RFQ and HTLC Explained: How Cross-Chain Swaps Actually Work
I have written a lot of articles covering Omniston, STON.fi cross-chain, and STON.fi in general. One of the terms I have used most often is RFQ. Another one is HTLC I've explained them several times while discussing how Omniston handles cross-chain swaps, but there is one problem: if you don't already understand what happens behind the scenes, RFQ and HTLC can sound like nothing more than two complicated crypto acronyms. They are not. In simple terms, RFQ helps determine how a cross-chain swap should be executed, while HTLC provides a mechanism for coordinating the exchange between two separate blockchains. But how exactly do they work together? And what happens between the moment you click Swap and the moment your assets arrive on another blockchain? Let's break it down. ❑ Why Cross-Chain Swaps Need More Than a Swap Button A normal token swap is relatively straightforward when both assets exist on the same blockchain. A user provides one asset, a liquidity source provides another, and the transaction can be settled within the same network. Cross-chain swaps introduce another problem. Suppose you want to swap TON for an asset on Ethereum. TON and Ethereum are independent blockchains. They do not share one native transaction state, so a transaction on TON cannot simply tell Ethereum that something happened and expect Ethereum to treat it as part of the same transaction. The system therefore has to solve two separate problems. First, it needs to find someone capable of providing the asset on the destination chain. Second, it needs to coordinate the exchange so that one side is not left with an incomplete trade if something goes wrong. This is where two concepts become important: RFQ for finding the execution offer. HTLC for conditional settlement. They solve different parts of the same problem. ❑ RFQ: Asking the Market Who Can Execute Your Swap RFQ stands for Request for Quote. The easiest way to understand it is to imagine that you want to exchange a large amount of currency. Instead of walking into one dealer and accepting whatever price they give you, you could ask several dealers: "I want to exchange this amount. What can you offer me?" That is essentially the idea behind an RFQ system. A swap request can contain information such as the assets involved, the amount, the requested output, timing requirements, and settlement information. Liquidity providers can then respond with quotes describing what they are willing to execute. In Omniston, these liquidity providers are called resolvers. The important part is that RFQ is not the mechanism that settles the swap. It is primarily about discovering an executable offer. The basic flow is: 1. A user submits a swap request. 2. Resolvers receive the request. 3. Resolvers return executable quotes. 4. An appropriate quote is selected. 5. The trade moves into settlement and execution. So when you see "RFQ" in a cross-chain swap explanation, think: "Who can execute this trade, and under what terms?" ❑ The Resolver: The Counterparty Behind the Quote Understanding resolvers makes the RFQ model much easier to understand. A resolver is a service that provides exchange rates and participates in executing trades. In a cross-chain route, the resolver can also provide the liquidity needed on the destination blockchain. This is different from a traditional bridge. A bridge generally focuses on moving or representing assets between networks. A resolver in an RFQ-based swap system is acting more like a professional market maker or liquidity provider that can fulfill a particular trade. Think of it this way: RFQ: Asking several dealers for an executable offer Resolver: The dealer capable of filling the order Quote: The terms offered for the trade If several resolvers respond, the system can evaluate the available quotes and select the appropriate one. But finding a resolver is only half of the problem. You still need to settle the trade. ❑ RFQ Finds the Deal. But How Do You Settle It? Imagine that you agree to a cross-chain trade. You provide TON on the source chain. The resolver promises to provide ETH on Ethereum. Now consider what happens if you send your TON first but the resolver never delivers the ETH. Or the resolver locks ETH but you never complete your side. A price quote cannot solve that problem. The system needs a way to make the two sides of the transaction conditional on the same event. This is where HTLC comes in. ❑ HTLC: A Lock With a Secret and a Deadline HTLC stands for Hash Time-Locked Contract. The name sounds complicated, but it describes two simple mechanisms. The first is a hashlock. A secret is generated, and a cryptographic hash of that secret is used as part of the condition. Someone who knows the original secret, called the preimage, can satisfy the hash condition. The second is a timelock. The contract also contains a time-based condition. If the required action does not happen within the relevant period, the refund path becomes available. A simple analogy is a safe that requires a specific password to open, but also has an expiry condition. You can think of it as: Hashlock = "You need the right secret." Timelock = "You only have a certain amount of time." Together, they create a conditional lock. ❑ Why Two HTLCs Are Needed For a cross-chain atomic swap, one HTLC is not enough. You need linked conditions on both sides of the trade. For example, imagine a user is exchanging TON on the source chain for an asset on Ethereum. One HTLC can hold the user's source-side asset, while another holds the resolver's destination-side asset. Both sides use the same hashlock. The important relationship is: Source-side HTLC ↔ Destination-side HTLC The same secret connects the two. When the secret is revealed through the appropriate claim process, it can be used to satisfy the corresponding condition on the other side. If the required settlement does not happen, the relevant timelock eventually makes the refund path available. This is the foundation of the all-or-refund design used by HTLC-based atomic swaps. ❑ What Actually Happens When You Click "Swap"? Now let's put everything together. Imagine you are swapping an asset on TON for an asset on another supported blockchain. 1. You submit the swap request The application creates an RFQ describing what you want to trade. It contains the relevant assets, amounts, and execution requirements. 2. Resolvers respond Resolvers receive the request and provide executable quotes. Each quote describes what that resolver is prepared to execute. 