sgl_float.h 19 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-or-later */
  2. /*
  3. * Linux/PA-RISC Project (http://www.parisc-linux.org/)
  4. *
  5. * Floating-point emulation code
  6. * Copyright (C) 2001 Hewlett-Packard (Paul Bame) <[email protected]>
  7. */
  8. #ifdef __NO_PA_HDRS
  9. PA header file -- do not include this header file for non-PA builds.
  10. #endif
  11. /* 32-bit word grabbing functions */
  12. #define Sgl_firstword(value) Sall(value)
  13. #define Sgl_secondword(value) dummy_location
  14. #define Sgl_thirdword(value) dummy_location
  15. #define Sgl_fourthword(value) dummy_location
  16. #define Sgl_sign(object) Ssign(object)
  17. #define Sgl_exponent(object) Sexponent(object)
  18. #define Sgl_signexponent(object) Ssignexponent(object)
  19. #define Sgl_mantissa(object) Smantissa(object)
  20. #define Sgl_exponentmantissa(object) Sexponentmantissa(object)
  21. #define Sgl_all(object) Sall(object)
  22. /* sgl_and_signs ANDs the sign bits of each argument and puts the result
  23. * into the first argument. sgl_or_signs ors those same sign bits */
  24. #define Sgl_and_signs( src1dst, src2) \
  25. Sall(src1dst) = (Sall(src2)|~((unsigned int)1<<31)) & Sall(src1dst)
  26. #define Sgl_or_signs( src1dst, src2) \
  27. Sall(src1dst) = (Sall(src2)&((unsigned int)1<<31)) | Sall(src1dst)
  28. /* The hidden bit is always the low bit of the exponent */
  29. #define Sgl_clear_exponent_set_hidden(srcdst) Deposit_sexponent(srcdst,1)
  30. #define Sgl_clear_signexponent_set_hidden(srcdst) \
  31. Deposit_ssignexponent(srcdst,1)
  32. #define Sgl_clear_sign(srcdst) Sall(srcdst) &= ~((unsigned int)1<<31)
  33. #define Sgl_clear_signexponent(srcdst) Sall(srcdst) &= 0x007fffff
  34. /* varamount must be less than 32 for the next three functions */
  35. #define Sgl_rightshift(srcdst, varamount) \
  36. Sall(srcdst) >>= varamount
  37. #define Sgl_leftshift(srcdst, varamount) \
  38. Sall(srcdst) <<= varamount
  39. #define Sgl_rightshift_exponentmantissa(srcdst, varamount) \
  40. Sall(srcdst) = \
  41. (Sexponentmantissa(srcdst) >> varamount) | \
  42. (Sall(srcdst) & ((unsigned int)1<<31))
  43. #define Sgl_leftshiftby1_withextent(left,right,result) \
  44. Shiftdouble(Sall(left),Extall(right),31,Sall(result))
  45. #define Sgl_rightshiftby1_withextent(left,right,dst) \
  46. Shiftdouble(Sall(left),Extall(right),1,Extall(right))
  47. #define Sgl_arithrightshiftby1(srcdst) \
  48. Sall(srcdst) = (int)Sall(srcdst) >> 1
  49. /* Sign extend the sign bit with an integer destination */
  50. #define Sgl_signextendedsign(value) Ssignedsign(value)
  51. #define Sgl_isone_hidden(sgl_value) (Shidden(sgl_value))
  52. #define Sgl_increment(sgl_value) Sall(sgl_value) += 1
  53. #define Sgl_increment_mantissa(sgl_value) \
  54. Deposit_smantissa(sgl_value,sgl_value+1)
  55. #define Sgl_decrement(sgl_value) Sall(sgl_value) -= 1
