зеркало из https://github.com/github/ruby.git
751 строка
18 KiB
C
751 строка
18 KiB
C
/**********************************************************************
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yarvcore.h -
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$Author$
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$Date$
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created at: 04/01/01 19:41:38 JST
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Copyright (C) 2004-2006 Koichi Sasada
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**********************************************************************/
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#ifndef _YARVCORE_H_INCLUDED_
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#define _YARVCORE_H_INCLUDED_
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#define RUBY_VM_THREAD_MODEL 2
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#include <setjmp.h>
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#include "ruby/ruby.h"
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#include "ruby/signal.h"
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#include "ruby/st.h"
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#include "ruby/node.h"
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#include "debug.h"
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#include "vm_opts.h"
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#if defined(_WIN32)
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#include "thread_win32.h"
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#elif defined(HAVE_PTHREAD_H)
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#include "thread_pthread.h"
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#else
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#error "unsupported thread type"
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#endif
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#include <signal.h>
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#ifndef NSIG
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# ifdef DJGPP
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# define NSIG SIGMAX
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# else
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# define NSIG (_SIGMAX + 1) /* For QNX */
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# endif
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#endif
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#define RUBY_NSIG NSIG
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/*****************/
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/* configuration */
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/*****************/
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/* gcc ver. check */
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#if defined(__GNUC__) && __GNUC__ >= 2
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#if OPT_TOKEN_THREADED_CODE
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#if OPT_DIRECT_THREADED_CODE
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#undef OPT_DIRECT_THREADED_CODE
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#endif
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#endif
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#else /* defined(__GNUC__) && __GNUC__ >= 2 */
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/* disable threaded code options */
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#if OPT_DIRECT_THREADED_CODE
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#undef OPT_DIRECT_THREADED_CODE
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#endif
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#if OPT_TOKEN_THREADED_CODE
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#undef OPT_TOKEN_THREADED_CODE
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#endif
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#endif
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/* call threaded code */
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#if OPT_CALL_THREADED_CODE
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#if OPT_DIRECT_THREADED_CODE
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#undef OPT_DIRECT_THREADED_CODE
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#endif /* OPT_DIRECT_THREADED_CODE */
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#if OPT_STACK_CACHING
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#undef OPT_STACK_CACHING
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#endif /* OPT_STACK_CACHING */
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#define YARV_AOT_COMPILED 1
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#endif /* OPT_CALL_THREADED_CODE */
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/* likely */
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#if __GNUC__ >= 3
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#define LIKELY(x) (__builtin_expect((x), 1))
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#define UNLIKELY(x) (__builtin_expect((x), 0))
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#else /* __GNUC__ >= 3 */
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#define LIKELY(x) (x)
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#define UNLIKELY(x) (x)
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#endif /* __GNUC__ >= 3 */
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#define YARVDEBUG 0
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#define CPDEBUG 0
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#define VMDEBUG 0
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#define GCDEBUG 0
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/* classes and modules */
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extern VALUE symIFUNC;
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extern VALUE symCFUNC;
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/* special id */
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extern ID idPLUS;
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extern ID idMINUS;
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extern ID idMULT;
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extern ID idDIV;
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extern ID idMOD;
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extern ID idLT;
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extern ID idLTLT;
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extern ID idLE;
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extern ID idGT;
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extern ID idGE;
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extern ID idEq;
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extern ID idEqq;
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extern ID idBackquote;
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extern ID idEqTilde;
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extern ID idThrowState;
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extern ID idAREF;
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extern ID idASET;
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extern ID idIntern;
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extern ID idMethodMissing;
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extern ID idLength;
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extern ID idGets;
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extern ID idSucc;
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extern ID idEach;
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extern ID idLambda;
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extern ID idRangeEachLT;
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extern ID idRangeEachLE;
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extern ID idArrayEach;
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extern ID idTimes;
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extern ID idEnd;
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extern ID idBitblt;
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extern ID idAnswer;
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extern ID idSvarPlaceholder;
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extern ID idSend;
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extern ID id__send__;
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extern ID id__send;
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extern ID idFuncall;
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extern ID id__send_bang;
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struct iseq_insn_info_entry {
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unsigned short position;
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unsigned short line_no;
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};
