mirror of
https://github.com/RfidResearchGroup/proxmark3.git
synced 2025-08-19 21:03:48 -07:00
make style
This commit is contained in:
parent
0d9223a547
commit
0373696662
483 changed files with 56514 additions and 52451 deletions
794
liblua/ltable.c
794
liblua/ltable.c
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@ -69,23 +69,24 @@
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#define isdummy(n) ((n) == dummynode)
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static const Node dummynode_ = {
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{NILCONSTANT}, /* value */
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{{NILCONSTANT, NULL}} /* key */
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{NILCONSTANT}, /* value */
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{{NILCONSTANT, NULL}} /* key */
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};
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/*
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** hash for lua_Numbers
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*/
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static Node *hashnum (const Table *t, lua_Number n) {
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int i;
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luai_hashnum(i, n);
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if (i < 0) {
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if (cast(unsigned int, i) == 0u - i) /* use unsigned to avoid overflows */
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i = 0; /* handle INT_MIN */
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i = -i; /* must be a positive value */
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}
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return hashmod(t, i);
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static Node *hashnum(const Table *t, lua_Number n)
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{
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int i;
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luai_hashnum(i, n);
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if (i < 0) {
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if (cast(unsigned int, i) == 0u - i) /* use unsigned to avoid overflows */
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i = 0; /* handle INT_MIN */
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i = -i; /* must be a positive value */
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}
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return hashmod(t, i);
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}
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@ -94,29 +95,30 @@ static Node *hashnum (const Table *t, lua_Number n) {
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** returns the `main' position of an element in a table (that is, the index
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** of its hash value)
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*/
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static Node *mainposition (const Table *t, const TValue *key) {
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switch (ttype(key)) {
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case LUA_TNUMBER:
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return hashnum(t, nvalue(key));
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case LUA_TLNGSTR: {
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TString *s = rawtsvalue(key);
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if (s->tsv.extra == 0) { /* no hash? */
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s->tsv.hash = luaS_hash(getstr(s), s->tsv.len, s->tsv.hash);
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s->tsv.extra = 1; /* now it has its hash */
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}
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return hashstr(t, rawtsvalue(key));
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static Node *mainposition(const Table *t, const TValue *key)
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{
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switch (ttype(key)) {
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case LUA_TNUMBER:
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return hashnum(t, nvalue(key));
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case LUA_TLNGSTR: {
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TString *s = rawtsvalue(key);
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if (s->tsv.extra == 0) { /* no hash? */
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s->tsv.hash = luaS_hash(getstr(s), s->tsv.len, s->tsv.hash);
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s->tsv.extra = 1; /* now it has its hash */
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}
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return hashstr(t, rawtsvalue(key));
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}
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case LUA_TSHRSTR:
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return hashstr(t, rawtsvalue(key));
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case LUA_TBOOLEAN:
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return hashboolean(t, bvalue(key));
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case LUA_TLIGHTUSERDATA:
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return hashpointer(t, pvalue(key));
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case LUA_TLCF:
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return hashpointer(t, fvalue(key));
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default:
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return hashpointer(t, gcvalue(key));
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}
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case LUA_TSHRSTR:
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return hashstr(t, rawtsvalue(key));
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case LUA_TBOOLEAN:
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return hashboolean(t, bvalue(key));
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case LUA_TLIGHTUSERDATA:
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return hashpointer(t, pvalue(key));
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case LUA_TLCF:
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return hashpointer(t, fvalue(key));
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default:
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return hashpointer(t, gcvalue(key));
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}
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}
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@ -124,15 +126,16 @@ static Node *mainposition (const Table *t, const TValue *key) {
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** returns the index for `key' if `key' is an appropriate key to live in
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** the array part of the table, -1 otherwise.
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*/
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static int arrayindex (const TValue *key) {
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if (ttisnumber(key)) {
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lua_Number n = nvalue(key);
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int k;
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lua_number2int(k, n);
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if (luai_numeq(cast_num(k), n))
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return k;
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}
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return -1; /* `key' did not match some condition */
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static int arrayindex(const TValue *key)
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{
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if (ttisnumber(key)) {
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lua_Number n = nvalue(key);
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int k;
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lua_number2int(k, n);
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if (luai_numeq(cast_num(k), n))
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return k;
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}
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return -1; /* `key' did not match some condition */
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}
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@ -141,48 +144,49 @@ static int arrayindex (const TValue *key) {
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** elements in the array part, then elements in the hash part. The
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** beginning of a traversal is signaled by -1.
