mirror of
https://github.com/UberGames/ioef.git
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c174143dc2
- Fix warning on mingw64
1117 lines
26 KiB
C
1117 lines
26 KiB
C
/*
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===========================================================================
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Copyright (C) 1999-2005 Id Software, Inc.
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Copyright (C) 2005 Ludwig Nussel <ludwig.nussel@web.de>
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This file is part of Quake III Arena source code.
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Quake III Arena source code is free software; you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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Quake III Arena source code is distributed in the hope that it will be
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useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Quake III Arena source code; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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===========================================================================
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*/
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// vm_x86_64.c -- load time compiler and execution environment for x86-64
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#include "vm_local.h"
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <sys/time.h>
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#include <time.h>
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#include <fcntl.h>
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#include <errno.h>
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#include <unistd.h>
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#include <stdarg.h>
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#include <inttypes.h>
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#ifdef __WIN64__
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#include <windows.h>
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#define CROSSCALL __attribute__ ((sysv_abi))//fool the vm we're SYSV ABI
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//#define __USE_MINGW_ANSI_STDIO 1 //very slow - avoid if possible
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#else
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#include <sys/mman.h>
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#include <sys/wait.h>
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#define VM_X86_64_MMAP
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#define CROSSCALL
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#endif
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//#define DEBUG_VM
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#ifdef DEBUG_VM
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#define Dfprintf(fd, args...) fprintf(fd, ##args)
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static FILE* qdasmout;
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#else
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#define Dfprintf(args...)
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#endif
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#define VM_FREEBUFFERS(vm) do {assembler_init(0); VM_Destroy_Compiled(vm);} while(0)
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void assembler_set_output(char* buf);
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size_t assembler_get_code_size(void);
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void assembler_init(int pass);
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void assemble_line(const char* input, size_t len);
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static void VM_Destroy_Compiled(vm_t* self);
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/*
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|=====================|
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^ dataMask ^- programStack rdi
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+- r8
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eax scratch
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rbx/bl opStack offset
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ecx scratch (required for shifts)
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edx scratch (required for divisions)
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rsi scratch
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rdi program frame pointer (programStack)
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r8 pointer data (vm->dataBase)
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r9 opStack base (opStack)
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r10 start of generated code
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*/
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static intptr_t CROSSCALL callAsmCall(intptr_t callProgramStack, int64_t callSyscallNum)
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{
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vm_t *savedVM;
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intptr_t ret = 0x77;
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intptr_t args[11];
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// int iargs[11];
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int i;
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// Dfprintf(stderr, "callAsmCall(%ld, %ld)\n", callProgramStack, callSyscallNum);
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// Com_Printf("-> callAsmCall %s, level %d, num %ld\n", currentVM->name, currentVM->callLevel, callSyscallNum);
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savedVM = currentVM;
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// save the stack to allow recursive VM entry
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currentVM->programStack = callProgramStack - 4;
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args[0] = callSyscallNum;
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// iargs[0] = callSyscallNum;
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for(i = 0; i < 10; ++i)
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{
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// iargs[i+1] = *(int *)((byte *)currentVM->dataBase + callProgramStack + 8 + 4*i);
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args[i+1] = *(int *)((byte *)currentVM->dataBase + callProgramStack + 8 + 4*i);
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}
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ret = currentVM->systemCall(args);
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currentVM = savedVM;
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// Com_Printf("<- callAsmCall %s, level %d, num %ld\n", currentVM->name, currentVM->callLevel, callSyscallNum);
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return ret;
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}
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#ifdef DEBUG_VM
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static char *opnames[256] = {
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"OP_UNDEF",
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"OP_IGNORE",
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"OP_BREAK",
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"OP_ENTER",
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"OP_LEAVE",
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"OP_CALL",
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"OP_PUSH",
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"OP_POP",
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"OP_CONST",
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"OP_LOCAL",
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"OP_JUMP",
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//-------------------
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"OP_EQ",
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"OP_NE",
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"OP_LTI",
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"OP_LEI",
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"OP_GTI",
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"OP_GEI",
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"OP_LTU",
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"OP_LEU",
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"OP_GTU",
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"OP_GEU",
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"OP_EQF",
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"OP_NEF",
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"OP_LTF",
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"OP_LEF",
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"OP_GTF",
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"OP_GEF",
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//-------------------
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"OP_LOAD1",
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"OP_LOAD2",
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"OP_LOAD4",
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"OP_STORE1",
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"OP_STORE2",
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"OP_STORE4",
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"OP_ARG",
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"OP_BLOCK_COPY",
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//-------------------
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"OP_SEX8",
