Press Release
WarRin Protocol: A point-to-point anonymous privacy communication system
Dr.WarRin
Summary
This white paper provides an explanation of the WarRin protocol and related blockchain, point-to-point, network value, transport protocol, and encryption algorithms. The limited space will highlight the WRC allocation scheme and purpose of the WarRin Protocol Token, which is important for achieving the WRC’s stated objectives. This white paper is for informational purposes only and is not a promise of final implementation details. Some details may change during the development and testing phases.
1. Introduction
Traditional centralized communication systems such as WeChat,WhatsApp, FacebookMessage,Google Allo,Skype face a range of problems, including government surveillance, privacy breaches, and inadequate security, and the WarRin protocol proposes apoint-to-pointencrypted communications system that leveragesblockchain technology, combined with Double Ratc het algorithms, pre-keys, and extended X3DH handshakes. The WarRin Protocol uses The Generalized Directional Acyclic Graph and Curve25519,AES-256, and HMAC-SHA256 as the pronamor, allowing each account to have its own unique account chain, providing unlimited instant communication between points and unlimited scalability, anonymity, integrity, consistency, and asynchronousness.
2. WarRin Protocol communication system
2.1 Two types of communication
The Waring Protocol communication system divides chat channels into two types.
Two modes of communication
- General Chat mode: Using point-to-point encrypted communication, the service side has access to the key and can log in via multiple devices.
- Secret Chat mode: Encrypted communication using point-to-point can only be accessed through two specific devices.
The design combines some of the advantages of raiBlocks multi-chain construction with IOTA/Byteball DAG, which we call the Waring protocol. With improvements, we have given the WarRin protocol greater throughput and faster processing power while ensuring the security of the ledger, and network nodes can store the ledger in less space and search their communications accounts quickly in the ledger. When two users communicate, third parties contain content that neither manager can access. When a user is chatting in secret, the message contains multimedia that can be designated as a self-destruct message, and when the message is read by the user, the message is automatically destroyed within the specified time. Once the message expires, it disappears on the user’s device.
2.2 How chat history is encrypted
2.2.1 MTProto Transport Protocol
MTProto transport protocol
The WarRin communication system draws on RaiBlocks’ multi-chain structure for point-to-point communication. Each account has its own chain that records the sending and receiving behavior of the account. For example, in Figure 1, there are 7 accounts, each with 7 chain records of the account sending and receiving communications. On the graph, horizontal coordinates represent the timeline, and portrait coordinates represent the index of the account.
Transferring information from one account to another requires two transactions: one to send a communication from the sender’s transfer content, and one to receive information to add that content to the content of the receiving account. Whether in a send-side account or a receiving account, a PoW proof of work with the previous communication content Hash is required to add new communications to the account. In the account chain, poWwork proves to be an anti-spam communication tool that can be done in seconds. In a single account chain, the Hash field of the previous block is known to pre-generate the PoW required for subsequent blocks. Therefore, as long as the time between the two communications is greater than the time required to generate the PoW, the user’s transaction will be completed instantaneously.
In such a design, only the receiving end of the communication is required for settlement. The receiving end places the received communication signature on the account chain, which is called accepted communication. Once accepted, the receiving end then broadcasts the communication to the ledger of the other nodes. However, there may be situations where the receiving end is not online or is subject to a DoS attack, which prevents the receiving end from putting the receiving side communication on the account chain, which we call uncommoted transactions. The X symbol in Figure 1 represents an open transaction sent from Account 2 to Account 5.
Obviously, because only the sending and receiving sides of the communication are required to settle, such communication is very lightweight, all traffic can be transmitted in a UDP package and processed very quickly. At the same time, all communications in an account are kept in one chain, with great integrity, and the ledger can be trimmed to a minimum. Some nodes are not interested in spending resources to store the full communication history of the account; They are only interested in the current communications for each account. When an account communicates, its accumulated information is encoded, and these nodes only need to keep track of the latest blocks so that historical data can be discarded while maintaining correctness. Such communication is only possible if the sending and receiving sides trust each other and are not the final settlement of the entire network consensus. There is a security risk in the absence of trust on the sending and receiving ends, or in situations where the receiving end is attacked by DoS without the sender’s knowledge.
