GHSA-p2w3-6x73-2f6x
Dashboard / Vulnerabilities / GHSA-p2w3-6x73-2f6x
GHSA-p2w3-6x73-2f6x
Summary: Dozzle: SSRF guard bypass via IPv6 transition addresses (6to4/NAT64/Teredo) in webhook notification dispatcher
Details: ## Summary The `isBlockedIP` SSRF guard in Dozzle's webhook notification dispatcher blocks loopback, link-local, multicast, and unspecified addresses but does not recognize IPv6 transition mechanism addresses (RFC 3056 6to4, RFC 6052 NAT64, RFC 4380 Teredo) that embed arbitrary IPv4 addresses. An authenticated user can bypass the guard to reach loopback services, cloud metadata endpoints (169.254.169.254), and other blocked ranges via webhook notification URLs. ## Affected component / versions - Package: `github.com/amir20/dozzle` - Affected versions: all versions with SSRF guard (current HEAD [`b9df313`](https://github.com/amir20/dozzle/commit/b9df31356fc024e6768a1aac605844dc041d95ee)) - Vulnerable code: `internal/notification/dispatcher/webhook.go` ## Details ### Root cause (CWE-918) [`internal/notification/dispatcher/webhook.go:32-51`](https://github.com/amir20/dozzle/blob/b9df31356fc024e6768a1aac605844dc041d95ee/internal/notification/dispatcher/webhook.go#L32-L51): ```go func isBlockedIP(ip net.IP) bool { if ip.IsLoopback() || ip.IsLinkLocalUnicast() || ip.IsLinkLocalMulticast() || ip.IsMulticast() || ip.IsInterfaceLocalMulticast() || ip.IsUnspecified() { return true } if v4 := ip.To4(); v4 != nil && zeroNetV4.Contains(v4) { return true } if ip.Equal(net.IPv4bcast) { return true } return false } ``` The guard intentionally allows RFC 1918 private ranges for self-hosted webhook targets, but blocks loopback (127.0.0.0/8, ::1), link-local (169.254.0.0/16, fe80::/10), and other non-routable addresses. IPv6 transition mechanism addresses bypass all these checks: | Mechanism | Prefix | Embeds | `isBlockedIP` result | |-----------|--------|--------|---------------------| | 6to4 | `2002::/16` | any IPv4 in bits 16-47 | `false` | | NAT64 WKP | `64:ff9b::/96` | any IPv4 in bits 96-127 | `false` | | Teredo | `2001:0000::/32` | any IPv4 in bits 96-127 | `false` | ### Reachability / trust boundary The `safeDialContext` function (line 53) resolves hostnames and checks each IP against `isBlockedIP` before establishing a TCP connection. This is used as the `DialContext` for the webhook HTTP client (line 115). Webhook URLs are configured by authenticated Dozzle users through the notification settings UI. The guard exists to prevent authenticated users from using webhook delivery as a proxy to reach the host machine's loopback services or cloud metadata endpoint. ### Attack chain 1. Authenticated user creates a webhook notification with URL `http://[2002:7f00:0001::1]:8080/` (6to4 embedding 127.0.0.1) 2. When a notification triggers, Dozzle's webhook dispatcher calls `safeDialContext` 3. The IPv6 address `2002:7f00:0001::1` is checked against `isBlockedIP` -- all predicates return false 4. Connection proceeds to the 6to4 relay which routes to 127.0.0.1 5. The webhook POST reaches the host's loopback services ## Impact An authenticated user can bypass the SSRF guard to: - Reach cloud metadata service at 169.254.169.254 via `2002:a9fe:a9fe::1` (6to4) to steal instance credentials - Reach localhost services via `64:ff9b::7f00:1` (NAT64) or `2002:7f00:0001::1` (6to4) - The webhook response body is logged at debug level but not returned to the user, making this a semi-blind SSRF (status code is returned) Note: RFC 1918 private ranges are intentionally allowed by the guard. This bypass specifically targets the blocked ranges (loopback and link-local/metadata) that the guard explicitly intends to prevent. ## Proof of concept Bypass vectors: ``` # 6to4 embedding 127.0.0.1 (bypasses IsLoopback) http://[2002:7f00:0001::1]:8080/ # NAT64 embedding 169.254.169.254 (bypasses IsLinkLocalUnicast) http://[64:ff9b::a9fe:a9fe]/latest/meta-data/ # 6to4 embedding 169.254.169.254 (bypasses IsLinkLocalUnicast) http://[2002:a9fe:a9fe::1]/latest/meta-data/ # Teredo embedding 127.0.0.1 http://[2001:0000:dead:beef:0000:0000:7f00:0001]:8080/ ``` Verification that `isBlockedIP` returns false for all vectors: ```go package main import ( "fmt" "net" ) func isBlockedIP(ip net.IP) bool { return ip.IsLoopback() || ip.IsLinkLocalUnicast() || ip.IsLinkLocalMulticast() || ip.IsMulticast() || ip.IsInterfaceLocalMulticast() || ip.IsUnspecified() } func main() { for _, v := range []string{ "2002:7f00:0001::1", // 6to4 -> 127.0.0.1 "64:ff9b::a9fe:a9fe", // NAT64 -> 169.254.169.254 "2002:a9fe:a9fe::1", // 6to4 -> 169.254.169.254 } { ip := net.ParseIP(v) fmt.Printf("%-35s blocked=%v\n", v, isBlockedIP(ip)) } } // Output: all false ``` ## Remediation Add IPv6 transition mechanism prefix checks to `isBlockedIP`: ```go func isBlockedIP(ip net.IP) bool { // ... existing checks ... // IPv6 transition mechanisms embedding arbitrary IPv4 if len(ip) == net.IPv6len { if ip[0] == 0x20 && ip[1] == 0x02 { return true } // 6to4 if ip[0] == 0x00 && ip[1] == 0x64 && ip[2] == 0xff && ip[3] == 0x9b { return true } // NAT64 if ip[0] == 0x20 && ip[1] == 0x01 && ip[2] == 0x00 && ip[3] == 0x00 { return true } // Teredo } return false } ``` ## Credit Reported by tonghuaroot ([email protected]).
References: https://github.com/amir20/dozzle/security/advisories/GHSA-p2w3-6x73-2f6x, https://nvd.nist.gov/vuln/detail/CVE-2026-73087, https://github.com/amir20/dozzle/pull/4887, https://github.com/amir20/dozzle/commit/8cf7ccd5ee041ecaea92b49951793d4d2393761f, https://github.com/amir20/dozzle, https://github.com/amir20/dozzle/releases/tag/v10.6.15
Affected packages
Package
Name: github.com/amir20/dozzle
Purl: pkg:golang/github.com/amir20/dozzle
Affected ranges
Type: SEMVER
Events:
