For your viewing pleasure :)
ANOQ of the Sun
anoq@hardcoreprocessing.com
Thu, 4 Nov 1999 15:00:33 -0800
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Hello!
It seems that garbage collection is not a
problem at all! :)
It runs smoothely, as you can see...:
(but there's not that much data yet either...)
Put the file "libSDLx11.so.0.9" under /usr/local/lib
The file "Game" goes anywhere. Make a
subdir, "GFX", beside the file "Game" and
put background.bmp in GFX, like this:
<anywhere>/Game
<anywhere>/GFX/background.bmp
The file Game is an executable compiled
with MLTon :)
And regarding the Win32 port... it compiles
now, but the linker complains about a lot of
stuff missing (possibly some of the stuff
I removed...).
I have attached a new gc.c where the sopen
calls should work, except that there were
some constants not defined in the Linux/Win32
includes. I took some constants from Delphi,
which I believe are correct.
I have also attached the documentation for
the Windows sopen function, downloaded from:
http://msdn.microsoft.com/library/devprods/vs6/visualc/vccore/_crt__sope
n.2c_._wsopen.htm
Also, there was a call to sopen to see how much memory
is available... I don't know how to do this in Win*,
so I put a constant for now of 16M... (not good...)
And the sopen command in saveWorld: should it be
append or create file?
... But the most serious problem right now is that
I can't run mlton after having recompiled
libmlton.a and libgmp.a
so, do you have any ideas as to how one
makes mlton run with one library version and link
applications with another?
Also for Windows applications, it should not link
with -lm so how can I change this?
Cheers
--
http://www.HardcoreProcessing.com
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Guide. Excerpt: _sopen, _wsopen Open a file for sharing.">
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<P>
<h1><a name=3D"_crt__sopen.2c_._wsopen"></a><sup></sup>_sopen, =
_wsopen</h1>
<p>
Open a file for sharing.</p>
<p>
<b>int</b> <b>_sopen(</b> <b>const</b> <b>char</b> =
<b>*</b><i>filename</i><b>,</b> <b>int</b> <i>oflag</i><b>,</b> =
<b>int</b> <i>shflag</i> [<b>,</b> <b>int</b> <i>pmode</i> ] =
<b>);</b></p>
<p>
<b>int</b> <b>_wsopen(</b> <b>const</b> <b>wchar_t</b> =
<b>*</b><i>filename</i><b>,</b> <b>int</b> <i>oflag</i><b>,</b> =
<b>int</b> <i>shflag</i> [<b>,</b> <b>int</b> <i>pmode</i> ] =
<b>);</b></p>
<table border=3D1 cellpadding=3D5 cols=3D4 frame=3Dbelow rules=3Drows>
<tr valign=3Dtop>
<td class=3Dlabel width=3D16%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>Routine</b></FONT></TD>
<td class=3Dlabel width=3D18%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>Required Header</b></FONT></TD>
<td class=3Dlabel width=3D36%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>Optional Headers</b></FONT></TD>
<td class=3Dlabel width=3D30%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>Compatibility</b></FONT></TD>
</tr>
<tr valign=3Dtop>
<td width=3D16%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>_sopen</b></FONT></TD>
<td width=3D18%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><io.h></FONT></TD>
<td width=3D36%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><fcntl.h>, <sys/types.h>, <sys/stat.h>, =
<share.h></FONT></TD>
<td width=3D30%><FONT FACE=3D"Verdana, Arial, Helvetica" SIZE=3D"2">Win =
95, Win NT</FONT></TD>
</tr>
<tr valign=3Dtop>
<td width=3D16%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>_wsopen</b></FONT></TD>
<td width=3D18%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><io.h> or <wchar.h></FONT></TD>
<td width=3D36%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><fcntl.h>, <sys/types.h>, <sys/stat.h>, =
<share.h></FONT></TD>
<td width=3D30%><FONT FACE=3D"Verdana, Arial, Helvetica" SIZE=3D"2">Win =
NT</FONT></TD>
</tr>
</table><br>
<p>
For additional compatibility information, see <a =
href=3D"_crt_compatibility.htm">Compatibility</a> in the =
Introduction.</p>
<p class=3Dlabel>
<b>Libraries</b></p>
<table border=3D1 cellpadding=3D5 cols=3D2 frame=3Dbelow rules=3Drows>
<tr valign=3Dtop>
<td width=3D24%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">LIBC.LIB</FONT></TD>
<td width=3D76%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">Single thread static library, retail version</FONT></TD>
</tr>
<tr valign=3Dtop>
<td width=3D24%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">LIBCMT.LIB</FONT></TD>
<td width=3D76%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">Multithread static library, retail version</FONT></TD>
</tr>
<tr valign=3Dtop>
<td width=3D24%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">MSVCRT.LIB</FONT></TD>
<td width=3D76%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">Import library for MSVCRT.DLL, retail version</FONT></TD>
</tr>
</table><br>
<p class=3Dlabel>
<b>Return Value</b></p>
<p>
Each of these functions returns a file handle for the opened file. A =
return value of =961 indicates an error, in which case <b>errno</b> is =
set to one of the following values:</p>
<p class=3Ddt>
<b>EACCES</b></p>
<p class=3Dindent>
Given path is a directory, or file is read-only, but an =
open-for-writing operation was attempted.</p>
<p class=3Ddt>
<b>EEXIST</b></p>
<p class=3Dindent>
<b>_O_CREAT</b> and <b>_O_EXCL</b> flags were specified, but =
<i>filename</i> already exists.</p>
<p class=3Ddt>
<b>EINVAL</b></p>
<p class=3Dindent>
Invalid <i>oflag</i> or <i>shflag</i> argument.</p>
<p class=3Ddt>
<b>EMFILE</b></p>
<p class=3Dindent>
No more file handles available.</p>
<p class=3Ddt>
<b>ENOENT</b></p>
<p class=3Dindent>
File or path not found.</p>
<p class=3Dlabel>
<b>Parameters</b></p>
<p class=3Ddt>
<i>filename</i></p>
<p class=3Dindent>
Filename</p>
<p class=3Ddt>
<i>oflag</i></p>
<p class=3Dindent>
Type of operations allowed</p>
<p class=3Ddt>
<i>shflag</i></p>
<p class=3Dindent>
Type of sharing allowed</p>
<p class=3Ddt>
<i>pmode</i></p>
<p class=3Dindent>
Permission setting</p>
<p class=3Dlabel>
<b>Remarks</b></p>
<p>
The <b>_sopen</b> function opens the file specified by <i>filename</i> =
and prepares the file for shared reading or writing, as defined by =
<i>oflag</i> and <i>shflag</i>. <b>_wsopen</b> is a wide-character =
