1 | //
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2 | // Cforall Version 1.0.0 Copyright (C) 2020 University of Waterloo
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3 | //
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4 | // The contents of this file are covered under the licence agreement in the
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5 | // file "LICENCE" distributed with Cforall.
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6 | //
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7 | // io.cfa --
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8 | //
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9 | // Author : Thierry Delisle
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10 | // Created On : Thu Apr 23 17:31:00 2020
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11 | // Last Modified By :
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12 | // Last Modified On :
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13 | // Update Count :
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14 | //
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15 |
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16 | #define __cforall_thread__
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17 |
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18 | #if defined(__CFA_DEBUG__)
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19 | // #define __CFA_DEBUG_PRINT_IO__
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20 | // #define __CFA_DEBUG_PRINT_IO_CORE__
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21 | #endif
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22 |
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23 |
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24 | #if defined(CFA_HAVE_LINUX_IO_URING_H)
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25 | #define _GNU_SOURCE /* See feature_test_macros(7) */
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26 | #include <errno.h>
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27 | #include <signal.h>
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28 | #include <stdint.h>
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29 | #include <string.h>
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30 | #include <unistd.h>
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31 |
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32 | extern "C" {
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33 | #include <sys/syscall.h>
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34 |
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35 | #include <linux/io_uring.h>
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36 | }
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37 |
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38 | #include "stats.hfa"
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39 | #include "kernel.hfa"
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40 | #include "kernel/fwd.hfa"
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41 | #include "io/types.hfa"
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42 |
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43 | static const char * opcodes[] = {
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44 | "OP_NOP",
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45 | "OP_READV",
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46 | "OP_WRITEV",
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47 | "OP_FSYNC",
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48 | "OP_READ_FIXED",
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49 | "OP_WRITE_FIXED",
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50 | "OP_POLL_ADD",
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51 | "OP_POLL_REMOVE",
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52 | "OP_SYNC_FILE_RANGE",
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53 | "OP_SENDMSG",
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54 | "OP_RECVMSG",
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55 | "OP_TIMEOUT",
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56 | "OP_TIMEOUT_REMOVE",
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57 | "OP_ACCEPT",
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58 | "OP_ASYNC_CANCEL",
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59 | "OP_LINK_TIMEOUT",
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60 | "OP_CONNECT",
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61 | "OP_FALLOCATE",
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62 | "OP_OPENAT",
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63 | "OP_CLOSE",
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64 | "OP_FILES_UPDATE",
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65 | "OP_STATX",
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66 | "OP_READ",
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67 | "OP_WRITE",
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68 | "OP_FADVISE",
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69 | "OP_MADVISE",
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70 | "OP_SEND",
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71 | "OP_RECV",
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72 | "OP_OPENAT2",
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73 | "OP_EPOLL_CTL",
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74 | "OP_SPLICE",
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75 | "OP_PROVIDE_BUFFERS",
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76 | "OP_REMOVE_BUFFERS",
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77 | "OP_TEE",
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78 | "INVALID_OP"
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79 | };
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80 |
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81 | // returns true of acquired as leader or second leader
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82 | static inline bool try_lock( __leaderlock_t & this ) {
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83 | const uintptr_t thrd = 1z | (uintptr_t)active_thread();
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84 | bool block;
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85 | disable_interrupts();
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86 | for() {
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87 | struct $thread * expected = this.value;
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88 | if( 1p != expected && 0p != expected ) {
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89 | /* paranoid */ verify( thrd != (uintptr_t)expected ); // We better not already be the next leader
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90 | enable_interrupts( __cfaabi_dbg_ctx );
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91 | return false;
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92 | }
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93 | struct $thread * desired;
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94 | if( 0p == expected ) {
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95 | // If the lock isn't locked acquire it, no need to block
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96 | desired = 1p;
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97 | block = false;
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98 | }
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99 | else {
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100 | // If the lock is already locked try becomming the next leader
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101 | desired = (struct $thread *)thrd;
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102 | block = true;
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103 | }
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104 | if( __atomic_compare_exchange_n(&this.value, &expected, desired, false, __ATOMIC_SEQ_CST, __ATOMIC_SEQ_CST) ) break;
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105 | }
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106 | if( block ) {
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107 | enable_interrupts( __cfaabi_dbg_ctx );
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108 | park();
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109 | disable_interrupts();
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110 | }
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111 | return true;
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112 | }
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113 |
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114 | static inline bool next( __leaderlock_t & this ) {
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115 | /* paranoid */ verify( ! __preemption_enabled() );
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116 | struct $thread * nextt;
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117 | for() {
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118 | struct $thread * expected = this.value;
