SDK Secure Acceleration

Integrate one SDK to replace DNS resolution and eliminate hijacking, push policies in seconds without app releases, and accelerate traffic across 1,000+ multi-cloud BGP nodes.

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Why Traditional Protection and Acceleration Always Lag Behind

Slow hijack recovery, hard-to-spot CC attacks, and runaway bandwidth costs are hurting your user experience and revenue.

Slow Hijack Recovery

Once a domain is hijacked, the only fix is a new app release. iOS and Android reviews take days, and users are long gone.

CC Attacks Are Hard to Identify

Low-frequency CC attacks blend into normal traffic. Fixed rules can't tell good from bad, so misses and false blocks coexist.

Runaway Protection Costs

Bandwidth keeps growing, attacks still hurt availability, and costs keep climbing.

Traditional Approach vs ByteShield SDK

The same attack and latency scenarios, two very different outcomes.

  • Node Switching Replaces DNS resolution so policies take effect instantly, while traditional setups rely on DNS resolution and TTL caching and converge slowly.
  • Hijack Risk Encrypted channels with identity verification block hijacking and injection, while traditional setups stay vulnerable to DNS hijacking, pollution, and attacks.
  • Protection Cost All-in protection included in your plan with full-strength defense, while traditional billing by attack traffic lets costs spiral during large attacks.
  • DDoS Protection Hidden node pool with dynamic scheduling and a high-defense backstop for unlimited mitigation, while limited traditional scrubbing nodes get overwhelmed.
  • CC Attack Detection Dynamic request validation responds instantly with zero misses and zero false blocks, while threshold-based detection misses low-frequency attacks and over-blocks.
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Device-to-Edge Secure Acceleration Architecture

From device and connection to edge and cloud, a complete closed loop of protection and network optimization.

Device

Detects high-risk environments such as root, hooking, emulators, multi-instance, and app tampering

Connection

Establishes encrypted channels with identity verification and rejects illegitimate connections

Edge

Dynamically selects the best path based on real-time network quality and node load

Cloud Intelligence

Continuously analyzes link quality and attack signals to drive global policy adjustments

Device Risk Detection

Detects root, hooking, emulators, multi-instance, and app tampering to identify malicious devices early.

  • Identifies root, hooking, and emulator environments
  • Detects multi-instance and app tampering
  • Flags and isolates high-risk devices in advance
ROOTHOOKEMU

Encrypted Trusted Connections

Identity verification before connecting and dynamically encrypted transport prevent traffic hijacking, eavesdropping, forgery, and replay attacks.

  • Two-way encrypted channel blocks hijacking and injection
  • Identity signature verification before every connection
  • Prevents eavesdropping, forgery, and replay attacks

Intelligent Network Acceleration

Nearby access, weak-network optimization, and multipath UDP transport reduce cross-region and mobile latency; replaces DNS resolution with second-level effect.

  • Nearby access + weak-network optimization + multipath UDP
  • Replaces DNS resolution, scheduling takes effect in seconds
  • Reduces cross-region and mobile network latency
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Intelligent Traffic Scheduling

Hides node resources and separates normal, suspicious, and high-risk traffic based on device risk, link quality, and node health; backed by high-defense capacity against large-scale DDoS attacks.

  • Hidden node pool with dynamic access allocation
  • Normal, suspicious, and high-risk traffic isolated
  • High-defense backstop absorbs large-scale DDoS

Real-World Benefits

Stronger Service Resilience

Device, connection, and edge layers work together to reduce the impact of any single point of failure.

Lower Origin Load

Risk identification and traffic separation happen before requests reach your origin, cutting backend waste.

Better Connection Quality

DNS-free second-level scheduling plus weak-network optimization and multipath transport reduce latency and stutter.

Hijacking Eliminated

Encrypted channels from the device block hijacking and injection; scheduling policies are pushed remotely for instant fixes without an app release.

Lower Protection Costs

All-in protection is included in your plan. ByteShield defends you at full strength.

Five Steps to Intelligent Scheduling

From integration to go-live, intelligent scheduling takes just five steps.

  • Integrate the SDK iOS and Android supported
  • Detect Device Risk Collects device and environment signals
  • Establish Encrypted Connections Identity verification and secure handshake
  • Smart Routing and Node Selection Dynamic allocation by quality and load
  • Monitor and Adjust Continuously Real-time intervention and policy delivery from the cloud platform
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FAQ

Yes. Traditional hijacking happens at the network transport layer, exploiting plaintext HTTP or unencrypted DNS queries. The SDK establishes a two-way encrypted channel between the client and edge nodes and applies identity signature verification to every connection, ensuring requests and responses cannot be tampered with or injected with third-party content. A built-in legitimate-node verification mechanism also identifies and blocks responses from unexpected hijacking nodes, closing off hijacking at both the device and the edge.
The SDK establishes trusted connections between clients and edge nodes and verifies the identity of every connection. Connections that fail verification or carry high-risk signals are blocked or isolated in real time before they reach your origin.
iOS and Android are currently supported. The solution is designed to work alongside your existing acceleration, protection, and business systems; the exact integration approach depends on a technical assessment of your architecture. Contact us for tailored advice.
Yes, free trials are available. Contact a specialist to apply.