mirror of
https://github.com/Llewellynvdm/conky.git
synced 2024-11-05 21:07:52 +00:00
Make cstyle.pl(1) happy.
git-svn-id: https://conky.svn.sourceforge.net/svnroot/conky/trunk/conky1@601 7f574dfc-610e-0410-a909-a81674777703
This commit is contained in:
parent
c2fb9f583a
commit
1fb0efb5f1
569
src/freebsd.c
569
src/freebsd.c
@ -30,12 +30,12 @@
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#include "conky.h"
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#define GETSYSCTL(name, var) getsysctl(name, &(var), sizeof(var))
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#define KELVTOC(x) ((x - 2732) / 10.0)
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#define MAXSHOWDEVS 16
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#define GETSYSCTL(name, var) getsysctl(name, &(var), sizeof (var))
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#define KELVTOC(x) ((x - 2732) / 10.0)
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#define MAXSHOWDEVS 16
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#if 0
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#define FREEBSD_DEBUG
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#define FREEBSD_DEBUG
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#endif
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inline void proc_find_top(struct process **cpu, struct process **mem);
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@ -48,14 +48,14 @@ static int getsysctl(char *name, void *ptr, size_t len)
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{
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size_t nlen = len;
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if (sysctlbyname(name, ptr, &nlen, NULL, 0) == -1) {
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return -1;
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return (-1);
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}
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if (nlen != len) {
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return -1;
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return (-1);
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}
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return 0;
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return (0);
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}
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static kvm_t *kd = NULL;
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@ -72,20 +72,20 @@ static int swapmode(int *retavail, int *retfree)
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if (kd_init) {
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kd_init = 0;
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if ((kd = kvm_open("/dev/null", "/dev/null", "/dev/null",
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O_RDONLY, "kvm_open")) == NULL) {
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O_RDONLY, "kvm_open")) == NULL) {
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(void) fprintf(stderr, "Cannot read kvm.");
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return -1;
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return (-1);
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}
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}
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if (kd == NULL) {
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return -1;
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return (-1);
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}
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*retavail = 0;
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*retfree = 0;
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#define CONVERT(v) ((quad_t)(v) * pagesize / 1024)
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#define CONVERT(v) ((quad_t)(v) * pagesize / 1024)
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n = kvm_getswapinfo(kd, swapary, 1, 0);
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if (n < 0 || swapary[0].ksw_total == 0)
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@ -95,33 +95,36 @@ static int swapmode(int *retavail, int *retfree)
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*retfree = CONVERT(swapary[0].ksw_total - swapary[0].ksw_used);
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n = (int) ((double) swapary[0].ksw_used * 100.0 /
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(double) swapary[0].ksw_total);
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(double) swapary[0].ksw_total);
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return n;
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return (n);
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}
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void prepare_update()
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void
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prepare_update()
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{
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}
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void update_uptime()
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void
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update_uptime()
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{
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int mib[2] = { CTL_KERN, KERN_BOOTTIME };
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struct timeval boottime;
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time_t now;
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size_t size = sizeof(boottime);
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size_t size = sizeof (boottime);
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if ((sysctl(mib, 2, &boottime, &size, NULL, 0) != -1)
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&& (boottime.tv_sec != 0)) {
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time(&now);
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info.uptime = now - boottime.tv_sec;
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} else {
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(void)fprintf(stderr, "Could not get uptime\n");
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fprintf(stderr, "Could not get uptime\n");
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info.uptime = 0;
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}
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}
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void update_meminfo()
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void
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update_meminfo()
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{
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int total_pages, inactive_pages, free_pages;
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int swap_avail, swap_free;
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@ -129,16 +132,16 @@ void update_meminfo()
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int pagesize = getpagesize();
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if (GETSYSCTL("vm.stats.vm.v_page_count", total_pages))