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*/
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static int findindex (lua_State *L, Table *t, StkId key) {
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int i;
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if (ttisnil(key)) return -1; /* first iteration */
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i = arrayindex(key);
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if (0 < i && i <= t->sizearray) /* is `key' inside array part? */
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return i-1; /* yes; that's the index (corrected to C) */
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else {
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Node *n = mainposition(t, key);
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for (;;) { /* check whether `key' is somewhere in the chain */
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/* key may be dead already, but it is ok to use it in `next' */
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if (luaV_rawequalobj(gkey(n), key) ||
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(ttisdeadkey(gkey(n)) && iscollectable(key) &&
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deadvalue(gkey(n)) == gcvalue(key))) {
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i = cast_int(n - gnode(t, 0)); /* key index in hash table */
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/* hash elements are numbered after array ones */
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return i + t->sizearray;
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}
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else n = gnext(n);
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if (n == NULL)
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luaG_runerror(L, "invalid key to " LUA_QL("next")); /* key not found */
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static int findindex(lua_State *L, Table *t, StkId key)
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{
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int i;
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if (ttisnil(key)) return -1; /* first iteration */
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i = arrayindex(key);
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if (0 < i && i <= t->sizearray) /* is `key' inside array part? */
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return i - 1; /* yes; that's the index (corrected to C) */
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else {
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Node *n = mainposition(t, key);
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for (;;) { /* check whether `key' is somewhere in the chain */
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/* key may be dead already, but it is ok to use it in `next' */
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if (luaV_rawequalobj(gkey(n), key) ||
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(ttisdeadkey(gkey(n)) && iscollectable(key) &&
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deadvalue(gkey(n)) == gcvalue(key))) {
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i = cast_int(n - gnode(t, 0)); /* key index in hash table */
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/* hash elements are numbered after array ones */
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return i + t->sizearray;
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} else n = gnext(n);
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if (n == NULL)
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luaG_runerror(L, "invalid key to " LUA_QL("next")); /* key not found */
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}
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}
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}
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}
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int luaH_next (lua_State *L, Table *t, StkId key) {
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int i = findindex(L, t, key); /* find original element */
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for (i++; i < t->sizearray; i++) { /* try first array part */
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if (!ttisnil(&t->array[i])) { /* a non-nil value? */
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setnvalue(key, cast_num(i+1));
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setobj2s(L, key+1, &t->array[i]);
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return 1;
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int luaH_next(lua_State *L, Table *t, StkId key)
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{
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int i = findindex(L, t, key); /* find original element */
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for (i++; i < t->sizearray; i++) { /* try first array part */
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if (!ttisnil(&t->array[i])) { /* a non-nil value? */
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setnvalue(key, cast_num(i + 1));
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setobj2s(L, key + 1, &t->array[i]);
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return 1;
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}
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}
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}
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for (i -= t->sizearray; i < sizenode(t); i++) { /* then hash part */
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if (!ttisnil(gval(gnode(t, i)))) { /* a non-nil value? */
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setobj2s(L, key, gkey(gnode(t, i)));
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setobj2s(L, key+1, gval(gnode(t, i)));
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return 1;
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for (i -= t->sizearray; i < sizenode(t); i++) { /* then hash part */
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if (!ttisnil(gval(gnode(t, i)))) { /* a non-nil value? */
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setobj2s(L, key, gkey(gnode(t, i)));
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setobj2s(L, key + 1, gval(gnode(t, i)));
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return 1;
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}