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119 | /* paranoid */ verify( (1 & (uintptr_t)expected) == 1 ); // The lock better be locked
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120 |
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121 | struct $thread * desired;
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122 | if( 1p == expected ) {
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123 | // No next leader, just unlock
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124 | desired = 0p;
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125 | nextt = 0p;
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126 | }
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127 | else {
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128 | // There is a next leader, remove but keep locked
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129 | desired = 1p;
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130 | nextt = (struct $thread *)(~1z & (uintptr_t)expected);
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131 | }
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132 | if( __atomic_compare_exchange_n(&this.value, &expected, desired, false, __ATOMIC_SEQ_CST, __ATOMIC_SEQ_CST) ) break;
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133 | }
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134 |
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135 | if(nextt) {
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136 | unpark( nextt );
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137 | enable_interrupts( __cfaabi_dbg_ctx );
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138 | return true;
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139 | }
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140 | enable_interrupts( __cfaabi_dbg_ctx );
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141 | return false;
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142 | }
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143 |
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144 | //=============================================================================================
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145 | // I/O Syscall
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146 | //=============================================================================================
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147 | static int __io_uring_enter( struct __io_data & ring, unsigned to_submit, bool get ) {
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148 | bool need_sys_to_submit = false;
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149 | bool need_sys_to_complete = false;
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150 | unsigned flags = 0;
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151 |
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152 | TO_SUBMIT:
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153 | if( to_submit > 0 ) {
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154 | if( !(ring.ring_flags & IORING_SETUP_SQPOLL) ) {
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155 | need_sys_to_submit = true;
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156 | break TO_SUBMIT;
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157 | }
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158 | if( (*ring.submit_q.flags) & IORING_SQ_NEED_WAKEUP ) {
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159 | need_sys_to_submit = true;
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160 | flags |= IORING_ENTER_SQ_WAKEUP;
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161 | }
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162 | }
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163 |
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164 | if( get && !(ring.ring_flags & IORING_SETUP_SQPOLL) ) {
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165 | flags |= IORING_ENTER_GETEVENTS;
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166 | if( (ring.ring_flags & IORING_SETUP_IOPOLL) ) {
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167 | need_sys_to_complete = true;
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168 | }
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169 | }
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170 |
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171 | int ret = 0;
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172 | if( need_sys_to_submit || need_sys_to_complete ) {
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173 | __cfadbg_print_safe(io_core, "Kernel I/O : IO_URING enter %d %u %u\n", ring.fd, to_submit, flags);
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174 | ret = syscall( __NR_io_uring_enter, ring.fd, to_submit, 0, flags, (sigset_t *)0p, _NSIG / 8);
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175 | if( ret < 0 ) {
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176 | switch((int)errno) {
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177 | case EAGAIN:
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178 | case EINTR:
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179 | ret = -1;
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180 | break;
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181 | default:
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182 | abort( "KERNEL ERROR: IO_URING SYSCALL - (%d) %s\n", (int)errno, strerror(errno) );
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183 | }
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184 | }
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185 | }
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186 |
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187 | // Memory barrier
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188 | __atomic_thread_fence( __ATOMIC_SEQ_CST );
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189 | return ret;
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190 | }
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191 |
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192 | //=============================================================================================
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193 | // I/O Polling
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194 | //=============================================================================================
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195 | static unsigned __collect_submitions( struct __io_data & ring );
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196 | static __u32 __release_consumed_submission( struct __io_data & ring );
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197 | static inline void __clean( volatile struct io_uring_sqe * sqe );
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198 |
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199 | // Process a single completion message from the io_uring
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200 | // This is NOT thread-safe
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201 | static inline void process( volatile struct io_uring_cqe & cqe ) {
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202 | struct io_future_t * future = (struct io_future_t *)(uintptr_t)cqe.user_data;
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203 | __cfadbg_print_safe( io, "Kernel I/O : Syscall completed : cqe %p, result %d for %p\n", &cqe, cqe.res, future );
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204 |
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205 | fulfil( *future, cqe.res );
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206 | }
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207 |
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208 | static [int, bool] __drain_io( & struct __io_data ring ) {
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209 | /* paranoid */ verify( ! __preemption_enabled() );
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210 |
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211 | unsigned to_submit = 0;
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212 | if( ring.poller_submits ) {
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213 | // If the poller thread also submits, then we need to aggregate the submissions which are ready
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214 | to_submit = __collect_submitions( ring );
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215 | }
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216 |
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217 | int ret = __io_uring_enter(ring, to_submit, true);
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218 | if( ret < 0 ) {
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219 | return [0, true];
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220 | }
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221 |
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222 | // update statistics