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(void)fprintf(stderr,
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"Cannot read sysctl \"vm.stats.vm.v_page_count\"");
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fprintf(stderr,
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"Cannot read sysctl \"vm.stats.vm.v_page_count\"");
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if (GETSYSCTL("vm.stats.vm.v_free_count", free_pages))
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(void)fprintf(stderr,
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"Cannot read sysctl \"vm.stats.vm.v_free_count\"");
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fprintf(stderr,
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"Cannot read sysctl \"vm.stats.vm.v_free_count\"");
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if (GETSYSCTL("vm.stats.vm.v_inactive_count", inactive_pages))
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(void)fprintf(stderr,
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"Cannot read sysctl \"vm.stats.vm.v_inactive_count\"");
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fprintf(stderr,
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"Cannot read sysctl \"vm.stats.vm.v_inactive_count\"");
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info.memmax = (total_pages * pagesize) >> 10;
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info.mem =
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@ -154,7 +157,8 @@ void update_meminfo()
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}
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}
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void update_net_stats()
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void
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update_net_stats()
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{
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struct net_stat *ns;
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double delta;
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@ -188,7 +192,7 @@ void update_net_stats()
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if (r < ns->last_read_recv)
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ns->recv +=
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((long long) 4294967295U -
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ns->last_read_recv) + r;
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ns->last_read_recv) + r;
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else
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ns->recv += (r - ns->last_read_recv);
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@ -197,7 +201,7 @@ void update_net_stats()
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if (t < ns->last_read_trans)
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ns->trans +=
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((long long) 4294967295U -
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ns->last_read_trans) + t;
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ns->last_read_trans) + t;
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else
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ns->trans += (t - ns->last_read_trans);
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@ -213,7 +217,8 @@ void update_net_stats()
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freeifaddrs(ifap);
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}
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void update_total_processes()
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void
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update_total_processes()
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{
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int n_processes;
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static int kd_init = 1;
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@ -221,8 +226,8 @@ void update_total_processes()
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if (kd_init) {
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kd_init = 0;
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if ((kd = kvm_open("/dev/null", "/dev/null", "/dev/null",
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O_RDONLY, "kvm_open")) == NULL) {
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(void)fprintf(stderr, "Cannot read kvm.");
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O_RDONLY, "kvm_open")) == NULL) {
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fprintf(stderr, "Cannot read kvm.");
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return;
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}
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}
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@ -236,7 +241,8 @@ void update_total_processes()
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info.procs = n_processes;
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}
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void update_running_processes()
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void
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update_running_processes()
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{
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static int kd_init = 1;
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struct kinfo_proc *p;
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@ -245,9 +251,8 @@ void update_running_processes()
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if (kd_init) {
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kd_init = 0;
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if ((kd =
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kvm_open("/dev/null", "/dev/null", "/dev/null",
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O_RDONLY, "kvm_open")) == NULL) {
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if ((kd = kvm_open("/dev/null", "/dev/null", "/dev/null",
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O_RDONLY, "kvm_open")) == NULL) {
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(void) fprintf(stderr, "Cannot read kvm.");
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}
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}
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@ -275,11 +280,13 @@ struct cpu_load_struct {
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struct cpu_load_struct fresh = { {0, 0, 0, 0, 0} };
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long cpu_used, oldtotal, oldused;
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void get_cpu_count()
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void
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get_cpu_count()
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{
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/* int cpu_count = 0; */
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/* XXX
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/*
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* XXX