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}
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}
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return 0; /* no more elements */
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return 0; /* no more elements */
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}
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@ -193,169 +197,176 @@ int luaH_next (lua_State *L, Table *t, StkId key) {
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*/
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static int computesizes (int nums[], int *narray) {
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int i;
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int twotoi; /* 2^i */
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int a = 0; /* number of elements smaller than 2^i */
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int na = 0; /* number of elements to go to array part */
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int n = 0; /* optimal size for array part */
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for (i = 0, twotoi = 1; twotoi/2 < *narray; i++, twotoi *= 2) {
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if (nums[i] > 0) {
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a += nums[i];
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if (a > twotoi/2) { /* more than half elements present? */
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n = twotoi; /* optimal size (till now) */
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na = a; /* all elements smaller than n will go to array part */
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}
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}
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if (a == *narray) break; /* all elements already counted */
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}
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*narray = n;
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lua_assert(*narray/2 <= na && na <= *narray);
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return na;
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}
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static int countint (const TValue *key, int *nums) {
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int k = arrayindex(key);
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if (0 < k && k <= MAXASIZE) { /* is `key' an appropriate array index? */
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nums[luaO_ceillog2(k)]++; /* count as such */
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return 1;
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}
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else
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return 0;
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}
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static int numusearray (const Table *t, int *nums) {
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int lg;
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int ttlg; /* 2^lg */
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int ause = 0; /* summation of `nums' */
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int i = 1; /* count to traverse all array keys */
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for (lg=0, ttlg=1; lg<=MAXBITS; lg++, ttlg*=2) { /* for each slice */
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int lc = 0; /* counter */
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int lim = ttlg;
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if (lim > t->sizearray) {
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lim = t->sizearray; /* adjust upper limit */
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if (i > lim)
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break; /* no more elements to count */
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}
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/* count elements in range (2^(lg-1), 2^lg] */
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for (; i <= lim; i++) {
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if (!ttisnil(&t->array[i-1]))
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lc++;
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}
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nums[lg] += lc;
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ause += lc;
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}
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return ause;
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}
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static int numusehash (const Table *t, int *nums, int *pnasize) {
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int totaluse = 0; /* total number of elements */
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int ause = 0; /* summation of `nums' */
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int i = sizenode(t);
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while (i--) {
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Node *n = &t->node[i];
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if (!ttisnil(gval(n))) {
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ause += countint(gkey(n), nums);
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totaluse++;
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}
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}
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*pnasize += ause;
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return totaluse;
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}
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static void setarrayvector (lua_State *L, Table *t, int size) {
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int i;
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luaM_reallocvector(L, t->array, t->sizearray, size, TValue);
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for (i=t->sizearray; i<size; i++)
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setnilvalue(&t->array[i]);
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t->sizearray = size;
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}
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static void setnodevector (lua_State *L, Table *t, int size) {
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int lsize;
