xref: /rk3399_ARM-atf/drivers/st/ddr/stm32mp1_ddr.c (revision ba7d2e2698c42df85b5c32d5b49008870da43bc6)
110a511ceSYann Gautier /*
2a078134eSYann Gautier  * Copyright (C) 2018-2022, STMicroelectronics - All Rights Reserved
310a511ceSYann Gautier  *
410a511ceSYann Gautier  * SPDX-License-Identifier: GPL-2.0+ OR BSD-3-Clause
510a511ceSYann Gautier  */
610a511ceSYann Gautier 
74156d4daSYann Gautier #include <errno.h>
809d40e0eSAntonio Nino Diaz #include <stddef.h>
909d40e0eSAntonio Nino Diaz 
1010a511ceSYann Gautier #include <arch.h>
1110a511ceSYann Gautier #include <arch_helpers.h>
1209d40e0eSAntonio Nino Diaz #include <common/debug.h>
1333667d29SYann Gautier #include <drivers/clk.h>
1409d40e0eSAntonio Nino Diaz #include <drivers/delay_timer.h>
1509d40e0eSAntonio Nino Diaz #include <drivers/st/stm32mp1_ddr.h>
1609d40e0eSAntonio Nino Diaz #include <drivers/st/stm32mp1_ddr_regs.h>
1709d40e0eSAntonio Nino Diaz #include <drivers/st/stm32mp1_pwr.h>
1809d40e0eSAntonio Nino Diaz #include <drivers/st/stm32mp1_ram.h>
19a078134eSYann Gautier #include <drivers/st/stm32mp_pmic.h>
2009d40e0eSAntonio Nino Diaz #include <lib/mmio.h>
2109d40e0eSAntonio Nino Diaz #include <plat/common/platform.h>
2209d40e0eSAntonio Nino Diaz 
23a078134eSYann Gautier #include <platform_def.h>
24a078134eSYann Gautier 
2510a511ceSYann Gautier struct reg_desc {
2610a511ceSYann Gautier 	const char *name;
2710a511ceSYann Gautier 	uint16_t offset;	/* Offset for base address */
2810a511ceSYann Gautier 	uint8_t par_offset;	/* Offset for parameter array */
2910a511ceSYann Gautier };
3010a511ceSYann Gautier 
3110a511ceSYann Gautier #define INVALID_OFFSET	0xFFU
3210a511ceSYann Gautier 
33dfdb057aSYann Gautier #define TIMEOUT_US_1S	1000000U
3410a511ceSYann Gautier 
3510a511ceSYann Gautier #define DDRCTL_REG(x, y)					\
3610a511ceSYann Gautier 	{							\
3710a511ceSYann Gautier 		.name = #x,					\
3810a511ceSYann Gautier 		.offset = offsetof(struct stm32mp1_ddrctl, x),	\
3910a511ceSYann Gautier 		.par_offset = offsetof(struct y, x)		\
4010a511ceSYann Gautier 	}
4110a511ceSYann Gautier 
4210a511ceSYann Gautier #define DDRPHY_REG(x, y)					\
4310a511ceSYann Gautier 	{							\
4410a511ceSYann Gautier 		.name = #x,					\
4510a511ceSYann Gautier 		.offset = offsetof(struct stm32mp1_ddrphy, x),	\
4610a511ceSYann Gautier 		.par_offset = offsetof(struct y, x)		\
4710a511ceSYann Gautier 	}
4810a511ceSYann Gautier 
49*ba7d2e26SYann Gautier /*
50*ba7d2e26SYann Gautier  * PARAMETERS: value get from device tree :
51*ba7d2e26SYann Gautier  *             size / order need to be aligned with binding
52*ba7d2e26SYann Gautier  *             modification NOT ALLOWED !!!
