gmqcc/tests/operators.qc

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void print(...) = #1;
string ftos (float) = #2;
string vtos (vector) = #5;
entity spawn() = #3;
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.float mem;
void main() {
float a;
// regular binary+store
a = 5;
print(ftos(a += 1), " = ");
print(ftos(a), "\n");
entity e = spawn();
e.mem = 10;
print(ftos(e.mem += 1), " = ");
print(ftos(e.mem), "\n");
// prefix
print(ftos(++a), " = ");
print(ftos(a), "\n");
print(ftos(--a), " = ");
print(ftos(a), "\n");
print(ftos(++e.mem), " = ");
print(ftos(e.mem), "\n");
// suffix
print(ftos(a++), " = ");
print(ftos(a-1), "\n");
// the CLANG way:
a = 3;
print(ftos((a++ + a) + a), " = 11\n");
// check if minus translates
print(ftos(a--), "\n");
print(ftos(--a), "\n");
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// postfix on members
print(ftos(e.mem--), " = ");
print(ftos(e.mem+1), "\n");
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// compounds in general
a = 3;
print(ftos(a *= 2), " = 6\n");
print(ftos(a /= 2), " = 3\n");
// compounds on vectors
vector v;
v = '3 4 5';
print(vtos(v *= 2), " = '6 8 10'\n");
print(vtos(v /= 2), " = '3 4 5'\n");
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// bit compounds
a = 1;
print(ftos(a |= 2), " = 3\n");
print(ftos(a &= 6), " = 2\n");
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a = 7;
print(ftos(a &~= 3), " = 4\n");
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}