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class.pmc
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class.pmc
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/*
Copyright (C) 2001-2011, Parrot Foundation.
=head1 NAME
src/pmc/class.pmc - defines a class
=head1 DESCRIPTION
This class implements the Class PMC, as outlined in
F<docs/pdds/pdd15_objects.pod>.
Class is not derived from any other PMC.
=head2 Structure
The Class PMC structure (C<Parrot_Class>) consists of twelve items:
=over 4
=item C<id>
The type number of the PMC.
=item C<name>
The name of the class -- a STRING.
An empty STRING is allocated during initialization.
=item C<namespace>
The namespace the class is associated with, if any.
A Null PMC is allocated during initialization.
=item C<instantiated>
A flag denoting whether this class has been instantiated since last
modification. A native integer with value zero is allocated during
initialization.
=item C<parents>
An array of immediate parent classes.
An empty ResizablePMCArray PMC is allocated during initialization.
=item C<all_parents>
A cached array of ourself and all parent classes, in method resolution
order (MRO). A ResizablePMCArray PMC is allocated during initialization,
and is populated with the current class.
=item C<roles>
An array of the roles this class has been composed from.
An empty ResizablePMCArray PMC is allocated during initialization.
=item C<methods>
A directory of method names and method bodies this class provides.
An empty Hash PMC is allocated during initialization.
=item C<vtable_overrides>
A directory of vtable function names and method bodies this class overrides.
An empty Hash PMC is allocated during initialization.
=item C<attrib_metadata>
A directory of attribute names and attribute metadata this class contains.
An empty Hash PMC is allocated during initialization.
=item C<attrib_index>
A lookup table for attributes in this class and parents.
A Null PMC is allocated during initialization.
=item C<attrib_cache>
A cache of visible attribute names to attribute indexes.
A Null PMC is allocated during initialization.
=item C<resolve_method>
A list of method names the class provides used for name conflict resolution.
An empty ResizablePMCArray PMC is allocated during initialization.
=cut
*/
#include "parrot/oo_private.h"
#include "pmc/pmc_object.h"
#include "pmc/pmc_namespace.h"
/* HEADERIZER HFILE: none */
/* HEADERIZER BEGIN: static */
/* Don't modify between HEADERIZER BEGIN / HEADERIZER END. Your changes will be lost. */
static void build_attrib_index(PARROT_INTERP, ARGIN(PMC *self))
__attribute__nonnull__(1)
__attribute__nonnull__(2);
static int cache_class_attribs(PARROT_INTERP,
ARGIN(PMC *cur_class),
ARGIN(PMC *attrib_index),
ARGIN(PMC *cache),
int cur_index)
__attribute__nonnull__(1)
__attribute__nonnull__(2)
__attribute__nonnull__(3)
__attribute__nonnull__(4);
static void calculate_mro(PARROT_INTERP,
ARGIN(PMC *SELF),
INTVAL num_parents)
__attribute__nonnull__(1)
__attribute__nonnull__(2);
static void init_class_from_hash(PARROT_INTERP,
ARGMOD(PMC *self),
ARGIN_NULLOK(PMC *info))
__attribute__nonnull__(1)
__attribute__nonnull__(2)
FUNC_MODIFIES(*self);
static void initialize_parents(PARROT_INTERP,
ARGIN(PMC *object),
ARGIN(PMC *all_parents))
__attribute__nonnull__(1)
__attribute__nonnull__(2)
__attribute__nonnull__(3);
static void initialize_parents_pmc(PARROT_INTERP,
ARGIN(PMC *object),
ARGIN(PMC *all_parents),
ARGIN(PMC *init))
__attribute__nonnull__(1)
__attribute__nonnull__(2)
__attribute__nonnull__(3)
__attribute__nonnull__(4);
PARROT_CANNOT_RETURN_NULL
static STRING * make_class_name(PARROT_INTERP, ARGIN(PMC *SELF))
__attribute__nonnull__(1)
__attribute__nonnull__(2);
#define ASSERT_ARGS_build_attrib_index __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(self))