version of <b>_sopen</b>; the <i>filename</i> argument to =
<b>_wsopen</b> is a wide-character string. <b>_wsopen</b> and =
<b>_sopen</b> behave identically otherwise.</p>
<p class=3Dlabel>
<b>Generic-Text Routine Mappings</b></p>
<table border=3D1 cellpadding=3D5 cols=3D4 frame=3Dbelow rules=3Drows>
<tr valign=3Dtop>
<td class=3Dlabel width=3D17%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>TCHAR.H Routine </b></FONT></TD>
<td class=3Dlabel width=3D29%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>_UNICODE & _MBCS Not Defined</b></FONT></TD>
<td class=3Dlabel width=3D26%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>_MBCS Defined</b></FONT></TD>
<td class=3Dlabel width=3D28%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2"><b>_UNICODE Defined</b></FONT></TD>
</tr>
<tr valign=3Dtop>
<td width=3D17%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">_tsopen</FONT></TD>
<td width=3D29%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">_sopen</FONT></TD>
<td width=3D26%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">_sopen</FONT></TD>
<td width=3D28%><FONT FACE=3D"Verdana, Arial, Helvetica" =
SIZE=3D"2">_wsopen</FONT></TD>
</tr>
</table><br>
<p>
The integer expression <i>oflag</i> is formed by combining one or more =
of the following manifest constants, defined in the file FCNTL.H. When =
two or more constants form the argument <i>oflag</i>, they are combined =
with the bitwise-OR operator ( <b>|</b> ).</p>
<p class=3Ddt>
<b>_O_APPEND</b></p>
<p class=3Dindent>
Repositions file pointer to end of file before every write =
operation.</p>
<p class=3Ddt>
<b>_O_BINARY</b></p>
<p class=3Dindent>
Opens file in binary (untranslated) mode. (See <a =
href=3D"_crt_fopen.2c_._wfopen.htm">fopen</a> for a description of =
binary mode.)</p>
<p class=3Ddt>
<b>_O_CREAT</b></p>
<p class=3Dindent>
Creates and opens new file for writing. Has no effect if file specified =
by <i>filename</i> exists. The <i>pmode</i> argument is required when =
<b>_O_CREAT</b> is specified.</p>
<p class=3Ddt>
<b>_O_CREAT</b> | <b>_O_SHORT_LIVED</b></p>
<p class=3Dindent>
Create file as temporary and if possible do not flush to disk. The =
<i>pmode</i> argument is required when <b>_O_CREAT</b> is =
specified.</p>
<p class=3Ddt>
<b>_O_CREAT</b> | <b>_O_TEMPORARY</b></p>
<p class=3Dindent>
Create file as temporary; file is deleted when last file handle is =
closed. The <i>pmode</i> argument is required when <b>_O_CREAT</b> is =
specified. </p>
<p class=3Ddt>
<b>_O_CREAT</b> | <b>_O_EXCL</b></p>
<p class=3Dindent>
Returns error value if file specified by <i>filename</i> exists. =
Applies only when used with <b>_O_CREAT</b>.</p>
<p class=3Ddt>
<b>_O_NOINHERIT</b></p>
<p class=3Dindent>
Prevents creation of a shared file handle.</p>
<p class=3Ddt>
<b>_O_RANDOM</b></p>
<p class=3Dindent>
Specifies primarily random access from disk.</p>
<p class=3Ddt>
<b>_O_RDONLY</b></p>
<p class=3Dindent>
Opens file for reading only; cannot be specified with <b>_O_RDWR</b> or =
<b>_O_WRONLY</b>.</p>
<p class=3Ddt>
<b>_O_RDWR</b></p>
<p class=3Dindent>
Opens file for both reading and writing; cannot be specified with =
<b>_O_RDONLY</b> or <b>_O_WRONLY</b>.</p>
<p class=3Ddt>
<b>_O_SEQUENTIAL</b></p>
<p class=3Dindent>
Specifies primarily sequential access from disk</p>
<p class=3Ddt>
<b>_O_TEXT</b></p>
<p class=3Dindent>
Opens file in text (translated) mode. (For more information, see <a =
href=3D"_crt_text_and_binary_mode_file_i.2f.o.htm">Text and Binary Mode =
File I/O</a> and <a href=3D"_crt_fopen.2c_._wfopen.htm">fopen</a>.)</p>
<p class=3Ddt>
<b>_O_TRUNC</b></p>
<p class=3Dindent>
Opens file and truncates it to zero length; the file must have write =
permission. You cannot specify this flag with <b>_O_RDONLY</b>. =
<b>_O_TRUNC</b> used with <b>_O_CREAT</b> opens an existing file or =
creates a new file.</p>
<p class=3Dindent>
<B><b>Warning</b></B> The <b>_O_TRUNC</b> flag =
destroys the contents of the specified file.</p>
<p class=3Ddt>
<b>_O_WRONLY</b></p>
<p class=3Dindent>
Opens file for writing only; cannot be specified with <b>_O_RDONLY</b> =
or <b>_O_RDWR</b>.</p>
<p>
To specify the file access mode, you must specify either =
<b>_O_RDONLY</b>, <b>_O_RDWR</b>, or <b>_O_WRONLY</b>. There is no =
default value for the access mode.</p>
<p>
The argument <i>shflag</i> is a constant expression consisting of one =
of the following manifest constants, defined in SHARE.H.</p>
<p class=3Ddt>
<b>_SH_DENYRW</b></p>
<p class=3Dindent>
Denies read and write access to file</p>
<p class=3Ddt>
<b>_SH_DENYWR</b></p>
<p class=3Dindent>
Denies write access to file</p>
<p class=3Ddt>
<b>_SH_DENYRD</b></p>
<p class=3Dindent>
Denies read access to file</p>
<p class=3Ddt>
<b>_SH_DENYNO</b></p>
<p class=3Dindent>
Permits read and write access</p>
<p>
The <i>pmode</i> argument is required only when you specify =
<b>_O_CREAT</b>. If the file does not exist, <i>pmode</i> specifies the =
file=92s permission settings, which are set when the new file is closed =
the first time. Otherwise <i>pmode</i> is ignored. <i>pmode</i> is an =
integer expression that contains one or both of the manifest constants =
<b>_S_IWRITE</b> and <b>_S_IREAD</b>, defined in SYS\STAT.H. When both =
constants are given, they are combined with the bitwise-OR operator. =
The meaning of <i>pmode</i> is as follows:</p>
<p class=3Ddt>
<b>_S_IWRITE</b></p>
<p class=3Dindent>
Writing permitted</p>
<p class=3Ddt>
<b>_S_IREAD</b></p>
<p class=3Dindent>
Reading permitted</p>
<p class=3Ddt>
<b>_S_IREAD | _S_IWRITE</b></p>
<p class=3Dindent>
Reading and writing permitted</p>
<p>
If write permission is not given, the file is read-only. Under Windows =
NT and Windows 95, all files are readable; it is not possible to give =
write-only permission. Thus the modes <b>_S_IWRITE</b> and <b>_S_IREAD =
| _S_IWRITE</b> are equivalent.</p>
<p>
<b>_sopen</b> applies the current file-permission mask to <i>pmode</i> =
before setting the permissions (see <a =
href=3D"_crt__umask.htm">_umask</a>).</p>
<p class=3Dlabel>
<b>Example</b></p>
<pre><code>/* LOCKING.C: This program opens a file with sharing. It =
locks
* some bytes before reading them, then unlocks them. Note that the
* program works correctly only if the file exists.