  56. #define Sgl_isone_sign(sgl_value) (Is_ssign(sgl_value)!=0)
  57. #define Sgl_isone_hiddenoverflow(sgl_value) \
  58. (Is_shiddenoverflow(sgl_value)!=0)
  59. #define Sgl_isone_lowmantissa(sgl_value) (Is_slow(sgl_value)!=0)
  60. #define Sgl_isone_signaling(sgl_value) (Is_ssignaling(sgl_value)!=0)
  61. #define Sgl_is_signalingnan(sgl_value) (Ssignalingnan(sgl_value)==0x1ff)
  62. #define Sgl_isnotzero(sgl_value) (Sall(sgl_value)!=0)
  63. #define Sgl_isnotzero_hiddenhigh7mantissa(sgl_value) \
  64. (Shiddenhigh7mantissa(sgl_value)!=0)
  65. #define Sgl_isnotzero_low4(sgl_value) (Slow4(sgl_value)!=0)
  66. #define Sgl_isnotzero_exponent(sgl_value) (Sexponent(sgl_value)!=0)
  67. #define Sgl_isnotzero_mantissa(sgl_value) (Smantissa(sgl_value)!=0)
  68. #define Sgl_isnotzero_exponentmantissa(sgl_value) \
  69. (Sexponentmantissa(sgl_value)!=0)
  70. #define Sgl_iszero(sgl_value) (Sall(sgl_value)==0)
  71. #define Sgl_iszero_signaling(sgl_value) (Is_ssignaling(sgl_value)==0)
  72. #define Sgl_iszero_hidden(sgl_value) (Is_shidden(sgl_value)==0)
  73. #define Sgl_iszero_hiddenoverflow(sgl_value) \
  74. (Is_shiddenoverflow(sgl_value)==0)
  75. #define Sgl_iszero_hiddenhigh3mantissa(sgl_value) \
  76. (Shiddenhigh3mantissa(sgl_value)==0)
  77. #define Sgl_iszero_hiddenhigh7mantissa(sgl_value) \
  78. (Shiddenhigh7mantissa(sgl_value)==0)
  79. #define Sgl_iszero_sign(sgl_value) (Is_ssign(sgl_value)==0)
  80. #define Sgl_iszero_exponent(sgl_value) (Sexponent(sgl_value)==0)
  81. #define Sgl_iszero_mantissa(sgl_value) (Smantissa(sgl_value)==0)
  82. #define Sgl_iszero_exponentmantissa(sgl_value) \
  83. (Sexponentmantissa(sgl_value)==0)
  84. #define Sgl_isinfinity_exponent(sgl_value) \
  85. (Sgl_exponent(sgl_value)==SGL_INFINITY_EXPONENT)
  86. #define Sgl_isnotinfinity_exponent(sgl_value) \
  87. (Sgl_exponent(sgl_value)!=SGL_INFINITY_EXPONENT)
  88. #define Sgl_isinfinity(sgl_value) \
  89. (Sgl_exponent(sgl_value)==SGL_INFINITY_EXPONENT && \
  90. Sgl_mantissa(sgl_value)==0)
  91. #define Sgl_isnan(sgl_value) \
  92. (Sgl_exponent(sgl_value)==SGL_INFINITY_EXPONENT && \
  93. Sgl_mantissa(sgl_value)!=0)
  94. #define Sgl_isnotnan(sgl_value) \
  95. (Sgl_exponent(sgl_value)!=SGL_INFINITY_EXPONENT || \
  96. Sgl_mantissa(sgl_value)==0)
  97. #define Sgl_islessthan(sgl_op1,sgl_op2) \
  98. (Sall(sgl_op1) < Sall(sgl_op2))
  99. #define Sgl_isgreaterthan(sgl_op1,sgl_op2) \
  100. (Sall(sgl_op1) > Sall(sgl_op2))
  101. #define Sgl_isnotlessthan(sgl_op1,sgl_op2) \
  102. (Sall(sgl_op1) >= Sall(sgl_op2))
  103. #define Sgl_isequal(sgl_op1,sgl_op2) \
  104. (Sall(sgl_op1) == Sall(sgl_op2))
  105. #define Sgl_leftshiftby8(sgl_value) \
  106. Sall(sgl_value) <<= 8
  107. #define Sgl_leftshiftby4(sgl_value) \
  108. Sall(sgl_value) <<= 4
  109. #define Sgl_leftshiftby3(sgl_value) \
  110. Sall(sgl_value) <<= 3
  111. #define Sgl_leftshiftby2(sgl_value) \
