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4977af3c3d
* ext/fiddle/function.c (initialize): fix typo "ary" to "args", and adjust type of variables to suppress warnings. git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@53090 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
315 lines
7.8 KiB
C
315 lines
7.8 KiB
C
#include <fiddle.h>
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#include <ruby/thread.h>
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#ifdef PRIsVALUE
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# define RB_OBJ_CLASSNAME(obj) rb_obj_class(obj)
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# define RB_OBJ_STRING(obj) (obj)
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#else
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# define PRIsVALUE "s"
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# define RB_OBJ_CLASSNAME(obj) rb_obj_classname(obj)
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# define RB_OBJ_STRING(obj) StringValueCStr(obj)
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#endif
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VALUE cFiddleFunction;
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#define MAX_ARGS (SIZE_MAX / (sizeof(void *) + sizeof(fiddle_generic)) - 1)
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#define Check_Max_Args(name, len) \
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Check_Max_Args_(name, len, "")
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#define Check_Max_Args_Long(name, len) \
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Check_Max_Args_(name, len, "l")
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#define Check_Max_Args_(name, len, fmt) \
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if ((size_t)(len) < MAX_ARGS) { \
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/* OK */ \
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} \
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else { \
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rb_raise(rb_eTypeError, \
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name" is so large that it can cause integer overflow (%"fmt"d)", \
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(len)); \
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}
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static void
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deallocate(void *p)
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{
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ffi_cif *ptr = p;
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if (ptr->arg_types) xfree(ptr->arg_types);
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xfree(ptr);
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}
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static size_t
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function_memsize(const void *p)
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{
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/* const */ffi_cif *ptr = (ffi_cif *)p;
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size_t size = 0;
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size += sizeof(*ptr);
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#if !defined(FFI_NO_RAW_API) || !FFI_NO_RAW_API
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size += ffi_raw_size(ptr);
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#endif
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return size;
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}
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const rb_data_type_t function_data_type = {
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"fiddle/function",
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{0, deallocate, function_memsize,},
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};
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static VALUE
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allocate(VALUE klass)
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{
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ffi_cif * cif;
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return TypedData_Make_Struct(klass, ffi_cif, &function_data_type, cif);
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}
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VALUE
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rb_fiddle_new_function(VALUE address, VALUE arg_types, VALUE ret_type)
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{
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VALUE argv[3];
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argv[0] = address;
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argv[1] = arg_types;
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argv[2] = ret_type;
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return rb_class_new_instance(3, argv, cFiddleFunction);
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}
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static int
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parse_keyword_arg_i(VALUE key, VALUE value, VALUE self)
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{
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if (key == ID2SYM(rb_intern("name"))) {
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rb_iv_set(self, "@name", value);
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} else {
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rb_raise(rb_eArgError, "unknown keyword: %"PRIsVALUE,
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RB_OBJ_STRING(key));
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}
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return ST_CONTINUE;
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}
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static VALUE
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initialize(int argc, VALUE argv[], VALUE self)
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{
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ffi_cif * cif;
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ffi_type **arg_types, *rtype;
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ffi_status result;
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VALUE ptr, args, ret_type, abi, kwds, ary;
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int i, len;
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int nabi;
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void *cfunc;
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rb_scan_args(argc, argv, "31:", &ptr, &args, &ret_type, &abi, &kwds);
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ptr = rb_Integer(ptr);
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cfunc = NUM2PTR(ptr);
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PTR2NUM(cfunc);
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nabi = NIL_P(abi) ? FFI_DEFAULT_ABI : NUM2INT(abi);
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abi = INT2FIX(nabi);
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i = NUM2INT(ret_type);
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rtype = INT2FFI_TYPE(i);
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ret_type = INT2FIX(i);
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Check_Type(args, T_ARRAY);
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len = RARRAY_LENINT(args);
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Check_Max_Args("args", len);
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ary = rb_ary_subseq(args, 0, len);
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for (i = 0; i < RARRAY_LEN(args); i++) {
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VALUE a = RARRAY_PTR(args)[i];
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int type = NUM2INT(a);
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(void)INT2FFI_TYPE(type); /* raise */
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if (INT2FIX(type) != a) rb_ary_store(ary, i, INT2FIX(type));
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}
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OBJ_FREEZE(ary);
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rb_iv_set(self, "@ptr", ptr);
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rb_iv_set(self, "@args", args);
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rb_iv_set(self, "@return_type", ret_type);
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rb_iv_set(self, "@abi", abi);
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if (!NIL_P(kwds)) rb_hash_foreach(kwds, parse_keyword_arg_i, self);
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TypedData_Get_Struct(self, ffi_cif, &function_data_type, cif);
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arg_types = xcalloc(len + 1, sizeof(ffi_type *));
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for (i = 0; i < RARRAY_LEN(args); i++) {
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int type = NUM2INT(RARRAY_AREF(args, i));
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arg_types[i] = INT2FFI_TYPE(type);
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}
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arg_types[len] = NULL;
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result = ffi_prep_cif(cif, nabi, len, rtype, arg_types);
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if (result)
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rb_raise(rb_eRuntimeError, "error creating CIF %d", result);
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return self;
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}
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struct nogvl_ffi_call_args {
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ffi_cif *cif;
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void (*fn)(void);
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void **values;
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fiddle_generic retval;
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};
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static void *
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nogvl_ffi_call(void *ptr)
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{
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struct nogvl_ffi_call_args *args = ptr;
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ffi_call(args->cif, args->fn, &args->retval, args->values);
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return NULL;
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}