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223 | if (to_submit > 0) {
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224 | __STATS__( true,
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225 | if( to_submit > 0 ) {
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226 | io.submit_q.submit_avg.rdy += to_submit;
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227 | io.submit_q.submit_avg.csm += ret;
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228 | io.submit_q.submit_avg.cnt += 1;
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229 | }
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230 | )
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231 | }
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232 |
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233 | __atomic_thread_fence( __ATOMIC_SEQ_CST );
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234 |
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235 | // Release the consumed SQEs
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236 | __release_consumed_submission( ring );
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237 |
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238 | // Drain the queue
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239 | unsigned head = *ring.completion_q.head;
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240 | unsigned tail = *ring.completion_q.tail;
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241 | const __u32 mask = *ring.completion_q.mask;
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242 |
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243 | // Nothing was new return 0
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244 | if (head == tail) {
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245 | return [0, to_submit > 0];
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246 | }
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247 |
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248 | __u32 count = tail - head;
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249 | /* paranoid */ verify( count != 0 );
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250 | for(i; count) {
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251 | unsigned idx = (head + i) & mask;
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252 | volatile struct io_uring_cqe & cqe = ring.completion_q.cqes[idx];
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253 |
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254 | /* paranoid */ verify(&cqe);
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255 |
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256 | process( cqe );
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257 | }
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258 |
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259 | // Mark to the kernel that the cqe has been seen
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260 | // Ensure that the kernel only sees the new value of the head index after the CQEs have been read.
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261 | __atomic_fetch_add( ring.completion_q.head, count, __ATOMIC_SEQ_CST );
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262 |
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263 | return [count, count > 0 || to_submit > 0];
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264 | }
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265 |
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266 | void main( $io_ctx_thread & this ) {
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267 | __ioctx_register( this );
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268 |
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269 | __cfadbg_print_safe(io_core, "Kernel I/O : IO poller %d (%p) ready\n", this.ring->fd, &this);
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270 |
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271 | const int reset_cnt = 5;
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272 | int reset = reset_cnt;
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273 | // Then loop until we need to start
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274 | LOOP:
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275 | while(!__atomic_load_n(&this.done, __ATOMIC_SEQ_CST)) {
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276 | // Drain the io
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277 | int count;
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278 | bool again;
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279 | disable_interrupts();
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280 | [count, again] = __drain_io( *this.ring );
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281 |
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282 | if(!again) reset--;
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283 |
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284 | // Update statistics
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285 | __STATS__( true,
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286 | io.complete_q.completed_avg.val += count;
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287 | io.complete_q.completed_avg.cnt += 1;
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288 | )
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289 | enable_interrupts( __cfaabi_dbg_ctx );
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290 |
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291 | // If we got something, just yield and check again
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292 | if(reset > 1) {
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293 | yield();
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294 | continue LOOP;
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295 | }
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296 |
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297 | // We alread failed to find completed entries a few time.
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298 | if(reset == 1) {
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299 | // Rearm the context so it can block
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300 | // but don't block right away
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301 | // we need to retry one last time in case
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302 | // something completed *just now*
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303 | __ioctx_prepare_block( this );
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304 | continue LOOP;
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305 | }
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306 |
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307 | __STATS__( false,
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308 | io.complete_q.blocks += 1;
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309 | )
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310 | __cfadbg_print_safe(io_core, "Kernel I/O : Parking io poller %d (%p)\n", this.ring->fd, &this);
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311 |
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312 | // block this thread
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313 | wait( this.sem );
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314 |
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315 | // restore counter
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316 | reset = reset_cnt;
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317 | }
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318 |
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319 | __cfadbg_print_safe(io_core, "Kernel I/O : Fast poller %d (%p) stopping\n", this.ring->fd, &this);
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320 | }
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321 |
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322 | //=============================================================================================
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323 | // I/O Submissions
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324 | //=============================================================================================
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325 |
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326 | // Submition steps :
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327 | // 1 - Allocate a queue entry. The ring already has memory for all entries but only the ones
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328 | // listed in sq.array are visible by the kernel. For those not listed, the kernel does not
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329 | // offer any assurance that an entry is not being filled by multiple flags. Therefore, we
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330 | // need to write an allocator that allows allocating concurrently.
