274 lines
5.7 KiB
C
274 lines
5.7 KiB
C
#define JEMALLOC_PAGES_C_
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#include "jemalloc/internal/jemalloc_internal.h"
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#ifdef JEMALLOC_SYSCTL_VM_OVERCOMMIT
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#include <sys/sysctl.h>
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#endif
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/******************************************************************************/
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/* Data. */
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#ifndef _WIN32
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# define PAGES_PROT_COMMIT (PROT_READ | PROT_WRITE)
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# define PAGES_PROT_DECOMMIT (PROT_NONE)
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static int mmap_flags;
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#endif
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static bool os_overcommits;
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/******************************************************************************/
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void *
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pages_map(void *addr, size_t size, bool *commit)
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{
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void *ret;
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assert(size != 0);
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if (os_overcommits)
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*commit = true;
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#ifdef _WIN32
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/*
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* If VirtualAlloc can't allocate at the given address when one is
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* given, it fails and returns NULL.
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*/
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ret = VirtualAlloc(addr, size, MEM_RESERVE | (*commit ? MEM_COMMIT : 0),
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PAGE_READWRITE);
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#else
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/*
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* We don't use MAP_FIXED here, because it can cause the *replacement*
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* of existing mappings, and we only want to create new mappings.
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*/
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{
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int prot = *commit ? PAGES_PROT_COMMIT : PAGES_PROT_DECOMMIT;
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ret = mmap(addr, size, prot, mmap_flags, -1, 0);
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}
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assert(ret != NULL);
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if (ret == MAP_FAILED)
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ret = NULL;
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else if (addr != NULL && ret != addr) {
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/*
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* We succeeded in mapping memory, but not in the right place.
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*/
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pages_unmap(ret, size);
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ret = NULL;
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}
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#endif
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assert(ret == NULL || (addr == NULL && ret != addr)
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|| (addr != NULL && ret == addr));
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return (ret);
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}
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void
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pages_unmap(void *addr, size_t size)
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{
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#ifdef _WIN32
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if (VirtualFree(addr, 0, MEM_RELEASE) == 0)
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#else
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if (munmap(addr, size) == -1)
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#endif
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{
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char buf[BUFERROR_BUF];
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buferror(get_errno(), buf, sizeof(buf));
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malloc_printf("<jemalloc>: Error in "
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#ifdef _WIN32
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"VirtualFree"
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#else
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"munmap"
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#endif
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"(): %s\n", buf);
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if (opt_abort)
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abort();
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}
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}
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void *
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pages_trim(void *addr, size_t alloc_size, size_t leadsize, size_t size,
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bool *commit)
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{
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void *ret = (void *)((uintptr_t)addr + leadsize);
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assert(alloc_size >= leadsize + size);
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#ifdef _WIN32
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{
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void *new_addr;
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pages_unmap(addr, alloc_size);
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new_addr = pages_map(ret, size, commit);
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if (new_addr == ret)
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return (ret);
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if (new_addr)
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pages_unmap(new_addr, size);
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return (NULL);
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}
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#else
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{
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size_t trailsize = alloc_size - leadsize - size;
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if (leadsize != 0)
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pages_unmap(addr, leadsize);
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if (trailsize != 0)
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pages_unmap((void *)((uintptr_t)ret + size), trailsize);
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return (ret);
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}
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#endif
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}
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static bool
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pages_commit_impl(void *addr, size_t size, bool commit)
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{
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if (os_overcommits)
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return (true);
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#ifdef _WIN32
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return (commit ? (addr != VirtualAlloc(addr, size, MEM_COMMIT,
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PAGE_READWRITE)) : (!VirtualFree(addr, size, MEM_DECOMMIT)));
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#else
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{
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int prot = commit ? PAGES_PROT_COMMIT : PAGES_PROT_DECOMMIT;
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void *result = mmap(addr, size, prot, mmap_flags | MAP_FIXED,
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-1, 0);
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if (result == MAP_FAILED)
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return (true);
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if (result != addr) {
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/*
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* We succeeded in mapping memory, but not in the right
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* place.
