1 //===-- PlatformPOSIX.cpp -------------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "PlatformPOSIX.h"
10 
11 #include "Plugins/TypeSystem/Clang/TypeSystemClang.h"
12 #include "lldb/Core/Debugger.h"
13 #include "lldb/Core/Module.h"
14 #include "lldb/Core/ValueObject.h"
15 #include "lldb/Expression/DiagnosticManager.h"
16 #include "lldb/Expression/FunctionCaller.h"
17 #include "lldb/Expression/UserExpression.h"
18 #include "lldb/Expression/UtilityFunction.h"
19 #include "lldb/Host/File.h"
20 #include "lldb/Host/FileCache.h"
21 #include "lldb/Host/FileSystem.h"
22 #include "lldb/Host/Host.h"
23 #include "lldb/Host/HostInfo.h"
24 #include "lldb/Host/ProcessLaunchInfo.h"
25 #include "lldb/Target/DynamicLoader.h"
26 #include "lldb/Target/ExecutionContext.h"
27 #include "lldb/Target/Process.h"
28 #include "lldb/Target/Thread.h"
29 #include "lldb/Utility/DataBufferHeap.h"
30 #include "lldb/Utility/FileSpec.h"
31 #include "lldb/Utility/Log.h"
32 #include "lldb/Utility/StreamString.h"
33 #include "llvm/ADT/ScopeExit.h"
34 
35 using namespace lldb;
36 using namespace lldb_private;
37 
38 /// Default Constructor
39 PlatformPOSIX::PlatformPOSIX(bool is_host)
40     : RemoteAwarePlatform(is_host), // This is the local host platform
41       m_option_group_platform_rsync(new OptionGroupPlatformRSync()),
42       m_option_group_platform_ssh(new OptionGroupPlatformSSH()),
43       m_option_group_platform_caching(new OptionGroupPlatformCaching()) {}
44 
45 /// Destructor.
46 ///
47 /// The destructor is virtual since this class is designed to be
48 /// inherited from by the plug-in instance.
49 PlatformPOSIX::~PlatformPOSIX() {}
50 
51 lldb_private::OptionGroupOptions *PlatformPOSIX::GetConnectionOptions(
52     lldb_private::CommandInterpreter &interpreter) {
53   auto iter = m_options.find(&interpreter), end = m_options.end();
54   if (iter == end) {
55     std::unique_ptr<lldb_private::OptionGroupOptions> options(
56         new OptionGroupOptions());
57     options->Append(m_option_group_platform_rsync.get());
58     options->Append(m_option_group_platform_ssh.get());
59     options->Append(m_option_group_platform_caching.get());
60     m_options[&interpreter] = std::move(options);
61   }
62 
63   return m_options.at(&interpreter).get();
64 }
65 
66 static uint32_t chown_file(Platform *platform, const char *path,
67                            uint32_t uid = UINT32_MAX,
68                            uint32_t gid = UINT32_MAX) {
69   if (!platform || !path || *path == 0)
70     return UINT32_MAX;
71 
72   if (uid == UINT32_MAX && gid == UINT32_MAX)
73     return 0; // pretend I did chown correctly - actually I just didn't care
74 
75   StreamString command;
76   command.PutCString("chown ");
77   if (uid != UINT32_MAX)
78     command.Printf("%d", uid);
79   if (gid != UINT32_MAX)
80     command.Printf(":%d", gid);
81   command.Printf("%s", path);
82   int status;
83   platform->RunShellCommand(command.GetData(), FileSpec(), &status, nullptr,
84                             nullptr, std::chrono::seconds(10));
85   return status;
86 }
87 
88 lldb_private::Status
89 PlatformPOSIX::PutFile(const lldb_private::FileSpec &source,
90                        const lldb_private::FileSpec &destination, uint32_t uid,
91                        uint32_t gid) {
92   Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PLATFORM));
93 
94   if (IsHost()) {
95     if (source == destination)
96       return Status();
97     // cp src dst
98     // chown uid:gid dst
99     std::string src_path(source.GetPath());
100     if (src_path.empty())
101       return Status("unable to get file path for source");
102     std::string dst_path(destination.GetPath());
103     if (dst_path.empty())
104       return Status("unable to get file path for destination");
105     StreamString command;
106     command.Printf("cp %s %s", src_path.c_str(), dst_path.c_str());
107     int status;
108     RunShellCommand(command.GetData(), FileSpec(), &status, nullptr, nullptr,
109                     std::chrono::seconds(10));
110     if (status != 0)
111       return Status("unable to perform copy");
112     if (uid == UINT32_MAX && gid == UINT32_MAX)
113       return Status();
114     if (chown_file(this, dst_path.c_str(), uid, gid) != 0)
115       return Status("unable to perform chown");
116     return Status();
117   } else if (m_remote_platform_sp) {
118     if (GetSupportsRSync()) {
119       std::string src_path(source.GetPath());
120       if (src_path.empty())
121         return Status("unable to get file path for source");
122       std::string dst_path(destination.GetPath());
123       if (dst_path.empty())
124         return Status("unable to get file path for destination");
125       StreamString command;
126       if (GetIgnoresRemoteHostname()) {
127         if (!GetRSyncPrefix())
128           command.Printf("rsync %s %s %s", GetRSyncOpts(), src_path.c_str(),
129                          dst_path.c_str());
130         else
131           command.Printf("rsync %s %s %s%s", GetRSyncOpts(), src_path.c_str(),
132                          GetRSyncPrefix(), dst_path.c_str());
133       } else
134         command.Printf("rsync %s %s %s:%s", GetRSyncOpts(), src_path.c_str(),
135                        GetHostname(), dst_path.c_str());
136       LLDB_LOGF(log, "[PutFile] Running command: %s\n", command.GetData());
137       int retcode;
138       Host::RunShellCommand(command.GetData(), FileSpec(), &retcode, nullptr,
139                             nullptr, std::chrono::minutes(1));
140       if (retcode == 0) {
141         // Don't chown a local file for a remote system
142         //                if (chown_file(this,dst_path.c_str(),uid,gid) != 0)
143         //                    return Status("unable to perform chown");
144         return Status();
145       }
146       // if we are still here rsync has failed - let's try the slow way before
147       // giving up
148     }
149   }
150   return Platform::PutFile(source, destination, uid, gid);
151 }
152 
153 lldb_private::Status PlatformPOSIX::GetFile(
154     const lldb_private::FileSpec &source,      // remote file path
155     const lldb_private::FileSpec &destination) // local file path
156 {
157   Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PLATFORM));
158 
159   // Check the args, first.