*/
#include <io.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <sys/locking.h>
#include <share.h>
#include <fcntl.h>
#include <stdio.h>
#include <stdlib.h>
void main( void )
{
int fh, numread;
char buffer[40];
/* Quit if can't open file or system doesn't=20
* support sharing.=20
*/
fh =3D _sopen( "locking.c", _O_RDWR, _SH_DENYNO,=20
=
=
_S_IREAD | _S_IWRITE );
if( fh =3D=3D -1 )
exit( 1 );
/* Lock some bytes and read them. Then unlock. */
if( _locking( fh, LK_NBLCK, 30L ) !=3D -1 )
{
printf( "No one can change these bytes while =
I'm reading them\n" );
numread =3D _read( fh, buffer, 30 );
printf( "%d bytes read: %.30s\n", numread, =
buffer );
lseek( fh, 0L, SEEK_SET );
_locking( fh, LK_UNLCK, 30L );
printf( "Now I'm done. Do what you will with =
them\n" );
}
else
perror( "Locking failed\n" );
_close( fh );
}
</code></pre>
<p class=3Dlabel>
<b>Output</b></p>
<pre><code>No one can change these bytes while I'm reading them
30 bytes read: /* LOCKING.C: This program ope
Now I'm done. Do what you will with them
</code></pre>
<p>
<a href=3D"_crt_low.2d.level_i.2f.o.htm">Low-level I/O Routines</a></p>
<p>
<b>See Also</b> <a =
href=3D"_crt__close.htm">_close</a>, <a =
href=3D"_crt__creat.2c_._wcreat.htm">_creat</a>, <a =
href=3D"_crt_fopen.2c_._wfopen.htm">fopen</a>, <a =
href=3D"_crt__fsopen.2c_._wfsopen.htm">_fsopen</a>, <a =
href=3D"_crt__open.2c_._wopen.htm">_open</a> </p>
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------_=_NextPart_000_01BF2721.6EC93F70
Content-Type: application/x-unknown-content-type-ProjectBuilder.c;
name="gc.c"
Content-Transfer-Encoding: quoted-printable
Content-Disposition: attachment;
filename="gc.c"
/* Copyright (C) 1997-1999 NEC Research Institute.=0A=
* Please see the file LICENSE for license information.=0A=
*/=0A=
=0A=
#include "gc.h"=0A=
=0A=
#if defined(_WIN32)=0A=
#include <windows.h>=0A=
#include <sys/timeb.h>=0A=
=0A=
#define pagesize 4096 //FIXME: I guess this is correct for now, but =
ugly...=0A=
=0A=
// I _think_ this is correct - it's some constants from Delphi...=0A=
=0A=
#ifndef _SH_DENYRD=0A=
#define _O_RDONLY 0=0A=
#define _O_WRONLY 1=0A=
#define _O_RDWR 2=0A=
//OF_SHARE_COMPAT 0=0A=
//OF_SHARE_EXCLUSIVE 0x10=0A=
#define _SH_DENYWR 0x20=0A=
#define _SH_DENYRD 48=0A=
#define _SH_DENYNO 0x40=0A=
//OF_PARSE 0x100=0A=
//OF_DELETE 0x200=0A=
//OF_VERIFY 0x400=0A=
//OF_CANCEL 0x800=0A=
#define _O_CREAT 0x1000=0A=
//OF_PROMPT 0x2000=0A=
//OF_EXIST 0x4000=0A=
//OF_REOPEN 0x8000=0A=
#endif=0A=
=0A=
#else=0A=
#include <sys/mman.h>=0A=
#include <sys/resource.h>=0A=
#endif=0A=
=0A=
#include <fcntl.h>=0A=
#include <string.h>=0A=
#include <values.h>=0A=
=0A=
#define GC_DISPLAY_HEAP FALSE=0A=
#define GC_DEBUG FALSE=0A=
#define GC_DEBUG_ALLOC FALSE=0A=
#define STRING_HEADER GC_arrayHeader(1, 0)=0A=
#define FORWARDED 0xFFFFFFFF=0A=
#define NUM_POINTERS_MASK 0x0000FFFF=0A=
#define IS_NORMAL_MASK 0x8000=0A=
#define NUM_NON_POINTERS_MASK 0x7FFF=0A=
=0A=
/* Continuation objects are layed out as follows.=0A=
* 1 word header (CONT_HEADER)=0A=
* 1 uint size=0A=
* 1 uint exnStack=0A=
* size words of stack data=0A=
*/=0A=
#define CONT_HEADER 0x7FFFFFFF=0A=
=0A=
#define toBytes(n) ((n) << 2)=0A=
=0A=
typedef void (*pointerFun)(GC_state *s, pointer *p);=0A=
=0A=
#if defined(_WIN32)=0A=
// These seems to be defined already...=0A=
// #define min(x, y) (((uint)x < (uint)y) ? (uint)x : (uint)y)=0A=
// #define max(x, y) (((uint)x > (uint)y) ? (uint)x : (uint)y)=0A=
#else=0A=
static inline uint min(uint x, uint y) {=0A=
return ((x < y) ? x : y);=0A=
}=0A=
=0A=
static inline uint max(uint x, uint y) {=0A=
return ((x > y) ? x : y);=0A=
}=0A=
#endif=0A=
=0A=
static ushort empty_GC_offsets[] =3D { 0 };=0A=
=0A=
static void noLocals(GC_state *s) {=0A=
s->bytesRequested =3D 0;=0A=
s->localOffsets =3D empty_GC_offsets;=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* Safe mmap and munmap */=0A=
/* ------------------------------------------------- */=0A=
=0A=
#if defined(_WIN32)=0A=
// This is from the SML/NJ source...=0A=
=0A=
void *alloc_vmem(int nb)=0A=
{=0A=
void *p;=0A=
=0A=
p =3D (void *) VirtualAlloc(NULL,=0A=
nb,=0A=
MEM_COMMIT|MEM_RESERVE,=0A=
PAGE_EXECUTE_READWRITE);=0A=
if (p =3D=3D NULL) {=0A=
die("VirtualAlloc failed on request of size %lx\n", nb);=0A=
}=0A=
return p;=0A=
}=0A=
=0A=
/* free_vmem:=0A=
* Return memory to OS.=0A=
*/=0A=
void free_vmem (void *p)=0A=
{=0A=
if (!VirtualFree((LPVOID)p,=0A=
0,=0A=
MEM_RELEASE)) {=0A=
die("unable to VirtualFree memory at %lx\n", p);=0A=
}=0A=
}=0A=
#endif=0A=
=0A=
static void *smmap(size_t length) {=0A=
void *result;=0A=
=0A=
#if defined(_WIN32)=0A=
result =3D alloc_vmem(length);=0A=
#else =0A=
result =3D mmap(NULL, length, PROT_READ | PROT_WRITE, =0A=
MAP_PRIVATE | MAP_ANON, -1, 0);=0A=
#endif=0A=
=0A=
if (result =3D=3D (void*)-1) die("mmap failed");=0A=
=0A=
return result;=0A=
}=0A=
=0A=
static void smunmap(pointer base, size_t length) {=0A=
if (0 =3D=3D length)=0A=
return;=0A=
#if defined(_WIN32)=0A=
free_vmem(base);=0A=
#else=0A=
if (0 !=3D munmap(base, length))=0A=
die("munmap failed");=0A=
#endif=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* fromSpace, toSpace */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static inline void setLimit(GC_state *s) {=0A=
s->limit =3D s->base + s->fromSize;=0A=
}=0A=
=0A=
static void fromSpace(GC_state *s) {=0A=
s->base =3D smmap(s->fromSize);=0A=
if (s->fromSize > s->maxHeapSizeSeen)=0A=
s->maxHeapSizeSeen =3D s->fromSize;=0A=
setLimit(s);=0A=
}=0A=
=0A=
static void toSpace(GC_state *s) {=0A=
s->toBase =3D smmap(s->toSize);=0A=
if (s->toSize > s->maxHeapSizeSeen)=0A=
s->maxHeapSizeSeen =3D s->toSize;=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* currentTime */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* return time as number of milliseconds */=0A=
static uint currentTime() {=0A=
uint result;=0A=
=0A=
#if defined(_WIN32)=0A=
result =3D GetTickCount();=0A=
#else=0A=
struct rusage ru;=0A=
getrusage(RUSAGE_SELF, &ru);=0A=
=0A=
result =3D 0;=0A=
result +=3D 1000 * ru.ru_utime.tv_sec;=0A=
result +=3D 1000 * ru.ru_stime.tv_sec;=0A=
result +=3D ru.ru_utime.tv_usec / 1000;=0A=
result +=3D ru.ru_stime.tv_usec / 1000;=0A=
#endif=0A=
=0A=
