#ifdef HAVE_CONFIG_H
# include <config.h>
#endif
#include <stdio.h>
#include "libguile/_scm.h"
#include "libguile/alist.h"
#include "libguile/async.h"
#include "libguile/chars.h"
#include "libguile/debug.h"
#include "libguile/dynl.h"
#include "libguile/dynwind.h"
#include "libguile/eval.h"
#include "libguile/gsubr.h"
#include "libguile/hashtab.h"
#include "libguile/keywords.h"
#include "libguile/macros.h"
#include "libguile/modules.h"
#include "libguile/ports.h"
#include "libguile/procprop.h"
#include "libguile/programs.h"
#include "libguile/random.h"
#include "libguile/root.h"
#include "libguile/smob.h"
#include "libguile/strings.h"
#include "libguile/strports.h"
#include "libguile/vectors.h"
#include "libguile/weaks.h"
#include "libguile/vm.h"
#include "libguile/validate.h"
#include "libguile/goops.h"
#define SPEC_OF(x) SCM_SLOT (x, scm_si_specializers)
#define SCM_IN_PCLASS_INDEX 0
#define SCM_OUT_PCLASS_INDEX SCM_I_MAX_PORT_TYPE_COUNT
#define SCM_INOUT_PCLASS_INDEX (2 * SCM_I_MAX_PORT_TYPE_COUNT)
static SCM var_slot_unbound = SCM_BOOL_F;
static SCM var_slot_missing = SCM_BOOL_F;
static SCM var_compute_cpl = SCM_BOOL_F;
static SCM var_no_applicable_method = SCM_BOOL_F;
static SCM var_change_class = SCM_BOOL_F;
SCM_SYMBOL (sym_slot_unbound, "slot-unbound");
SCM_SYMBOL (sym_slot_missing, "slot-missing");
SCM_SYMBOL (sym_compute_cpl, "compute-cpl");
SCM_SYMBOL (sym_no_applicable_method, "no-applicable-method");
SCM_SYMBOL (sym_memoize_method_x, "memoize-method!");
SCM_SYMBOL (sym_change_class, "change-class");
SCM_VARIABLE (scm_var_make_extended_generic, "make-extended-generic");
#define DEFVAR(v, val) \
{ scm_module_define (scm_module_goops, (v), (val)); \
scm_module_export (scm_module_goops, scm_list_1 ((v))); \
}
#define TEST_CHANGE_CLASS(obj, class) \
{ \
class = SCM_CLASS_OF (obj); \
if (scm_is_true (SCM_OBJ_CLASS_REDEF (obj))) \
{ \
scm_change_object_class (obj, class, SCM_OBJ_CLASS_REDEF (obj));\
class = SCM_CLASS_OF (obj); \
} \
}
#define NXT_MTHD_METHODS(m) (SCM_VELTS (m)[1])
#define NXT_MTHD_ARGS(m) (SCM_VELTS (m)[2])
#define SCM_GOOPS_UNBOUND SCM_UNBOUND
#define SCM_GOOPS_UNBOUNDP(x) (scm_is_eq (x, SCM_GOOPS_UNBOUND))
static int goops_loaded_p = 0;
static scm_t_rstate *goops_rstate;
SCM scm_class_boolean, scm_class_char, scm_class_pair;
SCM scm_class_procedure, scm_class_string, scm_class_symbol;
SCM scm_class_primitive_generic;
SCM scm_class_vector, scm_class_null;
SCM scm_class_integer, scm_class_real, scm_class_complex, scm_class_fraction;
SCM scm_class_unknown;
SCM scm_class_top, scm_class_object, scm_class_class;
SCM scm_class_applicable;
SCM scm_class_applicable_struct, scm_class_applicable_struct_with_setter;
SCM scm_class_generic, scm_class_generic_with_setter;
SCM scm_class_accessor;
SCM scm_class_extended_generic, scm_class_extended_generic_with_setter;
SCM scm_class_extended_accessor;
SCM scm_class_method;
SCM scm_class_accessor_method;
SCM scm_class_procedure_class;
SCM scm_class_applicable_struct_class;
SCM scm_class_number, scm_class_list;
SCM scm_class_keyword;
SCM scm_class_port, scm_class_input_output_port;
SCM scm_class_input_port, scm_class_output_port;
SCM scm_class_foreign_slot;
SCM scm_class_self, scm_class_protected;
SCM scm_class_hidden, scm_class_opaque, scm_class_read_only;
SCM scm_class_protected_hidden, scm_class_protected_opaque, scm_class_protected_read_only;
SCM scm_class_scm;
SCM scm_class_int, scm_class_float, scm_class_double;
static SCM class_foreign;
static SCM class_hashtable;
static SCM class_fluid;
static SCM class_dynamic_state;
static SCM class_frame;
static SCM class_objcode;
static SCM class_vm;
static SCM class_vm_cont;
static SCM class_bytevector;
static SCM class_uvec;
static SCM class_array;
static SCM class_bitvector;
static SCM vtable_class_map = SCM_BOOL_F;
static scm_i_pthread_mutex_t vtable_class_map_lock = SCM_I_PTHREAD_MUTEX_INITIALIZER;
SCM scm_port_class[3 * SCM_I_MAX_PORT_TYPE_COUNT];
SCM scm_smob_class[SCM_I_MAX_SMOB_TYPE_COUNT];
SCM scm_no_applicable_method;
SCM_SYMBOL (scm_sym_define_public, "define-public");
static SCM scm_make_unbound (void);
static SCM scm_unbound_p (SCM obj);
static SCM scm_assert_bound (SCM value, SCM obj);
static SCM scm_at_assert_bound_ref (SCM obj, SCM index);
static SCM scm_sys_goops_loaded (void);
static SCM scm_make_extended_class_from_symbol (SCM type_name_sym,
int applicablep);
SCM
scm_i_define_class_for_vtable (SCM vtable)
{
SCM class;
scm_i_pthread_mutex_lock (&vtable_class_map_lock);
if (scm_is_false (vtable_class_map))
vtable_class_map = scm_make_weak_key_hash_table (SCM_UNDEFINED);
if (scm_is_false (scm_struct_vtable_p (vtable)))
abort ();
class = scm_hashq_ref (vtable_class_map, vtable, SCM_BOOL_F);
scm_i_pthread_mutex_unlock (&vtable_class_map_lock);
if (scm_is_false (class))
{
if (SCM_UNPACK (scm_class_class))
{
SCM name = SCM_VTABLE_NAME (vtable);
if (!scm_is_symbol (name))
name = scm_string_to_symbol (scm_nullstr);
class = scm_make_extended_class_from_symbol
(name, SCM_VTABLE_FLAG_IS_SET (vtable, SCM_VTABLE_FLAG_APPLICABLE));
}
else
class = SCM_BOOL_F;
scm_i_pthread_mutex_lock (&vtable_class_map_lock);
scm_hashq_set_x (vtable_class_map, vtable, class);
scm_i_pthread_mutex_unlock (&vtable_class_map_lock);
}
return class;
}
SCM_DEFINE (scm_class_of, "class-of", 1, 0, 0,
(SCM x),
"Return the class of @var{x}.")
#define FUNC_NAME s_scm_class_of
{
switch (SCM_ITAG3 (x))
{
case scm_tc3_int_1:
case scm_tc3_int_2:
return scm_class_integer;
case scm_tc3_imm24:
if (SCM_CHARP (x))
return scm_class_char;
else if (scm_is_bool (x))
return scm_class_boolean;
else if (scm_is_null (x))
return scm_class_null;
else
return scm_class_unknown;
case scm_tc3_cons:
switch (SCM_TYP7 (x))
{
case scm_tcs_cons_nimcar:
return scm_class_pair;
case scm_tc7_symbol:
return scm_class_symbol;
case scm_tc7_vector:
case scm_tc7_wvect:
return scm_class_vector;
case scm_tc7_pointer:
return class_foreign;
case scm_tc7_hashtable:
return class_hashtable;
case scm_tc7_fluid:
return class_fluid;
case scm_tc7_dynamic_state:
return class_dynamic_state;
case scm_tc7_frame:
return class_frame;
case scm_tc7_objcode:
return class_objcode;
case scm_tc7_vm:
return class_vm;
case scm_tc7_vm_cont:
return class_vm_cont;
case scm_tc7_bytevector:
if (SCM_BYTEVECTOR_ELEMENT_TYPE (x) == SCM_ARRAY_ELEMENT_TYPE_VU8)
return class_bytevector;
else
return class_uvec;
case scm_tc7_array:
return class_array;
case scm_tc7_bitvector:
return class_bitvector;
case scm_tc7_string:
return scm_class_string;
case scm_tc7_number:
switch SCM_TYP16 (x) {
case scm_tc16_big:
return scm_class_integer;
case scm_tc16_real:
return scm_class_real;
case scm_tc16_complex:
return scm_class_complex;
case scm_tc16_fraction:
return scm_class_fraction;
}
case scm_tc7_program:
if (SCM_PROGRAM_IS_PRIMITIVE_GENERIC (x)
&& SCM_UNPACK (*SCM_SUBR_GENERIC (x)))
return scm_class_primitive_generic;
else
return scm_class_procedure;
case scm_tc7_smob:
{
scm_t_bits type = SCM_TYP16 (x);
if (type != scm_tc16_port_with_ps)
return scm_smob_class[SCM_TC2SMOBNUM (type)];
x = SCM_PORT_WITH_PS_PORT (x);
}
case scm_tc7_port:
return scm_port_class[(SCM_WRTNG & SCM_CELL_WORD_0 (x)
? (SCM_RDNG & SCM_CELL_WORD_0 (x)
? SCM_INOUT_PCLASS_INDEX | SCM_PTOBNUM (x)
: SCM_OUT_PCLASS_INDEX | SCM_PTOBNUM (x))
: SCM_IN_PCLASS_INDEX | SCM_PTOBNUM (x))];
case scm_tcs_struct:
if (SCM_OBJ_CLASS_FLAGS (x) & SCM_CLASSF_GOOPS_VALID)
return SCM_CLASS_OF (x);
else if (SCM_OBJ_CLASS_FLAGS (x) & SCM_CLASSF_GOOPS)
{
if (! scm_is_false (SCM_OBJ_CLASS_REDEF (x)))
scm_change_object_class (x,
SCM_CLASS_OF (x),
SCM_OBJ_CLASS_REDEF (x));
return SCM_CLASS_OF (x);
}
else
return scm_i_define_class_for_vtable (SCM_CLASS_OF (x));
