetworkManager
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# The captive portal turns IP forwarding on while the access point is up and
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# restores the previous value when it comes down (wifi_manager._setup_iptables_
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# redirect / _teardown_iptables_redirect). Without this rule that sudo call
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# needs a password, so forwarding stays off and clients associate to the AP but
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# cannot route. It goes unnoticed on a stock Raspberry Pi image, where
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# /etc/sudoers.d/010_pi-nopasswd grants the default user blanket NOPASSWD and
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# masks every gap in this file -- it only bites once that blanket rule is
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# removed.
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$WEB_USER ALL=(ALL) NOPASSWD: $SYSCTL_PATH -w net.ipv4.ip_forward=0
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$WEB_USER ALL=(ALL) NOPASSWD: $SYSCTL_PATH -w net.ipv4.ip_forward=1
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# The portal's redirect lives in its own nftables table, created when the AP
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# comes up and deleted when it goes down, and the radio has to be unblocked
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# before the AP can start at all. Same story as the sysctl rules above: called
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# with sudo, never granted here, and invisible on a stock Pi image.
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$WEB_USER ALL=(ALL) NOPASSWD: $NFT_PATH add table ip ledmatrix
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$WEB_USER ALL=(ALL) NOPASSWD: $NFT_PATH delete table ip ledmatrix
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$WEB_USER ALL=(ALL) NOPASSWD: $RFKILL_PATH unblock wifi
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# NetworkManager's dnsmasq drop-in directory, exact path.
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$WEB_USER ALL=(ALL) NOPASSWD: $MKDIR_PATH -p /etc/NetworkManager/dnsmasq-shared.d
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#
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# iptables is deliberately NOT granted here. Its rules are built from the live
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# interface name and port, so a rule covering them needs a trailing wildcard --
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# and `iptables --modprobe=/path/to/anything` runs that path as root, so
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# `NOPASSWD: iptables *` is a root shell for the web user by another name. That
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# is a worse outcome than the gap it would close, which today is masked anyway
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# by the blanket NOPASSWD rule on stock Pi images.
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#
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# Closing it safely means a wrapper script that builds the rules itself and
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# takes only an interface and a port, granted the way safe_plugin_rm.sh already
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# is. That belongs in its own change rather than being smuggled into this one.
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# Allow copying hostapd and dnsmasq config files into place
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$WEB_USER ALL=(ALL) NOPASSWD: /usr/bin/cp /tmp/hostapd.conf /etc/hostapd/hostapd.conf
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@@ -9,7 +9,7 @@ import time
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import logging
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import threading
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from typing import Dict, Optional, Any, Callable
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from dataclasses import dataclass, field
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from dataclasses import dataclass, field, fields
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try:
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import psutil
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@@ -102,6 +102,50 @@ class PluginResourceMonitor:
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"psutil not available - resource monitoring will be limited to execution time only"
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)
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def _metrics_from_cache(self, plugin_id: str, cached: Any) -> "ResourceMetrics":
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"""Build metrics from a cached record, ignoring anything unrecognised.
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ResourceMetrics(**cached) raises TypeError on a single unexpected key,
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and that exception escapes into plugin_manager, which reports it as
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"plugin <id> operation failed". Every plugin fails, and the plugin
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system never finishes initialising.
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Seen on a live rig: every plugin failing with
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ResourceMetrics.__init__() got an unexpected keyword argument
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'consecutive_failures'
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which is a plugin_health field, not a metrics one. How a health-shaped
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record came to sit under a plugin_metrics key on that machine is not
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established -- a restored backup that mixed two machines' caches is the
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likeliest explanation -- but the loader should not be brittle enough for
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it to matter. plugin_health already repairs its records field by field
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rather than trusting whatever is on disk; this does the same.
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Unknown keys are dropped and named once, so a genuine schema change is
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visible in the log instead of silently discarded.
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"""
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if not isinstance(cached, dict):
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self.logger.warning(
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"Ignoring cached metrics for %s: expected a mapping, got %s",
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plugin_id, type(cached).__name__)
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return ResourceMetrics()
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known = {f.name for f in fields(ResourceMetrics)}
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unknown = sorted(set(cached) - known)
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if unknown:
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self.logger.warning(
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"Dropping unrecognised field(s) from cached metrics for %s: %s",
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plugin_id, ", ".join(unknown))
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usable = {k: v for k, v in cached.items() if k in known}
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try:
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return ResourceMetrics(**usable)
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except (TypeError, ValueError) as e:
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self.logger.warning(
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"Cached metrics for %s unusable (%s); starting fresh",
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plugin_id, e)
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return ResourceMetrics()
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def _get_metrics_key(self, plugin_id: str) -> str:
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"""Get cache key for plugin metrics."""
