Merge pull request #12249 from Sintendo/frsqrte-nit
PowerPC: Negate m_dec values in frsqrte table
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9bea807732
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@ -74,14 +74,14 @@ u32 ClassifyFloat(float fvalue)
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}
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const std::array<BaseAndDec, 32> frsqrte_expected = {{
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{0x1a7e800, 0x568}, {0x17cb800, 0x4f3}, {0x1552800, 0x48d}, {0x130c000, 0x435},
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{0x10f2000, 0x3e7}, {0x0eff000, 0x3a2}, {0x0d2e000, 0x365}, {0x0b7c000, 0x32e},
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{0x09e5000, 0x2fc}, {0x0867000, 0x2d0}, {0x06ff000, 0x2a8}, {0x05ab800, 0x283},
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{0x046a000, 0x261}, {0x0339800, 0x243}, {0x0218800, 0x226}, {0x0105800, 0x20b},
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{0x3ffa000, 0x7a4}, {0x3c29000, 0x700}, {0x38aa000, 0x670}, {0x3572000, 0x5f2},
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{0x3279000, 0x584}, {0x2fb7000, 0x524}, {0x2d26000, 0x4cc}, {0x2ac0000, 0x47e},
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{0x2881000, 0x43a}, {0x2665000, 0x3fa}, {0x2468000, 0x3c2}, {0x2287000, 0x38e},
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{0x20c1000, 0x35e}, {0x1f12000, 0x332}, {0x1d79000, 0x30a}, {0x1bf4000, 0x2e6},
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{0x1a7e800, -0x568}, {0x17cb800, -0x4f3}, {0x1552800, -0x48d}, {0x130c000, -0x435},
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{0x10f2000, -0x3e7}, {0x0eff000, -0x3a2}, {0x0d2e000, -0x365}, {0x0b7c000, -0x32e},
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{0x09e5000, -0x2fc}, {0x0867000, -0x2d0}, {0x06ff000, -0x2a8}, {0x05ab800, -0x283},
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{0x046a000, -0x261}, {0x0339800, -0x243}, {0x0218800, -0x226}, {0x0105800, -0x20b},
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{0x3ffa000, -0x7a4}, {0x3c29000, -0x700}, {0x38aa000, -0x670}, {0x3572000, -0x5f2},
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{0x3279000, -0x584}, {0x2fb7000, -0x524}, {0x2d26000, -0x4cc}, {0x2ac0000, -0x47e},
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{0x2881000, -0x43a}, {0x2665000, -0x3fa}, {0x2468000, -0x3c2}, {0x2287000, -0x38e},
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{0x20c1000, -0x35e}, {0x1f12000, -0x332}, {0x1d79000, -0x30a}, {0x1bf4000, -0x2e6},
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}};
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double ApproximateReciprocalSquareRoot(double val)
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@ -134,7 +134,7 @@ double ApproximateReciprocalSquareRoot(double val)
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const int i = static_cast<int>((exponent_lsb | mantissa) >> 37);
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const auto& entry = frsqrte_expected[i / 2048];
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integral |= static_cast<s64>(entry.m_base - entry.m_dec * (i % 2048)) << 26;
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integral |= static_cast<s64>(entry.m_base + entry.m_dec * (i % 2048)) << 26;
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return BitCast<double>(integral);
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}
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@ -150,13 +150,12 @@ void CommonAsmRoutines::GenFrsqrte()
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AND(32, R(RSCRATCH), Imm32(0x7FF));
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IMUL(32, RSCRATCH,
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MComplex(RSCRATCH2, RSCRATCH_EXTRA, SCALE_8, offsetof(Common::BaseAndDec, m_dec)));
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MOV(32, R(RSCRATCH_EXTRA),
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ADD(32, R(RSCRATCH),
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MComplex(RSCRATCH2, RSCRATCH_EXTRA, SCALE_8, offsetof(Common::BaseAndDec, m_base)));
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SUB(32, R(RSCRATCH_EXTRA), R(RSCRATCH));
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SHL(64, R(RSCRATCH_EXTRA), Imm8(26));
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SHL(64, R(RSCRATCH), Imm8(26));
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POP(RSCRATCH2);
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OR(64, R(RSCRATCH2), R(RSCRATCH_EXTRA)); // vali |= (s64)(frsqrte_expected_base[index] -
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OR(64, R(RSCRATCH2), R(RSCRATCH)); // vali |= (s64)(frsqrte_expected_base[index] +
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// frsqrte_expected_dec[index] * (i % 2048)) << 26;
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MOVQ_xmm(XMM0, R(RSCRATCH2));
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RET();
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@ -347,7 +347,7 @@ void JitArm64::GenerateFrsqrte()
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LDP(IndexType::Signed, ARM64Reg::W1, ARM64Reg::W2, ARM64Reg::X2, 0);
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UBFX(ARM64Reg::X3, ARM64Reg::X3, 37, 11);
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AND(ARM64Reg::X0, ARM64Reg::X0, LogicalImm(Common::DOUBLE_SIGN | Common::DOUBLE_EXP, 64));
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MSUB(ARM64Reg::W3, ARM64Reg::W3, ARM64Reg::W2, ARM64Reg::W1);
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MADD(ARM64Reg::W3, ARM64Reg::W3, ARM64Reg::W2, ARM64Reg::W1);
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ORR(ARM64Reg::X0, ARM64Reg::X0, ARM64Reg::X3, ArithOption(ARM64Reg::X3, ShiftType::LSL, 26));
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RET();
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