📄 support.c
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static unsigned long seed = 0xDEADB00B; HAL_CLOCK_READ(&res); // Not so bad... (but often 0..N where N is small) seed = ((seed & 0x007F00FF) << 7) ^ ((seed & 0x0F80FF00) >> 8) ^ // be sure to stir those low bits (res << 13) ^ (res >> 9); // using the clock too! return (int)seed;}void get_random_bytes(void *buf, size_t len){ unsigned long ranbuf, *lp; lp = (unsigned long *)buf; while (len > 0) { ranbuf = arc4random(); *lp++ = ranbuf; len -= sizeof(ranbuf); }}void microtime(struct timeval *tp){ panic("microtime");}voidget_mono_time(void){ panic("get_mono_time");}void csignal(pid_t pgid, int signum, uid_t uid, uid_t euid){ panic("csignal");}intbcmp(const void *_p1, const void *_p2, size_t len){ int res = 0; unsigned char *p1 = (unsigned char *)_p1; unsigned char *p2 = (unsigned char *)_p2; while (len-- > 0) { res = *p1++ - *p2++; if (res) break; } return res;}intcopyout(const void *s, void *d, size_t len){ memcpy(d, s, len); return 0;}intcopyin(const void *s, void *d, size_t len){ memcpy(d, s, len); return 0;}voidovbcopy(const void *s, void *d, size_t len){ memcpy(d, s, len);}// ------------------------------------------------------------------------// THE NETWORK THREAD ITSELF//// Network software interrupt handler// This function is run as a separate thread to allow// processing of network events (mostly incoming packets)// at "user level" instead of at interrupt time.//static voidcyg_netint(cyg_addrword_t param){ cyg_flag_value_t curisr; int spl; while (true) { curisr = cyg_flag_wait(&netint_flags, NETISR_ANY, CYG_FLAG_WAITMODE_OR|CYG_FLAG_WAITMODE_CLR); spl = splsoftnet(); // Prevent any overlapping "stack" processing#ifdef INET if (curisr & (1 << NETISR_ARP)) { // Pending ARP requests arpintr(); } if (curisr & (1 << NETISR_IP)) { // Pending IPv4 input ipintr(); }#endif#ifdef INET6 if (curisr & (1 << NETISR_IPV6)) { // Pending IPv6 input ip6intr(); }#endif#if NBRIDGE > 0 if (curisr & (1 << NETISR_BRIDGE)) { // Pending bridge input bridgeintr(); }#endif splx(spl); }}// This just sets one of the pseudo-ISR bits used above.voidsetsoftnet(void){ // This is called if we are out of MBUFs - it doesn't do anything, and // that situation is handled OK, so don't bother with the diagnostic: // diag_printf("setsoftnet\n"); // No need to do this because it is ignored anyway: // schednetisr(NETISR_SOFTNET);}/* Update the kernel globel ktime. */static void cyg_ktime_func(cyg_handle_t alarm,cyg_addrword_t data){ cyg_tick_count_t now = cyg_current_time(); ktime.tv_usec = (now % hz) * tick; ktime.tv_sec = 1 + now / hz;}static voidcyg_ktime_init(void){ cyg_handle_t ktime_alarm_handle; static cyg_alarm ktime_alarm; cyg_handle_t counter; // Do not start at 0 - net stack thinks 0 an invalid time; // Have a valid time available from right now: ktime.tv_usec = 0; ktime.tv_sec = 1; cyg_clock_to_counter(cyg_real_time_clock(),&counter); cyg_alarm_create(counter, cyg_ktime_func, 0, &ktime_alarm_handle, &ktime_alarm); /* We want one alarm every 10ms. */ cyg_alarm_initialize(ktime_alarm_handle,cyg_current_time()+1,1); cyg_alarm_enable(ktime_alarm_handle);}//// Network initialization// This function is called during system initialization to setup the whole// networking environment.// Linker magic to execute this function as 'init'extern void cyg_do_net_init(void);extern void ifinit(void);extern void loopattach(int);extern void bridgeattach(int);// Internal init functions:extern void cyg_alarm_timeout_init(void);extern void cyg_tsleep_init(void);voidcyg_net_init(void){ static int _init = false; cyg_netdevtab_entry_t *t; if (_init) return; cyg_do_net_init(); // Just forces linking in the initializer/constructor // Initialize interrupt "flags" cyg_flag_init(&netint_flags); // Initialize timeouts and net service thread (pseudo-DSRs) cyg_alarm_timeout_init(); // Initialize tsleep/wakeup support cyg_tsleep_init(); // Initialize network memory system cyg_kmem_init(); mbinit(); cyg_ktime_init(); // Create network background thread