3. A quote is selected The system selects the relevant quote according to the available execution conditions. At this point, RFQ has done its primary job. The system has found an execution offer. 4. The cross-chain order begins The trade moves into its settlement phase. The source-side assets enter the appropriate settlement process, while the resolver prepares the destination-side liquidity. 5. The two sides are conditionally linked For the HTLC-based cross-chain flow, the source and destination sides are connected through the same hashlock. The resolver provides the destination-side liquidity required for the trade. 6. The secret is revealed Once the relevant settlement condition is satisfied, the secret can be disclosed. That secret allows the appropriate party to claim the assets locked for them. 7. Both sides settle The user receives the destination asset. The resolver receives the source asset. The two sides are therefore connected through the same cryptographic condition rather than relying on a simple promise that the other party will complete the trade. 8. If the trade does not complete If the required settlement condition is not fulfilled before the relevant timeout, the refund path becomes available according to the settlement rules. This is an important distinction. The system is not saying that every swap must succeed. A failed swap can be a valid outcome if the assets can be recovered through the designed timeout and refund mechanism. ❑ RFQ and HTLC Are Not Competitors This is probably the easiest way to remember everything. RFQ - Finds executable liquidity and trade terms Resolver | Provides liquidity and executes the route HTLC - Coordinates conditional cross-chain settlement Omniston - Connects these components into a cross-chain execution system So asking whether RFQ or HTLC is "better" does not really make sense. They operate at different layers. RFQ solves the execution discovery problem. HTLC solves a conditional settlement problem. You need to understand both to understand the architecture. ❑ Where Omniston Fits Into the Picture This is where the concepts connect to a real implementation. Omniston began as a liquidity aggregation system on TON and evolved toward a broader cross-chain execution model. Its architecture separates the process of requesting quotes from the actual settlement of the trade. For cross-chain routes, the model involves RFQs, resolvers, quote selection, and cross-chain settlement. In the HTLC-based model, the source-side and destination-side legs are coordinated through paired HTLCs. That means Omniston is not simply "an HTLC." It is the broader execution layer connecting the different components required to make the swap happen. A simplified way to look at the architecture is: User → RFQ → Resolvers → Quotes → Selected execution → Cross-chain settlement → Destination asset For the HTLC-based cross-chain path, the settlement stage then connects the source and destination sides through the shared hashlock and their respective timeout conditions. This distinction matters because RFQ and HTLC are not two competing technologies inside Omniston. They operate at different stages of the execution process. ❑ What Happens When Something Goes Wrong? Understanding failure is just as important as understanding success. If no resolver provides a suitable executable quote, the trade does not need to proceed. If execution begins but the required settlement conditions are not satisfied, the relevant timeout mechanisms can eventually make the refund path available. And if everything works as intended, the secret connects the two sides and the respective participants claim their assets. This is also why it is important not to interpret "atomic" as meaning "nothing can ever go wrong." Atomic settlement describes how the two sides are conditionally linked. The overall system still depends on things such as blockchain availability, correct contract logic, appropriate timeout configuration, transaction execution, and the availability of liquidity. The strength of the mechanism is that a failed execution can have a defined recovery path rather than simply leaving the two sides permanently dependent on each other. ❑ Why This Is Different From Simply Bridging an Asset It is useful to distinguish a cross-chain swap from the traditional bridge model. A traditional bridge can involve locking an asset on one network and creating or representing an asset on another network. An atomic cross-chain swap instead coordinates an exchange between assets on separate chains. Omniston's cross-chain architecture uses resolvers to provide destination-side liquidity and uses cross-chain settlement mechanisms to coordinate the transaction. That is why understanding the resolver is just as important as understanding the HTLC. ❑ The Part That Often Gets Oversimplified HTLCs are powerful, but they are not magic. Saying that a cross-chain swap is "atomic" does not mean that every attempted transaction will always succeed or that every possible risk disappears. The mechanism still depends on the underlying blockchains, smart contracts, timeout configuration, transaction execution, and the availability of the participating liquidity provider. There is also an important distinction between automatic success and recoverability. If the conditions required for the trade are not fulfilled, the timelock can make a refund path available. Depending on the implementation and stage of settlement, that recovery can require the appropriate on-chain claim or refund transaction. So the useful mental model is not: "HTLC means nothing can go wrong." It is: "HTLC creates conditional settlement rules that connect the two sides and provide a timeout-based recovery path if the required condition is not fulfilled." That is a much more accurate way to understand the technology. ❑ Two Acronyms, Two Different Jobs Once you understand RFQ and HTLC, cross-chain swaps become much easier to reason about. There are several different problems being solved at once. RFQ finds the execution offer. Resolvers provide liquidity and execute the route. HTLC provides conditional settlement between independent chains. And Omniston connects these pieces into a cross-chain execution flow. The next time you see RFQ and HTLC mentioned in a cross-chain swap explanation, you don't have to treat them as two more crypto acronyms to memorize. Just remember: RFQ finds the deal. The resolver provides the liquidity. HTLC connects the settlement conditions. And that is what happens behind the swap button.
