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@@ -1,5 +1,5 @@
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/*
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-** $Id: lmathlib.c,v 1.119 2016/12/22 13:08:50 roberto Exp roberto $
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+** $Id: lmathlib.c,v 1.120 2018/03/05 14:07:48 roberto Exp roberto $
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** Standard mathematical library
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** See Copyright Notice in lua.h
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*/
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@@ -273,7 +273,7 @@ static I xorshift128plus (I *state) {
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}
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-#define mask53 (~(~0ll << 53))
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+#define mask53 (~(~0LLU << 53))
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/*
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** Convert 53 bits from a random integer into a double in the
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@@ -283,8 +283,8 @@ static double I2d (I x) {
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return (x & mask53) * twotomin53;
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}
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-/* convert an 'I' to a lua_Integer */
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-#define I2Int(x) ((lua_Integer)(x))
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+/* convert an 'I' to a lua_Unsigned */
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+#define I2UInt(x) ((lua_Unsigned)(x))
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/* convert a lua_Integer to an 'I' */
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#define Int2I(x) ((I)(x))
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@@ -358,7 +358,7 @@ static I xorshift128plus (I *state) {
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*/
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#define mask32 0xffffffff
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-#define mask21 (~(~0 << 21))
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+#define mask21 (~(~0U << 21))
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#define twoto32 4294967296.0 /* 2^32 */
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@@ -366,12 +366,12 @@ static double I2d (I x) {
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return ((x.x1 & mask21) * twoto32 + (x.x2 & mask32)) * twotomin53;
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}
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-static lua_Integer I2Int (I x) {
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- return (((lua_Integer)x.x1 << 31) << 1) | x.x2;
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+static lua_Unsigned I2UInt (I x) {
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+ return ((lua_Unsigned)x.x1 << 31 << 1) | x.x2;
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}
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static I Int2I (lua_Integer n) {
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- return pack(n, (n >> 31) >> 1);
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+ return pack(n, n >> 31 >> 1);
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}
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#endif /* } */
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@@ -385,9 +385,50 @@ typedef struct {
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} RanState;
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+/*
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+** Project the random integer 'ran' into the interval [0, n].
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+** Because 'ran' has 2^B possible values, the projection can only
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+** be uniform when the size of the interval [0, n] is a power of 2
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+** (exact division). With the fairest possible projection (e.g.,
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+** '(ran % (n + 1))'), the maximum bias is 1 in 2^B/n.
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+** For a "small" 'n', this bias is acceptable. (Here, we accept
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+** a maximum bias of 0.0001%.) For a larger 'n', we first
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+** compute 'lim', the smallest (2^b - 1) not smaller than 'n',
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+** to get a uniform projection into [0,lim]. If the result is
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+** inside [0, n], we are done. Otherwise, we try we another
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+** 'ran' until we have a result inside the interval.
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+*/
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+
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+#define MAXBIAS 1000000
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+
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+static lua_Unsigned project (lua_Unsigned ran, lua_Unsigned n,
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+ RanState *state) {
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+ if (n < LUA_MAXUNSIGNED / MAXBIAS)
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+ return ran % (n + 1);
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+ else {
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+ /* compute the smallest (2^b - 1) not smaller than 'n' */
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+ lua_Unsigned lim = n;
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+ lim |= (lim >> 1);
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+ lim |= (lim >> 2);
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+ lim |= (lim >> 4);
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+ lim |= (lim >> 8);
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+ lim |= (lim >> 16);
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+#if (LUA_MAXINTEGER >> 30 >> 2) > 0
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+ lim |= (lim >> 32); /* integer type has more than 32 bits */
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+#endif
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+ lua_assert((lim & (lim + 1)) == 0 /* 'lim + 1' is a power of 2 */
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+ && lim >= n /* not smaller than 'n' */
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+ && (lim >> 1) < n); /* it is the smallest one */
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+ while ((ran & lim) > n)
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+ ran = I2UInt(xorshift128plus(state->s));
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+ return ran & lim;
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+ }
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+}
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+
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+
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static int math_random (lua_State *L) {
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lua_Integer low, up;
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- double r;
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+ lua_Unsigned p;
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RanState *state = (RanState *)lua_touserdata(L, lua_upvalueindex(1));
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I rv = xorshift128plus(state->s); /* next pseudo-random value */
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switch (lua_gettop(L)) { /* check number of arguments */
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@@ -399,7 +440,7 @@ static int math_random (lua_State *L) {
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low = 1;
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up = luaL_checkinteger(L, 1);
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if (up == 0) { /* single 0 as argument? */
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- lua_pushinteger(L, I2Int(rv)); /* full random integer */
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+ lua_pushinteger(L, I2UInt(rv)); /* full random integer */
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return 1;
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}
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break;
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@@ -413,11 +454,9 @@ static int math_random (lua_State *L) {
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}
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/* random integer in the interval [low, up] */
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luaL_argcheck(L, low <= up, 1, "interval is empty");
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- luaL_argcheck(L, low >= 0 || up <= LUA_MAXINTEGER + low, 1,
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- "interval too large");
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- r = I2d(rv); /* convert random value to a double */
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- r *= (double)(up - low) + 1.0; /* scale it */
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- lua_pushinteger(L, (lua_Integer)r + low);
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+ /* project random integer into the interval [0, up - low] */
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+ p = project(I2UInt(rv), (lua_Unsigned)up - (lua_Unsigned)low, state);
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+ lua_pushinteger(L, p + (lua_Unsigned)low);
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return 1;
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}
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