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/* |
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htop - OpenBSDProcessList.c |
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(C) 2014 Hisham H. Muhammad |
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(C) 2015 Michael McConville |
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Released under the GNU GPLv2, see the COPYING file |
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in the source distribution for its full text. |
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*/ |
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#include "OpenBSDProcessList.h" |
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#include <kvm.h> |
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#include <limits.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <unistd.h> |
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#include <sys/mount.h> |
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#include <sys/param.h> |
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#include <sys/proc.h> |
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#include <sys/sched.h> |
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#include <sys/swap.h> |
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#include <sys/sysctl.h> |
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#include <sys/types.h> |
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#include <uvm/uvmexp.h> |
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#include "CRT.h" |
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#include "Macros.h" |
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#include "Object.h" |
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#include "OpenBSDProcess.h" |
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#include "Process.h" |
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#include "ProcessList.h" |
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#include "Settings.h" |
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#include "XUtils.h" |
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static long fscale; |
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static int pageSize; |
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static int pageSizeKB; |
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ProcessList* ProcessList_new(UsersTable* usersTable, Hashtable* pidMatchList, uid_t userId) { |
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const int nmib[] = { CTL_HW, HW_NCPU }; |
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const int mib[] = { CTL_HW, HW_NCPUONLINE }; |
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const int fmib[] = { CTL_KERN, KERN_FSCALE }; |
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int r; |
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unsigned int cpu_index_c = 0; |
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unsigned int ncpu; |
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size_t size; |
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char errbuf[_POSIX2_LINE_MAX]; |
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OpenBSDProcessList* opl = xCalloc(1, sizeof(OpenBSDProcessList)); |
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ProcessList* pl = (ProcessList*) opl; |
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ProcessList_init(pl, Class(OpenBSDProcess), usersTable, pidMatchList, userId); |
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size = sizeof(pl->cpuCount); |
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r = sysctl(mib, 2, &pl->cpuCount, &size, NULL, 0); |
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if (r < 0 || pl->cpuCount < 1) { |
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pl->cpuCount = 1; |
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} |
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opl->cpus = xCalloc(pl->cpuCount + 1, sizeof(CPUData)); |
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size = sizeof(int); |
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r = sysctl(nmib, 2, &ncpu, &size, NULL, 0); |
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if (r < 0) { |
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ncpu = pl->cpuCount; |
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} |
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size = sizeof(fscale); |
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if (sysctl(fmib, 2, &fscale, &size, NULL, 0) < 0) { |
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CRT_fatalError("fscale sysctl call failed"); |
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} |
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if ((pageSize = sysconf(_SC_PAGESIZE)) == -1) |
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CRT_fatalError("pagesize sysconf call failed"); |
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pageSizeKB = pageSize / ONE_K; |
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for (unsigned int i = 0; i <= pl->cpuCount; i++) { |
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CPUData* d = opl->cpus + i; |
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d->totalTime = 1; |
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d->totalPeriod = 1; |
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} |
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opl->kd = kvm_openfiles(NULL, NULL, NULL, KVM_NO_FILES, errbuf); |
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if (opl->kd == NULL) { |
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CRT_fatalError("kvm_openfiles() failed"); |
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} |
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opl->cpuSpeed = -1; |
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for (unsigned int i = 0; i < ncpu; i++) { |
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const int ncmib[] = { CTL_KERN, KERN_CPUSTATS, i }; |
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struct cpustats cpu_stats; |
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size = sizeof(cpu_stats); |
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if (sysctl(ncmib, 3, &cpu_stats, &size, NULL, 0) < 0) { |
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CRT_fatalError("ncmib sysctl call failed"); |
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} |
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if (cpu_stats.cs_flags & CPUSTATS_ONLINE) { |
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opl->cpus[cpu_index_c].cpuIndex = i; |
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cpu_index_c++; |
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} |
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if (cpu_index_c == pl->cpuCount) |
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break; |
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} |
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return pl; |
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} |
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void ProcessList_delete(ProcessList* this) { |
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OpenBSDProcessList* opl = (OpenBSDProcessList*) this; |
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if (opl->kd) { |
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kvm_close(opl->kd); |