#define ASSERT_ARGS_cache_class_attribs __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(cur_class) \
, PARROT_ASSERT_ARG(attrib_index) \
, PARROT_ASSERT_ARG(cache))
#define ASSERT_ARGS_calculate_mro __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(SELF))
#define ASSERT_ARGS_init_class_from_hash __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(self))
#define ASSERT_ARGS_initialize_parents __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(object) \
, PARROT_ASSERT_ARG(all_parents))
#define ASSERT_ARGS_initialize_parents_pmc __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(object) \
, PARROT_ASSERT_ARG(all_parents) \
, PARROT_ASSERT_ARG(init))
#define ASSERT_ARGS_make_class_name __attribute__unused__ int _ASSERT_ARGS_CHECK = (\
PARROT_ASSERT_ARG(interp) \
, PARROT_ASSERT_ARG(SELF))
/* Don't modify between HEADERIZER BEGIN / HEADERIZER END. Your changes will be lost. */
/* HEADERIZER END: static */
/*
=item C<static int cache_class_attribs(PARROT_INTERP, PMC *cur_class, PMC
*attrib_index, PMC *cache, int cur_index)>
=cut
*/
static int
cache_class_attribs(PARROT_INTERP,
ARGIN(PMC *cur_class), ARGIN(PMC *attrib_index),
ARGIN(PMC *cache), int cur_index)
{
ASSERT_ARGS(cache_class_attribs)
/* The attribute metadata hash. */
Parrot_Class_attributes * const class_info = PARROT_CLASS(cur_class);
PMC * const attribs = class_info->attrib_metadata;
PMC * const iter = VTABLE_get_iter(interp, attribs);
/* Build a string representing the fully qualified class name. */
/* Retrieve the fully qualified class name for the class. */
STRING * const fq_class = VTABLE_get_string(interp, cur_class);
PMC * const class_cache = Parrot_pmc_new(interp, enum_class_Hash);
VTABLE_set_pmc_keyed_str(interp, cache, fq_class, class_cache);
/* Iterate over the attributes. */
while (VTABLE_get_bool(interp, iter)) {
/* Get attribute. */
PMC * const cur_attrib = VTABLE_get_pmc_keyed_str(interp,
attribs, VTABLE_shift_string(interp, iter));
/* Get attribute name and append it to the key. */
STRING * const name_str = CONST_STRING(interp, "name");
STRING * const attrib_name = VTABLE_get_string_keyed_str(
interp, cur_attrib, name_str);
STRING * const full_key = Parrot_str_concat(interp, fq_class, attrib_name);
/* Insert into hash, along with index. */
VTABLE_set_integer_keyed_str(interp, attrib_index, full_key, cur_index);
VTABLE_set_integer_keyed_str(interp, class_cache, attrib_name, cur_index);
++cur_index;
}
return cur_index;
}
/*
=item C<static void build_attrib_index(PARROT_INTERP, PMC *self)>
This function builds the attribute index (table to map class name and
attribute name to an index) for the current class.
=cut
*/
static void
build_attrib_index(PARROT_INTERP, ARGIN(PMC *self))
{
ASSERT_ARGS(build_attrib_index)
Parrot_Class_attributes * const _class = PARROT_CLASS(self);
int cur_index = 0;
PMC * const attrib_index = Parrot_pmc_new(interp, enum_class_Hash);
PMC * const cache = Parrot_pmc_new_init_int(interp,
enum_class_Hash, enum_type_INTVAL);
const int num_classes = VTABLE_elements(interp, _class->all_parents);
int i;
/* Go over the list of all parents to construct the attribute index. */
for (i = 0; i < num_classes; ++i) {
/* Get the class and check that it respects the standard class interface
* (if not we don't know how it stores its attributes, so we'll have to
* delegate the lookup). */
PMC * const cur_class = VTABLE_get_pmc_keyed_int(interp,
_class->all_parents, i);
if (PObj_is_class_TEST(cur_class))
cur_index = cache_class_attribs(interp, cur_class,
attrib_index, cache, cur_index);
}
/* Store built attribute index and invalidate cache. */
_class->attrib_index = attrib_index;
_class->attrib_cache = cache;
PARROT_GC_WRITE_BARRIER(interp, self);
}
/*
=item C<static void init_class_from_hash(PARROT_INTERP, PMC *self, PMC *info)>
Takes a hash and initializes the class based on it.
