home-manager/firefox: Add memory control
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Wrap Firefox with a privileged AutoConfig controller that unloads tabs under configurable MemAvailable hysteresis and exposes an on-demand reclaim command. Enable it by default for Linux GUI homes.
This commit is contained in:
2026-08-13 12:24:45 +01:00
parent 0c6928f7ae
commit 82cbe67010
5 changed files with 457 additions and 3 deletions
+20 -3
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@@ -1,6 +1,6 @@
{ lib, pkgs', pkgs, config, ... }: { lib, pkgs', pkgs, config, ... }:
let let
inherit (lib) genAttrs mkIf mkMerge mkForce mapAttrs mkOptionDefault mkDefault; inherit (lib) genAttrs mkIf mkMerge mkForce mapAttrs mkOptionDefault mkDefault optional;
inherit (lib.my) mkOpt' mkBoolOpt'; inherit (lib.my) mkOpt' mkBoolOpt';
inherit (lib.my.c) pubDomain; inherit (lib.my.c) pubDomain;
@@ -45,6 +45,9 @@ let
chmod +x "$out"/bin/doomsaver chmod +x "$out"/bin/doomsaver
''; '';
doomsaver = doomsaver' cfg.screensaver.brainrotTextCommand; doomsaver = doomsaver' cfg.screensaver.brainrotTextCommand;
firefoxMemoryControl = pkgs.firefox-memory-control.override {
inherit (cfg.firefoxMemoryControl) lowAvailableMiB highAvailableMiB pollIntervalMs minInactiveMs;
};
in in
{ {
options.my.gui = with lib.types; { options.my.gui = with lib.types; {
@@ -52,12 +55,26 @@ in
manageGraphical = mkBoolOpt' false "Configure the graphical session"; manageGraphical = mkBoolOpt' false "Configure the graphical session";
standalone = mkBoolOpt' false "Enable settings for fully Nix managed systems"; standalone = mkBoolOpt' false "Enable settings for fully Nix managed systems";
screensaver.brainrotTextCommand = mkOpt' (either path str) genLipsum "Command to generate brainrot text."; screensaver.brainrotTextCommand = mkOpt' (either path str) genLipsum "Command to generate brainrot text.";
firefoxMemoryControl = {
enable = mkBoolOpt' pkgs.stdenv.isLinux "Enable memory-pressure tab unloading in Firefox";
lowAvailableMiB = mkOpt' ints.positive 2048 "Available memory threshold at which Firefox starts unloading tabs.";
highAvailableMiB = mkOpt' ints.positive 3072 "Available memory threshold at which Firefox stops unloading tabs.";
pollIntervalMs = mkOpt' ints.positive 1000 "Memory-pressure polling interval in milliseconds.";
minInactiveMs = mkOpt' ints.unsigned 300000 "Minimum tab inactivity before automatic unloading, in milliseconds.";
};
}; };
config = mkIf cfg.enable (mkMerge [ config = mkIf cfg.enable (mkMerge [
{ {
assertions = [
{
assertion = cfg.firefoxMemoryControl.highAvailableMiB > cfg.firefoxMemoryControl.lowAvailableMiB;
message = "`my.gui.firefoxMemoryControl.highAvailableMiB` must exceed `lowAvailableMiB`.";
}
];
home = { home = {
packages = with pkgs; [ packages = (with pkgs; [
xdg-utils xdg-utils
font.package font.package
@@ -99,7 +116,7 @@ in
# --prefix PATH : ${pkgs.lib.makeBinPath [ pkgs.nodejs_latest ]} # --prefix PATH : ${pkgs.lib.makeBinPath [ pkgs.nodejs_latest ]}
# ''; # '';
# }) # })
]; ]) ++ optional cfg.firefoxMemoryControl.enable firefoxMemoryControl;
}; };
programs = { programs = {
+1
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@@ -11,6 +11,7 @@ in
chocolate-doom2xx = callPackage ./chocolate-doom2xx { }; chocolate-doom2xx = callPackage ./chocolate-doom2xx { };
windowtolayer = callPackage ./windowtolayer.nix { }; windowtolayer = callPackage ./windowtolayer.nix { };
swaylock-plugin = callPackage ./swaylock-plugin.nix { }; swaylock-plugin = callPackage ./swaylock-plugin.nix { };
firefox-memory-control = callPackage ./firefox-memory-control { };
update-docs-assignments = pkgs.writeShellScriptBin "update-docs-assignments" '' update-docs-assignments = pkgs.writeShellScriptBin "update-docs-assignments" ''
exec ${pkgs.python3}/bin/python3 ${../ci/update-docs-assignments.py} "$@" exec ${pkgs.python3}/bin/python3 ${../ci/update-docs-assignments.py} "$@"
+251
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@@ -0,0 +1,251 @@
// This file runs as privileged Firefox AutoConfig code. Keep it in the Nix store.