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} |
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free(opl->cpus); |
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ProcessList_done(this); |
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free(this); |
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} |
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static void OpenBSDProcessList_scanMemoryInfo(ProcessList* pl) { |
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const int uvmexp_mib[] = { CTL_VM, VM_UVMEXP }; |
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struct uvmexp uvmexp; |
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size_t size_uvmexp = sizeof(uvmexp); |
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if (sysctl(uvmexp_mib, 2, &uvmexp, &size_uvmexp, NULL, 0) < 0) { |
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CRT_fatalError("uvmexp sysctl call failed"); |
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} |
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pl->totalMem = uvmexp.npages * pageSizeKB; |
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pl->usedMem = (uvmexp.npages - uvmexp.free - uvmexp.paging) * pageSizeKB; |
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// Taken from OpenBSD systat/iostat.c, top/machine.c and uvm_sysctl(9) |
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const int bcache_mib[] = { CTL_VFS, VFS_GENERIC, VFS_BCACHESTAT }; |
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struct bcachestats bcstats; |
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size_t size_bcstats = sizeof(bcstats); |
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if (sysctl(bcache_mib, 3, &bcstats, &size_bcstats, NULL, 0) < 0) { |
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CRT_fatalError("cannot get vfs.bcachestat"); |
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} |
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pl->cachedMem = bcstats.numbufpages * pageSizeKB; |
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/* |
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* Copyright (c) 1994 Thorsten Lockert <tholo@sigmasoft.com> |
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* All rights reserved. |
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* |
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* Taken almost directly from OpenBSD's top(1) |
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* |
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* Originally released under a BSD-3 license |
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* Modified through htop developers applying GPL-2 |
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*/ |
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int nswap = swapctl(SWAP_NSWAP, 0, 0); |
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if (nswap > 0) { |
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struct swapent swdev[nswap]; |
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int rnswap = swapctl(SWAP_STATS, swdev, nswap); |
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/* Total things up */ |
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unsigned long long int total = 0, used = 0; |
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for (int i = 0; i < rnswap; i++) { |
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if (swdev[i].se_flags & SWF_ENABLE) { |
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used += (swdev[i].se_inuse / (1024 / DEV_BSIZE)); |
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total += (swdev[i].se_nblks / (1024 / DEV_BSIZE)); |
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} |
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} |
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pl->totalSwap = total; |
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pl->usedSwap = used; |
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} else { |
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pl->totalSwap = pl->usedSwap = 0; |
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} |
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} |
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static char* OpenBSDProcessList_readProcessName(kvm_t* kd, const struct kinfo_proc* kproc, int* basenameEnd) { |
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/* |
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* Like OpenBSD's top(1), we try to fall back to the command name |
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* (argv[0]) if we fail to construct the full command. |
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*/ |
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char** arg = kvm_getargv(kd, kproc, 500); |
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if (arg == NULL || *arg == NULL) { |
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*basenameEnd = strlen(kproc->p_comm); |
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return xStrdup(kproc->p_comm); |
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} |
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size_t len = 0; |
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for (int i = 0; arg[i] != NULL; i++) { |
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len += strlen(arg[i]) + 1; /* room for arg and trailing space or NUL */ |
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} |
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/* don't use xMalloc here - we want to handle huge argv's gracefully */ |
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char* s; |
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if ((s = malloc(len)) == NULL) { |
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*basenameEnd = strlen(kproc->p_comm); |
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return xStrdup(kproc->p_comm); |
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} |
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*s = '\0'; |
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for (int i = 0; arg[i] != NULL; i++) { |
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size_t n = strlcat(s, arg[i], len); |
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if (i == 0) { |
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*basenameEnd = MINIMUM(n, len - 1); |
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} |
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/* the trailing space should get truncated anyway */ |
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strlcat(s, " ", len); |
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} |
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return s; |
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} |
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/* |
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* Taken from OpenBSD's ps(1). |
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*/ |
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static double getpcpu(const struct kinfo_proc* kp) { |
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if (fscale == 0) |
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return 0.0; |
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return 100.0 * (double)kp->p_pctcpu / fscale; |
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} |