=cut
*/
static void
init_class_from_hash(PARROT_INTERP, ARGMOD(PMC *self), ARGIN_NULLOK(PMC *info))
{
ASSERT_ARGS(init_class_from_hash)
Parrot_Class_attributes * const _class = PARROT_CLASS(self);
STRING * const name_str = CONST_STRING(interp, "name");
STRING * const parents_str = CONST_STRING(interp, "parents");
STRING * const methods_str = CONST_STRING(interp, "methods");
STRING * const roles_str = CONST_STRING(interp, "roles");
STRING * const attrs_str = CONST_STRING(interp, "attributes");
PMC *old_ns;
STRING *resolve_method_str;
/* Ensure we actually have some initialization info. */
if (PMC_IS_NULL(info))
return;
/* Take a copy of the current namespace the class is attached to. */
old_ns = _class->_namespace;
/* Check if we have a name/namespace. */
if (VTABLE_exists_keyed_str(interp, info, name_str)) {
STRING *new_name;
PMC *new_namespace;
PMC *name_arg = VTABLE_get_pmc_keyed_str(interp, info, name_str);
VTABLE *new_vtable;
INTVAL type_num;
/* If we were passed a namespace PMC, set the namespace attribute
* directly. Otherwise, lookup or create the appropriate namespace. */
if (name_arg->vtable->base_type == enum_class_NameSpace) {
new_namespace = name_arg;
name_arg = Parrot_ns_get_name(interp, new_namespace);
VTABLE_shift_string(interp, name_arg);
}
else {
PMC * const hll_ns = VTABLE_get_pmc_keyed_int(interp,
interp->HLL_namespace, Parrot_pcc_get_HLL(interp, CURRENT_CONTEXT(interp)));
new_namespace = Parrot_ns_make_namespace_keyed(interp, hll_ns, name_arg);
}
if (PMC_IS_NULL(new_namespace))
Parrot_ex_throw_from_c_args(interp, NULL, EXCEPTION_INVALID_OPERATION,
"Failed to set namespace for class.");
/* Set the name of the class to the name of the innermost namespace
* associated with the class. */
new_name = VTABLE_get_string(interp, new_namespace);
if (STRING_IS_NULL(new_name) || STRING_IS_EMPTY(new_name))
Parrot_ex_throw_from_c_args(interp, NULL, EXCEPTION_INVALID_OPERATION,
"Failed to set name for class.");
_class->_namespace = new_namespace;
_class->name = new_name;
/* At this point we know the class isn't anonymous */
CLASS_is_anon_CLEAR(self);
/* Register a type number for the class. */
type_num = Parrot_oo_register_type(interp, name_arg, new_namespace);
/* Link the type number with the class's vtable. */
new_vtable = Parrot_vtbl_clone_vtable(interp, self->vtable);
new_vtable->base_type = type_num;
new_vtable->pmc_class = self;
new_vtable->whoami = VTABLE_get_string(interp, self);
new_vtable->mro = _class->all_parents;
new_vtable->ro_variant_vtable =
Parrot_vtbl_clone_vtable(interp, self->vtable->ro_variant_vtable);
/* Store the class's vtable in the global table */
interp->vtables[type_num] = new_vtable;
_class->id = type_num;
}
/* If we were attached to a namespace and are now attached to a new one,
* need to unset ourselves in the old namespace. */
if (!PMC_IS_NULL(old_ns) && _class->_namespace != old_ns)
Parrot_pcc_invoke_method_from_c_args(interp, old_ns, CONST_STRING(interp, "set_class"), "P->", PMCNULL);
/* Link namespace to this class, if there is one. */
if (!PMC_IS_NULL(_class->_namespace)) {
STRING * const set_class_str = CONST_STRING(interp, "set_class");
Parrot_pcc_invoke_method_from_c_args(interp, _class->_namespace, set_class_str, "P->",
self);
}
/* Initialize resolve_method. */
resolve_method_str = CONST_STRING(interp, "resolve_method");
if (VTABLE_exists_keyed_str(interp, info, resolve_method_str)) {
/* Set it. */
_class->resolve_method =
VTABLE_get_pmc_keyed_str(interp, info, resolve_method_str);
}
/* Initialize parents, if we have any. */
if (VTABLE_exists_keyed_str(interp, info, parents_str)) {
/* Loop over parents array and add them. */
PMC * const parent_list = VTABLE_get_pmc_keyed_str(interp, info,
parents_str);
const int parent_count = VTABLE_elements(interp, parent_list);
int i;
for (i = 0; i < parent_count; ++i)
VTABLE_add_parent(interp, self,
VTABLE_get_pmc_keyed_int(interp, parent_list, i));
}