We have observed that although each account has a separate chain, the entire ledger can be expressed in the form of a WarRin object. As shown in Figure 2, this is represented by the WarRin astros trading on all accounts in Figure 1.
The first unit in the WarRin object is the Genesis unit, the next six cells represent the allocation of the initial token, and the other units correspond to the communication transactions between the account chains. We use the symbol a/b to represent a communication transaction, where the sender is a andthe recipient is b. The last 4/1 unit in Figure 2 is the last communication corresponding to Figure 1 – sending communication from account 4 to account 1. A transaction in Figure 1 is a confirmation of the latest block or the latest communication on the account chains of both parties to the communication, reflected in Figure 2 as a reference to the latest units of the account chains of both parties to the communication. Take unit 4/1, for example, where the latest block on account 4 was the receiving block for 2/4 trades and the newest block on account 1 was the send block for 1/5 trade. So on the DAG, the 4/1 cell refers to the 2/4 cell and the 1/5 cell.
The WarRin protocol uses triangular shrapned storage technology to crack impossible triangles in the blockchain through the shrapghine technology, with extensive node engagement and decontalination while maintaining high throughput and security:
- Complete shraping of blockchain status;
- Secure and low-cost cross-synth trading;
- Completely random witness selection;
- Flexible and efficient configuration
Complete decentralization ensures absolute security and scalability of the standard chain.
(Figures above show seven Ling-shaped objects:2/1 one;3/2 one… )
2.2.2 Curve25519 Elliptic Curve Encryption Algorithm
Curve25519, proposed by Daniel Bernstein, is anelliptic curve algorithm for the exchange of The Montgomery Curve’s Difi Herman keys.
Montgomery Curve Curve Mathematical Expression:
Curve25519 Curve Mathematical Expression:
Curve25519 encryption algorithms are used for standard private and public keys, and the private keys used for Curve25519
encryption algorithms are typically defined as secret
indices, corresponding to
public keys, coordinate points, which are usually sufficient to perform ECDH (elliptical) and symmetrical elliptic curve encryption algorithms. If one party wants to send information to the other party and the other party has the
public
and private keys, perform the following
calculation:
Generate a one-time random secret
index, calculated using Montgomery, because the message is a symmetrical password encrypted using 256-bit sharing, such as AES using a 256-bit integer
one-time public key, as akey, and 256-bit integer is a
prefix to encrypted information. Once a party to
the public
key receives this message, it can start by calculating , that is ,
the receiver recovers the shared secret and
is able to decrypt the rest of the information.
3. Incentives
On the basis of the WarRin agreement, by adding the incentive layer, we can effectively avoid the whole network being attacked and eliminate spam. As long as honest nodes control most of the calculations, for an attacker, the network is robust because of its simplicity of structure, and nodes need little coordination to work at the same time. They do not need to be authenticated because information is not sent to a location.
3.1 WRC Certificate
WRC issued a total of 2,500,000 pieces and continued to increment according to the WoRin gain function.
3.1.1 WoRin Gain Function
3.1.2 WoRin gain function control table
| The WoRin gain function is compared to the table | ||
| Number of layers /F | Growth factor /I | WRC circulation |
| [1,50] | 0.002 | 334918.8057 |
| [51,100] | 0.002 | 780024.2108 |
| [101,150] | 0.004 | 1177129.617 |
| [151,200] | 0.006 | 1487860.923 |
| [201,250] | 0.01 | 1722637 |
| [251,300] | 0.016 | 1894309.216 |
| [301,400] | 0.03 | 2101623.789 |
| [401,500] | 0.06 | 2217555.464 |
| [501,1000] | 0.1 | 2450712.257 |
| [1001,2000] | 0.12 | 2557457.3 |
According to the Gain function, the
larger the number of layers,
the greater the growth rate, the faster each layer is filled, and the
greater the circulation.
