1 | /** @file
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2 | * IPRT - Process Management.
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3 | */
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4 |
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5 | /*
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6 | * Copyright (C) 2006-2019 Oracle Corporation
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7 | *
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8 | * This file is part of VirtualBox Open Source Edition (OSE), as
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9 | * available from http://www.virtualbox.org. This file is free software;
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10 | * you can redistribute it and/or modify it under the terms of the GNU
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11 | * General Public License (GPL) as published by the Free Software
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12 | * Foundation, in version 2 as it comes in the "COPYING" file of the
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13 | * VirtualBox OSE distribution. VirtualBox OSE is distributed in the
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14 | * hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
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15 | *
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16 | * The contents of this file may alternatively be used under the terms
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17 | * of the Common Development and Distribution License Version 1.0
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18 | * (CDDL) only, as it comes in the "COPYING.CDDL" file of the
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19 | * VirtualBox OSE distribution, in which case the provisions of the
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20 | * CDDL are applicable instead of those of the GPL.
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21 | *
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22 | * You may elect to license modified versions of this file under the
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23 | * terms and conditions of either the GPL or the CDDL or both.
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24 | */
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25 |
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26 | #ifndef IPRT_INCLUDED_process_h
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27 | #define IPRT_INCLUDED_process_h
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28 | #ifndef RT_WITHOUT_PRAGMA_ONCE
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29 | # pragma once
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30 | #endif
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31 |
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32 | #include <iprt/cdefs.h>
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33 | #include <iprt/types.h>
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34 |
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35 | RT_C_DECLS_BEGIN
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36 |
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37 | /** @defgroup grp_rt_process RTProc - Process Management
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38 | * @ingroup grp_rt
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39 | * @{
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40 | */
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41 |
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42 |
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43 | /**
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44 | * Process priority.
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45 | *
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46 | * The process priority is used to select how scheduling properties
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47 | * are assigned to the different thread types (see THREADTYPE).
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48 | *
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49 | * In addition to using the policy assigned to the process at startup (DEFAULT)
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50 | * it is possible to change the process priority at runtime. This allows for
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51 | * a GUI, resource manager or admin to adjust the general priority of a task
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52 | * without upsetting the fine-tuned priority of the threads within.
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53 | */
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54 | typedef enum RTPROCPRIORITY
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55 | {
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56 | /** Invalid priority. */
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57 | RTPROCPRIORITY_INVALID = 0,
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58 | /** Default priority.
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59 | * Derive the scheduling policy from the priority of the RTR3Init()
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60 | * and RTProcSetPriority() callers and the rights the process have
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61 | * to alter its own priority.
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62 | */
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63 | RTPROCPRIORITY_DEFAULT,
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64 | /** Flat priority.
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65 | * Assumes a scheduling policy which puts the process at the default priority
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66 | * and with all thread at the same priority.
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67 | */
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68 | RTPROCPRIORITY_FLAT,
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69 | /** Low priority.
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70 | * Assumes a scheduling policy which puts the process mostly below the
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71 | * default priority of the host OS.
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72 | */
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73 | RTPROCPRIORITY_LOW,
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74 | /** Normal priority.
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75 | * Assume a scheduling policy which shares the CPU resources fairly with
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76 | * other processes running with the default priority of the host OS.
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77 | */
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78 | RTPROCPRIORITY_NORMAL,
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79 | /** High priority.
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80 | * Assumes a scheduling policy which puts the task above the default
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81 | * priority of the host OS. This policy might easily cause other tasks
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82 | * in the system to starve.
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83 | */
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84 | RTPROCPRIORITY_HIGH,
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85 | /** Last priority, used for validation. */
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86 | RTPROCPRIORITY_LAST
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87 | } RTPROCPRIORITY;
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88 |
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89 |
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90 | /**
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91 | * Get the current process identifier.
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92 | *
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93 | * @returns Process identifier.
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94 | */
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95 | RTDECL(RTPROCESS) RTProcSelf(void);
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96 |
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97 |
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98 | #ifdef IN_RING0
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99 | /**
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100 | * Get the current process handle.
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101 | *
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102 | * @returns Ring-0 process handle.
