Fix exception propagation for VFP double precision
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7a7488a0bb
commit
7dde13f875
@ -357,8 +357,9 @@ inline int vfp_double_type(const vfp_double* s)
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// Unpack a double-precision float. Note that this returns the magnitude
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// Unpack a double-precision float. Note that this returns the magnitude
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// of the double-precision float mantissa with the 1. if necessary,
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// of the double-precision float mantissa with the 1. if necessary,
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// aligned to bit 62.
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// aligned to bit 62.
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inline void vfp_double_unpack(vfp_double* s, s64 val, u32* fpscr)
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inline u32 vfp_double_unpack(vfp_double* s, s64 val, u32 fpscr)
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{
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{
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u32 exceptions = 0;
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s->sign = vfp_double_packed_sign(val) >> 48;
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s->sign = vfp_double_packed_sign(val) >> 48;
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s->exponent = vfp_double_packed_exponent(val);
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s->exponent = vfp_double_packed_exponent(val);
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@ -369,12 +370,13 @@ inline void vfp_double_unpack(vfp_double* s, s64 val, u32* fpscr)
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// If flush-to-zero mode is enabled, turn the denormal into zero.
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// If flush-to-zero mode is enabled, turn the denormal into zero.
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// On a VFPv2 architecture, the sign of the zero is always positive.
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// On a VFPv2 architecture, the sign of the zero is always positive.
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if ((*fpscr & FPSCR_FLUSH_TO_ZERO) != 0 && (vfp_double_type(s) & VFP_DENORMAL) != 0) {
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if ((fpscr & FPSCR_FLUSH_TO_ZERO) != 0 && (vfp_double_type(s) & VFP_DENORMAL) != 0) {
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s->sign = 0;
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s->sign = 0;
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s->exponent = 0;
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s->exponent = 0;
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s->significand = 0;
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s->significand = 0;
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*fpscr |= FPSCR_IDC;
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exceptions |= FPSCR_IDC;
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}
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}
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return exceptions;
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}
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}
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// Re-pack a double-precision float. This assumes that the float is
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// Re-pack a double-precision float. This assumes that the float is
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@ -291,8 +291,9 @@ static u32 vfp_double_fsqrt(ARMul_State* state, int dd, int unused, int dm, u32
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double vdm, vdd, *vdp;
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vfp_double vdm, vdd, *vdp;
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int ret, tm;
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int ret, tm;
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u32 exceptions = 0;
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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tm = vfp_double_type(&vdm);
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tm = vfp_double_type(&vdm);
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if (tm & (VFP_NAN|VFP_INFINITY)) {
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if (tm & (VFP_NAN|VFP_INFINITY)) {
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@ -369,7 +370,9 @@ sqrt_invalid:
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}
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}
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vdd.significand = vfp_shiftright64jamming(vdd.significand, 1);
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vdd.significand = vfp_shiftright64jamming(vdd.significand, 1);
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, 0, "fsqrt");
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exceptions |= vfp_double_normaliseround(state, dd, &vdd, fpscr, 0, "fsqrt");
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return exceptions;
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}
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}
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/*
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/*
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@ -475,7 +478,7 @@ static u32 vfp_double_fcvts(ARMul_State* state, int sd, int unused, int dm, u32
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u32 exceptions = 0;
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u32 exceptions = 0;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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tm = vfp_double_type(&vdm);
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tm = vfp_double_type(&vdm);
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@ -545,7 +548,7 @@ static u32 vfp_double_ftoui(ARMul_State* state, int sd, int unused, int dm, u32
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int tm;
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int tm;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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/*
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/*
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* Do we have a denormalised number?
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* Do we have a denormalised number?