return result;=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* roundPage */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/*=0A=
* Round size up to a multiple of the size of a page.=0A=
*/=0A=
size_t roundPage(size_t size)=0A=
{=0A=
static size_t psize;=0A=
=0A=
#if defined(_WIN32)=0A=
psize =3D pagesize;//FIXME: I guess this is correct for now, but not =
nice...=0A=
#else=0A=
psize =3D getpagesize();=0A=
#endif=0A=
size +=3D psize - 1;=0A=
size -=3D size % psize;=0A=
return (size);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* computeHeapSize */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* returns min(s->maxHeapSize, live * ratio).=0A=
* It is careful not to overflow when doing the multiply.=0A=
* It should only be called when not s->useFixedHeap, since =
s->maxHeapSize is=0A=
* only set in that case.=0A=
*/=0A=
static uint computeHeapSize(GC_state *s, uint live, uint ratio) {=0A=
ullong needed;=0A=
=0A=
assert(not s->useFixedHeap);=0A=
=0A=
needed =3D ((ullong)live) * ratio;=0A=
return ((needed > s->maxHeapSize)=0A=
? s->maxHeapSize=0A=
: roundPage(needed));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* extractArrayNumBytes */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* The number of bytes in an array, not including the header. */=0A=
static inline uint extractArrayNumBytes(pointer p, =0A=
uint numPointers,=0A=
uint numNonPointers) {=0A=
uint numElements, bytesPerElement, result;=0A=
=0A=
numElements =3D GC_arrayNumElements(p);=0A=
bytesPerElement =3D numNonPointers + toBytes(numPointers);=0A=
result =3D wordAlign(numElements * bytesPerElement);=0A=
=0A=
return result;=0A=
}=0A=
=0A=
/* WARNING:=0A=
* foreachGlobal, foreachLocal, foreachPointerInStack, =
foreachPointerInHeap=0A=
* may apply their argument function f to values that are not pointers. =
These=0A=
* values will always be nonzero mod 4, and should be first checked by =
f using =0A=
* GC_isPointer.=0A=
*/=0A=
/* ------------------------------------------------- */=0A=
/* foreachGlobal */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Apply f to each global pointer into the heap. */=0A=
static void foreachGlobal(GC_state *s, pointerFun f) {=0A=
int i;=0A=
=0A=
for (i =3D 0 ; i < s->numGlobals ; ++i)=0A=
f(s, &(s->globals[i]));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* foreachLocal */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Apply f to each local pointer into the heap. */=0A=
static void foreachLocal(GC_state *s, pointerFun f) {=0A=
int i;=0A=
=0A=
for (i =3D 0 ; i < s->localOffsets[0] ; ++i)=0A=
f(s, &(s->locals[s->localOffsets[i + 1]]));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* foreachPointerInStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Apply f to each pointer from the stack to the heap. */=0A=
static void foreachPointerInStackGen(GC_state *s, pointer bottom, =
pointer top,=0A=
pointerFun f) {=0A=
int i;=0A=
=0A=
while (top >=3D bottom) {=0A=
/* inv: top points at a frame index */=0A=
uint frameIndex;=0A=
GC_frameLayout *layout;=0A=
GC_offsets frameOffsets;=0A=
=0A=
frameIndex =3D *(uint*) top;=0A=
#if GC_DEBUG=0A=
fprintf(stderr, "frame index %d.\n", frameIndex);=0A=
#endif=0A=
assert(frameIndex < s->maxFrameIndex);=0A=
layout =3D &(s->frameLayouts[frameIndex]);=0A=
frameOffsets =3D layout->offsets;=0A=
top -=3D layout->numBytes;=0A=
=0A=
for (i =3D 0 ; i < frameOffsets[0] ; ++i) {=0A=
#if GC_DEBUG=0A=
fprintf(stderr, "frame offset %d.\n", frameOffsets[i + 1]);=0A=
#endif=0A=
f(s, (pointer*)(top + frameOffsets[i + 1]));=0A=
}=0A=
}=0A=
=0A=
assert(top =3D=3D bottom - WORD_SIZE);=0A=
}=0A=
=0A=
static void foreachPointerInStack(GC_state *s, pointerFun f) {=0A=
foreachPointerInStackGen(s, s->stackBottom, s->stackTop, f);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* foreachPointerInHeap */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Apply f to each pointer between s->front and s->back, which should =
be a =0A=
* contiguous sequence of objects, where s->front points at a header =
word =0A=
* and s->back points just past the end of the last object.=0A=
* f may increase s->back (for example, this is done by forward).=0A=
*/=0A=
static void foreachPointerInHeap(GC_state *s, pointerFun f) {=0A=
pointer front;=0A=
=0A=
front =3D s->front;=0A=
=0A=
while (front < s->back) {=0A=
/* Invariant: front always points at the next header word. */=0A=
word header;=0A=
uint numPointers;=0A=
uint numNonPointers;=0A=
bool isArray =3D FALSE;=0A=
=0A=
header =3D *(word*)front;=0A=
=0A=
front +=3D WORD_SIZE;=0A=
=0A=
if (not (header & HIGH_BIT)) { =0A=
isArray =3D TRUE;=0A=
if (CONT_HEADER !=3D header) {=0A=
/* Looking at an array, the header is here. */=0A=
header =3D *(word*)front;=0A=
front +=3D WORD_SIZE;=0A=
}=0A=
} =0A=
=0A=
/* front points at beginning of object data */=0A=
=0A=
/* extract header components */=0A=
numPointers =3D header & NUM_POINTERS_MASK;=0A=
numNonPointers =3D =0A=
(header >> NON_POINTERS_SHIFT) & NUM_NON_POINTERS_MASK;=0A=
=0A=
if (isArray) {=0A=
if (CONT_HEADER =3D=3D header) { /* It's a continuation. */=0A=
uint size;=0A=
=0A=
size =3D *(uint*)front;=0A=
front +=3D 2 * WORD_SIZE;=0A=
foreachPointerInStackGen=0A=
(s, front, front + size - WORD_SIZE, f);=0A=
front +=3D size;=0A=
} else { /* It's really an array */=0A=
uint numBytes;=0A=
=0A=
numBytes =3D extractArrayNumBytes(front, numPointers, =
numNonPointers);=0A=
=0A=
if (numBytes =3D=3D 0) { =0A=
/* An empty array -- skip the POINTER_SIZE bytes=0A=
* for the forwarding pointer.=0A=
*/=0A=
front +=3D POINTER_SIZE;=0A=
} else {=0A=
pointer max;=0A=
=0A=
max =3D front + numBytes;=0A=
=0A=
if (numPointers =3D=3D 0) {=0A=
/* There are no pointers, just update the front=0A=
* of the queue.=0A=
*/=0A=
front =3D max;=0A=
} else if (numNonPointers =3D=3D 0) { =0A=
/* It's an array with only pointers. */=0A=
for (; front < max; front +=3D POINTER_SIZE)=0A=
f(s, (pointer*)front);=0A=
} else {=0A=
uint numBytesPointers;=0A=
=0A=
numBytesPointers =3D toBytes(numPointers);=0A=
=0A=
/* for each array element */=0A=
while (front < max) {=0A=
pointer max2;=0A=
front +=3D numNonPointers;=0A=
max2 =3D front + numBytesPointers;=0A=
/* Forward all internal pointers. */=0A=
