?? portlcd_release.htm
字號:
<LI><a href="#[ce1570]">>></a> lcd_write_cmd
</UL>
<BR>[Called By]<UL><LI><a href="#[ce0648]">>></a> main
<LI><a href="#[ce1408]">>></a> LCD_init
</UL>
<P><STRONG><a name="[ce1450]"></a>LCD_load</STRONG> (ARM, 60 bytes, Stack size 16 bytes, portlcd.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = LCD_load ⇒ lcd_write_data ⇒ lcd_wait_busy ⇒ lcd_read_stat
</UL>
<BR>[Calls]<UL><LI><a href="#[ce1528]">>></a> lcd_write_data
<LI><a href="#[ce1570]">>></a> lcd_write_cmd
</UL>
<BR>[Called By]<UL><LI><a href="#[ce1408]">>></a> LCD_init
</UL>
<P><STRONG><a name="[ce1408]"></a>LCD_init</STRONG> (ARM, 140 bytes, Stack size 4 bytes, portlcd.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 44<LI>Call Chain = LCD_init ⇒ LCD_cls ⇒ LCD_gotoxy ⇒ lcd_write_cmd ⇒ lcd_wait_busy ⇒ lcd_read_stat
</UL>
<BR>[Calls]<UL><LI><a href="#[ce1450]">>></a> LCD_load
<LI><a href="#[ce1498]">>></a> LCD_cls
<LI><a href="#[ce1570]">>></a> lcd_write_cmd
<LI><a href="#[ce1690]">>></a> lcd_write_4bit
<LI><a href="#[ce16d8]">>></a> delay
</UL>
<BR>[Called By]<UL><LI><a href="#[ce0648]">>></a> main
</UL>
<P><STRONG><a name="[ce13c0]"></a>LCD_cur_off</STRONG> (ARM, 20 bytes, Stack size 4 bytes, portlcd.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 24<LI>Call Chain = LCD_cur_off ⇒ lcd_write_cmd ⇒ lcd_wait_busy ⇒ lcd_read_stat
</UL>
<BR>[Calls]<UL><LI><a href="#[ce1570]">>></a> lcd_write_cmd
</UL>
<BR>[Called By]<UL><LI><a href="#[ce0648]">>></a> main
</UL>
<P><STRONG><a name="[ce1378]"></a>LCD_on</STRONG> (ARM, 20 bytes, Stack size 4 bytes, portlcd.o(.text), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[ce1570]">>></a> lcd_write_cmd
</UL>
<P><STRONG><a name="[ce1330]"></a>LCD_putc</STRONG> (ARM, 68 bytes, Stack size 8 bytes, portlcd.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 28<LI>Call Chain = LCD_putc ⇒ lcd_write_data ⇒ lcd_wait_busy ⇒ lcd_read_stat
</UL>
<BR>[Calls]<UL><LI><a href="#[ce1528]">>></a> lcd_write_data
<LI><a href="#[ce1570]">>></a> lcd_write_cmd
</UL>
<BR>[Called By]<UL><LI><a href="#[ce12a0]">>></a> LCD_bargraph
<LI><a href="#[ce12e8]">>></a> LCD_puts
</UL>
<P><STRONG><a name="[ce12e8]"></a>LCD_puts</STRONG> (ARM, 40 bytes, Stack size 8 bytes, portlcd.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 36<LI>Call Chain = LCD_puts ⇒ LCD_putc ⇒ lcd_write_data ⇒ lcd_wait_busy ⇒ lcd_read_stat
</UL>
<BR>[Calls]<UL><LI><a href="#[ce1330]">>></a> LCD_putc
</UL>
<BR>[Called By]<UL><LI><a href="#[ce0648]">>></a> main
</UL>
<P><STRONG><a name="[ce12a0]"></a>LCD_bargraph</STRONG> (ARM, 96 bytes, Stack size 16 bytes, portlcd.o(.text), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[cde210]">>></a> __aeabi_uidivmod
<LI><a href="#[ce1330]">>></a> LCD_putc
</UL>
<P><STRONG><a name="[ce0648]"></a>main</STRONG> (ARM, 56 bytes, Stack size 8 bytes, lcdtest.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 52<LI>Call Chain = main ⇒ LCD_init ⇒ LCD_cls ⇒ LCD_gotoxy ⇒ lcd_write_cmd ⇒ lcd_wait_busy ⇒ lcd_read_stat
</UL>
<BR>[Calls]<UL><LI><a href="#[ce12e8]">>></a> LCD_puts
<LI><a href="#[ce13c0]">>></a> LCD_cur_off
<LI><a href="#[ce1408]">>></a> LCD_init
<LI><a href="#[ce1498]">>></a> LCD_cls
<LI><a href="#[ce14e0]">>></a> LCD_gotoxy
</UL>
<BR>[Address Reference Count : 1]<UL><LI> kernel.o(.text)
</UL>
<P><STRONG><a name="[cdfdf0]"></a>__user_initial_stackheap</STRONG> (ARM, 0 bytes, Stack size unknown bytes, startup.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[cdc9f0]">>></a> __user_setup_stackheap