/* Initialize roles, if we have any. */
if (VTABLE_exists_keyed_str(interp, info, roles_str)) {
/* Loop over roles array and compose them. */
PMC * const role_list = VTABLE_get_pmc_keyed_str(interp, info,
roles_str);
const int role_count = VTABLE_elements(interp, role_list);
int i;
for (i = 0; i < role_count; ++i)
VTABLE_add_role(interp, self,
VTABLE_get_pmc_keyed_int(interp, role_list, i));
}
/* Initialize attributes, if we have any. */
if (VTABLE_exists_keyed_str(interp, info, attrs_str)) {
/* Loop over attributes array and add them. */
PMC * const attrs_name_list = VTABLE_get_pmc_keyed_str(interp, info,
attrs_str);
const int attrib_count = VTABLE_elements(interp, attrs_name_list);
int i;
for (i = 0; i < attrib_count; ++i) {
STRING * const attr_name = VTABLE_get_string_keyed_int(interp,
attrs_name_list, i);
VTABLE_add_attribute(interp, self, attr_name, PMCNULL);
}
}
/* Initialize methods. */
if (VTABLE_exists_keyed_str(interp, info, methods_str)) {
/* Get the methods hash. */
PMC * const methods = VTABLE_get_pmc_keyed_str(interp, info,
methods_str);
/* Iterate over the list of methods. */
PMC * const iter = VTABLE_get_iter(interp, methods);
while (VTABLE_get_bool(interp, iter)) {
/* Add the method. */
STRING * const method_name = VTABLE_shift_string(interp, iter);
PMC * const method_pmc = VTABLE_get_pmc_keyed_str(interp,
methods, method_name);
VTABLE_add_method(interp, self, method_name, method_pmc);
}
}
/* Extract any methods from the namespace */
Parrot_oo_extract_methods_from_namespace(interp, self, _class->_namespace);
}
/*
=item C<static void initialize_parents(PARROT_INTERP, PMC *object, PMC
*all_parents)>
=cut
*/
static void
initialize_parents(PARROT_INTERP, ARGIN(PMC *object), ARGIN(PMC *all_parents))
{
ASSERT_ARGS(initialize_parents)
INTVAL parent_index = VTABLE_elements(interp, all_parents) - 1;
STRING * const name = CONST_STRING(interp, "init");
/* Loop through the parents in reverse MRO order. */
for (; parent_index >= 0; --parent_index) {
PMC *meth;
PMC * const parent = VTABLE_get_pmc_keyed_int(interp,
all_parents, parent_index);
/* PMCProxy parents store an instance to delegate to */
if (parent->vtable->base_type == enum_class_PMCProxy) {
PMC *proxy = VTABLE_instantiate(interp, parent, PMCNULL);
STRING *proxy_str = CONST_STRING(interp, "proxy");
VTABLE_set_attr_keyed(interp, object, parent, proxy_str, proxy);
}
meth = Parrot_oo_find_vtable_override_for_class(interp, parent, name);
if (!PMC_IS_NULL(meth)) {
/* preserve current_object */
Parrot_ext_call(interp, meth, "Pi->", object);
}
}
}
/*
=item C<static void initialize_parents_pmc(PARROT_INTERP, PMC *object, PMC
*all_parents, PMC *init)>
=cut
*/
static void
initialize_parents_pmc(PARROT_INTERP, ARGIN(PMC *object),
ARGIN(PMC *all_parents), ARGIN(PMC *init))
{
ASSERT_ARGS(initialize_parents_pmc)
INTVAL parent_index = VTABLE_elements(interp, all_parents) - 1;
STRING * const name = CONST_STRING(interp, "init_pmc");
/* Loop through the parents in reverse MRO order. */
for (; parent_index >= 0; --parent_index) {
PMC *meth;
PMC * const parent = VTABLE_get_pmc_keyed_int(interp,
all_parents, parent_index);
/* PMCProxy parents store an instance to delegate to */
if (parent->vtable->base_type == enum_class_PMCProxy) {
PMC * const proxy = VTABLE_instantiate(interp, parent, init);
STRING * const proxy_str = CONST_STRING(interp, "proxy");
VTABLE_set_attr_keyed(interp, object, parent, proxy_str, proxy);
}
meth = Parrot_oo_find_vtable_override_for_class(interp, parent, name);
if (!PMC_IS_NULL(meth))
Parrot_ext_call(interp, meth, "PiP->", object, init);
}
}
/*
=item C<static STRING * make_class_name(PARROT_INTERP, PMC *SELF)>
This function makes and caches the name of this class, returning the string
directly. C<VTABLE_isa()> uses the name without copying it, for efficiency
reasons, as it does not modify the STRING. C<VTABLE_get_string()> makes a
copy of the STRING, so its callers are free to modify it.