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static VALUE
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function_call(int argc, VALUE argv[], VALUE self)
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{
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struct nogvl_ffi_call_args args = { 0 };
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fiddle_generic *generic_args;
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VALUE cfunc, types, cPointer;
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int i;
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VALUE alloc_buffer = 0;
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cfunc = rb_iv_get(self, "@ptr");
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types = rb_iv_get(self, "@args");
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cPointer = rb_const_get(mFiddle, rb_intern("Pointer"));
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Check_Max_Args("number of arguments", argc);
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if (argc != (i = RARRAY_LENINT(types))) {
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rb_error_arity(argc, i, i);
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}
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TypedData_Get_Struct(self, ffi_cif, &function_data_type, args.cif);
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if (rb_safe_level() >= 1) {
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for (i = 0; i < argc; i++) {
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VALUE src = argv[i];
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if (OBJ_TAINTED(src)) {
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rb_raise(rb_eSecurityError, "tainted parameter not allowed");
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}
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}
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}
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generic_args = ALLOCV(alloc_buffer,
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(size_t)(argc + 1) * sizeof(void *) + (size_t)argc * sizeof(fiddle_generic));
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args.values = (void **)((char *)generic_args +
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(size_t)argc * sizeof(fiddle_generic));
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for (i = 0; i < argc; i++) {
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VALUE type = RARRAY_AREF(types, i);
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VALUE src = argv[i];
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int argtype = FIX2INT(type);
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if (argtype == TYPE_VOIDP) {
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if(NIL_P(src)) {
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src = INT2FIX(0);
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} else if(cPointer != CLASS_OF(src)) {
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src = rb_funcall(cPointer, rb_intern("[]"), 1, src);
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}
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src = rb_Integer(src);
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}
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VALUE2GENERIC(argtype, src, &generic_args[i]);
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args.values[i] = (void *)&generic_args[i];
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}
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args.values[argc] = NULL;
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args.fn = NUM2PTR(cfunc);
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(void)rb_thread_call_without_gvl(nogvl_ffi_call, &args, 0, 0);
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rb_funcall(mFiddle, rb_intern("last_error="), 1, INT2NUM(errno));
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#if defined(_WIN32)
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rb_funcall(mFiddle, rb_intern("win32_last_error="), 1, INT2NUM(errno));
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#endif
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ALLOCV_END(alloc_buffer);
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return GENERIC2VALUE(rb_iv_get(self, "@return_type"), args.retval);
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}
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void
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Init_fiddle_function(void)
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{
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/*
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* Document-class: Fiddle::Function
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*
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* == Description
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*
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* A representation of a C function
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*
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* == Examples
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*
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* === 'strcpy'
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*
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* @libc = Fiddle.dlopen "/lib/libc.so.6"
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* #=> #<Fiddle::Handle:0x00000001d7a8d8>
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* f = Fiddle::Function.new(
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* @libc['strcpy'],
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* [Fiddle::TYPE_VOIDP, Fiddle::TYPE_VOIDP],
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* Fiddle::TYPE_VOIDP)
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* #=> #<Fiddle::Function:0x00000001d8ee00>
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* buff = "000"
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* #=> "000"
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* str = f.call(buff, "123")
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* #=> #<Fiddle::Pointer:0x00000001d0c380 ptr=0x000000018a21b8 size=0 free=0x00000000000000>
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* str.to_s
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* => "123"
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*
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* === ABI check
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*
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* @libc = Fiddle.dlopen "/lib/libc.so.6"
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* #=> #<Fiddle::Handle:0x00000001d7a8d8>
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* f = Fiddle::Function.new(@libc['strcpy'], [TYPE_VOIDP, TYPE_VOIDP], TYPE_VOIDP)
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* #=> #<Fiddle::Function:0x00000001d8ee00>
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* f.abi == Fiddle::Function::DEFAULT
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* #=> true
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*/
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cFiddleFunction = rb_define_class_under(mFiddle, "Function", rb_cObject);
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/*
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* Document-const: DEFAULT
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*
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* Default ABI
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*
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*/
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rb_define_const(cFiddleFunction, "DEFAULT", INT2NUM(FFI_DEFAULT_ABI));
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#ifdef HAVE_CONST_FFI_STDCALL
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/*
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* Document-const: STDCALL
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*
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* FFI implementation of WIN32 stdcall convention
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*
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*/
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rb_define_const(cFiddleFunction, "STDCALL", INT2NUM(FFI_STDCALL));
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#endif
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rb_define_alloc_func(cFiddleFunction, allocate);
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/*
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* Document-method: call
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*
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* Calls the constructed Function, with +args+.
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* Caller must ensure the underlying function is called in a
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* thread-safe manner if running in a multi-threaded process.
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*
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* For an example see Fiddle::Function
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*
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*/
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rb_define_method(cFiddleFunction, "call", function_call, -1);
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/*
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* Document-method: new
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* call-seq: new(ptr, args, ret_type, abi = DEFAULT)
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*
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* Constructs a Function object.
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* * +ptr+ is a referenced function, of a Fiddle::Handle
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* * +args+ is an Array of arguments, passed to the +ptr+ function
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* * +ret_type+ is the return type of the function
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* * +abi+ is the ABI of the function
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*
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*/
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rb_define_method(cFiddleFunction, "initialize", initialize, -1);
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}
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/* vim: set noet sws=4 sw=4: */
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