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* FreeBSD doesn't allow to get per CPU load stats
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* on SMP machines. It's possible to get a CPU count,
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* but as we fulfil only info.cpu_usage[0], it's better
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@ -291,24 +298,25 @@ void get_cpu_count()
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info.cpu_count = cpu_count;
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#endif
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info.cpu_count = 1;
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info.cpu_usage = malloc(info.cpu_count * sizeof(float));
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info.cpu_usage = malloc(info.cpu_count * sizeof (float));
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if (info.cpu_usage == NULL)
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CRIT_ERR("malloc");
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}
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/* XXX: SMP support */
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void update_cpu_usage()
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void
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update_cpu_usage()
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{
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long used, total;
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long cp_time[CPUSTATES];
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size_t len = sizeof(cp_time);
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size_t len = sizeof (cp_time);
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if (cpu_setup == 0) {
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get_cpu_count();
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cpu_setup = 1;
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}
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if (sysctlbyname("kern.cp_time", &cp_time, &len, NULL, 0) < 0) {
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(void) fprintf(stderr, "Cannot get kern.cp_time");
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}
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@ -324,7 +332,8 @@ void update_cpu_usage()
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fresh.load[0] + fresh.load[1] + fresh.load[2] + fresh.load[3];
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if ((total - oldtotal) != 0) {
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info.cpu_usage[0] = ((double) (used - oldused)) / (double) (total - oldtotal);
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info.cpu_usage[0] = ((double) (used - oldused)) /
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(double) (total - oldtotal);
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} else {
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info.cpu_usage[0] = 0;
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}
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@ -333,12 +342,14 @@ void update_cpu_usage()
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oldtotal = total;
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}
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double get_i2c_info(int *fd, int arg, char *devtype, char *type)
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double
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get_i2c_info(int *fd, int arg, char *devtype, char *type)
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{
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return 0;
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return (0);
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}
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void update_load_average()
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void
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update_load_average()
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{
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double v[3];
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getloadavg(v, 3);
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@ -348,30 +359,32 @@ void update_load_average()
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info.loadavg[2] = (float) v[2];
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}
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double get_acpi_temperature(int fd)
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double
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get_acpi_temperature(int fd)
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{
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int temp;
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if (GETSYSCTL("hw.acpi.thermal.tz0.temperature", temp)) {
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(void)fprintf(stderr,
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"Cannot read sysctl \"hw.acpi.thermal.tz0.temperature\"\n");
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return 0.0;
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fprintf(stderr,
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"Cannot read sysctl \"hw.acpi.thermal.tz0.temperature\"\n");
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return (0.0);
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}
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return KELVTOC(temp);
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return (KELVTOC(temp));
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}
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void get_battery_stuff(char *buf, unsigned int n, const char *bat)
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void
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get_battery_stuff(char *buf, unsigned int n, const char *bat)
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{
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int battime;
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if (GETSYSCTL("hw.acpi.battery.time", battime))
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(void) fprintf(stderr,
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"Cannot read sysctl \"hw.acpi.battery.time\"\n");
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"Cannot read sysctl \"hw.acpi.battery.time\"\n");
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if (battime != -1)
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snprintf(buf, n, "Discharging, remaining %d:%2.2d",
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battime / 60, battime % 60);
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battime / 60, battime % 60);
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else
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snprintf(buf, n, "Battery is charging");
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}
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@ -380,15 +393,17 @@ int
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open_i2c_sensor(const char *dev, const char *type, int n, int *div,
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char *devtype)