53*ba7d2e26SYann Gautier  */
54*ba7d2e26SYann Gautier #define DDRCTL_REG_REG_SIZE	25	/* st,ctl-reg */
55*ba7d2e26SYann Gautier #define DDRCTL_REG_TIMING_SIZE	12	/* st,ctl-timing */
56*ba7d2e26SYann Gautier #define DDRCTL_REG_MAP_SIZE	9	/* st,ctl-map */
57*ba7d2e26SYann Gautier #define DDRCTL_REG_PERF_SIZE	17	/* st,ctl-perf */
58*ba7d2e26SYann Gautier 
59*ba7d2e26SYann Gautier #define DDRPHY_REG_REG_SIZE	11	/* st,phy-reg */
60*ba7d2e26SYann Gautier #define	DDRPHY_REG_TIMING_SIZE	10	/* st,phy-timing */
61*ba7d2e26SYann Gautier 
6210a511ceSYann Gautier #define DDRCTL_REG_REG(x)	DDRCTL_REG(x, stm32mp1_ddrctrl_reg)
63*ba7d2e26SYann Gautier static const struct reg_desc ddr_reg[DDRCTL_REG_REG_SIZE] = {
6410a511ceSYann Gautier 	DDRCTL_REG_REG(mstr),
6510a511ceSYann Gautier 	DDRCTL_REG_REG(mrctrl0),
6610a511ceSYann Gautier 	DDRCTL_REG_REG(mrctrl1),
6710a511ceSYann Gautier 	DDRCTL_REG_REG(derateen),
6810a511ceSYann Gautier 	DDRCTL_REG_REG(derateint),
6910a511ceSYann Gautier 	DDRCTL_REG_REG(pwrctl),
7010a511ceSYann Gautier 	DDRCTL_REG_REG(pwrtmg),
7110a511ceSYann Gautier 	DDRCTL_REG_REG(hwlpctl),
7210a511ceSYann Gautier 	DDRCTL_REG_REG(rfshctl0),
7310a511ceSYann Gautier 	DDRCTL_REG_REG(rfshctl3),
7410a511ceSYann Gautier 	DDRCTL_REG_REG(crcparctl0),
7510a511ceSYann Gautier 	DDRCTL_REG_REG(zqctl0),
7610a511ceSYann Gautier 	DDRCTL_REG_REG(dfitmg0),
7710a511ceSYann Gautier 	DDRCTL_REG_REG(dfitmg1),
7810a511ceSYann Gautier 	DDRCTL_REG_REG(dfilpcfg0),
7910a511ceSYann Gautier 	DDRCTL_REG_REG(dfiupd0),
8010a511ceSYann Gautier 	DDRCTL_REG_REG(dfiupd1),
8110a511ceSYann Gautier 	DDRCTL_REG_REG(dfiupd2),
8210a511ceSYann Gautier 	DDRCTL_REG_REG(dfiphymstr),
8310a511ceSYann Gautier 	DDRCTL_REG_REG(odtmap),
8410a511ceSYann Gautier 	DDRCTL_REG_REG(dbg0),
8510a511ceSYann Gautier 	DDRCTL_REG_REG(dbg1),
8610a511ceSYann Gautier 	DDRCTL_REG_REG(dbgcmd),
8710a511ceSYann Gautier 	DDRCTL_REG_REG(poisoncfg),
8810a511ceSYann Gautier 	DDRCTL_REG_REG(pccfg),
8910a511ceSYann Gautier };
9010a511ceSYann Gautier 
9110a511ceSYann Gautier #define DDRCTL_REG_TIMING(x)	DDRCTL_REG(x, stm32mp1_ddrctrl_timing)
92*ba7d2e26SYann Gautier static const struct reg_desc ddr_timing[DDRCTL_REG_TIMING_SIZE] = {
9310a511ceSYann Gautier 	DDRCTL_REG_TIMING(rfshtmg),
9410a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg0),
9510a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg1),
9610a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg2),
9710a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg3),
9810a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg4),
9910a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg5),
10010a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg6),
10110a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg7),
10210a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg8),
10310a511ceSYann Gautier 	DDRCTL_REG_TIMING(dramtmg14),
10410a511ceSYann Gautier 	DDRCTL_REG_TIMING(odtcfg),
10510a511ceSYann Gautier };
10610a511ceSYann Gautier 
10710a511ceSYann Gautier #define DDRCTL_REG_MAP(x)	DDRCTL_REG(x, stm32mp1_ddrctrl_map)
108*ba7d2e26SYann Gautier static const struct reg_desc ddr_map[DDRCTL_REG_MAP_SIZE] = {
10910a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap1),
11010a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap2),
11110a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap3),
11210a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap4),
11310a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap5),
11410a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap6),
11510a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap9),
11610a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap10),
11710a511ceSYann Gautier 	DDRCTL_REG_MAP(addrmap11),
11810a511ceSYann Gautier };
11910a511ceSYann Gautier 
12010a511ceSYann Gautier #define DDRCTL_REG_PERF(x)	DDRCTL_REG(x, stm32mp1_ddrctrl_perf)
