CVE-2026-33210

Ruby JSON is a JSON implementation for Ruby.

Verified by Precogs Threat Research
Last Updated: Mar 20, 2026
Base Score
0UNKNOWN

Executive Summary

CVE-2026-33210 is a unknown severity vulnerability affecting binary-analysis, pii-secrets. It is classified as CWE-134. Ensure your systems and dependencies are patched immediately to mitigate exposure risks.

Precogs AI Insight

"The root cause of this vulnerability lies in within Ruby JSON, allowing the improper handling of untrusted input. In a real-world scenario, an attacker could exploit this by compromise the entire application stack, rendering traditional defenses ineffective. Precogs Binary SAST/DAST engine uncovers boundary violations in compiled software to safeguard the application against payload injection."

Exploit Probability (EPSS)
Low (0.0%)
Public POC
Undisclosed
Exploit Probability
Low (<10%)
Public POC
Available
Affected Assets
binary analysispii secretsCWE-134

What is this vulnerability?

CVE-2026-33210 is categorized as a critical Memory Corruption Vulnerability flaw. Based on our vulnerability intelligence, this issue occurs when the application fails to securely handle untrusted data boundaries.

Ruby JSON is a JSON implementation for Ruby. From version 2.14.0 to before versions 2.15.2.1, 2.17.1.2, and 2.19.2, a format string injection vulnerability...

This architectural defect enables adversaries to bypass intended security controls, directly manipulating the application's execution state or data layer. Immediate strategic intervention is required.

Risk Assessment

MetricValue
CVSS Base Score0 (UNKNOWN)
Vector StringN/A
PublishedMarch 20, 2026
Last ModifiedMarch 20, 2026
Related CWEsCWE-134

Impact on Systems

Remote Code Execution: Adversaries may execute arbitrary code by overwriting memory regions.

Denial of Service: Memory corruption often leads to unrecoverable application crashes.

Information Disclosure: Out-of-bounds reads can expose adjacent memory containing sensitive data.

How to fix this issue?

Implement the following strategic mitigations immediately to eliminate the attack surface.

1. Memory-Safe Languages When possible, migrate parsing logic to memory-safe languages like Rust or Go.

2. Compiler Protections Ensure the binary is compiled with ASLR, DEP/NX, Stack Canaries, and RELRO.

3. Fuzz Testing Implement continuous fuzzing with AddressSanitizer (ASan) in the CI/CD pipeline.

Vulnerability Signature

// Generic Memory Corruption Vector (C/C++)
void process_input(char *user_data, size_t size) \{
    char buffer[256];
    // DANGEROUS: Unbounded memory operation
    memcpy(buffer, user_data, size); // size may exceed 256
    
    // SECURED: Bound-checked operation
    if (size \> sizeof(buffer)) \{
        size = sizeof(buffer);
    \}
    memcpy(buffer, user_data, size);
\}

References and Sources

Vulnerability Code Signature

Attack Data Flow

StageDetail
SourceNetwork packet or file input
VectorData exceeds the allocated buffer bounds during a copy operation
Sinkstrcpy(), memcpy(), or pointer arithmetic
ImpactMemory corruption, Remote Code Execution (RCE)

Vulnerable Code Pattern

// ❌ VULNERABLE: Memory Corruption
void process_data(char *input) {
    char buffer[128];
    // Taint sink: copies without bounds checking
    strcpy(buffer, input);
}

Secure Code Pattern

// ✅ SECURE: Bounded Memory Operations
void process_data(char *input) {
    char buffer[128];
    // Sanitized boundary check
    strncpy(buffer, input, sizeof(buffer) - 1);
    buffer[sizeof(buffer) - 1] = '\0';
}

How Precogs Detects This

Precogs Binary SAST engine explicitly uncovers memory boundary violations and unsafe memory management functions in compiled binaries.\n

Related Vulnerabilitiesvia CWE-134

CVE-2020-19928.1 HIGH

Uncontrolled Format String in A format string vulnerability in the Varrcvr daemon of PAN-OS on PA-7000 Series devices with a Log Forwarding Card (LFC) allows remote attackers to crash the daemon creating a denial of service condition or potentially execute code with root privileges

CWE-134CWE-134
CVE-2020-31188.8 HIGH

Uncontrolled Format String in A vulnerability in the Cisco Discovery Protocol implementation for Cisco IOS XR Software could allow an unauthenticated, adjacent attacker to execute arbitrary code or cause a reload on an affected device

CWE-134CWE-787
CVE-2018-13529.8 CRITICAL

Uncontrolled Format String in A format string vulnerability in Fortinet FortiOS 5

CWE-134
CVE-2018-01758 HIGH

Buffer Overflow in Format String vulnerability in the Link Layer Discovery Protocol (LLDP) subsystem of Cisco IOS Software, Cisco IOS XE Software, and Cisco IOS XR Software could allow an unauthenticated, adjacent attacker to cause a denial of service (DoS) condition or execute arbitrary code with elevated privileges on an affected device

CWE-119CWE-134

Is your system affected?

Precogs AI detects CVE-2026-33210 in compiled binaries, LLMs, and application layers — even without source code access.