@@ -208,11 +208,46 @@ static DEC_DIGITS_LUT: &[u8; 200] = b"0001020304050607080910111213141516171819\
208208 8081828384858687888990919293949596979899";
209209
210210macro_rules! impl_Display {
211- ( $( $t: ident) ,* as $u: ident via $conv_fn: ident named $name: ident) => {
211+ ( $( $t: ident => $size: literal $( as $positive: ident in $other: ident) ? => named $name: ident, ) * ; as $u: ident via $conv_fn: ident named $gen_name: ident) => {
212+
213+ $(
214+ #[ stable( feature = "rust1" , since = "1.0.0" ) ]
215+ impl fmt:: Display for $t {
216+ fn fmt( & self , f: & mut fmt:: Formatter <' _>) -> fmt:: Result {
217+ // If it's a signed integer.
218+ $(
219+ let is_nonnegative = * self >= 0 ;
220+
221+ #[ cfg( not( feature = "optimize_for_size" ) ) ]
222+ {
223+ if !is_nonnegative {
224+ // convert the negative num to positive by summing 1 to its 2s complement
225+ return $other( ( !self as $positive) . wrapping_add( 1 ) , false , f) ;
226+ }
227+ }
228+ #[ cfg( feature = "optimize_for_size" ) ]
229+ {
230+ if !is_nonnegative {
231+ // convert the negative num to positive by summing 1 to its 2s complement
232+ return $other( ( !self . $conv_fn( ) ) . wrapping_add( 1 ) , false , f) ;
233+ }
234+ }
235+ ) ?
236+ // If it's a positive integer.
237+ #[ cfg( not( feature = "optimize_for_size" ) ) ]
238+ {
239+ $name( * self , true , f)
240+ }
241+ #[ cfg( feature = "optimize_for_size" ) ]
242+ {
243+ $gen_name( * self , true , f)
244+ }
245+ }
246+ }
247+
212248 #[ cfg( not( feature = "optimize_for_size" ) ) ]
213- fn $name( mut n: $u, is_nonnegative: bool , f: & mut fmt:: Formatter <' _>) -> fmt:: Result {
214- // 2^128 is about 3*10^38, so 39 gives an extra byte of space
215- let mut buf = [ MaybeUninit :: <u8 >:: uninit( ) ; 39 ] ;
249+ fn $name( mut n: $t, is_nonnegative: bool , f: & mut fmt:: Formatter <' _>) -> fmt:: Result {
250+ let mut buf = [ MaybeUninit :: <u8 >:: uninit( ) ; $size] ;
216251 let mut curr = buf. len( ) ;
217252 let buf_ptr = MaybeUninit :: slice_as_mut_ptr( & mut buf) ;
218253 let lut_ptr = DEC_DIGITS_LUT . as_ptr( ) ;
@@ -225,9 +260,12 @@ macro_rules! impl_Display {
225260 // non-negative, this means that `curr > 0` so `buf_ptr[curr..curr + 1]`
226261 // is safe to access.
227262 unsafe {
228- // need at least 16 bits for the 4-characters-at-a-time to work.
229- assert!( crate :: mem:: size_of:: <$u>( ) >= 2 ) ;
230-
263+ // The two `allow` are for `i8` and `u8`.
264+ #[ allow( overflowing_literals) ]
265+ #[ allow( unused_comparisons) ]
266+ // This block should be removed for smaller types at compile time so it
267+ // should be ok.
268+ //
231269 // eagerly decode 4 characters at a time
232270 while n >= 10000 {
233271 let rem = ( n % 10000 ) as usize ;
@@ -240,8 +278,8 @@ macro_rules! impl_Display {
240278 // We are allowed to copy to `buf_ptr[curr..curr + 3]` here since
241279 // otherwise `curr < 0`. But then `n` was originally at least `10000^10`
242280 // which is `10^40 > 2^128 > n`.
243- ptr:: copy_nonoverlapping( lut_ptr. add( d1) , buf_ptr. add( curr) , 2 ) ;
244- ptr:: copy_nonoverlapping( lut_ptr. add( d2) , buf_ptr. add( curr + 2 ) , 2 ) ;
281+ ptr:: copy_nonoverlapping( lut_ptr. add( d1 as usize ) , buf_ptr. add( curr) , 2 ) ;
282+ ptr:: copy_nonoverlapping( lut_ptr. add( d2 as usize ) , buf_ptr. add( curr + 2 ) , 2 ) ;
245283 }
246284
247285 // if we reach here numbers are <= 9999, so at most 4 chars long
@@ -255,6 +293,8 @@ macro_rules! impl_Display {
255293 ptr:: copy_nonoverlapping( lut_ptr. add( d1) , buf_ptr. add( curr) , 2 ) ;
256294 }
257295
296+ // if we reach here numbers are <= 100, so at most 2 chars long
297+ // The biggest it can be is 99, and 99 << 1 == 198, so a `u8` is enough.