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static void OpenBSDProcessList_scanProcs(OpenBSDProcessList* this) { |
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const Settings* settings = this->super.settings; |
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const bool hideKernelThreads = settings->hideKernelThreads; |
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const bool hideUserlandThreads = settings->hideUserlandThreads; |
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int count = 0; |
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const struct kinfo_proc* kprocs = kvm_getprocs(this->kd, KERN_PROC_KTHREAD | KERN_PROC_SHOW_THREADS, 0, sizeof(struct kinfo_proc), &count); |
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for (int i = 0; i < count; i++) { |
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const struct kinfo_proc* kproc = &kprocs[i]; |
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/* Ignore main threads */ |
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if (kproc->p_tid != -1) { |
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Process* containingProcess = ProcessList_findProcess(&this->super, kproc->p_pid); |
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if (containingProcess) { |
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if (((OpenBSDProcess*)containingProcess)->addr == kproc->p_addr) |
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continue; |
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containingProcess->nlwp++; |
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} |
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} |
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bool preExisting = false; |
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Process* proc = ProcessList_getProcess(&this->super, (kproc->p_tid == -1) ? kproc->p_pid : kproc->p_tid, &preExisting, OpenBSDProcess_new); |
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OpenBSDProcess* fp = (OpenBSDProcess*) proc; |
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proc->show = ! ((hideKernelThreads && Process_isKernelThread(proc)) || (hideUserlandThreads && Process_isUserlandThread(proc))); |
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if (!preExisting) { |
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proc->ppid = kproc->p_ppid; |
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proc->tpgid = kproc->p_tpgid; |
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proc->tgid = kproc->p_pid; |
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proc->session = kproc->p_sid; |
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proc->pgrp = kproc->p__pgid; |
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proc->st_uid = kproc->p_uid; |
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proc->starttime_ctime = kproc->p_ustart_sec; |
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Process_fillStarttimeBuffer(proc); |
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proc->user = UsersTable_getRef(this->super.usersTable, proc->st_uid); |
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ProcessList_add(&this->super, proc); |
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proc->comm = OpenBSDProcessList_readProcessName(this->kd, kproc, &proc->basenameOffset); |
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proc->tty_nr = kproc->p_tdev; |
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const char* name = ((dev_t)kproc->p_tdev != NODEV) ? devname(kproc->p_tdev, S_IFCHR) : NULL; |
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if (!name || String_eq(name, "??")) { |
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free(proc->tty_name); |
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proc->tty_name = NULL; |
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} else { |
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free_and_xStrdup(&proc->tty_name, name); |
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} |
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} else { |
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if (settings->updateProcessNames) { |
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free(proc->comm); |
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proc->comm = OpenBSDProcessList_readProcessName(this->kd, kproc, &proc->basenameOffset); |
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} |
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} |
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fp->addr = kproc->p_addr; |
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proc->m_virt = kproc->p_vm_dsize * pageSizeKB; |
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proc->m_resident = kproc->p_vm_rssize * pageSizeKB; |
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proc->percent_mem = proc->m_resident / (float)this->super.totalMem * 100.0F; |
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proc->percent_cpu = CLAMP(getpcpu(kproc), 0.0F, this->super.cpuCount * 100.0F); |
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proc->nice = kproc->p_nice - 20; |
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proc->time = 100 * (kproc->p_rtime_sec + ((kproc->p_rtime_usec + 500000) / 1000000)); |
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proc->priority = kproc->p_priority - PZERO; |
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proc->processor = kproc->p_cpuid; |
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proc->minflt = kproc->p_uru_minflt; |
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proc->majflt = kproc->p_uru_majflt; |
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proc->nlwp = 1; |
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switch (kproc->p_stat) { |
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case SIDL: proc->state = 'I'; break; |
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case SRUN: proc->state = 'P'; break; |
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case SSLEEP: proc->state = 'S'; break; |
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case SSTOP: proc->state = 'T'; break; |
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case SZOMB: proc->state = 'Z'; break; |
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case SDEAD: proc->state = 'D'; break; |
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case SONPROC: proc->state = 'R'; break; |
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default: proc->state = '?'; |
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} |
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if (Process_isKernelThread(proc)) { |
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this->super.kernelThreads++; |
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} else if (Process_isUserlandThread(proc)) { |
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this->super.userlandThreads++; |
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} |
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this->super.totalTasks++; |
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if (proc->state == 'R') { |
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this->super.runningTasks++; |
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} |
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proc->updated = true; |
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} |
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} |
