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target-ppc: VSX Stage 4: Add xsresp
authorTom Musta <tommusta@gmail.com>
Wed, 15 Jan 2014 14:10:36 +0000 (08:10 -0600)
committerAlexander Graf <agraf@suse.de>
Wed, 5 Mar 2014 02:06:35 +0000 (03:06 +0100)
This patch adds the VSX Scalar Reciprocal Estimate Single Precision
(xsresp) instruction.

The existing VSX_RE macro is modified to support rounding of the
intermediate double precision result to single precision.

Signed-off-by: Tom Musta <tommusta@gmail.com>
Reviewed-by: Richard Henderson <rth@twiddle.net>
Signed-off-by: Alexander Graf <agraf@suse.de>
target-ppc/fpu_helper.c
target-ppc/helper.h
target-ppc/translate.c

index 49cf09a..ac52c23 100644 (file)
@@ -1928,7 +1928,7 @@ VSX_DIV(xvdivsp, 4, float32, f32, 0, 0)
  *   fld   - vsr_t field (f32 or f64)
  *   sfprf - set FPRF
  */
-#define VSX_RE(op, nels, tp, fld, sfprf)                                      \
+#define VSX_RE(op, nels, tp, fld, sfprf, r2sp)                                \
 void helper_##op(CPUPPCState *env, uint32_t opcode)                           \
 {                                                                             \
     ppc_vsr_t xt, xb;                                                         \
@@ -1943,6 +1943,11 @@ void helper_##op(CPUPPCState *env, uint32_t opcode)                           \
                 fload_invalid_op_excp(env, POWERPC_EXCP_FP_VXSNAN, sfprf);    \
         }                                                                     \
         xt.fld[i] = tp##_div(tp##_one, xb.fld[i], &env->fp_status);           \
+                                                                              \
+        if (r2sp) {                                                           \
+            xt.fld[i] = helper_frsp(env, xt.fld[i]);                          \
+        }                                                                     \
+                                                                              \
         if (sfprf) {                                                          \
             helper_compute_fprf(env, xt.fld[0], sfprf);                       \
         }                                                                     \
@@ -1952,9 +1957,10 @@ void helper_##op(CPUPPCState *env, uint32_t opcode)                           \
     helper_float_check_status(env);                                           \
 }
 
-VSX_RE(xsredp, 1, float64, f64, 1)
-VSX_RE(xvredp, 2, float64, f64, 0)
-VSX_RE(xvresp, 4, float32, f32, 0)
+VSX_RE(xsredp, 1, float64, f64, 1, 0)
+VSX_RE(xsresp, 1, float64, f64, 1, 1)
+VSX_RE(xvredp, 2, float64, f64, 0, 0)
+VSX_RE(xvresp, 4, float32, f32, 0, 0)
 
 /* VSX_SQRT - VSX floating point square root
  *   op    - instruction mnemonic
index 308f97c..b1cf3c0 100644 (file)
@@ -290,6 +290,7 @@ DEF_HELPER_2(xsaddsp, void, env, i32)
 DEF_HELPER_2(xssubsp, void, env, i32)
 DEF_HELPER_2(xsmulsp, void, env, i32)
 DEF_HELPER_2(xsdivsp, void, env, i32)
+DEF_HELPER_2(xsresp, void, env, i32)
 
 DEF_HELPER_2(xvadddp, void, env, i32)
 DEF_HELPER_2(xvsubdp, void, env, i32)
index dd4ddad..0dd6220 100644 (file)
@@ -7362,6 +7362,7 @@ GEN_VSX_HELPER_2(xsaddsp, 0x00, 0x00, 0, PPC2_VSX207)
 GEN_VSX_HELPER_2(xssubsp, 0x00, 0x01, 0, PPC2_VSX207)
 GEN_VSX_HELPER_2(xsmulsp, 0x00, 0x02, 0, PPC2_VSX207)
 GEN_VSX_HELPER_2(xsdivsp, 0x00, 0x03, 0, PPC2_VSX207)
+GEN_VSX_HELPER_2(xsresp, 0x14, 0x01, 0, PPC2_VSX207)
 
 GEN_VSX_HELPER_2(xvadddp, 0x00, 0x0C, 0, PPC2_VSX)
 GEN_VSX_HELPER_2(xvsubdp, 0x00, 0x0D, 0, PPC2_VSX)
@@ -10173,6 +10174,7 @@ GEN_XX3FORM(xsaddsp, 0x00, 0x00, PPC2_VSX207),
 GEN_XX3FORM(xssubsp, 0x00, 0x01, PPC2_VSX207),
 GEN_XX3FORM(xsmulsp, 0x00, 0x02, PPC2_VSX207),
 GEN_XX3FORM(xsdivsp, 0x00, 0x03, PPC2_VSX207),
+GEN_XX2FORM(xsresp,  0x14, 0x01, PPC2_VSX207),
 
 GEN_XX3FORM(xvadddp, 0x00, 0x0C, PPC2_VSX),
 GEN_XX3FORM(xvsubdp, 0x00, 0x0D, PPC2_VSX),