(() => {
"use strict";
const { classes: Cc, interfaces: Ci, utils: Cu } = Components;
Cu.importGlobalProperties(["IOUtils"]);
const Services = {
appinfo: Cc["@mozilla.org/xre/app-info;1"].getService(Ci.nsIXULRuntime),
console: Cc["@mozilla.org/consoleservice;1"].getService(Ci.nsIConsoleService),
env: Cc["@mozilla.org/process/environment;1"].getService(Ci.nsIEnvironment),
prefs: Cc["@mozilla.org/preferences-service;1"].getService(Ci.nsIPrefBranch),
};
const { TabUnloader } = ChromeUtils.importESModule(
"moz-src:///browser/components/tabbrowser/TabUnloader.sys.mjs"
);
const PREFIX = "firefox.memoryControl.";
const MiB = 1024 * 1024;
const log = message => {
const line = `[firefox-memory-control] ${message}`;
Services.console.logStringMessage(line);
if (typeof dump === "function") {
dump(`${line}\n`);
}
};
const sleep = milliseconds =>
new Promise(resolve => {
const timer = Cc["@mozilla.org/timer;1"].createInstance(Ci.nsITimer);
timer.initWithCallback(resolve, milliseconds, Ci.nsITimer.TYPE_ONE_SHOT);
});
const prefInt = name => Services.prefs.getIntPref(PREFIX + name);
const prefBool = name => Services.prefs.getBoolPref(PREFIX + name);
// procfs files report a size of zero, so IOUtils reads /proc/meminfo as empty.
// nsIScriptableInputStream also rejects reads larger than that reported size;
// nsIConverterInputStream reads until EOF without relying on it.
function availableMemory() {
const file = Cc["@mozilla.org/file/local;1"].createInstance(Ci.nsIFile);
file.initWithPath("/proc/meminfo");
const fileStream = Cc["@mozilla.org/network/file-input-stream;1"].createInstance(
Ci.nsIFileInputStream
);
fileStream.init(file, 0x01, 0, 0);
const input = Cc["@mozilla.org/intl/converter-input-stream;1"].createInstance(
Ci.nsIConverterInputStream
);
input.init(fileStream, "UTF-8", 0, 0);
const chunk = {};
let meminfo = "";
while (input.readString(4096, chunk)) {
meminfo += chunk.value;
}
input.close();
const match = /^MemAvailable:\s+(\d+)\s+kB$/m.exec(meminfo);
if (!match) {
throw new Error("MemAvailable is absent from /proc/meminfo");
}
return Number(match[1]) * 1024;
}
async function unloadOne(minInactiveMs) {
const sorted = await TabUnloader.getSortedTabs(minInactiveMs);
const candidate = sorted.find(tab => TabUnloader.isDiscardable(tab));
if (!candidate) {
return null;
}
const estimatedBytes = candidate.memory || 0;
const unloaded = await TabUnloader.unloadLeastRecentlyUsedTab(minInactiveMs);
return unloaded ? { estimatedBytes } : null;
}
function runtimePaths() {
const runtimeDir = Services.env.get("XDG_RUNTIME_DIR");
if (!runtimeDir || !runtimeDir.startsWith("/")) {
throw new Error("XDG_RUNTIME_DIR is not an absolute path");
}
const root = `${runtimeDir}/firefox-memory-control`;
return {
root,
requests: `${root}/requests`,
processing: `${root}/processing`,
responses: `${root}/responses`,
};
}
async function ensureRuntimeDirectories(paths) {
for (const path of Object.values(paths)) {
await IOUtils.makeDirectory(path, { ignoreExisting: true, permissions: 0o700 });
}
}
async function claimRequest(paths) {
const children = await IOUtils.getChildren(paths.requests);
for (const requestPath of children.sort()) {
if (!requestPath.endsWith(".json")) {
continue;
}
const leaf = requestPath.slice(requestPath.lastIndexOf("/") + 1);
const claimed = `${paths.processing}/${leaf}.${Services.appinfo.processID}`;
try {
await IOUtils.move(requestPath, claimed, { noOverwrite: true });
return claimed;
} catch (error) {
// Another Firefox instance can win the atomic move.
