use mmap instead of brk in mem.alloc to fix a glibc segfault
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@@ -28,13 +28,17 @@ func mem._split_block[blk: mem.Block, needed: i64] : void
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mem.write64(_builtin_heap_tail(), new_blk)
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func mem._request_space[size: i64] : mem.Block
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let blk: mem.Block = _builtin_syscall(SYS_brk, 0)
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let new_brk: ptr = blk + MEM_BLOCK_SIZE + size
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let result: ptr = _builtin_syscall(SYS_brk, new_brk)
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if result != new_brk
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let needed: i64 = size + MEM_BLOCK_SIZE
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let alloc_size: i64 = (needed + 4095) & -4096
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// PROT_READ | PROT_WRITE = 3
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// MAP_PRIVATE | MAP_ANONYMOUS = 34
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// fd = -1, offset = 0
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let blk: mem.Block = _builtin_syscall(SYS_mmap, 0, alloc_size, 3, 34, -1, 0)
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if blk == -1
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return 0
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blk->size = size
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blk->size = alloc_size - MEM_BLOCK_SIZE
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blk->free = false
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blk->next = 0
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@@ -47,15 +51,36 @@ func mem._request_space[size: i64] : mem.Block
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func mem._coalesce[] : void
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let cur: mem.Block = mem.read64(_builtin_heap_head())
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while cur && cur->next
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let prev: mem.Block = 0
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while cur
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let next: mem.Block = cur->next
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if cur->free && next->free
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let expected_next: mem.Block = cur + MEM_BLOCK_SIZE + cur->size
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if cur->free && next && next->free && expected_next == next
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cur->size = cur->size + MEM_BLOCK_SIZE + next->size
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cur->next = next->next
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if !cur->next
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mem.write64(_builtin_heap_tail(), cur)
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else
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continue
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let block_total: i64 = cur->size + MEM_BLOCK_SIZE
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if cur->free && (cur & 4095) == 0 && (block_total & 4095) == 0
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if prev
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prev->next = cur->next
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if !cur->next
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mem.write64(_builtin_heap_tail(), prev)
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else
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mem.write64(_builtin_heap_head(), cur->next)
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if !cur->next
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mem.write64(_builtin_heap_tail(), 0)
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_builtin_syscall(SYS_munmap, cur, block_total)
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cur = cur->next
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continue
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prev = cur
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cur = cur->next
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func mem.alloc[size: i64] : ptr
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if size == 0
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@@ -78,6 +103,8 @@ func mem.alloc[size: i64] : ptr
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if !mem.read64(_builtin_heap_head())
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mem.write64(_builtin_heap_head(), blk)
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mem._split_block(blk, size)
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return blk + MEM_BLOCK_SIZE
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func mem.free[x: ptr] : void
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@@ -104,7 +131,9 @@ func mem.realloc[x: ptr, new_size: i64] : ptr
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return x
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let next: mem.Block = blk->next
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if next && next->free
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let expected_next: mem.Block = blk + MEM_BLOCK_SIZE + blk->size
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if next && next->free && expected_next == next
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let combined: i64 = blk->size + MEM_BLOCK_SIZE + next->size
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if combined >= new_size
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blk->size = combined
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