121*ba7d2e26SYann Gautier static const struct reg_desc ddr_perf[DDRCTL_REG_PERF_SIZE] = {
12210a511ceSYann Gautier 	DDRCTL_REG_PERF(sched),
12310a511ceSYann Gautier 	DDRCTL_REG_PERF(sched1),
12410a511ceSYann Gautier 	DDRCTL_REG_PERF(perfhpr1),
12510a511ceSYann Gautier 	DDRCTL_REG_PERF(perflpr1),
12610a511ceSYann Gautier 	DDRCTL_REG_PERF(perfwr1),
12710a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgr_0),
12810a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgw_0),
12910a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgqos0_0),
13010a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgqos1_0),
13110a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgwqos0_0),
13210a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgwqos1_0),
13310a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgr_1),
13410a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgw_1),
13510a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgqos0_1),
13610a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgqos1_1),
13710a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgwqos0_1),
13810a511ceSYann Gautier 	DDRCTL_REG_PERF(pcfgwqos1_1),
13910a511ceSYann Gautier };
14010a511ceSYann Gautier 
14110a511ceSYann Gautier #define DDRPHY_REG_REG(x)	DDRPHY_REG(x, stm32mp1_ddrphy_reg)
142*ba7d2e26SYann Gautier static const struct reg_desc ddrphy_reg[DDRPHY_REG_REG_SIZE] = {
14310a511ceSYann Gautier 	DDRPHY_REG_REG(pgcr),
14410a511ceSYann Gautier 	DDRPHY_REG_REG(aciocr),
14510a511ceSYann Gautier 	DDRPHY_REG_REG(dxccr),
14610a511ceSYann Gautier 	DDRPHY_REG_REG(dsgcr),
14710a511ceSYann Gautier 	DDRPHY_REG_REG(dcr),
14810a511ceSYann Gautier 	DDRPHY_REG_REG(odtcr),
14910a511ceSYann Gautier 	DDRPHY_REG_REG(zq0cr1),
15010a511ceSYann Gautier 	DDRPHY_REG_REG(dx0gcr),
15110a511ceSYann Gautier 	DDRPHY_REG_REG(dx1gcr),
15210a511ceSYann Gautier 	DDRPHY_REG_REG(dx2gcr),
15310a511ceSYann Gautier 	DDRPHY_REG_REG(dx3gcr),
15410a511ceSYann Gautier };
15510a511ceSYann Gautier 
15610a511ceSYann Gautier #define DDRPHY_REG_TIMING(x)	DDRPHY_REG(x, stm32mp1_ddrphy_timing)
157*ba7d2e26SYann Gautier static const struct reg_desc ddrphy_timing[DDRPHY_REG_TIMING_SIZE] = {
15810a511ceSYann Gautier 	DDRPHY_REG_TIMING(ptr0),
15910a511ceSYann Gautier 	DDRPHY_REG_TIMING(ptr1),
16010a511ceSYann Gautier 	DDRPHY_REG_TIMING(ptr2),
16110a511ceSYann Gautier 	DDRPHY_REG_TIMING(dtpr0),
16210a511ceSYann Gautier 	DDRPHY_REG_TIMING(dtpr1),
16310a511ceSYann Gautier 	DDRPHY_REG_TIMING(dtpr2),
16410a511ceSYann Gautier 	DDRPHY_REG_TIMING(mr0),
16510a511ceSYann Gautier 	DDRPHY_REG_TIMING(mr1),
16610a511ceSYann Gautier 	DDRPHY_REG_TIMING(mr2),
16710a511ceSYann Gautier 	DDRPHY_REG_TIMING(mr3),
16810a511ceSYann Gautier };
16910a511ceSYann Gautier 
170*ba7d2e26SYann Gautier /*
171*ba7d2e26SYann Gautier  * REGISTERS ARRAY: used to parse device tree and interactive mode
172*ba7d2e26SYann Gautier  */
17310a511ceSYann Gautier enum reg_type {
17410a511ceSYann Gautier 	REG_REG,
17510a511ceSYann Gautier 	REG_TIMING,
17610a511ceSYann Gautier 	REG_PERF,
17710a511ceSYann Gautier 	REG_MAP,
17810a511ceSYann Gautier 	REGPHY_REG,
17910a511ceSYann Gautier 	REGPHY_TIMING,
18010a511ceSYann Gautier 	REG_TYPE_NB
18110a511ceSYann Gautier };
18210a511ceSYann Gautier 
18310a511ceSYann Gautier enum base_type {
18410a511ceSYann Gautier 	DDR_BASE,
18510a511ceSYann Gautier 	DDRPHY_BASE,
18610a511ceSYann Gautier 	NONE_BASE
18710a511ceSYann Gautier };
18810a511ceSYann Gautier 
18910a511ceSYann Gautier struct ddr_reg_info {
19010a511ceSYann Gautier 	const char *name;
19110a511ceSYann Gautier 	const struct reg_desc *desc;
19210a511ceSYann Gautier 	uint8_t size;
19310a511ceSYann Gautier 	enum base_type base;
19410a511ceSYann Gautier };
19510a511ceSYann Gautier 
19610a511ceSYann Gautier static const struct ddr_reg_info ddr_registers[REG_TYPE_NB] = {
19710a511ceSYann Gautier 	[REG_REG] = {
1984156d4daSYann Gautier 		.name = "static",
1994156d4daSYann Gautier 		.desc = ddr_reg,
