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https://github.com/cloudwu/skynet.git
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Update lua 5.4.3 rc1
This commit is contained in:
128
3rd/lua/ldebug.c
128
3rd/lua/ldebug.c
@@ -33,8 +33,6 @@
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#define noLuaClosure(f) ((f) == NULL || (f)->c.tt == LUA_VCCL)
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/* inverse of 'pcRel' */
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#define invpcRel(pc, p) ((p)->code + (pc) + 1)
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static const char *funcnamefromcode (lua_State *L, CallInfo *ci,
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const char **name);
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@@ -48,10 +46,14 @@ static int currentpc (CallInfo *ci) {
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/*
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** Get a "base line" to find the line corresponding to an instruction.
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** For that, search the array of absolute line info for the largest saved
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** instruction smaller or equal to the wanted instruction. A special
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** case is when there is no absolute info or the instruction is before
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** the first absolute one.
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** Base lines are regularly placed at MAXIWTHABS intervals, so usually
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** an integer division gets the right place. When the source file has
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** large sequences of empty/comment lines, it may need extra entries,
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** so the original estimate needs a correction.
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** The assertion that the estimate is a lower bound for the correct base
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** is valid as long as the debug info has been generated with the same
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** value for MAXIWTHABS or smaller. (Previous releases use a little
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** smaller value.)
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*/
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static int getbaseline (const Proto *f, int pc, int *basepc) {
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if (f->sizeabslineinfo == 0 || pc < f->abslineinfo[0].pc) {
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@@ -59,20 +61,11 @@ static int getbaseline (const Proto *f, int pc, int *basepc) {
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return f->linedefined;
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}
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else {
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unsigned int i;
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if (pc >= f->abslineinfo[f->sizeabslineinfo - 1].pc)
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i = f->sizeabslineinfo - 1; /* instruction is after last saved one */
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else { /* binary search */
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unsigned int j = f->sizeabslineinfo - 1; /* pc < anchorlines[j] */
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i = 0; /* abslineinfo[i] <= pc */
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while (i < j - 1) {
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unsigned int m = (j + i) / 2;
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if (pc >= f->abslineinfo[m].pc)
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i = m;
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else
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j = m;
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}
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}
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int i = cast_uint(pc) / MAXIWTHABS - 1; /* get an estimate */
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/* estimate must be a lower bond of the correct base */
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lua_assert(i < f->sizeabslineinfo && f->abslineinfo[i].pc <= pc);
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while (i + 1 < f->sizeabslineinfo && pc >= f->abslineinfo[i + 1].pc)
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i++; /* low estimate; adjust it */
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*basepc = f->abslineinfo[i].pc;
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return f->abslineinfo[i].line;
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}
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@@ -305,8 +298,8 @@ static void collectvalidlines (lua_State *L, Closure *f) {
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sethvalue2s(L, L->top, t); /* push it on stack */
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api_incr_top(L);
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setbtvalue(&v); /* boolean 'true' to be the value of all indices */
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for (i = 0; i < p->sizelineinfo; i++) { /* for all lines with code */
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currentline = nextline(p, currentline, i);
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for (i = 0; i < p->sizelineinfo; i++) { /* for all instructions */
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currentline = nextline(p, currentline, i); /* get its line */
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luaH_setint(L, t, currentline, &v); /* table[line] = true */
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}
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}
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@@ -629,12 +622,10 @@ static const char *funcnamefromcode (lua_State *L, CallInfo *ci,
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case OP_LEN: tm = TM_LEN; break;
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case OP_CONCAT: tm = TM_CONCAT; break;
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case OP_EQ: tm = TM_EQ; break;
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case OP_LT: case OP_LE: case OP_LTI: case OP_LEI:
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*name = "order"; /* '<=' can call '__lt', etc. */
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return "metamethod";
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case OP_CLOSE: case OP_RETURN:
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*name = "close";
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return "metamethod";
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/* no cases for OP_EQI and OP_EQK, as they don't call metamethods */
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case OP_LT: case OP_LTI: case OP_GTI: tm = TM_LT; break;
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case OP_LE: case OP_LEI: case OP_GEI: tm = TM_LE; break;
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case OP_CLOSE: case OP_RETURN: tm = TM_CLOSE; break;
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default:
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return NULL; /* cannot find a reasonable name */
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}
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@@ -647,14 +638,18 @@ static const char *funcnamefromcode (lua_State *L, CallInfo *ci,
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/*
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** The subtraction of two potentially unrelated pointers is
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** not ISO C, but it should not crash a program; the subsequent
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** checks are ISO C and ensure a correct result.
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** Check whether pointer 'o' points to some value in the stack
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** frame of the current function. Because 'o' may not point to a
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** value in this stack, we cannot compare it with the region
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** boundaries (undefined behaviour in ISO C).
