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Andreas Färber8d725fa2011-03-07 01:34:04 +01001/*
2 * QEMU float support
3 *
4 * Derived from SoftFloat.
5 */
6
bellard158142c2005-03-13 16:54:06 +00007/*============================================================================
8
9This C header file is part of the SoftFloat IEC/IEEE Floating-point Arithmetic
10Package, Release 2b.
11
12Written by John R. Hauser. This work was made possible in part by the
13International Computer Science Institute, located at Suite 600, 1947 Center
14Street, Berkeley, California 94704. Funding was partially provided by the
15National Science Foundation under grant MIP-9311980. The original version
16of this code was written as part of a project to build a fixed-point vector
17processor in collaboration with the University of California at Berkeley,
18overseen by Profs. Nelson Morgan and John Wawrzynek. More information
19is available through the Web page `http://www.cs.berkeley.edu/~jhauser/
20arithmetic/SoftFloat.html'.
21
22THIS SOFTWARE IS DISTRIBUTED AS IS, FOR FREE. Although reasonable effort has
23been made to avoid it, THIS SOFTWARE MAY CONTAIN FAULTS THAT WILL AT TIMES
24RESULT IN INCORRECT BEHAVIOR. USE OF THIS SOFTWARE IS RESTRICTED TO PERSONS
25AND ORGANIZATIONS WHO CAN AND WILL TAKE FULL RESPONSIBILITY FOR ALL LOSSES,
26COSTS, OR OTHER PROBLEMS THEY INCUR DUE TO THE SOFTWARE, AND WHO FURTHERMORE
27EFFECTIVELY INDEMNIFY JOHN HAUSER AND THE INTERNATIONAL COMPUTER SCIENCE
28INSTITUTE (possibly via similar legal warning) AGAINST ALL LOSSES, COSTS, OR
29OTHER PROBLEMS INCURRED BY THEIR CUSTOMERS AND CLIENTS DUE TO THE SOFTWARE.
30
31Derivative works are acceptable, even for commercial purposes, so long as
32(1) the source code for the derivative work includes prominent notice that
33the work is derivative, and (2) the source code includes prominent notice with
34these four paragraphs for those parts of this code that are retained.
35
36=============================================================================*/
37
38#ifndef SOFTFLOAT_H
39#define SOFTFLOAT_H
40
Juan Quintela75b5a692009-07-27 16:13:23 +020041#if defined(CONFIG_SOLARIS) && defined(CONFIG_NEEDS_LIBSUNMATH)
ths0475a5c2007-04-01 18:54:44 +000042#include <sunmath.h>
43#endif
44
bellard158142c2005-03-13 16:54:06 +000045#include <inttypes.h>
Paolo Bonzini789ec7c2011-07-28 12:10:29 +020046#include "config-host.h"
Andreas Färber5aea4c52012-04-26 00:15:55 +020047#include "osdep.h"
bellard158142c2005-03-13 16:54:06 +000048
49/*----------------------------------------------------------------------------
50| Each of the following `typedef's defines the most convenient type that holds
51| integers of at least as many bits as specified. For example, `uint8' should
52| be the most convenient type that can hold unsigned integers of as many as
53| 8 bits. The `flag' type must be able to hold either a 0 or 1. For most
54| implementations of C, `flag', `uint8', and `int8' should all be `typedef'ed
55| to the same as `int'.
56*----------------------------------------------------------------------------*/
bellard750afe92006-10-28 19:27:11 +000057typedef uint8_t flag;
bellard158142c2005-03-13 16:54:06 +000058typedef uint8_t uint8;
59typedef int8_t int8;
bellard158142c2005-03-13 16:54:06 +000060typedef unsigned int uint32;
61typedef signed int int32;
62typedef uint64_t uint64;
63typedef int64_t int64;
64
bellard158142c2005-03-13 16:54:06 +000065#define LIT64( a ) a##LL
66#define INLINE static inline
67
bellard158142c2005-03-13 16:54:06 +000068#define STATUS_PARAM , float_status *status
69#define STATUS(field) status->field
70#define STATUS_VAR , status
71
bellard1d6bda32005-03-13 18:52:29 +000072/*----------------------------------------------------------------------------
73| Software IEC/IEEE floating-point ordering relations
74*----------------------------------------------------------------------------*/
75enum {
76 float_relation_less = -1,
77 float_relation_equal = 0,
78 float_relation_greater = 1,
79 float_relation_unordered = 2
80};
81
bellard158142c2005-03-13 16:54:06 +000082/*----------------------------------------------------------------------------
83| Software IEC/IEEE floating-point types.