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@ -626,7 +629,7 @@ static u32 vfp_double_ftosi(ARMul_State* state, int sd, int unused, int dm, u32
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int tm;
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int tm;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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vfp_double_dump("VDM", &vdm);
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vfp_double_dump("VDM", &vdm);
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/*
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/*
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@ -892,21 +895,21 @@ static u32
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vfp_double_multiply_accumulate(ARMul_State* state, int dd, int dn, int dm, u32 fpscr, u32 negate, const char *func)
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vfp_double_multiply_accumulate(ARMul_State* state, int dd, int dn, int dm, u32 fpscr, u32 negate, const char *func)
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{
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{
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struct vfp_double vdd, vdp, vdn, vdm;
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struct vfp_double vdd, vdp, vdn, vdm;
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u32 exceptions;
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u32 exceptions = 0;
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vfp_double_unpack(&vdn, vfp_get_double(state, dn), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dn), fpscr);
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if (vdn.exponent == 0 && vdn.significand)
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if (vdn.exponent == 0 && vdn.significand)
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vfp_double_normalise_denormal(&vdn);
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vfp_double_normalise_denormal(&vdn);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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if (vdm.exponent == 0 && vdm.significand)
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if (vdm.exponent == 0 && vdm.significand)
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vfp_double_normalise_denormal(&vdm);
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vfp_double_normalise_denormal(&vdm);
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exceptions = vfp_double_multiply(&vdp, &vdn, &vdm, fpscr);
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exceptions |= vfp_double_multiply(&vdp, &vdn, &vdm, fpscr);
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if (negate & NEG_MULTIPLY)
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if (negate & NEG_MULTIPLY)
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vdp.sign = vfp_sign_negate(vdp.sign);
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vdp.sign = vfp_sign_negate(vdp.sign);
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vfp_double_unpack(&vdn, vfp_get_double(state, dd), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dd), fpscr);
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if (vdn.exponent == 0 && vdn.significand != 0)
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if (vdn.exponent == 0 && vdn.significand != 0)
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vfp_double_normalise_denormal(&vdn);
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vfp_double_normalise_denormal(&vdn);
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@ -964,18 +967,18 @@ static u32 vfp_double_fnmsc(ARMul_State* state, int dd, int dn, int dm, u32 fpsc
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static u32 vfp_double_fmul(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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static u32 vfp_double_fmul(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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{
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{
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struct vfp_double vdd, vdn, vdm;
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struct vfp_double vdd, vdn, vdm;
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u32 exceptions;
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u32 exceptions = 0;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdn, vfp_get_double(state, dn), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dn), fpscr);
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if (vdn.exponent == 0 && vdn.significand)
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if (vdn.exponent == 0 && vdn.significand)
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vfp_double_normalise_denormal(&vdn);
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vfp_double_normalise_denormal(&vdn);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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if (vdm.exponent == 0 && vdm.significand)
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if (vdm.exponent == 0 && vdm.significand)
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vfp_double_normalise_denormal(&vdm);
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vfp_double_normalise_denormal(&vdm);
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exceptions = vfp_double_multiply(&vdd, &vdn, &vdm, fpscr);
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exceptions |= vfp_double_multiply(&vdd, &vdn, &vdm, fpscr);
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fmul");
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fmul");
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}
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}
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@ -985,18 +988,18 @@ static u32 vfp_double_fmul(ARMul_State* state, int dd, int dn, int dm, u32 fpscr
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static u32 vfp_double_fnmul(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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static u32 vfp_double_fnmul(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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{
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{
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struct vfp_double vdd, vdn, vdm;
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struct vfp_double vdd, vdn, vdm;
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u32 exceptions;
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u32 exceptions = 0;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdn, vfp_get_double(state, dn), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dn), fpscr);
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if (vdn.exponent == 0 && vdn.significand)
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if (vdn.exponent == 0 && vdn.significand)
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vfp_double_normalise_denormal(&vdn);
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vfp_double_normalise_denormal(&vdn);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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if (vdm.exponent == 0 && vdm.significand)
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if (vdm.exponent == 0 && vdm.significand)
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vfp_double_normalise_denormal(&vdm);
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vfp_double_normalise_denormal(&vdm);
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exceptions = vfp_double_multiply(&vdd, &vdn, &vdm, fpscr);
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exceptions |= vfp_double_multiply(&vdd, &vdn, &vdm, fpscr);
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vdd.sign = vfp_sign_negate(vdd.sign);
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vdd.sign = vfp_sign_negate(vdd.sign);
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fnmul");
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fnmul");
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@ -1008,18 +1011,18 @@ static u32 vfp_double_fnmul(ARMul_State* state, int dd, int dn, int dm, u32 fpsc