  112. Sall(sgl_value) <<= 2
  113. #define Sgl_leftshiftby1(sgl_value) \
  114. Sall(sgl_value) <<= 1
  115. #define Sgl_rightshiftby1(sgl_value) \
  116. Sall(sgl_value) >>= 1
  117. #define Sgl_rightshiftby4(sgl_value) \
  118. Sall(sgl_value) >>= 4
  119. #define Sgl_rightshiftby8(sgl_value) \
  120. Sall(sgl_value) >>= 8
  121. #define Sgl_ismagnitudeless(signlessleft,signlessright) \
  122. /* unsigned int signlessleft, signlessright; */ \
  123. (signlessleft < signlessright)
  124. #define Sgl_copytoint_exponentmantissa(source,dest) \
  125. dest = Sexponentmantissa(source)
  126. /* A quiet NaN has the high mantissa bit clear and at least on other (in this
  127. * case the adjacent bit) bit set. */
  128. #define Sgl_set_quiet(sgl_value) Deposit_shigh2mantissa(sgl_value,1)
  129. #define Sgl_set_exponent(sgl_value,exp) Deposit_sexponent(sgl_value,exp)
  130. #define Sgl_set_mantissa(dest,value) Deposit_smantissa(dest,value)
  131. #define Sgl_set_exponentmantissa(dest,value) \
  132. Deposit_sexponentmantissa(dest,value)
  133. /* An infinity is represented with the max exponent and a zero mantissa */
  134. #define Sgl_setinfinity_exponent(sgl_value) \
  135. Deposit_sexponent(sgl_value,SGL_INFINITY_EXPONENT)
  136. #define Sgl_setinfinity_exponentmantissa(sgl_value) \
  137. Deposit_sexponentmantissa(sgl_value, \
  138. (SGL_INFINITY_EXPONENT << (32-(1+SGL_EXP_LENGTH))))
  139. #define Sgl_setinfinitypositive(sgl_value) \
  140. Sall(sgl_value) = (SGL_INFINITY_EXPONENT << (32-(1+SGL_EXP_LENGTH)))
  141. #define Sgl_setinfinitynegative(sgl_value) \
  142. Sall(sgl_value) = (SGL_INFINITY_EXPONENT << (32-(1+SGL_EXP_LENGTH))) \
  143. | ((unsigned int)1<<31)
  144. #define Sgl_setinfinity(sgl_value,sign) \
  145. Sall(sgl_value) = (SGL_INFINITY_EXPONENT << (32-(1+SGL_EXP_LENGTH))) | \
  146. ((unsigned int)sign << 31)
  147. #define Sgl_sethigh4bits(sgl_value, extsign) \
  148. Deposit_shigh4(sgl_value,extsign)
  149. #define Sgl_set_sign(sgl_value,sign) Deposit_ssign(sgl_value,sign)
  150. #define Sgl_invert_sign(sgl_value) \
  151. Deposit_ssign(sgl_value,~Ssign(sgl_value))
  152. #define Sgl_setone_sign(sgl_value) Deposit_ssign(sgl_value,1)
  153. #define Sgl_setone_lowmantissa(sgl_value) Deposit_slow(sgl_value,1)
  154. #define Sgl_setzero_sign(sgl_value) Sall(sgl_value) &= 0x7fffffff
  155. #define Sgl_setzero_exponent(sgl_value) Sall(sgl_value) &= 0x807fffff
  156. #define Sgl_setzero_mantissa(sgl_value) Sall(sgl_value) &= 0xff800000
  157. #define Sgl_setzero_exponentmantissa(sgl_value) Sall(sgl_value) &= 0x80000000
  158. #define Sgl_setzero(sgl_value) Sall(sgl_value) = 0
  159. #define Sgl_setnegativezero(sgl_value) Sall(sgl_value) = (unsigned int)1 << 31
  160. /* Use following macro for both overflow & underflow conditions */
  161. #define ovfl -
  162. #define unfl +
  163. #define Sgl_setwrapped_exponent(sgl_value,exponent,op) \