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static unsigned long long saturatingSub(unsigned long long a, unsigned long long b) { |
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return a > b ? a - b : 0; |
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} |
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static void getKernelCPUTimes(int cpuId, u_int64_t* times) { |
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const int mib[] = { CTL_KERN, KERN_CPTIME2, cpuId }; |
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size_t length = sizeof(*times) * CPUSTATES; |
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if (sysctl(mib, 3, times, &length, NULL, 0) == -1 || length != sizeof(*times) * CPUSTATES) { |
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CRT_fatalError("sysctl kern.cp_time2 failed"); |
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} |
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} |
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static void kernelCPUTimesToHtop(const u_int64_t* times, CPUData* cpu) { |
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unsigned long long totalTime = 0; |
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for (int i = 0; i < CPUSTATES; i++) { |
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totalTime += times[i]; |
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} |
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unsigned long long sysAllTime = times[CP_INTR] + times[CP_SYS]; |
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// XXX Not sure if CP_SPIN should be added to sysAllTime. |
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// See https://github.com/openbsd/src/commit/531d8034253fb82282f0f353c086e9ad827e031c |
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#ifdef CP_SPIN |
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sysAllTime += times[CP_SPIN]; |
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#endif |
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cpu->totalPeriod = saturatingSub(totalTime, cpu->totalTime); |
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cpu->userPeriod = saturatingSub(times[CP_USER], cpu->userTime); |
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cpu->nicePeriod = saturatingSub(times[CP_NICE], cpu->niceTime); |
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cpu->sysPeriod = saturatingSub(times[CP_SYS], cpu->sysTime); |
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cpu->sysAllPeriod = saturatingSub(sysAllTime, cpu->sysAllTime); |
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#ifdef CP_SPIN |
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cpu->spinPeriod = saturatingSub(times[CP_SPIN], cpu->spinTime); |
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#endif |
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cpu->intrPeriod = saturatingSub(times[CP_INTR], cpu->intrTime); |
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cpu->idlePeriod = saturatingSub(times[CP_IDLE], cpu->idleTime); |
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cpu->totalTime = totalTime; |
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cpu->userTime = times[CP_USER]; |
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cpu->niceTime = times[CP_NICE]; |
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cpu->sysTime = times[CP_SYS]; |
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cpu->sysAllTime = sysAllTime; |
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#ifdef CP_SPIN |
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cpu->spinTime = times[CP_SPIN]; |
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#endif |
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cpu->intrTime = times[CP_INTR]; |
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cpu->idleTime = times[CP_IDLE]; |
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} |
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static void OpenBSDProcessList_scanCPUTime(OpenBSDProcessList* this) { |
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u_int64_t kernelTimes[CPUSTATES] = {0}; |
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u_int64_t avg[CPUSTATES] = {0}; |
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for (unsigned int i = 0; i < this->super.cpuCount; i++) { |
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getKernelCPUTimes(this->cpus[i].cpuIndex, kernelTimes); |
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CPUData* cpu = this->cpus + i + 1; |
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kernelCPUTimesToHtop(kernelTimes, cpu); |
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avg[CP_USER] += cpu->userTime; |
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avg[CP_NICE] += cpu->niceTime; |
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avg[CP_SYS] += cpu->sysTime; |
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#ifdef CP_SPIN |
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avg[CP_SPIN] += cpu->spinTime; |
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#endif |
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avg[CP_INTR] += cpu->intrTime; |
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avg[CP_IDLE] += cpu->idleTime; |
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} |
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for (int i = 0; i < CPUSTATES; i++) { |
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avg[i] /= this->super.cpuCount; |
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} |
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kernelCPUTimesToHtop(avg, this->cpus); |
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{ |
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const int mib[] = { CTL_HW, HW_CPUSPEED }; |
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int cpuSpeed; |
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size_t size = sizeof(cpuSpeed); |
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if (sysctl(mib, 2, &cpuSpeed, &size, NULL, 0) == -1) { |
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this->cpuSpeed = -1; |
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} else { |
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this->cpuSpeed = cpuSpeed; |
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} |
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} |
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} |
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void ProcessList_goThroughEntries(ProcessList* super, bool pauseProcessUpdate) { |
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OpenBSDProcessList* opl = (OpenBSDProcessList*) super; |
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OpenBSDProcessList_scanMemoryInfo(super); |
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OpenBSDProcessList_scanCPUTime(opl); |
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// in pause mode only gather global data for meters (CPU/memory/...) |
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if (pauseProcessUpdate) { |
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return; |
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} |
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OpenBSDProcessList_scanProcs(opl); |
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}
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