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331 | //
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332 | // 2 - Actually fill the submit entry, this is the only simple and straightforward step.
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333 | //
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334 | // 3 - Append the entry index to the array and adjust the tail accordingly. This operation
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335 | // needs to arrive to two concensus at the same time:
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336 | // A - The order in which entries are listed in the array: no two threads must pick the
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337 | // same index for their entries
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338 | // B - When can the tail be update for the kernel. EVERY entries in the array between
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339 | // head and tail must be fully filled and shouldn't ever be touched again.
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340 | //
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341 |
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342 | // Allocate an submit queue entry.
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343 | // The kernel cannot see these entries until they are submitted, but other threads must be
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344 | // able to see which entries can be used and which are already un used by an other thread
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345 | // for convenience, return both the index and the pointer to the sqe
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346 | // sqe == &sqes[idx]
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347 | [* volatile struct io_uring_sqe, __u32] __submit_alloc( struct __io_data & ring, __u64 data ) {
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348 | /* paranoid */ verify( data != 0 );
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349 |
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350 | // Prepare the data we need
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351 | __attribute((unused)) int len = 0;
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352 | __attribute((unused)) int block = 0;
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353 | __u32 cnt = *ring.submit_q.num;
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354 | __u32 mask = *ring.submit_q.mask;
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355 |
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356 | __u32 off = thread_rand();
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357 |
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358 | // Loop around looking for an available spot
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359 | for() {
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360 | // Look through the list starting at some offset
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361 | for(i; cnt) {
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362 | __u64 expected = 3;
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363 | __u32 idx = (i + off) & mask; // Get an index from a random
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364 | volatile struct io_uring_sqe * sqe = &ring.submit_q.sqes[idx];
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365 | volatile __u64 * udata = &sqe->user_data;
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366 |
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367 | // Allocate the entry by CASing the user_data field from 0 to the future address
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368 | if( *udata == expected &&
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369 | __atomic_compare_exchange_n( udata, &expected, data, true, __ATOMIC_SEQ_CST, __ATOMIC_RELAXED ) )
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370 | {
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371 | // update statistics
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372 | __STATS__( false,
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373 | io.submit_q.alloc_avg.val += len;
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374 | io.submit_q.alloc_avg.block += block;
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375 | io.submit_q.alloc_avg.cnt += 1;
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376 | )
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377 |
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378 | // debug log
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379 | __cfadbg_print_safe( io, "Kernel I/O : allocated [%p, %u] for %p (%p)\n", sqe, idx, active_thread(), (void*)data );