=cut
*/
PARROT_CANNOT_RETURN_NULL
static STRING *
make_class_name(PARROT_INTERP, ARGIN(PMC *SELF))
{
ASSERT_ARGS(make_class_name)
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
PMC * const _namespace = _class->_namespace;
if (!PMC_IS_NULL(_namespace)) {
if (_class->fullname)
return _class->fullname;
else {
/* Call the 'get_name' method on the class's associated
* namespace to retrieve a fully qualified list of names, then
* join the list with a semicolon. */
PMC * const names = Parrot_ns_get_name(interp, _namespace);
if (!PMC_IS_NULL(names))
/* remove the HLL namespace name */
VTABLE_shift_string(interp, names);
PARROT_GC_WRITE_BARRIER(interp, SELF);
_class->fullname = Parrot_str_join(interp, CONST_STRING(interp, ";"), names);
return _class->fullname;
}
}
/* Otherwise, copy the stored string name of the class. */
return _class->name;
}
/*
=item C<static void calculate_mro(PARROT_INTERP, PMC *SELF, INTVAL num_parents)>
Calculates the C3 method resolution order for this class. C3 is the name of an
algorithm used to calculate the method resolution order (MRO) to use in a
system with multiple inheritance. For more information see the documentation
associated with C<Parrot_ComputeMRO_C3>.
=cut
*/
static void
calculate_mro(PARROT_INTERP, ARGIN(PMC *SELF), INTVAL num_parents)
{
ASSERT_ARGS(calculate_mro)
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
/* SELF is already on the all_parents */
if (num_parents == 0)
return;
if (num_parents == 1) {
STRING * const ap = CONST_STRING(interp, "all_parents");
PMC * const parent = VTABLE_get_pmc_keyed_int(interp,
_class->parents, 0);
PMC * const parent_mro = VTABLE_inspect_str(interp, parent, ap);
PMC * const mro = VTABLE_clone(interp, parent_mro);
VTABLE_unshift_pmc(interp, mro, SELF);
PARROT_GC_WRITE_BARRIER(interp, SELF);
_class->all_parents = mro;
}
else {
PARROT_GC_WRITE_BARRIER(interp, SELF);
_class->all_parents = Parrot_ComputeMRO_C3(interp, SELF);
}
if (!CLASS_is_anon_TEST(SELF))
interp->vtables[VTABLE_type(interp, SELF)]->mro = _class->all_parents;
}
/*
=back
=head2 Functions
=over 4
=cut
*/
pmclass Class auto_attrs {
ATTR INTVAL id; /* The type number of the PMC. */
ATTR STRING *name; /* The name of the class. */
ATTR STRING *fullname; /* The name of the class. */
ATTR PMC *_namespace; /* The namespace it's linked to, if any. */
ATTR INTVAL instantiated; /* Any instantiations since last modification? */
ATTR PMC *parents; /* Immediate parent classes. */
ATTR PMC *all_parents; /* Cached list of ourself and all parents, in MRO order. */
ATTR PMC *roles; /* An array of roles. */
ATTR PMC *methods; /* Hash of method names to methods in this class. */
ATTR PMC *vtable_overrides; /* Hash of Parrot v-table methods we override. */
ATTR PMC *attrib_metadata; /* Hash of attributes in this class to hashes of metadata. */
ATTR PMC *attrib_index; /* Lookup table for attributes in this and parents. */
ATTR PMC *attrib_cache; /* Cache of visible attrib names to indexes. */
ATTR PMC *resolve_method; /* List of method names the class provides to resolve
* conflicts with methods from roles. */
ATTR PMC *parent_overrides;
ATTR PMC *meth_cache;
ATTR Hash *isa_cache;
/*
=item C<void init()>
Initializes a Class PMC.