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#define ISEQ_TYPE_TOP INT2FIX(1)
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#define ISEQ_TYPE_METHOD INT2FIX(2)
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#define ISEQ_TYPE_BLOCK INT2FIX(3)
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#define ISEQ_TYPE_CLASS INT2FIX(4)
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#define ISEQ_TYPE_RESCUE INT2FIX(5)
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#define ISEQ_TYPE_ENSURE INT2FIX(6)
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#define ISEQ_TYPE_EVAL INT2FIX(7)
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#define ISEQ_TYPE_DEFINED_GUARD INT2FIX(8)
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#define CATCH_TYPE_RESCUE INT2FIX(1)
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#define CATCH_TYPE_ENSURE INT2FIX(2)
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#define CATCH_TYPE_RETRY INT2FIX(3)
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#define CATCH_TYPE_BREAK INT2FIX(4)
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#define CATCH_TYPE_REDO INT2FIX(5)
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#define CATCH_TYPE_NEXT INT2FIX(6)
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struct iseq_catch_table_entry {
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VALUE type;
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VALUE iseq;
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unsigned long start;
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unsigned long end;
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unsigned long cont;
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unsigned long sp;
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};
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#define INITIAL_ISEQ_COMPILE_DATA_STORAGE_BUFF_SIZE (512)
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struct iseq_compile_data_storage {
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struct iseq_compile_data_storage *next;
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unsigned long pos;
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unsigned long size;
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char *buff;
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};
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struct iseq_compile_data_ensure_node_stack;
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typedef struct rb_compile_option_struct {
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int inline_const_cache;
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int peephole_optimization;
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int tailcall_optimization;
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int specialized_instruction;
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int operands_unification;
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int instructions_unification;
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int stack_caching;
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int trace_instruction;
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} rb_compile_option_t;
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struct iseq_compile_data {
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/* GC is needed */
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VALUE err_info;
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VALUE mark_ary;
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VALUE catch_table_ary; /* Array */
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/* GC is not needed */
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struct iseq_label_data *start_label;
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struct iseq_label_data *end_label;
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struct iseq_label_data *redo_label;
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VALUE current_block;
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VALUE loopval_popped; /* used by NODE_BREAK */
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VALUE ensure_node;
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VALUE for_iseq;
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struct iseq_compile_data_ensure_node_stack *ensure_node_stack;
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int cached_const;
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struct iseq_compile_data_storage *storage_head;
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struct iseq_compile_data_storage *storage_current;
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int last_line;
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const rb_compile_option_t *option;
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};
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#if 1
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#define GetCoreDataFromValue(obj, type, ptr) do { \
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ptr = (type*)DATA_PTR(obj); \
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} while (0)
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#else
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#define GetCoreDataFromValue(obj, type, ptr) Data_Get_Struct(obj, type, ptr)
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#endif
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#define GetISeqPtr(obj, ptr) \
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GetCoreDataFromValue(obj, rb_iseq_t, ptr)
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typedef struct rb_iseq_profile_struct {
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VALUE count;
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VALUE time_self;
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VALUE time_cumu; /* cumulative */
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} rb_iseq_profile_t;
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struct rb_iseq_struct;
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struct rb_iseq_struct {
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/***************/
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/* static data */
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/***************/
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VALUE type; /* instruction sequence type */
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VALUE name; /* String: iseq name */
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VALUE filename; /* file information where this sequence from */
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VALUE *iseq; /* iseq (insn number and openrads) */
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VALUE *iseq_encoded; /* encoded iseq */
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unsigned long iseq_size;
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VALUE mark_ary; /* Array: includes operands which should be GC marked */
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/* insn info, must be freed */
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struct iseq_insn_info_entry *insn_info_table;
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unsigned long insn_info_size;
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ID *local_table; /* must free */
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int local_table_size;
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/* method, class frame: sizeof(vars) + 1, block frame: sizeof(vars) */
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int local_size;
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/**
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* argument information
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*
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* def m(a1, a2, ..., aM, # mandatory
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* b1=(...), b2=(...), ..., bN=(...), # optinal
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* *c, # rest
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* d1, d2, ..., dO, # post
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* &e) # block
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* =>
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*
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* argc = M
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* arg_rest = M+N+1 // or -1 if no rest arg
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* arg_opts = N
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* arg_opts_tbl = [ (N entries) ]
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* arg_post_len = O // 0 if no post arguments
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* arg_post_start = M+N+2
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* arg_block = M+N + 1 + O + 1 // -1 if no block arg
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* arg_simple = 0 if not simple arguments.
