1 | /* |
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2 | * This file is a part of QTerminal - http://gitorious.org/qterminal |
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3 | * |
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4 | * This file was un-linked from KDE and modified |
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5 | * by Maxim Bourmistrov <maxim@unixconn.com> |
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6 | * |
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7 | */ |
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8 | |
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9 | /* |
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10 | |
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11 | This file is part of the KDE libraries |
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12 | Copyright (C) 2007 Oswald Buddenhagen <ossi@kde.org> |
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13 | Copyright (C) 2010 KDE e.V. <kde-ev-board@kde.org> |
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14 | Author Adriaan de Groot <groot@kde.org> |
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15 | |
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16 | This library is free software; you can redistribute it and/or |
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17 | modify it under the terms of the GNU Library General Public |
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18 | License as published by the Free Software Foundation; either |
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19 | version 2 of the License, or (at your option) any later version. |
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20 | |
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21 | This library is distributed in the hope that it will be useful, |
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22 | but WITHOUT ANY WARRANTY; without even the implied warranty of |
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23 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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24 | Library General Public License for more details. |
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25 | |
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26 | You should have received a copy of the GNU Library General Public License |
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27 | along with this library; see the file COPYING.LIB. If not, write to |
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28 | the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, |
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29 | Boston, MA 02110-1301, USA. |
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30 | */ |
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31 | |
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32 | #include "kptydevice.h" |
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33 | #include "kpty_p.h" |
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34 | |
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35 | #include <QSocketNotifier> |
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36 | |
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37 | #include <unistd.h> |
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38 | #include <cerrno> |
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39 | #include <csignal> |
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40 | #include <termios.h> |
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41 | #include <fcntl.h> |
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42 | #include <sys/ioctl.h> |
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43 | #ifdef HAVE_SYS_FILIO_H |
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44 | # include <sys/filio.h> |
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45 | #endif |
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46 | #ifdef HAVE_SYS_TIME_H |
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47 | # include <sys/time.h> |
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48 | #endif |
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49 | |
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50 | #if defined(Q_OS_FREEBSD) || defined(Q_OS_MAC) |
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51 | // "the other end's output queue size" - kinda braindead, huh? |
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52 | # define PTY_BYTES_AVAILABLE TIOCOUTQ |
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53 | #elif defined(TIOCINQ) |
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54 | // "our end's input queue size" |
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55 | # define PTY_BYTES_AVAILABLE TIOCINQ |
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56 | #else |
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57 | // likewise. more generic ioctl (theoretically) |
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58 | # define PTY_BYTES_AVAILABLE FIONREAD |
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59 | #endif |
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60 | |
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61 | |
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62 | |
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63 | |
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64 | ////////////////// |
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65 | // private data // |
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66 | ////////////////// |
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67 | |
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68 | // Lifted from Qt. I don't think they would mind. ;) |
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69 | // Re-lift again from Qt whenever a proper replacement for pthread_once appears |
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70 | static void qt_ignore_sigpipe() |
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71 | { |
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72 | static QBasicAtomicInt atom = Q_BASIC_ATOMIC_INITIALIZER(0); |
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73 | if (atom.testAndSetRelaxed(0, 1)) { |
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74 | struct sigaction noaction; |
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75 | memset(&noaction, 0, sizeof(noaction)); |
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76 | noaction.sa_handler = SIG_IGN; |
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77 | sigaction(SIGPIPE, &noaction, nullptr); |
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78 | } |
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79 | } |
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80 | |
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81 | #define NO_INTR(ret,func) do { ret = func; } while (ret < 0 && errno == EINTR) |
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82 | |
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83 | bool KPtyDevicePrivate::_k_canRead() |
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84 | { |
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85 | Q_Q(KPtyDevice); |
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86 | qint64 readBytes = 0; |
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87 | |
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88 | #ifdef Q_OS_IRIX // this should use a config define, but how to check it? |
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89 | size_t available; |
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90 | #else |
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91 | int available; |
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92 | #endif |
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93 | if (::ioctl(q->masterFd(), PTY_BYTES_AVAILABLE, (char *) &available) != -1) { |
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94 | #ifdef Q_OS_SOLARIS |
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95 | // A Pty is a STREAMS module, and those can be activated |
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96 | // with 0 bytes available. This happens either when ^C is |
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97 | // pressed, or when an application does an explicit write(a,b,0) |
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98 | // which happens in experiments fairly often. When 0 bytes are |
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99 | // available, you must read those 0 bytes to clear the STREAMS |
