//
// Every VFP instruction:
// - Acquires DRegsVFP resource for 1 cycle
- // - Reserves DRegsN resource for the whole duration.
+ // - Reserves DRegsN resource for the whole duration (including time to
+ // register file writeback!).
// Every NEON instruction does the same but with FUs swapped.
//
// Since the reserved FU cannot be acquired this models precisly "cross-domain"
// FP Special Register to Integer Register File Move
InstrItinData<IIC_fpSTAT , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<2, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>]>,
//
// Single-precision FP Unary
InstrItinData<IIC_fpUNA32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
- InstrStage2<2, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [1, 1]>,
+ // Extra 1 latency cycle since wbck is 2 cycles
+ InstrStage2<3, [FU_DRegsN], 0, Reserved>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [1, 1]>,
//
// Double-precision FP Unary
InstrItinData<IIC_fpUNA64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
- InstrStage2<2, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [1, 1]>,
+ // Extra 1 latency cycle since wbck is 2 cycles
+ InstrStage2<3, [FU_DRegsN], 0, Reserved>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [1, 1]>,
//
// Single-precision FP Compare
InstrItinData<IIC_fpCMP32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
- InstrStage2<2, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [1, 1]>,
+ // Extra 3 latency cycle since wbck is 4 cycles
+ InstrStage2<5, [FU_DRegsN], 0, Reserved>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [1, 1]>,
//
// Double-precision FP Compare
InstrItinData<IIC_fpCMP64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
- InstrStage2<2, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [1, 1]>,
+ // Extra 3 latency cycle since wbck is 4 cycles
+ InstrStage2<5, [FU_DRegsN], 0, Reserved>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [1, 1]>,
//
// Single to Double FP Convert
InstrItinData<IIC_fpCVTSD , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1]>,
//
// Double to Single FP Convert
InstrItinData<IIC_fpCVTDS , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
// Half to Single FP Convert
InstrItinData<IIC_fpCVTHS , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<3, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [2, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [2, 1]>,
//
// Single-Precision FP to Integer Convert
InstrItinData<IIC_fpCVTSI , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1]>,
//
// Double-Precision FP to Integer Convert
InstrItinData<IIC_fpCVTDI , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1]>,
//
// Integer to Single-Precision FP Convert
InstrItinData<IIC_fpCVTIS , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1]>,
//
// Integer to Double-Precision FP Convert
InstrItinData<IIC_fpCVTID , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1]>,
//
// Single-precision FP ALU
InstrItinData<IIC_fpALU32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1, 1]>,
//
// Double-precision FP ALU
InstrItinData<IIC_fpALU64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<5, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [4, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [4, 1, 1]>,
//
// Single-precision FP Multiply
InstrItinData<IIC_fpMUL32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<6, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [5, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [5, 1, 1]>,
//
// Double-precision FP Multiply
InstrItinData<IIC_fpMUL64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<7, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<2, [FU_NPipe]>], [6, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<2, [FU_NPipe]>], [6, 1, 1]>,
//
// Single-precision FP MAC
InstrItinData<IIC_fpMAC32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<9, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<1, [FU_NPipe]>], [8, 0, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<1, [FU_NPipe]>], [8, 0, 1, 1]>,
//
// Double-precision FP MAC
- InstrItinData<IIC_fpMAC64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
+ InstrItinData<IIC_fpMAC64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<10, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<2, [FU_NPipe]>], [9, 0, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<2, [FU_NPipe]>], [9, 0, 1, 1]>,
//
// Single-precision FP DIV
- InstrItinData<IIC_fpDIV32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
+ InstrItinData<IIC_fpDIV32 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<16, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<10, [FU_NPipe]>], [15, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<10, [FU_NPipe]>], [15, 1, 1]>,
//
// Double-precision FP DIV
- InstrItinData<IIC_fpDIV64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
+ InstrItinData<IIC_fpDIV64 , [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<26, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<20, [FU_NPipe]>], [25, 1, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<20, [FU_NPipe]>], [25, 1, 1]>,
//
// Single-precision FP SQRT
- InstrItinData<IIC_fpSQRT32, [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
+ InstrItinData<IIC_fpSQRT32, [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<18, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<13, [FU_NPipe]>], [17, 1]>,
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<13, [FU_NPipe]>], [17, 1]>,
//
// Double-precision FP SQRT
- InstrItinData<IIC_fpSQRT64, [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
+ InstrItinData<IIC_fpSQRT64, [InstrStage2<1, [FU_DRegsVFP], 0, Required>,
InstrStage2<33, [FU_DRegsN], 0, Reserved>,
- InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
- InstrStage<28, [FU_NPipe]>], [32, 1]>
+ InstrStage<1, [FU_Pipe0, FU_Pipe1]>,
+ InstrStage<28, [FU_NPipe]>], [32, 1]>
]>;