source: trunk/user/init/init.c@ 527

Last change on this file since 527 was 475, checked in by viala@…, 8 years ago

[userland] Add void type to function prototypes with no parameter

File size: 6.5 KB
Line 
1///////////////////////////////////////////////////////////////////////////////////////
2// File : init.c
3// Date : January 2018
4// Author : Alain Greiner
5///////////////////////////////////////////////////////////////////////////////////////
6// This single thread application implement the "init" process for ALMOS-MKH.
7// It uses the fork/exec syscalls to create N KSH child processes
8// (one child process per user terminal).
9// Then calls the wait() function to block, and reactivate any child KSH process
10// that has been deleted, using a new fork/exec.
11// It includes the hard_config.h file to get th NB_TXT_CHANNELS parameter.
12///////////////////////////////////////////////////////////////////////////////////////
13
14#include <hard_config.h>
15#include <unistd.h>
16#include <stdlib.h>
17#include <stdio.h>
18#include <pthread.h>
19#include <almosmkh.h>
20#include <sys/wait.h>
21
22#define DEBUG_PROCESS_INIT 0
23
24// TODO make the cxy computation portable
25// and avoid this TSAR specific define [AG]
26
27#define CXY_FROM_XY( x , y ) ((x<<4) + y)
28
29// TODO improve the get_config() syscall to return nb_txt_channels
30// and avoid the hard_config include [AG]
31
32//////////
33int main( void )
34{
35 int i;
36 int ret_fork; // fork return value
37 int ret_exec; // exec return value
38 int rcv_pid; // pid received from the wait syscall
39 int status; // used by the wait syscall
40 char string[64]; // log messages on kernel TXT0
41
42 // check number of TXT channels
43 if( NB_TXT_CHANNELS < 2 )
44 {
45 printf("\n[ERROR] in init process : number of TXT channels must be larger than 1\n");
46 exit( EXIT_FAILURE );
47 }
48
49 // create the KSH processes (one per user terminal)
50 for( i = 1 ; i < NB_TXT_CHANNELS ; i++ )
51 {
52
53#if DEBUG_PROCESS_INIT
54snprintf( string , 64 , "[INIT] start child[%d] creation" , i );
55display_string( string );
56#endif
57
58 // INIT process fork process CHILD[i]
59 ret_fork = fork();
60
61 if( ret_fork < 0 ) // error in fork
62 {
63 // INIT display error message
64 snprintf( string , 64 , "[INIT ERROR] cannot fork child[%d] => suicide" , i );
65 display_string( string );
66
67 // INIT suicide
68 exit( 0 );
69 }
70 else if( ret_fork == 0 ) // we are in CHILD[i] process
71 {
72 // CHILD[i] process exec process KSH[i]
73 ret_exec = execve( "/bin/user/ksh.elf" , NULL , NULL );
74
75 if ( ret_exec ) // error in exec
76 {
77 // CHILD[i] display error message
78 snprintf( string , 64 ,
79 "[INIT ERROR] CHILD[%d] cannot exec KSH / ret_exec = %d" , i , ret_exec );
80 display_string( string );
81 }
82 }
83 else // we are in INIT process
84 {
85 // INIT display CHILD[i] process PID
86 snprintf( string , 64 , "[INIT] created KSH[%d] / pid = %x", i , ret_fork );
87 display_string( string );
88 }
89 }
90
91#if DEBUG_PROCESS_INIT
92unsigned int x_size; // number of clusters in a row
93unsigned int y_size; // number of clusters in a column
94unsigned int ncores; // number of cores per cluster
95unsigned int x; // cluster x coordinate
96unsigned int y; // cluster y coordinate
97unsigned int cxy; // cluster identifier
98unsigned int lid; // core local index
99
100// get hardware config
101get_config( &x_size , &y_size , &ncores );
102
103// INIT displays processes and threads in all clusters
104for( x = 0 ; x < x_size ; x++ )
105{
106 for( y = 0 ; y < y_size ; y++ )
107 {
108 cxy = CXY_FROM_XY( x , y );
109 display_cluster_processes( cxy );
110 for( lid = 0 ; lid < ncores ; lid++ )
111 {
112 display_sched( cxy , lid );
113 }
114 }
115}
116#endif
117
118 // This loop detects the termination of the KSH[i] processes,
119 // and recreate a new KSH[i] process when required.
120 while( 1 )
121 {
122 // block on child processes termination
123 rcv_pid = wait( &status );
124
125 if( WIFSTOPPED( status ) ) // stopped => unblock it
126 {
127 // display string to report unexpected KSH process block
128 snprintf( string , 64 , "[INIT] KSH process %x stopped => unblock it" , rcv_pid );
129 display_string( string );
130
131 // TODO : unblock KSH [AG]
132
133 } // end KSH stopped handling
134
135 if( WIFSIGNALED( status ) || WIFEXITED( status ) ) // killed => recreate it
136 {
137 // display string to report KSH process termination
138 snprintf( string , 64 , "[INIT] KSH process %x terminated => recreate", rcv_pid );
139 display_string( string );
140
141 // INIT process fork a new CHILD process
142 ret_fork = fork();
143
144 if( ret_fork < 0 ) // error in fork
145 {
146 // INIT display error message
147 snprintf( string , 64 , "[INIT ERROR] cannot fork child => suicide");
148 display_string( string );
149
150 // INIT suicide
151 exit( 0 );
152 }
153 else if( ret_fork == 0 ) // we are in CHILD process
154 {
155 // CHILD process exec process KSH
156 ret_exec = execve( "/bin/user/ksh.elf" , NULL , NULL );
157
158 if ( ret_exec ) // error in exec
159 {
160 // CHILD display error message on TXT0 terminal
161 snprintf( string , 64 , "[INIT ERROR] CHILD cannot exec KSH" );
162 display_string( string );
163 }
164 }
165 else // we are in INIT process
166 {
167 // INIT display new KSH process PID
168 snprintf( string , 64 , "[INIT] re-created KSH / pid = %x", ret_fork );
169 display_string( string );
170 }
171 } // end KSH kill handling
172
173#if DEBUG_PROCESS_INIT
174
175 // INIT displays processes and threads in all clusters
176 for( x = 0 ; x < x_size ; x++ )
177 {
178 for( y = 0 ; y < y_size ; y++ )
179 {
180 cxy = CXY_FROM_XY( x , y );
181 display_cluster_processes( cxy );
182 for( lid = 0 ; lid < ncores ; lid++ )
183 {
184 display_sched( cxy , lid );
185 }
186 }
187 }
188
189#endif
190
191 } // end while waiting KSH[i] termination
192
193} // end main()
194
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