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[perl5.git] / pp.h
1 /*    pp.h
2  *
3  *    Copyright (c) 1991-1997, Larry Wall
4  *
5  *    You may distribute under the terms of either the GNU General Public
6  *    License or the Artistic License, as specified in the README file.
7  *
8  */
9
10 #ifdef USE_THREADS
11 #define ARGS thr
12 #define dARGS struct perl_thread *thr;
13 #else
14 #define ARGS
15 #define dARGS
16 #endif /* USE_THREADS */
17
18 #define PP(s) OP * s(ARGSproto)
19
20 #define SP sp
21 #define MARK mark
22 #define TARG targ
23
24 #define PUSHMARK(p) if (++PL_markstack_ptr == PL_markstack_max) \
25                         markstack_grow();                       \
26                     *PL_markstack_ptr = (p) - PL_stack_base
27
28 #define TOPMARK         (*PL_markstack_ptr)
29 #define POPMARK         (*PL_markstack_ptr--)
30
31 #define djSP            register SV **sp = PL_stack_sp
32 #define dSP             dTHR; djSP
33 #define dMARK           register SV **mark = PL_stack_base + POPMARK
34 #define dORIGMARK       I32 origmark = mark - PL_stack_base
35 #define SETORIGMARK     origmark = mark - PL_stack_base
36 #define ORIGMARK        (PL_stack_base + origmark)
37
38 #define SPAGAIN         sp = PL_stack_sp
39 #define MSPAGAIN        sp = PL_stack_sp; mark = ORIGMARK
40
41 #define GETTARGETSTACKED targ = (PL_op->op_flags & OPf_STACKED ? POPs : PAD_SV(PL_op->op_targ))
42 #define dTARGETSTACKED SV * GETTARGETSTACKED
43
44 #define GETTARGET targ = PAD_SV(PL_op->op_targ)
45 #define dTARGET SV * GETTARGET
46
47 #define GETATARGET targ = (PL_op->op_flags & OPf_STACKED ? sp[-1] : PAD_SV(PL_op->op_targ))
48 #define dATARGET SV * GETATARGET
49
50 #define dTARG SV *targ
51
52 #define NORMAL PL_op->op_next
53 #define DIE return die
54
55 #define PUTBACK         PL_stack_sp = sp
56 #define RETURN          return PUTBACK, NORMAL
57 #define RETURNOP(o)     return PUTBACK, o
58 #define RETURNX(x)      return x, PUTBACK, NORMAL
59
60 #define POPs            (*sp--)
61 #define POPp            (SvPVx(POPs, PL_na))            /* deprecated */
62 #define POPpx           (SvPVx(POPs, n_a))
63 #define POPn            (SvNVx(POPs))
64 #define POPi            ((IV)SvIVx(POPs))
65 #define POPu            ((UV)SvUVx(POPs))
66 #define POPl            ((long)SvIVx(POPs))
67
68 #define TOPs            (*sp)
69 #define TOPp            (SvPV(TOPs, PL_na))             /* deprecated */
70 #define TOPpx           (SvPV(TOPs, n_a))
71 #define TOPn            (SvNV(TOPs))
72 #define TOPi            ((IV)SvIV(TOPs))
73 #define TOPu            ((UV)SvUV(TOPs))
74 #define TOPl            ((long)SvIV(TOPs))
75
76 /* Go to some pains in the rare event that we must extend the stack. */
77 #define EXTEND(p,n)     STMT_START { if (PL_stack_max - p < (n)) {              \
78                             sp = stack_grow(sp,p, (int) (n));           \
79                         } } STMT_END
80
81 /* Same thing, but update mark register too. */
82 #define MEXTEND(p,n)    STMT_START {if (PL_stack_max - p < (n)) {               \
83                             int markoff = mark - PL_stack_base;         \
84                             sp = stack_grow(sp,p,(int) (n));            \
85                             mark = PL_stack_base + markoff;             \
86                         } } STMT_END
87
88 #define PUSHs(s)        (*++sp = (s))
89 #define PUSHTARG        STMT_START { SvSETMAGIC(TARG); PUSHs(TARG); } STMT_END
90 #define PUSHp(p,l)      STMT_START { sv_setpvn(TARG, (p), (l)); PUSHTARG; } STMT_END
91 #define PUSHn(n)        STMT_START { sv_setnv(TARG, (double)(n)); PUSHTARG; } STMT_END