84*----------------------------------------------------------------------------*/
pbrookf090c9d2007-11-18 14:33:24 +000085/* Use structures for soft-float types. This prevents accidentally mixing
86 them with native int/float types. A sufficiently clever compiler and
87 sane ABI should be able to see though these structs. However
88 x86/gcc 3.x seems to struggle a bit, so leave them disabled by default. */
89//#define USE_SOFTFLOAT_STRUCT_TYPES
90#ifdef USE_SOFTFLOAT_STRUCT_TYPES
91typedef struct {
Peter Maydellbb4d4bb2011-02-10 11:28:56 +000092 uint16_t v;
93} float16;
94#define float16_val(x) (((float16)(x)).v)
95#define make_float16(x) __extension__ ({ float16 f16_val = {x}; f16_val; })
Peter Maydelld5138cf2011-02-10 13:59:34 +000096#define const_float16(x) { x }
Peter Maydellbb4d4bb2011-02-10 11:28:56 +000097typedef struct {
pbrookf090c9d2007-11-18 14:33:24 +000098 uint32_t v;
99} float32;
100/* The cast ensures an error if the wrong type is passed. */
101#define float32_val(x) (((float32)(x)).v)
102#define make_float32(x) __extension__ ({ float32 f32_val = {x}; f32_val; })
Peter Maydelld5138cf2011-02-10 13:59:34 +0000103#define const_float32(x) { x }
pbrookf090c9d2007-11-18 14:33:24 +0000104typedef struct {
105 uint64_t v;
106} float64;
107#define float64_val(x) (((float64)(x)).v)
108#define make_float64(x) __extension__ ({ float64 f64_val = {x}; f64_val; })
Peter Maydelld5138cf2011-02-10 13:59:34 +0000109#define const_float64(x) { x }
pbrookf090c9d2007-11-18 14:33:24 +0000110#else
Peter Maydellbb4d4bb2011-02-10 11:28:56 +0000111typedef uint16_t float16;
bellard158142c2005-03-13 16:54:06 +0000112typedef uint32_t float32;
113typedef uint64_t float64;
Peter Maydellbb4d4bb2011-02-10 11:28:56 +0000114#define float16_val(x) (x)
pbrookf090c9d2007-11-18 14:33:24 +0000115#define float32_val(x) (x)
116#define float64_val(x) (x)
Peter Maydellbb4d4bb2011-02-10 11:28:56 +0000117#define make_float16(x) (x)
pbrookf090c9d2007-11-18 14:33:24 +0000118#define make_float32(x) (x)
119#define make_float64(x) (x)
Peter Maydelld5138cf2011-02-10 13:59:34 +0000120#define const_float16(x) (x)
121#define const_float32(x) (x)
122#define const_float64(x) (x)
pbrookf090c9d2007-11-18 14:33:24 +0000123#endif
bellard158142c2005-03-13 16:54:06 +0000124typedef struct {
125 uint64_t low;
126 uint16_t high;
127} floatx80;
Aurelien Jarnof3218a82011-04-20 13:04:22 +0200128#define make_floatx80(exp, mant) ((floatx80) { mant, exp })
Avi Kivity3bf7e402011-12-27 17:11:20 +0200129#define make_floatx80_init(exp, mant) { .low = mant, .high = exp }
bellard158142c2005-03-13 16:54:06 +0000130typedef struct {
Juan Quintelae2542fe2009-07-27 16:13:06 +0200131#ifdef HOST_WORDS_BIGENDIAN
bellard158142c2005-03-13 16:54:06 +0000132 uint64_t high, low;
133#else
134 uint64_t low, high;
135#endif
136} float128;
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200137#define make_float128(high_, low_) ((float128) { .high = high_, .low = low_ })
Avi Kivity3bf7e402011-12-27 17:11:20 +0200138#define make_float128_init(high_, low_) { .high = high_, .low = low_ }
bellard158142c2005-03-13 16:54:06 +0000139
140/*----------------------------------------------------------------------------
141| Software IEC/IEEE floating-point underflow tininess-detection mode.
142*----------------------------------------------------------------------------*/
143enum {
144 float_tininess_after_rounding = 0,
145 float_tininess_before_rounding = 1
146};
147
148/*----------------------------------------------------------------------------
149| Software IEC/IEEE floating-point rounding mode.
150*----------------------------------------------------------------------------*/
151enum {
152 float_round_nearest_even = 0,
153 float_round_down = 1,
154 float_round_up = 2,
155 float_round_to_zero = 3
156};
157
158/*----------------------------------------------------------------------------
159| Software IEC/IEEE floating-point exception flags.
