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📄 hal_stub.c

📁 eCos1.31版
💻 C
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    // some platforms.    __process_exit_vec = &__reset;    __cleanup_vec = &handle_exception_cleanup;    __init_vec    = &handle_exception_init;#ifdef CYGDBG_HAL_DEBUG_GDB_BREAK_SUPPORT    // Control of GDB interrupts.    __interruptible_control = HAL_STUB_PLATFORM_INTERRUPTIBLE;#endif    // Nothing further to do, handle_exception will be called when an    // exception occurs.}// Initialize the hardware.void initHardware (void) {    static int initialized = 0;    if (!initialized) {        initialized = 1;#if !defined(CYGPKG_CYGMON)#ifdef HAL_STUB_PLATFORM_INIT        // If the platform defines any initialization code, call it here.        HAL_STUB_PLATFORM_INIT();#endif                                // Get serial port initialized.        HAL_STUB_PLATFORM_INIT_SERIAL();#ifdef CYGDBG_HAL_DEBUG_GDB_BREAK_SUPPORT        // Get interrupt handler initialized.        HAL_STUB_PLATFORM_INIT_BREAK_IRQ();#endif#endif // CYGPKG_CYGMON    }}// Reset the board.void __reset (void){#if !defined(CYGPKG_CYGMON)    HAL_STUB_PLATFORM_RESET();#endif}//-----------------------------------------------------------------------------// Breakpoint support.#ifndef CYGPKG_HAL_ARM// This function will generate a breakpoint exception.  It is used at// the beginning of a program to sync up with a debugger and can be// used otherwise as a quick means to stop program execution and// "break" into the debugger.voidbreakpoint(){    HAL_BREAKPOINT(_breakinst);}// This function returns the opcode for a 'trap' instruction.unsigned long __break_opcode (){  return HAL_BREAKINST;}#endif// FIXME: Add support for multiple breakpoints (libstub/bplist-dynamic.c)int __set_breakpoint (target_register_t addr)    { return 0; }int __remove_breakpoint (target_register_t addr) { return 0; }//-----------------------------------------------------------------------------// Write the 'T' packet in BUFFER. SIGVAL is the signal the program received.void __build_t_packet (int sigval, char *buf){    target_register_t addr;    char *ptr = buf;    target_register_t sp;    sp = (target_register_t) get_register (SP);    *ptr++ = 'T';    *ptr++ = __tohex (sigval >> 4);    *ptr++ = __tohex (sigval);#ifdef CYGDBG_HAL_DEBUG_GDB_THREAD_SUPPORT    // Include thread ID if thread manipulation is required.    {        int id;                *ptr++ = 't';        *ptr++ = 'h';        *ptr++ = 'r';        *ptr++ = 'e';        *ptr++ = 'a';        *ptr++ = 'd';        *ptr++ = ':';#if (CYG_BYTEORDER == CYG_MSBFIRST)        id = dbg_currthread_id ();#else        // FIXME: Temporary workaround for PR 18903. Thread ID must be        // big-endian in the T packet.        {            unsigned char* bep = (unsigned char*)&id;            int be_id;            be_id = dbg_currthread_id ();            *bep++ = (be_id >> 24) & 0xff ;            *bep++ = (be_id >> 16) & 0xff ;            *bep++ = (be_id >> 8) & 0xff ;            *bep++ = (be_id & 0xff) ;        }#endif        ptr = __mem2hex((char *)&id, ptr, sizeof(id), 0);        *ptr++ = ';';    }#endif    *ptr++ = __tohex (PC >> 4);    *ptr++ = __tohex (PC);    *ptr++ = ':';    addr = get_register (PC);    ptr = __mem2hex((char *)&addr, ptr, REGSIZE(PC), 0);    *ptr++ = ';';    *ptr++ = __tohex (SP >> 4);    *ptr++ = __tohex (SP);    *ptr++ = ':';    ptr = __mem2hex((char *)&sp, ptr, REGSIZE(SP), 0);    *ptr++ = ';';        *ptr++ = 0;}//-----------------------------------------------------------------------------// Cache functions.