200*ba7d2e26SYann Gautier 		.size = DDRCTL_REG_REG_SIZE,
2014156d4daSYann Gautier 		.base = DDR_BASE
20210a511ceSYann Gautier 	},
20310a511ceSYann Gautier 	[REG_TIMING] = {
2044156d4daSYann Gautier 		.name = "timing",
2054156d4daSYann Gautier 		.desc = ddr_timing,
206*ba7d2e26SYann Gautier 		.size = DDRCTL_REG_TIMING_SIZE,
2074156d4daSYann Gautier 		.base = DDR_BASE
20810a511ceSYann Gautier 	},
20910a511ceSYann Gautier 	[REG_PERF] = {
2104156d4daSYann Gautier 		.name = "perf",
2114156d4daSYann Gautier 		.desc = ddr_perf,
212*ba7d2e26SYann Gautier 		.size = DDRCTL_REG_PERF_SIZE,
2134156d4daSYann Gautier 		.base = DDR_BASE
21410a511ceSYann Gautier 	},
21510a511ceSYann Gautier 	[REG_MAP] = {
2164156d4daSYann Gautier 		.name = "map",
2174156d4daSYann Gautier 		.desc = ddr_map,
218*ba7d2e26SYann Gautier 		.size = DDRCTL_REG_MAP_SIZE,
2194156d4daSYann Gautier 		.base = DDR_BASE
22010a511ceSYann Gautier 	},
22110a511ceSYann Gautier 	[REGPHY_REG] = {
2224156d4daSYann Gautier 		.name = "static",
2234156d4daSYann Gautier 		.desc = ddrphy_reg,
224*ba7d2e26SYann Gautier 		.size = DDRPHY_REG_REG_SIZE,
2254156d4daSYann Gautier 		.base = DDRPHY_BASE
22610a511ceSYann Gautier 	},
22710a511ceSYann Gautier 	[REGPHY_TIMING] = {
2284156d4daSYann Gautier 		.name = "timing",
2294156d4daSYann Gautier 		.desc = ddrphy_timing,
230*ba7d2e26SYann Gautier 		.size = DDRPHY_REG_TIMING_SIZE,
2314156d4daSYann Gautier 		.base = DDRPHY_BASE
23210a511ceSYann Gautier 	},
23310a511ceSYann Gautier };
23410a511ceSYann Gautier 
2354156d4daSYann Gautier static uintptr_t get_base_addr(const struct ddr_info *priv, enum base_type base)
23610a511ceSYann Gautier {
23710a511ceSYann Gautier 	if (base == DDRPHY_BASE) {
2384156d4daSYann Gautier 		return (uintptr_t)priv->phy;
23910a511ceSYann Gautier 	} else {
2404156d4daSYann Gautier 		return (uintptr_t)priv->ctl;
24110a511ceSYann Gautier 	}
24210a511ceSYann Gautier }
24310a511ceSYann Gautier 
24410a511ceSYann Gautier static void set_reg(const struct ddr_info *priv,
24510a511ceSYann Gautier 		    enum reg_type type,
24610a511ceSYann Gautier 		    const void *param)
24710a511ceSYann Gautier {
24810a511ceSYann Gautier 	unsigned int i;
2494156d4daSYann Gautier 	unsigned int value;
25010a511ceSYann Gautier 	enum base_type base = ddr_registers[type].base;
2514156d4daSYann Gautier 	uintptr_t base_addr = get_base_addr(priv, base);
25210a511ceSYann Gautier 	const struct reg_desc *desc = ddr_registers[type].desc;
25310a511ceSYann Gautier 
25410a511ceSYann Gautier 	VERBOSE("init %s\n", ddr_registers[type].name);
25510a511ceSYann Gautier 	for (i = 0; i < ddr_registers[type].size; i++) {
2564156d4daSYann Gautier 		uintptr_t ptr = base_addr + desc[i].offset;
2574156d4daSYann Gautier 
25810a511ceSYann Gautier 		if (desc[i].par_offset == INVALID_OFFSET) {
25910a511ceSYann Gautier 			ERROR("invalid parameter offset for %s", desc[i].name);
26010a511ceSYann Gautier 			panic();
26110a511ceSYann Gautier 		} else {
2624156d4daSYann Gautier 			value = *((uint32_t *)((uintptr_t)param +
26310a511ceSYann Gautier 					       desc[i].par_offset));
2644156d4daSYann Gautier 			mmio_write_32(ptr, value);
26510a511ceSYann Gautier 		}
26610a511ceSYann Gautier 	}
26710a511ceSYann Gautier }
26810a511ceSYann Gautier 
26910a511ceSYann Gautier static void stm32mp1_ddrphy_idone_wait(struct stm32mp1_ddrphy *phy)
27010a511ceSYann Gautier {
27110a511ceSYann Gautier 	uint32_t pgsr;
27210a511ceSYann Gautier 	int error = 0;
273dfdb057aSYann Gautier 	uint64_t timeout = timeout_init_us(TIMEOUT_US_1S);
27410a511ceSYann Gautier 
27510a511ceSYann Gautier 	do {
2764156d4daSYann Gautier 		pgsr = mmio_read_32((uintptr_t)&phy->pgsr);
277dfdb057aSYann Gautier 
2784156d4daSYann Gautier 		VERBOSE("  > [0x%lx] pgsr = 0x%x &\n",
2794156d4daSYann Gautier 			(uintptr_t)&phy->pgsr, pgsr);
28010a511ceSYann Gautier 
281dfdb057aSYann Gautier 		if (timeout_elapsed(timeout)) {
