/* objects_signals_struct.c generated by valac, the Vala compiler * generated from objects_signals_struct.vala, do not modify */ #include #include #include #include #if !defined(VALA_EXTERN) #if defined(_WIN32) || defined(__CYGWIN__) #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 (foo_get_type ()) typedef struct _Foo Foo; #define _g_free0(var) (var = (g_free (var), NULL)) #define TYPE_FAZ (faz_get_type ()) typedef Foo Faz; typedef struct _Baz Baz; #define TYPE_BAR (bar_get_type ()) #define BAR(obj) (G_TYPE_CHECK_INSTANCE_CAST ((obj), TYPE_BAR, Bar)) #define BAR_CLASS(klass) (G_TYPE_CHECK_CLASS_CAST ((klass), TYPE_BAR, BarClass)) #define IS_BAR(obj) (G_TYPE_CHECK_INSTANCE_TYPE ((obj), TYPE_BAR)) #define IS_BAR_CLASS(klass) (G_TYPE_CHECK_CLASS_TYPE ((klass), TYPE_BAR)) #define BAR_GET_CLASS(obj) (G_TYPE_INSTANCE_GET_CLASS ((obj), TYPE_BAR, BarClass)) typedef struct _Bar Bar; typedef struct _BarClass BarClass; typedef struct _BarPrivate BarPrivate; enum { BAR_0_PROPERTY, BAR_NUM_PROPERTIES }; static GParamSpec* bar_properties[BAR_NUM_PROPERTIES]; enum { BAR_ON_FOO_SIGNAL, BAR_ON_FAZ_SIGNAL, BAR_ON_BAZ_SIGNAL, BAR_NUM_SIGNALS }; static guint bar_signals[BAR_NUM_SIGNALS] = {0}; #define _g_object_unref0(var) ((var == NULL) ? NULL : (var = (g_object_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); struct _Foo { gchar* s; gint i; }; struct _Baz { gint i; gchar* s; }; struct _Bar { GObject parent_instance; BarPrivate * priv; }; struct _BarClass { GObjectClass parent_class; }; static gpointer bar_parent_class = NULL; VALA_EXTERN GType foo_get_type (void) G_GNUC_CONST ; VALA_EXTERN Foo* foo_dup (const Foo* self); VALA_EXTERN void foo_free (Foo* self); VALA_EXTERN void foo_copy (const Foo* self, Foo* dest); VALA_EXTERN void foo_destroy (Foo* self); G_DEFINE_AUTO_CLEANUP_CLEAR_FUNC (Foo, foo_destroy) VALA_EXTERN GType faz_get_type (void) G_GNUC_CONST ; VALA_EXTERN Faz* faz_dup (const Faz* self); VALA_EXTERN void faz_free (Faz* self); VALA_EXTERN void faz_copy (const Faz* self, Faz* dest); VALA_EXTERN void faz_destroy (Faz* self); G_DEFINE_AUTO_CLEANUP_CLEAR_FUNC (Faz, faz_destroy) VALA_EXTERN Baz* baz_dup (const Baz* self); VALA_EXTERN void baz_free (Baz* self); VALA_EXTERN void baz_copy (const Baz* self, Baz* dest); VALA_EXTERN void baz_destroy (Baz* self); G_DEFINE_AUTO_CLEANUP_CLEAR_FUNC (Baz, baz_destroy) VALA_EXTERN GType bar_get_type (void) G_GNUC_CONST ; G_DEFINE_AUTOPTR_CLEANUP_FUNC (Bar, g_object_unref) VALA_EXTERN Bar* bar_new (void); VALA_EXTERN Bar* bar_construct (GType object_type); static GType bar_get_type_once (void); static void _vala_main (void); static void _vala_lambda0_ (Foo* f); static void __vala_lambda0__bar_on_foo (Bar* _sender, Foo* foo, gpointer self); static void _vala_lambda1_ (Faz* f); static void __vala_lambda1__bar_on_faz (Bar* _sender, Faz* faz, gpointer self); static void _vala_lambda2_ (Baz* b); static void __vala_lambda2__bar_on_baz (Bar* _sender, Baz* baz, gpointer self); void foo_copy (const Foo* self, Foo* dest) { const gchar* _tmp0_; gchar* _tmp1_; _tmp0_ = (*self).s; _tmp1_ = g_strdup (_tmp0_); _g_free0 ((*dest).s); (*dest).s = _tmp1_; (*dest).i = (*self).i; } void foo_destroy (Foo* self) { _g_free0 ((*self).s); } Foo* foo_dup (const Foo* self) { Foo* dup; dup = g_new0 (Foo, 1); foo_copy (self, dup); return dup; } void foo_free (Foo* self) { foo_destroy (self); g_free (self); } static GType foo_get_type_once (void) { GType foo_type_id; foo_type_id = g_boxed_type_register_static ("Foo", (GBoxedCopyFunc) foo_dup, (GBoxedFreeFunc) foo_free); return foo_type_id; } GType foo_get_type (void) { static volatile gsize foo_type_id__once = 0; if (g_once_init_enter (&foo_type_id__once)) { GType foo_type_id; foo_type_id = foo_get_type_once (); g_once_init_leave (&foo_type_id__once, foo_type_id); } return foo_type_id__once; } void faz_copy (const Faz* self, Faz* dest) { const gchar* _tmp0_; gchar* _tmp1_; _tmp0_ = (*self).s; _tmp1_ = g_strdup (_tmp0_); _g_free0 ((*dest).s); (*dest).s = _tmp1_; (*dest).i = (*self).i; } void faz_destroy (Faz* self) { foo_destroy (self); } Faz* faz_dup (const Faz* self) { Faz* dup; dup = g_new0 (Faz, 1); faz_copy (self, dup); return dup; } void faz_free (Faz* self) { faz_destroy (self); g_free (self); } static GType faz_get_type_once (void) { GType faz_type_id; faz_type_id = g_boxed_type_register_static ("Faz", (GBoxedCopyFunc) faz_dup, (GBoxedFreeFunc) faz_free); return faz_type_id; } GType faz_get_type (void) { static volatile gsize faz_type_id__once = 0; if (g_once_init_enter (&faz_type_id__once)) { GType faz_type_id; faz_type_id = faz_get_type_once (); g_once_init_leave (&faz_type_id__once, faz_type_id); } return faz_type_id__once; } void baz_copy (const Baz* self, Baz* dest) { const gchar* _tmp0_; gchar* _tmp1_; (*dest).i = (*self).i; _tmp0_ = (*self).s; _tmp1_ = g_strdup (_tmp0_); _g_free0 ((*dest).s); (*dest).s = _tmp1_; } void baz_destroy (Baz* self) { _g_free0 ((*self).s); } Baz* baz_dup (const Baz* self) { Baz* dup; dup = g_new0 (Baz, 1); baz_copy (self, dup); return dup; } void baz_free (Baz* self) { baz_destroy (self); g_free (self); } Bar* bar_construct (GType object_type) { Bar * self = NULL; self = (Bar*) g_object_new (object_type, NULL); return self; } Bar* bar_new (void) { return bar_construct (TYPE_BAR); } static void bar_class_init (BarClass * klass, gpointer klass_data) { bar_parent_class = g_type_class_peek_parent (klass); bar_signals[BAR_ON_FOO_SIGNAL] = g_signal_new ("on-foo", TYPE_BAR, G_SIGNAL_RUN_LAST, 0, NULL, NULL, g_cclosure_marshal_VOID__BOXED, G_TYPE_NONE, 1, TYPE_FOO); bar_signals[BAR_ON_FAZ_SIGNAL] = g_signal_new ("on-faz", TYPE_BAR, G_SIGNAL_RUN_LAST, 0, NULL, NULL, g_cclosure_marshal_VOID__BOXED, G_TYPE_NONE, 