Miles, Missions und Cross-Chain-Swaps: Einblicke in die neue Kampagne von STON.fi.
Ein Cross-Chain-Swap klingt normalerweise nach einer technischen Operation. Wähle ein Netzwerk, verbinde eine Wallet, verschiebe Assets, warte auf die Abwicklung und hoffe, dass du die richtige Route gewählt hast. STON.fi geht die Sache auf eine andere Art an. Die neue Kampagne „One Swap. Across Chains“ macht grenzüberschreitende Aktivität zu einer Reise, die um Miles, Missions, Flugklassen, Priority Passengers und limitierte Flight Deals herum aufgebaut ist. Doch hinter der wie eine Airline wirkenden Benutzeroberfläche steckt etwas Bedeutenderes: der Versuch, grenzüberschreitende Ausführungen sich wie ein einziges Produkt anfühlen zu lassen – statt wie eine Sammlung separater Blockchain-Operationen.
STON.fi generierte 2025 62% der LP-Gebühren von TON. Was bedeutet das tatsächlich?
Im August 2025 berichtete STON.fi von einem bemerkenswerten Meilenstein: Seine Liquiditätsanbieter hatten 62% aller LP-Gebühren erzeugt, die 2025 über TON erfasst wurden, laut Dune Analytics.
Auf den ersten Blick klingt diese Zahl wie ein Maß für die Liquiditätsdominanz. Aber LP-Gebühren und Liquidität sind nicht dasselbe. Ein Protokoll kann eine große Menge Liquidität halten, ohne nennenswerte Gebühren zu erzeugen, wenn Trader es selten nutzen. Umgekehrt kann ein kleinerer Pool erhebliche Gebühren erzeugen, wenn er eine große Menge Handelsaktivität verarbeitet.
Wenn Sie immer noch denken, dass DeFi nur um Meme-Münzen geht, könnte dies Ihre Meinung ändern.
Ich habe eine schnelle Anleitung zur xStocks-Oberfläche auf STON.fi aufgenommen, und die Erfahrung ist überraschend reibungslos. In nur wenigen Taps können Sie zwischen USDT und tokenisierten Vermögenswerten wie AAPLx, NVDAx oder MSTRx wechseln.
Was sofort auffällt: Eine saubere, professionelle Oberfläche Schnelle und klare Preisangebote, unterstützt von Omniston Einfache Wallet-Verbindung mit Tonkeeper oder anderen TON-Wallets
So sieht der On-Chain-Zugang zu globalen Märkten allmählich aus. Einfach, schnell und grenzenlos, alles auf der TON-Blockchain aufgebaut.
Sehen Sie das xStocks-Produkt hier: https://ston.fi/xstocks
Wenn Sie immer noch denken, dass DeFi nur um Meme-Münzen geht, könnte dies Ihre Meinung ändern.
Ich habe eine schnelle Anleitung zur xStocks-Oberfläche auf STON.fi aufgenommen, und die Erfahrung ist überraschend reibungslos. In nur wenigen Taps können Sie zwischen USDT und tokenisierten Vermögenswerten wie AAPLx, NVDAx oder MSTRx wechseln.
Was sofort auffällt: Eine saubere, professionelle Oberfläche Schnelle und klare Preisangebote, unterstützt von Omniston Einfache Wallet-Verbindung mit Tonkeeper oder anderen TON-Wallets
So sieht der On-Chain-Zugang zu globalen Märkten allmählich aus. Einfach, schnell und grenzenlos, alles auf der TON-Blockchain aufgebaut.
