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-rw-r--r--stdio-common/_itoa.c72
1 files changed, 36 insertions, 36 deletions
diff --git a/stdio-common/_itoa.c b/stdio-common/_itoa.c
index 38d5367ba2..f85b15b030 100644
--- a/stdio-common/_itoa.c
+++ b/stdio-common/_itoa.c
@@ -49,7 +49,7 @@ Cambridge, MA 02139, USA. */
struct base_table_t
{
#if (UDIV_TIME > 2 * UMUL_TIME)
- mp_limb base_multiplier;
+ mp_limb_t base_multiplier;
#endif
char flag;
char post_shift;
@@ -58,9 +58,9 @@ struct base_table_t
{
char normalization_steps;
char ndigits;
- mp_limb base PACK;
+ mp_limb_t base PACK;
#if UDIV_TIME > 2 * UMUL_TIME
- mp_limb base_ninv PACK;
+ mp_limb_t base_ninv PACK;
#endif
} big;
#endif
@@ -183,12 +183,12 @@ _itoa (value, buflim, base, upper_case)
do \
{ \
/* `unsigned long long int' always has 64 bits. */ \
- mp_limb work_hi = value >> (64 - BITS_PER_MP_LIMB); \
+ mp_limb_t work_hi = value >> (64 - BITS_PER_MP_LIMB); \
\
if (BITS_PER_MP_LIMB == 32) \
if (work_hi != 0) \
{ \
- mp_limb work_lo; \
+ mp_limb_t work_lo; \
int cnt; \
\
work_lo = value & 0xfffffffful; \
@@ -228,11 +228,11 @@ _itoa (value, buflim, base, upper_case)
default:
{
#if BITS_PER_MP_LIMB == 64
- mp_limb base_multiplier = brec->base_multiplier;
+ mp_limb_t base_multiplier = brec->base_multiplier;
if (brec->flag)
while (value != 0)
{
- mp_limb quo, rem, x, dummy;
+ mp_limb_t quo, rem, x, dummy;
umul_ppmm (x, dummy, value, base_multiplier);
quo = (x + ((value - x) >> 1)) >> (brec->post_shift - 1);
@@ -243,7 +243,7 @@ _itoa (value, buflim, base, upper_case)
else
while (value != 0)
{
- mp_limb quo, rem, x, dummy;
+ mp_limb_t quo, rem, x, dummy;
umul_ppmm (x, dummy, value, base_multiplier);
quo = x >> brec->post_shift;
@@ -253,36 +253,36 @@ _itoa (value, buflim, base, upper_case)
}
#endif
#if BITS_PER_MP_LIMB == 32
- mp_limb t[3];
+ mp_limb_t t[3];
int n;
/* First convert x0 to 1-3 words in base s->big.base.
Optimize for frequent cases of 32 bit numbers. */
- if ((mp_limb) (value >> 32) >= 1)
+ if ((mp_limb_t) (value >> 32) >= 1)
{
int big_normalization_steps = brec->big.normalization_steps;
- mp_limb big_base_norm = brec->big.base << big_normalization_steps;
+ mp_limb_t big_base_norm = brec->big.base << big_normalization_steps;
- if ((mp_limb) (value >> 32) >= brec->big.base)
+ if ((mp_limb_t) (value >> 32) >= brec->big.base)
{
- mp_limb x1hi, x1lo, r;
+ mp_limb_t x1hi, x1lo, r;
/* If you want to optimize this, take advantage of
that the quotient in the first udiv_qrnnd will
always be very small. It might be faster just to
subtract in a tight loop. */
#if UDIV_TIME > 2 * UMUL_TIME
- mp_limb x, xh, xl;
+ mp_limb_t x, xh, xl;
if (big_normalization_steps == 0)
xh = 0;
else
- xh = (mp_limb) (value >> 64 - big_normalization_steps);
- xl = (mp_limb) (value >> 32 - big_normalization_steps);
+ xh = (mp_limb_t) (value >> 64 - big_normalization_steps);
+ xl = (mp_limb_t) (value >> 32 - big_normalization_steps);
udiv_qrnnd_preinv (x1hi, r, xh, xl, big_base_norm,
brec->big.base_ninv);
- xl = ((mp_limb) value) << big_normalization_steps;
+ xl = ((mp_limb_t) value) << big_normalization_steps;