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{
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return 0;
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return (0);
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}
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int open_acpi_temperature(const char *name)
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int
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open_acpi_temperature(const char *name)
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{
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return 0;
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return (0);
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}
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void get_acpi_ac_adapter(char *p_client_buffer, size_t client_buffer_size)
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void
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get_acpi_ac_adapter(char *p_client_buffer, size_t client_buffer_size)
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{
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int state;
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@ -396,171 +411,174 @@ void get_acpi_ac_adapter(char *p_client_buffer, size_t client_buffer_size)
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return;
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if (GETSYSCTL("hw.acpi.acline", state)) {
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(void)fprintf(stderr,
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"Cannot read sysctl \"hw.acpi.acline\"\n");
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fprintf(stderr,
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"Cannot read sysctl \"hw.acpi.acline\"\n");
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return;
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}
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if (state)
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strncpy(p_client_buffer, "Running on AC Power", client_buffer_size);
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strncpy(p_client_buffer, "Running on AC Power",
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client_buffer_size);
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else
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strncpy(p_client_buffer, "Running on battery", client_buffer_size);
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strncpy(p_client_buffer, "Running on battery",
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client_buffer_size);
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return;
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}
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void get_acpi_fan(char *p_client_buffer, size_t client_buffer_size)
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void
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get_acpi_fan(char *p_client_buffer, size_t client_buffer_size)
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{
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if (!p_client_buffer || client_buffer_size <= 0)
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return;
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/* not implemented */
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memset(p_client_buffer, 0, client_buffer_size);
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return;
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}
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void get_adt746x_cpu(char *p_client_buffer, size_t client_buffer_size)
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void
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get_adt746x_cpu(char *p_client_buffer, size_t client_buffer_size)
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{
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if (!p_client_buffer || client_buffer_size <= 0)
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return;
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/* not implemented */
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memset(p_client_buffer, 0, client_buffer_size);
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return;
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}
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void get_adt746x_fan(char *p_client_buffer, size_t client_buffer_size)
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void
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get_adt746x_fan(char *p_client_buffer, size_t client_buffer_size)
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{
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if (!p_client_buffer || client_buffer_size <= 0)
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return;
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/* not implemented */
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memset(p_client_buffer,0,client_buffer_size);
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return;
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memset(p_client_buffer, 0, client_buffer_size);
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}
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/* rdtsc() and get_freq_dynamic() copied from linux.c */
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#if defined(__i386) || defined(__x86_64)
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__inline__ unsigned long long int rdtsc()
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__inline__ unsigned long long int
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rdtsc()
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{
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unsigned long long int x;
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__asm__ volatile (".byte 0x0f, 0x31":"=A" (x));
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return x;
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unsigned long long int x;
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__asm__ volatile(".byte 0x0f, 0x31":"=A" (x));
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return (x);
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}
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#endif
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/* return system frequency in MHz (use divisor=1) or GHz (use divisor=1000) */
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void get_freq_dynamic(char * p_client_buffer, size_t client_buffer_size, char * p_format, int divisor)
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void
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get_freq_dynamic(char *p_client_buffer, size_t client_buffer_size,
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char *p_format, int divisor)
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{
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#if defined(__i386) || defined(__x86_64)
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struct timezone tz;
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struct timeval tvstart, tvstop;
