py: Fix float to int conversion for large exponents.
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py/mpz.c
82
py/mpz.c
@ -590,6 +590,14 @@ mpz_t *mpz_from_ll(long long val, bool is_signed) {
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return z;
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}
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#if MICROPY_PY_BUILTINS_FLOAT
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mpz_t *mpz_from_float(mp_float_t val) {
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mpz_t *z = mpz_zero();
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mpz_set_from_float(z, val);
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return z;
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}
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#endif
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mpz_t *mpz_from_str(const char *str, mp_uint_t len, bool neg, mp_uint_t base) {
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mpz_t *z = mpz_zero();
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mpz_set_from_str(z, str, len, neg, base);
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@ -682,6 +690,80 @@ void mpz_set_from_ll(mpz_t *z, long long val, bool is_signed) {
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}
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}
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#if MICROPY_PY_BUILTINS_FLOAT
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void mpz_set_from_float(mpz_t *z, mp_float_t src) {
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#if MICROPY_FLOAT_IMPL == MICROPY_FLOAT_IMPL_DOUBLE
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#define EXP_SZ 11
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#define FRC_SZ 52
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typedef uint64_t mp_float_int_t;
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#else
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#define EXP_SZ 8
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#define FRC_SZ 23
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typedef uint32_t mp_float_int_t;
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#endif
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union {
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mp_float_t f;
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struct { mp_float_int_t frc:FRC_SZ, exp:EXP_SZ, sgn:1; } p;
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} u = {src};
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z->neg = u.p.sgn;
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if (u.p.exp == 0) {
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// value == 0 || value < 1
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mpz_init_zero(z);
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} else if (u.p.exp == ((1 << EXP_SZ) - 1)) {
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// inf or NaN
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#if 0
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// TODO: this probably isn't the right place to throw an exception
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if(u.p.frc == 0)
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nlr_raise(mp_obj_new_exception_msg_varg(&mp_type_OverflowError, "cannot convert float infinity to integer"));
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else
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nlr_raise(mp_obj_new_exception_msg_varg(&mp_type_ValueError, "cannot convert float NaN to integer"));
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#else
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mpz_init_zero(z);
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#endif
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} else {
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const int adj_exp = (int)u.p.exp - ((1 << (EXP_SZ - 1)) - 1);
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if (adj_exp < 0) {
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// value < 1 , truncates to 0
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mpz_init_zero(z);
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} else if (adj_exp == 0) {
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// 1 <= value < 2 , so truncates to 1
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mpz_init_from_int(z, 1);
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} else {
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// 2 <= value
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const int dig_cnt = (adj_exp + 1 + (DIG_SIZE - 1)) / DIG_SIZE;
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const unsigned int rem = adj_exp % DIG_SIZE;
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int dig_ind, shft;
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mp_float_int_t frc = u.p.frc | ((mp_float_int_t)1 << FRC_SZ);
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if (adj_exp < FRC_SZ) {
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shft = 0;
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dig_ind = 0;
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frc >>= FRC_SZ - adj_exp;
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} else {
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shft = (rem - FRC_SZ) % DIG_SIZE;
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dig_ind = (adj_exp - FRC_SZ) / DIG_SIZE;
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}
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mpz_need_dig(z, dig_cnt);
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z->len = dig_cnt;
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if (dig_ind != 0) {
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memset(z->dig, 0, dig_ind * sizeof(mpz_dig_t));
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}
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if (shft != 0) {
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z->dig[dig_ind++] = (frc << shft) & DIG_MASK;
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frc >>= DIG_SIZE - shft;
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}
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while (dig_ind != dig_cnt) {
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z->dig[dig_ind++] = frc & DIG_MASK;
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frc >>= DIG_SIZE;
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}
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}
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}
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}
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#undef EXP_SZ
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#undef FRC_SZ
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#endif
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// returns number of bytes from str that were processed
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mp_uint_t mpz_set_from_str(mpz_t *z, const char *str, mp_uint_t len, bool neg, mp_uint_t base) {
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assert(base < 36);
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6
py/mpz.h
6
py/mpz.h
@ -85,6 +85,9 @@ void mpz_deinit(mpz_t *z);
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mpz_t *mpz_zero(void);
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mpz_t *mpz_from_int(mp_int_t i);
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mpz_t *mpz_from_ll(long long i, bool is_signed);
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#if MICROPY_PY_BUILTINS_FLOAT
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mpz_t *mpz_from_float(mp_float_t i);
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#endif
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mpz_t *mpz_from_str(const char *str, mp_uint_t len, bool neg, mp_uint_t base);
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void mpz_free(mpz_t *z);
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@ -93,6 +96,9 @@ mpz_t *mpz_clone(const mpz_t *src);
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void mpz_set(mpz_t *dest, const mpz_t *src);
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void mpz_set_from_int(mpz_t *z, mp_int_t src);
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void mpz_set_from_ll(mpz_t *z, long long i, bool is_signed);
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#if MICROPY_PY_BUILTINS_FLOAT
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void mpz_set_from_float(mpz_t *z, mp_float_t src);
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#endif
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mp_uint_t mpz_set_from_str(mpz_t *z, const char *str, mp_uint_t len, bool neg, mp_uint_t base);
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bool mpz_is_zero(const mpz_t *z);
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@ -298,9 +298,9 @@ mp_obj_t mp_obj_new_int_from_uint(mp_uint_t value) {
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#if MICROPY_PY_BUILTINS_FLOAT
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mp_obj_t mp_obj_new_int_from_float(mp_float_t val) {
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// TODO: This doesn't handle numbers with large exponent
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long long i = MICROPY_FLOAT_C_FUN(trunc)(val);
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return mp_obj_new_int_from_ll(i);
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mp_obj_int_t *o = mp_obj_int_new_mpz();
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mpz_set_from_float(&o->mpz, val);
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return o;
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}
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#endif
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@ -1,10 +1,24 @@
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# This case occurs with time.time() values
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print(int(1418774543.))
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# TODO: General case with large exponent
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#print(int(2.**100))
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print(int(2.**100))
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print("%d" % 1418774543.)
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# TODO: General case with large exponent
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#print("%d" % 2.**100)
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print("%d" % 2.**100)
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testpass = True
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for i in range(0,1024):
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bitcnt = len(bin(int(2.**i))) - 3;
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if i != bitcnt:
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print('fail: 2**%u was %u bits long' % (i, bitcnt));
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testpass = False
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print("power of 2 test: %s" % (testpass and 'passed' or 'failed'))
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testpass = True
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for i in range(0,23):
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digcnt = len(str(int(10.**i))) - 1;
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if i != digcnt:
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print('fail: 10**%u was %u digits long' % (i, digcnt));
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testpass = False
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print("power of 10 test: %s" % (testpass and 'passed' or 'failed'))
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