For this homework assignment you are not allowed to use::MOVSB, MOVSW, MOVSD, CMPSB,CMPSW,CMPD,SCASB, SCASW, SCASD,STOSB, STOSW, STOSD, LODSB, LODSW, and LODSD. It is required that for each question write only one procedure that does the requested job. Only write the assembly part and avoid using directives. DO NOT USE IRVINE'S LIBRARY. Write Assembly code (only assembly code and no procedure call) that performs decryption (recovers the original string) of an encrypted string. The encryption is performed by rotating each plaintext byte a varying number of positions in different directions. For example, in the following array that represents the encryption key, a negative value indicates a rotation to the left and a positive value indicates a rotation to the right. The integer in each position indicates the magnitude of the rotation: key BYTE -4, 4, -1, 0, 3, -5, 2, -4 Encryption algorithm rotates each plaintext byte by the amount indicated by its matching key array value. Then, align the key to the next 8 bytes of the message and repeat the process.

Programming Logic & Design Comprehensive
9th Edition
ISBN:9781337669405
Author:FARRELL
Publisher:FARRELL
Chapter7: File Handling And Applications
Section: Chapter Questions
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For this homework assignment you are not allowed to use::MOVSB, MOVSW, MOVSD, CMPSB,CMPSW,CMPD,SCASB, SCASW, SCASD,STOSB, STOSW, STOSD, LODSB, LODSW, and LODSD. It is required that for each question write only one procedure that does the requested job. Only write the assembly part and avoid using directives. DO NOT USE IRVINE'S LIBRARY.

Write Assembly code (only assembly code and no procedure call)  that performs decryption (recovers the original string) of an encrypted string. The encryption is performed by rotating each plaintext byte a varying number of positions in different directions. For example, in the following array that represents the encryption key, a negative value indicates a rotation to the left and a positive value indicates a rotation to the right. The integer in each position indicates the magnitude of the rotation: key BYTE -4, 4, -1, 0, 3, -5, 2, -4
Encryption algorithm rotates each plaintext byte by the amount indicated by its matching key array value. Then, align the key to the next 8 bytes of the message and repeat the process.

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