  164. Deposit_sexponent(sgl_value,(exponent op SGL_WRAP))
  165. #define Sgl_setlargestpositive(sgl_value) \
  166. Sall(sgl_value) = ((SGL_EMAX+SGL_BIAS) << (32-(1+SGL_EXP_LENGTH))) \
  167. | ((1<<(32-(1+SGL_EXP_LENGTH))) - 1 )
  168. #define Sgl_setlargestnegative(sgl_value) \
  169. Sall(sgl_value) = ((SGL_EMAX+SGL_BIAS) << (32-(1+SGL_EXP_LENGTH))) \
  170. | ((1<<(32-(1+SGL_EXP_LENGTH))) - 1 ) \
  171. | ((unsigned int)1<<31)
  172. #define Sgl_setnegativeinfinity(sgl_value) \
  173. Sall(sgl_value) = \
  174. ((1<<SGL_EXP_LENGTH) | SGL_INFINITY_EXPONENT) << (32-(1+SGL_EXP_LENGTH))
  175. #define Sgl_setlargest(sgl_value,sign) \
  176. Sall(sgl_value) = (unsigned int)sign << 31 | \
  177. (((SGL_EMAX+SGL_BIAS) << (32-(1+SGL_EXP_LENGTH))) \
  178. | ((1 << (32-(1+SGL_EXP_LENGTH))) - 1 ))
  179. #define Sgl_setlargest_exponentmantissa(sgl_value) \
  180. Sall(sgl_value) = Sall(sgl_value) & ((unsigned int)1<<31) | \
  181. (((SGL_EMAX+SGL_BIAS) << (32-(1+SGL_EXP_LENGTH))) \
  182. | ((1 << (32-(1+SGL_EXP_LENGTH))) - 1 ))
  183. /* The high bit is always zero so arithmetic or logical shifts will work. */
  184. #define Sgl_right_align(srcdst,shift,extent) \
  185. /* sgl_floating_point srcdst; int shift; extension extent */ \
  186. if (shift < 32) { \
  187. Extall(extent) = Sall(srcdst) << (32-(shift)); \
  188. Sall(srcdst) >>= shift; \
  189. } \
  190. else { \
  191. Extall(extent) = Sall(srcdst); \
  192. Sall(srcdst) = 0; \
  193. }
  194. #define Sgl_hiddenhigh3mantissa(sgl_value) Shiddenhigh3mantissa(sgl_value)
  195. #define Sgl_hidden(sgl_value) Shidden(sgl_value)
  196. #define Sgl_lowmantissa(sgl_value) Slow(sgl_value)
  197. /* The left argument is never smaller than the right argument */
  198. #define Sgl_subtract(sgl_left,sgl_right,sgl_result) \
  199. Sall(sgl_result) = Sall(sgl_left) - Sall(sgl_right)
  200. /* Subtract right augmented with extension from left augmented with zeros and
  201. * store into result and extension. */
  202. #define Sgl_subtract_withextension(left,right,extent,result) \
  203. /* sgl_floating_point left,right,result; extension extent */ \
  204. Sgl_subtract(left,right,result); \
  205. if((Extall(extent) = 0-Extall(extent))) \
  206. Sall(result) = Sall(result)-1
  207. #define Sgl_addition(sgl_left,sgl_right,sgl_result) \
  208. Sall(sgl_result) = Sall(sgl_left) + Sall(sgl_right)
  209. #define Sgl_xortointp1(left,right,result) \
  210. result = Sall(left) XOR Sall(right);
  211. #define Sgl_xorfromintp1(left,right,result) \
  212. Sall(result) = left XOR Sall(right)
  213. /* Need to Initialize */
  214. #define Sgl_makequietnan(dest) \
  215. Sall(dest) = ((SGL_EMAX+SGL_BIAS)+1)<< (32-(1+SGL_EXP_LENGTH)) \
  216. | (1<<(32-(1+SGL_EXP_LENGTH+2)))
  217. #define Sgl_makesignalingnan(dest) \
  218. Sall(dest) = ((SGL_EMAX+SGL_BIAS)+1)<< (32-(1+SGL_EXP_LENGTH)) \