default:
if (scm_is_pair (x))
return scm_class_pair;
else
return scm_class_unknown;
}
case scm_tc3_struct:
case scm_tc3_tc7_1:
case scm_tc3_tc7_2:
break;
}
return scm_class_unknown;
}
#undef FUNC_NAME
static SCM
map (SCM (*proc) (SCM), SCM ls)
{
if (scm_is_null (ls))
return ls;
else
{
SCM res = scm_cons (proc (SCM_CAR (ls)), SCM_EOL);
SCM h = res;
ls = SCM_CDR (ls);
while (scm_is_pair (ls))
{
SCM_SETCDR (h, scm_cons (proc (SCM_CAR (ls)), SCM_EOL));
h = SCM_CDR (h);
ls = SCM_CDR (ls);
}
return res;
}
}
static SCM
filter_cpl (SCM ls)
{
SCM res = SCM_EOL;
while (scm_is_pair (ls))
{
SCM el = SCM_CAR (ls);
if (scm_is_false (scm_c_memq (el, res)))
res = scm_cons (el, res);
ls = SCM_CDR (ls);
}
return res;
}
static SCM
compute_cpl (SCM class)
{
if (goops_loaded_p)
return scm_call_1 (SCM_VARIABLE_REF (var_compute_cpl), class);
else
{
SCM supers = SCM_SLOT (class, scm_si_direct_supers);
SCM ls = scm_append (scm_acons (class, supers,
map (compute_cpl, supers)));
return scm_reverse_x (filter_cpl (ls), SCM_EOL);
}
}
static SCM
remove_duplicate_slots (SCM l, SCM res, SCM slots_already_seen)
{
SCM tmp;
if (!scm_is_pair (l))
return res;
tmp = SCM_CAAR (l);
if (!scm_is_symbol (tmp))
scm_misc_error ("%compute-slots", "bad slot name ~S", scm_list_1 (tmp));
if (scm_is_false (scm_c_memq (tmp, slots_already_seen))) {
res = scm_cons (SCM_CAR (l), res);
slots_already_seen = scm_cons (tmp, slots_already_seen);
}
return remove_duplicate_slots (SCM_CDR (l), res, slots_already_seen);
}
static void
check_cpl (SCM slots, SCM bslots)
{
for (; scm_is_pair (bslots); bslots = SCM_CDR (bslots))
if (scm_is_true (scm_assq (SCM_CAAR (bslots), slots)))
scm_misc_error ("init-object", "a predefined <class> inherited "
"field cannot be redefined", SCM_EOL);
}
static SCM
build_class_class_slots (void);
static SCM
build_slots_list (SCM dslots, SCM cpl)
{
SCM bslots, class_slots;
int classp;
SCM res = dslots;
class_slots = SCM_EOL;
classp = scm_is_true (scm_memq (scm_class_class, cpl));
if (classp)
{
bslots = build_class_class_slots ();
check_cpl (res, bslots);
}
else
bslots = SCM_EOL;
if (scm_is_pair (cpl))
{
for (cpl = SCM_CDR (cpl); scm_is_pair (cpl); cpl = SCM_CDR (cpl))
{
SCM new_slots = SCM_SLOT (SCM_CAR (cpl),
scm_si_direct_slots);
if (classp)
{
if (!scm_is_eq (SCM_CAR (cpl), scm_class_class))
check_cpl (new_slots, bslots);
else
{
class_slots = new_slots;
continue;
}
}
res = scm_append (scm_list_2 (new_slots, res));
}
}
else
scm_misc_error ("%compute-slots", "malformed cpl argument in "
"build_slots_list", SCM_EOL);
if (classp)
res = scm_append (scm_list_2 (class_slots, res));
return remove_duplicate_slots (scm_reverse (res), SCM_EOL, SCM_EOL);
}
static SCM
maplist (SCM ls)
{
SCM orig = ls;
while (!scm_is_null (ls))
{
if (!scm_is_pair (ls))
scm_misc_error ("%compute-slots", "malformed ls argument in "
"maplist", SCM_EOL);
if (!scm_is_pair (SCM_CAR (ls)))
SCM_SETCAR (ls, scm_cons (SCM_CAR (ls), SCM_EOL));
ls = SCM_CDR (ls);
}
return orig;
}
SCM_DEFINE (scm_sys_compute_slots, "%compute-slots", 1, 0, 0,
(SCM class),
"Return a list consisting of the names of all slots belonging to\n"
"class @var{class}, i. e. the slots of @var{class} and of all of\n"
"its superclasses.")
#define FUNC_NAME s_scm_sys_compute_slots
{
SCM_VALIDATE_CLASS (1, class);
return build_slots_list (SCM_SLOT (class, scm_si_direct_slots),
SCM_SLOT (class, scm_si_cpl));
}
#undef FUNC_NAME
SCM_KEYWORD (k_init_value, "init-value");
SCM_KEYWORD (k_init_thunk, "init-thunk");
static SCM
compute_getters_n_setters (SCM slots)
{
SCM res = SCM_EOL;
SCM *cdrloc = &res;
long i = 0;
for ( ; !scm_is_null (slots); slots = SCM_CDR (slots))
{
SCM init = SCM_BOOL_F;
SCM options = SCM_CDAR (slots);
if (!scm_is_null (options))
{
init = scm_get_keyword (k_init_value, options, SCM_PACK (0));
if (SCM_UNPACK (init))
{
init = scm_primitive_eval (scm_list_3 (scm_sym_lambda,
SCM_EOL,
scm_list_2 (scm_sym_quote,
init)));
}
else
init = scm_get_keyword (k_init_thunk, options, SCM_BOOL_F);
}
*cdrloc = scm_cons (scm_cons (SCM_CAAR (slots),
scm_cons (init,
scm_from_int (i++))),
SCM_EOL);
cdrloc = SCM_CDRLOC (*cdrloc);
}
return res;
}
SCM
scm_i_get_keyword (SCM key, SCM l, long len, SCM default_value, const char *subr)
{
long i;
for (i = 0; i != len; i += 2)
{
SCM obj = SCM_CAR (l);
if (!scm_is_keyword (obj))
scm_misc_error (subr, "bad keyword: ~S", scm_list_1 (obj));
else if (scm_is_eq (obj, key))
return SCM_CADR (l);
else
l = SCM_CDDR (l);
}
return default_value;
}
SCM_DEFINE (scm_get_keyword, "get-keyword", 3, 0, 0,
(SCM key, SCM l, SCM default_value),
"Determine an associated value for the keyword @var{key} from\n"
"the list @var{l}. The list @var{l} has to consist of an even\n"
"number of elements, where, starting with the first, every\n"
"second element is a keyword, followed by its associated value.\n"
"If @var{l} does not hold a value for @var{key}, the value\n"
"@var{default_value} is returned.")
#define FUNC_NAME s_scm_get_keyword
{
long len;
SCM_ASSERT (scm_is_keyword (key), key, SCM_ARG1, FUNC_NAME);
len = scm_ilength (l);
if (len < 0 || len % 2 == 1)
scm_misc_error (FUNC_NAME, "Bad keyword-value list: ~S", scm_list_1 (l));
return scm_i_get_keyword (key, l, len, default_value, FUNC_NAME);
}
#undef FUNC_NAME
SCM_KEYWORD (k_init_keyword, "init-keyword");
static SCM get_slot_value (SCM class, SCM obj, SCM slotdef);
static SCM set_slot_value (SCM class, SCM obj, SCM slotdef, SCM value);
SCM_DEFINE (scm_sys_initialize_object, "%initialize-object", 2, 0, 0,
(SCM obj, SCM initargs),
"Initialize the object @var{obj} with the given arguments\n"
"@var{initargs}.")
#define FUNC_NAME s_scm_sys_initialize_object
{
SCM tmp, get_n_set, slots;
SCM class = SCM_CLASS_OF (obj);
long n_initargs;
SCM_VALIDATE_INSTANCE (1, obj);
n_initargs = scm_ilength (initargs);
SCM_ASSERT ((n_initargs & 1) == 0, initargs, SCM_ARG2, FUNC_NAME);
get_n_set = SCM_SLOT (class, scm_si_getters_n_setters);
slots = SCM_SLOT (class, scm_si_slots);
for (;
!scm_is_null (slots);
get_n_set = SCM_CDR (get_n_set), slots = SCM_CDR (slots))
{
SCM slot_name = SCM_CAR (slots);
SCM slot_value = SCM_PACK (0);
if (!scm_is_null (SCM_CDR (slot_name)))
{
long n = scm_ilength (SCM_CDR (slot_name));
if (n & 1)
SCM_MISC_ERROR ("class contains bogus slot definition: ~S",
scm_list_1 (slot_name));
tmp = scm_i_get_keyword (k_init_keyword,
SCM_CDR (slot_name),
n,
SCM_PACK (0),
FUNC_NAME);
slot_name = SCM_CAR (slot_name);
if (SCM_UNPACK (tmp))
{
if (!scm_is_keyword (tmp))
SCM_MISC_ERROR ("initarg must be a keyword. It was ~S",
scm_list_1 (tmp));
slot_value = scm_i_get_keyword (tmp,
initargs,
n_initargs,
SCM_PACK (0),
FUNC_NAME);
}
}
if (SCM_UNPACK (slot_value))
set_slot_value (class, obj, SCM_CAR (get_n_set), slot_value);
else
{
tmp = SCM_CADAR (get_n_set);
if (scm_is_true (tmp))
{
slot_value = get_slot_value (class, obj, SCM_CAR (get_n_set));
if (SCM_GOOPS_UNBOUNDP (slot_value))
set_slot_value (class,
obj,
SCM_CAR (get_n_set),
scm_call_0 (tmp));
}
}
}
return obj;
}
#undef FUNC_NAME
#define SCM_GNS_INSTANCE_ALLOCATED_P(gns) \
(SCM_I_INUMP (SCM_CDDR (gns)) \
|| (scm_is_pair (SCM_CDDR (gns)) \
&& scm_is_pair (SCM_CDDDR (gns)) \
&& scm_is_pair (SCM_CDDDDR (gns))))
#define SCM_GNS_INDEX(gns) \
(SCM_I_INUMP (SCM_CDDR (gns)) \
? SCM_I_INUM (SCM_CDDR (gns)) \
: scm_to_long (SCM_CAR (SCM_CDDDDR (gns))))
#define SCM_GNS_SIZE(gns) \
(SCM_I_INUMP (SCM_CDDR (gns)) \
? 1 \
: scm_to_long (SCM_CADR (SCM_CDDDDR (gns))))
SCM_KEYWORD (k_class, "class");
SCM_KEYWORD (k_allocation, "allocation");
SCM_KEYWORD (k_instance, "instance");
SCM_DEFINE (scm_sys_prep_layout_x, "%prep-layout!", 1, 0, 0,
(SCM class),
"")
#define FUNC_NAME s_scm_sys_prep_layout_x