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* = 1 if no opt, rest, post, block.
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* = 2 if ambiguos block parameter ({|a|}).
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* arg_size = argument size.
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*/
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int argc;
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int arg_simple;
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int arg_rest;
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int arg_block;
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int arg_opts;
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int arg_post_len;
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int arg_post_start;
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int arg_size;
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VALUE *arg_opt_table;
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int stack_max; /* for stack overflow check */
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/* catch table */
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struct iseq_catch_table_entry *catch_table;
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int catch_table_size;
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/* for child iseq */
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struct rb_iseq_struct *parent_iseq;
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struct rb_iseq_struct *local_iseq;
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/****************/
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/* dynamic data */
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/****************/
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VALUE self;
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/* block inlining */
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NODE *node;
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void *special_block_builder;
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void *cached_special_block_builder;
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VALUE cached_special_block;
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/* klass/module nest information stack (cref) */
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NODE *cref_stack;
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VALUE klass;
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/* misc */
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ID defined_method_id; /* for define_method */
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rb_iseq_profile_t profile;
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/* used at compile time */
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struct iseq_compile_data *compile_data;
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};
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typedef struct rb_iseq_struct rb_iseq_t;
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#define RUBY_EVENT_NONE 0x00
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#define RUBY_EVENT_LINE 0x01
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#define RUBY_EVENT_CLASS 0x02
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#define RUBY_EVENT_END 0x04
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#define RUBY_EVENT_CALL 0x08
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#define RUBY_EVENT_RETURN 0x10
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#define RUBY_EVENT_C_CALL 0x20
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#define RUBY_EVENT_C_RETURN 0x40
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#define RUBY_EVENT_RAISE 0x80
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#define RUBY_EVENT_ALL 0xff
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#define RUBY_EVENT_VM 0x100
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#define RUBY_EVENT_SWITCH 0x200
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typedef unsigned int rb_event_flag_t;
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typedef void (*rb_event_hook_func_t)(rb_event_flag_t, VALUE data, VALUE, ID, VALUE klass);
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typedef struct rb_event_hook_struct {
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rb_event_flag_t flag;
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rb_event_hook_func_t func;
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VALUE data;
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struct rb_event_hook_struct *next;
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} rb_event_hook_t;