160   std::string src_path(source.GetPath());
161   if (src_path.empty())
162     return Status("unable to get file path for source");
163   std::string dst_path(destination.GetPath());
164   if (dst_path.empty())
165     return Status("unable to get file path for destination");
166   if (IsHost()) {
167     if (source == destination)
168       return Status("local scenario->source and destination are the same file "
169                     "path: no operation performed");
170     // cp src dst
171     StreamString cp_command;
172     cp_command.Printf("cp %s %s", src_path.c_str(), dst_path.c_str());
173     int status;
174     RunShellCommand(cp_command.GetData(), FileSpec(), &status, nullptr, nullptr,
175                     std::chrono::seconds(10));
176     if (status != 0)
177       return Status("unable to perform copy");
178     return Status();
179   } else if (m_remote_platform_sp) {
180     if (GetSupportsRSync()) {
181       StreamString command;
182       if (GetIgnoresRemoteHostname()) {
183         if (!GetRSyncPrefix())
184           command.Printf("rsync %s %s %s", GetRSyncOpts(), src_path.c_str(),
185                          dst_path.c_str());
186         else
187           command.Printf("rsync %s %s%s %s", GetRSyncOpts(), GetRSyncPrefix(),
188                          src_path.c_str(), dst_path.c_str());
189       } else
190         command.Printf("rsync %s %s:%s %s", GetRSyncOpts(),
191                        m_remote_platform_sp->GetHostname(), src_path.c_str(),
192                        dst_path.c_str());
193       LLDB_LOGF(log, "[GetFile] Running command: %s\n", command.GetData());
194       int retcode;
195       Host::RunShellCommand(command.GetData(), FileSpec(), &retcode, nullptr,
196                             nullptr, std::chrono::minutes(1));
197       if (retcode == 0)
198         return Status();
199       // If we are here, rsync has failed - let's try the slow way before
200       // giving up
201     }
202     // open src and dst
203     // read/write, read/write, read/write, ...
204     // close src
205     // close dst
206     LLDB_LOGF(log, "[GetFile] Using block by block transfer....\n");
207     Status error;
208     user_id_t fd_src = OpenFile(source, File::eOpenOptionRead,
209                                 lldb::eFilePermissionsFileDefault, error);
210 
211     if (fd_src == UINT64_MAX)
212       return Status("unable to open source file");
213 
214     uint32_t permissions = 0;
215     error = GetFilePermissions(source, permissions);
216 
217     if (permissions == 0)
218       permissions = lldb::eFilePermissionsFileDefault;
219 
220     user_id_t fd_dst = FileCache::GetInstance().OpenFile(
221         destination, File::eOpenOptionCanCreate | File::eOpenOptionWrite |
222                          File::eOpenOptionTruncate,
223         permissions, error);
224 
225     if (fd_dst == UINT64_MAX) {
226       if (error.Success())
227         error.SetErrorString("unable to open destination file");
228     }
229 
230     if (error.Success()) {
231       lldb::DataBufferSP buffer_sp(new DataBufferHeap(1024, 0));
232       uint64_t offset = 0;
233       error.Clear();
234       while (error.Success()) {
235         const uint64_t n_read = ReadFile(fd_src, offset, buffer_sp->GetBytes(),
236                                          buffer_sp->GetByteSize(), error);
237         if (error.Fail())
238           break;
239         if (n_read == 0)
240           break;
241         if (FileCache::GetInstance().WriteFile(fd_dst, offset,
242                                                buffer_sp->GetBytes(), n_read,
243                                                error) != n_read) {
244           if (!error.Fail())
245             error.SetErrorString("unable to write to destination file");
246           break;
247         }
248         offset += n_read;
249       }
250     }
251     // Ignore the close error of src.
252     if (fd_src != UINT64_MAX)
253       CloseFile(fd_src, error);
254     // And close the dst file descriptot.