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380 |
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381 | // Success return the data
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382 | return [sqe, idx];
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383 | }
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384 | verify(expected != data);
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385 |
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386 | // This one was used
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387 | len ++;
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388 | }
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389 |
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390 | block++;
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391 |
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392 | abort( "Kernel I/O : all submit queue entries used, yielding\n" );
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393 |
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394 | yield();
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395 | }
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396 | }
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397 |
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398 | static inline __u32 __submit_to_ready_array( struct __io_data & ring, __u32 idx, const __u32 mask ) {
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399 | /* paranoid */ verify( idx <= mask );
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400 | /* paranoid */ verify( idx != -1ul32 );
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401 |
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402 | // We need to find a spot in the ready array
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403 | __attribute((unused)) int len = 0;
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404 | __attribute((unused)) int block = 0;
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405 | __u32 ready_mask = ring.submit_q.ready_cnt - 1;
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406 |
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407 | __u32 off = thread_rand();
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408 |
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409 | __u32 picked;
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410 | LOOKING: for() {
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411 | for(i; ring.submit_q.ready_cnt) {
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412 | picked = (i + off) & ready_mask;
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413 | __u32 expected = -1ul32;
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414 | if( __atomic_compare_exchange_n( &ring.submit_q.ready[picked], &expected, idx, true, __ATOMIC_SEQ_CST, __ATOMIC_RELAXED ) ) {
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415 | break LOOKING;
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416 | }
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417 | verify(expected != idx);
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418 |
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419 | len ++;
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420 | }
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421 |
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422 | block++;
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423 |
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424 | __u32 released = __release_consumed_submission( ring );
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425 | if( released == 0 ) {
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426 | yield();
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427 | }
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428 | }
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429 |
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430 | // update statistics
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431 | __STATS__( false,
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432 | io.submit_q.look_avg.val += len;
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433 | io.submit_q.look_avg.block += block;
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434 | io.submit_q.look_avg.cnt += 1;
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435 | )
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436 |
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437 | return picked;
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438 | }
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439 |