</UL>
<P><STRONG><a name="[cde2e8]"></a>__aeabi_idiv</STRONG> (ARM, 0 bytes, Stack size 8 bytes, aeabi_sdiv.o(.text), UNUSED)
<P><STRONG><a name="[cde2a0]"></a>__aeabi_idivmod</STRONG> (ARM, 384 bytes, Stack size 8 bytes, aeabi_sdiv.o(.text), UNUSED)
<P><STRONG><a name="[cdd5a8]"></a>__use_two_region_memory</STRONG> (ARM, 4 bytes, Stack size 0 bytes, stkheap2.o(.text), UNUSED)
<P><STRONG><a name="[cdd560]"></a>__rt_stackheap_init</STRONG> (ARM, 36 bytes, Stack size 16 bytes, stkheap2.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 24 + Unknown Stack Size
<LI>Call Chain = __rt_stackheap_init ⇒ __user_setup_stackheap
</UL>
<BR>[Calls]<UL><LI><a href="#[cdc260]">>></a> __rt_stackheap_storage
<LI><a href="#[cdc9f0]">>></a> __user_setup_stackheap
</UL>
<BR>[Called By]<UL><LI><a href="#[cdd018]">>></a> __rt_entry
</UL>
<P><STRONG><a name="[cdd518]"></a>__rt_heap_extend</STRONG> (ARM, 24 bytes, Stack size 8 bytes, stkheap2.o(.text), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[cdd440]">>></a> __user_heap_extend (Weak Reference)
</UL>
<P><STRONG><a name="[cdd018]"></a>__rt_entry</STRONG> (ARM, 76 bytes, Stack size 16 bytes, kernel.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 64 + Unknown Stack Size
<LI>Call Chain = __rt_entry ⇒ __rt_lib_init ⇒ _fp_init
</UL>
<BR>[Calls]<UL><LI><a href="#[cda9c8]">>></a> _platform_post_lib_init
<LI><a href="#[cdab38]">>></a> _platform_post_stackheap_init
<LI><a href="#[cdb550]">>></a> __rt_lib_init (via Veneer)
<LI><a href="#[cdb9d0]">>></a> exit (via BX)
<LI><a href="#[cdd560]">>></a> __rt_stackheap_init
</UL>
<BR>[Called By]<UL><LI><a href="#[cd7178]">>></a> __scatterload_rt2
<LI><a href="#[cdd2d8]">>></a> __main
</UL>
<P><STRONG><a name="[cdcfd0]"></a>__rt_exit</STRONG> (ARM, 20 bytes, Stack size 8 bytes, kernel.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = __rt_exit ⇒ __rt_lib_shutdown
</UL>
<BR>[Calls]<UL><LI><a href="#[cdb508]">>></a> __rt_lib_shutdown (via Veneer)
</UL>
<BR>[Called By]<UL><LI><a href="#[cdb9d0]">>></a> exit (via Veneer)
</UL>
<P><STRONG><a name="[cdcf88]"></a>__rt_abort</STRONG> (ARM, 8 bytes, Stack size 0 bytes, kernel.o(.text), UNUSED)
<BR><BR>[Calls]<UL><LI><a href="#[cdc0a8]">>></a> _sys_exit
</UL>
<P><STRONG><a name="[cdc9f0]"></a>__user_setup_stackheap</STRONG> (ARM, 96 bytes, Stack size 8 bytes, sys_stackheap_outer.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 8 + Unknown Stack Size
<LI>Call Chain = __user_setup_stackheap
</UL>
<BR>[Calls]<UL><LI><a href="#[cdbdd0]">>></a> __user_perproc_libspace
<LI><a href="#[cdfdf0]">>></a> __user_initial_stackheap
</UL>
<BR>[Called By]<UL><LI><a href="#[cdd560]">>></a> __rt_stackheap_init
</UL>
<P><STRONG><a name="[cdc260]"></a>__rt_stackheap_storage</STRONG> (ARM, 12 bytes, Stack size 0 bytes, rt_stackheap_storage_intlibspace.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[cdd560]">>></a> __rt_stackheap_init
</UL>
<P><STRONG><a name="[cdc0a8]"></a>_sys_exit</STRONG> (ARM, 20 bytes, Stack size 0 bytes, sys_exit.o(.text), UNUSED)
<BR><BR>[Called By]<UL><LI><a href="#[cdcf88]">>></a> __rt_abort
</UL>
<P><STRONG><a name="[cdbe18]"></a>__user_libspace</STRONG> (ARM, 8 bytes, Stack size 0 bytes, libspace.o(.text), UNUSED)
<P><STRONG><a name="[cdbdd0]"></a>__user_perproc_libspace</STRONG> (ARM, 0 bytes, Stack size 0 bytes, libspace.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[cdc9f0]">>></a> __user_setup_stackheap
