Download Dazhuzhu-github_systolic-array/source/controller.v from SAIFIINDUSTRIES/verilog_data-2: direct link, hf CLI and curl.
- Browser
- Download file 7.14 kB
-
https://huggingface.co/datasets/SAIFIINDUSTRIES/verilog_data-2/resolve/main/Dazhuzhu-github_systolic-array/source/controller.v
- Command line
-
hf download hf://datasets/SAIFIINDUSTRIES/verilog_data-2/Dazhuzhu-github_systolic-array/source/controller.v
-
curl -L -o controller.v https://huggingface.co/datasets/SAIFIINDUSTRIES/verilog_data-2/resolve/main/Dazhuzhu-github_systolic-array/source/controller.v
7.14 kB
| module controller( | |
| // interface to system | |
| input wire CLK, // CLK = 200MHz | |
| input wire RESET, // RESET, Negedge is active | |
| input wire EN, // enable signal for the accelerator, high for active | |
| // parameters giving by testbench (in real implementation should be given by instructions) | |
| // input wire [9:0] NIN, // input channel number | |
| // input wire [9:0] NOUT, // output channel number | |
| // input wire [15:0] ISIZE, // input size (8bit for height, 8bit for width, 0 for height=1...) | |
| // input wire [5:0] IPADDING, // input padding (3bit for height, 3bit for width, 0 for padding=0...) | |
| // input wire [7:0] WSIZE, // conv kernel size (4bit for height, 4bit for width, 0 for height=1...) | |
| // input wire [3:0] WSTRIDE, // conv stride (2bit for height, 2bit for width, 0 for stride=1...) | |
| // input wire [5:0] OSHIFT, // right shift bit of the data. 0 for shift=0... | |
| // input wire [12:0] IADDR, // input address for shared SRAM | |
| // input wire [12:0] WADDR, // weight address for shared SRAM | |
| // input wire [12:0] OADDR, // output address for shared SRAM | |
| output reg [5:0] STATE, // output state for the tb to check the runtime... | |
| // interface to PE array (control + data manipulation) | |
| output reg W_EN, | |
| output reg SELECTOR, | |
| // interface to buffers (control) | |
| input wire [12:0] IADDR, // input address for shared SRAM | |
| input wire [12:0] WADDR, // weight address for shared SRAM | |
| input wire [12:0] OADDR, // output address for shared SRAM | |
| //share buffer | |
| output reg share_wen, | |
| output reg share_ren, | |
| output reg share_cen, | |
| output reg [12:0] share_addr, | |
| // input wire [127:0] input_data | |
| // weight buffer | |
| output reg weight_wen, | |
| output reg weight_ren, | |
| output reg weight_cen, | |
| output reg [12:0] weight_addr, | |
| // activate buffer | |
| output reg activate_wen, | |
| output reg activate_ren, | |
| output reg activate_cen, | |
| output reg [12:0] activate_addr, | |
| // output buffer | |
| output reg output_wen, | |
| output reg output_ren, | |
| output reg output_cen, | |
| output reg [12:0] output_addr | |
| ); | |
| parameter IDLE = 6'd0; // idle state | |
| parameter INPUTA = 6'd1; // activation (tiled) input from shared buffer to input buffer | |
| parameter INPUTW = 6'd2; // weight (tiled) input from shared buffer to weight buffer | |
| parameter INPUTSW = 6'd3; | |
| parameter INPUTSA = 6'd4; | |
| parameter CALCULATE = 6'd5; | |
| parameter OUTPUT = 6'd6; | |
| parameter RETURN = 6'd7; | |
| parameter OUTPUTTOSHARE = 6'd8; | |
| //parameter | |
| // reg [12:0] input_addr; | |
| // reg [12:0] weight_addr; | |
| // reg [12:0] output_addr; | |
| // reg [12:0] count; | |
| always @(posedge CLK or negedge RESET) begin | |
