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Twelve
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begin data <= ZZZZZZZZZZZZZZZZ ; ready <= 0 ; if sel = 1 then if rw = 0 then data <= mem_data(CONV_INTEGER(addr(15 downto 0))) after 1 ns; ready <= 1 ; elsif rw = 1 then mem_data(CONV_INTEGER(addr(15 downto 0))) := data; end if; else data <= ZZZZZZZZZZZZZZZZ after 1 ns; end if; end process; end behave;
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Entity mem is a large array with a simple bus interface to allow reading and writing to the memory A memory location is selected for read by placing the appropriate address of the location on signal addr, setting input rw (read write) to a 0 and putting the value 1 on signal sel (select) The value of the memory location appears on signal data, and signal ready is set to a 1 value signaling that the memory information is available To write a location in the memory, the address is placed on signal addr, set signal rw to a 1 value, set signal sel to a 1 value, and put the data to be written on input data The memory is divided into two separate sections The first section is the instruction area, and the second is the data area The instruction area contains the instructions to be executed, and the second section contains the data area for the instructions to manipulate The CPU instructions start at location 00 and end at location 0D The data area starts at location 10 and ends at location 3F, the end of the array The instructions stored in the memory device are a simple algorithm for moving a block of data from one location to another This type of program could also be considered a block copy operation
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A diagram showing how a block copy operation looks is shown in Figure 12-6 The copy operation starts when the CPU gets a reset signal A reset signal causes the CPU to reset its internal state and start processing instructions at location 00 of the memory The first few instructions set up the appropriate CPU registers so that the block copy operation can proceed Register 1 contains the starting address, or the address of the first element of the memory block to be copied Register 2 contains the starting address for the destination of the memory block Register 6 contains the ending address of the memory block to be copied The first instruction at location 00 loads register 1 with the starting address of the memory block to be copied The actual address is contained in mem location 01 The value is hexadecimal 10 or 16 decimal The block copy program starts the copy operation from location 10 The first instruction is a double-word instruction The first word specifies the instruction opcode and the registers to be used in the instruction The second word contains the absolute address to be used in the operation The next instruction is at memory location 02 The first instruction advanced the program counter past location 01, which contained the
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Memory Data
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Twelve
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Figure 12-6 Block Copy Operation
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Source
Destination
starting address This instruction loads register 2 with the destination address for the block copy The destination is at 30 hex or 48 decimal These load instructions are load-immediate instructions, which load the next memory location into the register specified in the instruction The final setup instruction is at mem location 04 This instruction loads the last address of the memory block to be copied This register signals the block copy routine when to stop the copy operation After this instruction has been executed, all of the registers have been set up for the block copy operation, and the copy loop can start Instruction 6 is the start of a loop of instructions that perform the copy operation Instruction 6 copies the contents of the memory location whose address is contained in register 1 to register 3 Instruction 7 copies the data in register 3 to the memory location specified in register 2 After
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