=item C<void init_pmc(PMC *init_data)>
The actual class creation code, called from C<newclass> opcode. The C<init_data>
argument may be either the name of the class or a hash of initialization
arguments. The class is attached to the current HLL namespace.
=cut
*/
VTABLE void init() {
Parrot_Class_attributes * const _class =
(Parrot_Class_attributes *) PMC_data(SELF);
/* Set flag for custom GC mark. */
PObj_custom_mark_destroy_SETALL(SELF);
/* Set up the object. */
_class->name = CONST_STRING(INTERP, "");
_class->_namespace = PMCNULL;
_class->parents = Parrot_pmc_new(INTERP, enum_class_ResizablePMCArray);
_class->all_parents = Parrot_pmc_new(INTERP, enum_class_ResizablePMCArray);
_class->roles = Parrot_pmc_new(INTERP, enum_class_ResizablePMCArray);
_class->methods = Parrot_pmc_new(INTERP, enum_class_Hash);
_class->attrib_metadata = Parrot_pmc_new(INTERP, enum_class_Hash);
_class->attrib_index = PMCNULL;
_class->attrib_cache = PMCNULL;
_class->meth_cache = PMCNULL;
_class->resolve_method = Parrot_pmc_new(INTERP, enum_class_ResizablePMCArray);
_class->vtable_overrides = Parrot_pmc_new(INTERP, enum_class_Hash);
_class->parent_overrides = Parrot_pmc_new(INTERP, enum_class_Hash);
_class->isa_cache = Parrot_hash_create(INTERP,
enum_type_INTVAL, Hash_key_type_PMC_ptr);
/* We put ourself on the all parents list. */
VTABLE_push_pmc(INTERP, _class->all_parents, SELF);
/* We are a class. */
PObj_is_class_SET(SELF);
/* By default we're anonymous. */
CLASS_is_anon_SET(SELF);
}
VTABLE void init_pmc(PMC *init_data) {
PMC *arg;
const INTVAL arg_type = VTABLE_type(INTERP, init_data);
STRING * const name_str = CONST_STRING(INTERP, "name");
/* Set up the object. */
SELF.init();
/* fast attempt to determine init_data type */
switch (arg_type) {
case enum_class_String:
case enum_class_Key:
case enum_class_ResizableStringArray:
case enum_class_NameSpace:
/* set only the name property */
arg = Parrot_pmc_new(INTERP, enum_class_Hash);
VTABLE_set_pmc_keyed_str(INTERP, arg, name_str, init_data);
break;
case enum_class_Hash:
arg = init_data;
break;
/* slow attempt to determine init_data type */
default:
if (VTABLE_isa(INTERP, init_data, CONST_STRING(INTERP, "String"))
|| VTABLE_isa(INTERP, init_data, CONST_STRING(INTERP, "Key"))
|| VTABLE_isa(INTERP, init_data, CONST_STRING(INTERP, "ResizableStringArray"))) {
/* set only the name property */
arg = Parrot_pmc_new(INTERP, enum_class_Hash);
VTABLE_set_pmc_keyed_str(INTERP, arg, name_str, init_data);
}
if (VTABLE_isa(INTERP, init_data, CONST_STRING(INTERP, "Hash")))
arg = init_data;
else
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_INVALID_OPERATION,
"Invalid class name key in init_pmc for Class");
break;
}
/* Initialize the class with the supplied data. */
init_class_from_hash(INTERP, SELF, arg);
}
void destroy() {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
Parrot_hash_destroy(INTERP, _class->isa_cache);
}
/*
=item C<STRING *get_string()>
Returns the name of the class (without the HLL namespace).
=cut
*/
VTABLE STRING *get_string() {
return make_class_name(INTERP, SELF);
}
/*
=item C<void mark()>
Marks any referenced strings and PMCs in the structure as live.