160*----------------------------------------------------------------------------*/
161enum {
162 float_flag_invalid = 1,
163 float_flag_divbyzero = 4,
164 float_flag_overflow = 8,
165 float_flag_underflow = 16,
Peter Maydell37d18662011-01-06 19:37:53 +0000166 float_flag_inexact = 32,
Peter Maydelle6afc872011-05-19 14:46:17 +0100167 float_flag_input_denormal = 64,
168 float_flag_output_denormal = 128
bellard158142c2005-03-13 16:54:06 +0000169};
170
171typedef struct float_status {
172 signed char float_detect_tininess;
173 signed char float_rounding_mode;
174 signed char float_exception_flags;
bellard158142c2005-03-13 16:54:06 +0000175 signed char floatx80_rounding_precision;
Peter Maydell37d18662011-01-06 19:37:53 +0000176 /* should denormalised results go to zero and set the inexact flag? */
pbrookfe76d972008-12-19 14:33:59 +0000177 flag flush_to_zero;
Peter Maydell37d18662011-01-06 19:37:53 +0000178 /* should denormalised inputs go to zero and set the input_denormal flag? */
179 flag flush_inputs_to_zero;
pbrook5c7908e2008-12-19 13:53:37 +0000180 flag default_nan_mode;
bellard158142c2005-03-13 16:54:06 +0000181} float_status;
182
183void set_float_rounding_mode(int val STATUS_PARAM);
bellard1d6bda32005-03-13 18:52:29 +0000184void set_float_exception_flags(int val STATUS_PARAM);
Peter Maydellc29aca42011-04-12 13:56:40 +0100185INLINE void set_float_detect_tininess(int val STATUS_PARAM)
186{
187 STATUS(float_detect_tininess) = val;
188}
pbrookfe76d972008-12-19 14:33:59 +0000189INLINE void set_flush_to_zero(flag val STATUS_PARAM)
190{
191 STATUS(flush_to_zero) = val;
192}
Peter Maydell37d18662011-01-06 19:37:53 +0000193INLINE void set_flush_inputs_to_zero(flag val STATUS_PARAM)
194{
195 STATUS(flush_inputs_to_zero) = val;
196}
pbrook5c7908e2008-12-19 13:53:37 +0000197INLINE void set_default_nan_mode(flag val STATUS_PARAM)
198{
199 STATUS(default_nan_mode) = val;
200}
bellard1d6bda32005-03-13 18:52:29 +0000201INLINE int get_float_exception_flags(float_status *status)
202{
203 return STATUS(float_exception_flags);
204}
bellard158142c2005-03-13 16:54:06 +0000205void set_floatx80_rounding_precision(int val STATUS_PARAM);
bellard158142c2005-03-13 16:54:06 +0000206
207/*----------------------------------------------------------------------------
208| Routine to raise any or all of the software IEC/IEEE floating-point
209| exception flags.
210*----------------------------------------------------------------------------*/
bellardec530c82006-04-25 22:36:06 +0000211void float_raise( int8 flags STATUS_PARAM);
bellard158142c2005-03-13 16:54:06 +0000212
213/*----------------------------------------------------------------------------
Peter Maydell369be8f2011-10-19 16:14:06 +0000214| Options to indicate which negations to perform in float*_muladd()
215| Using these differs from negating an input or output before calling
216| the muladd function in that this means that a NaN doesn't have its
217| sign bit inverted before it is propagated.
218*----------------------------------------------------------------------------*/
219enum {
220 float_muladd_negate_c = 1,
221 float_muladd_negate_product = 2,
222 float_muladd_negate_result = 3,
223};
224
225/*----------------------------------------------------------------------------
bellard158142c2005-03-13 16:54:06 +0000226| Software IEC/IEEE integer-to-floating-point conversion routines.
227*----------------------------------------------------------------------------*/
Andreas Färber87b8cc32011-03-07 01:34:05 +0100228float32 int32_to_float32( int32 STATUS_PARAM );
229float64 int32_to_float64( int32 STATUS_PARAM );
Andreas Färber9f8d2a02011-08-28 20:24:34 +0200230float32 uint32_to_float32( uint32 STATUS_PARAM );
231float64 uint32_to_float64( uint32 STATUS_PARAM );
Andreas Färber87b8cc32011-03-07 01:34:05 +0100232floatx80 int32_to_floatx80( int32 STATUS_PARAM );
Andreas Färber87b8cc32011-03-07 01:34:05 +0100233float128 int32_to_float128( int32 STATUS_PARAM );
Andreas Färber87b8cc32011-03-07 01:34:05 +0100234float32 int64_to_float32( int64 STATUS_PARAM );
235float32 uint64_to_float32( uint64 STATUS_PARAM );
236float64 int64_to_float64( int64 STATUS_PARAM );
237float64 uint64_to_float64( uint64 STATUS_PARAM );
Andreas Färber87b8cc32011-03-07 01:34:05 +0100238floatx80 int64_to_floatx80( int64 STATUS_PARAM );
Andreas Färber87b8cc32011-03-07 01:34:05 +0100239float128 int64_to_float128( int64 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000240
241/*----------------------------------------------------------------------------
Paul Brook60011492009-11-19 16:45:20 +0000242| Software half-precision conversion routines.
243*----------------------------------------------------------------------------*/
Peter Maydellbb4d4bb2011-02-10 11:28:56 +0000244float16 float32_to_float16( float32, flag STATUS_PARAM );
245float32 float16_to_float32( float16, flag STATUS_PARAM );
246
247/*----------------------------------------------------------------------------
248| Software half-precision operations.
