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ST10F167 数据表(PDF) 19 Page - STMicroelectronics |
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ST10F167 数据表(HTML) 19 Page - STMicroelectronics |
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19 / 69 page ![]() 19/69 ST10F167 7 CENTRAL PROCESSING UNIT (CPU) Figure 7.1 CPU Block Diagram The main core of the CPU consists of a 4-stage in- struction pipeline, a 16-bit arithmetic and logic unit (ALU) and dedicated SFRs. has been added for a separate multiply and divide unit, a bit-mask gen- erator and a barrel shifter. Based on these hardware provisions, most of the ST10F167’s instructions can be executed in one machine cycle. This requires 100ns at 20MHz CPU clock. For example, shift and rotate instruc- tions are always processed during one machine cycle independent of the number of bits to be shift- ed. All multiple-cycle instructions have been opti- mized for speed: branches in 2 cycles, a 16 × 16 bit multiplication in 5 cycles and a 32-/16 bit divi- sion in 10 cycles. The ‘Jump Cache’ pipeline opti- mization, reduces the execution time of repeatedly performed jumps in a loop, from 2 cycles to 1 cy- cle. The CPU includes an actual register context. This consists of up to 16 wordwide GPRs which are physically allocated within the on-chip RAM area. A Context Pointer (CP) register determines the base address of the active register bank to be ac- cessed by the CPU at a time. The number of reg- ister banks is only restricted by the available inter- nal RAM space. For easy parameter passing, a register bank may overlap others. A system stack of up to 2048 bytes is provided as a storage for temporary data. The system stack is allocated in the on-chip RAM area, and it is ac- cessed by the CPU via the stack pointer (SP) reg- ister. Two separate SFRs, STKOV and STKUN, are implicitly compared against the stack pointer value upon each stack access for the detection of a stack overflow or underflow. 16 16 32 FLASH Internal RAM 2KByte R15 R0 General Purpose Registers R0 R15 MDH MLD Barrel-Shift Mul./Div.-HW Bit-Mask Gen. ALU 16-Bit Context Ptr SP STKOV STKUN Exec. Unit Instr. Ptr Instr. Reg 4-Stage Pipeline PSW SYSCON BUSCON 0 BUSCON 1 BUSCON 2 BUSCON 3 BUSCON 4 ADDRSE L 1 ADDRSE L 2 ADDRSE L 3 ADDRSE L 4 Data Pg. Ptrs Code Seg. Ptr. CPU ROM 3 |
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