=cut
*/
VTABLE void mark() {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
Parrot_gc_mark_STRING_alive(INTERP, _class->name);
Parrot_gc_mark_STRING_alive(INTERP, _class->fullname);
Parrot_gc_mark_PMC_alive(INTERP, _class->_namespace);
Parrot_gc_mark_PMC_alive(INTERP, _class->parents);
Parrot_gc_mark_PMC_alive(INTERP, _class->all_parents);
Parrot_gc_mark_PMC_alive(INTERP, _class->roles);
Parrot_gc_mark_PMC_alive(INTERP, _class->methods);
Parrot_gc_mark_PMC_alive(INTERP, _class->vtable_overrides);
Parrot_gc_mark_PMC_alive(INTERP, _class->parent_overrides);
Parrot_gc_mark_PMC_alive(INTERP, _class->attrib_metadata);
Parrot_gc_mark_PMC_alive(INTERP, _class->attrib_index);
Parrot_gc_mark_PMC_alive(INTERP, _class->attrib_cache);
Parrot_gc_mark_PMC_alive(INTERP, _class->resolve_method);
Parrot_gc_mark_PMC_alive(INTERP, _class->meth_cache);
if (_class->isa_cache)
Parrot_hash_mark(INTERP, _class->isa_cache);
}
/*
=item C<void add_attribute(STRING *name, PMC *type)>
Adds the given attribute (C<name>) with an optional C<type>.
Throws an exception if the current class has been instantiated.
Enters the attribute in the C<attrib_metadata> table.
Returns an error if an attribute of C<name> already exists.
=cut
*/
VTABLE void add_attribute(STRING *name, PMC *type) {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
PMC * const new_attribute = Parrot_pmc_new(INTERP, enum_class_Hash);
/* If we've been instantiated already, not allowed. */
if (_class->instantiated)
Parrot_ex_throw_from_c_args(INTERP, NULL, EXCEPTION_INVALID_OPERATION,
"Modifications to classes are not allowed after instantiation.");
/* If we already have an attribute of this name, it's an error. */
if (VTABLE_exists_keyed_str(INTERP, _class->attrib_metadata, name))
Parrot_ex_throw_from_c_args(INTERP, NULL, EXCEPTION_INVALID_OPERATION,
"Attribute '%Ss' already exists in '%Ss'.", name,
VTABLE_get_string(INTERP, SELF));
/* Set name and type. */
VTABLE_set_string_keyed_str(INTERP, new_attribute, CONST_STRING(INTERP, "name"), name);
if (!PMC_IS_NULL(type))
VTABLE_set_pmc_keyed_str(INTERP, new_attribute, CONST_STRING(INTERP, "type"), type);
/* Enter the attribute in the attrib_metadata table. */
VTABLE_set_pmc_keyed_str(INTERP, _class->attrib_metadata, name,
new_attribute);
}
/*
=item C<void remove_attribute(STRING *name)>
Removes the given attribute (C<name>) from the class. Throws an exception if
the current class has been instantiated, or if the class has no attribute
C<name>.
=cut
*/
VTABLE void remove_attribute(STRING *name) {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
/* If we've been instantiated already, not allowed. */
if (_class->instantiated)
Parrot_ex_throw_from_c_args(INTERP, NULL, EXCEPTION_INVALID_OPERATION,
"Modifications to classes are not allowed after instantiation.");
/* If we don't have an attribute of this name, it's an error. */
if (!VTABLE_exists_keyed_str(INTERP, _class->attrib_metadata, name))
Parrot_ex_throw_from_c_args(INTERP, NULL, EXCEPTION_INVALID_OPERATION,
"Attribute '%Ss' cannot be removed, does not exist in '%Ss'.", name,
VTABLE_get_string(INTERP, SELF));
/* Remove the attribute from the attrib_metadata table. */
VTABLE_delete_keyed_str(INTERP, _class->attrib_metadata, name);
build_attrib_index(INTERP, SELF);
}
/*
=item C<void add_method(STRING *name, PMC *sub)>
Adds the given sub PMC as a method with the given name.
