#include "u.h"
#include "../port/lib.h"
#include "mem.h"
#include "dat.h"
#include "fns.h"
#include "io.h"
#include "init.h"
#include "pool.h"
Conf conf;
FPsave initfp;
void
main(void)
{
conf.nmach = 1;
machinit();
active.machs = 1;
active.exiting = 0;
i8250console();
print("\nPlan 9\n");
// cpuidentify();
// confinit();
// xinit();
trapinit();
print("trapinit done\n");
*(ulong*)-1 = 0;
print("survived!\n");
spllo();
putdec(64);
print("still here\n");
{ void (*f)(void); f = (void (*)(void))0x200; f(); }
for(;;);
// printinit();
// cpuidprint();
// mmuinit();
// procinit0();
// initseg();
// links();
// chandevreset();
// pageinit();
// swapinit();
// userinit();
// schedinit();
}
void
machinit(void)
{
memset(m, 0, sizeof(Mach));
/*
* For polled uart output at boot, need
* a default delay constant. 100000 should
* be enough for a while. Cpuidentify will
* calculate the real value later.
*/
// m->loopconst = 100000;
}
static struct
{
char *name;
char *val;
}
plan9ini[] =
{
{ "console", "0" },
};
char*
getconf(char *name)
{
int i;
for(i = 0; i < nelem(plan9ini); i++)
if(cistrcmp(name, plan9ini[i].name) == 0)
return plan9ini[i].val;
return nil;
}
void
init0(void)
{
// char **p, *q, name[KNAMELEN];
// int n;
print("init0\n");
up->nerrlab = 0;
spllo();
/*
* These are o.k. because rootinit is null.
* Then early kproc's will have a root and dot.
*/
up->slash = namec("#/", Atodir, 0, 0);
cnameclose(up->slash->name);
up->slash->name = newcname("/");
up->dot = cclone(up->slash);
chandevinit();
if(!waserror()){
ksetenv("cputype", "power");
if(cpuserver)
ksetenv("service", "cpu");
else
ksetenv("service", "terminal");
/*
for(p = confenv; *p; p++) {
q = strchr(p[0], '=');
if(q == 0)
continue;
n = q-p[0];
if(n >= KNAMELEN)
n = KNAMELEN-1;
memmove(name, p[0], n);
name[n] = 0;
ksetenv(name, q+1);
}
*/
poperror();
}
kproc("alarm", alarmkproc, 0);
touser((void*)(USTKTOP-8));
}
void
userinit(void)
{
Proc *p;
Segment *s;
KMap *k;
Page *pg;
p = newproc();
p->pgrp = newpgrp();
p->egrp = smalloc(sizeof(Egrp));
p->egrp->ref = 1;
p->fgrp = dupfgrp(nil);
p->rgrp = newrgrp();
p->procmode = 0640;
strcpy(p->text, "*init*");
strcpy(p->user, eve);
p->fpstate = FPinit;
/*
* Kernel Stack
*
* N.B. The -12 for the stack pointer is important.
* 4 bytes for gotolabel's return PC
*/
p->sched.pc = (ulong)init0;
p->sched.sp = (ulong)p->kstack+KSTACK-(1+MAXSYSARG)*BY2WD;
/*
* User Stack
*/
s = newseg(SG_STACK, USTKTOP-USTKSIZE, USTKSIZE/BY2PG);
p->seg[SSEG] = s;
pg = newpage(1, 0, USTKTOP-BY2PG);
segpage(s, pg);
/*
* Text
*/
s = newseg(SG_TEXT, UTZERO, 1);
s->flushme++;
p->seg[TSEG] = s;
pg = newpage(1, 0, UTZERO);
memset(pg->cachectl, PG_TXTFLUSH, sizeof(pg->cachectl));
segpage(s, pg);
k = kmap(s->map[0]->pages[0]);
memmove((ulong*)VA(k), initcode, sizeof initcode);
kunmap(k);
ready(p);
}
void
exit(int ispanic)
{
int ms, once;
lock(&active);
if(ispanic)
active.ispanic = ispanic;
else if(m->machno == 0 && (active.machs & (1<<m->machno)) == 0)
active.ispanic = 0;
once = active.machs & (1<<m->machno);
active.machs &= ~(1<<m->machno);
active.exiting = 1;
unlock(&active);
if(once)
print("cpu%d: exiting\n", m->machno);
spllo();
for(ms = 5*1000; ms > 0; ms -= TK2MS(2)){
delay(TK2MS(2));
if(active.machs == 0 && consactive() == 0)
break;
}
if(active.ispanic && m->machno == 0){
if(cpuserver)
delay(10000);
else
for(;;);
}
else
delay(1000);
for(;;)
;
}
/*
* set up floating point for a new process
*/
void
procsetup(Proc *p)
{
USED(p);
}
/*
* Save the mach dependent part of the process state.