249*----------------------------------------------------------------------------*/
250int float16_is_quiet_nan( float16 );
251int float16_is_signaling_nan( float16 );
252float16 float16_maybe_silence_nan( float16 );
Paul Brook60011492009-11-19 16:45:20 +0000253
254/*----------------------------------------------------------------------------
Christophe Lyon85596662011-02-21 17:38:44 +0100255| The pattern for a default generated half-precision NaN.
256*----------------------------------------------------------------------------*/
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200257extern const float16 float16_default_nan;
Christophe Lyon85596662011-02-21 17:38:44 +0100258
259/*----------------------------------------------------------------------------
bellard158142c2005-03-13 16:54:06 +0000260| Software IEC/IEEE single-precision conversion routines.
261*----------------------------------------------------------------------------*/
Andreas Färber94a49d82012-04-26 00:15:56 +0200262int_fast16_t float32_to_int16_round_to_zero(float32 STATUS_PARAM);
Andreas Färber5aea4c52012-04-26 00:15:55 +0200263uint_fast16_t float32_to_uint16_round_to_zero(float32 STATUS_PARAM);
Andreas Färber87b8cc32011-03-07 01:34:05 +0100264int32 float32_to_int32( float32 STATUS_PARAM );
265int32 float32_to_int32_round_to_zero( float32 STATUS_PARAM );
266uint32 float32_to_uint32( float32 STATUS_PARAM );
267uint32 float32_to_uint32_round_to_zero( float32 STATUS_PARAM );
268int64 float32_to_int64( float32 STATUS_PARAM );
269int64 float32_to_int64_round_to_zero( float32 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000270float64 float32_to_float64( float32 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000271floatx80 float32_to_floatx80( float32 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000272float128 float32_to_float128( float32 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000273
274/*----------------------------------------------------------------------------
275| Software IEC/IEEE single-precision operations.
276*----------------------------------------------------------------------------*/
277float32 float32_round_to_int( float32 STATUS_PARAM );
278float32 float32_add( float32, float32 STATUS_PARAM );
279float32 float32_sub( float32, float32 STATUS_PARAM );
280float32 float32_mul( float32, float32 STATUS_PARAM );
281float32 float32_div( float32, float32 STATUS_PARAM );
282float32 float32_rem( float32, float32 STATUS_PARAM );
Peter Maydell369be8f2011-10-19 16:14:06 +0000283float32 float32_muladd(float32, float32, float32, int STATUS_PARAM);
bellard158142c2005-03-13 16:54:06 +0000284float32 float32_sqrt( float32 STATUS_PARAM );
Aurelien Jarno8229c992009-02-05 12:04:05 +0100285float32 float32_exp2( float32 STATUS_PARAM );
aurel32374dfc32009-02-05 13:42:47 +0000286float32 float32_log2( float32 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200287int float32_eq( float32, float32 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000288int float32_le( float32, float32 STATUS_PARAM );
289int float32_lt( float32, float32 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200290int float32_unordered( float32, float32 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200291int float32_eq_quiet( float32, float32 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000292int float32_le_quiet( float32, float32 STATUS_PARAM );
293int float32_lt_quiet( float32, float32 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200294int float32_unordered_quiet( float32, float32 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000295int float32_compare( float32, float32 STATUS_PARAM );
296int float32_compare_quiet( float32, float32 STATUS_PARAM );
Peter Maydell274f1b02011-03-11 08:12:25 +0000297float32 float32_min(float32, float32 STATUS_PARAM);
298float32 float32_max(float32, float32 STATUS_PARAM);
Peter Maydell18569872010-12-17 15:56:06 +0000299int float32_is_quiet_nan( float32 );
bellard750afe92006-10-28 19:27:11 +0000300int float32_is_signaling_nan( float32 );
Peter Maydellb408dbd2010-12-07 15:37:34 +0000301float32 float32_maybe_silence_nan( float32 );
pbrook9ee6e8b2007-11-11 00:04:49 +0000302float32 float32_scalbn( float32, int STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000303
bellard1d6bda32005-03-13 18:52:29 +0000304INLINE float32 float32_abs(float32 a)
305{
Peter Maydell37d18662011-01-06 19:37:53 +0000306 /* Note that abs does *not* handle NaN specially, nor does
307 * it flush denormal inputs to zero.
308 */
pbrookf090c9d2007-11-18 14:33:24 +0000309 return make_float32(float32_val(a) & 0x7fffffff);
bellard1d6bda32005-03-13 18:52:29 +0000310}
311
312INLINE float32 float32_chs(float32 a)
313{
Peter Maydell37d18662011-01-06 19:37:53 +0000314 /* Note that chs does *not* handle NaN specially, nor does
315 * it flush denormal inputs to zero.