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440 | void __submit( struct io_context * ctx, __u32 idx ) __attribute__((nonnull (1))) {
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441 | __io_data & ring = *ctx->thrd.ring;
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442 |
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443 | {
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444 | __attribute__((unused)) volatile struct io_uring_sqe * sqe = &ring.submit_q.sqes[idx];
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445 | __cfadbg_print_safe( io,
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446 | "Kernel I/O : submitting %u (%p) for %p\n"
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447 | " data: %p\n"
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448 | " opcode: %s\n"
|
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449 | " fd: %d\n"
|
---|
450 | " flags: %d\n"
|
---|
451 | " prio: %d\n"
|
---|
452 | " off: %p\n"
|
---|
453 | " addr: %p\n"
|
---|
454 | " len: %d\n"
|
---|
455 | " other flags: %d\n"
|
---|
456 | " splice fd: %d\n"
|
---|
457 | " pad[0]: %llu\n"
|
---|
458 | " pad[1]: %llu\n"
|
---|
459 | " pad[2]: %llu\n",
|
---|
460 | idx, sqe,
|
---|
461 | active_thread(),
|
---|
462 | (void*)sqe->user_data,
|
---|
463 | opcodes[sqe->opcode],
|
---|
464 | sqe->fd,
|
---|
465 | sqe->flags,
|
---|
466 | sqe->ioprio,
|
---|
467 | sqe->off,
|
---|
468 | sqe->addr,
|
---|
469 | sqe->len,
|
---|
470 | sqe->accept_flags,
|
---|
471 | sqe->splice_fd_in,
|
---|
472 | sqe->__pad2[0],
|
---|
473 | sqe->__pad2[1],
|
---|
474 | sqe->__pad2[2]
|
---|
475 | );
|
---|
476 | }
|
---|
477 |
|
---|
478 |
|
---|
479 | // Get now the data we definetely need
|
---|
480 | volatile __u32 * const tail = ring.submit_q.tail;
|
---|
481 | const __u32 mask = *ring.submit_q.mask;
|
---|
482 |
|
---|
483 | // There are 2 submission schemes, check which one we are using
|
---|
484 | if( ring.poller_submits ) {
|
---|
485 | // If the poller thread submits, then we just need to add this to the ready array
|
---|
486 | __submit_to_ready_array( ring, idx, mask );
|
---|
487 |
|
---|
488 | post( ctx->thrd.sem );
|
---|
489 |
|
---|
490 | __cfadbg_print_safe( io, "Kernel I/O : Added %u to ready for %p\n", idx, active_thread() );
|
---|
491 | }
|
---|
492 | else if( ring.eager_submits ) {
|
---|
493 | __u32 picked = __submit_to_ready_array( ring, idx, mask );
|
---|
494 |
|
---|
495 | #if defined(LEADER_LOCK)
|
---|
496 | if( !try_lock(ring.submit_q.submit_lock) ) {
|
---|
497 | __STATS__( false,
|
---|
498 | io.submit_q.helped += 1;
|
---|
499 | )
|
---|
500 | return;
|
---|
501 | }
|
---|
502 | /* paranoid */ verify( ! __preemption_enabled() );
|
---|
503 | __STATS__( true,
|
---|
504 | io.submit_q.leader += 1;
|
---|
505 | )
|
---|
506 | #else
|
---|
507 | for() {
|
---|
508 | yield();
|
---|
509 |
|
---|
510 | if( try_lock(ring.submit_q.submit_lock __cfaabi_dbg_ctx2) ) {
|
---|
511 | __STATS__( false,
|
---|
512 | io.submit_q.leader += 1;
|
---|
513 | )
|
---|
514 | break;
|
---|
515 | }
|
---|
516 |
|
---|
517 | // If some one else collected our index, we are done
|
---|
518 | #warning ABA problem
|
---|
519 | if( ring.submit_q.ready[picked] != idx ) {
|
---|
520 | __STATS__( false,
|
---|
521 | io.submit_q.helped += 1;
|
---|
522 | )
|
---|
523 | return;
|
---|
524 | }
|
---|
525 |
|
---|
526 | __STATS__( false,
|
---|
527 | io.submit_q.busy += 1;
|
---|
528 | )
|
---|
529 | }
|
---|
530 | #endif
|
---|
531 |
|
---|
532 | // We got the lock
|
---|
533 | // Collect the submissions
|
---|
534 | unsigned to_submit = __collect_submitions( ring );
|
---|
535 |
|
---|
536 | // Actually submit
|
---|
537 | int ret = __io_uring_enter( ring, to_submit, false );
|
---|
538 |
|
---|
539 | #if defined(LEADER_LOCK)
|
---|
540 | /* paranoid */ verify( ! __preemption_enabled() );
|
---|
541 | next(ring.submit_q.submit_lock);
|
---|
542 | #else
|
---|
543 | unlock(ring.submit_q.submit_lock);
|
---|
544 | #endif
|
---|
545 | if( ret < 0 ) {
|
---|
546 | return;
|
---|
547 | }
|
---|
548 |
|
---|
549 | // Release the consumed SQEs
|
---|
550 | __release_consumed_submission( ring );
|
---|
551 |
|
---|
552 | // update statistics
|
---|
553 | __STATS__( false,
|
---|
554 | io.submit_q.submit_avg.rdy += to_submit;
|
---|
555 | io.submit_q.submit_avg.csm += ret;
|
---|
556 | io.submit_q.submit_avg.cnt += 1;
|
---|
557 | )
|
---|
558 |
|
---|
559 | __cfadbg_print_safe( io, "Kernel I/O : submitted %u (among %u) for %p\n", idx, ret, active_thread() );
|
---|
560 | }
|
---|
561 | else
|
---|
562 | {
|
---|
563 | // get mutual exclusion
|
---|
564 | #if defined(LEADER_LOCK)
|
---|
565 | while(!try_lock(ring.submit_q.submit_lock));
|
---|
566 | #else
|
---|
567 | lock(ring.submit_q.submit_lock __cfaabi_dbg_ctx2);
|
---|