*/
void
procsave(Proc *p)
{
USED(p);
}
void
confinit(void)
{
int nbytes;
ulong pa;
conf.nmach = 1; /* processors */
conf.nproc = 60; /* processes */
// hard wire for now
pa = 0x200000; // leave 2 Meg for kernel
nbytes = 8*1024*1024; // leave room at the top as well
conf.npage0 = nbytes/BY2PG;
conf.base0 = pa;
conf.npage1 = 0;
conf.base1 = pa;
conf.npage = conf.npage0 + conf.npage1;
conf.upages = (conf.npage*60)/100;
conf.ialloc = ((conf.npage-conf.upages)/2)*BY2PG;
/* set up other configuration parameters */
conf.nswap = 0;
conf.nswppo = 0;
conf.nimage = 20;
conf.copymode = 0; /* copy on write */
}
static int
getcfields(char* lp, char** fields, int n, char* sep)
{
int i;
for(i = 0; lp && *lp && i < n; i++){
while(*lp && strchr(sep, *lp) != 0)
*lp++ = 0;
if(*lp == 0)
break;
fields[i] = lp;
while(*lp && strchr(sep, *lp) == 0){
if(*lp == '\\' && *(lp+1) == '\n')
*lp++ = ' ';
lp++;
}
}
return i;
}
int
isaconfig(char *class, int ctlrno, ISAConf *isa)
{
int i;
char cc[KNAMELEN], *p;
sprint(cc, "%s%d", class, ctlrno);
p = getconf(cc);
if(p == 0)
return 0;
isa->nopt = tokenize(p, isa->opt, NISAOPT);
for(i = 0; i < isa->nopt; i++){
p = isa->opt[i];
if(cistrncmp(p, "type=", 5) == 0)
isa->type = p + 5;
else if(cistrncmp(p, "port=", 5) == 0)
isa->port = strtoul(p+5, &p, 0);
else if(cistrncmp(p, "irq=", 4) == 0)
isa->irq = strtoul(p+4, &p, 0);
else if(cistrncmp(p, "dma=", 4) == 0)
isa->dma = strtoul(p+4, &p, 0);
else if(cistrncmp(p, "mem=", 4) == 0)
isa->mem = strtoul(p+4, &p, 0);
else if(cistrncmp(p, "size=", 5) == 0)
isa->size = strtoul(p+5, &p, 0);
else if(cistrncmp(p, "freq=", 5) == 0)
isa->freq = strtoul(p+5, &p, 0);
}
return 1;
}
int
cistrcmp(char *a, char *b)
{
int ac, bc;
for(;;){
ac = *a++;
bc = *b++;
if(ac >= 'A' && ac <= 'Z')
ac = 'a' + (ac - 'A');
if(bc >= 'A' && bc <= 'Z')
bc = 'a' + (bc - 'A');
ac -= bc;
if(ac)
return ac;
if(bc == 0)
break;
}
return 0;
}
int
cistrncmp(char *a, char *b, int n)
{
unsigned ac, bc;
while(n > 0){
ac = *a++;
bc = *b++;
n--;
if(ac >= 'A' && ac <= 'Z')
ac = 'a' + (ac - 'A');
if(bc >= 'A' && bc <= 'Z')
bc = 'a' + (bc - 'A');
ac -= bc;
if(ac)
return ac;
if(bc == 0)
break;
}
return 0;
}