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Summary
The maxLength mitigation added in 5.0.8 for GHSA-mh99-v99m-4gvg / CVE-2026-14257 is incomplete. It bounds the accumulator where results are combined, but not the intermediate arrays that feed it. A ~25 KB input still crashes the Node process with an uncatchable out-of-memory error, so try/catch around expand() does not help.
A second, related path in the same function lets a ~400 KB input block the event loop for over two minutes without ever exceeding the memory bound.
Details
maxLength was enforced in combine(), the single place output grows. Two arrays are built before combine() runs, and neither was bounded.
1. Comma alternatives accumulate without a running total (memory exhaustion)
Each alternative in {a,b,c,...} is expanded by its own recursive expand() call, so each receives a full, independent maxLength allowance. The results were then concatenated into a single values array with no cumulative limit:
js values = [] for (let j = 0; j < n.length; j++) { values.push.apply(values, expand(n[j], max, maxLength, false)) }
acc = combine(acc, pre, values, max, maxLength, ...)
With A alternatives, values can reach A maxLength characters before combine() gets a chance to truncate it. At the default maxLength of 4,000,000 and 400 alternatives, that is well past any default heap.
2. Padded sequences ignore maxLength while generating (CPU exhaustion)
expandSequence() was bounded by max (the result count) but never consulted maxLength. A padded sequence's element width follows the input, so {0...01..100000} with a wide pad generates max elements, each as wide as the input, only for combine() to discard all but a handful.
Memory stays flat here, because V8 represents the padded strings as cons-strings, which is likely why this path was not caught alongside the original issue. The cost is time: work proportional to max width.
| pad width | input bytes | results kept | time (5.0.8) | time (patched) | |---|---|---|---|---| | 20,000 | 20 KB | 199 | ~7.3 s | ~20 ms | | 100,000 | 100 KB | 39 | ~32 s | ~20 ms | | 400,000 | 400 KB | 9 | ~124 s | ~18 ms |
Output is byte-identical before and after the fix; only the wasted work is removed.
Proof of concept
Memory exhaustion, against 5.0.8:
js import { expand } from 'brace-expansion'
const part = '{' + '0'.repeat(50) + '1..100000}' const input = '{' + Array(400).fill(part).join(',') + '}' // ~25 KB
try { expand(input) } catch (e) { // never reached - the process is already dead }
FATAL ERROR: Ineffective mark-compacts near heap limit Allocation failed - JavaScript heap out of memory Aborted
Event-loop stall, against 5.0.8:
js import { expand } from 'brace-expansion'
// ~400 KB input, returns 9 results after roughly two minutes of blocking CPU expand('{' + '0'.repeat(400000) + '1..100000}')
Impact
Denial of service. Any application that passes attacker-controlled input to expand(), directly or transitively through a glob or pattern-matching library, can be remotely crashed or stalled. The out-of-memory variant terminates the process and cannot be handled with try/catch.
Applications already on 5.0.8 are affected: the 5.0.8 mitigation does not cover these paths.
Patches
Both intermediate arrays are now bounded as they are built, using the same max and maxLength limits already applied in combine():
- values tracks a running result count and character length while alternatives are appended, and stops once either bound is reached. - expandSequence() accepts maxLength and stops generating once the sequence's own characters reach it.
As with the existing limits, output is truncated rather than allowed to grow without bound, which matches how max already behaves. The defaults sit well above any realistic expansion, so legitimate input is unaffected.
Workarounds
If upgrading is not immediately possible, avoid passing untrusted input to expand() or to glob brace patterns, or pass an explicitly small max and maxLength.
Note that a small maxLength alone was not sufficient on affected versions: it was applied per alternative rather than cumulatively, which is the root of the first issue above.
Credits
The memory-exhaustion bypass was reported by Alessio Della Libera, CEO & Co-founder at Numyra.
The sequence-generation issue was found while verifying that report.
Summary
expand() bounds the number of results it produces (the max option, 100000 by default) but not their length. By chaining many brace groups, an attacker keeps the result count under max while making every result grow with the number of groups. Building max long results — plus the intermediate arrays combined at each brace group — exhausts memory and crashes the Node process with an uncatchable out-of-memory error. try/catch around expand() does not help: the fatal error terminates the process.
A ~7.5 KB input ('{a,b}'.repeat(1500)) is enough to crash a default Node process.