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#define GetVMPtr(obj, ptr) \
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GetCoreDataFromValue(obj, rb_vm_t, ptr)
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typedef struct rb_vm_struct {
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VALUE self;
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rb_thread_lock_t global_interpreter_lock;
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struct rb_thread_struct *main_thread;
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struct rb_thread_struct *running_thread;
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st_table *living_threads;
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VALUE thgroup_default;
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VALUE last_status; /* $? */
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int thread_abort_on_exception;
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unsigned long trace_flag;
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/* object management */
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VALUE mark_object_ary;
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/* load */
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VALUE loaded_features;
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struct st_table *loading_table;
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/* signal */
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rb_atomic_t signal_buff[RUBY_NSIG];
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rb_atomic_t bufferd_signal_size;
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/* hook */
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rb_event_hook_t *event_hooks;
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} rb_vm_t;
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typedef struct {
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VALUE *pc; /* cfp[0] */
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VALUE *sp; /* cfp[1] */
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VALUE *bp; /* cfp[2] */
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rb_iseq_t *iseq; /* cfp[3] */
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VALUE flag; /* cfp[4] */
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VALUE self; /* cfp[5] / block[0] */
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VALUE *lfp; /* cfp[6] / block[1] */
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VALUE *dfp; /* cfp[7] / block[2] */
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rb_iseq_t *block_iseq; /* cfp[8] / block[3] */
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VALUE proc; /* cfp[9] / block[4] */
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ID method_id; /* cfp[10] saved in special case */
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VALUE method_klass; /* cfp[11] saved in special case */
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VALUE prof_time_self; /* cfp[12] */
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VALUE prof_time_chld; /* cfp[13] */
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} rb_control_frame_t;
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typedef struct {
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VALUE self; /* share with method frame if it's only block */
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VALUE *lfp; /* share with method frame if it's only block */
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VALUE *dfp; /* share with method frame if it's only block */
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rb_iseq_t *iseq;
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VALUE proc;
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} rb_block_t;
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#define GetThreadPtr(obj, ptr) \
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GetCoreDataFromValue(obj, rb_thread_t, ptr)
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enum rb_thread_status {
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THREAD_TO_KILL,
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THREAD_RUNNABLE,
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THREAD_STOPPED,
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THREAD_KILLED,
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};
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typedef jmp_buf rb_jmpbuf_t;
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struct rb_vm_tag {
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rb_jmpbuf_t buf;
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VALUE tag;
