struct i2c_adapter *i2c0;
int ret;
- if (!cpu_is_u8500())
+ if (!cpu_is_u8500_family())
return -ENODEV;
if (uib) {
static int __init ux500_l2x0_init(void)
{
+ u32 aux_val = 0x3e000000;
+
if (cpu_is_u5500())
l2x0_base = __io_address(U5500_L2CC_BASE);
- else if (cpu_is_u8500())
+ else if (cpu_is_u8500_family())
l2x0_base = __io_address(U8500_L2CC_BASE);
else
ux500_unknown_soc();
/* Unlock before init */
ux500_l2x0_unlock();
+ /* DB9540's L2 has 128KB way size */
+ if (cpu_is_u9540())
+ /* 128KB way size */
+ aux_val |= (0x4 << L2X0_AUX_CTRL_WAY_SIZE_SHIFT);
+ else
+ /* 64KB way size */
+ aux_val |= (0x3 << L2X0_AUX_CTRL_WAY_SIZE_SHIFT);
+
/* 64KB way size, 8 way associativity, force WA */
if (of_have_populated_dt())
- l2x0_of_init(0x3e060000, 0xc0000fff);
+ l2x0_of_init(aux_val, 0xc0000fff);
else
- l2x0_init(l2x0_base, 0x3e060000, 0xc0000fff);
+ l2x0_init(l2x0_base, aux_val, 0xc0000fff);
/*
* We can't disable l2 as we are in non secure mode, currently
if (cpu_is_u5500())
addr = __io_address(U5500_PRCMU_BASE);
- else if (cpu_is_u8500())
+ else if (cpu_is_u8500_family())
addr = __io_address(U8500_PRCMU_BASE);
else
ux500_unknown_soc();
__IO_DEV_DESC(U8500_UART0_BASE, SZ_4K),
__IO_DEV_DESC(U8500_UART2_BASE, SZ_4K),
};
-
-static struct map_desc u8500_io_desc[] __initdata = {
+/* U8500 and U9540 common io_desc */
+static struct map_desc u8500_common_io_desc[] __initdata = {
/* SCU base also covers GIC CPU BASE and TWD with its 4K page */
__IO_DEV_DESC(U8500_SCU_BASE, SZ_4K),
__IO_DEV_DESC(U8500_GIC_DIST_BASE, SZ_4K),
ux500_map_io();
- iotable_init(u8500_io_desc, ARRAY_SIZE(u8500_io_desc));
+ iotable_init(u8500_common_io_desc, ARRAY_SIZE(u8500_common_io_desc));
_PRCMU_BASE = __io_address(U8500_PRCMU_BASE);
}
if (cpu_is_u5500()) {
dist_base = __io_address(U5500_GIC_DIST_BASE);
cpu_base = __io_address(U5500_GIC_CPU_BASE);
- } else if (cpu_is_u8500()) {
+ } else if (cpu_is_u8500_family()) {
dist_base = __io_address(U8500_GIC_DIST_BASE);
cpu_base = __io_address(U8500_GIC_CPU_BASE);
} else
*/
if (cpu_is_u5500())
db5500_prcmu_early_init();
- if (cpu_is_u8500())
+ if (cpu_is_u8500_family())
db8500_prcmu_early_init();
clk_init();
}
{
phys_addr_t base = addr & ~0xfff;
struct map_desc desc = {
- .virtual = IO_ADDRESS(base),
+ .virtual = UX500_VIRT_ROM,
.pfn = __phys_to_pfn(base),
.length = SZ_16K,
.type = MT_DEVICE,
local_flush_tlb_all();
flush_cache_all();
- return readl(__io_address(addr));
+ return readl(IOMEM(UX500_VIRT_ROM + (addr & 0xfff)));
}
static void ux500_print_soc_info(unsigned int asicid)
* DB8500v2 0x412fc091 0x9001DBF4 0x008500B0
* DB8520v2.2 0x412fc091 0x9001DBF4 0x008500B2
* DB5500v1 0x412fc091 0x9001FFF4 0x005500A0
+ * DB9540 0x413fc090 0xFFFFDBF4 0x009540xx
*/
void __init ux500_map_io(void)
/* DB5500v1 */
addr = 0x9001FFF4;
break;
+
+ case 0x413fc090: /* DB9540 */
+ addr = 0xFFFFDBF4;
+ break;
}
if (addr)
/* ASIC ID is at 0xbf4 offset within this region */