| if(~RESET) begin | |
| // reset | |
| STATE <= IDLE; | |
| W_EN <= 0; | |
| SELECTOR <=0; | |
| // interface to buffers (control) | |
| // input_addr <= 0; | |
| // output_addr <= 0; | |
| //share buffer | |
| share_wen <= 1; | |
| share_ren <= 0; | |
| share_cen <= 1; | |
| share_addr <= 0; | |
| // weight buffer | |
| weight_wen <= 1; | |
| weight_ren <= 0; | |
| weight_cen <= 1; | |
| weight_addr <= 0; | |
| // // activate buffer | |
| activate_wen <= 1; | |
| activate_ren <= 0; | |
| activate_cen <= 1; | |
| activate_addr <= 0; | |
| // output buffer | |
| output_wen <= 1; | |
| output_ren <= 0; | |
| output_cen <= 1; | |
| output_addr <= 0; | |
| end else if (EN) begin | |
| // state transform logic | |
| if (STATE == IDLE) begin | |
| STATE <= INPUTSW; | |
| share_wen <= 0; | |
| share_ren <= 1; | |
| share_cen <= 1; | |
| // input_addr <= IADDR; | |
| weight_addr <= 0; | |
| // output_addr <= OADDR; | |
| share_addr <= WADDR; | |
| end | |
| else if(STATE == INPUTSW)begin | |
| //输入weight进入share buffer | |
| share_addr <= share_addr +1; | |
| if(share_addr >= 16+WADDR)begin | |
| STATE <= INPUTSA; | |
| share_addr <= IADDR; | |
| end | |
| end | |
| else if(STATE == INPUTSA)begin | |
| //输入activate进入share buffer | |
| share_addr <= share_addr +1; | |
| if(share_addr == 15+IADDR)begin | |
| STATE <= INPUTW; | |
| // share change to read | |
| share_wen <= 1; | |
| share_ren <= 1; | |
| share_cen <= 0; | |
| share_addr <= WADDR; | |
| weight_addr <= -1; | |
| end | |
| end | |
| else if (STATE == INPUTW)begin | |
| //从share buffer到weight进入weight buffer | |
| weight_wen <= 0; | |
| weight_ren <= 1; | |
| weight_cen <= 1; | |
| share_addr <= share_addr +1; | |
| weight_addr <= weight_addr +1; | |
| if(share_addr == 16+WADDR)begin | |
| STATE <= INPUTA; | |
| share_addr <= IADDR; | |
| //weight change to read | |
| weight_wen <= 1; | |
| weight_ren <= 1; | |
| weight_cen <= 0; | |
| weight_addr <= -1; | |
| activate_addr <= -1; | |
| //PE open | |
| SELECTOR = 1; | |
| W_EN = 1; | |
| end | |
| end | |
| else if (STATE == INPUTA)begin | |
| //从share buffer到weight进入input activate buffer | |
| //as the same time, let the weight flow | |
| activate_wen <= 0; | |
| activate_ren <= 1; | |
| activate_cen <= 1; | |
| share_addr <= share_addr +1; | |
| activate_addr <= activate_addr +1; | |
| weight_addr <= weight_addr +1; | |
| if(share_addr == 16+IADDR)begin | |
| STATE <= CALCULATE; | |
| //share buffer close | |
| share_wen <= 1; | |
| share_ren <= 0; | |
| share_cen <= 1; | |
| // activate change to read | |
| activate_wen <= 1; | |
| activate_ren <= 1; | |
| activate_cen <= 0; | |
| activate_addr <= -1; | |
| end | |
| end | |
| else if (STATE == CALCULATE)begin | |
| //weight load over | |
| W_EN = 0; | |
| SELECTOR = 0; | |
| //weight and activate | |
| activate_addr <= activate_addr +1; | |
| if(activate_addr == 16)begin | |
| STATE <= OUTPUT; | |
| //activate change to close | |
| activate_wen <= 1; | |
| activate_ren <= 0; | |
| activate_cen <= 1; | |
| //OUTPUT BUFFER OPEN | |
| output_addr <= 0; | |
| output_wen <= 0; | |
| output_ren <= 1; | |
| output_cen <= 1; | |
| end | |
| end | |
| else if (STATE == OUTPUT)begin | |
| output_addr <= output_addr + 1; | |
| if(output_addr == 30)begin | |
| STATE <= RETURN; | |
| end | |
| end | |
| else if (STATE == RETURN)begin | |
| STATE <= IDLE; | |
| end | |
| end | |
| end | |
| endmodule |