</UL>
<P><STRONG><a name="[cdbd88]"></a>__user_perthread_libspace</STRONG> (ARM, 0 bytes, Stack size 0 bytes, libspace.o(.text), UNUSED)
<P><STRONG><a name="[cdb9d0]"></a>exit</STRONG> (Thumb, 12 bytes, Stack size 0 bytes, exit.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 16<LI>Call Chain = exit ⇒ __rt_exit ⇒ __rt_lib_shutdown
</UL>
<BR>[Calls]<UL><LI><a href="#[cdb940]">>></a> _call_atexit_fns (Weak Reference)
<LI><a href="#[cdcfd0]">>></a> __rt_exit (via Veneer)
</UL>
<BR>[Called By]<UL><LI><a href="#[cdd018]">>></a> __rt_entry
</UL>
<P><STRONG><a name="[cdb550]"></a>__rt_lib_init</STRONG> (Thumb, 184 bytes, Stack size 40 bytes, lib_init.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 48<LI>Call Chain = __rt_lib_init ⇒ _fp_init
</UL>
<BR>[Calls]<UL><LI><a href="#[cd9750]">>></a> _fp_init (via Veneer)
<LI><a href="#[cda2d8]">>></a> __rt_locale (via Veneer)
<LI><a href="#[cdaf20]">>></a> _signal_init (Weak Reference)
<LI><a href="#[cdaf68]">>></a> _rand_init (Weak Reference)
<LI><a href="#[cdafb0]">>></a> _initio (Weak Reference)
<LI><a href="#[cdaff8]">>></a> _init_user_alloc (Weak Reference)
<LI><a href="#[cdb040]">>></a> _init_alloc (Weak Reference)
<LI><a href="#[cdb088]">>></a> _getenv_init (Weak Reference)
<LI><a href="#[cdb0d0]">>></a> _get_lc_time (Weak Reference)
<LI><a href="#[cdb118]">>></a> _get_lc_numeric (Weak Reference)
<LI><a href="#[cdb160]">>></a> _get_lc_monetary (Weak Reference)
<LI><a href="#[cdb1a8]">>></a> _get_lc_ctype (Weak Reference)
<LI><a href="#[cdb1f0]">>></a> _get_lc_collate (Weak Reference)
<LI><a href="#[cdb238]">>></a> _fp_trap_init (Weak Reference)
<LI><a href="#[cdb280]">>></a> _clock_init (Weak Reference)
<LI><a href="#[cdb2c8]">>></a> _atexit_init (Weak Reference)
<LI><a href="#[cdb358]">>></a> __cpp_initialize__aeabi_ (Weak Reference)
<LI><a href="#[cdb3a0]">>></a> __alloca_initialize (Weak Reference)
<LI><a href="#[cdb3e8]">>></a> __Heap_DescSize (Weak Reference)
<LI><a href="#[cdb430]">>></a> __ARM_exceptions_init (Weak Reference)
<LI><a href="#[cdb5e0]">>></a> __ARM_argv_veneer (via Veneer)
</UL>
<BR>[Called By]<UL><LI><a href="#[cdd018]">>></a> __rt_entry (via Veneer)
</UL>
<P><STRONG><a name="[cdb508]"></a>__rt_lib_shutdown</STRONG> (Thumb, 22 bytes, Stack size 8 bytes, lib_init.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = __rt_lib_shutdown
</UL>
<BR>[Calls]<UL><LI><a href="#[cdae90]">>></a> _terminateio (Weak Reference)
<LI><a href="#[cdaed8]">>></a> _terminate_user_alloc (Weak Reference)
<LI><a href="#[cdb310]">>></a> __cxa_finalize (Weak Reference)
</UL>
<BR>[Called By]<UL><LI><a href="#[cdcfd0]">>></a> __rt_exit (via Veneer)
</UL>
<P><STRONG><a name="[cdab38]"></a>_platform_post_stackheap_init</STRONG> (ARM, 12 bytes, Stack size 0 bytes, boardinit2.o(.text))
<BR><BR>[Called By]<UL><LI><a href="#[cdd018]">>></a> __rt_entry
</UL>
<P><STRONG><a name="[cda9c8]"></a>_platform_post_lib_init</STRONG> (ARM, 16 bytes, Stack size 8 bytes, boardinit3.o(.text))
<BR><BR>[Stack]<UL><LI>Max Depth = 8<LI>Call Chain = _platform_post_lib_init
</UL>
<BR>[Called By]<UL><LI><a href="#[cdd018]">>></a> __rt_entry
</UL>
<P><STRONG><a name="[cda690]"></a>__I_use_semihosting</STRONG> (ARM, 0 bytes, Stack size 0 bytes, use_no_semi.o(.text))
<BR>[Address Reference Count : 1]<UL><LI> sys_exit.o(.text)
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