28210a511ceSYann Gautier 			panic();
28310a511ceSYann Gautier 		}
284dfdb057aSYann Gautier 
28510a511ceSYann Gautier 		if ((pgsr & DDRPHYC_PGSR_DTERR) != 0U) {
28610a511ceSYann Gautier 			VERBOSE("DQS Gate Trainig Error\n");
28710a511ceSYann Gautier 			error++;
28810a511ceSYann Gautier 		}
289dfdb057aSYann Gautier 
29010a511ceSYann Gautier 		if ((pgsr & DDRPHYC_PGSR_DTIERR) != 0U) {
29110a511ceSYann Gautier 			VERBOSE("DQS Gate Trainig Intermittent Error\n");
29210a511ceSYann Gautier 			error++;
29310a511ceSYann Gautier 		}
294dfdb057aSYann Gautier 
29510a511ceSYann Gautier 		if ((pgsr & DDRPHYC_PGSR_DFTERR) != 0U) {
29610a511ceSYann Gautier 			VERBOSE("DQS Drift Error\n");
29710a511ceSYann Gautier 			error++;
29810a511ceSYann Gautier 		}
299dfdb057aSYann Gautier 
30010a511ceSYann Gautier 		if ((pgsr & DDRPHYC_PGSR_RVERR) != 0U) {
30110a511ceSYann Gautier 			VERBOSE("Read Valid Training Error\n");
30210a511ceSYann Gautier 			error++;
30310a511ceSYann Gautier 		}
304dfdb057aSYann Gautier 
30510a511ceSYann Gautier 		if ((pgsr & DDRPHYC_PGSR_RVEIRR) != 0U) {
30610a511ceSYann Gautier 			VERBOSE("Read Valid Training Intermittent Error\n");
30710a511ceSYann Gautier 			error++;
30810a511ceSYann Gautier 		}
309dfdb057aSYann Gautier 	} while (((pgsr & DDRPHYC_PGSR_IDONE) == 0U) && (error == 0));
3104156d4daSYann Gautier 	VERBOSE("\n[0x%lx] pgsr = 0x%x\n",
3114156d4daSYann Gautier 		(uintptr_t)&phy->pgsr, pgsr);
31210a511ceSYann Gautier }
31310a511ceSYann Gautier 
31410a511ceSYann Gautier static void stm32mp1_ddrphy_init(struct stm32mp1_ddrphy *phy, uint32_t pir)
31510a511ceSYann Gautier {
31610a511ceSYann Gautier 	uint32_t pir_init = pir | DDRPHYC_PIR_INIT;
31710a511ceSYann Gautier 
3184156d4daSYann Gautier 	mmio_write_32((uintptr_t)&phy->pir, pir_init);
3194156d4daSYann Gautier 	VERBOSE("[0x%lx] pir = 0x%x -> 0x%x\n",
3204156d4daSYann Gautier 		(uintptr_t)&phy->pir, pir_init,
3214156d4daSYann Gautier 		mmio_read_32((uintptr_t)&phy->pir));
32210a511ceSYann Gautier 
32310a511ceSYann Gautier 	/* Need to wait 10 configuration clock before start polling */
32410a511ceSYann Gautier 	udelay(10);
32510a511ceSYann Gautier 
32610a511ceSYann Gautier 	/* Wait DRAM initialization and Gate Training Evaluation complete */
32710a511ceSYann Gautier 	stm32mp1_ddrphy_idone_wait(phy);
32810a511ceSYann Gautier }
32910a511ceSYann Gautier 
33010a511ceSYann Gautier /* Start quasi dynamic register update */
33110a511ceSYann Gautier static void stm32mp1_start_sw_done(struct stm32mp1_ddrctl *ctl)
33210a511ceSYann Gautier {
3334156d4daSYann Gautier 	mmio_clrbits_32((uintptr_t)&ctl->swctl, DDRCTRL_SWCTL_SW_DONE);
3344156d4daSYann Gautier 	VERBOSE("[0x%lx] swctl = 0x%x\n",
3354156d4daSYann Gautier 		(uintptr_t)&ctl->swctl,  mmio_read_32((uintptr_t)&ctl->swctl));
33610a511ceSYann Gautier }
33710a511ceSYann Gautier 
33810a511ceSYann Gautier /* Wait quasi dynamic register update */
33910a511ceSYann Gautier static void stm32mp1_wait_sw_done_ack(struct stm32mp1_ddrctl *ctl)
34010a511ceSYann Gautier {
341dfdb057aSYann Gautier 	uint64_t timeout;
34210a511ceSYann Gautier 	uint32_t swstat;
34310a511ceSYann Gautier 
3444156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&ctl->swctl, DDRCTRL_SWCTL_SW_DONE);
3454156d4daSYann Gautier 	VERBOSE("[0x%lx] swctl = 0x%x\n",
3464156d4daSYann Gautier 		(uintptr_t)&ctl->swctl, mmio_read_32((uintptr_t)&ctl->swctl));
34710a511ceSYann Gautier 
348dfdb057aSYann Gautier 	timeout = timeout_init_us(TIMEOUT_US_1S);
34910a511ceSYann Gautier 	do {
3504156d4daSYann Gautier 		swstat = mmio_read_32((uintptr_t)&ctl->swstat);
3514156d4daSYann Gautier 		VERBOSE("[0x%lx] swstat = 0x%x ",
3524156d4daSYann Gautier 			(uintptr_t)&ctl->swstat, swstat);
353dfdb057aSYann Gautier 		if (timeout_elapsed(timeout)) {
35410a511ceSYann Gautier 			panic();
35510a511ceSYann Gautier 		}
35610a511ceSYann Gautier 	} while ((swstat & DDRCTRL_SWSTAT_SW_DONE_ACK) == 0U);
35710a511ceSYann Gautier 