3.2 Allocation
WarRin protocol node distribution
3.2.1 Node allocation
Set the initial price
to 0.02,the layer where the first node is located is , according to the equation of the iso-difference column, there is , so that the
node token is assigned to the piece, for the price of
the layer where the node
is located, there is a
set.
For example, the number of tiers in which the 98th node is located is Tier 13, and the price of Tier 13 is 0.214,the tokens assigned by Tier 98 are
3.2.2 Total number of address assignments
Each node occupies one address, and the total number of addresses is
4. The use
WRC is the native pass-through of the WarRin protocol, andWRC will assign to Genesis nodes according to the above allocation scheme, which together form the entire network, andWRC can be used in the following scenarios, including but not limited to:
Pay the network’s gas charges, i.e. for transferring money and invoking smart contracts;
System Staking tokens, used for node elections and token issues;
The capital is lent to the validator in exchange for the amount of the reward;
Voting rights for system proposals;
The means of payment for apps developed on WoRin Services;
WoRin Storage is a means of payment on the decentralization storage;
WoRin DNS domain name and WoRin WWW website means of payment;
WoRin Proxy agents hide the means of payment for body and IP addresses;
WoRin Proxy penetrates payment methods reviewed by local ISPs
……
5. Conclusions
Metcalfe’s Law states that thevalue of a network is equal to the square of the number of nodes within the network, and that the value of the network is directly related to the square of the number of connected users. That is ( the
value factor, the number of
users.) That is, the greater the number of users on a network, the greater the value of the entire network and each computer within that network. The WarRin protocol also follows this law, and when the number of nodes reaches a certain level, the entire network becomes more robust.
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Disclaimer: The views, suggestions, and opinions expressed here are the sole responsibility of the experts. No Digi Observer journalist was involved in the writing and production of this article.
Press Release
AI Risks to Enter 60–80% of Liability and Cyber Insurance Underwriting by 2028, ScienceSoft Predicts
McKinney, USA, September 10th, 2026, FinanceWire
ScienceSoft has released proprietary research on how midsize US insurers will address artificial intelligence (AI) risks in coverage and underwriting through 2028. Drawing on insurance market data, perspectives from industry experts, and ScienceSoft’s experience working with insurance organizations, the research examines whether growing AI-related losses will lead to a new class of AI-specific insurance.
The research forecasts that by 2028, 60–80% of new policies and renewals in errors and omissions (E&O), directors and officers (D&O), employment practices liability (EPL), and cyber insurance will factor AI risks into underwriting. However, ScienceSoft expects most midsize US insurers to continue covering AI risks primarily through existing lines of business rather than standalone AI policies. The research team anticipates AI-specific insurance to grow rapidly but remain a small niche in the commercial insurance market.
ScienceSoft finds that demand for clearer AI coverage is rising alongside AI-related incidents. The research points to a 262% rise in publicly documented AI incidents from 2022 to 2025 and highlights businesses are showing strong interest in protection against emerging liabilities associated with AI. Insurers take several approaches to making AI treatment more explicit, including affirmative policy wording, AI exclusions, specialized endorsements, and dedicated AI insurance products.
At the same time, the research reveals that much of today’s AI exposure remains covered through traditional insurance products. ScienceSoft concludes that AI-specific insurance is unlikely to become mainstream by 2028, despite the projected strong market growth (from $40 million in 2024 to $4.8 billion by 2032, at a roughly 80% CAGR). Yet even at that pace, the segment is projected to account for only around 0.34% of commercial P&C premiums by 2032. The research team expects unclear liability attribution, accumulation risk, limited loss history, and regulatory uncertainty to continue slowing the development of dedicated AI coverage.