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static u32 vfp_double_fadd(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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static u32 vfp_double_fadd(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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{
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{
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struct vfp_double vdd, vdn, vdm;
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struct vfp_double vdd, vdn, vdm;
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u32 exceptions;
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u32 exceptions = 0;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdn, vfp_get_double(state, dn), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dn), fpscr);
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if (vdn.exponent == 0 && vdn.significand)
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if (vdn.exponent == 0 && vdn.significand)
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vfp_double_normalise_denormal(&vdn);
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vfp_double_normalise_denormal(&vdn);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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if (vdm.exponent == 0 && vdm.significand)
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if (vdm.exponent == 0 && vdm.significand)
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vfp_double_normalise_denormal(&vdm);
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vfp_double_normalise_denormal(&vdm);
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exceptions = vfp_double_add(&vdd, &vdn, &vdm, fpscr);
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exceptions |= vfp_double_add(&vdd, &vdn, &vdm, fpscr);
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fadd");
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fadd");
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}
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}
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@ -1030,14 +1033,14 @@ static u32 vfp_double_fadd(ARMul_State* state, int dd, int dn, int dm, u32 fpscr
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static u32 vfp_double_fsub(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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static u32 vfp_double_fsub(ARMul_State* state, int dd, int dn, int dm, u32 fpscr)
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{
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{
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struct vfp_double vdd, vdn, vdm;
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struct vfp_double vdd, vdn, vdm;
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u32 exceptions;
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u32 exceptions = 0;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdn, vfp_get_double(state, dn), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dn), fpscr);
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if (vdn.exponent == 0 && vdn.significand)
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if (vdn.exponent == 0 && vdn.significand)
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vfp_double_normalise_denormal(&vdn);
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vfp_double_normalise_denormal(&vdn);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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if (vdm.exponent == 0 && vdm.significand)
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if (vdm.exponent == 0 && vdm.significand)
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vfp_double_normalise_denormal(&vdm);
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vfp_double_normalise_denormal(&vdm);
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@ -1046,7 +1049,7 @@ static u32 vfp_double_fsub(ARMul_State* state, int dd, int dn, int dm, u32 fpscr
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*/
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*/
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vdm.sign = vfp_sign_negate(vdm.sign);
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vdm.sign = vfp_sign_negate(vdm.sign);
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exceptions = vfp_double_add(&vdd, &vdn, &vdm, fpscr);
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exceptions |= vfp_double_add(&vdd, &vdn, &vdm, fpscr);
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fsub");
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, exceptions, "fsub");
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}
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}
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@ -1061,8 +1064,8 @@ static u32 vfp_double_fdiv(ARMul_State* state, int dd, int dn, int dm, u32 fpscr
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int tm, tn;
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int tm, tn;
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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LOG_TRACE(Core_ARM11, "In %s", __FUNCTION__);
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vfp_double_unpack(&vdn, vfp_get_double(state, dn), &fpscr);
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exceptions |= vfp_double_unpack(&vdn, vfp_get_double(state, dn), fpscr);
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vfp_double_unpack(&vdm, vfp_get_double(state, dm), &fpscr);
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exceptions |= vfp_double_unpack(&vdm, vfp_get_double(state, dm), fpscr);
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vdd.sign = vdn.sign ^ vdm.sign;
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vdd.sign = vdn.sign ^ vdm.sign;
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@ -1134,13 +1137,13 @@ static u32 vfp_double_fdiv(ARMul_State* state, int dd, int dn, int dm, u32 fpscr
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, 0, "fdiv");
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return vfp_double_normaliseround(state, dd, &vdd, fpscr, 0, "fdiv");
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vdn_nan:
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vdn_nan:
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exceptions = vfp_propagate_nan(&vdd, &vdn, &vdm, fpscr);
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exceptions |= vfp_propagate_nan(&vdd, &vdn, &vdm, fpscr);
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pack:
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pack:
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vfp_put_double(state, vfp_double_pack(&vdd), dd);
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vfp_put_double(state, vfp_double_pack(&vdd), dd);
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return exceptions;
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return exceptions;
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vdm_nan:
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vdm_nan:
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exceptions = vfp_propagate_nan(&vdd, &vdm, &vdn, fpscr);
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exceptions |= vfp_propagate_nan(&vdd, &vdm, &vdn, fpscr);
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goto pack;
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goto pack;
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zero:
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zero:
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@ -1149,7 +1152,7 @@ zero:
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goto pack;
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goto pack;
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divzero:
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divzero:
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exceptions = FPSCR_DZC;
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exceptions |= FPSCR_DZC;
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infinity:
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infinity:
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vdd.exponent = 2047;
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vdd.exponent = 2047;
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vdd.significand = 0;
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vdd.significand = 0;
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