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*/
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pages_unmap(result, size);
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return (true);
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}
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return (false);
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}
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#endif
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}
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bool
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pages_commit(void *addr, size_t size)
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{
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return (pages_commit_impl(addr, size, true));
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}
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bool
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pages_decommit(void *addr, size_t size)
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{
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return (pages_commit_impl(addr, size, false));
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}
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bool
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pages_purge(void *addr, size_t size)
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{
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bool unzeroed;
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#ifdef _WIN32
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VirtualAlloc(addr, size, MEM_RESET, PAGE_READWRITE);
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unzeroed = true;
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#elif defined(JEMALLOC_HAVE_MADVISE)
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# ifdef JEMALLOC_PURGE_MADVISE_DONTNEED
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# define JEMALLOC_MADV_PURGE MADV_DONTNEED
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# define JEMALLOC_MADV_ZEROS true
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# elif defined(JEMALLOC_PURGE_MADVISE_FREE)
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# define JEMALLOC_MADV_PURGE MADV_FREE
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# define JEMALLOC_MADV_ZEROS false
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# else
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# error "No madvise(2) flag defined for purging unused dirty pages."
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# endif
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int err = madvise(addr, size, JEMALLOC_MADV_PURGE);
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unzeroed = (!JEMALLOC_MADV_ZEROS || err != 0);
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# undef JEMALLOC_MADV_PURGE
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# undef JEMALLOC_MADV_ZEROS
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#else
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/* Last resort no-op. */
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unzeroed = true;
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#endif
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return (unzeroed);
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}
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#ifdef JEMALLOC_SYSCTL_VM_OVERCOMMIT
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static bool
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os_overcommits_sysctl(void)
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{
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int vm_overcommit;
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size_t sz;
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sz = sizeof(vm_overcommit);
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if (sysctlbyname("vm.overcommit", &vm_overcommit, &sz, NULL, 0) != 0)
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return (false); /* Error. */
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return ((vm_overcommit & 0x3) == 0);
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}
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#endif
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#ifdef JEMALLOC_PROC_SYS_VM_OVERCOMMIT_MEMORY
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/*
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* Use syscall(2) rather than {open,read,close}(2) when possible to avoid
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* reentry during bootstrapping if another library has interposed system call
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* wrappers.
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*/
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static bool
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os_overcommits_proc(void)
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{
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int fd;
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char buf[1];
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ssize_t nread;
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#if defined(JEMALLOC_HAVE_SYSCALL) && defined(SYS_open)
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fd = (int)syscall(SYS_open, "/proc/sys/vm/overcommit_memory", O_RDONLY);
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#else
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fd = open("/proc/sys/vm/overcommit_memory", O_RDONLY);
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#endif
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if (fd == -1)
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return (false); /* Error. */
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#if defined(JEMALLOC_HAVE_SYSCALL) && defined(SYS_read)
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nread = (ssize_t)syscall(SYS_read, fd, &buf, sizeof(buf));
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#else
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nread = read(fd, &buf, sizeof(buf));
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#endif
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#if defined(JEMALLOC_HAVE_SYSCALL) && defined(SYS_close)
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syscall(SYS_close, fd);
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#else
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close(fd);
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#endif
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if (nread < 1)
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return (false); /* Error. */
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/*
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* /proc/sys/vm/overcommit_memory meanings:
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* 0: Heuristic overcommit.
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* 1: Always overcommit.
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* 2: Never overcommit.
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*/
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return (buf[0] == '0' || buf[0] == '1');
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}
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#endif
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void
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pages_boot(void)
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{
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#ifndef _WIN32
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mmap_flags = MAP_PRIVATE | MAP_ANON;
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#endif
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#ifdef JEMALLOC_SYSCTL_VM_OVERCOMMIT
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os_overcommits = os_overcommits_sysctl();
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#elif defined(JEMALLOC_PROC_SYS_VM_OVERCOMMIT_MEMORY)
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os_overcommits = os_overcommits_proc();
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# ifdef MAP_NORESERVE
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if (os_overcommits)
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mmap_flags |= MAP_NORESERVE;
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# endif
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#else
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os_overcommits = false;
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#endif
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}
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