316 */
pbrookf090c9d2007-11-18 14:33:24 +0000317 return make_float32(float32_val(a) ^ 0x80000000);
bellard1d6bda32005-03-13 18:52:29 +0000318}
319
aurel32c52ab6f2008-12-15 17:14:20 +0000320INLINE int float32_is_infinity(float32 a)
321{
aurel32dadd71a2008-12-18 22:43:16 +0000322 return (float32_val(a) & 0x7fffffff) == 0x7f800000;
aurel32c52ab6f2008-12-15 17:14:20 +0000323}
324
325INLINE int float32_is_neg(float32 a)
326{
327 return float32_val(a) >> 31;
328}
329
330INLINE int float32_is_zero(float32 a)
331{
332 return (float32_val(a) & 0x7fffffff) == 0;
333}
334
Peter Maydell21d6ebd2010-12-07 15:37:34 +0000335INLINE int float32_is_any_nan(float32 a)
336{
337 return ((float32_val(a) & ~(1 << 31)) > 0x7f800000UL);
338}
339
Peter Maydell6f3300a2011-01-14 20:39:18 +0100340INLINE int float32_is_zero_or_denormal(float32 a)
341{
342 return (float32_val(a) & 0x7f800000) == 0;
343}
344
Christophe Lyonc30fe7d2011-02-21 17:38:45 +0100345INLINE float32 float32_set_sign(float32 a, int sign)
346{
347 return make_float32((float32_val(a) & 0x7fffffff) | (sign << 31));
348}
349
pbrookf090c9d2007-11-18 14:33:24 +0000350#define float32_zero make_float32(0)
aurel32196cfc82009-02-04 13:52:27 +0000351#define float32_one make_float32(0x3f800000)
Aurelien Jarno8229c992009-02-05 12:04:05 +0100352#define float32_ln2 make_float32(0x3f317218)
Aurelien Jarnoc4b4c772011-04-20 13:04:22 +0200353#define float32_pi make_float32(0x40490fdb)
Christophe Lyonc30fe7d2011-02-21 17:38:45 +0100354#define float32_half make_float32(0x3f000000)
355#define float32_infinity make_float32(0x7f800000)
pbrookf090c9d2007-11-18 14:33:24 +0000356
Christophe Lyon85596662011-02-21 17:38:44 +0100357
358/*----------------------------------------------------------------------------
359| The pattern for a default generated single-precision NaN.
360*----------------------------------------------------------------------------*/
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200361extern const float32 float32_default_nan;
Christophe Lyon85596662011-02-21 17:38:44 +0100362
bellard158142c2005-03-13 16:54:06 +0000363/*----------------------------------------------------------------------------
364| Software IEC/IEEE double-precision conversion routines.
365*----------------------------------------------------------------------------*/
Andreas Färber94a49d82012-04-26 00:15:56 +0200366int_fast16_t float64_to_int16_round_to_zero(float64 STATUS_PARAM);
Andreas Färber5aea4c52012-04-26 00:15:55 +0200367uint_fast16_t float64_to_uint16_round_to_zero(float64 STATUS_PARAM);
Andreas Färber87b8cc32011-03-07 01:34:05 +0100368int32 float64_to_int32( float64 STATUS_PARAM );
369int32 float64_to_int32_round_to_zero( float64 STATUS_PARAM );
370uint32 float64_to_uint32( float64 STATUS_PARAM );
371uint32 float64_to_uint32_round_to_zero( float64 STATUS_PARAM );
372int64 float64_to_int64( float64 STATUS_PARAM );
373int64 float64_to_int64_round_to_zero( float64 STATUS_PARAM );
374uint64 float64_to_uint64 (float64 a STATUS_PARAM);
375uint64 float64_to_uint64_round_to_zero (float64 a STATUS_PARAM);
bellard158142c2005-03-13 16:54:06 +0000376float32 float64_to_float32( float64 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000377floatx80 float64_to_floatx80( float64 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000378float128 float64_to_float128( float64 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000379
380/*----------------------------------------------------------------------------
381| Software IEC/IEEE double-precision operations.
