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/* asynchronous_catch_error_scope.c generated by valac, the Vala compiler
* generated from asynchronous_catch_error_scope.vala, do not modify */
#include <glib.h>
#include <glib-object.h>
#include <gio/gio.h>
#include <stdlib.h>
#include <string.h>
#if !defined(VALA_STRICT_C)
#if !defined(__clang__) && defined(__GNUC__) && (__GNUC__ >= 14)
#pragma GCC diagnostic warning "-Wincompatible-pointer-types"
#elif defined(__clang__) && (__clang_major__ >= 16)
#pragma clang diagnostic ignored "-Wincompatible-function-pointer-types"
#pragma clang diagnostic ignored "-Wincompatible-pointer-types"
#endif
#endif
#if !defined(VALA_EXTERN)
#if defined(_MSC_VER)
#define VALA_EXTERN __declspec(dllexport) extern
#elif __GNUC__ >= 4
#define VALA_EXTERN __attribute__((visibility("default"))) extern
#else
#define VALA_EXTERN extern
#endif
#endif
#define TYPE_FOO_ERROR (foo_error_get_type ())
#define _g_error_free0(var) ((var == NULL) ? NULL : (var = (g_error_free (var), NULL)))
typedef struct _FooData FooData;
typedef struct _Block1Data Block1Data;
#define _g_main_loop_unref0(var) ((var == NULL) ? NULL : (var = (g_main_loop_unref (var), NULL)))
#define _vala_assert(expr, msg) if G_LIKELY (expr) ; else g_assertion_message_expr (G_LOG_DOMAIN, __FILE__, __LINE__, G_STRFUNC, msg);
#define _vala_return_if_fail(expr, msg) if G_LIKELY (expr) ; else { g_return_if_fail_warning (G_LOG_DOMAIN, G_STRFUNC, msg); return; }
#define _vala_return_val_if_fail(expr, msg, val) if G_LIKELY (expr) ; else { g_return_if_fail_warning (G_LOG_DOMAIN, G_STRFUNC, msg); return val; }
#define _vala_warn_if_fail(expr, msg) if G_LIKELY (expr) ; else g_warn_message (G_LOG_DOMAIN, __FILE__, __LINE__, G_STRFUNC, msg);
typedef enum {
FOO_ERROR_FAIL
} FooError;
#define FOO_ERROR foo_error_quark ()
struct _FooData {
int _state_;
GObject* _source_object_;
GAsyncResult* _res_;
GTask* _async_result;
GError* _tmp0_;
GError* e;
const gchar* _tmp1_;
GError* _tmp2_;
GError* _vala1_e;
const gchar* _tmp3_;
GError* _inner_error0_;
};
struct _Block1Data {
int _ref_count_;
GMainLoop* loop;
};
VALA_EXTERN GQuark foo_error_quark (void);
VALA_EXTERN GType foo_error_get_type (void) G_GNUC_CONST ;
static void foo_data_free (gpointer _data);
VALA_EXTERN void foo (GAsyncReadyCallback _callback_,
gpointer _user_data_);
VALA_EXTERN void foo_finish (GAsyncResult* _res_);
static gboolean foo_co (FooData* _data_);
static void _vala_main (void);
static Block1Data* block1_data_ref (Block1Data* _data1_);
static void block1_data_unref (void * _userdata_);
static void __lambda4_ (Block1Data* _data1_,
GObject* o,
GAsyncResult* res);
static void ___lambda4__gasync_ready_callback (GObject* source_object,
GAsyncResult* res,
gpointer self);
GQuark
foo_error_quark (void)
{
return g_quark_from_static_string ("foo-error-quark");
}
static GType
foo_error_get_type_once (void)
{
static const GEnumValue values[] = {{FOO_ERROR_FAIL, "FOO_ERROR_FAIL", "fail"}, {0, NULL, NULL}};
GType foo_error_type_id;
foo_error_type_id = g_enum_register_static ("FooError", values);
return foo_error_type_id;
}
GType
foo_error_get_type (void)
{
static volatile gsize foo_error_type_id__once = 0;
if (g_once_init_enter (&foo_error_type_id__once)) {
GType foo_error_type_id;
foo_error_type_id = foo_error_get_type_once ();
g_once_init_leave (&foo_error_type_id__once, foo_error_type_id);
}
return foo_error_type_id__once;
}
static void
foo_data_free (gpointer _data)
{
FooData* _data_;
_data_ = _data;
g_slice_free (FooData, _data_);
}
void
foo (GAsyncReadyCallback _callback_,
gpointer _user_data_)
{
FooData* _data_;
_data_ = g_slice_new0 (FooData);