  219. | (1<<(32-(1+SGL_EXP_LENGTH+1)))
  220. #define Sgl_normalize(sgl_opnd,exponent) \
  221. while(Sgl_iszero_hiddenhigh7mantissa(sgl_opnd)) { \
  222. Sgl_leftshiftby8(sgl_opnd); \
  223. exponent -= 8; \
  224. } \
  225. if(Sgl_iszero_hiddenhigh3mantissa(sgl_opnd)) { \
  226. Sgl_leftshiftby4(sgl_opnd); \
  227. exponent -= 4; \
  228. } \
  229. while(Sgl_iszero_hidden(sgl_opnd)) { \
  230. Sgl_leftshiftby1(sgl_opnd); \
  231. exponent -= 1; \
  232. }
  233. #define Sgl_setoverflow(sgl_opnd) \
  234. /* set result to infinity or largest number */ \
  235. switch (Rounding_mode()) { \
  236. case ROUNDPLUS: \
  237. if (Sgl_isone_sign(sgl_opnd)) { \
  238. Sgl_setlargestnegative(sgl_opnd); \
  239. } \
  240. else { \
  241. Sgl_setinfinitypositive(sgl_opnd); \
  242. } \
  243. break; \
  244. case ROUNDMINUS: \
  245. if (Sgl_iszero_sign(sgl_opnd)) { \
  246. Sgl_setlargestpositive(sgl_opnd); \
  247. } \
  248. else { \
  249. Sgl_setinfinitynegative(sgl_opnd); \
  250. } \
  251. break; \
  252. case ROUNDNEAREST: \
  253. Sgl_setinfinity_exponentmantissa(sgl_opnd); \
  254. break; \
  255. case ROUNDZERO: \
  256. Sgl_setlargest_exponentmantissa(sgl_opnd); \
  257. }
  258. #define Sgl_denormalize(opnd,exponent,guard,sticky,inexact) \
  259. Sgl_clear_signexponent_set_hidden(opnd); \
  260. if (exponent >= (1 - SGL_P)) { \
  261. guard = (Sall(opnd) >> -exponent) & 1; \
  262. if (exponent < 0) sticky |= Sall(opnd) << (32+exponent); \
  263. inexact = guard | sticky; \
  264. Sall(opnd) >>= (1-exponent); \
  265. } \
  266. else { \
  267. guard = 0; \
  268. sticky |= Sall(opnd); \
  269. inexact = sticky; \
  270. Sgl_setzero(opnd); \
  271. }
  272. /*
  273. * The fused multiply add instructions requires a single extended format,
  274. * with 48 bits of mantissa.
  275. */
  276. #define SGLEXT_THRESHOLD 48
  277. #define Sglext_setzero(valA,valB) \
  278. Sextallp1(valA) = 0; Sextallp2(valB) = 0
  279. #define Sglext_isnotzero_mantissap2(valB) (Sextallp2(valB)!=0)
  280. #define Sglext_isone_lowp1(val) (Sextlowp1(val)!=0)
  281. #define Sglext_isone_highp2(val) (Sexthighp2(val)!=0)
  282. #define Sglext_isnotzero_low31p2(val) (Sextlow31p2(val)!=0)
  283. #define Sglext_iszero(valA,valB) (Sextallp1(valA)==0 && Sextallp2(valB)==0)
  284. #define Sgl_copytoptr(src,destptr) *destptr = src
  285. #define Sgl_copyfromptr(srcptr,dest) dest = *srcptr
  286. #define Sglext_copy(srca,srcb,desta,destb) \
  287. Sextallp1(desta) = Sextallp1(srca); \
  288. Sextallp2(destb) = Sextallp2(srcb)
  289. #define Sgl_copyto_sglext(src1,dest1,dest2) \
  290. Sextallp1(dest1) = Sall(src1); Sextallp2(dest2) = 0
  291. #define Sglext_swap_lower(leftp2,rightp2) \
  292. Sextallp2(leftp2) = Sextallp2(leftp2) XOR Sextallp2(rightp2); \
  293. Sextallp2(rightp2) = Sextallp2(leftp2) XOR Sextallp2(rightp2); \
  294. Sextallp2(leftp2) = Sextallp2(leftp2) XOR Sextallp2(rightp2)