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if (size == 0) { /* no elements to hash part? */
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t->node = cast(Node *, dummynode); /* use common `dummynode' */
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lsize = 0;
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}
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else {
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static int computesizes(int nums[], int *narray)
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{
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int i;
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lsize = luaO_ceillog2(size);
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if (lsize > MAXBITS)
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luaG_runerror(L, "table overflow");
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size = twoto(lsize);
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t->node = luaM_newvector(L, size, Node);
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for (i=0; i<size; i++) {
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Node *n = gnode(t, i);
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gnext(n) = NULL;
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setnilvalue(gkey(n));
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setnilvalue(gval(n));
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int twotoi; /* 2^i */
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int a = 0; /* number of elements smaller than 2^i */
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int na = 0; /* number of elements to go to array part */
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int n = 0; /* optimal size for array part */
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for (i = 0, twotoi = 1; twotoi / 2 < *narray; i++, twotoi *= 2) {
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if (nums[i] > 0) {
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a += nums[i];
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if (a > twotoi / 2) { /* more than half elements present? */
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n = twotoi; /* optimal size (till now) */
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na = a; /* all elements smaller than n will go to array part */
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}
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}
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if (a == *narray) break; /* all elements already counted */
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}
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}
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t->lsizenode = cast_byte(lsize);
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t->lastfree = gnode(t, size); /* all positions are free */
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*narray = n;
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lua_assert(*narray / 2 <= na && na <= *narray);
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return na;
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}
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void luaH_resize (lua_State *L, Table *t, int nasize, int nhsize) {
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int i;
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int oldasize = t->sizearray;
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int oldhsize = t->lsizenode;
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Node *nold = t->node; /* save old hash ... */
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if (nasize > oldasize) /* array part must grow? */
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setarrayvector(L, t, nasize);
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/* create new hash part with appropriate size */
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setnodevector(L, t, nhsize);
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if (nasize < oldasize) { /* array part must shrink? */
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t->sizearray = nasize;
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/* re-insert elements from vanishing slice */
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for (i=nasize; i<oldasize; i++) {
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if (!ttisnil(&t->array[i]))
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luaH_setint(L, t, i + 1, &t->array[i]);
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}
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/* shrink array */
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luaM_reallocvector(L, t->array, oldasize, nasize, TValue);
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}
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/* re-insert elements from hash part */
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for (i = twoto(oldhsize) - 1; i >= 0; i--) {
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Node *old = nold+i;
|
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if (!ttisnil(gval(old))) {
|
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/* doesn't need barrier/invalidate cache, as entry was
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already present in the table */
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setobjt2t(L, luaH_set(L, t, gkey(old)), gval(old));
|
||||
}
|
||||
}
|
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if (!isdummy(nold))
|
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luaM_freearray(L, nold, cast(size_t, twoto(oldhsize))); /* free old array */
|
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static int countint(const TValue *key, int *nums)
|
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{
|
||||
int k = arrayindex(key);
|
||||
if (0 < k && k <= MAXASIZE) { /* is `key' an appropriate array index? */
|
||||
nums[luaO_ceillog2(k)]++; /* count as such */
|
||||
return 1;
|
||||
} else
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
||||
void luaH_resizearray (lua_State *L, Table *t, int nasize) {
|
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int nsize = isdummy(t->node) ? 0 : sizenode(t);
|
||||
luaH_resize(L, t, nasize, nsize);
|
||||
static int numusearray(const Table *t, int *nums)
|
||||
{
|
||||
int lg;
|
||||
int ttlg; /* 2^lg */
|
||||
int ause = 0; /* summation of `nums' */
|
||||
int i = 1; /* count to traverse all array keys */
|
||||