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unsigned long long cycles[2]; /* gotta be 64 bit */
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unsigned int microseconds; /* total time taken */
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struct timezone tz;
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struct timeval tvstart, tvstop;
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unsigned long long cycles[2]; /* gotta be 64 bit */
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unsigned int microseconds; /* total time taken */
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memset(&tz, 0, sizeof(tz));
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memset(&tz, 0, sizeof (tz));
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/* get this function in cached memory */
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gettimeofday(&tvstart, &tz);
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cycles[0] = rdtsc();
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gettimeofday(&tvstart, &tz);
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/* we don't trust that this is any specific length of time */
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usleep(100);
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cycles[1] = rdtsc();
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gettimeofday(&tvstop, &tz);
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microseconds = ((tvstop.tv_sec - tvstart.tv_sec) * 1000000) +
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(tvstop.tv_usec - tvstart.tv_usec);
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snprintf(p_client_buffer, client_buffer_size, p_format,
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(float)((cycles[1] - cycles[0]) / microseconds) / divisor);
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return;
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/* get this function in cached memory */
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gettimeofday(&tvstart, &tz);
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cycles[0] = rdtsc();
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gettimeofday(&tvstart, &tz);
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/* we don't trust that this is any specific length of time */
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usleep(100);
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cycles[1] = rdtsc();
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gettimeofday(&tvstop, &tz);
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microseconds = ((tvstop.tv_sec - tvstart.tv_sec) * 1000000) +
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(tvstop.tv_usec - tvstart.tv_usec);
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snprintf(p_client_buffer, client_buffer_size, p_format,
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(float)((cycles[1] - cycles[0]) / microseconds) / divisor);
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#else
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get_freq(p_client_buffer, client_buffer_size, p_format, divisor);
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return;
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#endif
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}
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/* return system frequency in MHz (use divisor=1) or GHz (use divisor=1000) */
|
||||
void get_freq(char *p_client_buffer, size_t client_buffer_size, char *p_format, int divisor)
|
||||
void
|
||||
get_freq(char *p_client_buffer, size_t client_buffer_size,
|
||||
char *p_format, int divisor)
|
||||
{
|
||||
int freq;
|
||||
|
||||
if (!p_client_buffer || client_buffer_size <= 0 || !p_format || divisor <= 0)
|
||||
return;
|
||||
|
||||
if (GETSYSCTL("dev.cpu.0.freq", freq) == 0)
|
||||
{
|
||||
snprintf(p_client_buffer, client_buffer_size, p_format, freq/divisor);
|
||||
}
|
||||
else
|
||||
{
|
||||
snprintf(p_client_buffer, client_buffer_size, p_format, (float)0);
|
||||
}
|
||||
if (!p_client_buffer || client_buffer_size <= 0
|
||||
|| !p_format || divisor <= 0)
|
||||
return;
|
||||
|
||||
return;
|
||||
if (GETSYSCTL("dev.cpu.0.freq", freq) == 0)
|
||||
snprintf(p_client_buffer, client_buffer_size,
|
||||
p_format, freq/divisor);
|
||||
else
|
||||
snprintf(p_client_buffer, client_buffer_size, p_format, 0f);
|
||||
}
|
||||
|
||||
void update_top()
|
||||
void
|
||||
update_top()
|
||||
{
|
||||
proc_find_top(info.cpu, info.memu);
|
||||
}
|
||||
|
||||
void update_wifi_stats()
|
||||
void
|
||||
update_wifi_stats()
|
||||
{
|
||||
/* XXX */
|
||||
}
|
||||
void update_diskio()
|
||||
void
|
||||
update_diskio()
|
||||
{
|
||||
int devs_count,
|
||||
int devs_count,
|
||||
num_selected,
|
||||
num_selections;
|
||||
struct device_selection *dev_select = NULL;
|
||||
long select_generation;
|
||||
int dn;
|
||||
struct device_selection *dev_select = NULL;
|
||||
long select_generation;
|
||||
int dn;
|
||||
static struct statinfo statinfo_cur;
|
||||
u_int64_t diskio_current = 0;
|
||||
|
||||
bzero(&statinfo_cur, sizeof(statinfo_cur));
|
||||
statinfo_cur.dinfo = (struct devinfo *)malloc(sizeof(struct devinfo));
|
||||
bzero(statinfo_cur.dinfo, sizeof(struct devinfo));
|
||||
|
||||
bzero(&statinfo_cur, sizeof (statinfo_cur));
|
||||
statinfo_cur.dinfo = (struct devinfo *)malloc(sizeof (struct devinfo));
|
||||
bzero(statinfo_cur.dinfo, sizeof (struct devinfo));
|
||||
|
||||
if (devstat_getdevs(NULL, &statinfo_cur) < 0)
|
||||
return;
|
||||
|
||||
devs_count = statinfo_cur.dinfo->numdevs;
|
||||
if (devstat_selectdevs(&dev_select, &num_selected, &num_selections,
|
||||
&select_generation, statinfo_cur.dinfo->generation,
|
||||
statinfo_cur.dinfo->devices, devs_count, NULL, 0,
|
||||
statinfo_cur.dinfo->devices, devs_count, NULL, 0,
|
||||
NULL, 0, DS_SELECT_ONLY, MAXSHOWDEVS, 1) >= 0) {
|
||||
for (dn = 0; dn < devs_count; ++dn) {
|
||||
int di;
|
||||
struct devstat *dev;
|
||||
struct devstat *dev;
|
||||
|
||||
di = dev_select[dn].position;
|
||||
dev = &statinfo_cur.dinfo->devices[di];
|
||||
dev = &statinfo_cur.dinfo->devices[di];
|
||||
|
||||
diskio_current += dev->bytes[DEVSTAT_READ] + dev->bytes[DEVSTAT_WRITE];
|
||||
diskio_CUrrent += dev->bytes[DEVSTAT_READ] +
|
||||
dev->bytes[DEVSTAT_WRITE];
|
||||
}
|
||||
|
||||
|
||||
free(dev_select);
|
||||
}
|
||||
|
||||
/*
|
||||
/*
|
||||
* Since we return (diskio_total_current - diskio_total_old), first
|
||||
* frame will be way too high (it will be equal to diskio_total_current, i.e.
|
||||
* all disk I/O since boot). That's why it is better to return 0 first time;
|
||||
* frame will be way too high (it will be equal to
|
||||
* diskio_total_current, i.e. all disk I/O since boot). That's why
|
||||
* it is better to return 0 first time;
|
||||
*/
|
||||
if (diskio_setup == 0) {
|
||||
diskio_setup = 1;
|
||||
diskio_value = 0;
|
||||
} else
|
||||
diskio_value = (unsigned int)((diskio_current - diskio_prev)/1024);
|
||||
diskio_value = (unsigned int)((diskio_current - diskio_prev)/
|
||||
1024);
|
||||
diskio_prev = diskio_current;
|
||||
|
||||
free(statinfo_cur.dinfo);
|
||||
@ -570,29 +588,32 @@ void update_diskio()
|
||||
* While topless is obviously better, top is also not bad.