{
SCM slots, getters_n_setters, nfields;
unsigned long int n, i;
char *s;
SCM layout;
SCM_VALIDATE_INSTANCE (1, class);
slots = SCM_SLOT (class, scm_si_slots);
getters_n_setters = SCM_SLOT (class, scm_si_getters_n_setters);
nfields = SCM_SLOT (class, scm_si_nfields);
if (!SCM_I_INUMP (nfields) || SCM_I_INUM (nfields) < 0)
SCM_MISC_ERROR ("bad value in nfields slot: ~S",
scm_list_1 (nfields));
n = 2 * SCM_I_INUM (nfields);
if (n < sizeof (SCM_CLASS_CLASS_LAYOUT) - 1
&& SCM_SUBCLASSP (class, scm_class_class))
SCM_MISC_ERROR ("class object doesn't have enough fields: ~S",
scm_list_1 (nfields));
layout = scm_i_make_string (n, &s, 0);
i = 0;
while (scm_is_pair (getters_n_setters))
{
if (SCM_GNS_INSTANCE_ALLOCATED_P (SCM_CAR (getters_n_setters)))
{
SCM type;
int len, index, size;
char p, a;
if (i >= n || !scm_is_pair (slots))
goto inconsistent;
len = scm_ilength (SCM_CDAR (slots));
type = scm_i_get_keyword (k_class, SCM_CDAR (slots),
len, SCM_BOOL_F, FUNC_NAME);
if (scm_is_false (type))
{
p = 'p';
a = 'w';
}
else
{
if (!SCM_CLASSP (type))
SCM_MISC_ERROR ("bad slot class", SCM_EOL);
else if (SCM_SUBCLASSP (type, scm_class_foreign_slot))
{
if (SCM_SUBCLASSP (type, scm_class_self))
p = 's';
else if (SCM_SUBCLASSP (type, scm_class_protected))
p = 'p';
else
p = 'u';
if (SCM_SUBCLASSP (type, scm_class_opaque))
a = 'o';
else if (SCM_SUBCLASSP (type, scm_class_read_only))
a = 'r';
else if (SCM_SUBCLASSP (type, scm_class_hidden))
a = 'h';
else
a = 'w';
}
else
{
p = 'p';
a = 'w';
}
}
index = SCM_GNS_INDEX (SCM_CAR (getters_n_setters));
if (index != (i >> 1))
goto inconsistent;
size = SCM_GNS_SIZE (SCM_CAR (getters_n_setters));
while (size)
{
s[i++] = p;
s[i++] = a;
--size;
}
}
slots = SCM_CDR (slots);
getters_n_setters = SCM_CDR (getters_n_setters);
}
if (!scm_is_null (slots))
{
inconsistent:
SCM_MISC_ERROR ("inconsistent getters-n-setters", SCM_EOL);
}
SCM_SET_VTABLE_LAYOUT (class, scm_string_to_symbol (layout));
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
static void prep_hashsets (SCM);
SCM_DEFINE (scm_sys_inherit_magic_x, "%inherit-magic!", 2, 0, 0,
(SCM class, SCM dsupers),
"")
#define FUNC_NAME s_scm_sys_inherit_magic_x
{
SCM_VALIDATE_INSTANCE (1, class);
scm_i_struct_inherit_vtable_magic (SCM_CLASS_OF (class), class);
SCM_SET_CLASS_FLAGS (class, SCM_CLASSF_GOOPS_OR_VALID);
prep_hashsets (class);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
static void
prep_hashsets (SCM class)
{
unsigned int i;
for (i = 0; i < 8; ++i)
SCM_SET_HASHSET (class, i, scm_c_uniform32 (goops_rstate));
}
SCM
scm_basic_basic_make_class (SCM class, SCM name, SCM dsupers, SCM dslots)
{
SCM z, cpl, slots, nfields, g_n_s;
z = scm_make_struct (class, SCM_INUM0, SCM_EOL);
SCM_SET_SLOT (z, scm_si_direct_supers, dsupers);
cpl = compute_cpl (z);
slots = build_slots_list (maplist (dslots), cpl);
nfields = scm_from_int (scm_ilength (slots));
g_n_s = compute_getters_n_setters (slots);
SCM_SET_SLOT (z, scm_vtable_index_name, name);
SCM_SET_SLOT (z, scm_si_direct_slots, dslots);
SCM_SET_SLOT (z, scm_si_direct_subclasses, SCM_EOL);
SCM_SET_SLOT (z, scm_si_direct_methods, SCM_EOL);
SCM_SET_SLOT (z, scm_si_cpl, cpl);
SCM_SET_SLOT (z, scm_si_slots, slots);
SCM_SET_SLOT (z, scm_si_nfields, nfields);
SCM_SET_SLOT (z, scm_si_getters_n_setters, g_n_s);
SCM_SET_SLOT (z, scm_si_redefined, SCM_BOOL_F);
{
SCM tmp;
for (tmp = dsupers; !scm_is_null (tmp); tmp = SCM_CDR (tmp))
SCM_SET_SLOT (SCM_CAR (tmp), scm_si_direct_subclasses,
scm_cons (z, SCM_SLOT (SCM_CAR (tmp),
scm_si_direct_subclasses)));
}
return z;
}
SCM
scm_basic_make_class (SCM class, SCM name, SCM dsupers, SCM dslots)
{
SCM z = scm_basic_basic_make_class (class, name, dsupers, dslots);
scm_sys_prep_layout_x (z);
scm_sys_inherit_magic_x (z, dsupers);
return z;
}
SCM_SYMBOL (sym_layout, "layout");
SCM_SYMBOL (sym_flags, "flags");
SCM_SYMBOL (sym_self, "%self");
SCM_SYMBOL (sym_instance_finalizer, "instance-finalizer");
SCM_SYMBOL (sym_reserved_0, "%reserved-0");
SCM_SYMBOL (sym_reserved_1, "%reserved-1");
SCM_SYMBOL (sym_print, "print");
SCM_SYMBOL (sym_procedure, "procedure");
SCM_SYMBOL (sym_setter, "setter");
SCM_SYMBOL (sym_redefined, "redefined");
SCM_SYMBOL (sym_h0, "h0");
SCM_SYMBOL (sym_h1, "h1");
SCM_SYMBOL (sym_h2, "h2");
SCM_SYMBOL (sym_h3, "h3");
SCM_SYMBOL (sym_h4, "h4");
SCM_SYMBOL (sym_h5, "h5");
SCM_SYMBOL (sym_h6, "h6");
SCM_SYMBOL (sym_h7, "h7");
SCM_SYMBOL (sym_name, "name");
SCM_SYMBOL (sym_direct_supers, "direct-supers");
SCM_SYMBOL (sym_direct_slots, "direct-slots");
SCM_SYMBOL (sym_direct_subclasses, "direct-subclasses");
SCM_SYMBOL (sym_direct_methods, "direct-methods");
SCM_SYMBOL (sym_cpl, "cpl");
SCM_SYMBOL (sym_default_slot_definition_class, "default-slot-definition-class");
SCM_SYMBOL (sym_slots, "slots");
SCM_SYMBOL (sym_getters_n_setters, "getters-n-setters");
SCM_SYMBOL (sym_keyword_access, "keyword-access");
SCM_SYMBOL (sym_nfields, "nfields");
static SCM
build_class_class_slots (void)
{
return scm_list_n (
scm_list_3 (sym_layout, k_class, scm_class_protected_read_only),
scm_list_3 (sym_flags, k_class, scm_class_hidden),
scm_list_3 (sym_self, k_class, scm_class_self),
scm_list_3 (sym_instance_finalizer, k_class, scm_class_hidden),
scm_list_1 (sym_print),
scm_list_3 (sym_name, k_class, scm_class_protected_hidden),
scm_list_3 (sym_reserved_0, k_class, scm_class_hidden),
scm_list_3 (sym_reserved_1, k_class, scm_class_hidden),
scm_list_1 (sym_redefined),
scm_list_3 (sym_h0, k_class, scm_class_int),
scm_list_3 (sym_h1, k_class, scm_class_int),
scm_list_3 (sym_h2, k_class, scm_class_int),
scm_list_3 (sym_h3, k_class, scm_class_int),
scm_list_3 (sym_h4, k_class, scm_class_int),
scm_list_3 (sym_h5, k_class, scm_class_int),
scm_list_3 (sym_h6, k_class, scm_class_int),
scm_list_3 (sym_h7, k_class, scm_class_int),
scm_list_1 (sym_direct_supers),
scm_list_1 (sym_direct_slots),
scm_list_1 (sym_direct_subclasses),
scm_list_1 (sym_direct_methods),
scm_list_1 (sym_cpl),
scm_list_1 (sym_default_slot_definition_class),
scm_list_1 (sym_slots),
scm_list_1 (sym_getters_n_setters),
scm_list_1 (sym_keyword_access),
scm_list_1 (sym_nfields),
SCM_UNDEFINED);
}
static void
create_basic_classes (void)
{
SCM cs = scm_from_locale_string (SCM_CLASS_CLASS_LAYOUT);
SCM name = scm_from_latin1_symbol ("<class>");
scm_class_class = scm_i_make_vtable_vtable (cs);
SCM_SET_CLASS_FLAGS (scm_class_class, (SCM_CLASSF_GOOPS_OR_VALID
| SCM_CLASSF_METACLASS));
SCM_SET_SLOT (scm_class_class, scm_vtable_index_name, name);
SCM_SET_SLOT (scm_class_class, scm_si_direct_supers, SCM_EOL);
SCM_SET_SLOT (scm_class_class, scm_si_direct_subclasses, SCM_EOL);
SCM_SET_SLOT (scm_class_class, scm_si_direct_methods, SCM_EOL);
SCM_SET_SLOT (scm_class_class, scm_si_cpl, SCM_EOL);
SCM_SET_SLOT (scm_class_class, scm_si_nfields, scm_from_int (SCM_N_CLASS_SLOTS));
SCM_SET_SLOT (scm_class_class, scm_si_redefined, SCM_BOOL_F);
prep_hashsets (scm_class_class);
DEFVAR(name, scm_class_class);
name = scm_from_latin1_symbol ("<top>");
scm_class_top = scm_basic_make_class (scm_class_class, name,
SCM_EOL, SCM_EOL);
DEFVAR(name, scm_class_top);
name = scm_from_latin1_symbol ("<object>");
scm_class_object = scm_basic_make_class (scm_class_class, name,
scm_list_1 (scm_class_top), SCM_EOL);
DEFVAR (name, scm_class_object);
SCM_SET_SLOT (scm_class_object, scm_si_direct_subclasses, scm_list_1 (scm_class_class));
SCM_SET_SLOT (scm_class_class, scm_si_direct_supers, scm_list_1 (scm_class_object));
SCM_SET_SLOT (scm_class_class, scm_si_cpl, scm_list_3 (scm_class_class, scm_class_object, scm_class_top));
}
SCM_DEFINE (scm_instance_p, "instance?", 1, 0, 0,
(SCM obj),
"Return @code{#t} if @var{obj} is an instance.")
