@@ -79,6 +79,25 @@ mod int_to_float {
7979 F :: from_bits ( conv ( i. unsigned_abs ( ) ) | sign_bit)
8080 }
8181
82+ pub fn u32_to_f16_bits ( i : u32 ) -> u16 {
83+ let n = i. leading_zeros ( ) ;
84+ let i_m = i. wrapping_shl ( n) ;
85+ // Mantissa with implicit bit set
86+ let m_base: u16 = ( i_m >> shift_f_lt_i :: < u32 , f16 > ( ) ) as u16 ;
87+ // The entire lower half of `i` will be truncated (masked portion), plus the
88+ // next `EXPONENT_BITS` bits.
89+ let adj = ( i_m >> f16:: EXPONENT_BITS | i_m & 0xFF ) as u16 ;
90+ let m = m_adj :: < f16 > ( m_base, adj) ;
91+ let e = if i == 0 { 0 } else { exp :: < u32 , f16 > ( n) - 1 } ;
92+ // Any int can have an exponent out of range for `f16`, unlike other float types.
93+ // Clamp this.
94+ if e >= f16:: EXPONENT_MAX as u16 - 1 {
95+ f16:: INFINITY . to_bits ( )
96+ } else {
97+ repr :: < f16 > ( e, m)
98+ }
99+ }
100+
82101 pub fn u32_to_f32_bits ( i : u32 ) -> u32 {
83102 if i == 0 {
84103 return 0 ;
@@ -122,6 +141,30 @@ mod int_to_float {
122141 ( h as u128 ) << 64
123142 }
124143
144+ pub fn u64_to_f16_bits ( i : u64 ) -> u16 {
145+ let n = i. leading_zeros ( ) ;
146+ let i_m = i. wrapping_shl ( n) ; // Mantissa, shifted so the first bit is nonzero
147+ let m_base: u16 = ( i_m >> shift_f_lt_i :: < u64 , f16 > ( ) ) as u16 ;
148+
149+ // Within the upper `F::BITS`, everything except for the signifcand
150+ // gets truncated
151+ let d1: u16 = ( i_m >> ( u64:: BITS - f16:: BITS - f16:: SIGNIFICAND_BITS - 1 ) ) . cast ( ) ;
152+
153+ // The entire rest of `i_m` gets truncated. Zero the upper `F::BITS` then just
154+ // check if it is nonzero.
155+ let d2: u16 = ( i_m << f16:: BITS >> f16:: BITS != 0 ) . into ( ) ;
156+ let adj = d1 | d2;
157+
158+ // Mantissa with implicit bit set
159+ let m = m_adj :: < f16 > ( m_base, adj) ;
160+ let e = if i == 0 { 0 } else { exp :: < u64 , f16 > ( n) - 1 } ;
161+ if e >= f16:: EXPONENT_MAX as u16 - 1 {
162+ f16:: INFINITY . to_bits ( )
163+ } else {
164+ repr :: < f16 > ( e, m)
165+ }
166+ }
167+
125168 pub fn u64_to_f32_bits ( i : u64 ) -> u32 {
126169 let n = i. leading_zeros ( ) ;
127170 let i_m = i. wrapping_shl ( n) ;
@@ -160,6 +203,30 @@ mod int_to_float {
160203 repr :: < f128 > ( e, m)
161204 }
162205
206+ pub fn u128_to_f16_bits ( i : u128 ) -> u16 {
207+ let n = i. leading_zeros ( ) ;
208+ let i_m = i. wrapping_shl ( n) ; // Mantissa, shifted so the first bit is nonzero
209+ let m_base: u16 = ( i_m >> shift_f_lt_i :: < u128 , f16 > ( ) ) as u16 ;
210+
211+ // Within the upper `F::BITS`, everything except for the signifcand
212+ // gets truncated
213+ let d1: u16 = ( i_m >> ( u128:: BITS - f16:: BITS - f16:: SIGNIFICAND_BITS - 1 ) ) . cast ( ) ;
214+
215+ // The entire rest of `i_m` gets truncated. Zero the upper `F::BITS` then just
216+ // check if it is nonzero.