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"OP_SEX16",
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"OP_NEGI",
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"OP_ADD",
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"OP_SUB",
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"OP_DIVI",
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"OP_DIVU",
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"OP_MODI",
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"OP_MODU",
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"OP_MULI",
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"OP_MULU",
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"OP_BAND",
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"OP_BOR",
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"OP_BXOR",
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"OP_BCOM",
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"OP_LSH",
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"OP_RSHI",
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"OP_RSHU",
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"OP_NEGF",
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"OP_ADDF",
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"OP_SUBF",
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"OP_DIVF",
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"OP_MULF",
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"OP_CVIF",
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"OP_CVFI"
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};
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#endif // DEBUG_VM
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static unsigned char op_argsize[256] =
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{
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[OP_ENTER] = 4,
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[OP_LEAVE] = 4,
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[OP_CONST] = 4,
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[OP_LOCAL] = 4,
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[OP_EQ] = 4,
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[OP_NE] = 4,
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[OP_LTI] = 4,
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[OP_LEI] = 4,
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[OP_GTI] = 4,
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[OP_GEI] = 4,
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[OP_LTU] = 4,
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[OP_LEU] = 4,
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[OP_GTU] = 4,
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[OP_GEU] = 4,
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[OP_EQF] = 4,
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[OP_NEF] = 4,
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[OP_LTF] = 4,
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[OP_LEF] = 4,
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[OP_GTF] = 4,
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[OP_GEF] = 4,
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[OP_ARG] = 1,
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[OP_BLOCK_COPY] = 4,
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};
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void emit(const char* fmt, ...)
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{
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va_list ap;
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char line[4096];
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va_start(ap, fmt);
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Q_vsnprintf(line, sizeof(line), fmt, ap);
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va_end(ap);
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assemble_line(line, strlen(line));
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}
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#ifdef DEBUG_VM
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#define RANGECHECK(reg, bytes) \
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emit("movl %%" #reg ", %%ecx"); \
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emit("andl $0x%x, %%ecx", vm->dataMask &~(bytes-1)); \
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emit("cmpl %%" #reg ", %%ecx"); \
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emit("jz rc_ok_i_%08x", instruction); \
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emit("movq $%"PRIu64", %%rax", (intptr_t) memviolation); \
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emit("callq *%%rax"); \
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emit("rc_ok_i_%08x:", instruction)
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#elif 1
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// check is too expensive, so just confine memory access
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#define RANGECHECK(reg, bytes) \
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emit("andl $0x%x, %%" #reg, vm->dataMask &~(bytes-1))
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#else
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#define RANGECHECK(reg, bytes)
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#endif
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#define STACK_PUSH(bytes) \
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emit("addb $0x%x, %%bl", bytes >> 2); \
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#define STACK_POP(bytes) \
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emit("subb $0x%x, %%bl", bytes >> 2); \
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#define CHECK_INSTR_REG(reg) \
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emit("cmpl $%u, %%"#reg, header->instructionCount); \
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emit("jb jmp_ok_i_%08x", instruction); \
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emit("movq $%"PRIu64", %%rax", (intptr_t)jmpviolation); \
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emit("callq *%%rax"); \
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emit("jmp_ok_i_%08x:", instruction)
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#define PREPARE_JMP(reg) \
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CHECK_INSTR_REG(reg); \
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emit("movq $%"PRIu64", %%rsi", (intptr_t)vm->instructionPointers); \
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emit("movl (%%rsi, %%rax, 8), %%eax"); \
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emit("addq %%r10, %%rax")
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#define CHECK_INSTR(nr) \
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do { if(nr < 0 || nr >= header->instructionCount) { \
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VM_FREEBUFFERS(vm); \
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Com_Error( ERR_DROP, \
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"%s: jump target 0x%x out of range at offset %d", __func__, nr, pc ); \
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} } while(0)
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#define JMPIARG() \
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CHECK_INSTR(iarg); \
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emit("movq $%"PRIu64", %%rax", vm->codeBase+vm->instructionPointers[iarg]); \
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emit("jmpq *%%rax")
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#define CONST_OPTIMIZE
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#ifdef CONST_OPTIMIZE
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#define MAYBE_EMIT_CONST() \
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if (got_const) \
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{ \
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got_const = 0; \
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vm->instructionPointers[instruction-1] = assembler_get_code_size(); \
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STACK_PUSH(4); \
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emit("movl $%d, (%%r9, %%rbx, 4)", const_value); \
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}
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#else
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#define MAYBE_EMIT_CONST()
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#endif
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// integer compare and jump
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#define IJ(op) \
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MAYBE_EMIT_CONST(); \
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STACK_POP(8); \
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emit("movl 4(%%r9, %%rbx, 4), %%eax"); \
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emit("cmpl 8(%%r9, %%rbx, 4), %%eax"); \
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emit(op " i_%08x", instruction+1); \
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JMPIARG(); \
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neednilabel = 1
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#ifdef USE_X87
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#define FJ(bits, op) \
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MAYBE_EMIT_CONST(); \
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STACK_POP(8); \
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emit("flds 4(%%r9, %%rbx, 4)");\
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emit("fcomps 8(%%r9, %%rbx, 4)");\
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emit("fnstsw %%ax");\