// Perform the specified operation on the instruction cache. // Returns 1 if the cache is enabled, 0 otherwise.int __instruction_cache (cache_control_t request){    int state = 1;    switch (request) {    case CACHE_ENABLE:        HAL_ICACHE_ENABLE();        break;    case CACHE_DISABLE:        HAL_ICACHE_DISABLE();        state = 0;        break;    case CACHE_FLUSH:        HAL_ICACHE_SYNC();        break;    case CACHE_NOOP:        /* fall through */    default:        break;    }#ifdef HAL_ICACHE_IS_ENABLED    HAL_ICACHE_IS_ENABLED(state);#endif    return state;}// Perform the specified operation on the data cache. // Returns 1 if the cache is enabled, 0 otherwise.int __data_cache (cache_control_t request){    int state = 1;    switch (request) {    case CACHE_ENABLE:        HAL_DCACHE_ENABLE();        break;    case CACHE_DISABLE:        HAL_DCACHE_DISABLE();        state = 0;        break;    case CACHE_FLUSH:        HAL_DCACHE_SYNC();        break;    case CACHE_NOOP:        /* fall through */    default:        break;    }#ifdef HAL_DCACHE_IS_ENABLED    HAL_DCACHE_IS_ENABLED(state);#endif    return state;}//-----------------------------------------------------------------------------// Memory accessor functions.void *__mem_fault_handler = (void *)0;/* These are the "arguments" to __do_read_mem and __do_write_mem,    which are passed as globals to avoid squeezing them thru   __set_mem_fault_trap.  */static volatile target_register_t memCount;static void__do_copy_mem (unsigned char* src, unsigned char* dst){    unsigned long *long_dst;    unsigned long *long_src;    unsigned short *short_dst;    unsigned short *short_src;    __mem_fault = 1;                      /* Defaults to 'fail'. Is cleared */                                          /* when the copy loop completes.  */    __mem_fault_handler = &&err;    // See if it's safe to do multi-byte, aligned operations    while (memCount) {        if ((memCount >= sizeof(long)) &&            (((target_register_t)dst & (sizeof(long)-1)) == 0) &&            (((target_register_t)src & (sizeof(long)-1)) == 0)) {                    long_dst = (unsigned long *)dst;            long_src = (unsigned long *)src;            *long_dst++ = *long_src++;            memCount -= sizeof(long);            dst = (unsigned char *)long_dst;            src = (unsigned char *)long_src;        } else if ((memCount >= sizeof(short)) &&                   (((target_register_t)dst & (sizeof(short)-1)) == 0) &&                   (((target_register_t)src & (sizeof(short)-1)) == 0)) {                        short_dst = (unsigned short *)dst;            short_src = (unsigned short *)src;            *short_dst++ = *short_src++;            memCount -= sizeof(short);            dst = (unsigned char *)short_dst;            src = (unsigned char *)short_src;        } else {            *dst++ = *src++;            memCount--;        }    }    __mem_fault = 0; err:    __mem_fault_handler = (void *)0;}/* * __read_mem_safe: * Get contents of target memory, abort on error. */int__read_mem_safe (void *dst, void *src, int count){  memCount = count;  __do_copy_mem((unsigned char*) src, (unsigned char*) dst);  return count - memCount;      // return number of bytes successfully read}/* * __write_mem_safe: * Set contents of target memory, abort on error. */int__write_mem_safe (void *src, void *dst, int count){  memCount = count;  __do_copy_mem((unsigned char*) src, (unsigned char*) dst);  return count - memCount;      // return number of bytes successfully written}//-----------------------------------------------------------------------------// Target extras?!int __process_target_query(char * pkt, char * out, int maxOut){ return 0 ; }int __process_target_set(char * pkt, char * out, int maxout){ return 0 ; }int __process_target_packet(char * pkt, char * out, int maxout){ return 0 ; }// GDB string output, making sure interrupts are disabled.// This function gets used by some diag output functions.void hal_output_gdb_string(target_register_t str, int string_len){    unsigned long __state;    HAL_DISABLE_INTERRUPTS(__state);    __output_gdb_string(str, string_len);    HAL_RESTORE_INTERRUPTS(__state);}#endif // CYGDBG_HAL_DEBUG_GDB_INCLUDE_STUBS

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