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return f"plugin_metrics:{plugin_id}"
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@@ -126,7 +170,7 @@ class PluginResourceMonitor:
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cache_key, max_age=None, memory_ttl=0 if force_reload else None
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)
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if cached:
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metrics = ResourceMetrics(**cached)
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metrics = self._metrics_from_cache(plugin_id, cached)
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else:
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metrics = ResourceMetrics()
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self._metrics[plugin_id] = metrics
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@@ -0,0 +1,100 @@
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"""A malformed metrics cache entry must not take every plugin down with it.
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`ResourceMetrics(**cached)` raises TypeError on a single unexpected key, and
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that exception escapes into plugin_manager, which reports it per plugin as
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"plugin <id> operation failed". Every plugin fails and the plugin system never
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finishes initialising -- the health endpoint reports
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`plugin_system: not_initialized` while the display itself keeps running.
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Seen on a live rig, once per plugin, continuously:
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ERROR - src.plugin_system.plugin_manager - plugin geochron operation failed:
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ResourceMetrics.__init__() got an unexpected keyword argument
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'consecutive_failures'
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`consecutive_failures` belongs to plugin_health, not to metrics. How a
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health-shaped record came to sit under a plugin_metrics key on that machine is
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not established -- a restored backup that mixed two machines' caches is the
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likeliest explanation, and the same rig had one restored onto it -- but a
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loader that turns one bad cache entry into a total outage is the part worth
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fixing. plugin_health already repairs its own records field by field rather
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than trusting what is on disk.
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"""
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import logging
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from dataclasses import fields
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from unittest.mock import MagicMock
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import pytest
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from src.plugin_system.resource_monitor import PluginResourceMonitor, ResourceMetrics
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class _Cache:
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def __init__(self, payload=None):
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self.payload = payload
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def get(self, key, max_age=None, memory_ttl=None, **kwargs):
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return self.payload
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def set(self, key, data, ttl=None, **kwargs):
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pass
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def _monitor(payload):
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m = PluginResourceMonitor(cache_manager=_Cache(payload))
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m.logger = logging.getLogger("test")
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return m
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#: What the rig actually had under the metrics key.
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HEALTH_SHAPED = {
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"consecutive_failures": 0, "circuit_state": "closed",
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"circuit_opened_time": None, "half_open_start_time": None,
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"last_error": None, "last_failure_time": None,
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"last_success_time": 1_700_000_000.0, "total_failures": 0,
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"total_successes": 42,
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}
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def test_a_health_record_under_the_metrics_key_does_not_raise():
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"""The exact failure: it must degrade, not take the plugin system down."""
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monitor = _monitor(HEALTH_SHAPED)
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metrics = monitor.get_metrics(" plugin-a".strip())
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assert isinstance(metrics, ResourceMetrics)
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def test_recognised_fields_in_a_mixed_record_are_kept():
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"""Dropping the record wholesale would lose real history unnecessarily."""
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mixed = dict(HEALTH_SHAPED, call_count=7, memory_mb=12.5)
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metrics = _monitor(mixed).get_metrics("plugin-b")
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assert metrics.call_count == 7
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assert metrics.memory_mb == 12.5
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def test_a_clean_record_still_loads_unchanged():
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clean = {f.name: 3 for f in fields(ResourceMetrics)}
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metrics = _monitor(clean).get_metrics("plugin-c")
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for name in (f.name for f in fields(ResourceMetrics)):
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assert getattr(metrics, name) == 3
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def test_unknown_fields_are_named_in_the_log(caplog):
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"""Silently discarding them would hide a real schema change."""
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with caplog.at_level(logging.WARNING):
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_monitor(HEALTH_SHAPED).get_metrics("plugin-d")
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# getMessage(), not .message: the latter is only populated once a handler
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# formats the record, so the obvious spelling silently never matches.
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assert any("consecutive_failures" in r.getMessage() for r in caplog.records), \
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caplog.text
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@pytest.mark.parametrize("payload", ["a string", 42, ["a", "list"]])
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def test_a_non_mapping_cache_entry_does_not_raise(payload):
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metrics = _monitor(payload).get_metrics("plugin-e")
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assert isinstance(metrics, ResourceMetrics)
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def test_values_of_the_wrong_type_do_not_raise():
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"""A dataclass will accept these, but a later float() on them would not."""
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metrics = _monitor({"call_count": "not a number"}).get_metrics("plugin-f")
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assert isinstance(metrics, ResourceMetrics)
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@@ -1,120 +0,0 @@
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"""The captive portal's fixed-argument sudo calls must be granted.
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The installers write two allow-lists, /etc/sudoers.d/ledmatrix_web and
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ledmatrix_wifi. A sudo call absent from both needs a password, which a service
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cannot supply, so it fails.