Sehen Sie das xStocks-Produkt hier: https://ston.fi/xstocks
STON.fi ist nicht mehr nur ein DEX für Krypto; es ist dein Zugang zu globalen Märkten. Ich durchstöbere gerade die xStocks-Seite und die Optionen sind verrückt:
Alles, was du brauchst, um ein kraftvolles Portfolio aufzubauen, ist genau hier auf #TON. Kein Papierkram, keine Zwischenhändler, nur reiner dezentraler Zugang. Welches fügst du zuerst deinem Wallet hinzu? 👇 Jetzt erkunden: https://ston.fi/xstocks #RWA
Asset-Tokenisierung im Blockchain-Netzwerk - Teil 1
Asset-Tokenisierung im #blockchain n Netzwerk - Teil 1 Ich werde mehr als 3 Inhalte über Tokenisierung schreiben. Das ist der erste. Tokenisierung: Dies ist ein Bereich, in den die Welt in Zukunft im Hinblick auf finanzielle Transaktionen, den Kauf und Verkauf von Vermögenswerten, bewegen wird, indem physische Vermögenswerte in digitale, online und on-chain Formen umgewandelt werden. Wie funktioniert es? Wenn wir von Tokenisierung sprechen, meinen wir die Umwandlung von etwas, das physisch existiert, in seine Darstellung in einem Blockchain-Netzwerk, wobei der Wert gleich bleibt.
Ich habe vor ein paar Tagen für $DOT $25 @1.72 gekauft und es geht mit mir auf 1.69.
Ich habe geduldig gewartet und heute hat DOT 1.84 mit mir erreicht und ich habe alles verkauft, wobei ich nur den Gewinn behalten habe, den ich daraus gemacht habe ($1+) 🥰
Welche Vermögenswerte hast du heute gehandelt und wie war das Ergebnis? grün oder rot 👀
Warum RWA und tokenisierte Aktien an Aufmerksamkeit gewinnen
Reale Vermögenswerte (RWA) ziehen zunehmend das Interesse globaler Investoren auf sich, insbesondere mit dem Aufstieg tokenisierter Aktien.
Traditionelles Investieren in Aktien ist oft mit Reibungsverlusten verbunden - Broker, KYC-Anforderungen und geografische Einschränkungen. Hier kommen xStocks ins Spiel.
STON.fi hat xStocks eingeführt, um traditionelle Finanzen mit DeFi zu verbinden und TON-Nutzern den On-Chain-Zugriff auf tokenisierte Versionen von realen Aktien wie Apple, Tesla, Nvidia und Google zu ermöglichen - ohne Broker oder KYC.
Vermögenswerte wie AAPLx, TSLAx, NVDAx und GOOGLx repräsentieren eine neue Möglichkeit, direkt von einer Wallet aus Zugang zu realen Märkten zu erhalten.
Erkunden Sie xStocks hier: https://ston.fi/xstocks
Einführung von xStocks auf STON.fi: Handel mit globalen Giganten auf TON
Die Barriere zwischen dezentraler Finanzwirtschaft und dem traditionellen Aktienmarkt ist endlich gefallen. STON.fi hat offiziell xStocks gestartet, eine spezielle Seite, auf der jeder im TON-Ökosystem tokenisierte Marktvermögen handeln kann.
Was genau sind xStocks?
Sie sind synthetische, tokenisierte Versionen großer globaler Aktien. Denken Sie an sie als digitale Spiegel realer Vermögenswerte wie Apple, Nvidia und Tesla, die vollständig auf der Blockchain leben.
Warum ist das für Sie wichtig?
Zugänglichkeit: Sie benötigen kein ausländisches Bankkonto oder ein spezialisiertes Brokerage. Wenn Sie ein TON-Wallet haben, sind Sie dabei.
Privatsphäre: Überspringen Sie die aufdringlichen KYC (Know Your Customer)-Prozesse. Ihre Privatsphäre bleibt Ihre.
Effizienz: Handeln Sie $AAPL, $NVDAx, $TSLAx und $GOOGLx mit der Geschwindigkeit und den niedrigen Gebühren des TON-Netzwerks.
Dies ist mehr als nur eine neue Funktion; es ist die Demokratisierung des globalen Aktienmarktes. Durch die Beseitigung der Mittelsmänner gibt STON.fi die Macht der Wall Street in die Hände von Telegram-Nutzern weltweit. Beginnen Sie Ihre Reise hier: https://ston.fi/xstocks
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