for (lg = 0, ttlg = 1; lg <= MAXBITS; lg++, ttlg *= 2) { /* for each slice */
|
||||
int lc = 0; /* counter */
|
||||
int lim = ttlg;
|
||||
if (lim > t->sizearray) {
|
||||
lim = t->sizearray; /* adjust upper limit */
|
||||
if (i > lim)
|
||||
break; /* no more elements to count */
|
||||
}
|
||||
/* count elements in range (2^(lg-1), 2^lg] */
|
||||
for (; i <= lim; i++) {
|
||||
if (!ttisnil(&t->array[i - 1]))
|
||||
lc++;
|
||||
}
|
||||
nums[lg] += lc;
|
||||
ause += lc;
|
||||
}
|
||||
return ause;
|
||||
}
|
||||
|
||||
|
||||
static void rehash (lua_State *L, Table *t, const TValue *ek) {
|
||||
int nasize, na;
|
||||
int nums[MAXBITS+1]; /* nums[i] = number of keys with 2^(i-1) < k <= 2^i */
|
||||
int i;
|
||||
int totaluse;
|
||||
for (i=0; i<=MAXBITS; i++) nums[i] = 0; /* reset counts */
|
||||
nasize = numusearray(t, nums); /* count keys in array part */
|
||||
totaluse = nasize; /* all those keys are integer keys */
|
||||
totaluse += numusehash(t, nums, &nasize); /* count keys in hash part */
|
||||
/* count extra key */
|
||||
nasize += countint(ek, nums);
|
||||
totaluse++;
|
||||
/* compute new size for array part */
|
||||
na = computesizes(nums, &nasize);
|
||||
/* resize the table to new computed sizes */
|
||||
luaH_resize(L, t, nasize, totaluse - na);
|
||||
static int numusehash(const Table *t, int *nums, int *pnasize)
|
||||
{
|
||||
int totaluse = 0; /* total number of elements */
|
||||
int ause = 0; /* summation of `nums' */
|
||||
int i = sizenode(t);
|
||||
while (i--) {
|
||||
Node *n = &t->node[i];
|
||||
if (!ttisnil(gval(n))) {
|
||||
ause += countint(gkey(n), nums);
|
||||
totaluse++;
|
||||
}
|
||||
}
|
||||
*pnasize += ause;
|
||||
return totaluse;
|
||||
}
|
||||
|
||||
|
||||
static void setarrayvector(lua_State *L, Table *t, int size)
|
||||
{
|
||||
int i;
|
||||
luaM_reallocvector(L, t->array, t->sizearray, size, TValue);
|
||||
for (i = t->sizearray; i < size; i++)
|
||||
setnilvalue(&t->array[i]);
|
||||
t->sizearray = size;
|
||||
}
|
||||
|
||||
|
||||
static void setnodevector(lua_State *L, Table *t, int size)
|
||||
{
|
||||
int lsize;
|
||||
if (size == 0) { /* no elements to hash part? */
|
||||
t->node = cast(Node *, dummynode); /* use common `dummynode' */
|
||||
lsize = 0;
|
||||
} else {
|
||||
int i;
|
||||
lsize = luaO_ceillog2(size);
|
||||
if (lsize > MAXBITS)
|
||||
luaG_runerror(L, "table overflow");
|
||||
size = twoto(lsize);
|
||||
t->node = luaM_newvector(L, size, Node);
|
||||
for (i = 0; i < size; i++) {
|
||||
Node *n = gnode(t, i);
|
||||
gnext(n) = NULL;
|
||||
setnilvalue(gkey(n));
|
||||
setnilvalue(gval(n));
|
||||
}
|
||||
}
|
||||
t->lsizenode = cast_byte(lsize);
|
||||
t->lastfree = gnode(t, size); /* all positions are free */
|
||||
}
|
||||
|
||||
|
||||
void luaH_resize(lua_State *L, Table *t, int nasize, int nhsize)
|
||||
{
|
||||
int i;
|
||||
int oldasize = t->sizearray;
|
||||
int oldhsize = t->lsizenode;
|
||||
Node *nold = t->node; /* save old hash ... */
|
||||
if (nasize > oldasize) /* array part must grow? */
|
||||
setarrayvector(L, t, nasize);
|
||||
/* create new hash part with appropriate size */
|
||||
setnodevector(L, t, nhsize);
|
||||
if (nasize < oldasize) { /* array part must shrink? */
|
||||
t->sizearray = nasize;
|
||||
/* re-insert elements from vanishing slice */
|
||||
for (i = nasize; i < oldasize; i++) {
|
||||
if (!ttisnil(&t->array[i]))
|
||||
luaH_setint(L, t, i + 1, &t->array[i]);
|
||||
}
|
||||
/* shrink array */
|
||||
luaM_reallocvector(L, t->array, oldasize, nasize, TValue);
|
||||
}
|
||||
/* re-insert elements from hash part */
|
||||
for (i = twoto(oldhsize) - 1; i >= 0; i--) {
|
||||
Node *old = nold + i;
|
||||
if (!ttisnil(gval(old))) {
|
||||
/* doesn't need barrier/invalidate cache, as entry was
|
||||
already present in the table */
|
||||
setobjt2t(L, luaH_set(L, t, gkey(old)), gval(old));
|
||||
}
|
||||
}
|
||||
if (!isdummy(nold))
|
||||
luaM_freearray(L, nold, cast(size_t, twoto(oldhsize))); /* free old array */
|
||||
}
|
||||
|
||||
|
||||
void luaH_resizearray(lua_State *L, Table *t, int nasize)
|
||||
{
|
||||
int nsize = isdummy(t->node) ? 0 : sizenode(t);
|
||||
luaH_resize(L, t, nasize, nsize);
|
||||
}
|
||||
|
||||
|
||||
static void rehash(lua_State *L, Table *t, const TValue *ek)
|
||||
{
|
||||
int nasize, na;
|
||||
int nums[MAXBITS + 1]; /* nums[i] = number of keys with 2^(i-1) < k <= 2^i */
|
||||
int i;
|
||||
int totaluse;
|
||||
for (i = 0; i <= MAXBITS; i++) nums[i] = 0; /* reset counts */
|
||||
nasize = numusearray(t, nums); /* count keys in array part */
|
||||
totaluse = nasize; /* all those keys are integer keys */
|
||||
totaluse += numusehash(t, nums, &nasize); /* count keys in hash part */
|
||||
/* count extra key */
|
||||
nasize += countint(ek, nums);
|
||||
totaluse++;
|
||||
/* compute new size for array part */
|
||||
na = computesizes(nums, &nasize);
|
||||
/* resize the table to new computed sizes */
|
||||
luaH_resize(L, t, nasize, totaluse - na);
|
||||
}
|
||||
|
||||
|
||||
|
@ -365,32 +376,35 @@ static void rehash (lua_State *L, Table *t, const TValue *ek) {
|
|||
*/
|
||||
|
||||
|
||||
Table *luaH_new (lua_State *L) {
|
||||
Table *t = &luaC_newobj(L, LUA_TTABLE, sizeof(Table), NULL, 0)->h;
|
||||
t->metatable = NULL;
|
||||
t->flags = cast_byte(~0);
|
||||
t->array = NULL;
|
||||
t->sizearray = 0;
|
||||
setnodevector(L, t, 0);
|
||||
return t;
|
||||
Table *luaH_new(lua_State *L)
|
||||
{
|
||||
Table *t = &luaC_newobj(L, LUA_TTABLE, sizeof(Table), NULL, 0)->h;
|
||||
t->metatable = NULL;
|
||||
t->flags = cast_byte(~0);
|
||||
t->array = NULL;
|
||||
t->sizearray = 0;
|
||||
setnodevector(L, t, 0);
|
||||
return t;
|
||||
}
|
||||
|
||||
|
||||
void luaH_free (lua_State *L, Table *t) {
|
||||
if (!isdummy(t->node))
|
||||
luaM_freearray(L, t->node, cast(size_t, sizenode(t)));
|
||||
luaM_freearray(L, t->array, t->sizearray);
|
||||
luaM_free(L, t);
|
||||
void luaH_free(lua_State *L, Table *t)
|
||||
{
|
||||
if (!isdummy(t->node))
|
||||
luaM_freearray(L, t->node, cast(size_t, sizenode(t)));
|
||||
luaM_freearray(L, t->array, t->sizearray);
|
||||
luaM_free(L, t);
|
||||
}
|
||||
|
||||
|
||||
static Node *getfreepos (Table *t) {
|
||||
while (t->lastfree > t->node) {
|
||||
t->lastfree--;
|
||||
if (ttisnil(gkey(t->lastfree)))
|
||||
return t->lastfree;
|
||||
}
|
||||
return NULL; /* could not find a free place */
|
||||
static Node *getfreepos(Table *t)
|
||||
{
|
||||
while (t->lastfree > t->node) {
|
||||
t->lastfree--;
|
||||
if (ttisnil(gkey(t->lastfree)))
|
||||
return t->lastfree;
