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parseref() has code to reuse address constants, but this is not
done in other passes such as fold or isel. Introduce a new function
newcon() which takes a Con and returns a Ref for that constant, and
use this whenever creating address constants.
This is necessary to fix folding of address constants when one
operand is already folded. For example, in
%a =l add $x, 1
%b =l add %a, 2
%c =w loadw %b
%a and %b were folded to $x+1 and $x+3 respectively, but then the
second add is visited again since it uses %a. This gets folded to
$x+3 as well, but as a new distinct constant. This results in %b
getting labeled as bottom instead of either constant, disabling the
replacement of %b by a constant in subsequent instructions (such
as the loadw).
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Some abis, like the riscv one, treat
arguments differently depending on
whether they are variadic or not.
To prepare for the upcomming riscv
target, we change the variadic call
syntax and give meaning to the
location of the '...' marker.
# new syntax
%ret =w call $f(w %regular, ..., w %variadic)
By nature of their abis, the change
is backwards compatible for existing
targets.
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Previously, all casts but d->w, d->s, l->s, s->d, w->d were supported.
At least the first three can occur by storing to then loading from
a slot, currently triggering an assertion failure. Though the other
two might not be possible, they are easy enough to support as well.
Fixes hare#360.
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They are now linear and can be
safely used with arguments that
have side-effects. This patch
also introduces an iscall()
macro and uses it to fix a
missing check for Ovacall in
liveness analysis.
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Symbols in the source file are still limited in
length because the rest of the code assumes that
strings always fit in NString bytes.
Regardless, there is already a benefit because
comparing/copying symbol names does not require
using strcmp()/strcpy() anymore.
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When eliminating `load %foo`, don't limit the
search to the live range of %foo, but to the
live range of its aliasing information.
For example, if %foo is a constant offset into
a stack-allocated slot,
%foo =l add %slot, 42
the search will proceed on all the code in
which %slot is live, not only below the
definition of %foo, like before.
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The assertion was invalid, I was assuming il->blk was
b when writing it. The new assertion should be right:
If the loop level were to decrease we would get out of
a cycle in cfg, this should not be possible unless we
go through a block with more than 1 predecessor.
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The assertion fails incorrectly on a block right
after the end of a loop.
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