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103 | */
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104 | RTR0DECL(RTR0PROCESS) RTR0ProcHandleSelf(void);
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105 | #endif
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106 |
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107 |
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108 | #ifdef IN_RING3
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109 |
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110 | /**
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111 | * Attempts to alter the priority of the current process.
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112 | *
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113 | * @returns iprt status code.
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114 | * @param enmPriority The new priority.
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115 | */
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116 | RTR3DECL(int) RTProcSetPriority(RTPROCPRIORITY enmPriority);
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117 |
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118 | /**
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119 | * Gets the current priority of this process.
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120 | *
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121 | * @returns The priority (see RTPROCPRIORITY).
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122 | */
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123 | RTR3DECL(RTPROCPRIORITY) RTProcGetPriority(void);
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124 |
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125 | /**
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126 | * Create a child process.
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127 | *
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128 | * @returns iprt status code.
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129 | * @param pszExec Executable image to use to create the child process.
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130 | * @param papszArgs Pointer to an array of arguments to the child. The array terminated by an entry containing NULL.
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131 | * @param Env Handle to the environment block for the child.
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132 | * @param fFlags Flags, one of the RTPROC_FLAGS_* defines.
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133 | * @param pProcess Where to store the process identifier on successful return.
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134 | * The content is not changed on failure. NULL is allowed.
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135 | */
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136 | RTR3DECL(int) RTProcCreate(const char *pszExec, const char * const *papszArgs, RTENV Env, unsigned fFlags, PRTPROCESS pProcess);
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137 |
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138 |
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139 | /**
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140 | * Create a child process.
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141 | *
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142 | * @returns IPRT status code.
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143 | *
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144 | * @param pszExec Executable image to use to create the child process.
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145 | * @param papszArgs Pointer to an array of arguments to the child. The
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146 | * array terminated by an entry containing NULL.
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147 | * @param hEnv Handle to the environment block for the child. Pass
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148 | * RTENV_DEFAULT to use the environment of the current
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149 | * process.
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150 | * @param fFlags Flags, one of the RTPROC_FLAGS_* defines.
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151 | * @param phStdIn The standard in handle to assign the new process. Pass
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152 | * NULL to use the same as the current process. If the
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153 | * handle is NIL, we'll close the standard input of the
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154 | * guest.
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155 | * @param phStdOut The standard out handle to assign the new process. Pass
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156 | * NULL to use the same as the current process. If the
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157 | * handle is NIL, we'll close the standard output of the
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158 | * guest.
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159 | * @param phStdErr The standard error handle to assign the new process. Pass
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160 | * NULL to use the same as the current process. If the
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161 | * handle is NIL, we'll close the standard error of the
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162 | * guest.
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163 | * @param pszAsUser User to run the process as. Pass NULL to use the same
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164 | * user as the current process.
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165 | * Windows: Use user\@domain (UPN, User Principal Name)
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166 | * format to specify a domain.
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167 | * @param pszPassword Password to use to authenticate @a pszAsUser. Must be
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168 | * NULL wif pszAsUser is NULL. Whether this is actually
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169 | * used or not depends on the platform.
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170 | * @param pvExtraData Points to additional data as per @a fFlags:
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171 | * - RTPROC_FLAGS_DESIRED_SESSION_ID: Pointing to a
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172 | * uint32_t variable with the desired session ID.
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173 | * @param phProcess Where to store the process handle on successful return.
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174 | * The content is not changed on failure. NULL is allowed.
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175 | *
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176 | * @remarks The handles does not have to be created as inheritable, but it
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177 | * doesn't hurt if they are as it may avoid race conditions on some
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178 | * platforms.
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179 | *
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180 | * @remarks The as-user feature isn't supported/implemented on all platforms and
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181 | * will cause a-yet-to-be-determined-error-status on these.
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182 | */
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183 | RTR3DECL(int) RTProcCreateEx(const char *pszExec, const char * const *papszArgs, RTENV hEnv, uint32_t fFlags,
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184 | PCRTHANDLE phStdIn, PCRTHANDLE phStdOut, PCRTHANDLE phStdErr, const char *pszAsUser,
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185 | const char *pszPassword, void *pvExtraData, PRTPROCESS phProcess);
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186 |
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187 | /** @name RTProcCreate and RTProcCreateEx flags
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188 | * @{ */
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189 | /** Detach the child process from the parents process tree and process group,
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190 | * session or/and console (depends on the platform what's done applicable).