}
}
return null;
}
async function writeResponse(paths, id, response) {
const finalPath = `${paths.responses}/${id}.json`;
const temporaryPath = `${finalPath}.${Services.appinfo.processID}.tmp`;
await IOUtils.writeUTF8(temporaryPath, JSON.stringify(response));
await IOUtils.move(temporaryPath, finalPath, { noOverwrite: true });
}
async function serviceRequest(paths, requestPath) {
let request;
try {
request = JSON.parse(await IOUtils.readUTF8(requestPath));
if (!/^[0-9a-f-]{36}$/.test(request.id)) {
throw new Error("invalid request id");
}
if (!Number.isSafeInteger(request.targetBytes) || request.targetBytes <= 0) {
throw new Error("targetBytes must be a positive integer");
}
const minInactiveMs = Number.isSafeInteger(request.minInactiveMs)
? Math.max(0, request.minInactiveMs)
: 0;
const baseline = await availableMemory();
let estimatedBytes = 0;
let observedBytes = 0;
let unloadedTabs = 0;
while (
estimatedBytes < request.targetBytes &&
observedBytes < request.targetBytes &&
unloadedTabs < 100
) {
const result = await unloadOne(minInactiveMs);
if (!result) {
break;
}
unloadedTabs += 1;
estimatedBytes += result.estimatedBytes;
await sleep(400);
observedBytes = Math.max(0, (await availableMemory()) - baseline);
}
const reachedTarget =
estimatedBytes >= request.targetBytes || observedBytes >= request.targetBytes;
await writeResponse(paths, request.id, {
id: request.id,
reachedTarget,
targetBytes: request.targetBytes,
unloadedTabs,
estimatedBytes,
observedBytes,
});
} catch (error) {
log(`request failed: ${error}`);
if (request && /^[0-9a-f-]{36}$/.test(request.id)) {
await writeResponse(paths, request.id, {
id: request.id,
reachedTarget: false,
error: String(error),
});
}
} finally {
await IOUtils.remove(requestPath, { ignoreAbsent: true });
}
}
const controller = {
busy: false,
underPressure: false,
timer: null,
paths: null,
async tick() {
if (this.busy) {
return;
}
this.busy = true;
try {
const request = await claimRequest(this.paths);
if (request) {
await serviceRequest(this.paths, request);
return;
}
if (!prefBool("enabled")) {
this.underPressure = false;
return;
}
const available = await availableMemory();
const low = prefInt("lowAvailableMiB") * MiB;
const high = prefInt("highAvailableMiB") * MiB;
if (high <= low) {
throw new Error("highAvailableMiB must be greater than lowAvailableMiB");
}
if (!this.underPressure && available <= low) {
this.underPressure = true;
log(`memory pressure entered at ${Math.round(available / MiB)} MiB available`);
} else if (this.underPressure && available >= high) {
this.underPressure = false;
log(`memory pressure cleared at ${Math.round(available / MiB)} MiB available`);
}
if (this.underPressure) {
await unloadOne(prefInt("minInactiveMs"));
}
} catch (error) {
log(`poll failed: ${error}`);
} finally {
this.busy = false;
}
},
async start() {
try {
this.paths = runtimePaths();
await ensureRuntimeDirectories(this.paths);
const interval = Math.max(250, prefInt("pollIntervalMs"));
this.timer = Cc["@mozilla.org/timer;1"].createInstance(Ci.nsITimer);
this.timer.initWithCallback(
() => this.tick(),
interval,
Ci.nsITimer.TYPE_REPEATING_SLACK
);
log(`started; polling every ${interval} ms`);
await this.tick();
} catch (error) {
log(`startup failed: ${error}`);
}
},
};
controller.start();
})();
+46
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@@ -0,0 +1,46 @@
{
lib,
firefox-unwrapped,
wrapFirefox,
writeText,
writeScriptBin,
symlinkJoin,
python3,
lowAvailableMiB ? 2048,
highAvailableMiB ? 3072,
pollIntervalMs ? 1000,
minInactiveMs ? 300000,
}:
let
autoConfig = writeText "firefox-memory-control.js" ''
defaultPref("firefox.memoryControl.enabled", true);
defaultPref("firefox.memoryControl.lowAvailableMiB", ${toString lowAvailableMiB});
defaultPref("firefox.memoryControl.highAvailableMiB", ${toString highAvailableMiB});
defaultPref("firefox.memoryControl.pollIntervalMs", ${toString pollIntervalMs});
defaultPref("firefox.memoryControl.minInactiveMs", ${toString minInactiveMs});
${builtins.readFile ./autoconfig.js}
'';
firefox = wrapFirefox firefox-unwrapped {
extraAutoConfig = ''
pref("general.config.sandbox_enabled", false);
'';