255     if (fd_dst != UINT64_MAX &&
256         !FileCache::GetInstance().CloseFile(fd_dst, error)) {
257       if (!error.Fail())
258         error.SetErrorString("unable to close destination file");
259     }
260     return error;
261   }
262   return Platform::GetFile(source, destination);
263 }
264 
265 std::string PlatformPOSIX::GetPlatformSpecificConnectionInformation() {
266   StreamString stream;
267   if (GetSupportsRSync()) {
268     stream.PutCString("rsync");
269     if ((GetRSyncOpts() && *GetRSyncOpts()) ||
270         (GetRSyncPrefix() && *GetRSyncPrefix()) || GetIgnoresRemoteHostname()) {
271       stream.Printf(", options: ");
272       if (GetRSyncOpts() && *GetRSyncOpts())
273         stream.Printf("'%s' ", GetRSyncOpts());
274       stream.Printf(", prefix: ");
275       if (GetRSyncPrefix() && *GetRSyncPrefix())
276         stream.Printf("'%s' ", GetRSyncPrefix());
277       if (GetIgnoresRemoteHostname())
278         stream.Printf("ignore remote-hostname ");
279     }
280   }
281   if (GetSupportsSSH()) {
282     stream.PutCString("ssh");
283     if (GetSSHOpts() && *GetSSHOpts())
284       stream.Printf(", options: '%s' ", GetSSHOpts());
285   }
286   if (GetLocalCacheDirectory() && *GetLocalCacheDirectory())
287     stream.Printf("cache dir: %s", GetLocalCacheDirectory());
288   if (stream.GetSize())
289     return std::string(stream.GetString());
290   else
291     return "";
292 }
293 
294 const lldb::UnixSignalsSP &PlatformPOSIX::GetRemoteUnixSignals() {
295   if (IsRemote() && m_remote_platform_sp)
296     return m_remote_platform_sp->GetRemoteUnixSignals();
297   return Platform::GetRemoteUnixSignals();
298 }
299 
300 Status PlatformPOSIX::ConnectRemote(Args &args) {
301   Status error;
302   if (IsHost()) {
303     error.SetErrorStringWithFormat(
304         "can't connect to the host platform '%s', always connected",
305         GetPluginName().GetCString());
306   } else {
307     if (!m_remote_platform_sp)
308       m_remote_platform_sp =
309           Platform::Create(ConstString("remote-gdb-server"), error);
310 
311     if (m_remote_platform_sp && error.Success())
312       error = m_remote_platform_sp->ConnectRemote(args);
313     else
314       error.SetErrorString("failed to create a 'remote-gdb-server' platform");
315 
316     if (error.Fail())
317       m_remote_platform_sp.reset();
318   }
319 
320   if (error.Success() && m_remote_platform_sp) {
321     if (m_option_group_platform_rsync.get() &&
322         m_option_group_platform_ssh.get() &&
323         m_option_group_platform_caching.get()) {
324       if (m_option_group_platform_rsync->m_rsync) {
325         SetSupportsRSync(true);
326         SetRSyncOpts(m_option_group_platform_rsync->m_rsync_opts.c_str());
327         SetRSyncPrefix(m_option_group_platform_rsync->m_rsync_prefix.c_str());
328         SetIgnoresRemoteHostname(
329             m_option_group_platform_rsync->m_ignores_remote_hostname);
330       }
331       if (m_option_group_platform_ssh->m_ssh) {
332         SetSupportsSSH(true);
333         SetSSHOpts(m_option_group_platform_ssh->m_ssh_opts.c_str());
334       }
335       SetLocalCacheDirectory(
336           m_option_group_platform_caching->m_cache_dir.c_str());
337     }
338   }
339 
340   return error;
341 }
342 
343 Status PlatformPOSIX::DisconnectRemote() {
344   Status error;
345 
346   if (IsHost()) {
347     error.SetErrorStringWithFormat(
348         "can't disconnect from the host platform '%s', always connected",
349         GetPluginName().GetCString());
350   } else {
351     if (m_remote_platform_sp)
352       error = m_remote_platform_sp->DisconnectRemote();
353     else
354       error.SetErrorString("the platform is not currently connected");
355   }
356   return error;
357 }
358 
359 lldb::ProcessSP PlatformPOSIX::Attach(ProcessAttachInfo &attach_info,
360                                       Debugger &debugger, Target *target,
361                                       Status &error) {
362   lldb::ProcessSP process_sp;
363   Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PLATFORM));
364 
365   if (IsHost()) {
366     if (target == nullptr) {
367       TargetSP new_target_sp;
368 
369       error = debugger.GetTargetList().CreateTarget(
370           debugger, "", "", eLoadDependentsNo, nullptr, new_target_sp);
371       target = new_target_sp.get();
372       LLDB_LOGF(log, "PlatformPOSIX::%s created new target", __FUNCTION__);
373     } else {
374       error.Clear();
375       LLDB_LOGF(log, "PlatformPOSIX::%s target already existed, setting target",
376                 __FUNCTION__);
377     }
378 
379     if (target && error.Success()) {
380       debugger.GetTargetList().SetSelectedTarget(target);
381       if (log) {
382         ModuleSP exe_module_sp = target->GetExecutableModule();
383         LLDB_LOGF(log, "PlatformPOSIX::%s set selected target to %p %s",
384                   __FUNCTION__, (void *)target,
385                   exe_module_sp ? exe_module_sp->GetFileSpec().GetPath().c_str()
386                                 : "<null>");
387       }
388 
389       process_sp =
390           target->CreateProcess(attach_info.GetListenerForProcess(debugger),