258298 // decode last 1 or 2 chars
259299 if n < 10 {
260300 curr -= 1 ;
@@ -273,11 +313,10 @@ macro_rules! impl_Display {
273313 slice:: from_raw_parts( buf_ptr. add( curr) , buf. len( ) - curr) )
274314 } ;
275315 f. pad_integral( is_nonnegative, "" , buf_slice)
276- }
316+ } ) *
277317
278318 #[ cfg( feature = "optimize_for_size" ) ]
279- fn $name( mut n: $u, is_nonnegative: bool , f: & mut fmt:: Formatter <' _>) -> fmt:: Result {
280- // 2^128 is about 3*10^38, so 39 gives an extra byte of space
319+ fn $gen_name( mut n: $u, is_nonnegative: bool , f: & mut fmt:: Formatter <' _>) -> fmt:: Result {
281320 let mut buf = [ MaybeUninit :: <u8 >:: uninit( ) ; 39 ] ;
282321 let mut curr = buf. len( ) ;
283322 let buf_ptr = MaybeUninit :: slice_as_mut_ptr( & mut buf) ;
@@ -306,21 +345,6 @@ macro_rules! impl_Display {
306345 } ;
307346 f. pad_integral( is_nonnegative, "" , buf_slice)
308347 }
309-
310- $( #[ stable( feature = "rust1" , since = "1.0.0" ) ]
311- impl fmt:: Display for $t {
312- #[ allow( unused_comparisons) ]
313- fn fmt( & self , f: & mut fmt:: Formatter <' _>) -> fmt:: Result {
314- let is_nonnegative = * self >= 0 ;
315- let n = if is_nonnegative {
316- self . $conv_fn( )
317- } else {
318- // convert the negative num to positive by summing 1 to it's 2 complement
319- ( !self . $conv_fn( ) ) . wrapping_add( 1 )
320- } ;
321- $name( n, is_nonnegative, f)
322- }
323- } ) *
324348 } ;
325349}
326350
@@ -374,7 +398,6 @@ macro_rules! impl_Exp {
374398 ( n, exponent, exponent, added_precision)
375399 } ;
376400
377- // 39 digits (worst case u128) + . = 40
378401 // Since `curr` always decreases by the number of digits copied, this means
379402 // that `curr >= 0`.
380403 let mut buf = [ MaybeUninit :: <u8 >:: uninit( ) ; 40 ] ;
@@ -469,7 +492,7 @@ macro_rules! impl_Exp {
469492 let n = if is_nonnegative {
470493 self . $conv_fn( )
471494 } else {
472- // convert the negative num to positive by summing 1 to it's 2 complement
495+ // convert the negative num to positive by summing 1 to its 2s complement
473496 ( !self . $conv_fn( ) ) . wrapping_add( 1 )
474497 } ;
475498 $name( n, is_nonnegative, false , f)
@@ -484,7 +507,7 @@ macro_rules! impl_Exp {
484507 let n = if is_nonnegative {
485508 self . $conv_fn( )
486509 } else {
487- // convert the negative num to positive by summing 1 to it's 2 complement
510+ // convert the negative num to positive by summing 1 to its 2s complement
488511 ( !self . $conv_fn( ) ) . wrapping_add( 1 )
489512 } ;
490513 $name( n, is_nonnegative, true , f)
@@ -499,8 +522,17 @@ macro_rules! impl_Exp {
499522mod imp {
500523 use super :: * ;
501524 impl_Display ! (
502- i8 , u8 , i16 , u16 , i32 , u32 , i64 , u64 , usize , isize
503- as u64 via to_u64 named fmt_u64
525+ i8 => 3 as u8 in fmt_u8 => named fmt_i8,
526+ u8 => 3 => named fmt_u8,
527+ i16 => 5 as u16 in fmt_u16 => named fmt_i16,
528+ u16 => 5 => named fmt_u16,
529+ i32 => 10 as u32 in fmt_u32 => named fmt_i32,
530+ u32 => 10 => named fmt_u32,
531+ i64 => 20 as u64 in fmt_u64 => named fmt_i64,
532+ u64 => 20 => named fmt_u64,
533+ isize => 20 as usize in fmt_usize => named fmt_isize,
534+ usize => 20 => named fmt_usize,
535+ ; as u64 via to_u64 named fmt_u64
504536 ) ;
505537 impl_Exp ! (
506538 i8 , u8 , i16 , u16 , i32 , u32 , i64 , u64 , usize , isize
@@ -511,8 +543,21 @@ mod imp {
511543#[ cfg( not( any( target_pointer_width = "64" , target_arch = "wasm32" ) ) ) ]
512544mod imp {
513545 use super :: * ;
514- impl_Display ! ( i8 , u8 , i16 , u16 , i32 , u32 , isize , usize as u32 via to_u32 named fmt_u32) ;
515- impl_Display ! ( i64 , u64 as u64 via to_u64 named fmt_u64) ;
546+ impl_Display ! (
547+ i8 => 3 as u8 in fmt_u8 => named fmt_i8,
548+ u8 => 3 => named fmt_u8,
549+ i16 => 5 as u16 in fmt_u16 => named fmt_i16,
550+ u16 => 5 => named fmt_u16,
551+ i32 => 10 as u32 in fmt_u32 => named fmt_i32,
552+ u32 => 10 => named fmt_u32,
553+ isize => 10 as usize in fmt_usize => named fmt_isize,
554+ usize => 10 => named fmt_usize,
555+ ; as u32 via to_u32 named fmt_u32) ;
556+ impl_Display ! (
557+ i64 => 20 as u64 in fmt_u64 => named fmt_i64,
558+ u64 => 20 => named fmt_u64,
559+ ; as u64 via to_u64 named fmt_u64) ;
560+
516561 impl_Exp ! ( i8 , u8 , i16 , u16 , i32 , u32 , isize , usize as u32 via to_u32 named exp_u32) ;
517562 impl_Exp ! ( i64 , u64 as u64 via to_u64 named exp_u64) ;
518563}
@@ -619,7 +664,7 @@ impl fmt::Display for i128 {
619664 let n = if is_nonnegative {
620665 self . to_u128 ( )
621666 } else {
622- // convert the negative num to positive by summing 1 to it's 2 complement
667+ // convert the negative num to positive by summing 1 to its 2s complement
623668 ( !self . to_u128 ( ) ) . wrapping_add ( 1 )
624669 } ;
625670 fmt_u128 ( n, is_nonnegative, f)
0 commit comments