The research findings suggest that underwriting will adapt considerably faster than coverage. ScienceSoft finds that insurers are beginning to assess not only whether businesses use AI but also how AI systems are governed, what level of autonomy they have, and what controls organizations have in place. The research team expects these factors to increasingly influence premiums, coverage conditions, and risk control requirements through 2028.
Beyond its market forecast, the research examines what these changes mean for insurers, brokers, commercial insurance customers, AI software providers, regulators, and individuals. In particular, it explores how insurers may need to adapt underwriting and claims processes, why insureds may increasingly require broker services as AI-specific insurance develops, and why AI vendors may become one of the main customer groups for AI liability insurance.
Read the full report for more insights.
About ScienceSoft
ScienceSoft is a Texas-headquartered AI transformation and software engineering company with 37 years of experience in artificial intelligence and 14 years in insurance IT. The company holds the 2025 Global Award for Insurance Digital Transformation Excellence and the 2026 AI Leader Award for Best AI Solution for Insurance. With long-standing experience across AI and insurance technology, ScienceSoft’s experts bring a practical perspective on how emerging AI risks may affect insurers’ operations, technology, and the broader market.
Press Inquiries Welcome
ScienceSoft’s consultants and financial researchers are available to provide expert commentary on AI-related commercial risks and emerging, technology-enabled approaches to AI risk coverage and underwriting. For media inquiries, please follow the link.
Contact
Media and Analyst Relations Specialist
Alexa Tsviatkova
ScienceSoft
adtsviatkova@scnsoft.com
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Press Release
Chicago’s De’Elegance Private Car Service Celebrates 28 Years in Business by Rebranding as ChauXure
Oldest Black-owned, veteran-owned, woman-owned business of its kind in Chicago builds on its reputation for delivering exceptional experiences
CHICAGO—Sept. 9, 2026—De’Elegance, Chicago’s oldest Black owned, veteran-owned, woman-owned private car service, is celebrating its 28th year in business by rebranding as ChauXure and expanding its fleet of luxury cars. Founded in 1998 by Marie Guyton, an Air Force veteran, ChauXure is renowned for delivering exceptional experiences. By branding itself as ChauXure (Show Sure), the company is emphasizing its reputation for precision, reliability, and consistency.
“After almost 30 years in business, we felt it was time to update our brand to reflect the values that we have long embodied as a business,” explained Guyton, who was honorably discharged from the Air Force in 1990. “We work in high-demand environments where timing and execution cannot vary. Our goal is always to set the standard for service, and ensure that every experience reflects professionalism, punctuality, and attention to detail.”
ChauXure handles executive, airport, and group travel. Clients run the gamut from individuals to corporate clients and large-scale events such as the Indy 500, PGA, and WBNA. While based in Chicago, ChauXure frequently operates on a national basis, such as in the case of the SuperBowl and the NFL Draft.
As part of its rebrand and anniversary observance, ChauXure has invested in expanding its fleet of Lincoln Navigators and Mercedes Sprinter vans. The latter can carry up to 14 passengers in luxury style.
To learn more or reserve travel, visit https://chauxure.com/, email info@chauxure.com, or call (708) 765-6255. Service is available 24 hours a day, 365 days a year.
Media Contact
Organization: ChauXure
Contact Person: T. Guyton
Website: https://chauxure.com/
Email: Send Email
Contact Number: +17087656255
City: Chicago
State: IL
Country: United States
Release id: 48943
The post Chicago’s De’Elegance Private Car Service Celebrates 28 Years in Business by Rebranding as ChauXure appeared first on King Newswire. This content is provided by a third-party source.. King Newswire makes no warranties or representations in connection with it. King Newswire is a press release distribution agency and does not endorse or verify the claims made in this release. If you have any complaints or copyright concerns related to this article, please contact the company listed in the ‘Media Contact’ section
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Press Release
Tribal Launches Campfire, Letting Business and Technical Teams Build on Salesforce Together
NEW YORK, NEW YORK, September 10th, 2026, FinanceWire
Tribal’s Campfire is a shared canvas that lets enterprises build and change their own Salesforce org at the speed of business, with security, permissions and dependencies intact
Enterprise-native AI platform Tribal today launched Campfire, a shared, production-grounded workspace that brings business users, architects, security teams, admins, reviewers, and testers into one governed process for building applications on Salesforce (NYSE: CRM).
