在 2022/11/9 下午9:53, Xi Ruoyao 写道:
This allows optimizing __builtin_ldexp{,f} and __builtin_scalbn{,f} with
-fno-math-errno.

IMODE is added because we can't hard code SI for operand 2: fscaleb.d
instruction always take the high half of both source registers into
account.  See my_ldexp_long in the test case.

gcc/ChangeLog:

        * config/loongarch/loongarch.md (UNSPEC_FSCALEB): New unspec.
        (type): Add fscaleb.
        (IMODE): New mode attr.
        (ldexp<mode>3): New instruction template.

gcc/testsuite/ChangeLog:

        * gcc.target/loongarch/fscaleb.c: New test.
---
  gcc/config/loongarch/loongarch.md            | 26 ++++++++++-
  gcc/testsuite/gcc.target/loongarch/fscaleb.c | 48 ++++++++++++++++++++
  2 files changed, 72 insertions(+), 2 deletions(-)
  create mode 100644 gcc/testsuite/gcc.target/loongarch/fscaleb.c

diff --git a/gcc/config/loongarch/loongarch.md 
b/gcc/config/loongarch/loongarch.md
index eb127c346a3..c141c9adde2 100644
--- a/gcc/config/loongarch/loongarch.md
+++ b/gcc/config/loongarch/loongarch.md
@@ -41,6 +41,7 @@ (define_c_enum "unspec" [
    UNSPEC_FTINT
    UNSPEC_FTINTRM
    UNSPEC_FTINTRP
+  UNSPEC_FSCALEB
;; Override return address for exception handling.
    UNSPEC_EH_RETURN
@@ -220,6 +221,7 @@ (define_attr "qword_mode" "no,yes"
  ;; fcmp               floating point compare
  ;; fcopysign  floating point copysign
  ;; fcvt               floating point convert
+;; fscaleb     floating point scale
  ;; fsqrt      floating point square root
  ;; frsqrt       floating point reciprocal square root
  ;; multi      multiword sequence (or user asm statements)
@@ -231,8 +233,8 @@ (define_attr "type"
    "unknown,branch,jump,call,load,fpload,fpidxload,store,fpstore,fpidxstore,
     prefetch,prefetchx,condmove,mgtf,mftg,const,arith,logical,
     shift,slt,signext,clz,trap,imul,idiv,move,
-   fmove,fadd,fmul,fmadd,fdiv,frdiv,fabs,fneg,fcmp,fcopysign,fcvt,fsqrt,
-   frsqrt,accext,accmod,multi,atomic,syncloop,nop,ghost"
+   fmove,fadd,fmul,fmadd,fdiv,frdiv,fabs,fneg,fcmp,fcopysign,fcvt,fscaleb,
+   fsqrt,frsqrt,accext,accmod,multi,atomic,syncloop,nop,ghost"
    (cond [(eq_attr "jirl" "!unset") (const_string "call")
         (eq_attr "got" "load") (const_string "load")
@@ -418,6 +420,10 @@ (define_mode_attr UNITMODE [(SF "SF") (DF "DF")])
  ;; the controlling mode.
  (define_mode_attr HALFMODE [(DF "SI") (DI "SI") (TF "DI")])
+;; This attribute gives the integer mode that has the same size of a
+;; floating-point mode.
+(define_mode_attr IMODE [(SF "SI") (DF "DI")])
+
  ;; This code iterator allows signed and unsigned widening multiplications
  ;; to use the same template.
  (define_code_iterator any_extend [sign_extend zero_extend])
@@ -1014,7 +1020,23 @@ (define_insn "copysign<mode>3"
    "fcopysign.<fmt>\t%0,%1,%2"
    [(set_attr "type" "fcopysign")
     (set_attr "mode" "<UNITMODE>")])
+
+;;
+;;  ....................
+;;
+;;     FLOATING POINT SCALE
+;;
+;;  ....................
+(define_insn "ldexp<mode>3"
+  [(set (match_operand:ANYF 0 "register_operand" "=f")
+       (unspec:ANYF [(match_operand:ANYF    1 "register_operand" "f")
+                     (match_operand:<IMODE> 2 "register_operand" "f")]
+                    UNSPEC_FSCALEB))]
+  "TARGET_HARD_FLOAT"
+  "fscaleb.<fmt>\t%0,%1,%2"
+  [(set_attr "type" "fscaleb")
+   (set_attr "mode" "<UNITMODE>")])
  
  ;;
  ;;  ...................
diff --git a/gcc/testsuite/gcc.target/loongarch/fscaleb.c 
b/gcc/testsuite/gcc.target/loongarch/fscaleb.c
new file mode 100644
index 00000000000..f18470fbb8f
--- /dev/null
+++ b/gcc/testsuite/gcc.target/loongarch/fscaleb.c
@@ -0,0 +1,48 @@
+/* { dg-do compile } */
+/* { dg-options "-O2 -mabi=lp64d -mdouble-float -fno-math-errno" } */
+/* { dg-final { scan-assembler-times "fscaleb\\.s" 3 } } */
+/* { dg-final { scan-assembler-times "fscaleb\\.d" 4 } } */
+/* { dg-final { scan-assembler-times "slli\\.w" 1 } } */
+
+double
+my_scalbln (double a, long b)
+{
+  return __builtin_scalbln (a, b);
+}
+
+double
+my_scalbn (double a, int b)
+{
+  return __builtin_scalbn (a, b);
+}
+
+
+float
+my_scalblnf (float a, long b)
+{
+  return __builtin_scalblnf (a, b);
+}
+
+float
+my_scalbnf (float a, int b)
+{
+  return __builtin_scalbnf (a, b);
+}
+

I think scalbln/scalblnf/scalbn/scalbnf these four builtin test function with the macro __FLT_RADIX__ control.

These functions are tested only if the macro __FLT_RADIX__ has a value of 2.


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