1 /* 16 cache entries, 64-byte long cache lines */
6 /* ARM core interface */
10 output reg [31:0] rd_data,
15 output reg [31:0] bus_addr,
16 input [31:0] bus_rdata,
17 output wire [31:0] bus_wdata,
25 /* [31 tag 10] [9 cache index 6] [5 data index 0]
26 * so the data index is 6 bits long
27 * so the cache index is 4 bits long
28 * so the tag is 22 bits long. c.c
31 reg cache_valid [15:0];
32 reg [21:0] cache_tags [15:0];
33 reg [31:0] cache_data [15:0 /* line */] [15:0 /* word */];
37 for (i = 0; i < 16; i = i + 1)
39 cache_valid[i[3:0]] = 0;
40 cache_tags[i[3:0]] = 0;
43 wire [5:0] rd_didx = rd_addr[5:0];
44 wire [3:0] rd_didx_word = rd_didx[5:2];
45 wire [3:0] rd_idx = rd_addr[9:6];
46 wire [21:0] rd_tag = rd_addr[31:10];
48 wire cache_hit = cache_valid[rd_idx] && (cache_tags[rd_idx] == rd_tag);
50 always @(*) begin /* XXX does this work nowadays? */
51 rd_wait = rd_req && !cache_hit;
52 rd_data = cache_data[rd_idx][rd_didx_word];
55 reg [3:0] cache_fill_pos = 0;
56 assign bus_req = rd_req && !cache_hit; /* xxx, needed for Verilator */
58 if (rd_req && !cache_hit && bus_ack) begin
59 bus_addr = {rd_addr[31:6], cache_fill_pos[3:0], 2'b00 /* reads are 32-bits */};
67 if (rd_req && !cache_hit) begin
68 if (bus_ready) begin /* Started the fill, and we have data. */
69 cache_data[rd_idx][cache_fill_pos] <= bus_rdata;
70 cache_fill_pos <= cache_fill_pos + 1;
71 if (cache_fill_pos == 15) begin /* Done? */
72 cache_tags[rd_idx] <= rd_tag;
73 cache_valid[rd_idx] <= 1;