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VALUE retval;
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struct rb_vm_tag *prev;
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};
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struct rb_vm_trap_tag {
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struct rb_vm_trap_tag *prev;
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};
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#define RUBY_VM_VALUE_CACHE_SIZE 0x1000
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#define USE_VALUE_CACHE 0
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struct rb_thread_struct
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{
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VALUE self;
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rb_vm_t *vm;
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/* execution information */
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VALUE *stack; /* must free, must mark */
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unsigned long stack_size;
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rb_control_frame_t *cfp;
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int safe_level;
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int raised_flag;
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/* passing state */
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int state;
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/* for rb_iterate */
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rb_block_t *passed_block;
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/* for load(true) */
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VALUE top_self;
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VALUE top_wrapper;
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/* eval env */
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rb_block_t *base_block;
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VALUE *local_lfp;
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VALUE local_svar;
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/* thread control */
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rb_thread_id_t thread_id;
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enum rb_thread_status status;
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int priority;
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native_thread_data_t native_thread_data;
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VALUE thgroup;
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VALUE value;
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VALUE errinfo;
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VALUE thrown_errinfo;
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int exec_signal;
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int interrupt_flag;
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rb_unblock_function_t *unblock_function;
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rb_thread_lock_t interrupt_lock;
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struct rb_vm_tag *tag;
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struct rb_vm_trap_tag *trap_tag;
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int parse_in_eval;
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/* storage */
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st_table *local_storage;
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#if USE_VALUE_CACHE
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VALUE value_cache[RUBY_VM_VALUE_CACHE_SIZE + 1];
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VALUE *value_cache_ptr;
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#endif
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struct rb_thread_struct *join_list_next;
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struct rb_thread_struct *join_list_head;
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VALUE first_proc;
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VALUE first_args;
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VALUE (*first_func)(ANYARGS);
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void *first_func_arg;
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/* for GC */
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VALUE *machine_stack_start;
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VALUE *machine_stack_end;
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#ifdef __ia64
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VALUE *machine_register_stack_start;
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VALUE *machine_register_stack_end;