382*----------------------------------------------------------------------------*/
383float64 float64_round_to_int( float64 STATUS_PARAM );
pbrooke6e59062006-10-22 00:18:54 +0000384float64 float64_trunc_to_int( float64 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000385float64 float64_add( float64, float64 STATUS_PARAM );
386float64 float64_sub( float64, float64 STATUS_PARAM );
387float64 float64_mul( float64, float64 STATUS_PARAM );
388float64 float64_div( float64, float64 STATUS_PARAM );
389float64 float64_rem( float64, float64 STATUS_PARAM );
Peter Maydell369be8f2011-10-19 16:14:06 +0000390float64 float64_muladd(float64, float64, float64, int STATUS_PARAM);
bellard158142c2005-03-13 16:54:06 +0000391float64 float64_sqrt( float64 STATUS_PARAM );
aurel32374dfc32009-02-05 13:42:47 +0000392float64 float64_log2( float64 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200393int float64_eq( float64, float64 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000394int float64_le( float64, float64 STATUS_PARAM );
395int float64_lt( float64, float64 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200396int float64_unordered( float64, float64 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200397int float64_eq_quiet( float64, float64 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000398int float64_le_quiet( float64, float64 STATUS_PARAM );
399int float64_lt_quiet( float64, float64 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200400int float64_unordered_quiet( float64, float64 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000401int float64_compare( float64, float64 STATUS_PARAM );
402int float64_compare_quiet( float64, float64 STATUS_PARAM );
Peter Maydell274f1b02011-03-11 08:12:25 +0000403float64 float64_min(float64, float64 STATUS_PARAM);
404float64 float64_max(float64, float64 STATUS_PARAM);
Peter Maydell18569872010-12-17 15:56:06 +0000405int float64_is_quiet_nan( float64 a );
bellard750afe92006-10-28 19:27:11 +0000406int float64_is_signaling_nan( float64 );
Peter Maydellb408dbd2010-12-07 15:37:34 +0000407float64 float64_maybe_silence_nan( float64 );
pbrook9ee6e8b2007-11-11 00:04:49 +0000408float64 float64_scalbn( float64, int STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000409
bellard1d6bda32005-03-13 18:52:29 +0000410INLINE float64 float64_abs(float64 a)
411{
Peter Maydell37d18662011-01-06 19:37:53 +0000412 /* Note that abs does *not* handle NaN specially, nor does
413 * it flush denormal inputs to zero.
414 */
pbrookf090c9d2007-11-18 14:33:24 +0000415 return make_float64(float64_val(a) & 0x7fffffffffffffffLL);
bellard1d6bda32005-03-13 18:52:29 +0000416}
417
418INLINE float64 float64_chs(float64 a)
419{
Peter Maydell37d18662011-01-06 19:37:53 +0000420 /* Note that chs does *not* handle NaN specially, nor does
421 * it flush denormal inputs to zero.
422 */
pbrookf090c9d2007-11-18 14:33:24 +0000423 return make_float64(float64_val(a) ^ 0x8000000000000000LL);
bellard1d6bda32005-03-13 18:52:29 +0000424}
425
aurel32c52ab6f2008-12-15 17:14:20 +0000426INLINE int float64_is_infinity(float64 a)
427{
428 return (float64_val(a) & 0x7fffffffffffffffLL ) == 0x7ff0000000000000LL;
429}
430
431INLINE int float64_is_neg(float64 a)
432{
433 return float64_val(a) >> 63;
434}
435
436INLINE int float64_is_zero(float64 a)
437{
438 return (float64_val(a) & 0x7fffffffffffffffLL) == 0;
439}
440
Peter Maydell21d6ebd2010-12-07 15:37:34 +0000441INLINE int float64_is_any_nan(float64 a)
442{
443 return ((float64_val(a) & ~(1ULL << 63)) > 0x7ff0000000000000ULL);
444}
445
Aurelien Jarno587eabf2011-05-15 14:09:18 +0200446INLINE int float64_is_zero_or_denormal(float64 a)
447{
448 return (float64_val(a) & 0x7ff0000000000000LL) == 0;
449}
450
Christophe Lyonc30fe7d2011-02-21 17:38:45 +0100451INLINE float64 float64_set_sign(float64 a, int sign)
452{
453 return make_float64((float64_val(a) & 0x7fffffffffffffffULL)
454 | ((int64_t)sign << 63));
455}
456
pbrookf090c9d2007-11-18 14:33:24 +0000457#define float64_zero make_float64(0)
aurel32196cfc82009-02-04 13:52:27 +0000458#define float64_one make_float64(0x3ff0000000000000LL)
Aurelien Jarno8229c992009-02-05 12:04:05 +0100459#define float64_ln2 make_float64(0x3fe62e42fefa39efLL)
Aurelien Jarnoc4b4c772011-04-20 13:04:22 +0200460#define float64_pi make_float64(0x400921fb54442d18LL)
Christophe Lyonc30fe7d2011-02-21 17:38:45 +0100461#define float64_half make_float64(0x3fe0000000000000LL)
462#define float64_infinity make_float64(0x7ff0000000000000LL)
pbrookf090c9d2007-11-18 14:33:24 +0000463
Christophe Lyon85596662011-02-21 17:38:44 +0100464/*----------------------------------------------------------------------------
465| The pattern for a default generated double-precision NaN.
466*----------------------------------------------------------------------------*/
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200467extern const float64 float64_default_nan;
Christophe Lyon85596662011-02-21 17:38:44 +0100468
bellard158142c2005-03-13 16:54:06 +0000469/*----------------------------------------------------------------------------
470| Software IEC/IEEE extended double-precision conversion routines.