#define FUNC_NAME s_scm_instance_p
{
return scm_from_bool (SCM_INSTANCEP (obj));
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_name, "class-name", 1, 0, 0,
(SCM obj),
"Return the class name of @var{obj}.")
#define FUNC_NAME s_scm_class_name
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref (obj, sym_name);
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_direct_supers, "class-direct-supers", 1, 0, 0,
(SCM obj),
"Return the direct superclasses of the class @var{obj}.")
#define FUNC_NAME s_scm_class_direct_supers
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref (obj, sym_direct_supers);
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_direct_slots, "class-direct-slots", 1, 0, 0,
(SCM obj),
"Return the direct slots of the class @var{obj}.")
#define FUNC_NAME s_scm_class_direct_slots
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref (obj, sym_direct_slots);
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_direct_subclasses, "class-direct-subclasses", 1, 0, 0,
(SCM obj),
"Return the direct subclasses of the class @var{obj}.")
#define FUNC_NAME s_scm_class_direct_subclasses
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref(obj, sym_direct_subclasses);
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_direct_methods, "class-direct-methods", 1, 0, 0,
(SCM obj),
"Return the direct methods of the class @var{obj}")
#define FUNC_NAME s_scm_class_direct_methods
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref (obj, sym_direct_methods);
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_precedence_list, "class-precedence-list", 1, 0, 0,
(SCM obj),
"Return the class precedence list of the class @var{obj}.")
#define FUNC_NAME s_scm_class_precedence_list
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref (obj, sym_cpl);
}
#undef FUNC_NAME
SCM_DEFINE (scm_class_slots, "class-slots", 1, 0, 0,
(SCM obj),
"Return the slot list of the class @var{obj}.")
#define FUNC_NAME s_scm_class_slots
{
SCM_VALIDATE_CLASS (1, obj);
return scm_slot_ref (obj, sym_slots);
}
#undef FUNC_NAME
SCM_DEFINE (scm_generic_function_name, "generic-function-name", 1, 0, 0,
(SCM obj),
"Return the name of the generic function @var{obj}.")
#define FUNC_NAME s_scm_generic_function_name
{
SCM_VALIDATE_GENERIC (1, obj);
return scm_procedure_property (obj, scm_sym_name);
}
#undef FUNC_NAME
SCM_SYMBOL (sym_methods, "methods");
SCM_SYMBOL (sym_extended_by, "extended-by");
SCM_SYMBOL (sym_extends, "extends");
static
SCM fold_downward_gf_methods (SCM method_lists, SCM gf)
{
SCM gfs = scm_slot_ref (gf, sym_extended_by);
method_lists = scm_cons (scm_slot_ref (gf, sym_methods), method_lists);
while (!scm_is_null (gfs))
{
method_lists = fold_downward_gf_methods (method_lists, SCM_CAR (gfs));
gfs = SCM_CDR (gfs);
}
return method_lists;
}
static
SCM fold_upward_gf_methods (SCM method_lists, SCM gf)
{
if (SCM_IS_A_P (gf, scm_class_extended_generic))
{
SCM gfs = scm_slot_ref (gf, sym_extends);
while (!scm_is_null (gfs))
{
SCM methods = scm_slot_ref (SCM_CAR (gfs), sym_methods);
method_lists = fold_upward_gf_methods (scm_cons (methods,
method_lists),
SCM_CAR (gfs));
gfs = SCM_CDR (gfs);
}
}
return method_lists;
}
SCM_DEFINE (scm_generic_function_methods, "generic-function-methods", 1, 0, 0,
(SCM obj),
"Return the methods of the generic function @var{obj}.")
#define FUNC_NAME s_scm_generic_function_methods
{
SCM methods;
SCM_VALIDATE_GENERIC (1, obj);
methods = fold_upward_gf_methods (SCM_EOL, obj);
methods = fold_downward_gf_methods (methods, obj);
return scm_append (methods);
}
#undef FUNC_NAME
SCM_DEFINE (scm_method_generic_function, "method-generic-function", 1, 0, 0,
(SCM obj),
"Return the generic function for the method @var{obj}.")
#define FUNC_NAME s_scm_method_generic_function
{
SCM_VALIDATE_METHOD (1, obj);
return scm_slot_ref (obj, scm_from_latin1_symbol ("generic-function"));
}
#undef FUNC_NAME
SCM_DEFINE (scm_method_specializers, "method-specializers", 1, 0, 0,
(SCM obj),
"Return specializers of the method @var{obj}.")
#define FUNC_NAME s_scm_method_specializers
{
SCM_VALIDATE_METHOD (1, obj);
return scm_slot_ref (obj, scm_from_latin1_symbol ("specializers"));
}
#undef FUNC_NAME
SCM_DEFINE (scm_method_procedure, "method-procedure", 1, 0, 0,
(SCM obj),
"Return the procedure of the method @var{obj}.")
#define FUNC_NAME s_scm_method_procedure
{
SCM_VALIDATE_METHOD (1, obj);
return scm_slot_ref (obj, sym_procedure);
}
#undef FUNC_NAME
SCM_DEFINE (scm_make_unbound, "make-unbound", 0, 0, 0,
(),
"Return the unbound value.")
#define FUNC_NAME s_scm_make_unbound
{
return SCM_GOOPS_UNBOUND;
}
#undef FUNC_NAME
SCM_DEFINE (scm_unbound_p, "unbound?", 1, 0, 0,
(SCM obj),
"Return @code{#t} if @var{obj} is unbound.")
#define FUNC_NAME s_scm_unbound_p
{
return SCM_GOOPS_UNBOUNDP (obj) ? SCM_BOOL_T : SCM_BOOL_F;
}
#undef FUNC_NAME
SCM_DEFINE (scm_assert_bound, "assert-bound", 2, 0, 0,
(SCM value, SCM obj),
"Return @var{value} if it is bound, and invoke the\n"
"@var{slot-unbound} method of @var{obj} if it is not.")
#define FUNC_NAME s_scm_assert_bound
{
if (SCM_GOOPS_UNBOUNDP (value))
return scm_call_1 (SCM_VARIABLE_REF (var_slot_unbound), obj);
return value;
}
#undef FUNC_NAME
SCM_DEFINE (scm_at_assert_bound_ref, "@assert-bound-ref", 2, 0, 0,
(SCM obj, SCM index),
"Like @code{assert-bound}, but use @var{index} for accessing\n"
"the value from @var{obj}.")
#define FUNC_NAME s_scm_at_assert_bound_ref
{
SCM value = SCM_SLOT (obj, scm_to_int (index));
if (SCM_GOOPS_UNBOUNDP (value))
return scm_call_1 (SCM_VARIABLE_REF (var_slot_unbound), obj);
return value;
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_fast_slot_ref, "%fast-slot-ref", 2, 0, 0,
(SCM obj, SCM index),
"Return the slot value with index @var{index} from @var{obj}.")
#define FUNC_NAME s_scm_sys_fast_slot_ref
{
scm_t_bits i;
SCM_VALIDATE_INSTANCE (1, obj);
i = scm_to_unsigned_integer (index, 0,
SCM_I_INUM (SCM_SLOT (SCM_CLASS_OF (obj),
scm_si_nfields))
- 1);
return SCM_SLOT (obj, i);
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_fast_slot_set_x, "%fast-slot-set!", 3, 0, 0,
(SCM obj, SCM index, SCM value),
"Set the slot with index @var{index} in @var{obj} to\n"
"@var{value}.")
#define FUNC_NAME s_scm_sys_fast_slot_set_x
{
scm_t_bits i;
SCM_VALIDATE_INSTANCE (1, obj);
i = scm_to_unsigned_integer (index, 0,
SCM_I_INUM (SCM_SLOT (SCM_CLASS_OF (obj),
scm_si_nfields))
- 1);
SCM_SET_SLOT (obj, i, value);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
static SCM
slot_definition_using_name (SCM class, SCM slot_name)
{
register SCM slots = SCM_SLOT (class, scm_si_getters_n_setters);
for (; !scm_is_null (slots); slots = SCM_CDR (slots))
if (scm_is_eq (SCM_CAAR (slots), slot_name))
return SCM_CAR (slots);
return SCM_BOOL_F;
}
static SCM
get_slot_value (SCM class SCM_UNUSED, SCM obj, SCM slotdef)
#define FUNC_NAME "%get-slot-value"
{
SCM access = SCM_CDDR (slotdef);
if (SCM_I_INUMP (access))
return scm_struct_ref (obj, access);
else
return scm_call_1 (SCM_CAR (access), obj);
}
#undef FUNC_NAME
static SCM
get_slot_value_using_name (SCM class, SCM obj, SCM slot_name)
{
SCM slotdef = slot_definition_using_name (class, slot_name);
if (scm_is_true (slotdef))
return get_slot_value (class, obj, slotdef);
else
return scm_call_3 (SCM_VARIABLE_REF (var_slot_missing), class, obj, slot_name);
}
static SCM
set_slot_value (SCM class SCM_UNUSED, SCM obj, SCM slotdef, SCM value)
#define FUNC_NAME "%set-slot-value"
{
SCM access = SCM_CDDR (slotdef);
if (SCM_I_INUMP (access))
scm_struct_set_x (obj, access, value);
else
scm_call_2 (SCM_CADR (access), obj, value);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
static SCM
set_slot_value_using_name (SCM class, SCM obj, SCM slot_name, SCM value)
{
SCM slotdef = slot_definition_using_name (class, slot_name);
if (scm_is_true (slotdef))
return set_slot_value (class, obj, slotdef, value);
else
return scm_call_4 (SCM_VARIABLE_REF (var_slot_missing), class, obj, slot_name, value);
}
static SCM
test_slot_existence (SCM class SCM_UNUSED, SCM obj, SCM slot_name)
{
register SCM l;
for (l = SCM_ACCESSORS_OF (obj); !scm_is_null (l); l = SCM_CDR (l))
if (scm_is_eq (SCM_CAAR (l), slot_name))
return SCM_BOOL_T;
return SCM_BOOL_F;
}
SCM_DEFINE (scm_slot_ref_using_class, "slot-ref-using-class", 3, 0, 0,
(SCM class, SCM obj, SCM slot_name),
"")
#define FUNC_NAME s_scm_slot_ref_using_class
{
SCM res;
SCM_VALIDATE_CLASS (1, class);
SCM_VALIDATE_INSTANCE (2, obj);
SCM_VALIDATE_SYMBOL (3, slot_name);
res = get_slot_value_using_name (class, obj, slot_name);
if (SCM_GOOPS_UNBOUNDP (res))
return scm_call_3 (SCM_VARIABLE_REF (var_slot_unbound), class, obj, slot_name);
return res;
}
#undef FUNC_NAME
SCM_DEFINE (scm_slot_set_using_class_x, "slot-set-using-class!", 4, 0, 0,
(SCM class, SCM obj, SCM slot_name, SCM value),
"")
#define FUNC_NAME s_scm_slot_set_using_class_x
{
SCM_VALIDATE_CLASS (1, class);
SCM_VALIDATE_INSTANCE (2, obj);
SCM_VALIDATE_SYMBOL (3, slot_name);
return set_slot_value_using_name (class, obj, slot_name, value);
}
#undef FUNC_NAME
SCM_DEFINE (scm_slot_bound_using_class_p, "slot-bound-using-class?", 3, 0, 0,
(SCM class, SCM obj, SCM slot_name),
"")
#define FUNC_NAME s_scm_slot_bound_using_class_p
{
SCM_VALIDATE_CLASS (1, class);
SCM_VALIDATE_INSTANCE (2, obj);
SCM_VALIDATE_SYMBOL (3, slot_name);
return (SCM_GOOPS_UNBOUNDP (get_slot_value_using_name (class, obj, slot_name))
? SCM_BOOL_F
: SCM_BOOL_T);
}
#undef FUNC_NAME
SCM_DEFINE (scm_slot_exists_using_class_p, "slot-exists-using-class?", 3, 0, 0,
(SCM class, SCM obj, SCM slot_name),
"")
#define FUNC_NAME s_scm_slot_exists_using_class_p
{
SCM_VALIDATE_CLASS (1, class);
SCM_VALIDATE_INSTANCE (2, obj);
SCM_VALIDATE_SYMBOL (3, slot_name);
return test_slot_existence (class, obj, slot_name);
}
#undef FUNC_NAME
SCM_DEFINE (scm_slot_ref, "slot-ref", 2, 0, 0,
(SCM obj, SCM slot_name),
"Return the value from @var{obj}'s slot with the name\n"
"@var{slot_name}.")