=cut
*/
VTABLE void add_method(STRING *name, PMC *sub) {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
PMC * const method =
VTABLE_get_pmc_keyed_str(INTERP, _class->methods, name);
/* If we have already added a method with this name... */
if (!PMC_IS_NULL(method)) {
if (method == sub)
return;
Parrot_ex_throw_from_c_args(INTERP, NULL, EXCEPTION_INVALID_OPERATION,
"A method named '%S' already exists in class '%S'. "
"It may have been supplied by a role.",
name, VTABLE_get_string(INTERP, SELF));
}
/* Enter it into the table. */
VTABLE_set_pmc_keyed_str(INTERP, _class->methods, name, sub);
}
/*
=item C<void remove_method(STRING *name)>
Removes the method with the given name.
=cut
*/
VTABLE void remove_method(STRING *name) {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
if (VTABLE_exists_keyed_str(INTERP, _class->methods, name))
VTABLE_delete_keyed_str(INTERP, _class->methods, name);
else
Parrot_ex_throw_from_c_args(INTERP, NULL, EXCEPTION_INVALID_OPERATION,
"No method named '%S' to remove in class '%S'.",
name, VTABLE_get_string(INTERP, SELF));
}
/*
=item C<void add_vtable_override(STRING *name, PMC *sub)>
Adds the given sub PMC as a vtable override with the given name.
=cut
*/
VTABLE void add_vtable_override(STRING *name, PMC *sub) {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
/* Check that the name is actually valid as a vtable override */
if (Parrot_get_vtable_index(INTERP, name) == -1)
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_METHOD_NOT_FOUND,
"'%S' is not a valid vtable function name.", name);
/* Add it to vtable list. */
VTABLE_set_pmc_keyed_str(INTERP, _class->vtable_overrides, name, sub);
}
/*
=item C<void add_parent(PMC *parent)>
Adds the supplied PMC to the list of parents for the class.
=cut
*/
VTABLE void add_parent(PMC *parent) {
Parrot_Class_attributes * const _class = PARROT_CLASS(SELF);
int parent_count, index;
/* If we've been instantiated already, not allowed. */
if (_class->instantiated)
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_INVALID_OPERATION,
"Modifications to classes are not allowed after instantiation.");
if (PMC_IS_NULL(parent)) {
STRING * const me_str = make_class_name(INTERP, SELF);
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_UNEXPECTED_NULL, "Parent of '%Ss' is null", me_str);
}
/* Ensure it really is a class. */
if (!PObj_is_class_TEST(parent)) {
STRING * const pstr = VTABLE_get_string(INTERP, parent);
STRING * me_str = make_class_name(INTERP, SELF);
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_INVALID_OPERATION,
"Parent '%Ss' of '%Ss' isn't a Class.", pstr, me_str);
}
/* Check is not self */
if (parent == SELF)
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_INVALID_OPERATION, "Can't be own parent");
/* get number of direct parents */
parent_count = VTABLE_elements(INTERP, _class->parents);
/* iterate over all direct parents, check whether this class already has
* the parent being added. */
for (index = 0; index < parent_count; ++index) {
/* get the next parent */
PMC * const current_parent = VTABLE_get_pmc_keyed_int(INTERP,
_class->parents, index);
/* throw an exception if we already have this parent */
if (current_parent == parent)
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_INVALID_OPERATION,
"The class '%S' already has a parent class '%S'. "
"It may have been supplied by a role.",
VTABLE_get_string(INTERP, SELF),
VTABLE_get_string(INTERP, parent));
}
/* Check that none of the parents is self */
parent_count = VTABLE_elements(INTERP, PARROT_CLASS(parent)->all_parents);
for (index = 0; index < parent_count; ++index) {
/* get the next parent */
PMC * const current_parent = VTABLE_get_pmc_keyed_int(INTERP,
PARROT_CLASS(parent)->all_parents, index);
if (current_parent == SELF)
Parrot_ex_throw_from_c_args(INTERP, NULL,
EXCEPTION_INVALID_OPERATION,
"Loop in class hierarchy: '%S' is an ancestor of '%S'.",
VTABLE_get_string(INTERP, SELF),
VTABLE_get_string(INTERP, parent));
}
/* Add to the lists of our immediate parents and all parents. */
VTABLE_push_pmc(INTERP, _class->parents, parent);
Parrot_hash_put(INTERP, _class->isa_cache, (void *)parent, (void *)1);
calculate_mro(INTERP, SELF, parent_count + 1);