568 | #endif
|
---|
569 |
|
---|
570 | /* paranoid */ verifyf( ring.submit_q.sqes[ idx ].user_data != 3ul64,
|
---|
571 | /* paranoid */ "index %u already reclaimed\n"
|
---|
572 | /* paranoid */ "head %u, prev %u, tail %u\n"
|
---|
573 | /* paranoid */ "[-0: %u,-1: %u,-2: %u,-3: %u]\n",
|
---|
574 | /* paranoid */ idx,
|
---|
575 | /* paranoid */ *ring.submit_q.head, ring.submit_q.prev_head, *tail
|
---|
576 | /* paranoid */ ,ring.submit_q.array[ ((*ring.submit_q.head) - 0) & (*ring.submit_q.mask) ]
|
---|
577 | /* paranoid */ ,ring.submit_q.array[ ((*ring.submit_q.head) - 1) & (*ring.submit_q.mask) ]
|
---|
578 | /* paranoid */ ,ring.submit_q.array[ ((*ring.submit_q.head) - 2) & (*ring.submit_q.mask) ]
|
---|
579 | /* paranoid */ ,ring.submit_q.array[ ((*ring.submit_q.head) - 3) & (*ring.submit_q.mask) ]
|
---|
580 | /* paranoid */ );
|
---|
581 |
|
---|
582 | // Append to the list of ready entries
|
---|
583 |
|
---|
584 | /* paranoid */ verify( idx <= mask );
|
---|
585 | ring.submit_q.array[ (*tail) & mask ] = idx;
|
---|
586 | __atomic_fetch_add(tail, 1ul32, __ATOMIC_SEQ_CST);
|
---|
587 |
|
---|
588 | // Submit however, many entries need to be submitted
|
---|
589 | int ret = __io_uring_enter( ring, 1, false );
|
---|
590 | if( ret < 0 ) {
|
---|
591 | switch((int)errno) {
|
---|
592 | default:
|
---|
593 | abort( "KERNEL ERROR: IO_URING SUBMIT - %s\n", strerror(errno) );
|
---|
594 | }
|
---|
595 | }
|
---|
596 |
|
---|
597 | /* paranoid */ verify(ret == 1);
|
---|
598 |
|
---|
599 | // update statistics
|
---|
600 | __STATS__( false,
|
---|
601 | io.submit_q.submit_avg.csm += 1;
|
---|
602 | io.submit_q.submit_avg.cnt += 1;
|
---|
603 | )
|
---|
604 |
|
---|
605 | {
|
---|
606 | __attribute__((unused)) volatile __u32 * const head = ring.submit_q.head;
|
---|
607 | __attribute__((unused)) __u32 last_idx = ring.submit_q.array[ ((*head) - 1) & mask ];
|
---|
608 | __attribute__((unused)) volatile struct io_uring_sqe * sqe = &ring.submit_q.sqes[last_idx];
|
---|
609 |
|
---|
610 | __cfadbg_print_safe( io,
|
---|
611 | "Kernel I/O : last submitted is %u (%p)\n"
|
---|
612 | " data: %p\n"
|
---|
613 | " opcode: %s\n"
|
---|
614 | " fd: %d\n"
|
---|
615 | " flags: %d\n"
|
---|
616 | " prio: %d\n"
|
---|
617 | " off: %p\n"
|
---|
618 | " addr: %p\n"
|
---|
619 | " len: %d\n"
|
---|
620 | " other flags: %d\n"
|
---|
621 | " splice fd: %d\n"
|
---|
622 | " pad[0]: %llu\n"
|
---|
623 | " pad[1]: %llu\n"
|
---|
624 | " pad[2]: %llu\n",
|
---|
625 | last_idx, sqe,
|
---|
626 | (void*)sqe->user_data,
|
---|
627 | opcodes[sqe->opcode],
|
---|
628 | sqe->fd,
|
---|
629 | sqe->flags,
|
---|
630 | sqe->ioprio,
|
---|
631 | sqe->off,
|
---|
632 | sqe->addr,
|
---|
633 | sqe->len,
|
---|
634 | sqe->accept_flags,
|
---|
635 | sqe->splice_fd_in,
|
---|
636 | sqe->__pad2[0],
|
---|
637 | sqe->__pad2[1],
|
---|
638 | sqe->__pad2[2]
|
---|
639 | );
|
---|
640 | }
|
---|
641 |
|
---|
642 | __atomic_thread_fence( __ATOMIC_SEQ_CST );
|
---|
643 | // Release the consumed SQEs
|
---|
644 | __release_consumed_submission( ring );
|
---|
645 | // ring.submit_q.sqes[idx].user_data = 3ul64;
|
---|
646 |
|
---|
647 | #if defined(LEADER_LOCK)
|
---|
648 | next(ring.submit_q.submit_lock);
|
---|
649 | #else
|
---|
650 | unlock(ring.submit_q.submit_lock);
|
---|
651 | #endif
|
---|
652 |
|
---|
653 | __cfadbg_print_safe( io, "Kernel I/O : submitted %u for %p\n", idx, active_thread() );
|
---|
654 | }
|
---|
655 | }
|
---|
656 |
|
---|
657 | // #define PARTIAL_SUBMIT 32
|
---|
658 |
|
---|
659 | // go through the list of submissions in the ready array and moved them into
|
---|
660 | // the ring's submit queue
|
---|
661 | static unsigned __collect_submitions( struct __io_data & ring ) {
|
---|
662 | /* paranoid */ verify( ring.submit_q.ready != 0p );
|
---|
663 | /* paranoid */ verify( ring.submit_q.ready_cnt > 0 );
|
---|
664 |
|
---|
665 | unsigned to_submit = 0;
|
---|
666 | __u32 tail = *ring.submit_q.tail;
|
---|
667 | const __u32 mask = *ring.submit_q.mask;
|
---|
668 | #if defined(PARTIAL_SUBMIT)
|
---|
669 | #if defined(LEADER_LOCK)
|
---|
670 | #error PARTIAL_SUBMIT and LEADER_LOCK cannot co-exist
|
---|
671 | #endif
|
---|
672 | const __u32 cnt = ring.submit_q.ready_cnt > PARTIAL_SUBMIT ? PARTIAL_SUBMIT : ring.submit_q.ready_cnt;
|
---|
673 | const __u32 offset = ring.submit_q.prev_ready;
|
---|
674 | ring.submit_q.prev_ready += cnt;
|
---|
675 | #else
|
---|
676 | const __u32 cnt = ring.submit_q.ready_cnt;
|
---|
677 | const __u32 offset = 0;
|
---|
678 | #endif
|
---|
679 |
|
---|
680 | // Go through the list of ready submissions
|
---|
681 | for( c; cnt ) {
|
---|
682 | __u32 i = (offset + c) % ring.submit_q.ready_cnt;
|
---|
683 |
|
---|
684 | // replace any submission with the sentinel, to consume it.