cyg_thread_create(CYGPKG_NET_THREAD_PRIORITY, // Priority cyg_netint, // entry 0, // entry parameter "Network support", // Name &netint_stack[0], // Stack STACK_SIZE, // Size &netint_thread_handle, // Handle &netint_thread_data // Thread data structure ); cyg_thread_resume(netint_thread_handle); // Start it // Initialize all network devices for (t = &__NETDEVTAB__[0]; t != &__NETDEVTAB_END__; t++) {// diag_printf("Init device '%s'\n", t->name); if (t->init(t)) { t->status = CYG_NETDEVTAB_STATUS_AVAIL; } else { // What to do if device init fails? t->status = 0; // Device not [currently] available } } // And attach the loopback interface#ifdef CYGPKG_NET_NLOOP#if 0 < CYGPKG_NET_NLOOP loopattach(0);#endif#endif#if NBRIDGE > 0 bridgeattach(0);#endif // Start up the network processing ifinit(); domaininit(); // Done _init = true;}// Copyright (C) 2002 Gary Thomas#include <net/if.h>#include <net/route.h>#include <net/netdb.h>externC void if_indextoname(int indx, char *buf, int len);typedef void pr_fun(char *fmt, ...);static void_mask(struct sockaddr *sa, char *buf, int _len){ char *cp = ((char *)sa) + 4; int len = sa->sa_len - 4; int tot = 0; while (len-- > 0) { if (tot) *buf++ = '.'; buf += diag_sprintf(buf, "%d", *cp++); tot++; } while (tot < 4) { if (tot) *buf++ = '.'; buf += diag_sprintf(buf, "%d", 0); tot++; }}static void_show_ifp(struct ifnet *ifp, pr_fun *pr){ struct ifaddr *ifa; char addr[64], netmask[64], broadcast[64]; (*pr)("%-8s", ifp->if_xname); TAILQ_FOREACH(ifa, &ifp->if_addrlist, ifa_list) { if (ifa->ifa_addr->sa_family != AF_LINK) { getnameinfo (ifa->ifa_addr, ifa->ifa_addr->sa_len, addr, sizeof(addr), 0, 0, 0); getnameinfo (ifa->ifa_dstaddr, ifa->ifa_dstaddr->sa_len, broadcast, sizeof(broadcast), 0, 0, 0); _mask(ifa->ifa_netmask, netmask, 64); (*pr)("IP: %s, Broadcast: %s, Netmask: %s\n", addr, broadcast, netmask); (*pr)(" "); if ((ifp->if_flags & IFF_UP)) (*pr)("UP "); if ((ifp->if_flags & IFF_BROADCAST)) (*pr)("BROADCAST "); if ((ifp->if_flags & IFF_LOOPBACK)) (*pr)("LOOPBACK "); if ((ifp->if_flags & IFF_RUNNING)) (*pr)("RUNNING "); if ((ifp->if_flags & IFF_PROMISC)) (*pr)("PROMISC "); if ((ifp->if_flags & IFF_MULTICAST)) (*pr)("MULTICAST "); if ((ifp->if_flags & IFF_ALLMULTI)) (*pr)("ALLMULTI "); (*pr)("MTU: %d, Metric: %d\n", ifp->if_mtu, ifp->if_metric); (*pr)(" Rx - Packets: %d, Bytes: %d", ifp->if_data.ifi_ipackets, ifp->if_data.ifi_ibytes); (*pr)(", Tx - Packets: %d, Bytes: %d\n", ifp->if_data.ifi_opackets, ifp->if_data.ifi_obytes); } }}static int_dumpentry(struct radix_node *rn, void *vw){ struct rtentry *rt = (struct rtentry *)rn; struct sockaddr *dst, *gate, *netmask, *genmask; char addr[32], *cp; pr_fun *pr = (pr_fun *)vw; dst = rt_key(rt); gate = rt->rt_gateway; netmask = rt_mask(rt); genmask = rt->rt_genmask; if ((rt->rt_flags & (RTF_UP | RTF_LLINFO)) == RTF_UP) { if (netmask == NULL) { return 0; } _inet_ntop(dst, addr, sizeof(addr)); (*pr)("%-15s ", addr); if (gate != NULL) { _inet_ntop(gate, addr, sizeof(addr)); (*pr)("%-15s ", addr); } else { (*pr)("%-15s ", " "); } if (netmask != NULL) { _mask(netmask, addr, sizeof(addr)); (*pr)("%-15s ", addr); } else { (*pr)("%-15s ", " "); } cp = addr; if ((rt->rt_flags & RTF_UP)) *cp++ = 'U'; if ((rt->rt_flags & RTF_GATEWAY)) *cp++ = 'G'; if ((rt->rt_flags & RTF_STATIC)) *cp++ = 'S'; if ((rt->rt_flags & RTF_DYNAMIC)) *cp++ = 'D'; *cp = '\0'; (*pr)("%-8s ", addr); // Flags if_indextoname(rt->rt_ifp->if_index, addr, 64); (*pr)("%-8s ", addr); (*pr)("\n"); } return 0;}voidshow_network_tables(pr_fun *pr){ int i, error; struct radix_node_head *rnh; struct ifnet *ifp; cyg_scheduler_lock(); (*pr)("Routing tables\n"); (*pr)("Destination Gateway Mask Flags Interface\n"); for (i = 1; i <= AF_MAX; i++) { if ((rnh = rt_tables[i]) != NULL) { error = rnh->rnh_walktree(rnh, _dumpentry, pr); } } (*pr)("Interface statistics\n"); for (ifp = ifnet.tqh_first; ifp != 0; ifp = ifp->if_list.tqe_next) { _show_ifp(ifp, pr); } cyg_scheduler_unlock();}#endif // CYGPKG_NET_DRIVER_FRAMEWORK// EOF support.c
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