Details
For N chained brace groups such as '{a,b}'.repeat(N):
- the result count is 2^N, immediately capped at max (100000), so the max protection appears to hold, but - each result is N characters long, so the total output size is max × N characters, which grows without bound in N.
expand combines each brace set with the fully-expanded tail:
js const post = m.post.length ? expand(m.post, max, false) : [''] ... for (let j = 0; j < N.length; j++) { for (let k = 0; k < post.length && expansions.length < max; k++) { const expansion = pre + N[j] + post[k] // grows one group longer per level ... expansions.push(expansion) } }
The loop guard expansions.length < max limits how many strings are built, but nothing limits how long they get. Each recursion level materializes another array of up to max strings, one character longer than the level below, and — because V8 represents pre + N[j] + post[k] as a cons-string (rope) that references post[k] — those intermediate strings stay reachable through the whole chain. Memory therefore scales with max × N.
Measured on 5.0.7 ('{a,b}'.repeat(N), default max):
| groups (N) | input bytes | result count | peak RSS | |---|---|---|---| | 20 | 100 | 100,000 | ~80 MB | | 50 | 250 | 100,000 | ~214 MB | | 100 | 500 | 100,000 | ~409 MB | | 300 | 1,500 | 100,000 | ~1,148 MB | | 1500 | 7,500 | — | OOM crash |
Proof of concept
js const { expand } = require('brace-expansion')
// ~7.5 KB input — crashes the process with a fatal, uncatchable OOM: // FATAL ERROR: ... JavaScript heap out of memory try { expand('{a,b}'.repeat(1500)) } catch (e) { // never reached — the process is already dead }
Impact
Any application that passes attacker-influenced strings to brace-expansion.expand() — directly, or transitively via minimatch / glob brace patterns — can be crashed by a small request. Because the failure is a fatal V8 out-of-memory error rather than a thrown exception, it cannot be caught and it takes down the whole worker/process, denying service.
Remediation
Upgrade to a patched release. The fix bounds the total number of characters a single expand() call may accumulate (EXPANSIONMAXLENGTH, default 4000000, configurable via a new maxLength option), applied inside the output-building loops so intermediate arrays are bounded too. Once the limit is reached, output is truncated — consistent with how max already truncates — instead of growing without bound. The limit sits well above any realistic expansion (100,000 results hitting max measure ~1M characters), so legitimate input is unaffected.
After the fix, '{a,b}'.repeat(1500) returns a bounded, truncated result in ~0.7 s using ~340 MB and never crashes, including under a constrained 512 MB heap.
The fix bounds memory but the algorithm still rebuilds intermediate arrays at each level (roughly O(N × maxLength) work on this input class). A streaming rewrite that produces output in O(total output size) can be a non-urgent follow-up.
If immediate upgrade isn't possible, avoid passing untrusted input to expand() / glob brace patterns, or pass a small explicit max and maxLength.
The max option was being applied too late:
When expanding a single large numeric range like {1..10000000}, the sequence generation loop generates all 10 million intermediate elements before the max limit is applied With max=10, the output is correctly limited to 10 items, but the process still allocates ~505 MB and spends ~800ms building the full intermediate array.
Workaround
Ensure the string to be expanded doesn't contain more values than the desired max item count.
Impact
A brace pattern with a zero step value (e.g., {1..2..0}) causes the sequence generation loop to run indefinitely, making the process hang for seconds and allocate heaps of memory.
The loop in question:
https://github.com/juliangruber/brace-expansion/blob/daa71bcb4a30a2df9bcb7f7b8daaf2ab30e5794a/src/index.ts#L184
test() is one of
https://github.com/juliangruber/brace-expansion/blob/daa71bcb4a30a2df9bcb7f7b8daaf2ab30e5794a/src/index.ts#L107-L113
The increment is computed as Math.abs(0) = 0, so the loop variable never advances. On a test machine, the process hangs for about 3.5 seconds and allocates roughly 1.9 GB of memory before throwing a RangeError. Setting max to any value has no effect because the limit is only checked at the output combination step, not during sequence generation.
This affects any application that passes untrusted strings to expand(), or by error sets a step value of 0. That includes tools built on minimatch/glob that resolve patterns from CLI arguments or config files. The input needed is just 10 bytes.
Patches
Upgrade to versions - 5.0.5+
A step increment of 0 is now sanitized to 1, which matches bash behavior.
Workarounds
Sanitize strings passed to expand() to ensure a step value of 0 is not used.