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209 lines
5.5 KiB
C
209 lines
5.5 KiB
C
/* ==== machdep.c ============================================================
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* Copyright (c) 1993 Chris Provenzano, proven@athena.mit.edu
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*
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* Description : Machine dependent functions for decstation with r2000/r3000
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*
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* 1.00 93/07/21 proven
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* -Started coding this file.
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*/
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#ifndef lint
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static const char rcsid[] = "$Id$";
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#endif
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#include <pthread.h>
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#include <stdlib.h>
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#include <errno.h>
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/*
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* The r2000/r3000 processors do not have a test and set instruction, so
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* the semaphore TEST_AND_SET macro is linked very closely to the interrupt
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* handelling of the pthreads package.
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*/
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/* ==========================================================================
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* semaphore_test_and_set()
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*
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* SEMAPHORE_TEST_AND_SET prevents interrupts, tests the lock and then
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* turns interrupts back on, checking to see if any interrupts have occured
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* between the prevent and resume.
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*/
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int semaphore_test_and_set(semaphore *lock)
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{
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int rval;
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/* None of this should be necessary
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sig_prevent();
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if (!(rval = (*lock))) {
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*lock = SEMAPHORE_SET;
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}
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sig_check_and_resume();
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return(rval);
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*/
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}
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/* ==========================================================================
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* machdep_save_state()
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*/
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int machdep_save_state(void)
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{
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return(setjmp(pthread_run->machdep_data.machdep_state));
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}
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/* ==========================================================================
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* machdep_save_float_state()
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*/
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void machdep_save_float_state(struct pthread * pthread)
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{
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return;
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}
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/* ==========================================================================
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* fake_longjmp()
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*/
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void fake_longjmp(jmp_buf env)
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{
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asm("li $5,1; sw $5, 20($4); li $2,103; syscall");
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}
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/* ==========================================================================
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* machdep_restore_state()
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*
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* When I redo machdep_save_state, I'll put the asm in machdep_save_state()
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* and machdep_restore_state() and I won't have to do an additional function
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* call.
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*/
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void machdep_restore_state(void)
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{
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fake_longjmp(pthread_run->machdep_data.machdep_state);
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/* longjmp(pthread_run->machdep_data.machdep_state, 1); */
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}
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/* ==========================================================================
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* machdep_restore_float_state()
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*/
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void machdep_restore_float_state(void)
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{
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return;
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}
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/* ==========================================================================
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* machdep_set_thread_timer()
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*/
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void machdep_set_thread_timer(struct machdep_pthread *machdep_pthread)
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{
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if (setitimer(ITIMER_VIRTUAL, &(machdep_pthread->machdep_timer), NULL)) {
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PANIC();
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}
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}
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/* ==========================================================================
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* machdep_unset_thread_timer()
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*/
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void machdep_unset_thread_timer(struct machdep_pthread *machdep_pthread)
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{
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struct itimerval zeroval = { { 0, 0 }, { 0, 0} };
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if (setitimer(ITIMER_VIRTUAL, &zeroval, NULL)) {
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PANIC();
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}
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}
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/* ==========================================================================
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* machdep_pthread_cleanup()
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*/
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void *machdep_pthread_cleanup(struct machdep_pthread *machdep_pthread)
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{
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return(machdep_pthread->machdep_stack);
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}
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/* ==========================================================================
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* machdep_pthread_start()
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*/
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void machdep_pthread_start(void)
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{
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context_switch_done();
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pthread_sched_resume();
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/* Run current threads start routine with argument */
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pthread_exit(pthread_run->machdep_data.start_routine
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(pthread_run->machdep_data.start_argument));
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/* should never reach here */
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PANIC();
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}
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/* ==========================================================================
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* __machdep_stack_free()
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*/
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void __machdep_stack_free(void * stack)
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{
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free(stack);
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}
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/* ==========================================================================
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* __machdep_stack_alloc()
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*/
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void * __machdep_stack_alloc(size_t size)
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{
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void * stack;
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return(malloc(size));
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}
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/* ==========================================================================
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* __machdep_pthread_create()
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*/
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void __machdep_pthread_create(struct machdep_pthread *machdep_pthread,
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void *(* start_routine)(), void *start_argument,
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long stack_size, long nsec, long flags)
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{
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machdep_pthread->start_routine = start_routine;
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machdep_pthread->start_argument = start_argument;
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machdep_pthread->machdep_timer.it_value.tv_sec = 0;
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machdep_pthread->machdep_timer.it_interval.tv_sec = 0;
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machdep_pthread->machdep_timer.it_interval.tv_usec = 0;
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machdep_pthread->machdep_timer.it_value.tv_usec = nsec / 1000;
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setjmp(machdep_pthread->machdep_state);
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/*
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* Set up new stact frame so that it looks like it
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* returned from a longjmp() to the beginning of
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* machdep_pthread_start().
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*/
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machdep_pthread->machdep_state[JB_RA] = (int)machdep_pthread_start;
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machdep_pthread->machdep_state[JB_PC] = (int)machdep_pthread_start;
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/* Stack starts high and builds down. */
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machdep_pthread->machdep_state[JB_SP] =
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(int)machdep_pthread->machdep_stack + stack_size;
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/* This is the real global pointer */
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/* machdep_pthread->machdep_state[JB_GP] = 0; */
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}
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/* ==========================================================================
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* machdep_sys_sigprocmask()
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* This isn't a real implementation; we can make the assumption that the
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* pthreads library is not using oset, and that it is always blocking or
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* unblocking all signals at once.
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*/
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int machdep_sys_sigprocmask(int how, const sigset_t *set, sigset_t *oset)
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{
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switch(how) {
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case SIG_BLOCK:
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sigblock(*set);
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break;
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case SIG_UNBLOCK:
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sigsetmask(~*set);
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break;
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case SIG_SETMASK:
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sigsetmask(*set);
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break;
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default:
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return -EINVAL;
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}
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return(OK);
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}
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