1, TYPE_FAZ); bar_signals[BAR_ON_BAZ_SIGNAL] = g_signal_new ("on-baz", TYPE_BAR, G_SIGNAL_RUN_LAST, 0, NULL, NULL, g_cclosure_marshal_VOID__POINTER, G_TYPE_NONE, 1, G_TYPE_POINTER); } static void bar_instance_init (Bar * self, gpointer klass) { } static GType bar_get_type_once (void) { static const GTypeInfo g_define_type_info = { sizeof (BarClass), (GBaseInitFunc) NULL, (GBaseFinalizeFunc) NULL, (GClassInitFunc) bar_class_init, (GClassFinalizeFunc) NULL, NULL, sizeof (Bar), 0, (GInstanceInitFunc) bar_instance_init, NULL }; GType bar_type_id; bar_type_id = g_type_register_static (G_TYPE_OBJECT, "Bar", &g_define_type_info, 0); return bar_type_id; } GType bar_get_type (void) { static volatile gsize bar_type_id__once = 0; if (g_once_init_enter (&bar_type_id__once)) { GType bar_type_id; bar_type_id = bar_get_type_once (); g_once_init_leave (&bar_type_id__once, bar_type_id); } return bar_type_id__once; } static void _vala_lambda0_ (Foo* f) { Foo _tmp0_; const gchar* _tmp1_; Foo _tmp2_; g_return_if_fail (f != NULL); _tmp0_ = *f; _tmp1_ = _tmp0_.s; _vala_assert (g_strcmp0 (_tmp1_, "foo") == 0, "f.s == \"foo\""); _tmp2_ = *f; _vala_assert (_tmp2_.i == 23, "f.i == 23"); } static void __vala_lambda0__bar_on_foo (Bar* _sender, Foo* foo, gpointer self) { _vala_lambda0_ (foo); } static void _vala_lambda1_ (Faz* f) { Faz _tmp0_; const gchar* _tmp1_; Faz _tmp2_; g_return_if_fail (f != NULL); _tmp0_ = *f; _tmp1_ = _tmp0_.s; _vala_assert (g_strcmp0 (_tmp1_, "faz") == 0, "f.s == \"faz\""); _tmp2_ = *f; _vala_assert (_tmp2_.i == 42, "f.i == 42"); } static void __vala_lambda1__bar_on_faz (Bar* _sender, Faz* faz, gpointer self) { _vala_lambda1_ (faz); } static void _vala_lambda2_ (Baz* b) { Baz _tmp0_; Baz _tmp1_; const gchar* _tmp2_; g_return_if_fail (b != NULL); _tmp0_ = *b; _vala_assert (_tmp0_.i == 4711, "b.i == 4711"); _tmp1_ = *b; _tmp2_ = _tmp1_.s; _vala_assert (g_strcmp0 (_tmp2_, "baz") == 0, "b.s == \"baz\""); } static void __vala_lambda2__bar_on_baz (Bar* _sender, Baz* baz, gpointer self) { _vala_lambda2_ (baz); } static void _vala_main (void) { Bar* bar = NULL; Bar* _tmp0_; Foo _tmp1_ = {0}; Faz _tmp2_ = {0}; Baz _tmp3_ = {0}; _tmp0_ = bar_new (); bar = _tmp0_; g_signal_connect (bar, "on-foo", (GCallback) __vala_lambda0__bar_on_foo, NULL); _g_free0 (_tmp1_.s); _tmp1_.s = "foo"; _tmp1_.i = 23; g_signal_emit (bar, bar_signals[BAR_ON_FOO_SIGNAL], 0, &_tmp1_); g_signal_connect (bar, "on-faz", (GCallback) __vala_lambda1__bar_on_faz, NULL); _g_free0 (_tmp2_.s); _tmp2_.s = "faz"; _tmp2_.i = 42; g_signal_emit (bar, bar_signals[BAR_ON_FAZ_SIGNAL], 0, &_tmp2_); g_signal_connect (bar, "on-baz", (GCallback) __vala_lambda2__bar_on_baz, NULL); _tmp3_.i = 4711; _g_free0 (_tmp3_.s); _tmp3_.s = "baz"; g_signal_emit (bar, bar_signals[BAR_ON_BAZ_SIGNAL], 0, &_tmp3_); _g_object_unref0 (bar); } int main (int argc, char ** argv) { _vala_main (); return 0; }