_data_->_async_result = g_task_new (NULL, NULL, _callback_, _user_data_);
g_task_set_task_data (_data_->_async_result, _data_, foo_data_free);
foo_co (_data_);
}
void
foo_finish (GAsyncResult* _res_)
{
FooData* _data_;
_data_ = g_task_propagate_pointer (G_TASK (_res_), NULL);
}
static gboolean
foo_co (FooData* _data_)
{
switch (_data_->_state_) {
case 0:
goto _state_0;
default:
g_assert_not_reached ();
}
_state_0:
{
_data_->_tmp0_ = g_error_new_literal (FOO_ERROR, FOO_ERROR_FAIL, "Foo");
_data_->_inner_error0_ = _data_->_tmp0_;
goto __catch0_g_error;
}
goto __finally0;
__catch0_g_error:
{
_data_->e = _data_->_inner_error0_;
_data_->_inner_error0_ = NULL;
_vala_assert (_data_->e->domain == FOO_ERROR, "e is FooError");
_data_->_tmp1_ = _data_->e->message;
_vala_assert (g_strcmp0 (_data_->_tmp1_, "Foo") == 0, "e.message == \"Foo\"");
_g_error_free0 (_data_->e);
}
__finally0:
if (G_UNLIKELY (_data_->_inner_error0_ != NULL)) {
g_critical ("file %s: line %d: uncaught error: %s (%s, %d)", __FILE__, __LINE__, _data_->_inner_error0_->message, g_quark_to_string (_data_->_inner_error0_->domain), _data_->_inner_error0_->code);
g_clear_error (&_data_->_inner_error0_);
g_object_unref (_data_->_async_result);
return FALSE;
}
{
_data_->_tmp2_ = g_error_new_literal (FOO_ERROR, FOO_ERROR_FAIL, "Bar");
_data_->_inner_error0_ = _data_->_tmp2_;
goto __catch1_g_error;
}
goto __finally1;
__catch1_g_error:
{
_data_->_vala1_e = _data_->_inner_error0_;
_data_->_inner_error0_ = NULL;
_vala_assert (_data_->_vala1_e->domain == FOO_ERROR, "e is FooError");
_data_->_tmp3_ = _data_->_vala1_e->message;
_vala_assert (g_strcmp0 (_data_->_tmp3_, "Bar") == 0, "e.message == \"Bar\"");
_g_error_free0 (_data_->_vala1_e);
}
__finally1:
if (G_UNLIKELY (_data_->_inner_error0_ != NULL)) {
g_critical ("file %s: line %d: uncaught error: %s (%s, %d)", __FILE__, __LINE__, _data_->_inner_error0_->message, g_quark_to_string (_data_->_inner_error0_->domain), _data_->_inner_error0_->code);
g_clear_error (&_data_->_inner_error0_);
g_object_unref (_data_->_async_result);
return FALSE;
}
g_task_return_pointer (_data_->_async_result, _data_, NULL);
if (_data_->_state_ != 0) {
while (!g_task_get_completed (_data_->_async_result)) {
g_main_context_iteration (g_task_get_context (_data_->_async_result), TRUE);
}
}
g_object_unref (_data_->_async_result);
return FALSE;
}
static Block1Data*
block1_data_ref (Block1Data* _data1_)
{
g_atomic_int_inc (&_data1_->_ref_count_);
return _data1_;
}
static void
block1_data_unref (void * _userdata_)
{
Block1Data* _data1_;
_data1_ = (Block1Data*) _userdata_;
if (g_atomic_int_dec_and_test (&_data1_->_ref_count_)) {
_g_main_loop_unref0 (_data1_->loop);
g_slice_free (Block1Data, _data1_);
}
}
static void
__lambda4_ (Block1Data* _data1_,
GObject* o,
GAsyncResult* res)
{
g_return_if_fail ((o == NULL) || G_TYPE_CHECK_INSTANCE_TYPE (o, G_TYPE_OBJECT));
g_return_if_fail (G_TYPE_CHECK_INSTANCE_TYPE (res, g_async_result_get_type ()));
foo_finish (res);
g_main_loop_quit (_data1_->loop);
}
static void
___lambda4__gasync_ready_callback (GObject* source_object,
GAsyncResult* res,
gpointer self)
{
__lambda4_ (self, source_object, res);
block1_data_unref (self);
}
static void
_vala_main (void)
{
Block1Data* _data1_;
GMainLoop* _tmp0_;
_data1_ = g_slice_new0 (Block1Data);
_data1_->_ref_count_ = 1;
_tmp0_ = g_main_loop_new (NULL, FALSE);
_data1_->loop = _tmp0_;
foo (___lambda4__gasync_ready_callback, block1_data_ref (_data1_));
g_main_loop_run (_data1_->loop);
block1_data_unref (_data1_);
_data1_ = NULL;
}
int
main (int argc,
char ** argv)
{
_vala_main ();
return 0;
}
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