|
||||
}
|
||||
return NULL; /* could not find a free place */
|
||||
}
|
||||
|
||||
|
||||
|
@ -402,104 +416,109 @@ static Node *getfreepos (Table *t) {
|
|||
** put new key in its main position; otherwise (colliding node is in its main
|
||||
** position), new key goes to an empty position.
|
||||
*/
|
||||
TValue *luaH_newkey (lua_State *L, Table *t, const TValue *key) {
|
||||
Node *mp;
|
||||
if (ttisnil(key)) luaG_runerror(L, "table index is nil");
|
||||
else if (ttisnumber(key) && luai_numisnan(L, nvalue(key)))
|
||||
luaG_runerror(L, "table index is NaN");
|
||||
mp = mainposition(t, key);
|
||||
if (!ttisnil(gval(mp)) || isdummy(mp)) { /* main position is taken? */
|
||||
Node *othern;
|
||||
Node *n = getfreepos(t); /* get a free place */
|
||||
if (n == NULL) { /* cannot find a free place? */
|
||||
rehash(L, t, key); /* grow table */
|
||||
/* whatever called 'newkey' take care of TM cache and GC barrier */
|
||||
return luaH_set(L, t, key); /* insert key into grown table */
|
||||
TValue *luaH_newkey(lua_State *L, Table *t, const TValue *key)
|
||||
{
|
||||
Node *mp;
|
||||
if (ttisnil(key)) luaG_runerror(L, "table index is nil");
|
||||
else if (ttisnumber(key) && luai_numisnan(L, nvalue(key)))
|
||||
luaG_runerror(L, "table index is NaN");
|
||||
mp = mainposition(t, key);
|
||||
if (!ttisnil(gval(mp)) || isdummy(mp)) { /* main position is taken? */
|
||||
Node *othern;
|
||||
Node *n = getfreepos(t); /* get a free place */
|
||||
if (n == NULL) { /* cannot find a free place? */
|
||||
rehash(L, t, key); /* grow table */
|
||||
/* whatever called 'newkey' take care of TM cache and GC barrier */
|
||||
return luaH_set(L, t, key); /* insert key into grown table */
|
||||
}
|
||||
lua_assert(!isdummy(n));
|
||||
othern = mainposition(t, gkey(mp));
|
||||
if (othern != mp) { /* is colliding node out of its main position? */
|
||||
/* yes; move colliding node into free position */
|
||||
while (gnext(othern) != mp) othern = gnext(othern); /* find previous */
|
||||
gnext(othern) = n; /* redo the chain with `n' in place of `mp' */
|
||||
*n = *mp; /* copy colliding node into free pos. (mp->next also goes) */
|
||||
gnext(mp) = NULL; /* now `mp' is free */
|
||||
setnilvalue(gval(mp));
|
||||
} else { /* colliding node is in its own main position */
|
||||
/* new node will go into free position */
|
||||
gnext(n) = gnext(mp); /* chain new position */
|
||||
gnext(mp) = n;
|
||||
mp = n;
|
||||
}
|
||||
}
|
||||
lua_assert(!isdummy(n));
|
||||
othern = mainposition(t, gkey(mp));
|
||||
if (othern != mp) { /* is colliding node out of its main position? */
|
||||
/* yes; move colliding node into free position */
|
||||
while (gnext(othern) != mp) othern = gnext(othern); /* find previous */
|
||||
gnext(othern) = n; /* redo the chain with `n' in place of `mp' */
|
||||
*n = *mp; /* copy colliding node into free pos. (mp->next also goes) */
|
||||
gnext(mp) = NULL; /* now `mp' is free */
|
||||
setnilvalue(gval(mp));
|
||||
}
|
||||
else { /* colliding node is in its own main position */
|
||||
/* new node will go into free position */
|
||||
gnext(n) = gnext(mp); /* chain new position */
|
||||
gnext(mp) = n;
|
||||
mp = n;
|
||||
}
|
||||
}
|
||||
setobj2t(L, gkey(mp), key);
|
||||
luaC_barrierback(L, obj2gco(t), key);
|
||||
lua_assert(ttisnil(gval(mp)));
|
||||
return gval(mp);
|
||||
setobj2t(L, gkey(mp), key);
|
||||
luaC_barrierback(L, obj2gco(t), key);
|
||||
lua_assert(ttisnil(gval(mp)));
|
||||
return gval(mp);
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
** search function for integers
|