|
||||
*/
|
||||
|
||||
int comparecpu(const void *a, const void *b)
|
||||
int
|
||||
comparecpu(const void *a, const void *b)
|
||||
{
|
||||
if (((struct process *)a)->amount > ((struct process *)b)->amount)
|
||||
return -1;
|
||||
|
||||
if (((struct process *)a)->amount < ((struct process *)b)->amount)
|
||||
return 1;
|
||||
|
||||
return 0;
|
||||
return (-1);
|
||||
|
||||
if (((struct process *)a)->amount < ((struct process *)b)->amount)
|
||||
return (1);
|
||||
|
||||
return (0);
|
||||
}
|
||||
|
||||
int comparemem(const void *a, const void *b)
|
||||
int
|
||||
comparemem(const void *a, const void *b)
|
||||
{
|
||||
if (((struct process *)a)->totalmem > ((struct process *)b)->totalmem)
|
||||
return -1;
|
||||
|
||||
return (-1);
|
||||
|
||||
if (((struct process *)a)->totalmem < ((struct process *)b)->totalmem)
|
||||
return 1;
|
||||
|
||||
return 0;
|
||||
return (1);
|
||||
|
||||
return (0);
|
||||
}
|
||||
|
||||
inline void proc_find_top(struct process **cpu, struct process **mem)
|
||||
inline void
|
||||
proc_find_top(struct process **cpu, struct process **mem)
|
||||
{
|
||||
static int kd_init = 1;
|
||||
struct kinfo_proc *p;
|
||||
@ -602,10 +623,9 @@ inline void proc_find_top(struct process **cpu, struct process **mem)
|
||||
|
||||
if (kd_init) {
|
||||
kd_init = 0;
|
||||
if ((kd =
|
||||
kvm_open("/dev/null", "/dev/null", "/dev/null",
|
||||
O_RDONLY, "kvm_open")) == NULL) {
|
||||
(void)fprintf(stderr, "Cannot read kvm.");
|
||||
if ((kd = kvm_open("/dev/null", "/dev/null", "/dev/null",
|
||||
O_RDONLY, "kvm_open")) == NULL) {
|
||||
fprintf(stderr, "Cannot read kvm.");
|
||||
}
|
||||
}
|
||||
|
||||
@ -614,26 +634,30 @@ inline void proc_find_top(struct process **cpu, struct process **mem)
|
||||
|
||||
/* we get total pages count again to be sure it is up to date */
|
||||
if (GETSYSCTL("vm.stats.vm.v_page_count", total_pages) != 0)
|
||||
CRIT_ERR("Cannot read sysctl \"vm.stats.vm.v_page_count\"");
|
||||
|
||||
CRIT_ERR("Cannot read sysctl"
|
||||
"\"vm.stats.vm.v_page_count\"");
|
||||
|
||||
p = kvm_getprocs(kd, KERN_PROC_PROC, 0, &n_processes);
|
||||
processes = malloc(n_processes * sizeof(struct process));
|
||||
processes = malloc(n_processes * sizeof (struct process));
|
||||
|
||||
for (i = 0; i < n_processes; i++) {
|
||||
if (!((p[i].ki_flag & P_SYSTEM)) && p[i].ki_comm != NULL) {
|
||||
if (!((p[i].ki_flag & P_SYSTEM)) &&
|
||||
p[i].ki_comm != NULL) {
|
||||
processes[j].pid = p[i].ki_pid;
|
||||
processes[j].name = strdup(p[i].ki_comm);
|
||||
processes[j].amount = 100.0 * p[i].ki_pctcpu / FSCALE;
|
||||
processes[j].totalmem = (float)(p[i].ki_rssize / (float)total_pages) * 100.0;
|
||||
processes[j].amount = 100.0 *
|
||||
p[i].ki_pctcpu / FSCALE;
|
||||
processes[j].totalmem = (float)(p[i].ki_rssize /
|
||||
(float)total_pages) * 100.0;
|
||||
j++;
|
||||
}
|
||||
}
|
||||
|
||||
qsort(processes, j - 1, sizeof(struct process), comparemem);
|
||||
qsort(processes, j - 1, sizeof (struct process), comparemem);
|
||||
for (i = 0; i < 10; i++) {
|
||||
struct process *tmp;
|
||||
|
||||
tmp = malloc(sizeof(struct process));
|
||||
tmp = malloc(sizeof (struct process));