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191 | *
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192 | * The new process will not be a direct decendent of the parent and it will not
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193 | * be possible to wait for it, i.e. @a phProcess shall be NULL. */
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194 | #define RTPROC_FLAGS_DETACHED RT_BIT(0)
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195 | /** Don't show the started process.
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196 | * This is a Windows (and maybe OS/2) concept, do not use on other platforms. */
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197 | #define RTPROC_FLAGS_HIDDEN RT_BIT(1)
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198 | /** Use special code path for starting child processes from a service (daemon).
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199 | * This is a windows concept for dealing with the so called "Session 0"
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200 | * isolation which was introduced with Windows Vista. Do not use on other
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201 | * platforms. */
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202 | #define RTPROC_FLAGS_SERVICE RT_BIT(2)
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203 | /** Suppress changing the process contract id for the child process
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204 | * on Solaris. Without this flag the contract id is always changed, as that's
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205 | * the more frequently used case. */
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206 | #define RTPROC_FLAGS_SAME_CONTRACT RT_BIT(3)
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207 | /** Load user profile data when executing a process.
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208 | * This redefines the meaning of RTENV_DEFAULT to the profile environment.
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209 | * @remarks On non-windows platforms, the resulting environment maybe very
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210 | * different from what you see in your shell. Among other reasons,
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211 | * we cannot run shell profile scripts which typically sets up the
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212 | * environment. */
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213 | #define RTPROC_FLAGS_PROFILE RT_BIT(4)
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214 | /** Create process without a console window.
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215 | * This is a Windows (and OS/2) concept, do not use on other platforms. */
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216 | #define RTPROC_FLAGS_NO_WINDOW RT_BIT(5)
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217 | /** Search the PATH for the executable. */
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218 | #define RTPROC_FLAGS_SEARCH_PATH RT_BIT(6)
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219 | /** Don't quote and escape arguments on Windows and similar platforms where a
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220 | * command line is passed to the child process instead of an argument vector,
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221 | * just join up argv with a space between each. Ignored on platforms
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222 | * passing argument the vector. */
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223 | #define RTPROC_FLAGS_UNQUOTED_ARGS RT_BIT(7)
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224 | /** Consider hEnv an environment change record to be applied to RTENV_DEFAULT.
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225 | * If hEnv is RTENV_DEFAULT, the flag has no effect. */
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226 | #define RTPROC_FLAGS_ENV_CHANGE_RECORD RT_BIT(8)
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227 | /** Create process using the current impersonated thread token.
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228 | * Caller should also specify RTPROC_FLAGS_SERVICE and RTPROC_FLAGS_PROFILE.
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229 | * Windows only flag, ignored everywhere else. */
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230 | #define RTPROC_FLAGS_AS_IMPERSONATED_TOKEN RT_BIT(9)
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231 | /** Hint that we don't expect to ever want to wait on the process. */
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232 | #define RTPROC_FLAGS_NO_WAIT RT_BIT(10)
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233 | /** For use with RTPROC_FLAGS_SERVICE to specify a desired session ID
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234 | * (Windows only, ignored elsewhere). The @a pvExtraData argument points to
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235 | * a uint32_t containing the session ID, UINT32_MAX means any session. */
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236 | #define RTPROC_FLAGS_DESIRED_SESSION_ID RT_BIT(11)
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237 | /** Valid flag mask. */
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238 | #define RTPROC_FLAGS_VALID_MASK UINT32_C(0xfff)
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239 | /** @} */
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240 |
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241 |
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242 | /**
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243 | * Process exit reason.
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244 | */
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245 | typedef enum RTPROCEXITREASON
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246 | {
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247 | /** Normal exit. iStatus contains the exit code. */
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248 | RTPROCEXITREASON_NORMAL = 1,
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249 | /** Any abnormal exit. iStatus is undefined. */
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250 | RTPROCEXITREASON_ABEND,
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251 | /** Killed by a signal. The iStatus field contains the signal number. */
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252 | RTPROCEXITREASON_SIGNAL
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253 | } RTPROCEXITREASON;
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254 |
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255 | /**
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256 | * Process exit status.