3584156d4daSYann Gautier 	VERBOSE("[0x%lx] swstat = 0x%x\n",
3594156d4daSYann Gautier 		(uintptr_t)&ctl->swstat, swstat);
36010a511ceSYann Gautier }
36110a511ceSYann Gautier 
36210a511ceSYann Gautier /* Wait quasi dynamic register update */
36310a511ceSYann Gautier static void stm32mp1_wait_operating_mode(struct ddr_info *priv, uint32_t mode)
36410a511ceSYann Gautier {
365dfdb057aSYann Gautier 	uint64_t timeout;
36610a511ceSYann Gautier 	uint32_t stat;
36710a511ceSYann Gautier 	int break_loop = 0;
36810a511ceSYann Gautier 
369dfdb057aSYann Gautier 	timeout = timeout_init_us(TIMEOUT_US_1S);
37010a511ceSYann Gautier 	for ( ; ; ) {
371dfdb057aSYann Gautier 		uint32_t operating_mode;
372dfdb057aSYann Gautier 		uint32_t selref_type;
373dfdb057aSYann Gautier 
3744156d4daSYann Gautier 		stat = mmio_read_32((uintptr_t)&priv->ctl->stat);
37510a511ceSYann Gautier 		operating_mode = stat & DDRCTRL_STAT_OPERATING_MODE_MASK;
37610a511ceSYann Gautier 		selref_type = stat & DDRCTRL_STAT_SELFREF_TYPE_MASK;
3774156d4daSYann Gautier 		VERBOSE("[0x%lx] stat = 0x%x\n",
3784156d4daSYann Gautier 			(uintptr_t)&priv->ctl->stat, stat);
379dfdb057aSYann Gautier 		if (timeout_elapsed(timeout)) {
38010a511ceSYann Gautier 			panic();
38110a511ceSYann Gautier 		}
38210a511ceSYann Gautier 
38310a511ceSYann Gautier 		if (mode == DDRCTRL_STAT_OPERATING_MODE_SR) {
38410a511ceSYann Gautier 			/*
38510a511ceSYann Gautier 			 * Self-refresh due to software
38610a511ceSYann Gautier 			 * => checking also STAT.selfref_type.
38710a511ceSYann Gautier 			 */
38810a511ceSYann Gautier 			if ((operating_mode ==
38910a511ceSYann Gautier 			     DDRCTRL_STAT_OPERATING_MODE_SR) &&
39010a511ceSYann Gautier 			    (selref_type == DDRCTRL_STAT_SELFREF_TYPE_SR)) {
39110a511ceSYann Gautier 				break_loop = 1;
39210a511ceSYann Gautier 			}
39310a511ceSYann Gautier 		} else if (operating_mode == mode) {
39410a511ceSYann Gautier 			break_loop = 1;
39510a511ceSYann Gautier 		} else if ((mode == DDRCTRL_STAT_OPERATING_MODE_NORMAL) &&
39610a511ceSYann Gautier 			   (operating_mode == DDRCTRL_STAT_OPERATING_MODE_SR) &&
39710a511ceSYann Gautier 			   (selref_type == DDRCTRL_STAT_SELFREF_TYPE_ASR)) {
39810a511ceSYann Gautier 			/* Normal mode: handle also automatic self refresh */
39910a511ceSYann Gautier 			break_loop = 1;
40010a511ceSYann Gautier 		}
40110a511ceSYann Gautier 
40210a511ceSYann Gautier 		if (break_loop == 1) {
40310a511ceSYann Gautier 			break;
40410a511ceSYann Gautier 		}
40510a511ceSYann Gautier 	}
40610a511ceSYann Gautier 
4074156d4daSYann Gautier 	VERBOSE("[0x%lx] stat = 0x%x\n",
4084156d4daSYann Gautier 		(uintptr_t)&priv->ctl->stat, stat);
40910a511ceSYann Gautier }
41010a511ceSYann Gautier 
41110a511ceSYann Gautier /* Mode Register Writes (MRW or MRS) */
41210a511ceSYann Gautier static void stm32mp1_mode_register_write(struct ddr_info *priv, uint8_t addr,
41310a511ceSYann Gautier 					 uint32_t data)
41410a511ceSYann Gautier {
41510a511ceSYann Gautier 	uint32_t mrctrl0;
41610a511ceSYann Gautier 
41710a511ceSYann Gautier 	VERBOSE("MRS: %d = %x\n", addr, data);
41810a511ceSYann Gautier 
41910a511ceSYann Gautier 	/*
42010a511ceSYann Gautier 	 * 1. Poll MRSTAT.mr_wr_busy until it is '0'.
42110a511ceSYann Gautier 	 *    This checks that there is no outstanding MR transaction.
42210a511ceSYann Gautier 	 *    No write should be performed to MRCTRL0 and MRCTRL1
42310a511ceSYann Gautier 	 *    if MRSTAT.mr_wr_busy = 1.
42410a511ceSYann Gautier 	 */
4254156d4daSYann Gautier 	while ((mmio_read_32((uintptr_t)&priv->ctl->mrstat) &
42610a511ceSYann Gautier 		DDRCTRL_MRSTAT_MR_WR_BUSY) != 0U) {
42710a511ceSYann Gautier 		;
42810a511ceSYann Gautier 	}
42910a511ceSYann Gautier 
43010a511ceSYann Gautier 	/*
43110a511ceSYann Gautier 	 * 2. Write the MRCTRL0.mr_type, MRCTRL0.mr_addr, MRCTRL0.mr_rank
43210a511ceSYann Gautier 	 *    and (for MRWs) MRCTRL1.mr_data to define the MR transaction.