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emit("testb $" #bits ", %%ah");\
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emit(op " i_%08x", instruction+1);\
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JMPIARG(); \
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neednilabel = 1
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#define XJ(x)
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#else
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#define FJ(x, y)
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#define XJ(op) \
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MAYBE_EMIT_CONST(); \
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STACK_POP(8); \
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emit("movss 4(%%r9, %%rbx, 4), %%xmm0");\
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emit("ucomiss 8(%%r9, %%rbx, 4), %%xmm0");\
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emit("jp i_%08x", instruction+1);\
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emit(op " i_%08x", instruction+1);\
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JMPIARG(); \
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neednilabel = 1
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#endif
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#define SIMPLE(op) \
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MAYBE_EMIT_CONST(); \
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emit("movl (%%r9, %%rbx, 4), %%eax"); \
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STACK_POP(4); \
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emit(op " %%eax, (%%r9, %%rbx, 4)")
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#ifdef USE_X87
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#define FSIMPLE(op) \
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MAYBE_EMIT_CONST(); \
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STACK_POP(4); \
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emit("flds (%%r9, %%rbx, 4)"); \
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emit(op " 4(%%r9, %%rbx, 4)"); \
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emit("fstps (%%r9, %%rbx, 4)")
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#define XSIMPLE(op)
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#else
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#define FSIMPLE(op)
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#define XSIMPLE(op) \
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MAYBE_EMIT_CONST(); \
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STACK_POP(4); \
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emit("movss (%%r9, %%rbx, 4), %%xmm0"); \
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emit(op " 4(%%r9, %%rbx, 4), %%xmm0"); \
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emit("movss %%xmm0, (%%r9, %%rbx, 4)")
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#endif
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#define SHIFT(op) \
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MAYBE_EMIT_CONST(); \
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STACK_POP(4); \
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emit("movl 4(%%r9, %%rbx, 4), %%ecx"); \
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emit("movl (%%r9, %%rbx, 4), %%eax"); \
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emit(op " %%cl, %%eax"); \
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emit("movl %%eax, (%%r9, %%rbx, 4)")
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#ifdef DEBUG_VM
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#define NOTIMPL(x) \
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do { Com_Error(ERR_DROP, "instruction not implemented: %s", opnames[x]); } while(0)
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#else
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#define NOTIMPL(x) \
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do { Com_Printf(S_COLOR_RED "instruction not implemented: %x\n", x); vm->compiled = qfalse; return; } while(0)
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#endif
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static void* getentrypoint(vm_t* vm)
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{
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return vm->codeBase;
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}
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static void CROSSCALL block_copy_vm(unsigned dest, unsigned src, unsigned count)
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{
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unsigned dataMask = currentVM->dataMask;
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if ((dest & dataMask) != dest
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|| (src & dataMask) != src
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|| ((dest+count) & dataMask) != dest + count
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|| ((src+count) & dataMask) != src + count)
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{
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Com_Error(ERR_DROP, "OP_BLOCK_COPY out of range!");
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}
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memcpy(currentVM->dataBase+dest, currentVM->dataBase+src, count);
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}
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static void CROSSCALL eop(void)
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{
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Com_Error(ERR_DROP, "End of program reached without return!");
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exit(1);
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}
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static void CROSSCALL jmpviolation(void)
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{
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Com_Error(ERR_DROP, "Program tried to execute code outside VM");
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exit(1);
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}
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#ifdef DEBUG_VM
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static void CROSSCALL memviolation(void)
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{
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Com_Error(ERR_DROP, "Program tried to access memory outside VM, or unaligned memory access");
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exit(1);
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}
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static void CROSSCALL opstackviolation(void)
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{
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Com_Error(ERR_DROP, "Program corrupted the VM opStack");
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exit(1);
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}
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#endif
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/*
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=================
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VM_Compile
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=================
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*/
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void VM_Compile( vm_t *vm, vmHeader_t *header ) {
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unsigned char op;
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int pc;
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unsigned instruction;
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char* code;
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unsigned iarg = 0;
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unsigned char barg = 0;
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int neednilabel = 0;
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struct timeval tvstart = {0, 0};
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#ifdef DEBUG_VM
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char fn_d[MAX_QPATH]; // disassembled
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#endif
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int pass;
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size_t compiledOfs = 0;
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// const optimization
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unsigned got_const = 0, const_value = 0;
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vm->codeBase = NULL;
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gettimeofday(&tvstart, NULL);
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for (pass = 0; pass < 2; ++pass) {
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if(pass)
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{
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compiledOfs = assembler_get_code_size();
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vm->codeLength = compiledOfs;
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#ifdef VM_X86_64_MMAP
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vm->codeBase = mmap(NULL, compiledOfs, PROT_WRITE, MAP_SHARED|MAP_ANONYMOUS, -1, 0);
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if(vm->codeBase == MAP_FAILED)
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Com_Error(ERR_FATAL, "VM_CompileX86_64: can't mmap memory");
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#elif __WIN64__
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// allocate memory with write permissions under windows.