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100 | // module, but we don't want to hit the !readBytes case further down. |
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101 | if (!available) { |
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102 | char c; |
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103 | // Read the 0-byte STREAMS message |
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104 | NO_INTR(readBytes, read(q->masterFd(), &c, 0)); |
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105 | // Should return 0 bytes read; -1 is error |
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106 | if (readBytes < 0) { |
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107 | readNotifier->setEnabled(false); |
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108 | emit q->readEof(); |
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109 | return false; |
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110 | } |
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111 | return true; |
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112 | } |
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113 | #endif |
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114 | |
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115 | char *ptr = readBuffer.reserve(available); |
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116 | #ifdef Q_OS_SOLARIS |
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117 | // Even if available > 0, it is possible for read() |
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118 | // to return 0 on Solaris, due to 0-byte writes in the stream. |
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119 | // Ignore them and keep reading until we hit *some* data. |
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120 | // In Solaris it is possible to have 15 bytes available |
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121 | // and to (say) get 0, 0, 6, 0 and 9 bytes in subsequent reads. |
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122 | // Because the stream is set to O_NONBLOCK in finishOpen(), |
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123 | // an EOF read will return -1. |
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124 | readBytes = 0; |
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125 | while (!readBytes) |
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126 | #endif |
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127 | // Useless block braces except in Solaris |
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128 | { |
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129 | NO_INTR(readBytes, read(q->masterFd(), ptr, available)); |
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130 | } |
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131 | if (readBytes < 0) { |
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132 | readBuffer.unreserve(available); |
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133 | q->setErrorString(QLatin1String("Error reading from PTY")); |
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134 | return false; |
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135 | } |
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136 | readBuffer.unreserve(available - readBytes); // *should* be a no-op |
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137 | } |
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138 | |
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139 | if (!readBytes) { |
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140 | readNotifier->setEnabled(false); |
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141 | emit q->readEof(); |
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142 | return false; |
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143 | } else { |
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144 | if (!emittedReadyRead) { |
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145 | emittedReadyRead = true; |
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146 | emit q->readyRead(); |
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147 | emittedReadyRead = false; |
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148 | } |
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149 | return true; |
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150 | } |
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151 | } |
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152 | |
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153 | bool KPtyDevicePrivate::_k_canWrite() |
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154 | { |
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155 | Q_Q(KPtyDevice); |
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156 | |
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157 | writeNotifier->setEnabled(false); |
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158 | if (writeBuffer.isEmpty()) |
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159 | return false; |
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160 | |
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161 | qt_ignore_sigpipe(); |
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162 | int wroteBytes; |
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163 | NO_INTR(wroteBytes, |
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164 | write(q->masterFd(), |
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165 | writeBuffer.readPointer(), writeBuffer.readSize())); |
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166 | if (wroteBytes < 0) { |
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167 | q->setErrorString(QLatin1String("Error writing to PTY")); |
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168 | return false; |
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169 | } |
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170 | writeBuffer.free(wroteBytes); |
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171 | |
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172 | if (!emittedBytesWritten) { |
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173 | emittedBytesWritten = true; |
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174 | emit q->bytesWritten(wroteBytes); |
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175 | emittedBytesWritten = false; |
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176 | } |
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177 | |
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178 | if (!writeBuffer.isEmpty()) |
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179 | writeNotifier->setEnabled(true); |
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180 | return true; |
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181 | } |
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182 | |
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183 | #ifndef timeradd |
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184 | // Lifted from GLIBC |
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185 | # define timeradd(a, b, result) \ |
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186 | do { \ |
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187 | (result)->tv_sec = (a)->tv_sec + (b)->tv_sec; \ |
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188 | (result)->tv_usec = (a)->tv_usec + (b)->tv_usec; \ |
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189 | if ((result)->tv_usec >= 1000000) { \ |
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190 | ++(result)->tv_sec; \ |
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191 | (result)->tv_usec -= 1000000; \ |
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192 | } \ |
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193 | } while (0) |
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194 | # define timersub(a, b, result) \ |
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195 | do { \ |
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196 | (result)->tv_sec = (a)->tv_sec - (b)->tv_sec; \ |
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197 | (result)->tv_usec = (a)->tv_usec - (b)->tv_usec; \ |
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198 | if ((result)->tv_usec < 0) { \ |
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199 | --(result)->tv_sec; \ |
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200 | (result)->tv_usec += 1000000; \ |
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201 | } \ |
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202 | } while (0) |
