The Tempesta FW core team has given a talk about high-performance fair HTTP streams scheduling, discussing RFCs 7540 and 9218 for HTTP/2 and HTTP/3, along with advanced data structures and efficient WFQ scheduling algorithms. https://lnkd.in/dhsG4xGr #webperformance #http #websecurity
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If this is in your space and you need help. Let us know. #webperformance #http #websecurity
The Tempesta FW core team has given a talk about high-performance fair HTTP streams scheduling, discussing RFCs 7540 and 9218 for HTTP/2 and HTTP/3, along with advanced data structures and efficient WFQ scheduling algorithms. https://lnkd.in/dhsG4xGr #webperformance #http #websecurity
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IPv6 is revolutionizing the way we handle IP data. Are you ready to stay ahead of the curve? Check out our latest whitepaper to understand how this shift can benefit your business. 📘 Read now: The Impact of IPv6 on your IP Data Intelligence https://hubs.ly/Q02zLM3h0 #IPv6 #IPData #DataIntelligence
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How is data sent over the internet? What does that have to do with the OSI model? How does TCP/IP fit into this? 7 Layers in the OSI model are: 1. Physical Layer 2. Data Link Layer 3. Network Layer 4. Transport Layer 5. Session Layer 6. Presentation Layer 7. Application Layer --- by ByteByteGo
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Understanding the OSI model is critical as it helps diagnose and troubleshoot network problems. Each layer of the model is independent, but interacts with the layers directly above and below it. When a network problem occurs, you can examine the problem layer by layer, which can be more manageable and efficient.
Founder @HaxSecurity | I help my clients in streamlining Security Audits | CISA | 2x Author | Sharing Home-Labs
How is data sent over the internet? What does that have to do with the OSI model? How does TCP/IP fit into this? 7 Layers in the OSI model are: 1. Physical Layer 2. Data Link Layer 3. Network Layer 4. Transport Layer 5. Session Layer 6. Presentation Layer 7. Application Layer Source: ByteByteGo
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CppNorth, The Canadian C++ Conference 2024 • July 21-24, 2024 • Toronto Preview: Alexey Veselovsky: "LSAN and ASAN: tips, tricks and hacks" Please Like, Follow, & Share: CppNorth, The Canadian C++ Conference https://lnkd.in/g6snNDQt LSAN and ASAN: tips, tricks and hacks Address Sanitizer (ASAN) and Leak Sanitizer (LSAN) have a lot of options and additional functions which sometimes could be used not only for detecting memory errors and leaks. This talk will cover LSAN internals (combined memory manager, interceptors, garbage collector which does not collects garbage, why LSAN does not work with gdb), ASAN and LSAN public interface, how to profile memory usage via ASAN or LSAN, obtaining about objects metadata, memory manager statistics and useful functions which could be used from gdb. Also we'll try to improve LSAN diagnostic output via using non public LSAN API. Registration is open: store.cppnorth.ca (select 'Early Bird') Make your room reservations now: https://lnkd.in/g-2dePpQ
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#Here a similarities of OSI and TCP/IP models.... Both are logical models. One of the main similarities between the TCP/IP model is that how information is transmitted between two devices across a network. Both models define a set of layers. Each layer perform a specific set of function to enable the transmission of data. Another similarity between both models is that they both use the concept of encapsulation...
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CAN SENDER AND RECIEVER ADDRESS,CAN BE AT DATALINK,IN FUTURE,EXACTLY?GPS DUE MAC ADDRESS,WE ADD AS DOMAINS THE NATION IN TWO LETTERS RESERVED FOR 208 NATIONS,MAC ADDRESS SHOULD INCLUDE NATION CODE,SO MAC ADDRESS TAKES TWO LETTERS AT FIRST NET USE,BEST GPS DEFINES MAC ADDRESS. INTERNET ,THE PACKET STARTS WITH IP'S NETWORK LAYER PROTOCOL,THEN LOADED NUMBERS OF UDB,TCP DATAGRAM,ONE IP DATAGRAM,LAST WE END THE TCP/IP MODEL BY THE SOFTWARE. DATALINK LAYER FOR THE LOCATION,RECITATIONS. FIRST LAYER:COULD BE ETHERNET. THE REFERENCE IS OSI.
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How is data sent over the internet? What does that have to do with the OSI model? How does TCP/IP fit into this? 7 Layers in the OSI model are: 1. Physical Layer 2. Data Link Layer 3. Network Layer 4. Transport Layer 5. Session Layer 6. Presentation Layer 7. Application Layer
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How is data sent over the internet? What does that have to do with the OSI model? How does TCP/IP fit into this? 7 Layers in the OSI model are: 1. Physical Layer 2. Data Link Layer 3. Network Layer 4. Transport Layer 5. Session Layer 6. Presentation Layer 7. Application Layer
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The OSI model has seven layers Physical – Transmits raw bits over physical media (e.g., cables, Wi-Fi). Data Link – Manages data transfer between adjacent nodes; handles error detection. Network – Routes packets across networks (e.g., IP). Transport – Ensures reliable data transfer with error checking (e.g., TCP, UDP). Session – Manages sessions and connections between applications. Presentation – Translates data formats, handles encryption and compression. Application – Interfaces with end-user applications (e.g., HTTP, FTP, SMTP). Each layer has a distinct function, enabling effective communication and interoperability
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