92 #define PUSHi(i)        STMT_START { sv_setiv(TARG, (IV)(i)); PUSHTARG; } STMT_END
93 #define PUSHu(u)        STMT_START { sv_setuv(TARG, (UV)(u)); PUSHTARG; } STMT_END
94
95 #define XPUSHs(s)       STMT_START { EXTEND(sp,1); (*++sp = (s)); } STMT_END
96 #define XPUSHTARG       STMT_START { SvSETMAGIC(TARG); XPUSHs(TARG); } STMT_END
97 #define XPUSHp(p,l)     STMT_START { sv_setpvn(TARG, (p), (l)); XPUSHTARG; } STMT_END
98 #define XPUSHn(n)       STMT_START { sv_setnv(TARG, (double)(n)); XPUSHTARG; } STMT_END
99 #define XPUSHi(i)       STMT_START { sv_setiv(TARG, (IV)(i)); XPUSHTARG; } STMT_END
100 #define XPUSHu(u)       STMT_START { sv_setuv(TARG, (UV)(u)); XPUSHTARG; } STMT_END
101
102 #define SETs(s)         (*sp = s)
103 #define SETTARG         STMT_START { SvSETMAGIC(TARG); SETs(TARG); } STMT_END
104 #define SETp(p,l)       STMT_START { sv_setpvn(TARG, (p), (l)); SETTARG; } STMT_END
105 #define SETn(n)         STMT_START { sv_setnv(TARG, (double)(n)); SETTARG; } STMT_END
106 #define SETi(i)         STMT_START { sv_setiv(TARG, (IV)(i)); SETTARG; } STMT_END
107 #define SETu(u)         STMT_START { sv_setuv(TARG, (UV)(u)); SETTARG; } STMT_END
108
109 #define dTOPss          SV *sv = TOPs
110 #define dPOPss          SV *sv = POPs
111 #define dTOPnv          double value = TOPn
112 #define dPOPnv          double value = POPn
113 #define dTOPiv          IV value = TOPi
114 #define dPOPiv          IV value = POPi
115 #define dTOPuv          UV value = TOPu
116 #define dPOPuv          UV value = POPu
117
118 #define dPOPXssrl(X)    SV *right = POPs; SV *left = CAT2(X,s)
119 #define dPOPXnnrl(X)    double right = POPn; double left = CAT2(X,n)
120 #define dPOPXiirl(X)    IV right = POPi; IV left = CAT2(X,i)
121
122 #define USE_LEFT(sv) \
123         (SvOK(sv) || SvGMAGICAL(sv) || !(PL_op->op_flags & OPf_STACKED))
124 #define dPOPXnnrl_ul(X) \
125     double right = POPn;                                \
126     SV *leftsv = CAT2(X,s);                             \
127     double left = USE_LEFT(leftsv) ? SvNV(leftsv) : 0.0
128 #define dPOPXiirl_ul(X) \
129     IV right = POPi;                                    \
130     SV *leftsv = CAT2(X,s);                             \
131     IV left = USE_LEFT(leftsv) ? SvIV(leftsv) : 0
132
133 #define dPOPPOPssrl     dPOPXssrl(POP)
134 #define dPOPPOPnnrl     dPOPXnnrl(POP)
135 #define dPOPPOPnnrl_ul  dPOPXnnrl_ul(POP)
136 #define dPOPPOPiirl     dPOPXiirl(POP)
137 #define dPOPPOPiirl_ul  dPOPXiirl_ul(POP)
138
139 #define dPOPTOPssrl     dPOPXssrl(TOP)
140 #define dPOPTOPnnrl     dPOPXnnrl(TOP)
141 #define dPOPTOPnnrl_ul  dPOPXnnrl_ul(TOP)
142 #define dPOPTOPiirl     dPOPXiirl(TOP)
143 #define dPOPTOPiirl_ul  dPOPXiirl_ul(TOP)
144
145 #define RETPUSHYES      RETURNX(PUSHs(&PL_sv_yes))
146 #define RETPUSHNO       RETURNX(PUSHs(&PL_sv_no))
147 #define RETPUSHUNDEF    RETURNX(PUSHs(&PL_sv_undef))
148
149 #define RETSETYES       RETURNX(SETs(&PL_sv_yes))
150 #define RETSETNO        RETURNX(SETs(&PL_sv_no))
151 #define RETSETUNDEF     RETURNX(SETs(&PL_sv_undef))
152
153 #define ARGTARG         PL_op->op_targ
154 #define MAXARG          PL_op->op_private
155
156 #define SWITCHSTACK(f,t) \
157     STMT_START {                                                        \
158         AvFILLp(f) = sp - PL_stack_base;                                        \
159         PL_stack_base = AvARRAY(t);                                     \
160         PL_stack_max = PL_stack_base + AvMAX(t);                                \
161         sp = PL_stack_sp = PL_stack_base + AvFILLp(t);                  \
