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libdecnumber: Introduce decNumberIntegralToInt128
This will be used to implement PowerPC's dctfixqq. Signed-off-by: Luis Pires <luis.pires@eldorado.org.br> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-Id: <20211029192417.400707-7-luis.pires@eldorado.org.br> Signed-off-by: David Gibson <david@gibson.dropbear.id.au>
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e06049f380
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21d7826fdb
4 changed files with 102 additions and 4 deletions
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@ -124,6 +124,8 @@
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uint32_t decNumberToUInt32(const decNumber *, decContext *);
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int32_t decNumberToInt32(const decNumber *, decContext *);
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int64_t decNumberIntegralToInt64(const decNumber *dn, decContext *set);
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void decNumberIntegralToInt128(const decNumber *dn, decContext *set,
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uint64_t *plow, uint64_t *phigh);
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uint8_t * decNumberGetBCD(const decNumber *, uint8_t *);
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decNumber * decNumberSetBCD(decNumber *, const uint8_t *, uint32_t);
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@ -98,7 +98,7 @@
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/* Shared lookup tables */
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extern const uByte DECSTICKYTAB[10]; /* re-round digits if sticky */
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extern const uLong DECPOWERS[19]; /* powers of ten table */
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extern const uLong DECPOWERS[20]; /* powers of ten table */
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/* The following are included from decDPD.h */
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extern const uShort DPD2BIN[1024]; /* DPD -> 0-999 */
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extern const uShort BIN2DPD[1000]; /* 0-999 -> DPD */
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@ -53,12 +53,13 @@ static const Flag *mfctop=(Flag *)&mfcone; /* -> top byte */
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const uByte DECSTICKYTAB[10]={1,1,2,3,4,6,6,7,8,9}; /* used if sticky */
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/* ------------------------------------------------------------------ */
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/* Powers of ten (powers[n]==10**n, 0<=n<=9) */
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/* Powers of ten (powers[n]==10**n, 0<=n<=19) */
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/* ------------------------------------------------------------------ */
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const uLong DECPOWERS[19] = {1, 10, 100, 1000, 10000, 100000, 1000000,
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const uLong DECPOWERS[20] = {1, 10, 100, 1000, 10000, 100000, 1000000,
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10000000, 100000000, 1000000000, 10000000000ULL, 100000000000ULL,
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1000000000000ULL, 10000000000000ULL, 100000000000000ULL, 1000000000000000ULL,
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10000000000000000ULL, 100000000000000000ULL, 1000000000000000000ULL, };
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10000000000000000ULL, 100000000000000000ULL, 1000000000000000000ULL,
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10000000000000000000ULL,};
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/* ------------------------------------------------------------------ */
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/* decContextClearStatus -- clear bits in current status */
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@ -264,6 +264,7 @@ static decNumber * decTrim(decNumber *, decContext *, Flag, Int *);
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static Int decUnitAddSub(const Unit *, Int, const Unit *, Int, Int,
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Unit *, Int);
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static Int decUnitCompare(const Unit *, Int, const Unit *, Int, Int);
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static bool mulUInt128ByPowOf10(uLong *, uLong *, uInt);
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#if !DECSUBSET
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/* decFinish == decFinalize when no subset arithmetic needed */
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@ -542,6 +543,68 @@ Invalid:
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return 0;
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} /* decNumberIntegralToInt64 */
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/* ------------------------------------------------------------------ */
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/* decNumberIntegralToInt128 -- conversion to int128 */
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/* */
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/* dn is the decNumber to convert. dn is assumed to have been */
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/* rounded to a floating point integer value. */
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/* set is the context for reporting errors */
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/* returns the converted decNumber via plow and phigh */
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/* */
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/* Invalid is set if the decNumber is a NaN, Infinite or is out of */
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/* range for a signed 128 bit integer. */
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/* ------------------------------------------------------------------ */
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void decNumberIntegralToInt128(const decNumber *dn, decContext *set,
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uint64_t *plow, uint64_t *phigh)
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{
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int d; /* work */
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const Unit *up; /* .. */
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uint64_t lo = 0, hi = 0;
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if (decNumberIsSpecial(dn) || (dn->exponent < 0) ||
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(dn->digits + dn->exponent > 39)) {
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goto Invalid;
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}
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up = dn->lsu; /* -> lsu */
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for (d = (dn->digits - 1) / DECDPUN; d >= 0; d--) {
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if (mulu128(&lo, &hi, DECDPUNMAX + 1)) {
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/* overflow */
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goto Invalid;
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}
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if (uadd64_overflow(lo, up[d], &lo)) {
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if (uadd64_overflow(hi, 1, &hi)) {
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/* overflow */
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goto Invalid;
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}
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}
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}
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if (mulUInt128ByPowOf10(&lo, &hi, dn->exponent)) {
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/* overflow */
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goto Invalid;
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}
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if (decNumberIsNegative(dn)) {
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if (lo == 0) {
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*phigh = -hi;
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*plow = 0;
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} else {
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*phigh = ~hi;
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*plow = -lo;
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}
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} else {
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*plow = lo;
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*phigh = hi;
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}
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return;
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Invalid:
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decContextSetStatus(set, DEC_Invalid_operation);
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} /* decNumberIntegralToInt128 */
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/* ------------------------------------------------------------------ */
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/* to-scientific-string -- conversion to numeric string */
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@ -7885,6 +7948,38 @@ static Int decGetDigits(Unit *uar, Int len) {
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return digits;
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} /* decGetDigits */
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/* ------------------------------------------------------------------ */
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/* mulUInt128ByPowOf10 -- multiply a 128-bit unsigned integer by a */
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/* power of 10. */
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/* */
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/* The 128-bit factor composed of plow and phigh is multiplied */
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/* by 10^exp. */
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/* */
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/* plow pointer to the low 64 bits of the first factor */
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/* phigh pointer to the high 64 bits of the first factor */
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/* exp the exponent of the power of 10 of the second factor */
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/* */
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/* If the result fits in 128 bits, returns false and the */
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/* multiplication result through plow and phigh. */
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/* Otherwise, returns true. */
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/* ------------------------------------------------------------------ */
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static bool mulUInt128ByPowOf10(uLong *plow, uLong *phigh, uInt pow10)
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{
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while (pow10 >= ARRAY_SIZE(powers)) {
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if (mulu128(plow, phigh, powers[ARRAY_SIZE(powers) - 1])) {
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/* Overflow */
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return true;
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}
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pow10 -= ARRAY_SIZE(powers) - 1;
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}
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if (pow10 > 0) {
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return mulu128(plow, phigh, powers[pow10]);
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} else {
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return false;
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}
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}
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#if DECTRACE | DECCHECK
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/* ------------------------------------------------------------------ */
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/* decNumberShow -- display a number [debug aid] */
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