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#endif
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jmp_buf machine_regs;
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int mark_stack_len;
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/* statistics data for profiler */
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VALUE stat_insn_usage;
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/* tracer */
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rb_event_hook_t *event_hooks;
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rb_event_flag_t event_flags;
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int tracing;
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/* fiber */
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VALUE fiber;
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VALUE root_fiber;
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rb_jmpbuf_t root_jmpbuf;
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/* misc */
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int method_missing_reason;
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int abort_on_exception;
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};
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/** node -> yarv instruction sequence object */
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VALUE rb_iseq_compile(VALUE self, NODE *node);
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VALUE rb_iseq_new(NODE*, VALUE, VALUE, VALUE, VALUE);
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VALUE rb_iseq_new_with_bopt(NODE*, VALUE, VALUE, VALUE, VALUE, VALUE);
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VALUE rb_iseq_new_with_opt(NODE*, VALUE, VALUE, VALUE, VALUE, const rb_compile_option_t*);
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/** disassemble instruction sequence */
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VALUE ruby_iseq_disasm(VALUE self);
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VALUE ruby_iseq_disasm_insn(VALUE str, VALUE *iseqval, int pos,
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rb_iseq_t *iseq, VALUE child);
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const char *ruby_node_name(int node);
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/* each thread has this size stack : 2MB */
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#define RUBY_VM_THREAD_STACK_SIZE (128 * 1024)
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/* from ruby 1.9 variable.c */
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struct global_entry {
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struct global_variable *var;
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ID id;
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};
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#define GetProcPtr(obj, ptr) \
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GetCoreDataFromValue(obj, rb_proc_t, ptr)
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typedef struct {
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rb_block_t block;
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VALUE envval; /* for GC mark */
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VALUE blockprocval;
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int safe_level;
|
|
int is_lambda;
|
|
|
|
NODE *special_cref_stack;
|
|
} rb_proc_t;
|
|
|
|
#define GetEnvPtr(obj, ptr) \
|
|
GetCoreDataFromValue(obj, rb_env_t, ptr)
|
|
|
|
typedef struct {
|
|
VALUE *env;
|
|
int env_size;
|
|
int local_size;
|
|
VALUE prev_envval; /* for GC mark */
|
|
rb_block_t block;
|
|
} rb_env_t;
|
|
|
|
#define GetBindingPtr(obj, ptr) \
|
|
GetCoreDataFromValue(obj, rb_binding_t, ptr)
|
|
|
|
typedef struct {
|
|
VALUE env;
|
|
NODE *cref_stack;
|
|
} rb_binding_t;
|
|
|
|
|
|
/* used by compile time and send insn */
|
|
#define VM_CALL_ARGS_SPLAT_BIT (0x01 << 1)
|
|
#define VM_CALL_ARGS_BLOCKARG_BIT (0x01 << 2)
|
|
#define VM_CALL_FCALL_BIT (0x01 << 3)
|
|
#define VM_CALL_VCALL_BIT (0x01 << 4)
|
|
#define VM_CALL_TAILCALL_BIT (0x01 << 5)
|
|
#define VM_CALL_TAILRECURSION_BIT (0x01 << 6)
|
|
#define VM_CALL_SUPER_BIT (0x01 << 7)
|
|
#define VM_CALL_SEND_BIT (0x01 << 8)
|
|
|
|
/* inline (method|const) cache */
|
|
#define NEW_INLINE_CACHE_ENTRY() NEW_WHILE(Qundef, 0, 0)
|
|
#define ic_klass u1.value
|
|
#define ic_method u2.node
|
|
#define ic_value u2.value
|
|
#define ic_vmstat u3.cnt
|
|
typedef NODE *IC;
|
|
|
|
void rb_vm_change_state(void);
|
|
|
|
typedef VALUE CDHASH;
|
|
|
|
#ifndef FUNC_FASTCALL
|
|
#define FUNC_FASTCALL(x) x
|
|
#endif
|
|
|
|