for ( ; front < max2 ; front +=3D POINTER_SIZE) =0A=
f(s, (pointer*)front);=0A=
}=0A=
}=0A=
assert(front =3D=3D max);=0A=
}=0A=
}=0A=
} else {=0A=
/* normal object */=0A=
pointer max;=0A=
=0A=
front +=3D toBytes(numNonPointers);=0A=
max =3D front + toBytes(numPointers);=0A=
=0A=
/* Forward all internal pointers. */=0A=
for ( ; front < max ; front +=3D POINTER_SIZE) =0A=
f(s, (pointer*)front);=0A=
}=0A=
} /* end while (front < s->back) */=0A=
=0A=
s->front =3D front;=0A=
assert(s->back =3D=3D s->front);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* invariant */=0A=
/* ------------------------------------------------- */=0A=
=0A=
#ifndef NODEBUG=0A=
static bool isInFromSpace(GC_state *s, pointer p) {=0A=
return (not(GC_isPointer(p)) =0A=
or (s->base <=3D p and p < s->base + s->fromSize));=0A=
}=0A=
=0A=
static void assertIsInFromSpace(GC_state *s, pointer *p) {=0A=
assert(isInFromSpace(s, *p));=0A=
}=0A=
=0A=
static bool isInToSpace(GC_state *s, pointer p) {=0A=
return (not(GC_isPointer(p))=0A=
or (s->toBase <=3D p and p < s->toBase + s->toSize));=0A=
}=0A=
=0A=
static bool invariant(GC_state *s) {=0A=
/* would be nice to add divisiblity by pagesize of various things =
*/=0A=
=0A=
/* Frame layouts */=0A=
{=0A=
int i;=0A=
for (i =3D 0; i < s->maxFrameIndex; ++i) {=0A=
GC_frameLayout *layout;=0A=
=0A=
layout =3D &(s->frameLayouts[i]);=0A=
=0A=
if (layout->numBytes > 0) {=0A=
GC_offsets offsets;=0A=
int j;=0A=
=0A=
assert(layout->numBytes <=3D s->maxFrameSize);=0A=
offsets =3D layout->offsets;=0A=
for (j =3D 0; j < offsets[0]; ++j)=0A=
assert(offsets[j + 1] < layout->numBytes);=0A=
}=0A=
}=0A=
}=0A=
=0A=
/* Heap and stack. */=0A=
assert(s->base <=3D s->frontier);=0A=
assert(0 =3D=3D s->fromSize or s->frontier < s->limit);=0A=
assert(s->limit =3D=3D s->base + s->fromSize);=0A=
assert(s->useFixedHeap or (s->fromSize <=3D s->maxHeapSize=0A=
and s->toSize <=3D s->maxHeapSize));=0A=
assert(s->toBase =3D=3D NULL or s->toSize =3D=3D s->fromSize);=0A=
assert(s->stackBottom - WORD_SIZE <=3D s->stackTop=0A=
and s->stackTop < s->stackBottom + s->stackSize);=0A=
assert(s->stackLimit =3D=3D s->stackBottom + s->stackSize - =
s->maxFrameSize);=0A=
=0A=
/* Check that all pointers are into from space. */=0A=
foreachLocal(s, assertIsInFromSpace);=0A=
foreachGlobal(s, assertIsInFromSpace);=0A=
foreachPointerInStack(s, assertIsInFromSpace);=0A=
s->front =3D s->base;=0A=
s->back =3D s->frontier;=0A=
foreachPointerInHeap(s, assertIsInFromSpace);=0A=
=0A=
/* check the exception stack */=0A=
{=0A=
uint offset;=0A=
=0A=
for (offset =3D s->exnStack; offset > 0; ) {=0A=
assert(s->stackBottom + offset =0A=
<=3D s->stackTop + WORD_SIZE);=0A=
offset =3D *(uint*)(s->stackBottom + offset + WORD_SIZE);=0A=
}=0A=
}=0A=
=0A=
return TRUE;=0A=
}=0A=
#endif=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* allocateStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static void setStackLimit(GC_state *s) {=0A=
s->stackLimit =3D s->stackBottom + s->stackSize - s->maxFrameSize;=0A=
}=0A=
=0A=
static void allocateStack(GC_state *s) {=0A=
s->stackBottom =3D smmap(s->stackSize);=0A=
setStackLimit(s);=0A=
} =0A=
=0A=
/* ------------------------------------------------- */=0A=
/* translateStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Update stackTop for a stack that has moved from =0A=
* s->stackBottom =3D=3D old to the current s->stackBottom.=0A=
* The code is careful to use a uint for the difference and not an int =
so that =0A=
* moves over arbitrarily large differences in the address space are =
allowed.=0A=
*/=0A=
static void translateStack(GC_state *s, pointer old) {=0A=
if (s->stackBottom > old)=0A=
s->stackTop +=3D (s->stackBottom - old);=0A=
else=0A=
s->stackTop -=3D (old - s->stackBottom);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* maybeShrinkStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
#define STACK_SHRINK_THRESHOLD 4=0A=
#define STACK_SHRINK_FACTOR 2=0A=
=0A=
void maybeShrinkStack(GC_state *s) {=0A=
uint size;=0A=
=0A=
size =3D s->stackTop + WORD_SIZE - s->stackBottom;=0A=
=0A=
if (size * STACK_SHRINK_THRESHOLD < s->stackSize=0A=
#if defined(_WIN32)=0A=
and s->stackSize > pagesize) { //FIXME: ...=0A=
#else=0A=
and s->stackSize > getpagesize()) {=0A=
#endif=0A=
uint keep;=0A=
=0A=
keep =3D roundPage(max(size, s->stackSize / STACK_SHRINK_FACTOR));=0A=
if (keep < s->stackSize) {=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, "Shrinking stack to size %u.\n",=0A=
keep);=0A=
assert(s->stackTop < s->stackBottom + keep);=0A=
smunmap(s->stackBottom + keep, s->stackSize - keep);=0A=
s->stackSize =3D keep;=0A=
setStackLimit(s);=0A=
}=0A=
}=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_growStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
#define STACK_GROW_FACTOR 2=0A=
void GC_growStack(GC_state *s) {=0A=
pointer old;=0A=
uint oldSize, size;=0A=
=0A=
noLocals(s);=0A=
assert(invariant(s));=0A=
old =3D s->stackBottom;=0A=
oldSize =3D s->stackSize;=0A=
size =3D s->stackTop + WORD_SIZE - s->stackBottom;=0A=
s->stackSize *=3D STACK_GROW_FACTOR;=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, "Growing stack to size %u.\n", s->stackSize);=0A=
allocateStack(s);=0A=
memcpy(s->stackBottom, old, size);=0A=
smunmap(old, oldSize);=0A=
translateStack(s, old);=0A=
=0A=
assert(invariant(s));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* initCounters */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static void initCounters(GC_state *s) {=0A=
/* The next 5 are gc-summary statistics */=0A=
s->startTime =3D currentTime();=0A=
s->bytesAllocated =3D 0;=0A=
s->bytesCopied =3D 0;=0A=
s->numGCs =3D 0;=0A=
s->gcTime =3D 0;=0A=
s->maxHeapSizeSeen =3D 0;=0A=
s->maxBytesLive =3D 0;=0A=
=0A=
/* The next 3 are for heap resizing */=0A=
s->minLive =3D 20;=0A=
s->maxLive =3D 3;=0A=
/* set liveRatio (close) to the geometric mean of minLive and maxLive =
*/=0A=
{ =0A=
uint i;=0A=
for (i =3D s->maxLive; i * i <=3D s->minLive * s->maxLive; ++i) ;=0A=
s->liveRatio =3D i;=0A=
}=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* getRAMsize */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* RAM size is multiplied by this so that we don't use up all the memory=
*/=0A=
#define RAMslop 0.95=0A=