43310a511ceSYann Gautier 	 */
43410a511ceSYann Gautier 	mrctrl0 = DDRCTRL_MRCTRL0_MR_TYPE_WRITE |
43510a511ceSYann Gautier 		  DDRCTRL_MRCTRL0_MR_RANK_ALL |
43610a511ceSYann Gautier 		  (((uint32_t)addr << DDRCTRL_MRCTRL0_MR_ADDR_SHIFT) &
43710a511ceSYann Gautier 		   DDRCTRL_MRCTRL0_MR_ADDR_MASK);
4384156d4daSYann Gautier 	mmio_write_32((uintptr_t)&priv->ctl->mrctrl0, mrctrl0);
4394156d4daSYann Gautier 	VERBOSE("[0x%lx] mrctrl0 = 0x%x (0x%x)\n",
4404156d4daSYann Gautier 		(uintptr_t)&priv->ctl->mrctrl0,
4414156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->mrctrl0), mrctrl0);
4424156d4daSYann Gautier 	mmio_write_32((uintptr_t)&priv->ctl->mrctrl1, data);
4434156d4daSYann Gautier 	VERBOSE("[0x%lx] mrctrl1 = 0x%x\n",
4444156d4daSYann Gautier 		(uintptr_t)&priv->ctl->mrctrl1,
4454156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->mrctrl1));
44610a511ceSYann Gautier 
44710a511ceSYann Gautier 	/*
44810a511ceSYann Gautier 	 * 3. In a separate APB transaction, write the MRCTRL0.mr_wr to 1. This
44910a511ceSYann Gautier 	 *    bit is self-clearing, and triggers the MR transaction.
45010a511ceSYann Gautier 	 *    The uMCTL2 then asserts the MRSTAT.mr_wr_busy while it performs
45110a511ceSYann Gautier 	 *    the MR transaction to SDRAM, and no further access can be
45210a511ceSYann Gautier 	 *    initiated until it is deasserted.
45310a511ceSYann Gautier 	 */
45410a511ceSYann Gautier 	mrctrl0 |= DDRCTRL_MRCTRL0_MR_WR;
4554156d4daSYann Gautier 	mmio_write_32((uintptr_t)&priv->ctl->mrctrl0, mrctrl0);
45610a511ceSYann Gautier 
4574156d4daSYann Gautier 	while ((mmio_read_32((uintptr_t)&priv->ctl->mrstat) &
45810a511ceSYann Gautier 	       DDRCTRL_MRSTAT_MR_WR_BUSY) != 0U) {
45910a511ceSYann Gautier 		;
46010a511ceSYann Gautier 	}
46110a511ceSYann Gautier 
4624156d4daSYann Gautier 	VERBOSE("[0x%lx] mrctrl0 = 0x%x\n",
4634156d4daSYann Gautier 		(uintptr_t)&priv->ctl->mrctrl0, mrctrl0);
46410a511ceSYann Gautier }
46510a511ceSYann Gautier 
46610a511ceSYann Gautier /* Switch DDR3 from DLL-on to DLL-off */
46710a511ceSYann Gautier static void stm32mp1_ddr3_dll_off(struct ddr_info *priv)
46810a511ceSYann Gautier {
4694156d4daSYann Gautier 	uint32_t mr1 = mmio_read_32((uintptr_t)&priv->phy->mr1);
4704156d4daSYann Gautier 	uint32_t mr2 = mmio_read_32((uintptr_t)&priv->phy->mr2);
47110a511ceSYann Gautier 	uint32_t dbgcam;
47210a511ceSYann Gautier 
47310a511ceSYann Gautier 	VERBOSE("mr1: 0x%x\n", mr1);
47410a511ceSYann Gautier 	VERBOSE("mr2: 0x%x\n", mr2);
47510a511ceSYann Gautier 
47610a511ceSYann Gautier 	/*
47710a511ceSYann Gautier 	 * 1. Set the DBG1.dis_hif = 1.
47810a511ceSYann Gautier 	 *    This prevents further reads/writes being received on the HIF.
47910a511ceSYann Gautier 	 */
4804156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->ctl->dbg1, DDRCTRL_DBG1_DIS_HIF);
4814156d4daSYann Gautier 	VERBOSE("[0x%lx] dbg1 = 0x%x\n",
4824156d4daSYann Gautier 		(uintptr_t)&priv->ctl->dbg1,
4834156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->dbg1));
48410a511ceSYann Gautier 
48510a511ceSYann Gautier 	/*
48610a511ceSYann Gautier 	 * 2. Ensure all commands have been flushed from the uMCTL2 by polling
48710a511ceSYann Gautier 	 *    DBGCAM.wr_data_pipeline_empty = 1,
48810a511ceSYann Gautier 	 *    DBGCAM.rd_data_pipeline_empty = 1,
48910a511ceSYann Gautier 	 *    DBGCAM.dbg_wr_q_depth = 0 ,
49010a511ceSYann Gautier 	 *    DBGCAM.dbg_lpr_q_depth = 0, and
49110a511ceSYann Gautier 	 *    DBGCAM.dbg_hpr_q_depth = 0.
