expand.h revision 1.1 1 1.1 jtc /*
2 1.1 jtc * Expanding strings
3 1.1 jtc */
4 1.1 jtc /* $Id: expand.h,v 1.1 1996/09/21 23:35:14 jtc Exp $ */
5 1.1 jtc
6 1.1 jtc
7 1.1 jtc #if 0 /* Usage */
8 1.1 jtc XString xs;
9 1.1 jtc char *xp;
10 1.1 jtc
11 1.1 jtc Xinit(xs, xp, 128, ATEMP); /* allocate initial string */
12 1.1 jtc while ((c = generate()) {
13 1.1 jtc Xcheck(xs, xp); /* expand string if neccessary */
14 1.1 jtc Xput(xs, xp, c); /* add character */
15 1.1 jtc }
16 1.1 jtc return Xclose(xs, xp); /* resize string */
17 1.1 jtc /*
18 1.1 jtc * NOTE:
19 1.1 jtc * The Xcheck and Xinit macros have a magic + 8 in the lengths. This is
20 1.1 jtc * so that you can put up to 4 characters in a XString before calling
21 1.1 jtc * Xcheck. (See yylex in lex.c)
22 1.1 jtc */
23 1.1 jtc #endif /* 0 */
24 1.1 jtc
25 1.1 jtc typedef struct XString {
26 1.1 jtc char *end, *beg; /* end, begin of string */
27 1.1 jtc size_t len; /* length */
28 1.1 jtc Area *areap; /* area to allocate/free from */
29 1.1 jtc } XString;
30 1.1 jtc
31 1.1 jtc typedef char * XStringP;
32 1.1 jtc
33 1.1 jtc /* initialize expandable string */
34 1.1 jtc #define Xinit(xs, xp, length, area) do { \
35 1.1 jtc (xs).len = length; \
36 1.1 jtc (xs).areap = (area); \
37 1.1 jtc (xs).beg = alloc((xs).len + 8, (xs).areap); \
38 1.1 jtc (xs).end = (xs).beg + (xs).len; \
39 1.1 jtc xp = (xs).beg; \
40 1.1 jtc } while (0)
41 1.1 jtc
42 1.1 jtc /* stuff char into string */
43 1.1 jtc #define Xput(xs, xp, c) (*xp++ = (c))
44 1.1 jtc
45 1.1 jtc /* check if there are at least n bytes left */
46 1.1 jtc #define XcheckN(xs, xp, n) do { \
47 1.1 jtc int more = ((xp) + (n)) - (xs).end; \
48 1.1 jtc if (more > 0) \
49 1.1 jtc xp = Xcheck_grow_(&xs, xp, more); \
50 1.1 jtc } while (0)
51 1.1 jtc
52 1.1 jtc /* check for overflow, expand string */
53 1.1 jtc #define Xcheck(xs, xp) XcheckN(xs, xp, 1)
54 1.1 jtc
55 1.1 jtc /* free string */
56 1.1 jtc #define Xfree(xs, xp) afree((void*) (xs).beg, (xs).areap)
57 1.1 jtc
58 1.1 jtc /* close, return string */
59 1.1 jtc #define Xclose(xs, xp) (char*) aresize((void*)(xs).beg, \
60 1.1 jtc (size_t)((xp) - (xs).beg), (xs).areap)
61 1.1 jtc /* begin of string */
62 1.1 jtc #define Xstring(xs, xp) ((xs).beg)
63 1.1 jtc
64 1.1 jtc #define Xnleft(xs, xp) ((xs).end - (xp)) /* may be less than 0 */
65 1.1 jtc #define Xlength(xs, xp) ((xp) - (xs).beg)
66 1.1 jtc #define Xsize(xs, xp) ((xs).end - (xs).beg)
67 1.1 jtc #define Xsavepos(xs, xp) ((xp) - (xs).beg)
68 1.1 jtc #define Xrestpos(xs, xp, n) ((xs).beg + (n))
69 1.1 jtc
70 1.1 jtc char * Xcheck_grow_ ARGS((XString *xsp, char *xp, int more));
71 1.1 jtc
72 1.1 jtc /*
73 1.1 jtc * expandable vector of generic pointers
74 1.1 jtc */
75 1.1 jtc
76 1.1 jtc typedef struct XPtrV {
77 1.1 jtc void **cur; /* next avail pointer */
78 1.1 jtc void **beg, **end; /* begin, end of vector */
79 1.1 jtc } XPtrV;
80 1.1 jtc
81 1.1 jtc #define XPinit(x, n) do { \
82 1.1 jtc register void **vp__; \
83 1.1 jtc vp__ = (void**) alloc(sizeofN(void*, n), ATEMP); \
84 1.1 jtc (x).cur = (x).beg = vp__; \
85 1.1 jtc (x).end = vp__ + n; \
86 1.1 jtc } while (0)
87 1.1 jtc
88 1.1 jtc #define XPput(x, p) do { \
89 1.1 jtc if ((x).cur >= (x).end) { \
90 1.1 jtc int n = XPsize(x); \
91 1.1 jtc (x).beg = (void**) aresize((void*) (x).beg, \
92 1.1 jtc sizeofN(void*, n*2), ATEMP); \
93 1.1 jtc (x).cur = (x).beg + n; \
94 1.1 jtc (x).end = (x).cur + n; \
95 1.1 jtc } \
96 1.1 jtc *(x).cur++ = (p); \
97 1.1 jtc } while (0)
98 1.1 jtc
99 1.1 jtc #define XPptrv(x) ((x).beg)
100 1.1 jtc #define XPsize(x) ((x).cur - (x).beg)
101 1.1 jtc
102 1.1 jtc #define XPclose(x) (void**) aresize((void*)(x).beg, \
103 1.1 jtc sizeofN(void*, XPsize(x)), ATEMP)
104 1.1 jtc
105 1.1 jtc #define XPfree(x) afree((void*) (x).beg, ATEMP)
106