||||
*/
|
||||
const TValue *luaH_getint (Table *t, int key) {
|
||||
/* (1 <= key && key <= t->sizearray) */
|
||||
if (cast(unsigned int, key-1) < cast(unsigned int, t->sizearray))
|
||||
return &t->array[key-1];
|
||||
else {
|
||||
lua_Number nk = cast_num(key);
|
||||
Node *n = hashnum(t, nk);
|
||||
do { /* check whether `key' is somewhere in the chain */
|
||||
if (ttisnumber(gkey(n)) && luai_numeq(nvalue(gkey(n)), nk))
|
||||
return gval(n); /* that's it */
|
||||
else n = gnext(n);
|
||||
} while (n);
|
||||
return luaO_nilobject;
|
||||
}
|
||||
const TValue *luaH_getint(Table *t, int key)
|
||||
{
|
||||
/* (1 <= key && key <= t->sizearray) */
|
||||
if (cast(unsigned int, key - 1) < cast(unsigned int, t->sizearray))
|
||||
return &t->array[key - 1];
|
||||
else {
|
||||
lua_Number nk = cast_num(key);
|
||||
Node *n = hashnum(t, nk);
|
||||
do { /* check whether `key' is somewhere in the chain */
|
||||
if (ttisnumber(gkey(n)) && luai_numeq(nvalue(gkey(n)), nk))
|
||||
return gval(n); /* that's it */
|
||||
else n = gnext(n);
|
||||
} while (n);
|
||||
return luaO_nilobject;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
** search function for short strings
|
||||
*/
|
||||
const TValue *luaH_getstr (Table *t, TString *key) {
|
||||
Node *n = hashstr(t, key);
|
||||
lua_assert(key->tsv.tt == LUA_TSHRSTR);
|
||||
do { /* check whether `key' is somewhere in the chain */
|
||||
if (ttisshrstring(gkey(n)) && eqshrstr(rawtsvalue(gkey(n)), key))
|
||||
return gval(n); /* that's it */
|
||||
else n = gnext(n);
|
||||
} while (n);
|
||||
return luaO_nilobject;
|
||||
const TValue *luaH_getstr(Table *t, TString *key)
|
||||
{
|
||||
Node *n = hashstr(t, key);
|
||||
lua_assert(key->tsv.tt == LUA_TSHRSTR);
|
||||
do { /* check whether `key' is somewhere in the chain */
|
||||
if (ttisshrstring(gkey(n)) && eqshrstr(rawtsvalue(gkey(n)), key))
|
||||
return gval(n); /* that's it */
|
||||
else n = gnext(n);
|
||||
} while (n);
|
||||
return luaO_nilobject;
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
** main search function
|
||||
*/
|
||||
const TValue *luaH_get (Table *t, const TValue *key) {
|
||||
switch (ttype(key)) {
|
||||
case LUA_TSHRSTR: return luaH_getstr(t, rawtsvalue(key));
|
||||
case LUA_TNIL: return luaO_nilobject;
|
||||
case LUA_TNUMBER: {
|
||||
int k;
|
||||
lua_Number n = nvalue(key);
|
||||
lua_number2int(k, n);
|
||||
if (luai_numeq(cast_num(k), n)) /* index is int? */
|
||||
return luaH_getint(t, k); /* use specialized version */
|
||||
/* else go through */
|
||||
const TValue *luaH_get(Table *t, const TValue *key)
|
||||
{
|
||||
switch (ttype(key)) {
|
||||
case LUA_TSHRSTR:
|
||||
return luaH_getstr(t, rawtsvalue(key));
|
||||
case LUA_TNIL:
|
||||
return luaO_nilobject;
|
||||
case LUA_TNUMBER: {
|
||||
int k;
|
||||
lua_Number n = nvalue(key);
|
||||
lua_number2int(k, n);
|
||||
if (luai_numeq(cast_num(k), n)) /* index is int? */
|
||||
return luaH_getint(t, k); /* use specialized version */
|
||||
/* else go through */
|
||||
}
|
||||
default: {
|
||||
Node *n = mainposition(t, key);
|
||||
do { /* check whether `key' is somewhere in the chain */
|
||||
if (luaV_rawequalobj(gkey(n), key))
|
||||
return gval(n); /* that's it */
|
||||
else n = gnext(n);
|
||||
} while (n);
|
||||
return luaO_nilobject;
|
||||
}
|
||||
}
|
||||
default: {
|
||||
Node *n = mainposition(t, key);
|
||||
do { /* check whether `key' is somewhere in the chain */
|
||||
if (luaV_rawequalobj(gkey(n), key))
|
||||
return gval(n); /* that's it */
|
||||
else n = gnext(n);
|
||||
} while (n);