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vm->codeBase = VirtualAlloc(NULL, compiledOfs, MEM_RESERVE|MEM_COMMIT, PAGE_READWRITE);
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if(!vm->codeBase)
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Com_Error(ERR_FATAL, "VM_CompileX86_64: VirtualAlloc failed");
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#else
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vm->codeBase = malloc(compiledOfs);
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if(!vm_codeBase)
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Com_Error(ERR_FATAL, "VM_CompileX86_64: Failed to allocate memory");
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#endif
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assembler_set_output((char*)vm->codeBase);
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}
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assembler_init(pass);
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#ifdef DEBUG_VM
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strcpy(fn_d,vm->name);
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strcat(fn_d, ".qdasm");
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qdasmout = fopen(fn_d, "w");
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#endif
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// translate all instructions
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pc = 0;
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code = (char *)header + header->codeOffset;
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for ( instruction = 0; instruction < header->instructionCount; ++instruction )
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{
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op = code[ pc ];
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++pc;
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vm->instructionPointers[instruction] = assembler_get_code_size();
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/* store current instruction number in r15 for debugging */
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#if DEBUG_VM0
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emit("nop");
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emit("movq $%d, %%r15", instruction);
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emit("nop");
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#endif
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if(op_argsize[op] == 4)
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{
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iarg = *(int*)(code+pc);
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pc += 4;
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Dfprintf(qdasmout, "%s %8u\n", opnames[op], iarg);
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}
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else if(op_argsize[op] == 1)
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{
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barg = code[pc++];
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Dfprintf(qdasmout, "%s %8hu\n", opnames[op], barg);
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}
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else
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{
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Dfprintf(qdasmout, "%s\n", opnames[op]);
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}
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if(neednilabel)
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{
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emit("i_%08x:", instruction);
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neednilabel = 0;
|
|
}
|
|
|
|
switch ( op )
|
|
{
|
|
case OP_UNDEF:
|
|
NOTIMPL(op);
|
|
break;
|
|
case OP_IGNORE:
|
|
MAYBE_EMIT_CONST();
|
|
emit("nop");
|
|
break;
|
|
case OP_BREAK:
|
|
MAYBE_EMIT_CONST();
|
|
emit("int3");
|
|
break;
|
|
case OP_ENTER:
|
|
MAYBE_EMIT_CONST();
|
|
emit("subl $%d, %%edi", iarg);
|
|
break;
|
|
case OP_LEAVE:
|
|
MAYBE_EMIT_CONST();
|
|
emit("addl $%d, %%edi", iarg); // get rid of stack frame
|
|
emit("ret");
|
|
break;
|
|
case OP_CALL:
|
|