#define U8500_ASIC_ID_BASE 0x9001D000
+#define U9540_BOOT_ROM_BASE 0xFFFE0000
+/* ASIC ID is at 0xbf4 offset within this region */
+#define U9540_ASIC_ID_BASE 0xFFFFD000
+
#define U8500_PER6_BASE 0xa03c0000
#define U8500_PER7_BASE 0xa03d0000
#define U8500_PER5_BASE 0xa03e0000
#define U8500_SCR_BASE (U8500_PER4_BASE + 0x05000)
#define U8500_DMC_BASE (U8500_PER4_BASE + 0x06000)
#define U8500_PRCMU_BASE (U8500_PER4_BASE + 0x07000)
+#define U9540_DMC1_BASE (U8500_PER4_BASE + 0x0A000)
#define U8500_PRCMU_TCDM_BASE (U8500_PER4_BASE + 0x68000)
+#define U9540_PRCMU_TCDM_BASE (U8500_PER4_BASE + 0x6A000)
#define U8500_PRCMU_TCPM_BASE (U8500_PER4_BASE + 0x60000)
#define U8500_PRCMU_TIMER_3_BASE (U8500_PER4_BASE + 0x07338)
#define U8500_PRCMU_TIMER_4_BASE (U8500_PER4_BASE + 0x07450)
*/
#define U8500_IO_VIRTUAL 0xf0000000
#define U8500_IO_PHYSICAL 0xa0000000
+/* This is where we map in the ROM to check ASIC IDs */
+#define UX500_VIRT_ROM 0xf0000000
/* This macro is used in assembly, so no cast */
#define IO_ADDRESS(x) \
/* typesafe io address */
#define __io_address(n) IOMEM(IO_ADDRESS(n))
+
/* Used by some plat-nomadik code */
#define io_p2v(n) __io_address(n)
return dbx500_partnumber() == 0x8500;
}
+static inline bool __attribute_const__ cpu_is_u9540(void)
+{
+ return dbx500_partnumber() == 0x9540;
+}
+
+static inline bool cpu_is_u8500_family(void)
+{
+ return cpu_is_u8500() || cpu_is_u9540();
+}
+
static inline bool __attribute_const__ cpu_is_u5500(void)
{
return dbx500_partnumber() == 0x5500;
static inline bool cpu_is_u8500v20_or_later(void)
{
- return cpu_is_u8500() && !cpu_is_u8500v10() && !cpu_is_u8500v11();
+ /*
+ * U9540 has so much in common with U8500 that is is considered a
+ * U8500 variant.
+ */
+ return cpu_is_u9540() ||
+ (cpu_is_u8500() && !cpu_is_u8500v10() && !cpu_is_u8500v11());
}
static inline bool ux500_is_svp(void)
*/
#define IRQ_MTU0 (IRQ_SHPI_START + 4)
-#define DBX500_NR_INTERNAL_IRQS 160
+#define DBX500_NR_INTERNAL_IRQS 166
/* After chip-specific IRQ numbers we have the GPIO ones */
#define NOMADIK_NR_GPIO 288
{
if (cpu_is_u5500())
return __io_address(U5500_SCU_BASE);
- else if (cpu_is_u8500())
+ else if (cpu_is_u8500_family())
return __io_address(U8500_SCU_BASE);
else
ux500_unknown_soc();
if (cpu_is_u5500())
backupram = __io_address(U5500_BACKUPRAM0_BASE);
- else if (cpu_is_u8500())
+ else if (cpu_is_u8500_family())
backupram = __io_address(U8500_BACKUPRAM0_BASE);
else
ux500_unknown_soc();
if (cpu_is_u5500()) {
mtu_timer_base = __io_address(U5500_MTU0_BASE);
prcmu_timer_base = __io_address(U5500_PRCMU_TIMER_3_BASE);
- } else if (cpu_is_u8500()) {
+ } else if (cpu_is_u8500_family()) {
mtu_timer_base = __io_address(U8500_MTU0_BASE);
prcmu_timer_base = __io_address(U8500_PRCMU_TIMER_4_BASE);
} else {
static int __init db8500_cpufreq_register(void)
{
- if (!cpu_is_u8500v20_or_later())
+ if (!cpu_is_u8500_family())
return -ENODEV;
pr_info("cpufreq for DB8500 started\n");