2015-04-22 01:31:31 +08:00
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#include <string.h>
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#include <generated/csr.h>
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#include "log.h"
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2015-10-31 23:26:09 +08:00
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#include "clock.h"
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2015-05-01 13:49:26 +08:00
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#include "flash_storage.h"
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2015-04-22 01:31:31 +08:00
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#include "mailbox.h"
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2015-07-25 16:26:04 +08:00
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#include "messages.h"
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2015-04-22 01:31:31 +08:00
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#include "elf_loader.h"
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#include "services.h"
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#include "kloader.h"
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static struct symbol symtab[128];
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static int _symtab_count;
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static char _symtab_strings[128*16];
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static char *_symtab_strptr;
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static void symtab_init(void)
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{
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memset(symtab, 0, sizeof(symtab));
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_symtab_count = 0;
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_symtab_strptr = _symtab_strings;
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}
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static int symtab_add(const char *name, void *target)
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{
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if(_symtab_count >= sizeof(symtab)/sizeof(symtab[0])) {
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log("Too many provided symbols in object");
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symtab_init();
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return 0;
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}
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symtab[_symtab_count].name = _symtab_strptr;
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symtab[_symtab_count].target = target;
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_symtab_count++;
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while(1) {
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if(_symtab_strptr >= &_symtab_strings[sizeof(_symtab_strings)]) {
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log("Provided symbol string table overflow");
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symtab_init();
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return 0;
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}
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*_symtab_strptr = *name;
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_symtab_strptr++;
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if(*name == 0)
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break;
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name++;
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}
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return 1;
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}
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int kloader_load(void *buffer, int length)
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{
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if(!kernel_cpu_reset_read()) {
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log("BUG: attempted to load while kernel CPU running");
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return 0;
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}
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symtab_init();
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return load_elf(
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resolve_service_symbol, symtab_add,
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buffer, length, (void *)KERNELCPU_PAYLOAD_ADDRESS, 4*1024*1024);
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}
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kernel_function kloader_find(const char *name)
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{
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return find_symbol(symtab, name);
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}
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extern char _binary_ksupport_bin_start;
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extern char _binary_ksupport_bin_end;
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static void start_kernel_cpu(void *addr)
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{
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memcpy((void *)KERNELCPU_EXEC_ADDRESS, &_binary_ksupport_bin_start,
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&_binary_ksupport_bin_end - &_binary_ksupport_bin_start);
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mailbox_acknowledge();
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mailbox_send(addr);
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kernel_cpu_reset_write(0);
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}
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void kloader_start_bridge(void)
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{
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start_kernel_cpu(NULL);
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}
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void kloader_start_user_kernel(kernel_function k)
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{
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if(!kernel_cpu_reset_read()) {
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log("BUG: attempted to start kernel CPU while already running (user kernel)");
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return;
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}
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start_kernel_cpu((void *)k);
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}
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2015-10-31 23:26:09 +08:00
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static int kloader_start_flash_kernel(char *key)
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2015-04-22 01:31:31 +08:00
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{
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2015-05-01 13:49:26 +08:00
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char buffer[32*1024];
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2015-10-31 23:26:09 +08:00
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unsigned int len, remain;
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2015-05-01 13:49:26 +08:00
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kernel_function k;
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2015-04-22 01:31:31 +08:00
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if(!kernel_cpu_reset_read()) {
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2015-10-31 23:26:09 +08:00
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log("BUG: attempted to start kernel CPU while already running (%s)", key);
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return 0;
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2015-04-22 01:31:31 +08:00
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}
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2015-05-02 12:20:20 +08:00
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#if (defined CSR_SPIFLASH_BASE && defined SPIFLASH_PAGE_SIZE)
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2015-10-31 23:26:09 +08:00
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len = fs_read(key, buffer, sizeof(buffer), &remain);
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2015-05-01 13:49:26 +08:00
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if(len <= 0)
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2015-10-31 23:26:09 +08:00
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return 0;
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if(remain) {
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log("ERROR: %s too long", key);
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return 0;
