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54 lines
1.5 KiB
54 lines
1.5 KiB
#include "test_MI.h"
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int test_MI_mul (int iterations)
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{
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int error = 0;
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int i;
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// Check commutativity.
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for (i = iterations; i > 0; i--) {
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cl_I m = testrandom_I();
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cl_modint_ring R = cl_find_modint_ring(m);
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cl_MI a = R->canonhom(testrandom_I());
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cl_MI b = R->canonhom(testrandom_I());
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ASSERT3(a*b == b*a, m,a,b);
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}
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// Check associativity.
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for (i = iterations; i > 0; i--) {
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cl_I m = testrandom_I();
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cl_modint_ring R = cl_find_modint_ring(m);
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cl_MI a = R->canonhom(testrandom_I());
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cl_MI b = R->canonhom(testrandom_I());
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cl_MI c = R->canonhom(testrandom_I());
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ASSERT4((a*b)*c == a*(b*c), m,a,b,c);
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}
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// Check second binomial formula.
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for (i = iterations; i > 0; i--) {
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cl_I m = testrandom_I();
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cl_modint_ring R = cl_find_modint_ring(m);
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cl_MI a = R->canonhom(testrandom_I());
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cl_MI b = R->canonhom(testrandom_I());
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ASSERT3((a+b)*(a-b) == a*a-b*b, m,a,b);
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}
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// Check distributive formula.
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for (i = iterations; i > 0; i--) {
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cl_I m = testrandom_I();
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cl_modint_ring R = cl_find_modint_ring(m);
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cl_MI a = R->canonhom(testrandom_I());
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cl_MI b = R->canonhom(testrandom_I());
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cl_MI c = R->canonhom(testrandom_I());
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ASSERT4((a+c)*(b+c) == a*b+(a+b)*c+c*c, m,a,b,c);
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}
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// Check special cases 0, 1, -1.
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for (i = iterations; i > 0; i--) {
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cl_I m = testrandom_I();
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cl_modint_ring R = cl_find_modint_ring(m);
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cl_MI a = R->canonhom(testrandom_I());
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cl_MI z = R->zero();
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cl_MI o = R->one();
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cl_MI mo = R->canonhom(-1);
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ASSERT2(a*z == z, m,a);
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ASSERT2(a*o == a, m,a);
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ASSERT2(a*mo == -a, m,a);
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}
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return error;
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}
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