471*----------------------------------------------------------------------------*/
Andreas Färber87b8cc32011-03-07 01:34:05 +0100472int32 floatx80_to_int32( floatx80 STATUS_PARAM );
473int32 floatx80_to_int32_round_to_zero( floatx80 STATUS_PARAM );
474int64 floatx80_to_int64( floatx80 STATUS_PARAM );
475int64 floatx80_to_int64_round_to_zero( floatx80 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000476float32 floatx80_to_float32( floatx80 STATUS_PARAM );
477float64 floatx80_to_float64( floatx80 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000478float128 floatx80_to_float128( floatx80 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000479
480/*----------------------------------------------------------------------------
481| Software IEC/IEEE extended double-precision operations.
482*----------------------------------------------------------------------------*/
483floatx80 floatx80_round_to_int( floatx80 STATUS_PARAM );
484floatx80 floatx80_add( floatx80, floatx80 STATUS_PARAM );
485floatx80 floatx80_sub( floatx80, floatx80 STATUS_PARAM );
486floatx80 floatx80_mul( floatx80, floatx80 STATUS_PARAM );
487floatx80 floatx80_div( floatx80, floatx80 STATUS_PARAM );
488floatx80 floatx80_rem( floatx80, floatx80 STATUS_PARAM );
489floatx80 floatx80_sqrt( floatx80 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200490int floatx80_eq( floatx80, floatx80 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000491int floatx80_le( floatx80, floatx80 STATUS_PARAM );
492int floatx80_lt( floatx80, floatx80 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200493int floatx80_unordered( floatx80, floatx80 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200494int floatx80_eq_quiet( floatx80, floatx80 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000495int floatx80_le_quiet( floatx80, floatx80 STATUS_PARAM );
496int floatx80_lt_quiet( floatx80, floatx80 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200497int floatx80_unordered_quiet( floatx80, floatx80 STATUS_PARAM );
Aurelien Jarnof6714d32011-04-20 13:04:22 +0200498int floatx80_compare( floatx80, floatx80 STATUS_PARAM );
499int floatx80_compare_quiet( floatx80, floatx80 STATUS_PARAM );
Peter Maydell18569872010-12-17 15:56:06 +0000500int floatx80_is_quiet_nan( floatx80 );
bellard750afe92006-10-28 19:27:11 +0000501int floatx80_is_signaling_nan( floatx80 );
Aurelien Jarnof6a7d922011-01-06 15:38:19 +0100502floatx80 floatx80_maybe_silence_nan( floatx80 );
pbrook9ee6e8b2007-11-11 00:04:49 +0000503floatx80 floatx80_scalbn( floatx80, int STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000504
bellard1d6bda32005-03-13 18:52:29 +0000505INLINE floatx80 floatx80_abs(floatx80 a)
506{
507 a.high &= 0x7fff;
508 return a;
509}
510
511INLINE floatx80 floatx80_chs(floatx80 a)
512{
513 a.high ^= 0x8000;
514 return a;
515}
516
aurel32c52ab6f2008-12-15 17:14:20 +0000517INLINE int floatx80_is_infinity(floatx80 a)
518{
Aurelien Jarnob76235e2011-04-20 13:04:22 +0200519 return (a.high & 0x7fff) == 0x7fff && a.low == 0x8000000000000000LL;
aurel32c52ab6f2008-12-15 17:14:20 +0000520}
521
522INLINE int floatx80_is_neg(floatx80 a)
523{
524 return a.high >> 15;
525}
526
527INLINE int floatx80_is_zero(floatx80 a)
528{
529 return (a.high & 0x7fff) == 0 && a.low == 0;
530}
531
Aurelien Jarno587eabf2011-05-15 14:09:18 +0200532INLINE int floatx80_is_zero_or_denormal(floatx80 a)
533{
534 return (a.high & 0x7fff) == 0;
535}
536
Peter Maydell2bed6522011-01-06 18:34:43 +0000537INLINE int floatx80_is_any_nan(floatx80 a)
538{
539 return ((a.high & 0x7fff) == 0x7fff) && (a.low<<1);
540}
541
Aurelien Jarnof3218a82011-04-20 13:04:22 +0200542#define floatx80_zero make_floatx80(0x0000, 0x0000000000000000LL)
543#define floatx80_one make_floatx80(0x3fff, 0x8000000000000000LL)
544#define floatx80_ln2 make_floatx80(0x3ffe, 0xb17217f7d1cf79acLL)
Aurelien Jarnoc4b4c772011-04-20 13:04:22 +0200545#define floatx80_pi make_floatx80(0x4000, 0xc90fdaa22168c235LL)
Aurelien Jarnof3218a82011-04-20 13:04:22 +0200546#define floatx80_half make_floatx80(0x3ffe, 0x8000000000000000LL)
547#define floatx80_infinity make_floatx80(0x7fff, 0x8000000000000000LL)
548
Christophe Lyon85596662011-02-21 17:38:44 +0100549/*----------------------------------------------------------------------------
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200550| The pattern for a default generated extended double-precision NaN.