#define FUNC_NAME s_scm_slot_ref
{
SCM res, class;
SCM_VALIDATE_INSTANCE (1, obj);
TEST_CHANGE_CLASS (obj, class);
res = get_slot_value_using_name (class, obj, slot_name);
if (SCM_GOOPS_UNBOUNDP (res))
return scm_call_3 (SCM_VARIABLE_REF (var_slot_unbound), class, obj, slot_name);
return res;
}
#undef FUNC_NAME
SCM_DEFINE (scm_slot_set_x, "slot-set!", 3, 0, 0,
(SCM obj, SCM slot_name, SCM value),
"Set the slot named @var{slot_name} of @var{obj} to @var{value}.")
#define FUNC_NAME s_scm_slot_set_x
{
SCM class;
SCM_VALIDATE_INSTANCE (1, obj);
TEST_CHANGE_CLASS(obj, class);
return set_slot_value_using_name (class, obj, slot_name, value);
}
#undef FUNC_NAME
const char *scm_s_slot_set_x = s_scm_slot_set_x;
SCM_DEFINE (scm_slot_bound_p, "slot-bound?", 2, 0, 0,
(SCM obj, SCM slot_name),
"Return @code{#t} if the slot named @var{slot_name} of @var{obj}\n"
"is bound.")
#define FUNC_NAME s_scm_slot_bound_p
{
SCM class;
SCM_VALIDATE_INSTANCE (1, obj);
TEST_CHANGE_CLASS(obj, class);
return (SCM_GOOPS_UNBOUNDP (get_slot_value_using_name (class,
obj,
slot_name))
? SCM_BOOL_F
: SCM_BOOL_T);
}
#undef FUNC_NAME
SCM_DEFINE (scm_slot_exists_p, "slot-exists?", 2, 0, 0,
(SCM obj, SCM slot_name),
"Return @code{#t} if @var{obj} has a slot named @var{slot_name}.")
#define FUNC_NAME s_scm_slot_exists_p
{
SCM class;
SCM_VALIDATE_INSTANCE (1, obj);
SCM_VALIDATE_SYMBOL (2, slot_name);
TEST_CHANGE_CLASS (obj, class);
return test_slot_existence (class, obj, slot_name);
}
#undef FUNC_NAME
static void clear_method_cache (SCM);
SCM_DEFINE (scm_sys_allocate_instance, "%allocate-instance", 2, 0, 0,
(SCM class, SCM initargs),
"Create a new instance of class @var{class} and initialize it\n"
"from the arguments @var{initargs}.")
#define FUNC_NAME s_scm_sys_allocate_instance
{
SCM obj;
scm_t_signed_bits n, i;
SCM layout;
SCM_VALIDATE_CLASS (1, class);
n = SCM_I_INUM (SCM_SLOT (class, scm_si_nfields));
obj = scm_i_alloc_struct (SCM_STRUCT_DATA (class), n);
layout = SCM_VTABLE_LAYOUT (class);
for (i = 0; i < n; i++)
{
scm_t_wchar c = scm_i_symbol_ref (layout, i*2);
if (c == 'p')
SCM_STRUCT_DATA (obj)[i] = SCM_UNPACK (SCM_GOOPS_UNBOUND);
else if (c == 's')
SCM_STRUCT_DATA (obj)[i] = SCM_UNPACK (obj);
else
SCM_STRUCT_DATA (obj)[i] = 0;
}
if (SCM_CLASS_FLAGS (class) & SCM_CLASSF_PURE_GENERIC)
clear_method_cache (obj);
return obj;
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_set_object_setter_x, "%set-object-setter!", 2, 0, 0,
(SCM obj, SCM setter),
"")
#define FUNC_NAME s_scm_sys_set_object_setter_x
{
SCM_ASSERT (SCM_STRUCTP (obj)
&& (SCM_OBJ_CLASS_FLAGS (obj) & SCM_CLASSF_PURE_GENERIC),
obj,
SCM_ARG1,
FUNC_NAME);
SCM_SET_GENERIC_SETTER (obj, setter);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_modify_instance, "%modify-instance", 2, 0, 0,
(SCM old, SCM new),
"")
#define FUNC_NAME s_scm_sys_modify_instance
{
SCM_VALIDATE_INSTANCE (1, old);
SCM_VALIDATE_INSTANCE (2, new);
SCM_CRITICAL_SECTION_START;
{
scm_t_bits word0, word1;
word0 = SCM_CELL_WORD_0 (old);
word1 = SCM_CELL_WORD_1 (old);
SCM_SET_CELL_WORD_0 (old, SCM_CELL_WORD_0 (new));
SCM_SET_CELL_WORD_1 (old, SCM_CELL_WORD_1 (new));
SCM_SET_CELL_WORD_0 (new, word0);
SCM_SET_CELL_WORD_1 (new, word1);
}
SCM_CRITICAL_SECTION_END;
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_modify_class, "%modify-class", 2, 0, 0,
(SCM old, SCM new),
"")
#define FUNC_NAME s_scm_sys_modify_class
{
SCM_VALIDATE_CLASS (1, old);
SCM_VALIDATE_CLASS (2, new);
SCM_CRITICAL_SECTION_START;
{
scm_t_bits word0, word1;
word0 = SCM_CELL_WORD_0 (old);
word1 = SCM_CELL_WORD_1 (old);
SCM_SET_CELL_WORD_0 (old, SCM_CELL_WORD_0 (new));
SCM_SET_CELL_WORD_1 (old, SCM_CELL_WORD_1 (new));
SCM_STRUCT_DATA (old)[scm_vtable_index_self] = SCM_UNPACK (old);
SCM_SET_CELL_WORD_0 (new, word0);
SCM_SET_CELL_WORD_1 (new, word1);
SCM_STRUCT_DATA (new)[scm_vtable_index_self] = SCM_UNPACK (new);
}
SCM_CRITICAL_SECTION_END;
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_invalidate_class, "%invalidate-class", 1, 0, 0,
(SCM class),
"")
#define FUNC_NAME s_scm_sys_invalidate_class
{
SCM_VALIDATE_CLASS (1, class);
SCM_CLEAR_CLASS_FLAGS (class, SCM_CLASSF_GOOPS_VALID);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
static scm_t_bits **hell;
static long n_hell = 1;
static long hell_size = 4;
static SCM hell_mutex;
static long
burnin (SCM o)
{
long i;
for (i = 1; i < n_hell; ++i)
if (SCM_STRUCT_DATA (o) == hell[i])
return i;
return 0;
}
static void
go_to_hell (void *o)
{
SCM obj = *(SCM*)o;
scm_lock_mutex (hell_mutex);
if (n_hell >= hell_size)
{
hell_size *= 2;
hell = scm_realloc (hell, hell_size * sizeof(*hell));
}
hell[n_hell++] = SCM_STRUCT_DATA (obj);
scm_unlock_mutex (hell_mutex);
}
static void
go_to_heaven (void *o)
{
SCM obj = *(SCM*)o;
scm_lock_mutex (hell_mutex);
hell[burnin (obj)] = hell[--n_hell];
scm_unlock_mutex (hell_mutex);
}
SCM_SYMBOL (scm_sym_change_class, "change-class");
static SCM
purgatory (SCM obj, SCM new_class)
{
return scm_call_2 (SCM_VARIABLE_REF (var_change_class), obj, new_class);
}
void
scm_change_object_class (SCM obj, SCM old_class SCM_UNUSED, SCM new_class)
{
if (!burnin (obj))
{
scm_dynwind_begin (SCM_F_DYNWIND_REWINDABLE);
scm_dynwind_rewind_handler (go_to_hell, &obj, SCM_F_WIND_EXPLICITLY);
scm_dynwind_unwind_handler (go_to_heaven, &obj, SCM_F_WIND_EXPLICITLY);
purgatory (obj, new_class);
scm_dynwind_end ();
}
}
SCM_KEYWORD (k_name, "name");
SCM_GLOBAL_SYMBOL (scm_sym_args, "args");
SCM
scm_apply_generic (SCM gf, SCM args)
{
return scm_apply (SCM_STRUCT_PROCEDURE (gf), args, SCM_EOL);
}
SCM
scm_call_generic_0 (SCM gf)
{
return scm_call_0 (SCM_STRUCT_PROCEDURE (gf));
}
SCM
scm_call_generic_1 (SCM gf, SCM a1)
{
return scm_call_1 (SCM_STRUCT_PROCEDURE (gf), a1);
}
SCM
scm_call_generic_2 (SCM gf, SCM a1, SCM a2)
{
return scm_call_2 (SCM_STRUCT_PROCEDURE (gf), a1, a2);
}
SCM
scm_call_generic_3 (SCM gf, SCM a1, SCM a2, SCM a3)
{
return scm_call_3 (SCM_STRUCT_PROCEDURE (gf), a1, a2, a3);
}
static SCM delayed_compile_var;
static void
init_delayed_compile_var (void)
{
delayed_compile_var
= scm_c_private_lookup ("oop goops dispatch", "delayed-compile");
}
static SCM
make_dispatch_procedure (SCM gf)
{
static scm_i_pthread_once_t once = SCM_I_PTHREAD_ONCE_INIT;
scm_i_pthread_once (&once, init_delayed_compile_var);
return scm_call_1 (scm_variable_ref (delayed_compile_var), gf);
}
static void
clear_method_cache (SCM gf)
{
SCM_SET_GENERIC_DISPATCH_PROCEDURE (gf, make_dispatch_procedure (gf));
SCM_CLEAR_GENERIC_EFFECTIVE_METHODS (gf);
}
SCM_DEFINE (scm_sys_invalidate_method_cache_x, "%invalidate-method-cache!", 1, 0, 0,
(SCM gf),
"")
#define FUNC_NAME s_scm_sys_invalidate_method_cache_x
{
SCM_ASSERT (SCM_PUREGENERICP (gf), gf, SCM_ARG1, FUNC_NAME);