|
||||
return luaO_nilobject;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
|
@ -507,49 +526,52 @@ const TValue *luaH_get (Table *t, const TValue *key) {
|
|||
** beware: when using this function you probably need to check a GC
|
||||
** barrier and invalidate the TM cache.
|
||||
*/
|
||||
TValue *luaH_set (lua_State *L, Table *t, const TValue *key) {
|
||||
const TValue *p = luaH_get(t, key);
|
||||
if (p != luaO_nilobject)
|
||||
return cast(TValue *, p);
|
||||
else return luaH_newkey(L, t, key);
|
||||
TValue *luaH_set(lua_State *L, Table *t, const TValue *key)
|
||||
{
|
||||
const TValue *p = luaH_get(t, key);
|
||||
if (p != luaO_nilobject)
|
||||
return cast(TValue *, p);
|
||||
else return luaH_newkey(L, t, key);
|
||||
}
|
||||
|
||||
|
||||
void luaH_setint (lua_State *L, Table *t, int key, TValue *value) {
|
||||
const TValue *p = luaH_getint(t, key);
|
||||
TValue *cell;
|
||||
if (p != luaO_nilobject)
|
||||
cell = cast(TValue *, p);
|
||||
else {
|
||||
TValue k;
|
||||
setnvalue(&k, cast_num(key));
|
||||
cell = luaH_newkey(L, t, &k);
|
||||
}
|
||||
setobj2t(L, cell, value);
|
||||
}
|
||||
|
||||
|
||||
static int unbound_search (Table *t, unsigned int j) {
|
||||
unsigned int i = j; /* i is zero or a present index */
|
||||
j++;
|
||||
/* find `i' and `j' such that i is present and j is not */
|
||||
while (!ttisnil(luaH_getint(t, j))) {
|
||||
i = j;
|
||||
j *= 2;
|
||||
if (j > cast(unsigned int, MAX_INT)) { /* overflow? */
|
||||
/* table was built with bad purposes: resort to linear search */
|
||||
i = 1;
|
||||
while (!ttisnil(luaH_getint(t, i))) i++;
|
||||
return i - 1;
|
||||
void luaH_setint(lua_State *L, Table *t, int key, TValue *value)
|
||||
{
|
||||
const TValue *p = luaH_getint(t, key);
|
||||
TValue *cell;
|
||||
if (p != luaO_nilobject)
|
||||
cell = cast(TValue *, p);
|
||||
else {
|
||||
TValue k;
|
||||
setnvalue(&k, cast_num(key));
|
||||
cell = luaH_newkey(L, t, &k);
|
||||
}
|
||||
}
|
||||
/* now do a binary search between them */
|
||||
while (j - i > 1) {
|
||||
unsigned int m = (i+j)/2;
|
||||
if (ttisnil(luaH_getint(t, m))) j = m;
|
||||
else i = m;
|
||||
}
|
||||
return i;
|
||||
setobj2t(L, cell, value);
|
||||
}
|
||||
|
||||
|
||||
static int unbound_search(Table *t, unsigned int j)
|
||||
{
|
||||
unsigned int i = j; /* i is zero or a present index */
|
||||
j++;
|
||||
/* find `i' and `j' such that i is present and j is not */
|
||||
while (!ttisnil(luaH_getint(t, j))) {
|
||||
i = j;
|
||||
j *= 2;
|
||||
if (j > cast(unsigned int, MAX_INT)) { /* overflow? */
|
||||
/* table was built with bad purposes: resort to linear search */
|
||||
i = 1;
|
||||
while (!ttisnil(luaH_getint(t, i))) i++;
|
||||
return i - 1;
|
||||
}
|
||||
}
|
||||
/* now do a binary search between them */
|
||||
while (j - i > 1) {
|
||||
unsigned int m = (i + j) / 2;
|
||||
if (ttisnil(luaH_getint(t, m))) j = m;
|
||||
else i = m;
|
||||
}
|
||||
return i;
|
||||
}
|
||||
|
||||
|
||||
|
@ -557,32 +579,34 @@ static int unbound_search (Table *t, unsigned int j) {
|
|||
** Try to find a boundary in table `t'. A `boundary' is an integer index
|
||||
** such that t[i] is non-nil and t[i+1] is nil (and 0 if t[1] is nil).
|
||||
*/
|
||||
int luaH_getn (Table *t) {
|
||||
unsigned int j = t->sizearray;
|
||||
if (j > 0 && ttisnil(&t->array[j - 1])) {
|
||||
/* there is a boundary in the array part: (binary) search for it */
|
||||
unsigned int i = 0;
|
||||
while (j - i > 1) {
|
||||
unsigned int m = (i+j)/2;
|
||||
if (ttisnil(&t->array[m - 1])) j = m;
|
||||
else i = m;
|
||||
int luaH_getn(Table *t)
|
||||
{
|
||||
unsigned int j = t->sizearray;
|
||||
if (j > 0 && ttisnil(&t->array[j - 1])) {
|
||||
/* there is a boundary in the array part: (binary) search for it */
|
||||
unsigned int i = 0;
|
||||
while (j - i > 1) {
|
||||
unsigned int m = (i + j) / 2;
|
||||
if (ttisnil(&t->array[m - 1])) j = m;
|
||||
else i = m;
|
||||
}
|
||||
return i;
|
||||
}
|
||||
return i;
|
||||
}
|
||||
/* else must find a boundary in hash part */
|
||||
else if (isdummy(t->node)) /* hash part is empty? */
|
||||
return j; /* that is easy... */
|
||||
else return unbound_search(t, j);
|
||||
/* else must find a boundary in hash part */
|
||||
else if (isdummy(t->node)) /* hash part is empty? */
|
||||
return j; /* that is easy... */
|
||||
else return unbound_search(t, j);
|
||||
}
|
||||
|
||||
|
||||
|
||||
#if defined(LUA_DEBUG)
|
||||
|
||||
Node *luaH_mainposition (const Table *t, const TValue *key) {
|
||||
return mainposition(t, key);
|
||||
Node *luaH_mainposition(const Table *t, const TValue *key)
|
||||
{
|
||||
return mainposition(t, key);
|
||||
}
|
||||
|
||||
int luaH_isdummy (Node *n) { return isdummy(n); }
|
||||
int luaH_isdummy(Node *n) { return isdummy(n); }
|
||||
|
||||
#endif
|
||||
|
|
Loading…
Add table
Add a link
Reference in a new issue