=0A=
/* Get RAM size from /proc/meminfo. Very Linux specific. =0A=
*=0A=
* /proc/meminfo looks like the following.=0A=
*=0A=
* total: used: free: shared: buffers: cached:=0A=
* Mem: 263462912 251154432 12308480 19861504 52588544 122769408=0A=
* Swap: 131567616 53248 131514368=0A=
* MemTotal: 257288 kB=0A=
*/=0A=
static uint getRAMsize() {=0A=
FILE *file;=0A=
char c;=0A=
char buf[80];=0A=
uint n;=0A=
=0A=
#if defined(_WIN32)=0A=
n =3D 16000000; //FIXME: Ouch!!!=0A=
#else=0A=
file =3D sopen("/proc/meminfo", "r");=0A=
while ((c =3D fgetc(file)) !=3D '\n') ;=0A=
fgets(buf, sizeof("Mem:"), file);=0A=
while ((c =3D fgetc(file)) =3D=3D ' ') ;=0A=
n =3D 0;=0A=
do n =3D n * 10 + (int)(c - '0');=0A=
while ((c =3D fgetc(file)) !=3D ' ');=0A=
fclose(file);=0A=
#endif=0A=
return roundPage((uint)((double)n * RAMslop));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* setHeapParams */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* set fromSize and maybe maxHeapSize, depending on whether =
useFixedHeap.=0A=
* size must not be an approximation, because setHeapParams will die if =
it=0A=
* can't set fromSize big enough.=0A=
*/=0A=
void setHeapParams(GC_state *s, uint size) {=0A=
if (s->useFixedHeap) {=0A=
if (0 =3D=3D s->fromSize)=0A=
s->fromSize =3D getRAMsize();=0A=
s->fromSize =3D roundPage(s->fromSize / 2);=0A=
} else {=0A=
if (0 =3D=3D s->maxHeapSize) =0A=
s->maxHeapSize =3D getRAMsize();=0A=
s->maxHeapSize =3D roundPage(s->maxHeapSize / 2);=0A=
s->fromSize =3D computeHeapSize(s, size, s->liveRatio);=0A=
}=0A=
if (size > s->fromSize)=0A=
die("Out of memory.");=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_init */=0A=
/* ------------------------------------------------- */=0A=
=0A=
void GC_init(GC_state *s) {=0A=
initCounters(s);=0A=
noLocals(s);=0A=
setHeapParams(s, s->bytesLive);=0A=
{=0A=
int i;=0A=
=0A=
for (i =3D 0; i < s->numGlobals; ++i)=0A=
s->globals[i] =3D (pointer)0x1;=0A=
}=0A=
fromSpace(s);=0A=
s->frontier =3D s->base;=0A=
s->toSize =3D s->fromSize;=0A=
toSpace(s);=0A=
/* There is initially no exception stack, so we store a terminal=0A=
* bogus offset of 0.=0A=
*/=0A=
s->exnStack =3D 0;=0A=
/* The initial stack size must be big enough so that doubling it =
will=0A=
* always make enough space for the largest frame that needs =
pushed.=0A=
*/=0A=
#if defined(_WIN32)=0A=
s->stackSize =3D max(pagesize, roundPage(s->maxFrameSize));=0A=
#else=0A=
s->stackSize =3D max(getpagesize(), roundPage(s->maxFrameSize));=0A=
#endif=0A=
allocateStack(s);=0A=
/* stackTop points at the last spot in use */=0A=
s->stackTop =3D s->stackBottom - WORD_SIZE ;=0A=
=0A=
assert(invariant(s));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* forward */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Forward the object pointed to by *pp.=0A=
* Update *pp to point to the new object. =0A=
*/=0A=
static inline void forward(GC_state *s, pointer *pp) {=0A=
pointer p;=0A=
=0A=
p =3D *pp;=0A=
assert(isInFromSpace(s, p));=0A=
=0A=
if (GC_isPointer(p)) {=0A=
word header;=0A=
=0A=
/* The header is always one word before the object. */=0A=
header =3D *(word*)(p - WORD_SIZE);=0A=
if (header =3D=3D FORWARDED) =0A=
/* Already forwarded, just get the forwarding pointer. */=0A=
*pp =3D *(pointer*)p;=0A=
else { =0A=
/* forward the object */=0A=
uint numPointers, numNonPointers;=0A=
bool isNormal;=0A=
pointer objectStart;=0A=
uint objectBytes, headerBytes;=0A=
=0A=
/* extract header components */=0A=
numPointers =3D header & NUM_POINTERS_MASK;=0A=
numNonPointers =3D header >> NON_POINTERS_SHIFT;=0A=
isNormal =3D numNonPointers & IS_NORMAL_MASK;=0A=
numNonPointers =3D numNonPointers & NUM_NON_POINTERS_MASK;=0A=
=0A=
/* set headerBytes and objectBytes */=0A=
if (isNormal) {=0A=
headerBytes =3D GC_OBJECT_HEADER_SIZE;=0A=
objectBytes =3D toBytes(numPointers + numNonPointers);=0A=
} else if (CONT_HEADER =3D=3D header) {=0A=
headerBytes =3D WORD_SIZE;=0A=
objectBytes =3D 2 * WORD_SIZE + *(uint*)p;=0A=
} else { /* array */=0A=
headerBytes =3D GC_ARRAY_HEADER_SIZE;=0A=
objectBytes =3D extractArrayNumBytes(p, numPointers,=0A=
numNonPointers);=0A=
/* Empty arrays have POINTER_SIZE bytes for the =0A=
* forwarding pointer.=0A=
*/=0A=
if (objectBytes =3D=3D 0) objectBytes =3D POINTER_SIZE;=0A=
} =0A=
=0A=
objectStart =3D p - headerBytes;=0A=
=0A=
/* copy the object */=0A=
memcpy(s->back, objectStart, headerBytes + objectBytes);=0A=
=0A=
/* set the forwarding pointer and update s->back */=0A=
*(word*)(p - WORD_SIZE) =3D FORWARDED;=0A=
s->back +=3D headerBytes;=0A=
*pp =3D s->back;=0A=
*(pointer*)p =3D s->back;=0A=
s->back +=3D objectBytes;=0A=
}=0A=
}=0A=
=0A=
assert(isInToSpace(s, *pp));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* transitiveCopy */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static void transitiveCopy(GC_state *s) {=0A=
#if GC_DEBUG=0A=
fprintf(stderr, "Transitive copy.\n");=0A=
#endif=0A=
foreachPointerInHeap(s, forward);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* startGC */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static void startGC(GC_state *s) {=0A=
assert(invariant(s));=0A=
=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, "Starting gc.\n");=0A=
=0A=
s->recentStart =3D currentTime();=0A=
=0A=
if (not s->useFixedHeap) {=0A=
uint needed;=0A=
=0A=
needed =3D computeHeapSize(s, s->bytesLive + s->bytesRequested,=0A=
s->liveRatio);=0A=
=0A=
/* toSpace must be at least as big as fromSpace */=0A=
if (needed < s->fromSize)=0A=
needed =3D s->fromSize;=0A=
=0A=
/* Massage toSpace so that it is of needed size. */=0A=
if (s->toBase !=3D NULL) {=0A=
if (s->toSize < needed) {=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, "Unmapping toSpace\n");=0A=
smunmap(s->toBase, s->toSize);=0A=
s->toBase =3D NULL;=0A=
} else {=0A=
uint delete;=0A=
=0A=
delete =3D s->toSize - needed;=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, "Shrinking toSpace by %u\n", delete);=0A=
smunmap(s->toBase + needed, delete);=0A=
}=0A=
}=0A=
s->toSize =3D needed;=0A=
if (NULL =3D=3D s->toBase)=0A=
toSpace(s);=0A=
}=0A=
=0A=
s->numGCs++;=0A=
s->bytesAllocated +=3D s->frontier - s->base - s->bytesLive;=0A=
s->front =3D s->toBase;=0A=
s->back =3D s->toBase;=0A=