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}
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2015-05-01 13:49:26 +08:00
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if(!kloader_load(buffer, len)) {
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2015-10-31 23:26:09 +08:00
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log("ERROR: failed to load ELF binary (%s)", key);
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return 0;
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2015-05-01 13:49:26 +08:00
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}
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k = kloader_find("run");
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if(!k) {
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2015-10-31 23:26:09 +08:00
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log("ERROR: failed to find entry point for ELF kernel (%s)", key);
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return 0;
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2015-05-01 13:49:26 +08:00
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}
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start_kernel_cpu((void *)k);
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2015-10-31 23:26:09 +08:00
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return 1;
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#else
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return 0;
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2015-05-02 12:20:20 +08:00
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#endif
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2015-04-22 01:31:31 +08:00
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}
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2015-10-31 23:26:09 +08:00
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int kloader_start_startup_kernel(void)
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{
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return kloader_start_flash_kernel("startup_kernel");
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}
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int kloader_start_idle_kernel(void)
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{
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return kloader_start_flash_kernel("idle_kernel");
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}
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2015-05-09 17:11:34 +08:00
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void kloader_stop(void)
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2015-04-22 01:31:31 +08:00
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{
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kernel_cpu_reset_write(1);
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2015-04-29 12:57:09 +08:00
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mailbox_acknowledge();
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2015-04-22 01:31:31 +08:00
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}
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2015-07-25 16:26:04 +08:00
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int kloader_validate_kpointer(void *p)
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{
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unsigned int v = (unsigned int)p;
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if((v < 0x40400000) || (v > (0x4fffffff - 1024*1024))) {
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log("Received invalid pointer from kernel CPU: 0x%08x", v);
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return 0;
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}
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return 1;
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}
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int kloader_is_essential_kmsg(int msgtype)
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{
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switch(msgtype) {
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case MESSAGE_TYPE_NOW_INIT_REQUEST:
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case MESSAGE_TYPE_NOW_SAVE:
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case MESSAGE_TYPE_LOG:
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2015-10-31 23:26:09 +08:00
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case MESSAGE_TYPE_WATCHDOG_SET_REQUEST:
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case MESSAGE_TYPE_WATCHDOG_CLEAR:
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2015-07-25 16:26:04 +08:00
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return 1;
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default:
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return 0;
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}
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}
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long long int now;
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void kloader_service_essential_kmsg(void)
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{
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struct msg_base *umsg;
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umsg = mailbox_receive();
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if(umsg) {
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if(!kloader_validate_kpointer(umsg))
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return;
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switch(umsg->type) {
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case MESSAGE_TYPE_NOW_INIT_REQUEST: {
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struct msg_now_init_reply reply;
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reply.type = MESSAGE_TYPE_NOW_INIT_REPLY;
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reply.now = now;
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mailbox_send_and_wait(&reply);
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break;
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}
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case MESSAGE_TYPE_NOW_SAVE: {
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struct msg_now_save *msg = (struct msg_now_save *)umsg;
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now = msg->now;
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mailbox_acknowledge();
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break;
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}
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case MESSAGE_TYPE_LOG: {
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struct msg_log *msg = (struct msg_log *)umsg;
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log_va(msg->fmt, msg->args);
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mailbox_acknowledge();
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break;
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}
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2015-10-31 23:26:09 +08:00
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case MESSAGE_TYPE_WATCHDOG_SET_REQUEST: {
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struct msg_watchdog_set_request *msg = (struct msg_watchdog_set_request *)umsg;
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struct msg_watchdog_set_reply reply;
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reply.type = MESSAGE_TYPE_WATCHDOG_SET_REPLY;
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reply.id = watchdog_set(msg->ms);
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mailbox_send_and_wait(&reply);
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break;
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}
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case MESSAGE_TYPE_WATCHDOG_CLEAR: {
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struct msg_watchdog_clear *msg = (struct msg_watchdog_clear *)umsg;
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watchdog_clear(msg->id);
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mailbox_acknowledge();
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break;
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}
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2015-07-25 16:26:04 +08:00
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default:
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/* handled elsewhere */
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break;
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}
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}
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}
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