|
||||
tmp->pid = processes[i].pid;
|
||||
tmp->amount = processes[i].amount;
|
||||
tmp->totalmem = processes[i].totalmem;
|
||||
@ -642,11 +666,11 @@ inline void proc_find_top(struct process **cpu, struct process **mem)
|
||||
mem[i] = tmp;
|
||||
}
|
||||
|
||||
qsort(processes, j - 1, sizeof(struct process), comparecpu);
|
||||
qsort(processes, j - 1, sizeof (struct process), comparecpu);
|
||||
for (i = 0; i < 10; i++) {
|
||||
struct process *tmp;
|
||||
|
||||
tmp = malloc(sizeof(struct process));
|
||||
tmp = malloc(sizeof (struct process));
|
||||
tmp->pid = processes[i].pid;
|
||||
tmp->amount = processes[i].amount;
|
||||
tmp->totalmem = processes[i].totalmem;
|
||||
@ -654,145 +678,142 @@ inline void proc_find_top(struct process **cpu, struct process **mem)
|
||||
|
||||
cpu[i] = tmp;
|
||||
}
|
||||
|
||||
|
||||
#if defined(FREEBSD_DEBUG)
|
||||
printf("=====\nmem\n");
|
||||
for (i = 0; i < 10; i++) {
|
||||
printf("%d: %s(%d) %.2f\n", i, mem[i]->name, mem[i]->pid, mem[i]->totalmem);
|
||||
printf("%d: %s(%d) %.2f\n", i, mem[i]->name,
|
||||
mem[i]->pid, mem[i]->totalmem);
|
||||
}
|
||||
|
||||
/* printf("=====\ncpu\n");
|
||||
for (i = 0; i <= 10; i++) {
|
||||
printf("%d: %s\n", i, cpu[i]->name);
|
||||
}*/
|
||||
#endif
|
||||
|
||||
free(processes);
|
||||
}
|
||||
}
|
||||
|
||||
#if defined(i386) || defined(__i386__)
|
||||
#define APMDEV "/dev/apm"
|
||||
#define APM_UNKNOWN 255
|
||||
|
||||
int
|
||||
apm_getinfo(int fd, apm_info_t aip)
|
||||
{
|
||||
if (ioctl(fd, APMIO_GETINFO, aip) == -1)
|
||||
return (-1);
|
||||
|
||||
return (0);
|
||||
}
|
||||
|
||||
char
|
||||
*get_apm_adapter()
|
||||
{
|
||||
int fd;
|
||||
struct apm_info info;
|
||||
|
||||
fd = open(APMDEV, O_RDONLY);
|
||||
if (fd < 0)
|
||||
return ("ERR");
|
||||
|
||||
if (apm_getinfo(fd, &info) != 0) {
|
||||
close(fd);
|
||||
return ("ERR");
|
||||
}
|
||||
close(fd);
|
||||
|
||||
switch (info.ai_acline) {
|
||||
case 0:
|
||||
return ("off-line");
|
||||
break;
|
||||
case 1:
|
||||
if (info.ai_batt_stat == 3)
|
||||
return ("charging");
|
||||
else
|
||||
return ("on-line");
|
||||
break;
|
||||
default:
|
||||
return ("unknown");
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
char
|
||||
*get_apm_battery_life()
|
||||
{
|
||||
int fd;
|
||||
u_int batt_life;
|
||||
struct apm_info info;
|
||||
char *out;
|
||||
|
||||
out = (char *)calloc(16, sizeof (char));
|
||||
|
||||
fd = open(APMDEV, O_RDONLY);
|
||||
if (fd < 0) {
|
||||
strncpy(out, "ERR", 16);
|
||||
return (out);
|
||||
}
|
||||
|
||||
if (apm_getinfo(fd, &info) != 0) {
|
||||
close(fd);
|
||||
strncpy(out, "ERR", 16);
|
||||
return (out);
|
||||
}
|
||||
close(fd);
|
||||
|
||||
batt_life = info.ai_batt_life;
|
||||
if (batt_life == APM_UNKNOWN)
|
||||
strncpy(out, "unknown", 16);
|
||||
else if (batt_life <= 100) {
|
||||
snprintf(out, 16, "%d%%", batt_life);
|
||||
return (out);
|
||||
} else
|
||||
return;
|
||||
strncpy(out, "ERR", 16);
|
||||
|
||||
return (out);
|
||||
}
|
||||
|
||||
#if defined(i386) || defined(__i386__)
|
||||
#define APMDEV "/dev/apm"
|
||||
#define APM_UNKNOWN 255
|
||||
|
||||