|
---|
685 | __u32 idx = __atomic_exchange_n( &ring.submit_q.ready[i], -1ul32, __ATOMIC_RELAXED);
|
---|
686 |
|
---|
687 | // If it was already the sentinel, then we are done
|
---|
688 | if( idx == -1ul32 ) continue;
|
---|
689 |
|
---|
690 | // If we got a real submission, append it to the list
|
---|
691 | ring.submit_q.array[ (tail + to_submit) & mask ] = idx & mask;
|
---|
692 | to_submit++;
|
---|
693 | }
|
---|
694 |
|
---|
695 | // Increment the tail based on how many we are ready to submit
|
---|
696 | __atomic_fetch_add(ring.submit_q.tail, to_submit, __ATOMIC_SEQ_CST);
|
---|
697 |
|
---|
698 | return to_submit;
|
---|
699 | }
|
---|
700 |
|
---|
701 | // Go through the ring's submit queue and release everything that has already been consumed
|
---|
702 | // by io_uring
|
---|
703 | static __u32 __release_consumed_submission( struct __io_data & ring ) {
|
---|
704 | const __u32 smask = *ring.submit_q.mask;
|
---|
705 |
|
---|
706 | // We need to get the lock to copy the old head and new head
|
---|
707 | if( !try_lock(ring.submit_q.release_lock __cfaabi_dbg_ctx2) ) return 0;
|
---|
708 | __attribute__((unused))
|
---|
709 | __u32 ctail = *ring.submit_q.tail; // get the current tail of the queue
|
---|
710 | __u32 chead = *ring.submit_q.head; // get the current head of the queue
|
---|
711 | __u32 phead = ring.submit_q.prev_head; // get the head the last time we were here
|
---|
712 | ring.submit_q.prev_head = chead; // note up to were we processed
|
---|
713 | unlock(ring.submit_q.release_lock);
|
---|
714 |
|
---|
715 | // the 3 fields are organized like this diagram
|
---|
716 | // except it's are ring
|
---|
717 | // ---+--------+--------+----
|
---|
718 | // ---+--------+--------+----
|
---|
719 | // ^ ^ ^
|
---|
720 | // phead chead ctail
|
---|
721 |
|
---|
722 | // make sure ctail doesn't wrap around and reach phead
|
---|
723 | /* paranoid */ verify(
|
---|
724 | (ctail >= chead && chead >= phead)
|
---|
725 | || (chead >= phead && phead >= ctail)
|
---|
726 | || (phead >= ctail && ctail >= chead)
|
---|
727 | );
|
---|
728 |
|
---|
729 | // find the range we need to clear
|
---|
730 | __u32 count = chead - phead;
|
---|
731 |
|
---|
732 | // We acquired an previous-head/current-head range
|
---|
733 | // go through the range and release the sqes
|
---|
734 | for( i; count ) {
|
---|
735 | __u32 idx = ring.submit_q.array[ (phead + i) & smask ];
|
---|
736 |
|
---|
737 | /* paranoid */ verify( 0 != ring.submit_q.sqes[ idx ].user_data );
|
---|
738 | __clean( &ring.submit_q.sqes[ idx ] );
|
---|
739 | }
|
---|
740 | return count;
|
---|
741 | }
|
---|
742 |
|
---|
743 | void __sqe_clean( volatile struct io_uring_sqe * sqe ) {
|
---|
744 | __clean( sqe );
|
---|
745 | }
|
---|
746 |
|
---|
747 | static inline void __clean( volatile struct io_uring_sqe * sqe ) {
|
---|
748 | // If we are in debug mode, thrash the fields to make sure we catch reclamation errors
|
---|
749 | __cfaabi_dbg_debug_do(
|
---|
750 | memset(sqe, 0xde, sizeof(*sqe));
|
---|
751 | sqe->opcode = (sizeof(opcodes) / sizeof(const char *)) - 1;
|
---|
752 | );
|
---|
753 |
|
---|
754 | // Mark the entry as unused
|
---|
755 | __atomic_store_n(&sqe->user_data, 3ul64, __ATOMIC_SEQ_CST);
|
---|
756 | }
|
---|
757 | #endif
|
---|