Freescale Semiconductor SEC2SWUG Dpdipsecespinsdescbcdcrptshapad, DPDIPSECESPOUTTDESCBCCRPTMD5PAD

Models: SEC2SWUG

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Individual Request Type Descriptions

Table 28. IPSEC_ESP_REQ Valid Descriptors (opId) (continued)

Descriptors

Value

Function Description

DPD_IPSEC_ESP_IN_SDES_CBC_DCRPT_SHA_PAD

0x750A

Process an inbound IPSec encapsulated system

 

 

payload packet using single DES in CBC mode, and

 

 

SHA1 with auto padding

DPD_IPSEC_ESP_IN_SDES_CBC_DCRPT_SHA256_ 0x750B

Process an inbound IPSec encapsulated system

PAD

 

payload packet using single DES in CBC mode, and

 

 

SHA256 with auto padding

DPD_IPSEC_ESP_OUT_TDES_CBC_CRPT_MD5_PAD

0x750C

Process an outbound IPSec encapsulated system

 

 

payload packet using triple DES in CBC mode, and

 

 

MD5 with auto padding

DPD_IPSEC_ESP_OUT_TDES_CBC_CRPT_SHA_PAD

0x750D

Process an outbound IPSec encapsulated system

 

 

payload packet using triple DES in CBC mode, and

 

 

SHA1 with auto padding

DPD_IPSEC_ESP_OUT_TDES_CBC_CRPT_SHA256_ 0x750E

Process an outbound IPSec encapsulated system

PAD

 

payload packet using triple DES in CBC mode, and

 

 

SHA256 with auto padding

DPD_IPSEC_ESP_IN_TDES_CBC_DCRPT_MD5_PAD

0x750F

Process an inbound IPSec encapsulated system

 

 

payload packet using triple DES in CBC mode, and

 

 

MD5 with auto padding

DPD_IPSEC_ESP_IN_TDES_CBC_DCRPT_SHA_PAD

0x7510

Process an inbound IPSec encapsulated system

 

 

payload packet using triple DES in CBC mode, and

 

 

SHA1 with auto padding

DPD_IPSEC_ESP_IN_TDES_CBC_DCRPT_SHA256_ 0x7511

Process an inbound IPSec encapsulated system

PAD

 

payload packet using triple DES in CBC mode, and

 

 

SHA256 with auto padding

DPD_IPSEC_ESP_OUT_TDES_ECB_CRPT_MD5_PAD

0x7512

Process an outbound IPSec encapsulated system

 

 

payload packet using triple DES in ECB mode, and

 

 

MD5 with auto padding

DPD_IPSEC_ESP_OUT_TDES_ECB_CRPT_SHA_PAD

0x7513

Process an outbound IPSec encapsulated system

 

 

payload packet using triple DES in ECB mode, and

 

 

SHA1 with auto padding

DPD_IPSEC_ESP_OUT_TDES_ECB_CRPT_SHA256_ 0x7514

Process an outbound IPSec encapsulated system

PAD

 

payload packet using triple DES in ECB mode, and

 

 

SHA256 with auto padding

DPD_IPSEC_ESP_IN_TDES_ECB_DCRPT_MD5_PAD

0x7515

Process an inbound IPSec encapsulated system

 

 

payload packet using triple DES in ECB mode, and

 

 

MD5 with auto padding

DPD_IPSEC_ESP_IN_TDES_ECB_DCRPT_SHA_PAD

0x7516

Process an inbound IPSec encapsulated system

 

 

payload packet using triple DES in ECB mode, and

 

 

SHA1 with auto padding

DPD_IPSEC_ESP_IN_TDES_ECB_DCRPT_SHA256_ 0x7517

Process an inbound IPSec encapsulated system

PAD

 

payload packet using triple DES in ECB mode, and

 

 

SHA256 with auto padding

SEC 2.0 Reference Device Driver User’s Guide, Rev. 0

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Freescale Semiconductor

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Freescale Semiconductor SEC2SWUG specifications Dpdipsecespinsdescbcdcrptshapad, DPDIPSECESPOUTTDESCBCCRPTMD5PAD

SEC2SWUG specifications

Freescale Semiconductor, a prominent player in the semiconductor industry, has made significant strides in developing robust solutions tailored for the automotive and industrial sectors. One such innovation is the SEC2SWUG (Security Configuration to Software User Guide), a comprehensive framework designed to enhance security protocols across various applications.

The SEC2SWUG is particularly vital in an era where cybersecurity threats are increasingly sophisticated. This tool is built to help developers implement security measures seamlessly during the software design phase, ensuring products are resilient against potential vulnerabilities. One of the main features of the SEC2SWUG is its versatility; it can be applied across a wide range of microcontrollers and processors offered by Freescale. This is particularly advantageous for engineers who require a consistent security approach across different platforms.

In terms of technology, the SEC2SWUG incorporates advanced cryptographic algorithms, allowing for data encryption, decryption, and authentication processes. This ensures that sensitive information remains secure, particularly in automotive applications where vehicle-to-everything (V2X) communication is becoming paramount. Moreover, the guide details the implementation of secure boot processes, which verify the integrity of firmware before it executes, bolstering overall system security.

Another key characteristic of SEC2SWUG is its user-friendliness. Freescale has focused on creating a resource that not only provides theoretical knowledge but also practical guidelines, making it easier for developers to integrate security protocols into their projects. The guide features clear annotations, example code snippets, and troubleshooting tips, which enhance the developer experience and facilitate a smoother transition from concept to execution.

Additionally, SEC2SWUG is designed to be scalable. As industries evolve, the demand for security measures will only grow, and this framework ensures that developers can adapt their solutions accordingly. Whether working on embedded systems, IoT applications, or complex automotive networks, the SEC2SWUG offers a robust security foundation.

In conclusion, Freescale Semiconductor's SEC2SWUG is a vital tool for engineers and developers looking to embed security into their applications. With its focus on advanced technologies and user-centric design, the SEC2SWUG stands at the forefront of secure software development, addressing the critical need for safety in interconnected systems.