391                                 attach_info.GetProcessPluginName(), nullptr);
392 
393       if (process_sp) {
394         ListenerSP listener_sp = attach_info.GetHijackListener();
395         if (listener_sp == nullptr) {
396           listener_sp =
397               Listener::MakeListener("lldb.PlatformPOSIX.attach.hijack");
398           attach_info.SetHijackListener(listener_sp);
399         }
400         process_sp->HijackProcessEvents(listener_sp);
401         error = process_sp->Attach(attach_info);
402       }
403     }
404   } else {
405     if (m_remote_platform_sp)
406       process_sp =
407           m_remote_platform_sp->Attach(attach_info, debugger, target, error);
408     else
409       error.SetErrorString("the platform is not currently connected");
410   }
411   return process_sp;
412 }
413 
414 lldb::ProcessSP
415 PlatformPOSIX::DebugProcess(ProcessLaunchInfo &launch_info, Debugger &debugger,
416                             Target *target, // Can be NULL, if NULL create a new
417                                             // target, else use existing one
418                             Status &error) {
419   Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_PLATFORM));
420   LLDB_LOG(log, "target {0}", target);
421 
422   ProcessSP process_sp;
423 
424   if (!IsHost()) {
425     if (m_remote_platform_sp)
426       process_sp = m_remote_platform_sp->DebugProcess(launch_info, debugger,
427                                                       target, error);
428     else
429       error.SetErrorString("the platform is not currently connected");
430     return process_sp;
431   }
432 
433   //
434   // For local debugging, we'll insist on having ProcessGDBRemote create the
435   // process.
436   //
437 
438   // Make sure we stop at the entry point
439   launch_info.GetFlags().Set(eLaunchFlagDebug);
440 
441   // We always launch the process we are going to debug in a separate process
442   // group, since then we can handle ^C interrupts ourselves w/o having to
443   // worry about the target getting them as well.
444   launch_info.SetLaunchInSeparateProcessGroup(true);
445 
446   // Ensure we have a target.
447   if (target == nullptr) {
448     LLDB_LOG(log, "creating new target");
449     TargetSP new_target_sp;
450     error = debugger.GetTargetList().CreateTarget(
451         debugger, "", "", eLoadDependentsNo, nullptr, new_target_sp);
452     if (error.Fail()) {
453       LLDB_LOG(log, "failed to create new target: {0}", error);
454       return process_sp;
455     }
456 
457     target = new_target_sp.get();
458     if (!target) {
459       error.SetErrorString("CreateTarget() returned nullptr");
460       LLDB_LOG(log, "error: {0}", error);
461       return process_sp;
462     }
463   }
464 
465   // Mark target as currently selected target.
466   debugger.GetTargetList().SetSelectedTarget(target);
467 
468   // Now create the gdb-remote process.
469   LLDB_LOG(log, "having target create process with gdb-remote plugin");
470   process_sp =
471       target->CreateProcess(launch_info.GetListener(), "gdb-remote", nullptr);
472 
473   if (!process_sp) {
474     error.SetErrorString("CreateProcess() failed for gdb-remote process");
475     LLDB_LOG(log, "error: {0}", error);
476     return process_sp;
477   }
478 
479   LLDB_LOG(log, "successfully created process");
480   // Adjust launch for a hijacker.
481   ListenerSP listener_sp;
482   if (!launch_info.GetHijackListener()) {
483     LLDB_LOG(log, "setting up hijacker");
484     listener_sp =
485         Listener::MakeListener("lldb.PlatformLinux.DebugProcess.hijack");
486     launch_info.SetHijackListener(listener_sp);
487     process_sp->HijackProcessEvents(listener_sp);
488   }
489 
490   // Log file actions.
491   if (log) {
492     LLDB_LOG(log, "launching process with the following file actions:");
493     StreamString stream;
494     size_t i = 0;
495     const FileAction *file_action;
496     while ((file_action = launch_info.GetFileActionAtIndex(i++)) != nullptr) {
497       file_action->Dump(stream);
498       LLDB_LOG(log, "{0}", stream.GetData());
499       stream.Clear();
500     }
501   }
502 
503   // Do the launch.
504   error = process_sp->Launch(launch_info);
505   if (error.Success()) {
506     // Handle the hijacking of process events.
507     if (listener_sp) {
508       const StateType state = process_sp->WaitForProcessToStop(
509           llvm::None, nullptr, false, listener_sp);
510 
511       LLDB_LOG(log, "pid {0} state {0}", process_sp->GetID(), state);
512     }
513 
514     // Hook up process PTY if we have one (which we should for local debugging
515     // with llgs).
516     int pty_fd = launch_info.GetPTY().ReleasePrimaryFileDescriptor();
517     if (pty_fd != PseudoTerminal::invalid_fd) {
518       process_sp->SetSTDIOFileDescriptor(pty_fd);
519       LLDB_LOG(log, "hooked up STDIO pty to process");
520     } else
521       LLDB_LOG(log, "not using process STDIO pty");
522   } else {
523     LLDB_LOG(log, "{0}", error);
524     // FIXME figure out appropriate cleanup here.  Do we delete the target? Do
525     // we delete the process?  Does our caller do that?