int apm_getinfo(int fd, apm_info_t aip)
|
||||
char
|
||||
*get_apm_battery_time()
|
||||
{
|
||||
if (ioctl(fd, APMIO_GETINFO, aip) == -1)
|
||||
return -1;
|
||||
int fd;
|
||||
int batt_time;
|
||||
int h, m, s;
|
||||
struct apm_info info;
|
||||
char *out;
|
||||
|
||||
return 0;
|
||||
}
|
||||
out = (char *)calloc(16, sizeof (char));
|
||||
|
||||
char *get_apm_adapter()
|
||||
{
|
||||
int fd;
|
||||
struct apm_info info;
|
||||
fd = open(APMDEV, O_RDONLY);
|
||||
if (fd < 0) {
|
||||
strncpy(out, "ERR", 16);
|
||||
return (out);
|
||||
}
|
||||
|
||||
fd = open(APMDEV, O_RDONLY);
|
||||
if (fd < 0)
|
||||
return "ERR";
|
||||
|
||||
if (apm_getinfo(fd, &info) != 0) {
|
||||
if (apm_getinfo(fd, &info) != 0) {
|
||||
close(fd);
|
||||
return "ERR";
|
||||
strncpy(out, "ERR", 16);
|
||||
return (out);
|
||||
}
|
||||
close(fd);
|
||||
|
||||
switch (info.ai_acline) {
|
||||
case 0:
|
||||
return "off-line";
|
||||
break;
|
||||
case 1:
|
||||
if (info.ai_batt_stat == 3)
|
||||
return "charging";
|
||||
else
|
||||
return "on-line";
|
||||
break;
|
||||
default:
|
||||
return "unknown";
|
||||
break;
|
||||
}
|
||||
}
|
||||
batt_time = info.ai_batt_time;
|
||||
|
||||
char *get_apm_battery_life()
|
||||
{
|
||||
int fd;
|
||||
u_int batt_life;
|
||||
struct apm_info info;
|
||||
char *out;
|
||||
|
||||
out = (char *)calloc(16, sizeof(char));
|
||||
|
||||
|
||||
fd = open(APMDEV, O_RDONLY);
|
||||
if (fd < 0) {
|
||||
strncpy(out, "ERR", 16);
|
||||
return out;
|
||||
}
|
||||
|
||||
if (apm_getinfo(fd, &info) != 0 ) {
|
||||
close(fd);
|
||||
strncpy(out, "ERR", 16);
|
||||
return out;
|
||||
}
|
||||
close(fd);
|
||||
|
||||
batt_life = info.ai_batt_life;
|
||||
if (batt_life == APM_UNKNOWN)
|
||||
if (batt_time == -1)
|
||||
strncpy(out, "unknown", 16);
|
||||
else if (batt_life <= 100) {
|
||||
snprintf(out, 20,"%d%%", batt_life);
|
||||
return out;
|
||||
}
|
||||
else
|
||||
strncpy(out, "ERR", 16);
|
||||
|
||||
return out;
|
||||
}
|
||||
|
||||
char *get_apm_battery_time()
|
||||
{
|
||||
int fd;
|
||||
int batt_time;
|
||||
int h, m, s;
|
||||
struct apm_info info;
|
||||
char *out;
|
||||
|
||||
out = (char *)calloc(16, sizeof(char));
|
||||
|
||||
fd = open(APMDEV, O_RDONLY);
|
||||
if (fd < 0) {
|
||||
strncpy(out, "ERR", 16);
|
||||
return out;
|
||||
else {
|
||||
h = batt_time;
|
||||
s = h % 60;
|
||||
h /= 60;
|
||||
m = h % 60;
|
||||
h /= 60;
|
||||
snprintf(out, 16, "%2d:%02d:%02d", h, m, s);
|
||||
}
|
||||
|
||||
if (apm_getinfo(fd, &info) != 0 ) {
|
||||
close(fd);
|
||||
strncpy(out, "ERR", 16);
|
||||
return out;
|
||||
}
|
||||
close(fd);
|
||||
|
||||
batt_time = info.ai_batt_time;
|
||||
|
||||
if (batt_time == -1)
|
||||
strncpy(out, "unknown", 16);
|
||||
else {
|
||||
h = batt_time;
|
||||
s = h % 60;
|
||||
h /= 60;
|
||||
m = h % 60;
|
||||
h /= 60;
|
||||
snprintf(out, 16, "%2d:%02d:%02d", h, m, s);
|
||||
}
|
||||
|
||||
return out;
|
||||
return (out);
|
||||
}
|
||||
|
||||
#endif
|
||||
|
||||
/* empty stub so conky links */
|
||||
void free_all_processes(void)
|
||||
void
|
||||
free_all_processes(void)
|
||||
{
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user