2nd Code: void main ( ) { float in_matrix [2][2] = {{1.5,2.25},{20, 10}}; long long int g = inverse (in_matrix); } long long int inverse (long long int * rix) { float templ = rix[0][0] * rix[1][1]; float temp2 = rix[0][1] * rix[1][0]; if (templ == temp2) return 0; else { float inv_rix [2][2] = {{0,0},{0,0}}; float determinant1 = temp1 – temp2; float determinant2 = temp2 – templ; inv_rix[0][0] = rix[1][1] / determinant1; inv_rix[1][1] =rix[0][0] / determinant1; inv_rix [0][1]= rix[0][1] / determinant2; inv_rix [1][0] = rix[1][0] / determinant2; return 1;

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Question
Use RARS simulator to write and execute the two codes below using RISC-V Assembly language. LANGUAGE IS C
2nd Code:
void main ( ) {
float in_matrix [2][2] = {{1.5,2.25},{20, 10}};
long long int g = inverse (in_matrix); }
long long int inverse (long long int * rix)
{
float templ = rix[0][0] * rix[1][1];
float temp2 = rix[0][1] * rix[1][0];
if (templ == temp2)
return 0;
else
{
float inv_rix [2][2] = {{0,0},{0,0}};
float determinant1 = temp1 – temp2;
float determinant2 = temp2 – templ;
inv_rix[0][0] = rix[1][1] / determinant1;
inv_rix[1][1] = rix[0][0] / determinant1;
inv_rix [0][1]= rix[0][1] / determinant2;
inv_rix [1][0] = rix[1][0] / determinant2;
return 1;
}
}
Transcribed Image Text:2nd Code: void main ( ) { float in_matrix [2][2] = {{1.5,2.25},{20, 10}}; long long int g = inverse (in_matrix); } long long int inverse (long long int * rix) { float templ = rix[0][0] * rix[1][1]; float temp2 = rix[0][1] * rix[1][0]; if (templ == temp2) return 0; else { float inv_rix [2][2] = {{0,0},{0,0}}; float determinant1 = temp1 – temp2; float determinant2 = temp2 – templ; inv_rix[0][0] = rix[1][1] / determinant1; inv_rix[1][1] = rix[0][0] / determinant1; inv_rix [0][1]= rix[0][1] / determinant2; inv_rix [1][0] = rix[1][0] / determinant2; return 1; } }
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