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203 | #endif |
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204 | |
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205 | bool KPtyDevicePrivate::doWait(int msecs, bool reading) |
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206 | { |
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207 | Q_Q(KPtyDevice); |
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208 | #ifndef __linux__ |
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209 | struct timeval etv; |
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210 | #endif |
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211 | struct timeval tv, *tvp; |
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212 | |
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213 | if (msecs < 0) |
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214 | tvp = nullptr; |
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215 | else { |
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216 | tv.tv_sec = msecs / 1000; |
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217 | tv.tv_usec = (msecs % 1000) * 1000; |
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218 | #ifndef __linux__ |
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219 | gettimeofday(&etv, 0); |
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220 | timeradd(&tv, &etv, &etv); |
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221 | #endif |
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222 | tvp = &tv; |
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223 | } |
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224 | |
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225 | while (reading ? readNotifier->isEnabled() : !writeBuffer.isEmpty()) { |
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226 | fd_set rfds; |
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227 | fd_set wfds; |
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228 | |
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229 | FD_ZERO(&rfds); |
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230 | FD_ZERO(&wfds); |
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231 | |
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232 | if (readNotifier->isEnabled()) |
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233 | FD_SET(q->masterFd(), &rfds); |
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234 | if (!writeBuffer.isEmpty()) |
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235 | FD_SET(q->masterFd(), &wfds); |
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236 | |
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237 | #ifndef __linux__ |
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238 | if (tvp) { |
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239 | gettimeofday(&tv, 0); |
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240 | timersub(&etv, &tv, &tv); |
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241 | if (tv.tv_sec < 0) |
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242 | tv.tv_sec = tv.tv_usec = 0; |
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243 | } |
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244 | #endif |
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245 | |
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246 | switch (select(q->masterFd() + 1, &rfds, &wfds, nullptr, tvp)) { |
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247 | case -1: |
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248 | if (errno == EINTR) |
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249 | break; |
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250 | return false; |
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251 | case 0: |
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252 | q->setErrorString(QLatin1String("PTY operation timed out")); |
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253 | return false; |
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254 | default: |
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255 | if (FD_ISSET(q->masterFd(), &rfds)) { |
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256 | bool canRead = _k_canRead(); |
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257 | if (reading && canRead) |
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258 | return true; |
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259 | } |
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260 | if (FD_ISSET(q->masterFd(), &wfds)) { |
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261 | bool canWrite = _k_canWrite(); |
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262 | if (!reading) |
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263 | return canWrite; |
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264 | } |
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265 | break; |
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266 | } |
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267 | } |
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268 | return false; |
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269 | } |
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270 | |
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271 | void KPtyDevicePrivate::finishOpen(QIODevice::OpenMode mode) |
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272 | { |
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273 | Q_Q(KPtyDevice); |
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274 | |
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275 | q->QIODevice::open(mode); |
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276 | fcntl(q->masterFd(), F_SETFL, O_NONBLOCK); |
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277 | readBuffer.clear(); |
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278 | readNotifier = new QSocketNotifier(q->masterFd(), QSocketNotifier::Read, q); |
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279 | writeNotifier = new QSocketNotifier(q->masterFd(), QSocketNotifier::Write, q); |
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280 | QObject::connect(readNotifier, SIGNAL(activated(int)), q, SLOT(_k_canRead())); |
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281 | QObject::connect(writeNotifier, SIGNAL(activated(int)), q, SLOT(_k_canWrite())); |
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282 | readNotifier->setEnabled(true); |
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283 | } |
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284 | |
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285 | ///////////////////////////// |
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286 | // public member functions // |
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287 | ///////////////////////////// |
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288 | |
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289 | KPtyDevice::KPtyDevice(QObject *parent) : |
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290 | QIODevice(parent), |
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291 | KPty(new KPtyDevicePrivate(this)) |
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292 | { |
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293 | } |
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294 | |
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295 | KPtyDevice::~KPtyDevice() |
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296 | { |
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297 | close(); |
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298 | } |
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299 | |
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300 | bool KPtyDevice::open(OpenMode mode) |
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301 | { |
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302 | Q_D(KPtyDevice); |
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303 | |
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304 | if (masterFd() >= 0) |
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305 | return true; |
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306 | |
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307 | if (!KPty::open()) { |
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308 | setErrorString(QLatin1String("Error opening PTY")); |
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309 | return false; |
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310 | } |