Salesforce’s move toward Headless 360 is expanding how users, agents, and applications can interact with the platform. For large enterprises, that creates a new challenge: how to let more people build without losing control of the org.
Campfire replaces disconnected handoffs with one shared workspace where business leaders, architects, security teams, and admins build together. Business leaders define the outcome, architects identify dependencies, security sets the guardrails, and admins turn the approved design into a production-ready solution. Requirements, risks, and decisions stay aligned from idea through deployment.
Every participant works from the same context, grounded in the systems already running in production. Tribal’s Metadata Fabric continuously maps the org’s objects, automations, permissions, business rules, and dependencies. This allows teams to move directly into building instead of spending cycles reconciling conflicting context and assumptions across separate AI tools.
From there, Campfire turns the shared design into an application built on Agentforce and Omni-Channel, with the agreed workflows and guardrails carried through.
“The biggest bottleneck in enterprise software is not a shortage of ideas. It is everything that has to happen between an idea and production,” said Yoav Kolodner, Co-founder and CEO of Tribal. “Campfire addresses what comes next: how enterprises decide what automations, objects, and AI applications to build, bring the right people into that decision, and move safely into production.”
Campfire is designed to help enterprises retain ownership of their mission-critical Salesforce systems rather than route every change through a central development queue or implementation partner. Because applications are built inside Salesforce, teams retain their existing permissions, governance, and audit controls instead of recreating them in external tools. Campfire applies those guardrails throughout the build process, allowing more people to contribute without compromising the org.
“The best ideas in a Salesforce org rarely come only from the people with permission to build,” said Uri Pintov, CPO of Tribal. “They come from the people closest to the work, who usually have no way to act on them. Campfire lets those people shape the solution without forcing the enterprise to choose between speed and security.”
For global companies, that model also changes how Salesforce programs scale. ADAMA, a global crop protection company, used Tribal to support its Agentforce rollout across 19 countries. Rather than one central team guessing at what every market needed, or 19 local builds drifting apart, the teams closest to each market shaped their own requirements on a shared foundation, with separation maintained between markets where local requirements called for it.
“With Tribal, we move significantly faster, iterating quickly and deploying to production with confidence. We’re now able to better serve users in 19 countries while streamlining how they work with data across both new and existing markets,” said Nir Rehav, CIO of ADAMA.
The same holds on everyday enterprise needs. One customer used Campfire to build a commission calculator for its sales team, a project that would normally have required an implementation partner, a six-figure budget and months of work.
As AI expands who can build inside enterprise systems, the challenge is no longer generating solutions. It is coordinating the people, context, and controls required to deploy them safely. Campfire gives CIOs a way to increase development speed without loosening governance or fragmenting the systems their businesses run on.
Tribal Campfire is rolling out to customers now. Tribal will demonstrate Campfire during Dreamforce 2026, September 15 to 17, at Moscone Center in San Francisco.
About Tribal
Tribal is an enterprise AI platform that lets companies own their mission-critical systems and manage them at the speed of business. Founded by Wix and Salesforce veterans, Tribal’s Metadata Fabric maps the full org and, with a team of AI agents on top, enables teams to build and change these systems 10x faster inside their existing security guardrails. Tribal supports Salesforce, ServiceNow, Snowflake, and other key enterprise systems of record.
For more information, visit https://gotribal.ai/.
Salesforce, Agentforce and other Salesforce marks are trademarks or registered trademarks of Salesforce, Inc.
Contact
PR
Orian Tal
Tribal
orian@thepitch.media
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Disclaimer: The views, suggestions, and opinions expressed here are the sole responsibility of the experts. No Digi Observer journalist was involved in the writing and production of this article.
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