RANGECHECK(edi, 4);
|
|
emit("movl $%d, (%%r8, %%rdi, 1)", instruction+1); // save next instruction
|
|
|
|
if(got_const)
|
|
{
|
|
if ((int) const_value >= 0)
|
|
{
|
|
CHECK_INSTR(const_value);
|
|
emit("movq $%"PRIu64", %%rax", vm->codeBase+vm->instructionPointers[const_value]);
|
|
emit("callq *%%rax");
|
|
got_const = 0;
|
|
break;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get instr from stack
|
|
STACK_POP(4);
|
|
|
|
emit("orl %%eax, %%eax");
|
|
emit("jl callSyscall%d", instruction);
|
|
|
|
PREPARE_JMP(eax);
|
|
emit("callq *%%rax");
|
|
|
|
emit("jmp i_%08x", instruction+1);
|
|
emit("callSyscall%d:", instruction);
|
|
}
|
|
|
|
// emit("fnsave 4(%%r9, %%rsi, 1)");
|
|
emit("push %%rdi");
|
|
emit("push %%r8");
|
|
emit("push %%r9");
|
|
emit("push %%r10");
|
|
emit("movq %%rsp, %%rsi"); // we need to align the stack pointer
|
|
emit("subq $8, %%rsi"); // |
|
|
emit("andq $127, %%rsi"); // |
|
|
emit("subq %%rsi, %%rsp"); // <-+
|
|
emit("push %%rsi");
|
|
if(got_const) {
|
|
got_const = 0;
|
|
emit("movq $%u, %%rsi", -1-const_value); // second argument in rsi
|
|
} else {
|
|
emit("notl %%eax"); // convert to actual number
|
|
// first argument already in rdi
|
|
emit("movq %%rax, %%rsi"); // second argument in rsi
|
|
}
|
|
emit("movq $%"PRIu64", %%rax", (intptr_t) callAsmCall);
|
|
emit("callq *%%rax");
|
|
emit("pop %%rsi");
|
|
emit("addq %%rsi, %%rsp");
|
|
emit("pop %%r10");
|
|
emit("pop %%r9");
|
|
emit("pop %%r8");
|
|
emit("pop %%rdi");
|
|
// emit("frstor 4(%%r9, %%rsi, 1)");
|
|
STACK_PUSH(4);
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)"); // store return value
|
|
neednilabel = 1;
|
|
break;
|
|
case OP_PUSH:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_PUSH(4);
|
|
break;
|
|
case OP_POP:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
break;
|
|
case OP_CONST:
|
|
MAYBE_EMIT_CONST();
|
|
#ifdef CONST_OPTIMIZE
|
|
got_const = 1;
|
|
const_value = iarg;
|
|
#else
|
|
STACK_PUSH(4);
|
|
emit("movl $%d, (%%r9, %%rbx, 4)", iarg);
|
|
#endif
|
|
break;
|
|
case OP_LOCAL:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl %%edi, %%esi");
|
|
emit("addl $%d,%%esi", iarg);
|
|
STACK_PUSH(4);
|
|
emit("movl %%esi, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_JUMP:
|
|
if(got_const) {
|
|
iarg = const_value;
|
|
got_const = 0;
|
|
JMPIARG();
|
|
} else {
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get instr from stack
|
|
STACK_POP(4);
|
|
|
|
PREPARE_JMP(eax);
|
|
emit("jmp *%%rax");
|
|
}
|
|
break;
|
|
case OP_EQ:
|
|
IJ("jne");
|
|
break;
|
|
case OP_NE:
|
|
IJ("je");
|
|
break;
|
|
case OP_LTI:
|
|
IJ("jnl");
|
|
break;
|
|
case OP_LEI:
|
|
IJ("jnle");
|
|
break;
|
|
case OP_GTI:
|
|
IJ("jng");
|
|
break;
|
|
case OP_GEI:
|
|
IJ("jnge");
|
|
break;
|
|
case OP_LTU:
|
|
IJ("jnb");
|
|
break;
|
|
case OP_LEU:
|
|
IJ("jnbe");
|
|
break;
|
|
case OP_GTU:
|
|
IJ("jna");
|
|
break;
|
|
case OP_GEU:
|
|
IJ("jnae");
|
|
break;
|
|
case OP_EQF:
|
|
FJ(0x40, "jz");
|
|
XJ("jnz");
|
|
break;
|
|
case OP_NEF:
|
|
FJ(0x40, "jnz");
|
|
#ifndef USE_X87
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(8);
|
|
emit("movss 4(%%r9, %%rbx, 4), %%xmm0");
|
|
emit("ucomiss 8(%%r9, %%rbx, 4), %%xmm0");
|
|
emit("jp dojump_i_%08x", instruction);
|
|
emit("jz i_%08x", instruction+1);
|
|
emit("dojump_i_%08x:", instruction);
|
|
JMPIARG();
|
|
neednilabel = 1;
|
|
#endif
|
|
break;
|
|
case OP_LTF:
|
|
FJ(0x01, "jz");
|
|
XJ("jnc");
|
|
break;
|
|
case OP_LEF:
|
|
FJ(0x41, "jz");
|
|
XJ("ja");
|
|
break;
|
|
case OP_GTF:
|
|
FJ(0x41, "jnz");
|
|
XJ("jbe");
|
|
break;
|
|
case OP_GEF:
|
|
FJ(0x01, "jnz");
|
|
XJ("jb");
|
|
break;
|
|
case OP_LOAD1:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
RANGECHECK(eax, 1);
|
|
emit("movb (%%r8, %%rax, 1), %%al"); // deref into eax
|
|
emit("andq $255, %%rax");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)"); // store on stack
|
|
break;
|
|
case OP_LOAD2:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
RANGECHECK(eax, 2);
|
|
emit("movw (%%r8, %%rax, 1), %%ax"); // deref into eax
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)"); // store on stack
|
|
break;
|
|
case OP_LOAD4:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
RANGECHECK(eax, 4); // not a pointer!?