526   }
527 
528   return process_sp;
529 }
530 
531 void PlatformPOSIX::CalculateTrapHandlerSymbolNames() {
532   m_trap_handlers.push_back(ConstString("_sigtramp"));
533 }
534 
535 Status PlatformPOSIX::EvaluateLibdlExpression(
536     lldb_private::Process *process, const char *expr_cstr,
537     llvm::StringRef expr_prefix, lldb::ValueObjectSP &result_valobj_sp) {
538   DynamicLoader *loader = process->GetDynamicLoader();
539   if (loader) {
540     Status error = loader->CanLoadImage();
541     if (error.Fail())
542       return error;
543   }
544 
545   ThreadSP thread_sp(process->GetThreadList().GetExpressionExecutionThread());
546   if (!thread_sp)
547     return Status("Selected thread isn't valid");
548 
549   StackFrameSP frame_sp(thread_sp->GetStackFrameAtIndex(0));
550   if (!frame_sp)
551     return Status("Frame 0 isn't valid");
552 
553   ExecutionContext exe_ctx;
554   frame_sp->CalculateExecutionContext(exe_ctx);
555   EvaluateExpressionOptions expr_options;
556   expr_options.SetUnwindOnError(true);
557   expr_options.SetIgnoreBreakpoints(true);
558   expr_options.SetExecutionPolicy(eExecutionPolicyAlways);
559   expr_options.SetLanguage(eLanguageTypeC_plus_plus);
560   expr_options.SetTrapExceptions(false); // dlopen can't throw exceptions, so
561                                          // don't do the work to trap them.
562   expr_options.SetTimeout(process->GetUtilityExpressionTimeout());
563 
564   Status expr_error;
565   ExpressionResults result =
566       UserExpression::Evaluate(exe_ctx, expr_options, expr_cstr, expr_prefix,
567                                result_valobj_sp, expr_error);
568   if (result != eExpressionCompleted)
569     return expr_error;
570 
571   if (result_valobj_sp->GetError().Fail())
572     return result_valobj_sp->GetError();
573   return Status();
574 }
575 
576 std::unique_ptr<UtilityFunction>
577 PlatformPOSIX::MakeLoadImageUtilityFunction(ExecutionContext &exe_ctx,
578                                             Status &error) {
579   // Remember to prepend this with the prefix from
580   // GetLibdlFunctionDeclarations. The returned values are all in
581   // __lldb_dlopen_result for consistency. The wrapper returns a void * but
582   // doesn't use it because UtilityFunctions don't work with void returns at
583   // present.
584   static const char *dlopen_wrapper_code = R"(
585   struct __lldb_dlopen_result {
586     void *image_ptr;
587     const char *error_str;
588   };
589 
590   extern void *memcpy(void *, const void *, size_t size);
591   extern size_t strlen(const char *);
592 
593 
594   void * __lldb_dlopen_wrapper (const char *name,
595                                 const char *path_strings,
596                                 char *buffer,
597                                 __lldb_dlopen_result *result_ptr)
598   {
599     // This is the case where the name is the full path:
600     if (!path_strings) {
601       result_ptr->image_ptr = dlopen(name, 2);
602       if (result_ptr->image_ptr)
603         result_ptr->error_str = nullptr;
604       return nullptr;
605     }
606 
607     // This is the case where we have a list of paths:
608     size_t name_len = strlen(name);
609     while (path_strings && path_strings[0] != '\0') {
610       size_t path_len = strlen(path_strings);
611       memcpy((void *) buffer, (void *) path_strings, path_len);
612       buffer[path_len] = '/';
613       char *target_ptr = buffer+path_len+1;
614       memcpy((void *) target_ptr, (void *) name, name_len + 1);
615       result_ptr->image_ptr = dlopen(buffer, 2);
616       if (result_ptr->image_ptr) {
617         result_ptr->error_str = nullptr;
618         break;
619       }
620       result_ptr->error_str = dlerror();
621       path_strings = path_strings + path_len + 1;
622     }
623     return nullptr;
624   }
625   )";
626 
627   static const char *dlopen_wrapper_name = "__lldb_dlopen_wrapper";
628   Process *process = exe_ctx.GetProcessSP().get();
629   // Insert the dlopen shim defines into our generic expression:
630   std::string expr(std::string(GetLibdlFunctionDeclarations(process)));
631   expr.append(dlopen_wrapper_code);
632   Status utility_error;
633   DiagnosticManager diagnostics;
634 
635   auto utility_fn_or_error = process->GetTarget().CreateUtilityFunction(
636       std::move(expr), dlopen_wrapper_name, eLanguageTypeObjC, exe_ctx);
637   if (!utility_fn_or_error) {
638     std::string error_str = llvm::toString(utility_fn_or_error.takeError());
639     error.SetErrorStringWithFormat("dlopen error: could not create utility"
640                                    "function: %s",
641                                    error_str.c_str());
642     return nullptr;
643   }
644   std::unique_ptr<UtilityFunction> dlopen_utility_func_up =
645       std::move(*utility_fn_or_error);
646 
647   Value value;
648   ValueList arguments;