udiv_qrnnd_preinv (x1lo, x, r, xl, big_base_norm,
big_normalization_steps);
t[2] = x >> big_normalization_steps;
@@ -297,16 +297,16 @@ _itoa (value, buflim, base, upper_case)
big_normalization_steps);
t[1] = x >> big_normalization_steps;
#elif UDIV_NEEDS_NORMALIZATION
- mp_limb x, xh, xl;
+ mp_limb_t x, xh, xl;
if (big_normalization_steps == 0)
xh = 0;
else
- xh = (mp_limb) (value >> 64 - big_normalization_steps);
- xl = (mp_limb) (value >> 32 - big_normalization_steps);
+ xh = (mp_limb_t) (value >> 64 - big_normalization_steps);
+ xl = (mp_limb_t) (value >> 32 - big_normalization_steps);
udiv_qrnnd (x1hi, r, xh, xl, big_base_norm);
- xl = ((mp_limb) value) << big_normalization_steps;
+ xl = ((mp_limb_t) value) << big_normalization_steps;
udiv_qrnnd (x1lo, x, r, xl, big_base_norm);
t[2] = x >> big_normalization_steps;
@@ -319,9 +319,9 @@ _itoa (value, buflim, base, upper_case)
udiv_qrnnd (t[0], x, xh, xl, big_base_norm);
t[1] = x >> big_normalization_steps;
#else
- udiv_qrnnd (x1hi, r, 0, (mp_limb) (value >> 32),
+ udiv_qrnnd (x1hi, r, 0, (mp_limb_t) (value >> 32),
brec->big.base);
- udiv_qrnnd (x1lo, t[2], r, (mp_limb) value, brec->big.base);
+ udiv_qrnnd (x1lo, t[2], r, (mp_limb_t) value, brec->big.base);
udiv_qrnnd (t[0], t[1], x1hi, x1lo, brec->big.base);
#endif
n = 3;
@@ -329,23 +329,23 @@ _itoa (value, buflim, base, upper_case)
else
{
#if (UDIV_TIME > 2 * UMUL_TIME)
- mp_limb x;
+ mp_limb_t x;
value <<= brec->big.normalization_steps;
- udiv_qrnnd_preinv (t[0], x, (mp_limb) (value >> 32),
- (mp_limb) value, big_base_norm,
+ udiv_qrnnd_preinv (t[0], x, (mp_limb_t) (value >> 32),
+ (mp_limb_t) value, big_base_norm,
brec->big.base_ninv);
t[1] = x >> brec->big.normalization_steps;
#elif UDIV_NEEDS_NORMALIZATION
- mp_limb x;
+ mp_limb_t x;
value <<= big_normalization_steps;
- udiv_qrnnd (t[0], x, (mp_limb) (value >> 32),
- (mp_limb) value, big_base_norm);
+ udiv_qrnnd (t[0], x, (mp_limb_t) (value >> 32),
+ (mp_limb_t) value, big_base_norm);
t[1] = x >> big_normalization_steps;
#else
- udiv_qrnnd (t[0], t[1], (mp_limb) (value >> 32),
- (mp_limb) value, brec->big.base);
+ udiv_qrnnd (t[0], t[1], (mp_limb_t) (value >> 32),
+ (mp_limb_t) value, brec->big.base);
#endif
n = 2;
}
@@ -359,15 +359,15 @@ _itoa (value, buflim, base, upper_case)
/* Convert the 1-3 words in t[], word by word, to ASCII. */
do
{
- mp_limb ti = t[--n];
+ mp_limb_t ti = t[--n];
int ndig_for_this_limb = 0;
#if UDIV_TIME > 2 * UMUL_TIME
- mp_limb base_multiplier = brec->base_multiplier;
+ mp_limb_t base_multiplier = brec->base_multiplier;
if (brec->flag)
while (ti != 0)
{
- mp_limb quo, rem, x, dummy;
+ mp_limb_t quo, rem, x, dummy;
umul_ppmm (x, dummy, ti, base_multiplier);
quo = (x + ((ti - x) >> 1)) >> (brec->post_shift - 1);
@@ -379,7 +379,7 @@ _itoa (value, buflim, base, upper_case)
else
while (ti != 0)
{
- mp_limb quo, rem, x, dummy;
+ mp_limb_t quo, rem, x, dummy;
umul_ppmm (x, dummy, ti, base_multiplier);
quo = x >> brec->post_shift;
@@ -391,7 +391,7 @@ _itoa (value, buflim, base, upper_case)
#else
while (ti != 0)
{
- mp_limb quo, rem;
+ mp_limb_t quo, rem;
quo = ti / base;
rem = ti % base;