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311 | |
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312 | d->finishOpen(mode); |
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313 | |
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314 | return true; |
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315 | } |
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316 | |
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317 | bool KPtyDevice::open(int fd, OpenMode mode) |
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318 | { |
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319 | Q_D(KPtyDevice); |
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320 | |
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321 | if (!KPty::open(fd)) { |
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322 | setErrorString(QLatin1String("Error opening PTY")); |
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323 | return false; |
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324 | } |
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325 | |
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326 | d->finishOpen(mode); |
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327 | |
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328 | return true; |
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329 | } |
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330 | |
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331 | void KPtyDevice::close() |
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332 | { |
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333 | Q_D(KPtyDevice); |
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334 | |
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335 | if (masterFd() < 0) |
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336 | return; |
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337 | |
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338 | delete d->readNotifier; |
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339 | delete d->writeNotifier; |
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340 | |
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341 | QIODevice::close(); |
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342 | |
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343 | KPty::close(); |
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344 | } |
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345 | |
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346 | bool KPtyDevice::isSequential() const |
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347 | { |
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348 | return true; |
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349 | } |
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350 | |
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351 | bool KPtyDevice::canReadLine() const |
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352 | { |
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353 | Q_D(const KPtyDevice); |
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354 | return QIODevice::canReadLine() || d->readBuffer.canReadLine(); |
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355 | } |
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356 | |
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357 | bool KPtyDevice::atEnd() const |
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358 | { |
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359 | Q_D(const KPtyDevice); |
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360 | return QIODevice::atEnd() && d->readBuffer.isEmpty(); |
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361 | } |
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362 | |
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363 | qint64 KPtyDevice::bytesAvailable() const |
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364 | { |
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365 | Q_D(const KPtyDevice); |
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366 | return QIODevice::bytesAvailable() + d->readBuffer.size(); |
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367 | } |
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368 | |
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369 | qint64 KPtyDevice::bytesToWrite() const |
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370 | { |
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371 | Q_D(const KPtyDevice); |
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372 | return d->writeBuffer.size(); |
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373 | } |
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374 | |
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375 | bool KPtyDevice::waitForReadyRead(int msecs) |
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376 | { |
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377 | Q_D(KPtyDevice); |
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378 | return d->doWait(msecs, true); |
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379 | } |
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380 | |
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381 | bool KPtyDevice::waitForBytesWritten(int msecs) |
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382 | { |
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383 | Q_D(KPtyDevice); |
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384 | return d->doWait(msecs, false); |
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385 | } |
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386 | |
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387 | void KPtyDevice::setSuspended(bool suspended) |
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388 | { |
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389 | Q_D(KPtyDevice); |
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390 | d->readNotifier->setEnabled(!suspended); |
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391 | } |
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392 | |
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393 | bool KPtyDevice::isSuspended() const |
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394 | { |
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395 | Q_D(const KPtyDevice); |
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396 | return !d->readNotifier->isEnabled(); |
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397 | } |
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398 | |
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399 | // protected |
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400 | qint64 KPtyDevice::readData(char *data, qint64 maxlen) |
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401 | { |
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402 | Q_D(KPtyDevice); |
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403 | return d->readBuffer.read(data, (int)qMin<qint64>(maxlen, KMAXINT)); |
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404 | } |
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405 | |
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406 | // protected |
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407 | qint64 KPtyDevice::readLineData(char *data, qint64 maxlen) |
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408 | { |
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409 | Q_D(KPtyDevice); |
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410 | return d->readBuffer.readLine(data, (int)qMin<qint64>(maxlen, KMAXINT)); |
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411 | } |
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412 | |
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413 | // protected |
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414 | qint64 KPtyDevice::writeData(const char *data, qint64 len) |
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415 | { |
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416 | Q_D(KPtyDevice); |
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417 | Q_ASSERT(len <= KMAXINT); |
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418 | |
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419 | d->writeBuffer.write(data, len); |
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420 | d->writeNotifier->setEnabled(true); |
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421 | return len; |
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422 | } |
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