clear_method_cache (gf);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_generic_capability_p, "generic-capability?", 1, 0, 0,
(SCM proc),
"")
#define FUNC_NAME s_scm_generic_capability_p
{
SCM_ASSERT (scm_is_true (scm_procedure_p (proc)),
proc, SCM_ARG1, FUNC_NAME);
return (SCM_PRIMITIVE_GENERIC_P (proc) ? SCM_BOOL_T : SCM_BOOL_F);
}
#undef FUNC_NAME
SCM_DEFINE (scm_enable_primitive_generic_x, "enable-primitive-generic!", 0, 0, 1,
(SCM subrs),
"")
#define FUNC_NAME s_scm_enable_primitive_generic_x
{
SCM_VALIDATE_REST_ARGUMENT (subrs);
while (!scm_is_null (subrs))
{
SCM subr = SCM_CAR (subrs);
SCM_ASSERT (SCM_PRIMITIVE_GENERIC_P (subr), subr, SCM_ARGn, FUNC_NAME);
SCM_SET_SUBR_GENERIC (subr,
scm_make (scm_list_3 (scm_class_generic,
k_name,
SCM_SUBR_NAME (subr))));
subrs = SCM_CDR (subrs);
}
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_set_primitive_generic_x, "set-primitive-generic!", 2, 0, 0,
(SCM subr, SCM generic),
"")
#define FUNC_NAME s_scm_set_primitive_generic_x
{
SCM_ASSERT (SCM_PRIMITIVE_GENERIC_P (subr), subr, SCM_ARG1, FUNC_NAME);
SCM_ASSERT (SCM_PUREGENERICP (generic), generic, SCM_ARG2, FUNC_NAME);
SCM_SET_SUBR_GENERIC (subr, generic);
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM_DEFINE (scm_primitive_generic_generic, "primitive-generic-generic", 1, 0, 0,
(SCM subr),
"")
#define FUNC_NAME s_scm_primitive_generic_generic
{
if (SCM_PRIMITIVE_GENERIC_P (subr))
{
if (!SCM_UNPACK (*SCM_SUBR_GENERIC (subr)))
scm_enable_primitive_generic_x (scm_list_1 (subr));
return *SCM_SUBR_GENERIC (subr);
}
SCM_WRONG_TYPE_ARG (SCM_ARG1, subr);
}
#undef FUNC_NAME
typedef struct t_extension {
struct t_extension *next;
SCM extended;
SCM extension;
} t_extension;
static const char extension_gc_hint[] = "GOOPS extension";
static t_extension *extensions = 0;
void
scm_c_extend_primitive_generic (SCM extended, SCM extension)
{
if (goops_loaded_p)
{
SCM gf, gext;
if (!SCM_UNPACK (*SCM_SUBR_GENERIC (extended)))
scm_enable_primitive_generic_x (scm_list_1 (extended));
gf = *SCM_SUBR_GENERIC (extended);
gext = scm_call_2 (SCM_VARIABLE_REF (scm_var_make_extended_generic),
gf,
SCM_SUBR_NAME (extension));
SCM_SET_SUBR_GENERIC (extension, gext);
}
else
{
t_extension *e = scm_gc_malloc (sizeof (t_extension),
extension_gc_hint);
t_extension **loc = &extensions;
while (*loc && !scm_is_eq (extension, (*loc)->extended))
loc = &(*loc)->next;
e->next = *loc;
e->extended = extended;
e->extension = extension;
*loc = e;
}
}
static void
setup_extended_primitive_generics ()
{
while (extensions)
{
t_extension *e = extensions;
scm_c_extend_primitive_generic (e->extended, e->extension);
extensions = e->next;
}
}
static int
applicablep (SCM actual, SCM formal)
{
return scm_is_true (scm_c_memq (formal, SCM_SLOT (actual, scm_si_cpl)));
}
static int
more_specificp (SCM m1, SCM m2, SCM const *targs)
{
register SCM s1, s2;
register long i;
for (i=0, s1=SPEC_OF(m1), s2=SPEC_OF(m2); ; i++, s1=SCM_CDR(s1), s2=SCM_CDR(s2)) {
if (scm_is_null(s1)) return 1;
if (scm_is_null(s2)) return 0;
if (!scm_is_eq (SCM_CAR(s1), SCM_CAR(s2))) {
register SCM l, cs1 = SCM_CAR(s1), cs2 = SCM_CAR(s2);
for (l = SCM_SLOT (targs[i], scm_si_cpl); ; l = SCM_CDR(l)) {
if (scm_is_eq (cs1, SCM_CAR (l)))
return 1;
if (scm_is_eq (cs2, SCM_CAR (l)))
return 0;
}
return 0;
}
}
return 0;
}
#define BUFFSIZE 32
static SCM
scm_i_vector2list (SCM l, long len)
{
long j;
SCM z = scm_c_make_vector (len, SCM_UNDEFINED);
for (j = 0; j < len; j++, l = SCM_CDR (l)) {
SCM_SIMPLE_VECTOR_SET (z, j, SCM_CAR (l));
}
return z;
}
static SCM
sort_applicable_methods (SCM method_list, long size, SCM const *targs)
{
long i, j, incr;
SCM *v, vector = SCM_EOL;
SCM buffer[BUFFSIZE];
SCM save = method_list;
scm_t_array_handle handle;
if (size <= BUFFSIZE)
{
for (i = 0; i < size; i++)
{
buffer[i] = SCM_CAR (method_list);
method_list = SCM_CDR (method_list);
}
v = buffer;
}
else
{
vector = scm_i_vector2list (save, size);
v = scm_vector_writable_elements (vector, &handle, NULL, NULL);
}
for (incr = size / 2; incr; incr /= 2)
{
for (i = incr; i < size; i++)
{
for (j = i - incr; j >= 0; j -= incr)
{
if (more_specificp (v[j], v[j+incr], targs))
break;
else
{
SCM tmp = v[j + incr];
v[j + incr] = v[j];
v[j] = tmp;
}
}
}
}
if (size <= BUFFSIZE)
{
for (i = 0, method_list = save; i < size; i++, v++)
{
SCM_SETCAR (method_list, *v);
method_list = SCM_CDR (method_list);
}
return save;
}
scm_array_handle_release (&handle);
return scm_vector_to_list (vector);
}
SCM
scm_compute_applicable_methods (SCM gf, SCM args, long len, int find_method_p)
{
register long i;
long count = 0;
SCM l, fl, applicable = SCM_EOL;
SCM save = args;
SCM buffer[BUFFSIZE];
SCM const *types;
SCM *p;
SCM tmp = SCM_EOL;
scm_t_array_handle handle;
if (len >= BUFFSIZE)
{
tmp = scm_c_make_vector (len, SCM_UNDEFINED);
types = p = scm_vector_writable_elements (tmp, &handle, NULL, NULL);
}
else
types = p = buffer;
for ( ; !scm_is_null (args); args = SCM_CDR (args))
*p++ = scm_class_of (SCM_CAR (args));
for (l = scm_generic_function_methods (gf); !scm_is_null (l); l = SCM_CDR (l))
{
fl = SPEC_OF (SCM_CAR (l));
for (i = 0; ; i++, fl = SCM_CDR (fl))
{
if (SCM_INSTANCEP (fl)
|| (i >= len && scm_is_null (fl)))
{
applicable = scm_cons (SCM_CAR (l), applicable);
count += 1;
break;
}
if (i >= len
|| scm_is_null (fl)
|| !applicablep (types[i], SCM_CAR (fl)))
break;
}
}
if (len >= BUFFSIZE)
scm_array_handle_release (&handle);
if (count == 0)
{
if (find_method_p)
return SCM_BOOL_F;
scm_call_2 (SCM_VARIABLE_REF (var_no_applicable_method), gf, save);
return SCM_BOOL_F;
}
return (count == 1
? applicable
: sort_applicable_methods (applicable, count, types));
}
#if 0#endif
static const char s_sys_compute_applicable_methods[] = "%compute-applicable-methods";
SCM
scm_sys_compute_applicable_methods (SCM gf, SCM args)
#define FUNC_NAME s_sys_compute_applicable_methods
{
long n;
SCM_VALIDATE_GENERIC (1, gf);
n = scm_ilength (args);
SCM_ASSERT (n >= 0, args, SCM_ARG2, FUNC_NAME);
return scm_compute_applicable_methods (gf, args, n, 1);
}
#undef FUNC_NAME
SCM_SYMBOL (sym_compute_applicable_methods, "compute-applicable-methods");
SCM_VARIABLE_INIT (var_compute_applicable_methods, "compute-applicable-methods",
scm_c_define_gsubr (s_sys_compute_applicable_methods, 2, 0, 0,
scm_sys_compute_applicable_methods));
SCM_KEYWORD (k_setter, "setter");
SCM_KEYWORD (k_specializers, "specializers");
SCM_KEYWORD (k_procedure, "procedure");
SCM_KEYWORD (k_formals, "formals");
SCM_KEYWORD (k_body, "body");
SCM_KEYWORD (k_make_procedure, "make-procedure");
SCM_KEYWORD (k_dsupers, "dsupers");
SCM_KEYWORD (k_slots, "slots");
SCM_KEYWORD (k_gf, "generic-function");
SCM_DEFINE (scm_make, "make", 0, 0, 1,
(SCM args),
"Make a new object. @var{args} must contain the class and\n"
"all necessary initialization information.")
