Line 246... |
Line 246... |
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}else if(counter_write == 9)//ENABLE CR
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}else if(counter_write == 9)//ENABLE CR
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{
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{
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v_ecb.value.integer = vector_address[counter_write];
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v_ecb.value.integer = ADDR_AES_CR;
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vpi_put_value(PADDR, &v_ecb, NULL, vpiNoDelay);
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vpi_put_value(PADDR, &v_ecb, NULL, vpiNoDelay);
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v_ecb.value.integer = 1;
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v_ecb.value.integer = 1;
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vpi_put_value(PWDATA, &v_ecb, &t_ecb, vpiTransportDelay);
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vpi_put_value(PWDATA, &v_ecb, &t_ecb, vpiTransportDelay);
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Line 355... |
Line 355... |
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v_ecb.value.integer = 1;
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v_ecb.value.integer = 1;
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vpi_put_value(PENABLE, &v_ecb, NULL, vpiNoDelay);
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vpi_put_value(PENABLE, &v_ecb, NULL, vpiNoDelay);
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}else if(counter == 1)
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{
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v_ecb.value.integer = 0;
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vpi_put_value(PENABLE, &v_ecb, NULL, vpiNoDelay);
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|
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counter=0;
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}
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v_ecb.value.integer = 0;
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v_ecb.value.integer = 0;
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vpi_get_value(PRDATA,&v_ecb);
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vpi_get_value(PRDATA,&v_ecb);
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|
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if(v_ecb.value.integer == 1)
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if(v_ecb.value.integer == 1)
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{
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{
|
STATE = READ_DOUTR;
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STATE = READ_DOUTR;
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t_ecb.type = vpiScaledRealTime;
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//printf("CYCLES TAKEN:%d\n", cycle_counter);
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t_ecb.real = 10;
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cycle_counter=0;
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v_ecb.format=vpiIntVal;
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//t_ecb.type = vpiScaledRealTime;
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v_ecb.value.integer = ADDR_AES_DOUTR;
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//t_ecb.real = 0;
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vpi_put_value(PADDR, &v_ecb, &t_ecb, vpiTransportDelay);
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//v_ecb.format=vpiIntVal;
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//v_ecb.value.integer = ADDR_AES_DOUTR;
|
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//vpi_put_value(PADDR, &v_ecb, &t_ecb, vpiTransportDelay);
|
}
|
}
|
|
|
|
|
|
}else if(counter == 1)
|
|
{
|
|
v_ecb.value.integer = 0;
|
|
vpi_put_value(PENABLE, &v_ecb, NULL, vpiNoDelay);
|
|
|
|
counter=0;
|
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}
|
|
|
|
|
|
//cycle_counter++;
|
|
|
break;
|
break;
|
|
|
|
|
case READ_DOUTR:
|
case READ_DOUTR:
|
|
|