649   FunctionCaller *do_dlopen_function = nullptr;
650 
651   // Fetch the clang types we will need:
652   TypeSystemClang *ast = TypeSystemClang::GetScratch(process->GetTarget());
653   if (!ast)
654     return nullptr;
655 
656   CompilerType clang_void_pointer_type
657       = ast->GetBasicType(eBasicTypeVoid).GetPointerType();
658   CompilerType clang_char_pointer_type
659         = ast->GetBasicType(eBasicTypeChar).GetPointerType();
660 
661   // We are passing four arguments, the basename, the list of places to look,
662   // a buffer big enough for all the path + name combos, and
663   // a pointer to the storage we've made for the result:
664   value.SetValueType(Value::eValueTypeScalar);
665   value.SetCompilerType(clang_void_pointer_type);
666   arguments.PushValue(value);
667   value.SetCompilerType(clang_char_pointer_type);
668   arguments.PushValue(value);
669   arguments.PushValue(value);
670   arguments.PushValue(value);
671 
672   do_dlopen_function = dlopen_utility_func_up->MakeFunctionCaller(
673       clang_void_pointer_type, arguments, exe_ctx.GetThreadSP(), utility_error);
674   if (utility_error.Fail()) {
675     error.SetErrorStringWithFormat("dlopen error: could not make function"
676                                    "caller: %s", utility_error.AsCString());
677     return nullptr;
678   }
679 
680   do_dlopen_function = dlopen_utility_func_up->GetFunctionCaller();
681   if (!do_dlopen_function) {
682     error.SetErrorString("dlopen error: could not get function caller.");
683     return nullptr;
684   }
685 
686   // We made a good utility function, so cache it in the process:
687   return dlopen_utility_func_up;
688 }
689 
690 uint32_t PlatformPOSIX::DoLoadImage(lldb_private::Process *process,
691                                     const lldb_private::FileSpec &remote_file,
692                                     const std::vector<std::string> *paths,
693                                     lldb_private::Status &error,
694                                     lldb_private::FileSpec *loaded_image) {
695   if (loaded_image)
696     loaded_image->Clear();
697 
698   std::string path;
699   path = remote_file.GetPath();
700 
701   ThreadSP thread_sp = process->GetThreadList().GetExpressionExecutionThread();
702   if (!thread_sp) {
703     error.SetErrorString("dlopen error: no thread available to call dlopen.");
704     return LLDB_INVALID_IMAGE_TOKEN;
705   }
706 
707   DiagnosticManager diagnostics;
708 
709   ExecutionContext exe_ctx;
710   thread_sp->CalculateExecutionContext(exe_ctx);
711 
712   Status utility_error;
713   UtilityFunction *dlopen_utility_func;
714   ValueList arguments;
715   FunctionCaller *do_dlopen_function = nullptr;
716 
717   // The UtilityFunction is held in the Process.  Platforms don't track the
718   // lifespan of the Targets that use them, we can't put this in the Platform.
719   dlopen_utility_func = process->GetLoadImageUtilityFunction(
720       this, [&]() -> std::unique_ptr<UtilityFunction> {
721         return MakeLoadImageUtilityFunction(exe_ctx, error);
722       });
723   // If we couldn't make it, the error will be in error, so we can exit here.
724   if (!dlopen_utility_func)
725     return LLDB_INVALID_IMAGE_TOKEN;
726 
727   do_dlopen_function = dlopen_utility_func->GetFunctionCaller();
728   if (!do_dlopen_function) {
729     error.SetErrorString("dlopen error: could not get function caller.");
730     return LLDB_INVALID_IMAGE_TOKEN;
731   }
732   arguments = do_dlopen_function->GetArgumentValues();
733 
734   // Now insert the path we are searching for and the result structure into the
735   // target.
736   uint32_t permissions = ePermissionsReadable|ePermissionsWritable;
737   size_t path_len = path.size() + 1;
738   lldb::addr_t path_addr = process->AllocateMemory(path_len,
739                                                    permissions,
740                                                    utility_error);
741   if (path_addr == LLDB_INVALID_ADDRESS) {
742     error.SetErrorStringWithFormat("dlopen error: could not allocate memory"
743                                     "for path: %s", utility_error.AsCString());
744     return LLDB_INVALID_IMAGE_TOKEN;
745   }
746 
747   // Make sure we deallocate the input string memory:
748   auto path_cleanup = llvm::make_scope_exit([process, path_addr] {
749     // Deallocate the buffer.
750     process->DeallocateMemory(path_addr);
751   });
752 
753   process->WriteMemory(path_addr, path.c_str(), path_len, utility_error);
754   if (utility_error.Fail()) {
755     error.SetErrorStringWithFormat("dlopen error: could not write path string:"
756                                     " %s", utility_error.AsCString());
757     return LLDB_INVALID_IMAGE_TOKEN;
758   }
759 
760   // Make space for our return structure.  It is two pointers big: the token
761   // and the error string.