162         PL_curstack = t;                                                        \
163     } STMT_END
164
165 #define EXTEND_MORTAL(n) \
166         STMT_START { \
167             if (PL_tmps_ix + (n) >= PL_tmps_max) \
168                 Renew(PL_tmps_stack, PL_tmps_max = PL_tmps_ix + (n) + 1, SV*); \
169         } STMT_END
170
171 #ifdef OVERLOAD
172
173 #define AMGf_noright    1
174 #define AMGf_noleft     2
175 #define AMGf_assign     4
176 #define AMGf_unary      8
177
178 #define tryAMAGICbinW(meth,assign,set) STMT_START { \
179           if (PL_amagic_generation) { \
180             SV* tmpsv; \
181             SV* right= *(sp); SV* left= *(sp-1);\
182             if ((SvAMAGIC(left)||SvAMAGIC(right))&&\
183                 (tmpsv=amagic_call(left, \
184                                    right, \
185                                    CAT2(meth,_amg), \
186                                    (assign)? AMGf_assign: 0))) {\
187                SPAGAIN; \
188                (void)POPs; set(tmpsv); RETURN; } \
189           } \
190         } STMT_END
191
192 #define tryAMAGICbin(meth,assign) tryAMAGICbinW(meth,assign,SETsv)
193 #define tryAMAGICbinSET(meth,assign) tryAMAGICbinW(meth,assign,SETs)
194
195 #define AMG_CALLun(sv,meth) amagic_call(sv,&PL_sv_undef,  \
196                                         CAT2(meth,_amg),AMGf_noright | AMGf_unary)
197 #define AMG_CALLbinL(left,right,meth) \
198             amagic_call(left,right,CAT2(meth,_amg),AMGf_noright)
199
200 #define tryAMAGICunW(meth,set,shift,ret) STMT_START { \
201           if (PL_amagic_generation) { \
202             SV* tmpsv; \
203             SV* arg= sp[shift]; \
204           am_again: \
205             if ((SvAMAGIC(arg))&&\
206                 (tmpsv=AMG_CALLun(arg,meth))) {\
207                SPAGAIN; if (shift) sp += shift; \
208                set(tmpsv); ret; } \
209           } \
210         } STMT_END
211
212 #define FORCE_SETs(sv) STMT_START { sv_setsv(TARG, (sv)); SETTARG; } STMT_END
213
214 #define tryAMAGICun     tryAMAGICunSET
215 #define tryAMAGICunSET(meth) tryAMAGICunW(meth,SETs,0,RETURN)
216 #define tryAMAGICunTARGET(meth, shift)                                  \
217         { dSP; sp--;    /* get TARGET from below PL_stack_sp */         \
218             { dTARGETSTACKED;                                           \
219                 { dSP; tryAMAGICunW(meth,FORCE_SETs,shift,RETURN);}}}
220
221 #define setAGAIN(ref) sv = arg = ref;                                   \
222   if (!SvROK(ref))                                                      \
223       croak("Overloaded dereference did not return a reference");       \
224   goto am_again;
225
226 #define tryAMAGICunDEREF(meth) tryAMAGICunW(meth,setAGAIN,0,(void)0)
227
228 #define opASSIGN (PL_op->op_flags & OPf_STACKED)
229 #define SETsv(sv)       STMT_START {                                    \
230                 if (opASSIGN) { sv_setsv(TARG, (sv)); SETTARG; }        \
231                 else SETs(sv); } STMT_END
232
233 /* newSVsv does not behave as advertised, so we copy missing
234  * information by hand */
235
236 /* SV* ref causes confusion with the member variable
237    changed SV* ref to SV* tmpRef */
238 #define RvDEEPCP(rv) STMT_START { SV* tmpRef=SvRV(rv);      \
239   if (SvREFCNT(tmpRef)>1) {                 \
240     SvREFCNT_dec(tmpRef);                   \
241     SvRV(rv)=AMG_CALLun(rv,copy);        \
242   } } STMT_END
243 #else
244
245 #define tryAMAGICbin(a,b)
246 #define tryAMAGICbinSET(a,b)
247 #define tryAMAGICun(a)
248 #define tryAMAGICunSET(a)
249
250 #endif /* OVERLOAD */