Читаем UNIX полностью

 for (i = 0; builtins[i].name; i++) {

  s = install(builtins[i].name, BLTIN, 0.0);

  s->u.ptr = builtins[i].func;

 }

}

<p>3.6.7 <code>makefile</code></p>

YFLAGS = -d

OBJS = hoc.o code.o init.o math.o symbol.o

hoc5: $(OBJS)

      cc $(OBJS) -lm -o hoc5

hoc.o code.o init.o symbol.o: hoc.h

code.o init.o symbol.o: x.tab.h

x.tab.h: y.tab.h

      -cmp -s x.tab.h y.tab.h || cp y.tab.h x.tab.h

pr: hoc.y hoc.h code.c init.c math.c symbol.c

      @pr $?

      @touch pr

clean:

      rm -f $(OBJS) [xy].tab.[ch]

<p>3.6.8 <code>math.c</code></p>

#include

#include

extern int errno;

double errcheck();

double Log(x)

 double x;

{

 return errcheck(log(x), "log");

}

double Log10(x)

 double x;

{

 return errcheck(log10(x), "log10");

}

double Sqrt(x)

 double x;

{

 return errcheck(sqrt(x), "sqrt");

}

double Exp(x)

 double x;

{

 return errcheck(exp(x), "exp");

}

double Pow(x, y)

 double x, y;

{

 return errcheck(pow(x,y), "exponentiation");

}

double integer(x)

 double x;

{

 return (double)(long)x;

}

double errcheck(d, s) /* check result of library call */

 double d;

 char *s;

{

 if (errno == EDOM) {

  errno = 0;

  execerror(s, "argument out of domain");

 } else if (errno == ERANGE) {

  errno = 0;

  execerror(s, "result out of range");

 }

 return d;

}

<p>3.6.9 <code>symbol.c</code></p>

#include "hoc.h"

#include "y.tab.h"

static Symbol *symlist =0; /* symbol table: linked list */

Symbol *lookup(s) /* find s in symbol table */

 char *s;

{

 Symbol *sp;

 for (sp = symlist; sp != (Symbol*)0; sp = sp->next)

  if (strcmp(sp->name, s) == 0)

   return sp;

 return 0; /* 0 ==> not found */

}

Symbol *install(s, t, d) /* install s in symbol table */

 char *s;

 int t;

 double d;

{

 Symbol *sp;

 char *emalloc();

 sp = (Symbol*)emalloc(sizeof(Symbol));

 sp->name = emalloc(strlen(s)+1); /* +1 for '\0' */

 strcpy(sp->name, s);

 sp->type = t;

 sp->u.val = d;

 sp->next = symlist; /* put at front of list */

 symlist = sp;

 return sp;

}

char *emalloc(n) /* check return from malloc */

 unsigned n;

{

 char *p, *malloc();

 p = malloc(n);

 if (p == 0)

  execerror("out of memory", (char*)0);

 return p;

}

<p>3.7 <code>hoc6</code></p><p>3.7.1 <code>ack</code></p>

func ack() {

 n = n+1

 if ($1 == 0) return ($2+1)

 if ($2 == 0) return (ack($1 - 1, 1))

 return (ack($1 - 1, ack($1, $2 - 1)))

}

n=0

ack(3,3)

print n, "calls\n"

<p>3.7.2 <code>ack1</code></p>

func ack() {

 n = n+1

 if ($1 == 0) return ($2+1)

 if ($2 == 0) return (ack($1 - 1, 1))

 return (ack($1 - 1, ack($1, $2 - 1)))

}

n=0

while (read(x)) {

 read(y)

 print ack(x,y), "\n"

}

print n,"\n"

<p>3.7.3 <code>code.c</code></p>

#include "hoc.h"

#include "y.tab.h"

#include

#define NSTACK 256

static Datum stack[NSTACK]; /* the stack */

static Datum *stackp; /* next free spot on stack */

#define NPROG 2000

Inst prog[NPROG]; /* the machine */

Inst *progp; /* next free spot for code generation */

Inst *pc; /* program counter during execution */

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