typedef rb_control_frame_t *
|
|
(FUNC_FASTCALL(*rb_insn_func_t))(rb_thread_t *, rb_control_frame_t *);
|
|
|
|
#define GC_GUARDED_PTR(p) ((VALUE)((VALUE)(p) | 0x01))
|
|
#define GC_GUARDED_PTR_REF(p) ((void *)(((VALUE)p) & ~0x03))
|
|
#define GC_GUARDED_PTR_P(p) (((VALUE)p) & 0x01)
|
|
|
|
#define RUBY_VM_METHOD_NODE NODE_METHOD
|
|
|
|
#define RUBY_VM_PREVIOUS_CONTROL_FRAME(cfp) (cfp+1)
|
|
#define RUBY_VM_NEXT_CONTROL_FRAME(cfp) (cfp-1)
|
|
#define RUBY_VM_END_CONTROL_FRAME(th) \
|
|
((rb_control_frame_t *)((th)->stack + (th)->stack_size))
|
|
#define RUBY_VM_VALID_CONTROL_FRAME_P(cfp, ecfp) \
|
|
((void *)(ecfp) > (void *)(cfp))
|
|
#define RUBY_VM_CONTROL_FRAME_STACK_OVERFLOW_P(th, cfp) \
|
|
(!RUBY_VM_VALID_CONTROL_FRAME_P((cfp), RUBY_VM_END_CONTROL_FRAME(th)))
|
|
|
|
#define RUBY_VM_IFUNC_P(ptr) (BUILTIN_TYPE(ptr) == T_NODE)
|
|
#define RUBY_VM_NORMAL_ISEQ_P(ptr) \
|
|
(ptr && !RUBY_VM_IFUNC_P(ptr))
|
|
|
|
#define RUBY_VM_CLASS_SPECIAL_P(ptr) (((VALUE)(ptr)) & 0x02)
|
|
|
|
#define RUBY_VM_GET_BLOCK_PTR_IN_CFP(cfp) ((rb_block_t *)(&(cfp)->self))
|
|
#define RUBY_VM_GET_CFP_FROM_BLOCK_PTR(b) \
|
|
((rb_control_frame_t *)((VALUE *)(b) - 5))
|
|
|
|
|
|
/* defined? */
|
|
#define DEFINED_IVAR INT2FIX(1)
|
|
#define DEFINED_IVAR2 INT2FIX(2)
|
|
#define DEFINED_GVAR INT2FIX(3)
|
|
#define DEFINED_CVAR INT2FIX(4)
|
|
#define DEFINED_CONST INT2FIX(5)
|
|
#define DEFINED_METHOD INT2FIX(6)
|
|
#define DEFINED_YIELD INT2FIX(7)
|
|
#define DEFINED_REF INT2FIX(8)
|
|
#define DEFINED_ZSUPER INT2FIX(9)
|
|
#define DEFINED_FUNC INT2FIX(10)
|
|
|
|
|
|
/* VM related object allocate functions */
|
|
/* TODO: should be static functions */
|
|
VALUE rb_thread_alloc(VALUE klass);
|
|
VALUE rb_proc_alloc(void);
|
|
|
|
/* for debug */
|
|
extern void vm_stack_dump_raw(rb_thread_t *, rb_control_frame_t *);
|
|
#define SDR() vm_stack_dump_raw(GET_THREAD(), GET_THREAD()->cfp)
|
|
#define SDR2(cfp) vm_stack_dump_raw(GET_THREAD(), (cfp))
|
|
void yarv_bug(void);
|
|
|
|
|
|
/* functions about thread/vm execution */
|
|
|
|
VALUE rb_thread_eval(rb_thread_t *th, VALUE iseqval);
|
|
void rb_enable_interrupt(void);
|
|
void rb_disable_interrupt(void);
|
|
int rb_thread_method_id_and_klass(rb_thread_t *th, ID *idp, VALUE *klassp);
|
|
|
|
VALUE vm_eval_body(rb_thread_t *th);
|
|
VALUE vm_invoke_proc(rb_thread_t *th, rb_proc_t *proc, VALUE self, int argc, VALUE *argv);
|
|
VALUE vm_make_proc(rb_thread_t *th, rb_control_frame_t *cfp, rb_block_t *block);
|
|
VALUE vm_make_env_object(rb_thread_t *th, rb_control_frame_t *cfp);
|
|
VALUE vm_backtrace(rb_thread_t *, int);
|
|
|
|
VALUE vm_yield(rb_thread_t *th, int argc, VALUE *argv);
|
|
VALUE vm_call0(rb_thread_t *th, VALUE klass, VALUE recv,
|
|
VALUE id, ID oid, int argc, const VALUE *argv,
|
|
NODE * body, int nosuper);
|
|
|
|
int vm_get_sourceline(rb_control_frame_t *);
|
|
|
|
VALUE yarvcore_eval_parsed(NODE *node, VALUE file);
|
|
VALUE yarvcore_eval(VALUE self, VALUE str, VALUE file, VALUE line);
|
|
|
|
RUBY_EXTERN VALUE sysstack_error;
|
|
|
|
/* for thread */
|
|
|
|
#if RUBY_VM_THREAD_MODEL == 2
|
|
extern rb_thread_t *ruby_current_thread;
|
|
extern rb_vm_t *ruby_current_vm;
|
|
|
|
#define GET_VM() ruby_current_vm
|
|
#define GET_THREAD() ruby_current_thread
|
|
#define rb_thread_set_current_raw(th) (ruby_current_thread = th)
|
|
#define rb_thread_set_current(th) do { \
|
|
rb_thread_set_current_raw(th); \
|
|
th->vm->running_thread = th; \
|
|
} while (0)
|
|
|
|
#else
|
|
#error "unsupported thread model"
|
|
#endif
|
|
|
|
void rb_thread_execute_interrupts(rb_thread_t *);
|
|
|
|
#define RUBY_VM_CHECK_INTS_TH(th) do { \
|
|
if(th->interrupt_flag){ \
|
|
/* TODO: trap something event */ \
|
|
rb_thread_execute_interrupts(th); \
|
|
} \
|
|
} while (0)
|
|
|
|
#define RUBY_VM_CHECK_INTS() \
|
|
RUBY_VM_CHECK_INTS_TH(GET_THREAD())
|
|
|
|
/* tracer */
|
|
static void inline
|
|
exec_event_hooks(rb_event_hook_t *hook, rb_event_flag_t flag, VALUE self, ID id, VALUE klass)
|
|
{
|
|
while (hook) {
|
|
if (flag & hook->flag) {
|
|
(*hook->func)(flag, hook->data, self, id, klass);
|
|
}
|
|
hook = hook->next;
|
|
}
|
|
}
|
|
|
|
#define EXEC_EVENT_HOOK(th, flag, self, id, klass) do { \
|
|
rb_event_flag_t wait_event__ = th->event_flags; \
|
|
if (UNLIKELY(wait_event__)) { \
|
|
if (wait_event__ & (flag | RUBY_EVENT_VM)) { \
|
|
VALUE self__ = (self), klass__ = (klass); \
|
|
ID id__ = (id); \
|
|
if (wait_event__ & flag) { \
|
|
exec_event_hooks(th->event_hooks, flag, self__, id__, klass__); \
|
|
} \
|
|
if (wait_event__ & RUBY_EVENT_VM) { \
|
|
exec_event_hooks(th->vm->event_hooks, flag, self__, id__, klass__); \
|
|
} \
|
|
} \
|
|
} \
|
|
} while (0)
|
|
|
|
#endif /* _YARVCORE_H_INCLUDED_ */
|