217+ let d2: u16 = ( i_m << f16:: BITS >> f16:: BITS != 0 ) . into ( ) ;
218+ let adj = d1 | d2;
219+
220+ // Mantissa with implicit bit set
221+ let m = m_adj :: < f16 > ( m_base, adj) ;
222+ let e = if i == 0 { 0 } else { exp :: < u128 , f16 > ( n) - 1 } ;
223+ if e >= f16:: EXPONENT_MAX as u16 - 1 {
224+ f16:: INFINITY . to_bits ( )
225+ } else {
226+ repr :: < f16 > ( e, m)
227+ }
228+ }
229+
163230 pub fn u128_to_f32_bits ( i : u128 ) -> u32 {
164231 let n = i. leading_zeros ( ) ;
165232 let i_m = i. wrapping_shl ( n) ; // Mantissa, shifted so the first bit is nonzero
@@ -210,6 +277,11 @@ mod int_to_float {
210277
211278// Conversions from unsigned integers to floats.
212279intrinsics ! {
280+ #[ cfg( f16_enabled) ]
281+ pub extern "C" fn __floatunsihf( i: u32 ) -> f16 {
282+ f16:: from_bits( int_to_float:: u32_to_f16_bits( i) )
283+ }
284+
213285 #[ arm_aeabi_alias = __aeabi_ui2f]
214286 pub extern "C" fn __floatunsisf( i: u32 ) -> f32 {
215287 f32 :: from_bits( int_to_float:: u32_to_f32_bits( i) )
@@ -220,6 +292,17 @@ intrinsics! {
220292 f64 :: from_bits( int_to_float:: u32_to_f64_bits( i) )
221293 }
222294
295+ #[ ppc_alias = __floatunsikf]
296+ #[ cfg( f128_enabled) ]
297+ pub extern "C" fn __floatunsitf( i: u32 ) -> f128 {
298+ f128:: from_bits( int_to_float:: u32_to_f128_bits( i) )
299+ }
300+
301+ #[ cfg( f16_enabled) ]
302+ pub extern "C" fn __floatundihf( i: u64 ) -> f16 {
303+ f16:: from_bits( int_to_float:: u64_to_f16_bits( i) )
304+ }
305+
223306 #[ arm_aeabi_alias = __aeabi_ul2f]
224307 pub extern "C" fn __floatundisf( i: u64 ) -> f32 {
225308 f32 :: from_bits( int_to_float:: u64_to_f32_bits( i) )
@@ -230,6 +313,17 @@ intrinsics! {
230313 f64 :: from_bits( int_to_float:: u64_to_f64_bits( i) )
231314 }
232315
316+ #[ ppc_alias = __floatundikf]
317+ #[ cfg( f128_enabled) ]
318+ pub extern "C" fn __floatunditf( i: u64 ) -> f128 {
319+ f128:: from_bits( int_to_float:: u64_to_f128_bits( i) )
320+ }
321+
322+ #[ cfg( f16_enabled) ]
323+ pub extern "C" fn __floatuntihf( i: u128 ) -> f16 {
324+ f16:: from_bits( int_to_float:: u128_to_f16_bits( i) )
325+ }
326+
233327 #[ cfg_attr( target_os = "uefi" , unadjusted_on_win64) ]
234328 pub extern "C" fn __floatuntisf( i: u128 ) -> f32 {
235329 f32 :: from_bits( int_to_float:: u128_to_f32_bits( i) )
@@ -240,18 +334,6 @@ intrinsics! {
240334 f64 :: from_bits( int_to_float:: u128_to_f64_bits( i) )
241335 }
242336
243- #[ ppc_alias = __floatunsikf]
244- #[ cfg( f128_enabled) ]
245- pub extern "C" fn __floatunsitf( i: u32 ) -> f128 {
246- f128:: from_bits( int_to_float:: u32_to_f128_bits( i) )
247- }
248-
249- #[ ppc_alias = __floatundikf]
250- #[ cfg( f128_enabled) ]
251- pub extern "C" fn __floatunditf( i: u64 ) -> f128 {
252- f128:: from_bits( int_to_float:: u64_to_f128_bits( i) )
253- }
254-
255337 #[ ppc_alias = __floatuntikf]
256338 #[ cfg( f128_enabled) ]
257339 pub extern "C" fn __floatuntitf( i: u128 ) -> f128 {
@@ -261,6 +343,11 @@ intrinsics! {
261343
262344// Conversions from signed integers to floats.