#define FUNC_NAME s_scm_make
{
SCM class, z;
long len = scm_ilength (args);
if (len <= 0 || (len & 1) == 0)
SCM_WRONG_NUM_ARGS ();
class = SCM_CAR(args);
args = SCM_CDR(args);
if (scm_is_eq (class, scm_class_generic)
|| scm_is_eq (class, scm_class_accessor))
{
z = scm_make_struct (class, SCM_INUM0,
scm_list_4 (SCM_BOOL_F,
SCM_EOL,
SCM_INUM0,
SCM_EOL));
scm_set_procedure_property_x (z, scm_sym_name,
scm_get_keyword (k_name,
args,
SCM_BOOL_F));
clear_method_cache (z);
if (scm_is_eq (class, scm_class_accessor))
{
SCM setter = scm_get_keyword (k_setter, args, SCM_BOOL_F);
if (scm_is_true (setter))
scm_sys_set_object_setter_x (z, setter);
}
}
else
{
z = scm_sys_allocate_instance (class, args);
if (scm_is_eq (class, scm_class_method)
|| scm_is_eq (class, scm_class_accessor_method))
{
SCM_SET_SLOT (z, scm_si_generic_function,
scm_i_get_keyword (k_gf,
args,
len - 1,
SCM_BOOL_F,
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_specializers,
scm_i_get_keyword (k_specializers,
args,
len - 1,
SCM_EOL,
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_procedure,
scm_i_get_keyword (k_procedure,
args,
len - 1,
SCM_BOOL_F,
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_formals,
scm_i_get_keyword (k_formals,
args,
len - 1,
SCM_EOL,
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_body,
scm_i_get_keyword (k_body,
args,
len - 1,
SCM_EOL,
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_make_procedure,
scm_i_get_keyword (k_make_procedure,
args,
len - 1,
SCM_BOOL_F,
FUNC_NAME));
}
else
{
SCM_SET_SLOT (z, scm_vtable_index_name,
scm_i_get_keyword (k_name,
args,
len - 1,
scm_from_latin1_symbol ("???"),
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_direct_supers,
scm_i_get_keyword (k_dsupers,
args,
len - 1,
SCM_EOL,
FUNC_NAME));
SCM_SET_SLOT (z, scm_si_direct_slots,
scm_i_get_keyword (k_slots,
args,
len - 1,
SCM_EOL,
FUNC_NAME));
}
}
return z;
}
#undef FUNC_NAME
SCM_DEFINE (scm_find_method, "find-method", 0, 0, 1,
(SCM l),
"")
#define FUNC_NAME s_scm_find_method
{
SCM gf;
long len = scm_ilength (l);
if (len == 0)
SCM_WRONG_NUM_ARGS ();
gf = SCM_CAR(l); l = SCM_CDR(l);
SCM_VALIDATE_GENERIC (1, gf);
if (scm_is_null (SCM_SLOT (gf, scm_si_methods)))
SCM_MISC_ERROR ("no methods for generic ~S", scm_list_1 (gf));
return scm_compute_applicable_methods (gf, l, len - 1, 1);
}
#undef FUNC_NAME
SCM_DEFINE (scm_sys_method_more_specific_p, "%method-more-specific?", 3, 0, 0,
(SCM m1, SCM m2, SCM targs),
"Return true if method @var{m1} is more specific than @var{m2} "
"given the argument types (classes) listed in @var{targs}.")
#define FUNC_NAME s_scm_sys_method_more_specific_p
{
SCM l, v, result;
SCM *v_elts;
long i, len, m1_specs, m2_specs;
scm_t_array_handle handle;
SCM_VALIDATE_METHOD (1, m1);
SCM_VALIDATE_METHOD (2, m2);
len = scm_ilength (targs);
m1_specs = scm_ilength (SPEC_OF (m1));
m2_specs = scm_ilength (SPEC_OF (m2));
SCM_ASSERT ((len >= m1_specs) || (len >= m2_specs),
targs, SCM_ARG3, FUNC_NAME);
v = scm_c_make_vector (len, SCM_EOL);
v_elts = scm_vector_writable_elements (v, &handle, NULL, NULL);
for (i = 0, l = targs;
i < len && scm_is_pair (l);
i++, l = SCM_CDR (l))
{
SCM_ASSERT (SCM_CLASSP (SCM_CAR (l)), targs, SCM_ARG3, FUNC_NAME);
v_elts[i] = SCM_CAR (l);
}
result = more_specificp (m1, m2, v_elts) ? SCM_BOOL_T: SCM_BOOL_F;
scm_array_handle_release (&handle);
return result;
}
#undef FUNC_NAME
static void
fix_cpl (SCM c, SCM before, SCM after)
{
SCM cpl = SCM_SLOT (c, scm_si_cpl);
SCM ls = scm_c_memq (after, cpl);
SCM tail;
if (scm_is_false (ls))
abort ();
tail = scm_delq1_x (before, SCM_CDR (ls));
SCM_SETCAR (ls, before);
SCM_SETCDR (ls, scm_cons (after, tail));
{
SCM dslots = SCM_SLOT (c, scm_si_direct_slots);
SCM slots = build_slots_list (maplist (dslots), cpl);
SCM g_n_s = compute_getters_n_setters (slots);
SCM_SET_SLOT (c, scm_si_slots, slots);
SCM_SET_SLOT (c, scm_si_getters_n_setters, g_n_s);
}
}
static void
make_stdcls (SCM *var, char *name, SCM meta, SCM super, SCM slots)
{
SCM tmp = scm_from_locale_symbol (name);
*var = scm_basic_make_class (meta, tmp,
scm_is_pair (super) ? super : scm_list_1 (super),
slots);
DEFVAR(tmp, *var);
}
SCM_KEYWORD (k_slot_definition, "slot-definition");
static void
create_standard_classes (void)
{
SCM slots;
SCM method_slots = scm_list_n (scm_from_latin1_symbol ("generic-function"),
scm_from_latin1_symbol ("specializers"),
sym_procedure,
scm_from_latin1_symbol ("formals"),
scm_from_latin1_symbol ("body"),
scm_from_latin1_symbol ("make-procedure"),
SCM_UNDEFINED);
SCM amethod_slots = scm_list_1 (scm_list_3 (scm_from_latin1_symbol ("slot-definition"),
k_init_keyword,
k_slot_definition));
SCM gf_slots = scm_list_4 (scm_from_latin1_symbol ("methods"),
scm_list_3 (scm_from_latin1_symbol ("n-specialized"),
k_init_value,
SCM_INUM0),
scm_list_3 (scm_from_latin1_symbol ("extended-by"),
k_init_value,
SCM_EOL),
scm_from_latin1_symbol ("effective-methods"));
SCM setter_slots = scm_list_1 (sym_setter);
SCM egf_slots = scm_list_1 (scm_list_3 (scm_from_latin1_symbol ("extends"),
k_init_value,
SCM_EOL));
make_stdcls (&scm_class_foreign_slot, "<foreign-slot>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_protected, "<protected-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
make_stdcls (&scm_class_hidden, "<hidden-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
make_stdcls (&scm_class_opaque, "<opaque-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
make_stdcls (&scm_class_read_only, "<read-only-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
make_stdcls (&scm_class_self, "<self-slot>",
scm_class_class, scm_class_read_only, SCM_EOL);
make_stdcls (&scm_class_protected_opaque, "<protected-opaque-slot>",
scm_class_class,
scm_list_2 (scm_class_protected, scm_class_opaque),
SCM_EOL);
make_stdcls (&scm_class_protected_hidden, "<protected-hidden-slot>",
scm_class_class,
scm_list_2 (scm_class_protected, scm_class_hidden),
SCM_EOL);
make_stdcls (&scm_class_protected_read_only, "<protected-read-only-slot>",
scm_class_class,
scm_list_2 (scm_class_protected, scm_class_read_only),
SCM_EOL);
make_stdcls (&scm_class_scm, "<scm-slot>",
scm_class_class, scm_class_protected, SCM_EOL);
make_stdcls (&scm_class_int, "<int-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
make_stdcls (&scm_class_float, "<float-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
make_stdcls (&scm_class_double, "<double-slot>",
scm_class_class, scm_class_foreign_slot, SCM_EOL);
slots = build_class_class_slots ();
SCM_SET_SLOT (scm_class_class, scm_si_direct_slots, slots);
SCM_SET_SLOT (scm_class_class, scm_si_slots, slots);
SCM_SET_SLOT (scm_class_class, scm_si_getters_n_setters,
compute_getters_n_setters (slots));
make_stdcls (&scm_class_procedure_class, "<procedure-class>",
scm_class_class, scm_class_class, SCM_EOL);
make_stdcls (&scm_class_applicable_struct_class, "<applicable-struct-class>",
scm_class_class, scm_class_procedure_class, SCM_EOL);
SCM_SET_VTABLE_FLAGS (scm_class_applicable_struct_class, SCM_VTABLE_FLAG_APPLICABLE_VTABLE);
make_stdcls (&scm_class_method, "<method>",
scm_class_class, scm_class_object, method_slots);
make_stdcls (&scm_class_accessor_method, "<accessor-method>",
scm_class_class, scm_class_method, amethod_slots);
make_stdcls (&scm_class_applicable, "<applicable>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_applicable_struct, "<applicable-struct>",
scm_class_applicable_struct_class,
scm_list_2 (scm_class_object, scm_class_applicable),
scm_list_1 (sym_procedure));
make_stdcls (&scm_class_generic, "<generic>",
scm_class_applicable_struct_class, scm_class_applicable_struct, gf_slots);
SCM_SET_CLASS_FLAGS (scm_class_generic, SCM_CLASSF_PURE_GENERIC);
make_stdcls (&scm_class_extended_generic, "<extended-generic>",
scm_class_applicable_struct_class, scm_class_generic, egf_slots);
SCM_SET_CLASS_FLAGS (scm_class_extended_generic, SCM_CLASSF_PURE_GENERIC);
make_stdcls (&scm_class_generic_with_setter, "<generic-with-setter>",
scm_class_applicable_struct_class, scm_class_generic, setter_slots);
SCM_SET_CLASS_FLAGS (scm_class_generic_with_setter, SCM_CLASSF_PURE_GENERIC);
make_stdcls (&scm_class_accessor, "<accessor>",
scm_class_applicable_struct_class, scm_class_generic_with_setter, SCM_EOL);
SCM_SET_CLASS_FLAGS (scm_class_accessor, SCM_CLASSF_PURE_GENERIC);
make_stdcls (&scm_class_extended_generic_with_setter,
"<extended-generic-with-setter>",
scm_class_applicable_struct_class,
scm_list_2 (scm_class_extended_generic,
scm_class_generic_with_setter),
SCM_EOL);
SCM_SET_CLASS_FLAGS (scm_class_extended_generic_with_setter,
SCM_CLASSF_PURE_GENERIC);
make_stdcls (&scm_class_extended_accessor, "<extended-accessor>",
scm_class_applicable_struct_class,
scm_list_2 (scm_class_accessor,
scm_class_extended_generic_with_setter),
SCM_EOL);
fix_cpl (scm_class_extended_accessor,
scm_class_extended_generic, scm_class_generic_with_setter);
SCM_SET_CLASS_FLAGS (scm_class_extended_accessor, SCM_CLASSF_PURE_GENERIC);