  295. #define Sglext_setone_lowmantissap2(value) Deposit_dlowp2(value,1)
  296. /* The high bit is always zero so arithmetic or logical shifts will work. */
  297. #define Sglext_right_align(srcdstA,srcdstB,shift) \
  298. {int shiftamt, sticky; \
  299. shiftamt = shift % 32; \
  300. sticky = 0; \
  301. switch (shift/32) { \
  302. case 0: if (shiftamt > 0) { \
  303. sticky = Sextallp2(srcdstB) << 32 - (shiftamt); \
  304. Variable_shift_double(Sextallp1(srcdstA), \
  305. Sextallp2(srcdstB),shiftamt,Sextallp2(srcdstB)); \
  306. Sextallp1(srcdstA) >>= shiftamt; \
  307. } \
  308. break; \
  309. case 1: if (shiftamt > 0) { \
  310. sticky = (Sextallp1(srcdstA) << 32 - (shiftamt)) | \
  311. Sextallp2(srcdstB); \
  312. } \
  313. else { \
  314. sticky = Sextallp2(srcdstB); \
  315. } \
  316. Sextallp2(srcdstB) = Sextallp1(srcdstA) >> shiftamt; \
  317. Sextallp1(srcdstA) = 0; \
  318. break; \
  319. } \
  320. if (sticky) Sglext_setone_lowmantissap2(srcdstB); \
  321. }
  322. /* The left argument is never smaller than the right argument */
  323. #define Sglext_subtract(lefta,leftb,righta,rightb,resulta,resultb) \
  324. if( Sextallp2(rightb) > Sextallp2(leftb) ) Sextallp1(lefta)--; \
  325. Sextallp2(resultb) = Sextallp2(leftb) - Sextallp2(rightb); \
  326. Sextallp1(resulta) = Sextallp1(lefta) - Sextallp1(righta)
  327. #define Sglext_addition(lefta,leftb,righta,rightb,resulta,resultb) \
  328. /* If the sum of the low words is less than either source, then \
  329. * an overflow into the next word occurred. */ \
  330. if ((Sextallp2(resultb) = Sextallp2(leftb)+Sextallp2(rightb)) < \
  331. Sextallp2(rightb)) \
  332. Sextallp1(resulta) = Sextallp1(lefta)+Sextallp1(righta)+1; \
  333. else Sextallp1(resulta) = Sextallp1(lefta)+Sextallp1(righta)
  334. #define Sglext_arithrightshiftby1(srcdstA,srcdstB) \
  335. Shiftdouble(Sextallp1(srcdstA),Sextallp2(srcdstB),1,Sextallp2(srcdstB)); \
  336. Sextallp1(srcdstA) = (int)Sextallp1(srcdstA) >> 1
  337. #define Sglext_leftshiftby8(valA,valB) \
  338. Shiftdouble(Sextallp1(valA),Sextallp2(valB),24,Sextallp1(valA)); \
  339. Sextallp2(valB) <<= 8
  340. #define Sglext_leftshiftby4(valA,valB) \
  341. Shiftdouble(Sextallp1(valA),Sextallp2(valB),28,Sextallp1(valA)); \
  342. Sextallp2(valB) <<= 4
  343. #define Sglext_leftshiftby3(valA,valB) \
  344. Shiftdouble(Sextallp1(valA),Sextallp2(valB),29,Sextallp1(valA)); \
  345. Sextallp2(valB) <<= 3
  346. #define Sglext_leftshiftby2(valA,valB) \
  347. Shiftdouble(Sextallp1(valA),Sextallp2(valB),30,Sextallp1(valA)); \
  348. Sextallp2(valB) <<= 2
  349. #define Sglext_leftshiftby1(valA,valB) \
  350. Shiftdouble(Sextallp1(valA),Sextallp2(valB),31,Sextallp1(valA)); \
  351. Sextallp2(valB) <<= 1
  352. #define Sglext_rightshiftby4(valueA,valueB) \
  353. Shiftdouble(Sextallp1(valueA),Sextallp2(valueB),4,Sextallp2(valueB)); \
