FreeCalypso > hg > fc-tourmaline
view src/gpf/osl/os_mis_fl.c @ 72:7bf39f5e834d
backlight control on Luna: switch PWL instead of LEDB
This change is preliminary toward upcoming rework of backlight control
logic in our UI firmware. LEDB does not exist on Tango-based platforms
(it is not brought out on Tango modules), thus turning it on and off
produces absolutely no effect beyond making L1 disable deep sleep
when LEDB is turned on. However, both iWOW DSK and our upcoming
FC Caramel2 boards have a PWL LED, so let's switch that LED on and off
to indicate the state of the UI firmware's backlight control.
Note that we are NOT switching the actual Luna LCD backlight here,
even though it is trivially controlled with a GPIO. The reason for
this seemingly strange choice is that we don't want to turn this
development board LCD backlight off until we bring the higher-level
backlight control logic up to par, including new logic to "swallow"
the first keypress that turns on the darkened LCD.
| author | Mychaela Falconia <falcon@freecalypso.org> |
|---|---|
| date | Sat, 24 Oct 2020 07:39:54 +0000 |
| parents | 4e78acac3d88 |
| children |
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/* * This C module is a reconstruction based on the disassembly of * os_mis.obj in frame_na7_db_fl.lib from the Leonardo package. */ /* set of included headers from COFF symtab, slightly reordered: */ #include <stddef.h> #include <stdio.h> #include <string.h> #if 0 /* from first attempt at gcc-built fw, currently unused */ #include "../../riviera/rv/general.h" #include "../../riviera/rv/rv_general.h" #include "../../riviera/rvf/rvf_api.h" #include "../../services/ffs/ffs.h" #endif #include "nucleus.h" #include "typedefs.h" #include "os.h" #include "gdi.h" #include "os_types.h" #include "os_glob.h" #include "header.h" #include "vsi.h" #if 0 /* from first attempt at gcc-built fw, currently unused */ #include "drvconf.h" #include "../tst_pei/tstdriver.h" #endif #include "dar_func.h" #include "tools.h" typedef unsigned char u_char; char *NU_State[13] = { "NU_READY", "", "NU_SLEEP_SUSPEND", "", "", "NU_QUEUE_SUSPEND", "NU_SEMAPHORE_SUSPEND", "", "NU_PARTITION_SUSPEND", "NU_MEMORY_SUSPEND", "", "NU_FINISHED", "NU_TERMINATED", }; char *msg_type[4] = { "", "PRIMITIVE", "SIGNAL", "TIMEOUT", }; char *warning = "SYSTEM WARNING: "; T_GPF_DAR_PROPERTIES *dar; T_GPF_DAR_STRUCT os_dar; NU_PROTECT os_mis_Protect; u_char SystemErrorBuffer[256]; u_char DARErrorBuffer[256]; static u_char state; static int fd; static unsigned bytes_read; static u_char *msg; static unsigned count; static unsigned data_len; static unsigned dar_wrap_around; static unsigned dar_buffer_count; static unsigned dar_wrap_around_detected; LONG os_read_dar_ffs_data(USHORT entry, char *buffer, USHORT len) { /* * This function is only used to implement the READ_DAR_FILE * system primitive; this frill feature is currently deemed * not important enough to expend the effort to reconstruct * this function from disassembly. */ return(OS_ERROR); } LONG os_dar_set_filter(void) { if (dar) dar->diagnose_swe_filter(dar->gpf_use_id, dar->warning); return(OS_OK); } LONG os_dar_register(const void *dar_properties) { if (dar_properties) { os_dar.properties = (T_GPF_DAR_PROPERTIES *) dar_properties; os_dar.magic_nr = DAR_INITIALIZED; dar = (T_GPF_DAR_PROPERTIES *) dar_properties; } return(OS_OK); } void os_dar_init(void) { if (os_dar.magic_nr != DAR_INITIALIZED) dar = 0; } void os_SystemError(OS_HANDLE Caller, USHORT cause, char *buffer) { /* * The implementation of this function in the binary blob * which we are reversing is very complex. I am leaving it * as an empty stub for now. - Space Falcon */ } GLOBAL LONG os_ObjectInformation(OS_HANDLE Caller, USHORT Id, USHORT Handle, USHORT len, void *Buffer) { switch (Id) { case OS_OBJTASK: return os_TaskInformation(Handle, Buffer); case OS_OBJQUEUE: return os_QueueInformation(Handle, Buffer); case OS_OBJPARTITIONGROUP: return os_PartitionInformation(Handle, Buffer); case OS_OBJMEMORYPOOL: return os_MemoryInformation(Handle, Buffer); case OS_OBJTIMER: return os_TimerInformation(Handle, Buffer); case OS_OBJSEMAPHORE: return os_SemaphoreInformation(Handle, Buffer); default: return(OS_ERROR); } } GLOBAL LONG os_Initialize(void) { if (os_SemInit() == OS_ERROR) return(OS_ERROR); if (os_ProInit() == OS_ERROR) return(OS_ERROR); if (os_ComInit() == OS_ERROR) return(OS_ERROR); if (os_MemInit() == OS_ERROR) return(OS_ERROR); if (os_TimInit() == OS_ERROR) return(OS_ERROR); if (os_isr_init() == OS_ERROR) return(OS_ERROR); #if 0 if (os_EvGrpInit() == OS_ERROR) return(OS_ERROR); #endif /* * The original code zeroes out the first 32-bit word of * os_mis_Protect here. We don't really need to do that, * as it is a zeroed-on-boot bss var. */ os_dar_init(); /* inlined in the original */ return(OS_OK); }
