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https://github.com/c64scene-ar/llvm-6502.git
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086791eca2
One unusual feature of the z architecture is that the result of a previous load can be reused indefinitely for subsequent loads, even if a cache-coherent store to that location is performed by another CPU. A special serializing instruction must be used if you want to force a load to be reattempted. Since volatile loads are not supposed to be omitted in this way, we should insert a serializing instruction before each such load. The same goes for atomic loads. The patch implements this at the IR->DAG boundary, in a similar way to atomic fences. It is a no-op for targets other than SystemZ. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@196905 91177308-0d34-0410-b5e6-96231b3b80d8
108 lines
3.4 KiB
Python
108 lines
3.4 KiB
Python
# Test 32-bit COMPARE AND BRANCH in cases where the sheer number of
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# instructions causes some branches to be out of range.
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# RUN: python %s | llc -mtriple=s390x-linux-gnu | FileCheck %s
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# Construct:
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#
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# before0:
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# conditional branch to after0
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# ...
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# beforeN:
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# conditional branch to after0
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# main:
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# 0xffcc bytes, from MVIY instructions
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# conditional branch to main
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# after0:
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# ...
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# conditional branch to main
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# afterN:
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#
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# Each conditional branch sequence occupies 12 bytes if it uses a short
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# branch and 14 if it uses a long one. The ones before "main:" have to
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# take the branch length into account, which is 6 for short branches,
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# so the final (0x34 - 6) / 12 == 3 blocks can use short branches.
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# The ones after "main:" do not, so the first 0x34 / 12 == 4 blocks
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# can use short branches.
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#
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# CHECK: lb [[REG:%r[0-5]]], 0(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL:\.L[^ ]*]]
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# CHECK: lb [[REG:%r[0-5]]], 1(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 2(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 3(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 4(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 5(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 6(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 7(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL]]
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# ...main goes here...
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# CHECK: lb [[REG:%r[0-5]]], 25(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL:\.L[^ ]*]]
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# CHECK: lb [[REG:%r[0-5]]], 26(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 27(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 28(%r3)
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# CHECK: crje %r4, [[REG]], [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 29(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 30(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 31(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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# CHECK: lb [[REG:%r[0-5]]], 32(%r3)
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# CHECK: cr %r4, [[REG]]
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# CHECK: jge [[LABEL]]
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branch_blocks = 8
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main_size = 0xffcc
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print 'define void @f1(i8 *%base, i8 *%stop, i32 %limit) {'
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print 'entry:'
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print ' br label %before0'
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print ''
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for i in xrange(branch_blocks):
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next = 'before%d' % (i + 1) if i + 1 < branch_blocks else 'main'
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print 'before%d:' % i
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print ' %%bstop%d = getelementptr i8 *%%stop, i64 %d' % (i, i)
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print ' %%bcur%d = load i8 *%%bstop%d' % (i, i)
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print ' %%bext%d = sext i8 %%bcur%d to i32' % (i, i)
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print ' %%btest%d = icmp eq i32 %%limit, %%bext%d' % (i, i)
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print ' br i1 %%btest%d, label %%after0, label %%%s' % (i, next)
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print ''
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print '%s:' % next
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a, b = 1, 1
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for i in xrange(0, main_size, 6):
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a, b = b, a + b
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offset = 4096 + b % 500000
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value = a % 256
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print ' %%ptr%d = getelementptr i8 *%%base, i64 %d' % (i, offset)
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print ' store volatile i8 %d, i8 *%%ptr%d' % (value, i)
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for i in xrange(branch_blocks):
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print ' %%astop%d = getelementptr i8 *%%stop, i64 %d' % (i, i + 25)
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print ' %%acur%d = load i8 *%%astop%d' % (i, i)
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print ' %%aext%d = sext i8 %%acur%d to i32' % (i, i)
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print ' %%atest%d = icmp eq i32 %%limit, %%aext%d' % (i, i)
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print ' br i1 %%atest%d, label %%main, label %%after%d' % (i, i)
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print ''
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print 'after%d:' % i
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print ' ret void'
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print '}'
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