#define MCTL_CR_SEQUENTIAL (0x1 << 15)
#define MCTL_CR_INTERLEAVED (0x0 << 15)
-#define MCTL_CR_32BIT (0x1 << 12)
-#define MCTL_CR_16BIT (0x0 << 12)
-#define MCTL_CR_BUS_WIDTH(x) ((x) == 32 ? MCTL_CR_32BIT : MCTL_CR_16BIT)
+#define MCTL_CR_FULL_WIDTH (0x1 << 12)
+#define MCTL_CR_HALF_WIDTH (0x0 << 12)
+#define MCTL_CR_BUS_FULL_WIDTH(x) ((x) << 12)
#define MCTL_CR_PAGE_SIZE(x) ((fls(x) - 4) << 8)
#define MCTL_CR_ROW_BITS(x) (((x) - 1) << 4)
#define LINES_PER_BYTE_LANE (BITS_PER_BYTE + 3)
struct dram_para {
u16 page_size;
- u8 bus_width;
+ u8 bus_full_width;
u8 dual_rank;
u8 row_bits;
const u8 dx_read_delays[NR_OF_BYTE_LANES][LINES_PER_BYTE_LANE];
(struct sunxi_mctl_com_reg *)SUNXI_DRAM_COM_BASE;
writel(MCTL_CR_BL8 | MCTL_CR_2T | MCTL_CR_DDR3 | MCTL_CR_INTERLEAVED |
- MCTL_CR_EIGHT_BANKS | MCTL_CR_BUS_WIDTH(para->bus_width) |
+ MCTL_CR_EIGHT_BANKS |
+ MCTL_CR_BUS_FULL_WIDTH(para->bus_full_width) |
(para->dual_rank ? MCTL_CR_DUAL_RANK : MCTL_CR_SINGLE_RANK) |
MCTL_CR_PAGE_SIZE(para->page_size) |
MCTL_CR_ROW_BITS(para->row_bits), &mctl_com->cr);
}
/* set half DQ */
- if (para->bus_width != 32) {
+ if (!para->bus_full_width) {
writel(0x0, &mctl_ctl->dx[2].gcr);
writel(0x0, &mctl_ctl->dx[3].gcr);
}
((readl(&mctl_ctl->dx[3].gsr[0]) >> 24) & 0x1)) {
writel(0x0, &mctl_ctl->dx[2].gcr);
writel(0x0, &mctl_ctl->dx[3].gcr);
- para->bus_width = 16;
+ para->bus_full_width = 0;
}
mctl_set_cr(socid, para);
struct dram_para para = {
.dual_rank = 0,
- .bus_width = 32,
+ .bus_full_width = 1,
.row_bits = 15,
.page_size = 4096,