LocalDerivationGoal includes a large number of low-level sandboxing primitives for Darwin and Linux, intermingled with ifdefs. Start creating platform-specific classes to make it easier to add new platforms and review platform-specific code. This change only creates support infrastructure and moves two function, more functions will be moved in future changes. Change-Id: I9fc29fa2a7345107d4fc96c46fa90b4eabf6bb89
250 lines
10 KiB
C++
250 lines
10 KiB
C++
#include "gc-store.hh"
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#include "signals.hh"
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#include "platform/darwin.hh"
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#include "regex.hh"
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#include <sys/proc_info.h>
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#include <sys/sysctl.h>
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#include <libproc.h>
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#include <spawn.h>
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#include <regex>
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namespace nix {
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void DarwinLocalStore::findPlatformRoots(UncheckedRoots & unchecked)
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{
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auto storePathRegex = regex::storePathRegex(storeDir);
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std::vector<int> pids;
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int pidBufSize = 1;
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while (pidBufSize > pids.size() * sizeof(int)) {
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// Reserve some extra size so we don't fail too much
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pids.resize((pidBufSize + pidBufSize / 8) / sizeof(int));
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pidBufSize = proc_listpids(PROC_ALL_PIDS, 0, pids.data(), pids.size() * sizeof(int));
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if (pidBufSize <= 0) {
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throw SysError("Listing PIDs");
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}
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}
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pids.resize(pidBufSize / sizeof(int));
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for (auto pid : pids) {
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// It doesn't make sense to ask about the kernel
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if (pid == 0) {
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continue;
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}
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try {
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// Process cwd/root directory
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struct proc_vnodepathinfo vnodeInfo;
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if (proc_pidinfo(pid, PROC_PIDVNODEPATHINFO, 0, &vnodeInfo, sizeof(vnodeInfo)) <= 0) {
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throw SysError("Getting pid %1% working directory", pid);
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}
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unchecked[std::string(vnodeInfo.pvi_cdir.vip_path)].emplace(fmt("{libproc/%d/cwd}", pid)
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);
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unchecked[std::string(vnodeInfo.pvi_rdir.vip_path)].emplace(
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fmt("{libproc/%d/rootdir}", pid)
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);
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// File descriptors
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std::vector<struct proc_fdinfo> fds;
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int fdBufSize = 1;
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while (fdBufSize > fds.size() * sizeof(struct proc_fdinfo)) {
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// Reserve some extra size so we don't fail too much
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fds.resize((fdBufSize + fdBufSize / 8) / sizeof(struct proc_fdinfo));
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fdBufSize = proc_pidinfo(
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pid, PROC_PIDLISTFDS, 0, fds.data(), fds.size() * sizeof(struct proc_fdinfo)
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);
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if (fdBufSize <= 0) {
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throw SysError("Listing pid %1% file descriptors", pid);
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}
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}
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fds.resize(fdBufSize / sizeof(struct proc_fdinfo));
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for (auto fd : fds) {
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// By definition, only a vnode is on the filesystem
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if (fd.proc_fdtype != PROX_FDTYPE_VNODE) {
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continue;
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}
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struct vnode_fdinfowithpath fdInfo;
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if (proc_pidfdinfo(
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pid, fd.proc_fd, PROC_PIDFDVNODEPATHINFO, &fdInfo, sizeof(fdInfo)
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)
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<= 0)
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{
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// They probably just closed this fd, no need to cancel looking at ranges and
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// arguments
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if (errno == EBADF) {
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continue;
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}
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throw SysError("Getting pid %1% fd %2% path", pid, fd.proc_fd);
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}
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unchecked[std::string(fdInfo.pvip.vip_path)].emplace(
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fmt("{libproc/%d/fd/%d}", pid, fd.proc_fd)
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);
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}
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// Regions (e.g. mmapped files, executables, shared libraries)
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uint64_t nextAddr = 0;
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while (true) {
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// Seriously, what are you doing XNU?
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// There's 3 flavors of PROC_PIDREGIONPATHINFO:
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// * PROC_PIDREGIONPATHINFO includes all regions
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// * PROC_PIDREGIONPATHINFO2 includes regions backed by a vnode
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// * PROC_PIDREGIONPATHINFO3 includes regions backed by a vnode on a specified
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// filesystem Only PROC_PIDREGIONPATHINFO is documented. Unfortunately, using it
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// would make finding gcroots take about 100x as long and tests would fail from
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// timeout. According to the Frida source code, PROC_PIDREGIONPATHINFO2 has been
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// available since XNU 2782.1.97 in OS X 10.10
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//
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// 22 means PROC_PIDREGIONPATHINFO2
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struct proc_regionwithpathinfo regionInfo;
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if (proc_pidinfo(pid, 22, nextAddr, ®ionInfo, sizeof(regionInfo)) <= 0) {
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// PROC_PIDREGIONPATHINFO signals we're done with an error,
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// so we're expected to hit this once per process
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if (errno == ESRCH || errno == EINVAL) {
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break;
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}
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throw SysError("Getting pid %1% region path", pid);
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}
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unchecked[std::string(regionInfo.prp_vip.vip_path)].emplace(
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fmt("{libproc/%d/region}", pid)
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);
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nextAddr = regionInfo.prp_prinfo.pri_address + regionInfo.prp_prinfo.pri_size;
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}
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// Arguments and environment variables
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// We can't read environment variables of binaries with entitlements unless
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// nix has the `com.apple.private.read-environment-variables` entitlement or SIP is off
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// We can read arguments for all applications though.