extraPrefsFiles = [ autoConfig ];
};
freeMemory = writeScriptBin "firefox-free-memory" ''
#!${python3}/bin/python3
${builtins.readFile ./firefox-free-memory.py}
'';
in
symlinkJoin {
name = "firefox-memory-control-${firefox.version}";
paths = [ firefox freeMemory ];
meta = firefox.meta // {
description = "Firefox with memory-pressure tab unloading and an on-demand reclaim utility";
mainProgram = "firefox";
platforms = lib.platforms.linux;
};
}
@@ -0,0 +1,139 @@
import argparse
import json
import os
import re
import sys
import time
import uuid
from pathlib import Path
SIZE_RE = re.compile(r'^([0-9]+(?:\.[0-9]+)?)\s*([kmgt]?i?b?)?$', re.I)
DURATION_RE = re.compile(r'^([0-9]+(?:\.[0-9]+)?)\s*(ms|s|m|h)?$', re.I)
def parse_size(value):
match = SIZE_RE.match(value)
if not match:
raise argparse.ArgumentTypeError(f'invalid size: {value!r}')
number = float(match.group(1))
suffix = (match.group(2) or 'b').lower().removesuffix('b').removesuffix('i')
powers = {'': 0, 'k': 1, 'm': 2, 'g': 3, 't': 4}
size = round(number * 1024 ** powers[suffix])
if size <= 0:
raise argparse.ArgumentTypeError('size must be greater than zero')
return size
def parse_duration(value):
match = DURATION_RE.match(value)
if not match:
raise argparse.ArgumentTypeError(f'invalid duration: {value!r}')
number = float(match.group(1))
suffix = (match.group(2) or 's').lower()
factors = {'ms': 1, 's': 1000, 'm': 60_000, 'h': 3_600_000}
return round(number * factors[suffix])
def format_size(size):
for suffix in ('TiB', 'GiB', 'MiB', 'KiB'):
unit = 1024 ** {'KiB': 1, 'MiB': 2, 'GiB': 3, 'TiB': 4}[suffix]
if size >= unit:
return f'{size / unit:.2f} {suffix}'
return f'{size} B'
def runtime_root():
runtime_dir = os.environ.get('XDG_RUNTIME_DIR')
if not runtime_dir or not os.path.isabs(runtime_dir):
raise RuntimeError('XDG_RUNTIME_DIR is not set to an absolute path')
return Path(runtime_dir) / 'firefox-memory-control'
def main():
parser = argparse.ArgumentParser(
description='Ask a running memory-controlled Firefox to unload tabs'
)
parser.add_argument('size', type=parse_size, help='desired reclaim amount, for example 2G')
parser.add_argument(
'--min-inactive',
type=parse_duration,
default=0,
metavar='DURATION',
help='only unload tabs inactive for this long (default: 0s)',
)
parser.add_argument(
'--timeout',
type=float,
default=60,
metavar='SECONDS',
help='maximum time to wait for Firefox (default: 60)',
)
args = parser.parse_args()
root = runtime_root()
requests = root / 'requests'
responses = root / 'responses'
requests.mkdir(mode=0o700, parents=True, exist_ok=True)
responses.mkdir(mode=0o700, parents=True, exist_ok=True)
request_id = str(uuid.uuid4())
request_path = requests / f'{request_id}.json'
temporary_path = requests / f'.{request_id}.{os.getpid()}.tmp'
response_path = responses / f'{request_id}.json'
request = {
'id': request_id,
'targetBytes': args.size,
'minInactiveMs': args.min_inactive,
}
temporary_path.write_text(json.dumps(request), encoding='utf-8')
os.chmod(temporary_path, 0o600)
temporary_path.replace(request_path)
deadline = time.monotonic() + args.timeout
try:
while time.monotonic() < deadline:
try:
response = json.loads(response_path.read_text(encoding='utf-8'))
break
except FileNotFoundError:
time.sleep(0.1)
else:
raise RuntimeError(
'timed out waiting for Firefox; start Firefox from the '
'firefox-memory-control package'
)
finally:
request_path.unlink(missing_ok=True)
response_path.unlink(missing_ok=True)
if 'error' in response:
raise RuntimeError(response['error'])
unloaded_tabs = response['unloadedTabs']
estimated_bytes = response['estimatedBytes']
observed_bytes = response['observedBytes']
target_bytes = response['targetBytes']
print(
f'unloaded {unloaded_tabs} tab(s); '
f'Firefox estimated {format_size(estimated_bytes)} reclaimable; '
f'MemAvailable increased by {format_size(observed_bytes)}'
)
if not response['reachedTarget']:
print(
f'could not reach the requested {format_size(target_bytes)}',
file=sys.stderr,
)
return 2
return 0
if __name__ == '__main__':
try:
sys.exit(main())
except (OSError, RuntimeError) as error:
print(f'firefox-free-memory: {error}', file=sys.stderr)
sys.exit(1)