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Four such calls were ungranted, all of them captive-portal teardown/setup:
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sysctl -w net.ipv4.ip_forward=0|1 wifi_manager.py:788, 883
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nft add|delete table ip ledmatrix wifi_manager.py:835, 895
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rfkill unblock wifi wifi_manager.py:1811
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mkdir -p .../dnsmasq-shared.d wifi_manager.py:922
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It goes unnoticed because a stock Raspberry Pi image ships
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/etc/sudoers.d/010_pi-nopasswd granting the default user
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`ALL=(ALL) NOPASSWD: ALL`, which satisfies every gap in both files. It only
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bites once that blanket rule is removed or the service runs as another user.
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Scope, deliberately narrow: this pins the four commands above, each of which
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can be written out literally. The portal makes further sudo calls whose
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arguments are built at runtime -- iptables and nft rules carrying an interface
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name and a port, `ip addr`, `ip link` -- and those cannot be granted safely
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here. A rule covering them needs a trailing wildcard, and
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`iptables --modprobe=/path/to/anything` runs that path as root, so
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`NOPASSWD: iptables *` is a root shell for the web user by another name.
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Closing that half needs a privileged helper that builds the rules itself and
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takes only an interface and a port, granted the way safe_plugin_rm.sh already
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is. That is a design decision, not a one-line grant, and belongs in its own
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change.
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"""
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import re
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from pathlib import Path
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import pytest
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ROOT = Path(__file__).resolve().parent.parent
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INSTALLERS = (
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ROOT / "first_time_install.sh",
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ROOT / "scripts" / "install" / "configure_wifi_permissions.sh",
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)
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#: Commands this change grants, each fully literal in the source.
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REQUIRED = (
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("sysctl", "-w", "net.ipv4.ip_forward=0"),
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("sysctl", "-w", "net.ipv4.ip_forward=1"),
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("nft", "add", "table", "ip", "ledmatrix"),
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("nft", "delete", "table", "ip", "ledmatrix"),
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("rfkill", "unblock", "wifi"),
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("mkdir", "-p", "/etc/NetworkManager/dnsmasq-shared.d"),
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)
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#: Tools with an option that executes a program of the caller's choosing.
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#: A trailing wildcard on any of these is a privilege escalation.
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EXEC_CAPABLE = ("iptables", "ip6tables", "nft", "tcpdump", "find", "awk",
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"sed", "perl", "python", "python3", "env")
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def _grant_lines():
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lines = []
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for installer in INSTALLERS:
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if not installer.is_file():
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continue
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for line in installer.read_text(encoding="utf-8", errors="replace").splitlines():
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if "NOPASSWD:" in line:
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lines.append(line.split("NOPASSWD:", 1)[1])
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return lines
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def _normalised_grants():
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"""Grants with binary-path variables reduced to tool names.
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Rules are written as `$SYSCTL_PATH -w ...`, so matching the literal
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"sysctl" finds nothing and every rule looks absent -- which is exactly how
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an earlier version of this test reported six gaps that did not exist.
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Only NOPASSWD lines are considered, because taking the whole script let a
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variable definition such as NFT_PATH=$(command -v nft) satisfy the check on
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its own while the grant itself had been deleted.
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"""
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text = "\n".join(_grant_lines())
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text = re.sub(r"\$\{?([A-Z][A-Z0-9_]*)_PATH\}?", lambda m: m.group(1).lower(), text)
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return re.sub(r"/usr/(?:s?bin)/", "", text)
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def test_the_installers_are_present():
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missing = [str(p.relative_to(ROOT)) for p in INSTALLERS if not p.is_file()]
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assert not missing, f"installer(s) missing: {missing}"
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@pytest.mark.parametrize("command", REQUIRED, ids=lambda c: " ".join(c))
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def test_the_command_is_granted(command):
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"""Whole command, not just the binary.
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Checking only the binary made this far weaker than it looked: with
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`sysctl` present anywhere, deleting the ip_forward=0 grant still passed,
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and the portal would then be unable to restore forwarding on teardown.
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"""
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pattern = r"\s+".join(re.escape(word) for word in command)
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assert re.search(pattern, _normalised_grants()), (
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f"no installer grants `{' '.join(command)}`")
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def test_no_wildcard_on_a_tool_that_can_exec():
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"""`NOPASSWD: iptables *` hands the web user root.
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iptables --modprobe=/path runs that path as root. This caught a grant added
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in this very change, which is why it is here.
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"""
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offenders = []
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for rule in _grant_lines():
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rule = rule.strip()
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if not rule.endswith("*"):
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continue
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haystack = rule.replace("_PATH", "").lower()
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for tool in EXEC_CAPABLE:
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if re.search(rf"(^|/|\s|\$){tool}(\s|$)", haystack):
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offenders.append(rule)
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break
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assert not offenders, (
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"wildcard grant on a tool that can execute another program:\n "
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+ "\n ".join(offenders))
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Reference in New Issue
Block a user