263345intrinsics ! {
346+ #[ cfg( f16_enabled) ]
347+ pub extern "C" fn __floatsihf( i: i32 ) -> f16 {
348+ int_to_float:: signed( i, int_to_float:: u32_to_f16_bits)
349+ }
350+
264351 #[ arm_aeabi_alias = __aeabi_i2f]
265352 pub extern "C" fn __floatsisf( i: i32 ) -> f32 {
266353 int_to_float:: signed( i, int_to_float:: u32_to_f32_bits)
@@ -271,6 +358,17 @@ intrinsics! {
271358 int_to_float:: signed( i, int_to_float:: u32_to_f64_bits)
272359 }
273360
361+ #[ ppc_alias = __floatsikf]
362+ #[ cfg( f128_enabled) ]
363+ pub extern "C" fn __floatsitf( i: i32 ) -> f128 {
364+ int_to_float:: signed( i, int_to_float:: u32_to_f128_bits)
365+ }
366+
367+ #[ cfg( f16_enabled) ]
368+ pub extern "C" fn __floatdihf( i: i64 ) -> f16 {
369+ int_to_float:: signed( i, int_to_float:: u64_to_f16_bits)
370+ }
371+
274372 #[ arm_aeabi_alias = __aeabi_l2f]
275373 pub extern "C" fn __floatdisf( i: i64 ) -> f32 {
276374 int_to_float:: signed( i, int_to_float:: u64_to_f32_bits)
@@ -281,6 +379,17 @@ intrinsics! {
281379 int_to_float:: signed( i, int_to_float:: u64_to_f64_bits)
282380 }
283381
382+ #[ ppc_alias = __floatdikf]
383+ #[ cfg( f128_enabled) ]
384+ pub extern "C" fn __floatditf( i: i64 ) -> f128 {
385+ int_to_float:: signed( i, int_to_float:: u64_to_f128_bits)
386+ }
387+
388+ #[ cfg( f16_enabled) ]
389+ pub extern "C" fn __floattihf( i: i128 ) -> f16 {
390+ int_to_float:: signed( i, int_to_float:: u128_to_f16_bits)
391+ }
392+
284393 #[ cfg_attr( target_os = "uefi" , unadjusted_on_win64) ]
285394 pub extern "C" fn __floattisf( i: i128 ) -> f32 {
286395 int_to_float:: signed( i, int_to_float:: u128_to_f32_bits)
@@ -291,18 +400,6 @@ intrinsics! {
291400 int_to_float:: signed( i, int_to_float:: u128_to_f64_bits)
292401 }
293402
294- #[ ppc_alias = __floatsikf]
295- #[ cfg( f128_enabled) ]
296- pub extern "C" fn __floatsitf( i: i32 ) -> f128 {
297- int_to_float:: signed( i, int_to_float:: u32_to_f128_bits)
298- }
299-
300- #[ ppc_alias = __floatdikf]
301- #[ cfg( f128_enabled) ]
302- pub extern "C" fn __floatditf( i: i64 ) -> f128 {
303- int_to_float:: signed( i, int_to_float:: u64_to_f128_bits)
304- }
305-
306403 #[ ppc_alias = __floattikf]
307404 #[ cfg( f128_enabled) ]
308405 pub extern "C" fn __floattitf( i: i128 ) -> f128 {
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