Christophe Lyon85596662011-02-21 17:38:44 +0100551*----------------------------------------------------------------------------*/
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200552extern const floatx80 floatx80_default_nan;
Christophe Lyon85596662011-02-21 17:38:44 +0100553
bellard158142c2005-03-13 16:54:06 +0000554/*----------------------------------------------------------------------------
555| Software IEC/IEEE quadruple-precision conversion routines.
556*----------------------------------------------------------------------------*/
Andreas Färber87b8cc32011-03-07 01:34:05 +0100557int32 float128_to_int32( float128 STATUS_PARAM );
558int32 float128_to_int32_round_to_zero( float128 STATUS_PARAM );
559int64 float128_to_int64( float128 STATUS_PARAM );
560int64 float128_to_int64_round_to_zero( float128 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000561float32 float128_to_float32( float128 STATUS_PARAM );
562float64 float128_to_float64( float128 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000563floatx80 float128_to_floatx80( float128 STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000564
565/*----------------------------------------------------------------------------
566| Software IEC/IEEE quadruple-precision operations.
567*----------------------------------------------------------------------------*/
568float128 float128_round_to_int( float128 STATUS_PARAM );
569float128 float128_add( float128, float128 STATUS_PARAM );
570float128 float128_sub( float128, float128 STATUS_PARAM );
571float128 float128_mul( float128, float128 STATUS_PARAM );
572float128 float128_div( float128, float128 STATUS_PARAM );
573float128 float128_rem( float128, float128 STATUS_PARAM );
574float128 float128_sqrt( float128 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200575int float128_eq( float128, float128 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000576int float128_le( float128, float128 STATUS_PARAM );
577int float128_lt( float128, float128 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200578int float128_unordered( float128, float128 STATUS_PARAM );
Aurelien Jarnob6893622011-04-14 00:49:29 +0200579int float128_eq_quiet( float128, float128 STATUS_PARAM );
bellard750afe92006-10-28 19:27:11 +0000580int float128_le_quiet( float128, float128 STATUS_PARAM );
581int float128_lt_quiet( float128, float128 STATUS_PARAM );
Aurelien Jarno67b78612011-04-14 00:49:29 +0200582int float128_unordered_quiet( float128, float128 STATUS_PARAM );
blueswir11f587322007-11-25 18:40:20 +0000583int float128_compare( float128, float128 STATUS_PARAM );
584int float128_compare_quiet( float128, float128 STATUS_PARAM );
Peter Maydell18569872010-12-17 15:56:06 +0000585int float128_is_quiet_nan( float128 );
bellard750afe92006-10-28 19:27:11 +0000586int float128_is_signaling_nan( float128 );
Aurelien Jarnof6a7d922011-01-06 15:38:19 +0100587float128 float128_maybe_silence_nan( float128 );
pbrook9ee6e8b2007-11-11 00:04:49 +0000588float128 float128_scalbn( float128, int STATUS_PARAM );
bellard158142c2005-03-13 16:54:06 +0000589
bellard1d6bda32005-03-13 18:52:29 +0000590INLINE float128 float128_abs(float128 a)
591{
592 a.high &= 0x7fffffffffffffffLL;
593 return a;
594}
595
596INLINE float128 float128_chs(float128 a)
597{
598 a.high ^= 0x8000000000000000LL;
599 return a;
600}
601
aurel32c52ab6f2008-12-15 17:14:20 +0000602INLINE int float128_is_infinity(float128 a)
603{
604 return (a.high & 0x7fffffffffffffffLL) == 0x7fff000000000000LL && a.low == 0;
605}
606
607INLINE int float128_is_neg(float128 a)
608{
609 return a.high >> 63;
610}
611
612INLINE int float128_is_zero(float128 a)
613{
614 return (a.high & 0x7fffffffffffffffLL) == 0 && a.low == 0;
615}
616
Aurelien Jarno587eabf2011-05-15 14:09:18 +0200617INLINE int float128_is_zero_or_denormal(float128 a)
618{
619 return (a.high & 0x7fff000000000000LL) == 0;
620}
621
Peter Maydell2bed6522011-01-06 18:34:43 +0000622INLINE int float128_is_any_nan(float128 a)
623{
624 return ((a.high >> 48) & 0x7fff) == 0x7fff &&
625 ((a.low != 0) || ((a.high & 0xffffffffffffLL) != 0));
626}
627
Christophe Lyon85596662011-02-21 17:38:44 +0100628/*----------------------------------------------------------------------------
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200629| The pattern for a default generated quadruple-precision NaN.
Christophe Lyon85596662011-02-21 17:38:44 +0100630*----------------------------------------------------------------------------*/
Paolo Bonzini789ec7c2011-07-28 12:10:29 +0200631extern const float128 float128_default_nan;
Christophe Lyon85596662011-02-21 17:38:44 +0100632
bellard158142c2005-03-13 16:54:06 +0000633#endif /* !SOFTFLOAT_H */