762   const uint32_t addr_size = process->GetAddressByteSize();
763   lldb::addr_t return_addr = process->CallocateMemory(2*addr_size,
764                                                       permissions,
765                                                       utility_error);
766   if (utility_error.Fail()) {
767     error.SetErrorStringWithFormat("dlopen error: could not allocate memory"
768                                     "for path: %s", utility_error.AsCString());
769     return LLDB_INVALID_IMAGE_TOKEN;
770   }
771 
772   // Make sure we deallocate the result structure memory
773   auto return_cleanup = llvm::make_scope_exit([process, return_addr] {
774     // Deallocate the buffer
775     process->DeallocateMemory(return_addr);
776   });
777 
778   // This will be the address of the storage for paths, if we are using them,
779   // or nullptr to signal we aren't.
780   lldb::addr_t path_array_addr = 0x0;
781   llvm::Optional<llvm::detail::scope_exit<std::function<void()>>>
782       path_array_cleanup;
783 
784   // This is the address to a buffer large enough to hold the largest path
785   // conjoined with the library name we're passing in.  This is a convenience
786   // to avoid having to call malloc in the dlopen function.
787   lldb::addr_t buffer_addr = 0x0;
788   llvm::Optional<llvm::detail::scope_exit<std::function<void()>>>
789       buffer_cleanup;
790 
791   // Set the values into our args and write them to the target:
792   if (paths != nullptr) {
793     // First insert the paths into the target.  This is expected to be a
794     // continuous buffer with the strings laid out null terminated and
795     // end to end with an empty string terminating the buffer.
796     // We also compute the buffer's required size as we go.
797     size_t buffer_size = 0;
798     std::string path_array;
799     for (auto path : *paths) {
800       // Don't insert empty paths, they will make us abort the path
801       // search prematurely.
802       if (path.empty())
803         continue;
804       size_t path_size = path.size();
805       path_array.append(path);
806       path_array.push_back('\0');
807       if (path_size > buffer_size)
808         buffer_size = path_size;
809     }
810     path_array.push_back('\0');
811 
812     path_array_addr = process->AllocateMemory(path_array.size(),
813                                               permissions,
814                                               utility_error);
815     if (path_array_addr == LLDB_INVALID_ADDRESS) {
816       error.SetErrorStringWithFormat("dlopen error: could not allocate memory"
817                                       "for path array: %s",
818                                       utility_error.AsCString());
819       return LLDB_INVALID_IMAGE_TOKEN;
820     }
821 
822     // Make sure we deallocate the paths array.
823     path_array_cleanup.emplace([process, path_array_addr]() {
824       // Deallocate the path array.
825       process->DeallocateMemory(path_array_addr);
826     });
827 
828     process->WriteMemory(path_array_addr, path_array.data(),
829                          path_array.size(), utility_error);
830 
831     if (utility_error.Fail()) {
832       error.SetErrorStringWithFormat("dlopen error: could not write path array:"
833                                      " %s", utility_error.AsCString());
834       return LLDB_INVALID_IMAGE_TOKEN;
835     }
836     // Now make spaces in the target for the buffer.  We need to add one for
837     // the '/' that the utility function will insert and one for the '\0':
838     buffer_size += path.size() + 2;
839 
840     buffer_addr = process->AllocateMemory(buffer_size,
841                                           permissions,
842                                           utility_error);
843     if (buffer_addr == LLDB_INVALID_ADDRESS) {
844       error.SetErrorStringWithFormat("dlopen error: could not allocate memory"
845                                       "for buffer: %s",
846                                       utility_error.AsCString());
847       return LLDB_INVALID_IMAGE_TOKEN;
848     }
849 
850     // Make sure we deallocate the buffer memory:
851     buffer_cleanup.emplace([process, buffer_addr]() {
852       // Deallocate the buffer.
853       process->DeallocateMemory(buffer_addr);
854     });
855   }
856 
857   arguments.GetValueAtIndex(0)->GetScalar() = path_addr;
858   arguments.GetValueAtIndex(1)->GetScalar() = path_array_addr;
859   arguments.GetValueAtIndex(2)->GetScalar() = buffer_addr;
860   arguments.GetValueAtIndex(3)->GetScalar() = return_addr;
861 
862   lldb::addr_t func_args_addr = LLDB_INVALID_ADDRESS;
863 
864   diagnostics.Clear();
865   if (!do_dlopen_function->WriteFunctionArguments(exe_ctx,
866                                                  func_args_addr,
867                                                  arguments,
868                                                  diagnostics)) {
869     error.SetErrorStringWithFormat("dlopen error: could not write function "
870                                    "arguments: %s",
871                                    diagnostics.GetString().c_str());
872     return LLDB_INVALID_IMAGE_TOKEN;
873   }
874 
875   // Make sure we clean up the args structure.  We can't reuse it because the
876   // Platform lives longer than the process and the Platforms don't get a
877   // signal to clean up cached data when a process goes away.
878   auto args_cleanup =
879       llvm::make_scope_exit([do_dlopen_function, &exe_ctx, func_args_addr] {
880         do_dlopen_function->DeallocateFunctionResults(exe_ctx, func_args_addr);
881       });
882 
883   // Now run the caller:
884   EvaluateExpressionOptions options;
885   options.SetExecutionPolicy(eExecutionPolicyAlways);
886   options.SetLanguage(eLanguageTypeC_plus_plus);
887   options.SetIgnoreBreakpoints(true);
888   options.SetUnwindOnError(true);
889   options.SetTrapExceptions(false); // dlopen can't throw exceptions, so
890                                     // don't do the work to trap them.