  354. Sextallp1(valueA) >>= 4
  355. #define Sglext_rightshiftby3(valueA,valueB) \
  356. Shiftdouble(Sextallp1(valueA),Sextallp2(valueB),3,Sextallp2(valueB)); \
  357. Sextallp1(valueA) >>= 3
  358. #define Sglext_rightshiftby1(valueA,valueB) \
  359. Shiftdouble(Sextallp1(valueA),Sextallp2(valueB),1,Sextallp2(valueB)); \
  360. Sextallp1(valueA) >>= 1
  361. #define Sglext_xortointp1(left,right,result) Sgl_xortointp1(left,right,result)
  362. #define Sglext_xorfromintp1(left,right,result) \
  363. Sgl_xorfromintp1(left,right,result)
  364. #define Sglext_copytoint_exponentmantissa(src,dest) \
  365. Sgl_copytoint_exponentmantissa(src,dest)
  366. #define Sglext_ismagnitudeless(signlessleft,signlessright) \
  367. Sgl_ismagnitudeless(signlessleft,signlessright)
  368. #define Sglext_set_sign(dbl_value,sign) Sgl_set_sign(dbl_value,sign)
  369. #define Sglext_clear_signexponent_set_hidden(srcdst) \
  370. Sgl_clear_signexponent_set_hidden(srcdst)
  371. #define Sglext_clear_signexponent(srcdst) Sgl_clear_signexponent(srcdst)
  372. #define Sglext_clear_sign(srcdst) Sgl_clear_sign(srcdst)
  373. #define Sglext_isone_hidden(dbl_value) Sgl_isone_hidden(dbl_value)
  374. #define Sglext_denormalize(opndp1,opndp2,exponent,is_tiny) \
  375. {int sticky; \
  376. is_tiny = TRUE; \
  377. if (exponent == 0 && Sextallp2(opndp2)) { \
  378. switch (Rounding_mode()) { \
  379. case ROUNDPLUS: \
  380. if (Sgl_iszero_sign(opndp1)) \
  381. if (Sgl_isone_hiddenoverflow(opndp1 + 1)) \
  382. is_tiny = FALSE; \
  383. break; \
  384. case ROUNDMINUS: \
  385. if (Sgl_isone_sign(opndp1)) { \
  386. if (Sgl_isone_hiddenoverflow(opndp1 + 1)) \
  387. is_tiny = FALSE; \
  388. } \
  389. break; \
  390. case ROUNDNEAREST: \
  391. if (Sglext_isone_highp2(opndp2) && \
  392. (Sglext_isone_lowp1(opndp1) || \
  393. Sglext_isnotzero_low31p2(opndp2))) \
  394. if (Sgl_isone_hiddenoverflow(opndp1 + 1)) \
  395. is_tiny = FALSE; \
  396. break; \
  397. } \
  398. } \
  399. Sglext_clear_signexponent_set_hidden(opndp1); \
  400. if (exponent >= (1-DBL_P)) { \
  401. if (exponent >= -31) { \
  402. if (exponent > -31) { \
  403. sticky = Sextallp2(opndp2) << 31+exponent; \
  404. Variable_shift_double(opndp1,opndp2,1-exponent,opndp2); \
  405. Sextallp1(opndp1) >>= 1-exponent; \
  406. } \
  407. else { \
  408. sticky = Sextallp2(opndp2); \
  409. Sextallp2(opndp2) = Sextallp1(opndp1); \
  410. Sextallp1(opndp1) = 0; \
  411. } \
  412. } \
  413. else { \
  414. sticky = (Sextallp1(opndp1) << 31+exponent) | \
  415. Sextallp2(opndp2); \
  416. Sextallp2(opndp2) = Sextallp1(opndp1) >> -31-exponent; \
  417. Sextallp1(opndp1) = 0; \
  418. } \
  419. } \
  420. else { \
  421. sticky = Sextallp1(opndp1) | Sextallp2(opndp2); \
  422. Sglext_setzero(opndp1,opndp2); \
  423. } \
  424. if (sticky) Sglext_setone_lowmantissap2(opndp2); \
  425. exponent = 0; \
  426. }