prepare
void prepare();
void prepare(glyph_rect* r, double x, double y, unsigned glyph, bool flip)
m_glyph->prepare(&r, x, y, *str, !flip);
m_glyph->prepare(&r, x, y, *str, flip);
m_ren->prepare();
m_glyph->prepare(&r, x, y, *str, flip);
void prepare() {}
span_gen.prepare();
void prepare() { m_span_gen->prepare(); }
void prepare() {}
span_gen.prepare();
void prepare() { m_span_gen->prepare(); }
ren.prepare();
ren.prepare();
ren.prepare();
ren.prepare();
void prepare()
void prepare()
void prepare()
m_span_gen->prepare();
m_span_cnv->prepare();
void prepare()
void prepare()
void prepare() {}
void prepare() {}
void prepare()
void prepare() {}
void prepare() {}
void prepare() {}
void prepare() {}
void prepare() {}
status_t (*prepare)(bios_state** _state);
extern int pthread_atfork(void (*prepare)(void), void (*parent)(void),
extern status_t __register_atfork(void(*prepare)(void), void(*parent)(void),
status = biosModule->prepare(&state);
status = biosModule->prepare(&state);
status = biosModule->prepare(&state);
status = biosModule->prepare(&state);
status = sBIOSModule->prepare(state);
(*proto->prepare)(&outdata);
void (*prepare)(struct outdata *);
m_scanlines_bin.prepare(); // Remove all
m_scanlines_aa.prepare(); // Remove all
storage.prepare();
storage.prepare();
prepare();
m_spline_x.prepare();
m_spline_y.prepare();
(void (*prepare)(void), void (*parent)(void), void (*child)(void)),
return B_TO_POSITIVE_ERROR(sReal_pthread_atfork(prepare, parent, child));
void prepare() {}
void prepare()
storage.prepare();
storage.prepare();
storage.prepare();
pthread_atfork(void (*prepare)(void), void (*parent)(void), void (*child)(void))
return __register_atfork(prepare, parent, child);
__register_atfork(void (*prepare)(void), void (*parent)(void), void (*child)(void))
if (prepare)
status = add_fork_hook(&sPrepareHooks, NULL, prepare);