891   options.SetTimeout(process->GetUtilityExpressionTimeout());
892   options.SetIsForUtilityExpr(true);
893 
894   Value return_value;
895   // Fetch the clang types we will need:
896   TypeSystemClang *ast = TypeSystemClang::GetScratch(process->GetTarget());
897   if (!ast) {
898     error.SetErrorString("dlopen error: Unable to get TypeSystemClang");
899     return LLDB_INVALID_IMAGE_TOKEN;
900   }
901 
902   CompilerType clang_void_pointer_type
903       = ast->GetBasicType(eBasicTypeVoid).GetPointerType();
904 
905   return_value.SetCompilerType(clang_void_pointer_type);
906 
907   ExpressionResults results = do_dlopen_function->ExecuteFunction(
908       exe_ctx, &func_args_addr, options, diagnostics, return_value);
909   if (results != eExpressionCompleted) {
910     error.SetErrorStringWithFormat("dlopen error: failed executing "
911                                    "dlopen wrapper function: %s",
912                                    diagnostics.GetString().c_str());
913     return LLDB_INVALID_IMAGE_TOKEN;
914   }
915 
916   // Read the dlopen token from the return area:
917   lldb::addr_t token = process->ReadPointerFromMemory(return_addr,
918                                                       utility_error);
919   if (utility_error.Fail()) {
920     error.SetErrorStringWithFormat("dlopen error: could not read the return "
921                                     "struct: %s", utility_error.AsCString());
922     return LLDB_INVALID_IMAGE_TOKEN;
923   }
924 
925   // The dlopen succeeded!
926   if (token != 0x0) {
927     if (loaded_image && buffer_addr != 0x0)
928     {
929       // Capture the image which was loaded.  We leave it in the buffer on
930       // exit from the dlopen function, so we can just read it from there:
931       std::string name_string;
932       process->ReadCStringFromMemory(buffer_addr, name_string, utility_error);
933       if (utility_error.Success())
934         loaded_image->SetFile(name_string, llvm::sys::path::Style::posix);
935     }
936     return process->AddImageToken(token);
937   }
938 
939   // We got an error, lets read in the error string:
940   std::string dlopen_error_str;
941   lldb::addr_t error_addr
942     = process->ReadPointerFromMemory(return_addr + addr_size, utility_error);
943   if (utility_error.Fail()) {
944     error.SetErrorStringWithFormat("dlopen error: could not read error string: "
945                                     "%s", utility_error.AsCString());
946     return LLDB_INVALID_IMAGE_TOKEN;
947   }
948 
949   size_t num_chars = process->ReadCStringFromMemory(error_addr + addr_size,
950                                                     dlopen_error_str,
951                                                     utility_error);
952   if (utility_error.Success() && num_chars > 0)
953     error.SetErrorStringWithFormat("dlopen error: %s",
954                                    dlopen_error_str.c_str());
955   else
956     error.SetErrorStringWithFormat("dlopen failed for unknown reasons.");
957 
958   return LLDB_INVALID_IMAGE_TOKEN;
959 }
960 
961 Status PlatformPOSIX::UnloadImage(lldb_private::Process *process,
962                                   uint32_t image_token) {
963   const addr_t image_addr = process->GetImagePtrFromToken(image_token);
964   if (image_addr == LLDB_INVALID_ADDRESS)
965     return Status("Invalid image token");
966 
967   StreamString expr;
968   expr.Printf("dlclose((void *)0x%" PRIx64 ")", image_addr);
969   llvm::StringRef prefix = GetLibdlFunctionDeclarations(process);
970   lldb::ValueObjectSP result_valobj_sp;
971   Status error = EvaluateLibdlExpression(process, expr.GetData(), prefix,
972                                          result_valobj_sp);
973   if (error.Fail())
974     return error;
975 
976   if (result_valobj_sp->GetError().Fail())
977     return result_valobj_sp->GetError();
978 
979   Scalar scalar;
980   if (result_valobj_sp->ResolveValue(scalar)) {
981     if (scalar.UInt(1))
982       return Status("expression failed: \"%s\"", expr.GetData());
983     process->ResetImageToken(image_token);
984   }
985   return Status();
986 }
987 
988 llvm::StringRef
989 PlatformPOSIX::GetLibdlFunctionDeclarations(lldb_private::Process *process) {
990   return R"(
991               extern "C" void* dlopen(const char*, int);
992               extern "C" void* dlsym(void*, const char*);
993               extern "C" int   dlclose(void*);
994               extern "C" char* dlerror(void);
995              )";
996 }
997 
998 size_t PlatformPOSIX::ConnectToWaitingProcesses(Debugger &debugger,
999                                                 Status &error) {
1000   if (m_remote_platform_sp)
1001     return m_remote_platform_sp->ConnectToWaitingProcesses(debugger, error);
1002   return Platform::ConnectToWaitingProcesses(debugger, error);
1003 }
1004 
1005 ConstString PlatformPOSIX::GetFullNameForDylib(ConstString basename) {
1006   if (basename.IsEmpty())
1007     return basename;
1008 
1009   StreamString stream;
1010   stream.Printf("lib%s.so", basename.GetCString());
1011   return ConstString(stream.GetString());
1012 }
1013