|
|
emit("movl (%%r8, %%rax, 1), %%eax"); // deref into eax
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)"); // store on stack
|
|
break;
|
|
case OP_STORE1:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
STACK_POP(8);
|
|
emit("andq $255, %%rax");
|
|
emit("movl 4(%%r9, %%rbx, 4), %%esi"); // get pointer from stack
|
|
RANGECHECK(esi, 1);
|
|
emit("movb %%al, (%%r8, %%rsi, 1)"); // store in memory
|
|
break;
|
|
case OP_STORE2:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
STACK_POP(8);
|
|
emit("movl 4(%%r9, %%rbx, 4), %%esi"); // get pointer from stack
|
|
RANGECHECK(esi, 2);
|
|
emit("movw %%ax, (%%r8, %%rsi, 1)"); // store in memory
|
|
break;
|
|
case OP_STORE4:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
STACK_POP(8);
|
|
emit("movl 4(%%r9, %%rbx, 4), %%esi"); // get pointer from stack
|
|
RANGECHECK(esi, 4);
|
|
emit("movl %%eax, (%%r8, %%rsi, 1)"); // store in memory
|
|
break;
|
|
case OP_ARG:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movl (%%r9, %%rbx, 4), %%eax"); // get value from stack
|
|
STACK_POP(4);
|
|
emit("movl $0x%hx, %%esi", barg);
|
|
emit("addl %%edi, %%esi");
|
|
RANGECHECK(esi, 4);
|
|
emit("movl %%eax, (%%r8,%%rsi, 1)"); // store in args space
|
|
break;
|
|
case OP_BLOCK_COPY:
|
|
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(8);
|
|
emit("push %%rdi");
|
|
emit("push %%r8");
|
|
emit("push %%r9");
|
|
emit("push %%r10");
|
|
emit("movq %%rsp, %%rsi"); // we need to align the stack pointer
|
|
emit("subq $8, %%rsi"); // |
|
|
emit("andq $127, %%rsi"); // |
|
|
emit("subq %%rsi, %%rsp"); // <-+
|
|
emit("push %%rsi");
|
|
emit("movl 4(%%r9, %%rbx, 4), %%edi"); // 1st argument dest
|
|
emit("movl 8(%%r9, %%rbx, 4), %%rsi"); // 2nd argument src
|
|
emit("movl $%d, %%edx", iarg); // 3rd argument count
|
|
emit("movq $%"PRIu64", %%rax", (intptr_t) block_copy_vm);
|
|
emit("callq *%%rax");
|
|
emit("pop %%rsi");
|
|
emit("addq %%rsi, %%rsp");
|
|
emit("pop %%r10");
|
|
emit("pop %%r9");
|
|
emit("pop %%r8");
|
|
emit("pop %%rdi");
|
|
|
|
break;
|
|
case OP_SEX8:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movw (%%r9, %%rbx, 4), %%ax");
|
|
emit("andq $255, %%rax");
|
|
emit("cbw");
|
|
emit("cwde");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_SEX16:
|
|
MAYBE_EMIT_CONST();
|
|
emit("movw (%%r9, %%rbx, 4), %%ax");
|
|
emit("cwde");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_NEGI:
|
|
MAYBE_EMIT_CONST();
|
|
emit("negl (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_ADD:
|
|
SIMPLE("addl");
|
|
break;
|
|
case OP_SUB:
|
|
SIMPLE("subl");
|
|
break;
|
|
case OP_DIVI:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("cdq");
|
|
emit("idivl 4(%%r9, %%rbx, 4)");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_DIVU:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("xorq %%rdx, %%rdx");
|
|
emit("divl 4(%%r9, %%rbx, 4)");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_MODI:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("xorl %%edx, %%edx");
|
|
emit("cdq");
|
|
emit("idivl 4(%%r9, %%rbx, 4)");
|
|
emit("movl %%edx, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_MODU:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("xorl %%edx, %%edx");
|
|
emit("divl 4(%%r9, %%rbx, 4)");
|
|
emit("movl %%edx, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_MULI:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("imull 4(%%r9, %%rbx, 4)");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_MULU:
|
|
MAYBE_EMIT_CONST();
|
|
STACK_POP(4);
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("mull 4(%%r9, %%rbx, 4)");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_BAND:
|
|
SIMPLE("andl");
|
|
break;
|
|
case OP_BOR:
|
|
SIMPLE("orl");
|
|
break;
|
|
case OP_BXOR:
|
|
SIMPLE("xorl");
|
|
break;
|
|
case OP_BCOM:
|
|
MAYBE_EMIT_CONST();
|
|
emit("notl (%%r9, %%rbx, 4)");
|
|
break;
|
|
case OP_LSH:
|
|
SHIFT("shl");
|
|
break;
|
|
case OP_RSHI:
|
|
SHIFT("sarl");
|
|
break;
|
|
case OP_RSHU:
|
|
SHIFT("shrl");
|
|
break;
|
|
case OP_NEGF:
|
|
MAYBE_EMIT_CONST();
|
|
#ifdef USE_X87
|
|
emit("flds (%%r9, %%rbx, 4)");
|
|
emit("fchs");
|
|
emit("fstps (%%r9, %%rbx, 4)");
|
|
#else
|
|
emit("movl $0x80000000, %%eax");
|
|
emit("xorl %%eax, (%%r9, %%rbx, 4)");
|
|
#endif
|
|
break;
|
|
case OP_ADDF:
|
|
FSIMPLE("fadds");
|
|
XSIMPLE("addss");
|
|
break;
|
|
case OP_SUBF:
|
|
FSIMPLE("fsubs");
|
|
XSIMPLE("subss");
|
|
break;
|
|
case OP_DIVF:
|
|
FSIMPLE("fdivs");
|
|
XSIMPLE("divss");
|
|
break;
|
|
case OP_MULF:
|
|
FSIMPLE("fmuls");
|
|
XSIMPLE("mulss");
|
|
break;
|
|
case OP_CVIF:
|
|
MAYBE_EMIT_CONST();
|
|
#ifdef USE_X87
|
|
emit("filds (%%r9, %%rbx, 4)");
|
|
emit("fstps (%%r9, %%rbx, 4)");
|
|
#else
|
|
emit("movl (%%r9, %%rbx, 4), %%eax");
|
|
emit("cvtsi2ss %%eax, %%xmm0");
|
|
emit("movss %%xmm0, (%%r9, %%rbx, 4)");
|
|
#endif
|
|
break;
|
|
case OP_CVFI:
|
|
MAYBE_EMIT_CONST();
|
|
#ifdef USE_X87
|
|
emit("flds (%%r9, %%rbx, 4)");
|
|
emit("fnstcw 4(%%r9, %%rbx, 4)");
|
|
emit("movw $0x0F7F, 8(%%r9, %%rbx, 4)"); // round toward zero
|
|
emit("fldcw 8(%%r9, %%rbx, 4)");
|
|
emit("fistpl (%%r9, %%rbx, 4)");
|
|
emit("fldcw 4(%%r9, %%rbx, 4)");
|
|
#else
|
|
emit("movss (%%r9, %%rbx, 4), %%xmm0");
|
|
emit("cvttss2si %%xmm0, %%eax");
|
|
emit("movl %%eax, (%%r9, %%rbx, 4)");
|
|
#endif
|
|
break;
|
|
default:
|
|
NOTIMPL(op);
|
|
break;
|
|
}
|
|
|
|
|
|
}
|
|
|
|
if(got_const)
|
|
{
|
|
VM_FREEBUFFERS(vm);
|
|
Com_Error(ERR_DROP, "leftover const");
|
|
}
|
|
|
|
emit("movq $%"PRIu64", %%rax", (intptr_t) eop);
|
|
emit("callq *%%rax");
|
|
|
|
} // pass loop
|
|
|
|
assembler_init(0);
|
|
|
|
#ifdef VM_X86_64_MMAP
|
|
if(mprotect(vm->codeBase, compiledOfs, PROT_READ|PROT_EXEC))
|
|
Com_Error(ERR_FATAL, "VM_CompileX86_64: mprotect failed");
|
|
#elif __WIN64__
|
|
{
|
|
DWORD oldProtect = 0;
|
|
|
|
// remove write permissions; give exec permision
|
|
if(!VirtualProtect(vm->codeBase, compiledOfs, PAGE_EXECUTE_READ, &oldProtect))
|
|
Com_Error(ERR_FATAL, "VM_CompileX86_64: VirtualProtect failed");
|
|
}
|
|
#endif
|
|
|
|
vm->destroy = VM_Destroy_Compiled;
|
|
|
|
#ifdef DEBUG_VM
|
|
fflush(qdasmout);
|
|
fclose(qdasmout);
|
|
|
|
#if 0
|
|
strcpy(fn_d,vm->name);
|
|
strcat(fn_d, ".bin");
|
|
qdasmout = fopen(fn_d, "w");
|
|
fwrite(vm->codeBase, compiledOfs, 1, qdasmout);
|
|
fflush(qdasmout);
|
|
fclose(qdasmout);
|
|
#endif
|
|
#endif
|
|
|
|
#ifndef __WIN64__ //timersub and gettimeofday
|
|
if(vm->compiled)
|
|
{
|
|
struct timeval tvdone = {0, 0};
|
|
struct timeval dur = {0, 0};
|
|
Com_Printf( "VM file %s compiled to %i bytes of code (%p - %p)\n", vm->name, vm->codeLength, vm->codeBase, vm->codeBase+vm->codeLength );
|
|
|
|
gettimeofday(&tvdone, NULL);
|
|
timersub(&tvdone, &tvstart, &dur);
|
|
Com_Printf( "compilation took %"PRIu64".%06"PRIu64" seconds\n", dur.tv_sec, dur.tv_usec );
|
|
}
|
|
#endif
|
|
}
|
|
|
|
|
|
void VM_Destroy_Compiled(vm_t* self)
|
|
{
|
|
if(self && self->codeBase)
|
|
{
|
|
#ifdef VM_X86_64_MMAP
|
|
munmap(self->codeBase, self->codeLength);
|
|
#elif __WIN64__
|
|
VirtualFree(self->codeBase, 0, MEM_RELEASE);
|
|
#else
|
|
free(self->codeBase);
|
|
#endif
|
|
}
|
|
}
|
|
|
|
/*
|
|
==============
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VM_CallCompiled
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This function is called directly by the generated code
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==============
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*/
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#ifdef DEBUG_VM
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static char* memData;
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#endif
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int VM_CallCompiled(vm_t *vm, int *args)
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{
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int stack[OPSTACK_SIZE + 3];
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int programCounter;
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int programStack;
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int stackOnEntry;
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long opStackRet;
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byte *image;
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void *entryPoint;
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int *opStack;
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currentVM = vm;
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// Com_Printf("entering %s level %d, call %d, arg1 = 0x%x\n", vm->name, vm->callLevel, args[0], args[1]);
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// interpret the code
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vm->currentlyInterpreting = qtrue;
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// callMask = vm->dataMask;
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// we might be called recursively, so this might not be the very top
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programStack = vm->programStack;
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stackOnEntry = programStack;