=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, =0A=
"toSpace is %s bytes.\n",=0A=
uintToCommaString(s->toSize));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* finishGC */=0A=
/* ------------------------------------------------- */=0A=
=0A=
void finishGC(GC_state *s) {=0A=
uint gcTime;=0A=
uint size;=0A=
=0A=
maybeShrinkStack(s);=0A=
=0A=
#if GC_DEBUG=0A=
fprintf(stderr, "Forwarding globals.\n");=0A=
#endif=0A=
foreachGlobal(s, forward);=0A=
=0A=
#if GC_DEBUG=0A=
fprintf(stderr, "Forwarding stack\n");=0A=
#endif=0A=
foreachPointerInStack(s, forward);=0A=
=0A=
#if GC_DEBUG=0A=
fprintf(stderr, "Forwarding %d locals.\n", s->localOffsets[0]);=0A=
#endif=0A=
foreachLocal(s, forward);=0A=
=0A=
transitiveCopy(s);=0A=
=0A=
size =3D s->fromSize;=0A=
=0A=
/* Swap fromSpace and toSpace. */=0A=
{=0A=
pointer tmp;=0A=
tmp =3D s->base;=0A=
s->base =3D s->toBase;=0A=
s->toBase =3D tmp;=0A=
}=0A=
{=0A=
uint tmp;=0A=
tmp =3D s->fromSize;=0A=
s->fromSize =3D s->toSize;=0A=
s->toSize =3D tmp;=0A=
}=0A=
=0A=
s->frontier =3D s->back;=0A=
s->bytesLive =3D s->frontier - s->base;=0A=
if (s->bytesLive > s->maxBytesLive)=0A=
s->maxBytesLive =3D s->bytesLive;=0A=
=0A=
/* Resize heap, if necessary. */=0A=
if (not s->useFixedHeap) {=0A=
uint needed;=0A=
=0A=
needed =3D s->bytesLive + s->bytesRequested;=0A=
if (computeHeapSize(s, needed, s->minLive) < s->fromSize) {=0A=
/* shrink heap */=0A=
uint keep;=0A=
=0A=
keep =3D computeHeapSize(s, needed, s->liveRatio);=0A=
if (GC_DEBUG or s->messages)=0A=
fprintf(stderr, "Shrinking heap to %u bytes.\n", keep);=0A=
assert(keep <=3D s->fromSize);=0A=
smunmap(s->base + keep, s->fromSize - keep);=0A=
s->fromSize =3D keep;=0A=
}=0A=
=0A=
if ((s->toSize < s->fromSize)=0A=
or (computeHeapSize(s, needed, s->maxLive) > s->fromSize)) {=0A=
/* prepare to allocate new toSpace at next GC */=0A=
smunmap(s->toBase, s->toSize);=0A=
s->toBase =3D NULL;=0A=
} else {=0A=
/* shrink toSpace so that s->toSize =3D=3D s->fromSize */=0A=
smunmap(s->toBase + s->fromSize, s->toSize - s->fromSize);=0A=
s->toSize =3D s->fromSize;=0A=
}=0A=
}=0A=
=0A=
setLimit(s);=0A=
=0A=
s->bytesCopied +=3D s->bytesLive;=0A=
gcTime =3D currentTime() - s->recentStart;=0A=
s->gcTime +=3D gcTime;=0A=
=0A=
if (GC_DEBUG or s->messages) {=0A=
fprintf(stderr, "Finished gc.\n");=0A=
fprintf(stderr, "time(ms): %s\n", intToCommaString(gcTime));=0A=
fprintf(stderr, "live(bytes): %s (%.1f%%)\n", =0A=
intToCommaString(s->bytesLive),=0A=
100.0 * ((double) s->bytesLive) / size);=0A=
}=0A=
=0A=
assert(invariant(s));=0A=
=0A=
if (s->frontier + s->bytesRequested >=3D s->limit) {=0A=
if (s->useFixedHeap or s->fromSize =3D=3D s->maxHeapSize) =0A=
die("Out of memory.");=0A=
else GC_gc(s);=0A=
}=0A=
=0A=
assert(s->frontier + s->bytesRequested < s->limit);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_gc */=0A=
/* ------------------------------------------------- */=0A=
=0A=
void GC_gc(GC_state *s) {=0A=
startGC(s);=0A=
finishGC(s);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_size */=0A=
/* ------------------------------------------------- */=0A=
=0A=
uint GC_size(GC_state *s, pointer root) {=0A=
uint size;=0A=
=0A=
noLocals(s);=0A=
startGC(s);=0A=
forward(s, &root);=0A=
transitiveCopy(s);=0A=
size =3D s->back - s->toBase;=0A=
finishGC(s);=0A=
=0A=
return size;=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_createStrings */=0A=
/* ------------------------------------------------- */=0A=
=0A=
void GC_createStrings(GC_state *s, struct GC_stringInit inits[]) {=0A=
pointer frontier;=0A=
int i;=0A=
=0A=
assert(invariant(s));=0A=
=0A=
frontier =3D s->frontier;=0A=
=0A=
for(i =3D 0; inits[i].str !=3D NULL; ++i) {=0A=
uint numElements, numBytes;=0A=
=0A=
numElements =3D inits[i].size;=0A=
numBytes =3D GC_ARRAY_HEADER_SIZE=0A=
+ ((0 =3D=3D numElements) =0A=
? POINTER_SIZE =0A=
: wordAlign(numElements));=0A=
=0A=
if (frontier + numBytes >=3D s->limit)=0A=
die("Unable to allocate string constant \"%s\".", inits[i].str);=0A=
=0A=
*(word*)frontier =3D numElements;=0A=
*(word*)(frontier + WORD_SIZE) =3D STRING_HEADER;=0A=
s->globals[inits[i].globalIndex] =3D frontier + =
GC_ARRAY_HEADER_SIZE;=0A=
{=0A=
int j;=0A=
=0A=
for (j =3D 0; j < numElements; ++j)=0A=
*(frontier + GC_ARRAY_HEADER_SIZE + j) =0A=
=3D inits[i].str[j];=0A=
}=0A=
frontier +=3D numBytes;=0A=
}=0A=
s->frontier =3D frontier;=0A=
=0A=
assert(invariant(s));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_done */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static void displayUint(string name, uint n) {=0A=
fprintf(stderr, "%s: %s\n", name, uintToCommaString(n));=0A=
}=0A=
=0A=
static void displayUllong(string name, ullong n) {=0A=
fprintf(stderr, "%s: %s\n", name, ullongToCommaString(n));=0A=
}=0A=
=0A=
void GC_done(GC_state *s) {=0A=
noLocals(s);=0A=
assert(invariant(s));=0A=
smunmap(s->stackBottom, s->stackSize);=0A=
smunmap(s->base, s->fromSize);=0A=
if (s->toBase !=3D NULL) smunmap(s->toBase, s->toSize);=0A=
=0A=
if (s->summary) {=0A=
double time;=0A=
=0A=
displayUint("stack size(bytes)", s->stackSize);=0A=
displayUint("max semispace size(bytes)", s->maxHeapSizeSeen);=0A=
time =3D (double)(currentTime() - s->startTime);=0A=
fprintf(stderr, "GC time(ms): %s (%.1f%%)\n",=0A=
intToCommaString(s->gcTime), =0A=
(0.0 =3D=3D time) ? 0.0 =0A=
: 100.0 * ((double) s->gcTime) / time);=0A=
displayUint("number of GCs", s->numGCs);=0A=
displayUllong("bytes allocated",=0A=
s->bytesAllocated =0A=
+ (s->frontier - s->base - s->bytesLive));=0A=
displayUllong("bytes copied", s->bytesCopied);=0A=
displayUint("max bytes live", s->maxBytesLive);=0A=
} =0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_saveWorld */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* TERMINATOR is used to separate the human readable messages at the =
beginning=0A=
* of the world file from the machine readable data.=0A=
*/=0A=
#define TERMINATOR '\000'=0A=
=0A=
void GC_saveWorld(GC_state *s, =0A=
uint magic,=0A=
pointer fileName,=0A=
void (*saveGlobals)(FILE *file)) {=0A=
FILE *file;=0A=
=0A=
assert(invariant(s));=0A=
=0A=
/* The sopen must happen before the gc, because the GC will =
invalidate=0A=
* the fileName pointer. =0A=
*/=0A=
#if defined(_WIN32)=0A=
// FIXME: _O_CREAT or _O_APPEND?=0A=