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*/
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static int isinstack (CallInfo *ci, const TValue *o) {
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StkId base = ci->func + 1;
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ptrdiff_t i = cast(StkId, o) - base;
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return (0 <= i && i < (ci->top - base) && s2v(base + i) == o);
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StkId pos;
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for (pos = ci->func + 1; pos < ci->top; pos++) {
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if (o == s2v(pos))
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return 1;
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}
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return 0; /* not found */
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}
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@@ -697,6 +692,19 @@ l_noret luaG_typeerror (lua_State *L, const TValue *o, const char *op) {
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}
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l_noret luaG_callerror (lua_State *L, const TValue *o) {
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CallInfo *ci = L->ci;
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const char *name = NULL; /* to avoid warnings */
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const char *what = (isLua(ci)) ? funcnamefromcode(L, ci, &name) : NULL;
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if (what != NULL) {
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const char *t = luaT_objtypename(L, o);
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luaG_runerror(L, "%s '%s' is not callable (a %s value)", what, name, t);
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}
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else
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luaG_typeerror(L, o, "call");
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}
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l_noret luaG_forerror (lua_State *L, const TValue *o, const char *what) {
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luaG_runerror(L, "bad 'for' %s (number expected, got %s)",
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what, luaT_objtypename(L, o));
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@@ -722,7 +730,7 @@ l_noret luaG_opinterror (lua_State *L, const TValue *p1,
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*/
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l_noret luaG_tointerror (lua_State *L, const TValue *p1, const TValue *p2) {
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lua_Integer temp;
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if (!tointegerns(p1, &temp))
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if (!luaV_tointegerns(p1, &temp, LUA_FLOORN2I))
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p2 = p1;
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luaG_runerror(L, "number%s has no integer representation", varinfo(L, p2));
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}
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@@ -780,16 +788,30 @@ l_noret luaG_runerror (lua_State *L, const char *fmt, ...) {
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/*
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** Check whether new instruction 'newpc' is in a different line from
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** previous instruction 'oldpc'.
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** previous instruction 'oldpc'. More often than not, 'newpc' is only
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** one or a few instructions after 'oldpc' (it must be after, see
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** caller), so try to avoid calling 'luaG_getfuncline'. If they are
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** too far apart, there is a good chance of a ABSLINEINFO in the way,
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** so it goes directly to 'luaG_getfuncline'.
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*/
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static int changedline (const Proto *p, int oldpc, int newpc) {
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if (p->lineinfo == NULL) /* no debug information? */
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return 0;
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while (oldpc++ < newpc) {
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if (p->lineinfo[oldpc] != 0)
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return (luaG_getfuncline(p, oldpc - 1) != luaG_getfuncline(p, newpc));
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if (newpc - oldpc < MAXIWTHABS / 2) { /* not too far apart? */
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int delta = 0; /* line diference */
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int pc = oldpc;
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for (;;) {
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int lineinfo = p->lineinfo[++pc];
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if (lineinfo == ABSLINEINFO)
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break; /* cannot compute delta; fall through */
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delta += lineinfo;
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if (pc == newpc)
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return (delta != 0); /* delta computed successfully */
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}
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}
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return 0; /* no line changes between positions */
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/* either instructions are too far apart or there is an absolute line
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info in the way; compute line difference explicitly */
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return (luaG_getfuncline(p, oldpc) != luaG_getfuncline(p, newpc));
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}
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@@ -797,20 +819,19 @@ static int changedline (const Proto *p, int oldpc, int newpc) {
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** Traces the execution of a Lua function. Called before the execution
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** of each opcode, when debug is on. 'L->oldpc' stores the last
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** instruction traced, to detect line changes. When entering a new
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** function, 'npci' will be zero and will test as a new line without
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** the need for 'oldpc'; so, 'oldpc' does not need to be initialized
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** before. Some exceptional conditions may return to a function without
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** updating 'oldpc'. In that case, 'oldpc' may be invalid; if so, it is
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** reset to zero. (A wrong but valid 'oldpc' at most causes an extra
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** call to a line hook.)
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** function, 'npci' will be zero and will test as a new line whatever
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** the value of 'oldpc'. Some exceptional conditions may return to
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** a function without setting 'oldpc'. In that case, 'oldpc' may be
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** invalid; if so, use zero as a valid value. (A wrong but valid 'oldpc'
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** at most causes an extra call to a line hook.)
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** This function is not "Protected" when called, so it should correct
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** 'L->top' before calling anything that can run the GC.
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*/
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int luaG_traceexec (lua_State *L, const Instruction *pc) {
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CallInfo *ci = L->ci;
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lu_byte mask = L->hookmask;
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const Proto *p = ci_func(ci)->p;
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int counthook;
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/* 'L->oldpc' may be invalid; reset it in this case */
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int oldpc = (L->oldpc < p->sizecode) ? L->oldpc : 0;
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if (!(mask & (LUA_MASKLINE | LUA_MASKCOUNT))) { /* no hooks? */
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ci->u.l.trap = 0; /* don't need to stop again */
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return 0; /* turn off 'trap' */
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@@ -826,15 +847,16 @@ int luaG_traceexec (lua_State *L, const Instruction *pc) {
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ci->callstatus &= ~CIST_HOOKYIELD; /* erase mark */
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return 1; /* do not call hook again (VM yielded, so it did not move) */
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}
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if (!isIT(*(ci->u.l.savedpc - 1)))
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L->top = ci->top; /* prepare top */
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if (!isIT(*(ci->u.l.savedpc - 1))) /* top not being used? */
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L->top = ci->top; /* correct top */
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if (counthook)
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luaD_hook(L, LUA_HOOKCOUNT, -1, 0, 0); /* call count hook */
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if (mask & LUA_MASKLINE) {
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/* 'L->oldpc' may be invalid; use zero in this case */
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int oldpc = (L->oldpc < p->sizecode) ? L->oldpc : 0;
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int npci = pcRel(pc, p);
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if (npci == 0 || /* call linehook when enter a new function, */
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pc <= invpcRel(oldpc, p) || /* when jump back (loop), or when */
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changedline(p, oldpc, npci)) { /* enter new line */
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if (npci <= oldpc || /* call hook when jump back (loop), */
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changedline(p, oldpc, npci)) { /* or when enter new line */
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int newline = luaG_getfuncline(p, npci);
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luaD_hook(L, LUA_HOOKLINE, newline, 0, 0); /* call line hook */
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}
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