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// set up the stack frame
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image = vm->dataBase;
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#ifdef DEBUG_VM
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memData = (char*)image;
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#endif
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programCounter = 0;
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programStack -= 48;
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*(int *)&image[ programStack + 44] = args[9];
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*(int *)&image[ programStack + 40] = args[8];
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*(int *)&image[ programStack + 36] = args[7];
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*(int *)&image[ programStack + 32] = args[6];
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*(int *)&image[ programStack + 28] = args[5];
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*(int *)&image[ programStack + 24] = args[4];
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*(int *)&image[ programStack + 20] = args[3];
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*(int *)&image[ programStack + 16] = args[2];
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*(int *)&image[ programStack + 12] = args[1];
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*(int *)&image[ programStack + 8 ] = args[0];
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*(int *)&image[ programStack + 4 ] = 0x77777777; // return stack
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*(int *)&image[ programStack ] = -1; // will terminate the loop on return
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// off we go into generated code...
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entryPoint = getentrypoint(vm);
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opStack = PADP(stack, 4);
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*opStack = 0xDEADBEEF;
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opStackRet = 0;
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__asm__ __volatile__ (
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" movq %4,%%r8 \r\n" \
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" movq %3,%%r9 \r\n" \
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" movq %2,%%r10 \r\n" \
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" push %%r15 \r\n" \
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" push %%r14 \r\n" \
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" push %%r13 \r\n" \
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" push %%r12 \r\n" \
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" subq $24, %%rsp # fix alignment as call pushes one value \r\n" \
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" callq *%%r10 \r\n" \
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" addq $24, %%rsp \r\n" \
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" pop %%r12 \r\n" \
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" pop %%r13 \r\n" \
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" pop %%r14 \r\n" \
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" pop %%r15 \r\n"
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: "+D" (programStack), "+b" (opStackRet)
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: "g" (entryPoint), "g" (opStack), "g" (vm->dataBase), "g" (programStack)
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: "%rsi", "%rax", "%rcx", "%rdx", "%r8", "%r9", "%r10", "%r11", "%xmm0"
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);
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if(opStackRet != 1 || *opStack != 0xDEADBEEF)
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Com_Error(ERR_DROP, "opStack corrupted in compiled code (offset %ld)", opStackRet);
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if ( programStack != stackOnEntry - 48 ) {
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Com_Error( ERR_DROP, "programStack corrupted in compiled code" );
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}
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// Com_Printf("exiting %s level %d\n", vm->name, vm->callLevel);
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vm->programStack = stackOnEntry;
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return stack[1];
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}
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