file =3D sopen((char*)fileName, _O_WRONLY, _SH_DENYWR);=0A=
#else=0A=
file =3D sopen((char*)fileName, "w");=0A=
#endif=0A=
=0A=
/* Compact the heap into fromSpace */=0A=
noLocals(s);=0A=
GC_gc(s);=0A=
=0A=
fprintf(file, "Heap file created by MLton.\nbase =3D %x\nfrontier =3D =
%x\nstackBottom =3D %x\nstackTop =3D %x\nmaxHeapSize =3D %u\n", =0A=
(uint)s->base,=0A=
(uint)s->frontier,=0A=
(uint)s->stackBottom,=0A=
(uint)s->stackTop,=0A=
s->maxHeapSize);=0A=
=0A=
fputc(TERMINATOR, file);=0A=
=0A=
swriteUint(magic, file);=0A=
swriteUint((uint)s->base, file);=0A=
swriteUint((uint)s->frontier, file);=0A=
swriteUint((uint)s->stackBottom, file);=0A=
swriteUint((uint)s->stackTop, file);=0A=
swriteUint(s->exnStack, file);=0A=
swriteUint((uint)s->useFixedHeap, file);=0A=
swriteUint(s->fromSize, file);=0A=
swriteUint(s->maxHeapSize, file);=0A=
=0A=
swrite(s->stackBottom, 1,=0A=
s->stackTop - s->stackBottom + WORD_SIZE,=0A=
file);=0A=
swrite(s->base, 1, s->frontier - s->base, file);=0A=
(*saveGlobals)(file);=0A=
=0A=
fclose(file);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* translateHeap */=0A=
/* ------------------------------------------------- */=0A=
=0A=
static int translateDirection;=0A=
static uint translateDiff;=0A=
=0A=
void translatePointer(GC_state *s, pointer *p) {=0A=
if (GC_isPointer(*p)) {=0A=
if (1 =3D=3D translateDirection)=0A=
*p +=3D translateDiff;=0A=
else=0A=
*p -=3D translateDiff;=0A=
}=0A=
}=0A=
=0A=
/* Translate all pointers to the heap from within the stack and the =
heap for=0A=
* a heap that has moved from s->base =3D=3D old to s->base.=0A=
*/=0A=
void translateHeap(GC_state *s, pointer old) {=0A=
if (s->base =3D=3D old)=0A=
return;=0A=
else if (s->base > old) {=0A=
translateDiff =3D s->base - old;=0A=
translateDirection =3D 1;=0A=
} else {=0A=
translateDiff =3D old - s->base;=0A=
translateDirection =3D -1;=0A=
}=0A=
=0A=
/* Translate globals. */=0A=
{=0A=
int i;=0A=
for (i =3D 0; i < s->numGlobals; ++i)=0A=
translatePointer(s, &(s->globals[i]));=0A=
}=0A=
=0A=
/* Translate stack. */=0A=
foreachPointerInStack(s, translatePointer);=0A=
=0A=
/* Translate heap. */=0A=
s->front =3D s->base;=0A=
s->back =3D s->frontier;=0A=
foreachPointerInHeap(s, translatePointer);=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* GC_loadWorld */=0A=
/* ------------------------------------------------- */=0A=
=0A=
void GC_loadWorld(GC_state *s, =0A=
uint magic,=0A=
char *fileName,=0A=
bool heapSizeCommandLine,=0A=
void (*loadGlobals)(FILE *file)) {=0A=
FILE *file;=0A=
uint heapSize, fromSize, maxHeapSize, magic2;=0A=
pointer base, frontier, stackBottom;=0A=
bool useFixedHeap;=0A=
char c;=0A=
=0A=
initCounters(s);=0A=
=0A=
#if defined(_WIN32)=0A=
file =3D sopen((char*)fileName, _O_RDONLY, _SH_DENYNO);=0A=
#else=0A=
file =3D sopen((char*)fileName, "r");=0A=
#endif=0A=
=0A=
until ((c =3D fgetc(file)) =3D=3D TERMINATOR or EOF =3D=3D c);=0A=
=0A=
if (EOF =3D=3D c) die("Invalid world.");=0A=
=0A=
magic2 =3D sreadUint(file);=0A=
unless (magic =3D=3D magic2)=0A=
die("Invalid world: wrong magic number.");=0A=
base =3D (pointer)sreadUint(file);=0A=
frontier =3D (pointer)sreadUint(file);=0A=
heapSize =3D frontier - base;=0A=
s->bytesLive =3D heapSize;=0A=
stackBottom =3D (pointer)sreadUint(file);=0A=
s->stackTop =3D (pointer)sreadUint(file);=0A=
s->exnStack =3D sreadUint(file);=0A=
useFixedHeap =3D (bool)sreadUint(file);=0A=
fromSize =3D sreadUint(file);=0A=
maxHeapSize =3D sreadUint(file);=0A=
=0A=
/* set s->useFixedHeap, s->maxHeapSize, s->fromSize */=0A=
if (heapSizeCommandLine)=0A=
setHeapParams(s, heapSize);=0A=
else {=0A=
s->useFixedHeap =3D useFixedHeap;=0A=
if (useFixedHeap)=0A=
s->fromSize =3D fromSize;=0A=
else {=0A=
s->maxHeapSize =3D maxHeapSize;=0A=
s->fromSize =3D computeHeapSize(s, heapSize, s->liveRatio);=0A=
}=0A=
}=0A=
=0A=
noLocals(s);=0A=
=0A=
/* Allocate stack. */=0A=
s->stackSize =3D roundPage(s->stackTop - stackBottom);=0A=
allocateStack(s);=0A=
sread(s->stackBottom, 1,=0A=
(s->stackTop + WORD_SIZE) - stackBottom,=0A=
file);=0A=
translateStack(s, stackBottom);=0A=
=0A=
/* Allocate fromSpace. */=0A=
unless (heapSize <=3D s->fromSize) =0A=
die("Not enough space to load world.");=0A=
fromSpace(s);=0A=
sread(s->base, 1, heapSize, file);=0A=
s->frontier =3D s->base + heapSize;=0A=
=0A=
(*loadGlobals)(file);=0A=
=0A=
unless (EOF =3D=3D fgetc(file))=0A=
die("Invalid world: junk at end of file.");=0A=
=0A=
fclose(file);=0A=
=0A=
/* This must occur after loading the heap, stack, and globals, since =
it=0A=
* changes pointers in all of them.=0A=
*/=0A=
translateHeap(s, base);=0A=
=0A=
/* Allocate toSpace. We at lease must do this if s->useFixedHeap. =
*/=0A=
s->toSize =3D s->fromSize;=0A=
toSpace(s);=0A=
=0A=
assert(invariant(s));=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* saveStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
/* Returns a pointer to the cont object. */=0A=
pointer GC_saveStack(GC_state *s) {=0A=
pointer front, result;=0A=
uint size;=0A=
=0A=
size =3D s->stackTop + WORD_SIZE - s->stackBottom;=0A=
=0A=
/* Ensure enough space in heap to save the stack. */=0A=
s->bytesRequested =3D 3 * WORD_SIZE + size;=0A=
if (s->frontier + s->bytesRequested >=3D s->limit) {=0A=
s->localOffsets =3D empty_GC_offsets;=0A=
GC_gc(s);=0A=
}=0A=
=0A=
front =3D s->frontier;=0A=
*(uint*)front =3D CONT_HEADER;=0A=
front +=3D WORD_SIZE;=0A=
result =3D front;=0A=
*(uint*)front =3D size;=0A=
front +=3D WORD_SIZE;=0A=
*(uint*)front =3D s->exnStack;=0A=
front +=3D WORD_SIZE;=0A=
memcpy(front, s->stackBottom, size);=0A=
s->frontier =3D front + size;=0A=
=0A=
return result;=0A=
}=0A=
=0A=
/* ------------------------------------------------- */=0A=
/* restoreStack */=0A=
/* ------------------------------------------------- */=0A=
=0A=
void GC_restoreStack(GC_state *s, pointer p) {=0A=
uint size;=0A=
=0A=
size =3D *(uint*)p;=0A=
s->exnStack =3D *(uint*)(p + WORD_SIZE);=0A=
=0A=
smunmap(s->stackBottom, s->stackSize);=0A=
s->stackSize =3D roundPage(size);=0A=
allocateStack(s);=0A=
s->stackTop =3D s->stackBottom + size - WORD_SIZE;=0A=
memcpy(s->stackBottom, p + 2 * WORD_SIZE, size);=0A=
}=0A=
------_=_NextPart_000_01BF2721.6EC93F70
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