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Location: CSY/reowolf/testdata/parser/positive/18.pdl - annotation
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Add docs for implementing infinite types in a value based language.
Since we are a value based language and do not have the concept of
pointers, then if we want to lay out the memory of datatypes we run
into a problem when the types represent recursive datastructures:
these are infinite in size. So we have an algorithm for turning
some types into pointer-like things, such that we can lay everything
out in memory.
Since we are a value based language and do not have the concept of
pointers, then if we want to lay out the memory of datatypes we run
into a problem when the types represent recursive datastructures:
these are infinite in size. So we have an algorithm for turning
some types into pointer-like things, such that we can lay everything
out in memory.
1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 1b7b852c3395 | #version 100
import std.reo;
composite main() {}
primitive main1(in a, out c) {
int x = 0;
int y = 0;
msg z = null;
msg w = null;
x = 1;
y = 1;
while (true) {
synchronous {
if (x > 0 && fires(a)) {
z = get(a);
x--;
}
if (w != null && fires(c)) {
put(c, w);
w = null;
y++;
}
}
synchronous {
assert !fires(a) && !fires(c);
if (z != null && y > 0) {
w = z;
z = null;
y--;
x++;
}
}
}
}
composite main2(in a, out c) {
channel xo -> xi;
new fifo(a, xo, null);
new fifo(xi, c, null);
}
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