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// Yes, it's a sysctl, the proc_info and sysctl APIs are mostly similar,
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// but both have exclusive capabilities
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int sysctlName[3] = {CTL_KERN, KERN_PROCARGS2, pid};
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size_t argsSize = 0;
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if (sysctl(sysctlName, 3, nullptr, &argsSize, nullptr, 0) < 0) {
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throw SysError("Reading pid %1% arguments", pid);
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}
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std::vector<char> args(argsSize);
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if (sysctl(sysctlName, 3, args.data(), &argsSize, nullptr, 0) < 0) {
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throw SysError("Reading pid %1% arguments", pid);
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}
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if (argsSize < args.size()) {
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args.resize(argsSize);
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}
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// We have these perfectly nice arguments, but have to ignore them because
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// otherwise we'd see arguments to nix-store commands and
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// `nix-store --delete /nix/store/whatever` would always fail
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// First 4 bytes are an int of argc.
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if (args.size() < sizeof(int)) {
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continue;
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}
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auto argc = reinterpret_cast<int *>(args.data())[0];
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auto argsIter = args.begin();
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std::advance(argsIter, sizeof(int));
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// Executable then argc args, each separated by some number of null bytes
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for (int i = 0; argsIter != args.end() && i < argc + 1; i++) {
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argsIter = std::find(argsIter, args.end(), '\0');
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argsIter = std::find_if(argsIter, args.end(), [](char ch) { return ch != '\0'; });
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}
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if (argsIter != args.end()) {
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auto env_end = std::sregex_iterator{};
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for (auto i = std::sregex_iterator{argsIter, args.end(), storePathRegex};
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i != env_end;
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++i)
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{
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unchecked[i->str()].emplace(fmt("{libproc/%d/environ}", pid));
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}
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};
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// Per-thread working directories
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struct proc_taskallinfo taskAllInfo;
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if (proc_pidinfo(pid, PROC_PIDTASKALLINFO, 0, &taskAllInfo, sizeof(taskAllInfo)) <= 0) {
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throw SysError("Reading pid %1% tasks", pid);
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}
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// If the process doesn't have the per-thread cwd flag then we already have the
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// process-wide cwd from PROC_PIDVNODEPATHINFO
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if (taskAllInfo.pbsd.pbi_flags & PROC_FLAG_THCWD) {
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std::vector<uint64_t> tids(taskAllInfo.ptinfo.pti_threadnum);
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int tidBufSize = proc_pidinfo(
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pid, PROC_PIDLISTTHREADS, 0, tids.data(), tids.size() * sizeof(uint64_t)
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);
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if (tidBufSize <= 0) {
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throw SysError("Listing pid %1% threads", pid);
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}
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for (auto tid : tids) {
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struct proc_threadwithpathinfo threadPathInfo;
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if (proc_pidinfo(
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pid,
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PROC_PIDTHREADPATHINFO,
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tid,
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&threadPathInfo,
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sizeof(threadPathInfo)
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)
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<= 0)
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{
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throw SysError("Reading pid %1% thread %2% cwd", pid, tid);
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}
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unchecked[std::string(threadPathInfo.pvip.vip_path)].emplace(
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fmt("{libproc/%d/thread/%d/cwd}", pid, tid)
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);
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}
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}
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} catch (SysError & e) {
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// ENOENT/ESRCH: Process no longer exists (proc_info)
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// EINVAL: Process no longer exists (sysctl)
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// EACCESS/EPERM: We don't have permission to read this field (proc_info)
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// EIO: Kernel failed to read from target process memory during KERN_PROCARGS2 (sysctl)
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if (errno == ENOENT || errno == ESRCH || errno == EINVAL || errno == EACCES
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|| errno == EPERM || errno == EIO)
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{
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continue;
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}
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throw;
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}
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}
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}
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void DarwinLocalDerivationGoal::execBuilder(std::string builder, Strings args, Strings envStrs)
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{
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posix_spawnattr_t attrp;
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if (posix_spawnattr_init(&attrp))
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throw SysError("failed to initialize builder");
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if (posix_spawnattr_setflags(&attrp, POSIX_SPAWN_SETEXEC))
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throw SysError("failed to initialize builder");
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if (drv->platform == "aarch64-darwin") {
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// Unset kern.curproc_arch_affinity so we can escape Rosetta
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int affinity = 0;
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sysctlbyname("kern.curproc_arch_affinity", NULL, NULL, &affinity, sizeof(affinity));
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cpu_type_t cpu = CPU_TYPE_ARM64;
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posix_spawnattr_setbinpref_np(&attrp, 1, &cpu, NULL);
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} else if (drv->platform == "x86_64-darwin") {
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cpu_type_t cpu = CPU_TYPE_X86_64;
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posix_spawnattr_setbinpref_np(&attrp, 1, &cpu, NULL);
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}
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posix_spawn(NULL, builder.c_str(), NULL, &attrp, stringsToCharPtrs(args).data(), stringsToCharPtrs(envStrs).data());
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}
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}
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