make_stdcls (&scm_class_boolean, "<boolean>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_char, "<char>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_list, "<list>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_pair, "<pair>",
scm_class_class, scm_class_list, SCM_EOL);
make_stdcls (&scm_class_null, "<null>",
scm_class_class, scm_class_list, SCM_EOL);
make_stdcls (&scm_class_string, "<string>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_symbol, "<symbol>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_vector, "<vector>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_foreign, "<foreign>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_hashtable, "<hashtable>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_fluid, "<fluid>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_dynamic_state, "<dynamic-state>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_frame, "<frame>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_objcode, "<objcode>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_vm, "<vm>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_vm_cont, "<vm-continuation>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_bytevector, "<bytevector>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_uvec, "<uvec>",
scm_class_class, class_bytevector, SCM_EOL);
make_stdcls (&class_array, "<array>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&class_bitvector, "<bitvector>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_number, "<number>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_complex, "<complex>",
scm_class_class, scm_class_number, SCM_EOL);
make_stdcls (&scm_class_real, "<real>",
scm_class_class, scm_class_complex, SCM_EOL);
make_stdcls (&scm_class_integer, "<integer>",
scm_class_class, scm_class_real, SCM_EOL);
make_stdcls (&scm_class_fraction, "<fraction>",
scm_class_class, scm_class_real, SCM_EOL);
make_stdcls (&scm_class_keyword, "<keyword>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_unknown, "<unknown>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_procedure, "<procedure>",
scm_class_procedure_class, scm_class_applicable, SCM_EOL);
make_stdcls (&scm_class_primitive_generic, "<primitive-generic>",
scm_class_procedure_class, scm_class_procedure, SCM_EOL);
make_stdcls (&scm_class_port, "<port>",
scm_class_class, scm_class_top, SCM_EOL);
make_stdcls (&scm_class_input_port, "<input-port>",
scm_class_class, scm_class_port, SCM_EOL);
make_stdcls (&scm_class_output_port, "<output-port>",
scm_class_class, scm_class_port, SCM_EOL);
make_stdcls (&scm_class_input_output_port, "<input-output-port>",
scm_class_class,
scm_list_2 (scm_class_input_port, scm_class_output_port),
SCM_EOL);
}
static SCM
make_class_from_template (char const *template, char const *type_name, SCM supers, int applicablep)
{
SCM class, name;
if (type_name)
{
char buffer[100];
sprintf (buffer, template, type_name);
name = scm_from_locale_symbol (buffer);
}
else
name = SCM_GOOPS_UNBOUND;
class = scm_basic_make_class (applicablep ? scm_class_procedure_class : scm_class_class,
name, supers, SCM_EOL);
if (!SCM_GOOPS_UNBOUNDP (name)
&& scm_is_false (scm_module_variable (scm_module_goops, name)))
DEFVAR (name, class);
return class;
}
static SCM
make_class_from_symbol (SCM type_name_sym, SCM supers, int applicablep)
{
SCM class, name;
if (scm_is_true (type_name_sym))
{
name = scm_string_append (scm_list_3 (scm_from_locale_string ("<"),
scm_symbol_to_string (type_name_sym),
scm_from_locale_string (">")));
name = scm_string_to_symbol (name);
}
else
name = SCM_GOOPS_UNBOUND;
class = scm_basic_make_class (applicablep ? scm_class_procedure_class : scm_class_class,
name, supers, SCM_EOL);
if (!SCM_GOOPS_UNBOUNDP (name)
&& scm_is_false (scm_module_variable (scm_module_goops, name)))
DEFVAR (name, class);
return class;
}
SCM
scm_make_extended_class (char const *type_name, int applicablep)
{
return make_class_from_template ("<%s>",
type_name,
scm_list_1 (applicablep
? scm_class_applicable
: scm_class_top),
applicablep);
}
static SCM
scm_make_extended_class_from_symbol (SCM type_name_sym, int applicablep)
{
return make_class_from_symbol (type_name_sym,
scm_list_1 (applicablep
? scm_class_applicable
: scm_class_top),
applicablep);
}
void
scm_i_inherit_applicable (SCM c)
{
if (!SCM_SUBCLASSP (c, scm_class_applicable))
{
SCM dsupers = SCM_SLOT (c, scm_si_direct_supers);
SCM cpl = SCM_SLOT (c, scm_si_cpl);
SCM top = scm_c_memq (scm_class_top, dsupers);
if (scm_is_false (top))
dsupers = scm_append (scm_list_2 (dsupers,
scm_list_1 (scm_class_applicable)));
else
{
SCM_SETCAR (top, scm_class_applicable);
SCM_SETCDR (top, scm_cons (scm_class_top, SCM_CDR (top)));
}
SCM_SET_SLOT (c, scm_si_direct_supers, dsupers);
top = scm_c_memq (scm_class_top, cpl);
if (scm_is_false (top))
abort ();
else
{
SCM_SETCAR (top, scm_class_applicable);
SCM_SETCDR (top, scm_cons (scm_class_top, SCM_CDR (top)));
}
SCM_SET_SLOT (scm_class_applicable,
scm_si_direct_subclasses,
scm_cons (c, SCM_SLOT (scm_class_applicable,
scm_si_direct_subclasses)));
}
}
static void
create_smob_classes (void)
{
long i;
for (i = 0; i < SCM_I_MAX_SMOB_TYPE_COUNT; ++i)
scm_smob_class[i] = SCM_BOOL_F;
scm_smob_class[SCM_TC2SMOBNUM (scm_tc16_keyword)] = scm_class_keyword;
for (i = 0; i < scm_numsmob; ++i)
if (scm_is_false (scm_smob_class[i]))
scm_smob_class[i] = scm_make_extended_class (SCM_SMOBNAME (i),
scm_smobs[i].apply != 0);
}
void
scm_make_port_classes (long ptobnum, char *type_name)
{
SCM c, class = make_class_from_template ("<%s-port>",
type_name,
scm_list_1 (scm_class_port),
0);
scm_port_class[SCM_IN_PCLASS_INDEX + ptobnum]
= make_class_from_template ("<%s-input-port>",
type_name,
scm_list_2 (class, scm_class_input_port),
0);
scm_port_class[SCM_OUT_PCLASS_INDEX + ptobnum]
= make_class_from_template ("<%s-output-port>",
type_name,
scm_list_2 (class, scm_class_output_port),
0);
scm_port_class[SCM_INOUT_PCLASS_INDEX + ptobnum]
= c
= make_class_from_template ("<%s-input-output-port>",
type_name,
scm_list_2 (class, scm_class_input_output_port),
0);
SCM_SET_SLOT (c, scm_si_cpl,
scm_cons2 (c, class, SCM_SLOT (scm_class_input_output_port, scm_si_cpl)));
}
static void
create_port_classes (void)
{
long i;
for (i = 0; i < scm_numptob; ++i)
scm_make_port_classes (i, SCM_PTOBNAME (i));
}
static SCM
make_struct_class (void *closure SCM_UNUSED,
SCM vtable, SCM data, SCM prev SCM_UNUSED)
{
if (scm_is_false (data))
scm_i_define_class_for_vtable (vtable);
return SCM_UNSPECIFIED;
}
static void
create_struct_classes (void)
{
scm_internal_hash_fold (make_struct_class, 0, SCM_BOOL_F,
vtable_class_map);
}
void
scm_load_goops ()
{
if (!goops_loaded_p)
scm_c_resolve_module ("oop goops");
}
SCM_SYMBOL (sym_o, "o");
SCM_SYMBOL (sym_x, "x");
SCM_KEYWORD (k_accessor, "accessor");
SCM_KEYWORD (k_getter, "getter");
SCM
scm_ensure_accessor (SCM name)
{
SCM var, gf;
var = scm_module_variable (scm_current_module (), name);
if (SCM_VARIABLEP (var) && !SCM_UNBNDP (SCM_VARIABLE_REF (var)))
gf = SCM_VARIABLE_REF (var);
else
gf = SCM_BOOL_F;
if (!SCM_IS_A_P (gf, scm_class_accessor))
{
gf = scm_make (scm_list_3 (scm_class_generic, k_name, name));
gf = scm_make (scm_list_5 (scm_class_accessor,
k_name, name, k_setter, gf));
}
return gf;
}
#ifdef GUILE_DEBUG
SCM_DEFINE (scm_pure_generic_p, "pure-generic?", 1, 0, 0,
(SCM obj),
"Return @code{#t} if @var{obj} is a pure generic.")
#define FUNC_NAME s_scm_pure_generic_p
{
return scm_from_bool (SCM_PUREGENERICP (obj));
}
#undef FUNC_NAME
#endif
SCM_DEFINE (scm_sys_goops_loaded, "%goops-loaded", 0, 0, 0,
(),
"Announce that GOOPS is loaded and perform initialization\n"
"on the C level which depends on the loaded GOOPS modules.")
#define FUNC_NAME s_scm_sys_goops_loaded
{
goops_loaded_p = 1;
var_compute_applicable_methods =
scm_module_variable (scm_module_goops, sym_compute_applicable_methods);
var_slot_unbound =
scm_module_variable (scm_module_goops, sym_slot_unbound);
var_slot_missing =
scm_module_variable (scm_module_goops, sym_slot_missing);
var_compute_cpl =
scm_module_variable (scm_module_goops, sym_compute_cpl);
var_no_applicable_method =
scm_module_variable (scm_module_goops, sym_no_applicable_method);
var_change_class =
scm_module_variable (scm_module_goops, sym_change_class);
setup_extended_primitive_generics ();
return SCM_UNSPECIFIED;
}
#undef FUNC_NAME
SCM scm_module_goops;
SCM
scm_init_goops_builtins (void)
{
scm_module_goops = scm_current_module ();
goops_rstate = scm_c_make_rstate ("GOOPS", 5);
#include "libguile/goops.x"
hell = scm_calloc (hell_size * sizeof (*hell));
hell_mutex = scm_make_mutex ();
create_basic_classes ();
create_standard_classes ();
create_smob_classes ();
create_struct_classes ();
create_port_classes ();
{
SCM name = scm_from_latin1_symbol ("no-applicable-method");
scm_no_applicable_method =
scm_make (scm_list_3 (scm_class_generic, k_name, name));
DEFVAR (name, scm_no_applicable_method);
}
return SCM_UNSPECIFIED;
}
void
scm_init_goops ()
{
scm_c_define_gsubr ("%init-goops-builtins", 0, 0, 0,
scm_init_goops_builtins);
}