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257 | */
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258 | typedef struct RTPROCSTATUS
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259 | {
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260 | /** The process exit status if the exit was a normal one. */
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261 | int iStatus;
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262 | /** The reason the process terminated. */
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263 | RTPROCEXITREASON enmReason;
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264 | } RTPROCSTATUS;
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265 | /** Pointer to a process exit status structure. */
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266 | typedef RTPROCSTATUS *PRTPROCSTATUS;
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267 | /** Pointer to a const process exit status structure. */
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268 | typedef const RTPROCSTATUS *PCRTPROCSTATUS;
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269 |
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270 |
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271 | /** Flags for RTProcWait().
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272 | * @{ */
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273 | /** Block indefinitly waiting for the process to exit. */
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274 | #define RTPROCWAIT_FLAGS_BLOCK 0
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275 | /** Don't block, just check if the process have exited. */
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276 | #define RTPROCWAIT_FLAGS_NOBLOCK 1
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277 | /** @} */
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278 |
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279 | /**
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280 | * Waits for a process, resumes on interruption.
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281 | *
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282 | * @returns VINF_SUCCESS when the status code for the process was collected and
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283 | * put in *pProcStatus.
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284 | * @returns VERR_PROCESS_NOT_FOUND if the specified process wasn't found.
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285 | * @returns VERR_PROCESS_RUNNING when the RTPROCWAIT_FLAGS_NOBLOCK and the
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286 | * process haven't exited yet.
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287 | *
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288 | * @param Process The process to wait for.
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289 | * @param fFlags The wait flags, any of the RTPROCWAIT_FLAGS_ \#defines.
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290 | * @param pProcStatus Where to store the exit status on success.
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291 | * Optional.
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292 | */
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293 | RTR3DECL(int) RTProcWait(RTPROCESS Process, unsigned fFlags, PRTPROCSTATUS pProcStatus);
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294 |
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295 | /**
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296 | * Waits for a process, returns on interruption.
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297 | *
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298 | * @returns VINF_SUCCESS when the status code for the process was collected and
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299 | * put in *pProcStatus.
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300 | * @returns VERR_PROCESS_NOT_FOUND if the specified process wasn't found.
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301 | * @returns VERR_PROCESS_RUNNING when the RTPROCWAIT_FLAGS_NOBLOCK and the
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302 | * process haven't exited yet.
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303 | * @returns VERR_INTERRUPTED when the wait was interrupted by the arrival of a
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304 | * signal or other async event.
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305 | *
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306 | * @param Process The process to wait for.
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307 | * @param fFlags The wait flags, any of the RTPROCWAIT_FLAGS_ \#defines.
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308 | * @param pProcStatus Where to store the exit status on success.
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309 | * Optional.
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310 | */
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311 | RTR3DECL(int) RTProcWaitNoResume(RTPROCESS Process, unsigned fFlags, PRTPROCSTATUS pProcStatus);
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312 |
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313 | /**
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314 | * Terminates (kills) a running process.
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315 | *
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316 | * @returns IPRT status code.
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317 | * @param Process The process to terminate.
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318 | */
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319 | RTR3DECL(int) RTProcTerminate(RTPROCESS Process);
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320 |
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321 | /**
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322 | * Gets the processor affinity mask of the current process.
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323 | *
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324 | * @returns The affinity mask.
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325 | */
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326 | RTR3DECL(uint64_t) RTProcGetAffinityMask(void);
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327 |
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328 | /**
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329 | * Gets the short process name.
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330 | *
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331 | * @returns Pointer to read-only name string.
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332 | */
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333 | RTR3DECL(const char *) RTProcShortName(void);
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334 |
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335 | /**
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336 | * Gets the path to the executable image of the current process.
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337 | *
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338 | * @returns pszExecPath on success. NULL on buffer overflow or other errors.
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339 | *
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340 | * @param pszExecPath Where to store the path.
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341 | * @param cbExecPath The size of the buffer.
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342 | */
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343 | RTR3DECL(char *) RTProcGetExecutablePath(char *pszExecPath, size_t cbExecPath);
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344 |
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345 | /**
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346 | * Daemonize the current process, making it a background process.
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347 | *
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348 | * The way this work is that it will spawn a detached / backgrounded /
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349 | * daemonized / call-it-what-you-want process that isn't a direct child of the
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350 | * current process. The spawned will have the same arguments a the caller,
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351 | * except that the @a pszDaemonizedOpt is appended to prevent that the new
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352 | * process calls this API again.
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353 | *
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354 | * The new process will have the standard handles directed to/from the
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355 | * bitbucket.
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356 | *
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357 | * @returns IPRT status code. On success it is normal for the caller to exit
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358 | * the process by returning from main().
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359 | *
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360 | * @param papszArgs The argument vector of the calling process.
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361 | * @param pszDaemonizedOpt The daemonized option. This is appended to the
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362 | * end of the parameter list of the daemonized process.
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363 | */
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364 | RTR3DECL(int) RTProcDaemonize(const char * const *papszArgs, const char *pszDaemonizedOpt);
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365 |
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366 | /**
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367 | * Daemonize the current process, making it a background process. The current
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368 | * process will exit if daemonizing is successful.
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369 | *
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370 | * @returns IPRT status code. On success it will only return in the child
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371 | * process, the parent will exit. On failure, it will return in the
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372 | * parent process and no child has been spawned.
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373 | *
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374 | * @param fNoChDir Pass false to change working directory to "/".
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375 | * @param fNoClose Pass false to redirect standard file streams to the null device.
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376 | * @param pszPidfile Path to a file to write the process id of the daemon
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377 | * process to. Daemonizing will fail if this file already
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378 | * exists or cannot be written. May be NULL.
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379 | */
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380 | RTR3DECL(int) RTProcDaemonizeUsingFork(bool fNoChDir, bool fNoClose, const char *pszPidfile);
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381 |
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382 | /**
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383 | * Check if the given process is running on the system.
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384 | *
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385 | * This check is case sensitive on most systems, except for Windows, OS/2 and
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386 | * Darwin.
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387 | *
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388 | * @returns true if the process is running & false otherwise.
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389 | * @param pszName Process name to search for. If no path is given only the
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390 | * filename part of the running process set will be
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391 | * matched. If a path is specified, the full path will be
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392 | * matched.
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393 | */
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394 | RTR3DECL(bool) RTProcIsRunningByName(const char *pszName);
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395 |
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396 | /**
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397 | * Queries the parent process ID.
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398 | *
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399 | * @returns IPRT status code
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400 | * @param hProcess The process to query the parent of.
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401 | * @param phParent Where to return the parent process ID.
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402 | */
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403 | RTR3DECL(int) RTProcQueryParent(RTPROCESS hProcess, PRTPROCESS phParent);
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404 |
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405 | /**
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406 | * Query the username of the given process.
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407 | *
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408 | * @returns IPRT status code.
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409 | * @retval VERR_BUFFER_OVERFLOW if the given buffer size is to small for the username.
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410 | * @param hProcess The process handle to query the username for.
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411 | * NIL_PROCESS is an alias for the current process.
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412 | * @param pszUser Where to store the user name on success.
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413 | * @param cbUser The size of the user name buffer.
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414 | * @param pcbUser Where to store the username length on success
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415 | * or the required buffer size if VERR_BUFFER_OVERFLOW
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416 | * is returned.
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417 | */
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418 | RTR3DECL(int) RTProcQueryUsername(RTPROCESS hProcess, char *pszUser, size_t cbUser, size_t *pcbUser);
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419 |
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420 | /**
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421 | * Query the username of the given process allocating the string for the username.
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422 | *
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423 | * @returns IPRT status code.
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424 | * @param hProcess The process handle to query the username for.
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425 | * @param ppszUser Where to store the pointer to the string containing
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426 | * the username on success. Free with RTStrFree().
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427 | */
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428 | RTR3DECL(int) RTProcQueryUsernameA(RTPROCESS hProcess, char **ppszUser);
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429 |
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430 | #endif /* IN_RING3 */
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431 |
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432 | /** @} */
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433 |
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434 | RT_C_DECLS_END
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435 |
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436 | #endif /* !IPRT_INCLUDED_process_h */
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437 |
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