49210a511ceSYann Gautier 	 */
49310a511ceSYann Gautier 	do {
4944156d4daSYann Gautier 		dbgcam = mmio_read_32((uintptr_t)&priv->ctl->dbgcam);
4954156d4daSYann Gautier 		VERBOSE("[0x%lx] dbgcam = 0x%x\n",
4964156d4daSYann Gautier 			(uintptr_t)&priv->ctl->dbgcam, dbgcam);
49710a511ceSYann Gautier 	} while ((((dbgcam & DDRCTRL_DBGCAM_DATA_PIPELINE_EMPTY) ==
49810a511ceSYann Gautier 		   DDRCTRL_DBGCAM_DATA_PIPELINE_EMPTY)) &&
49910a511ceSYann Gautier 		 ((dbgcam & DDRCTRL_DBGCAM_DBG_Q_DEPTH) == 0U));
50010a511ceSYann Gautier 
50110a511ceSYann Gautier 	/*
50210a511ceSYann Gautier 	 * 3. Perform an MRS command (using MRCTRL0 and MRCTRL1 registers)
50310a511ceSYann Gautier 	 *    to disable RTT_NOM:
50410a511ceSYann Gautier 	 *    a. DDR3: Write to MR1[9], MR1[6] and MR1[2]
50510a511ceSYann Gautier 	 *    b. DDR4: Write to MR1[10:8]
50610a511ceSYann Gautier 	 */
50710a511ceSYann Gautier 	mr1 &= ~(BIT(9) | BIT(6) | BIT(2));
50810a511ceSYann Gautier 	stm32mp1_mode_register_write(priv, 1, mr1);
50910a511ceSYann Gautier 
51010a511ceSYann Gautier 	/*
51110a511ceSYann Gautier 	 * 4. For DDR4 only: Perform an MRS command
51210a511ceSYann Gautier 	 *    (using MRCTRL0 and MRCTRL1 registers) to write to MR5[8:6]
51310a511ceSYann Gautier 	 *    to disable RTT_PARK
51410a511ceSYann Gautier 	 */
51510a511ceSYann Gautier 
51610a511ceSYann Gautier 	/*
51710a511ceSYann Gautier 	 * 5. Perform an MRS command (using MRCTRL0 and MRCTRL1 registers)
51810a511ceSYann Gautier 	 *    to write to MR2[10:9], to disable RTT_WR
51910a511ceSYann Gautier 	 *    (and therefore disable dynamic ODT).
52010a511ceSYann Gautier 	 *    This applies for both DDR3 and DDR4.
52110a511ceSYann Gautier 	 */
52210a511ceSYann Gautier 	mr2 &= ~GENMASK(10, 9);
52310a511ceSYann Gautier 	stm32mp1_mode_register_write(priv, 2, mr2);
52410a511ceSYann Gautier 
52510a511ceSYann Gautier 	/*
52610a511ceSYann Gautier 	 * 6. Perform an MRS command (using MRCTRL0 and MRCTRL1 registers)
52710a511ceSYann Gautier 	 *    to disable the DLL. The timing of this MRS is automatically
52810a511ceSYann Gautier 	 *    handled by the uMCTL2.
52910a511ceSYann Gautier 	 *    a. DDR3: Write to MR1[0]
53010a511ceSYann Gautier 	 *    b. DDR4: Write to MR1[0]
53110a511ceSYann Gautier 	 */
53210a511ceSYann Gautier 	mr1 |= BIT(0);
53310a511ceSYann Gautier 	stm32mp1_mode_register_write(priv, 1, mr1);
53410a511ceSYann Gautier 
53510a511ceSYann Gautier 	/*
53610a511ceSYann Gautier 	 * 7. Put the SDRAM into self-refresh mode by setting
53710a511ceSYann Gautier 	 *    PWRCTL.selfref_sw = 1, and polling STAT.operating_mode to ensure
53810a511ceSYann Gautier 	 *    the DDRC has entered self-refresh.
53910a511ceSYann Gautier 	 */
5404156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->ctl->pwrctl,
54110a511ceSYann Gautier 			DDRCTRL_PWRCTL_SELFREF_SW);
5424156d4daSYann Gautier 	VERBOSE("[0x%lx] pwrctl = 0x%x\n",
5434156d4daSYann Gautier 		(uintptr_t)&priv->ctl->pwrctl,
5444156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->pwrctl));
54510a511ceSYann Gautier 
54610a511ceSYann Gautier 	/*
54710a511ceSYann Gautier 	 * 8. Wait until STAT.operating_mode[1:0]==11 indicating that the
54810a511ceSYann Gautier 	 *    DWC_ddr_umctl2 core is in self-refresh mode.
54910a511ceSYann Gautier 	 *    Ensure transition to self-refresh was due to software
55010a511ceSYann Gautier 	 *    by checking that STAT.selfref_type[1:0]=2.
55110a511ceSYann Gautier 	 */
55210a511ceSYann Gautier 	stm32mp1_wait_operating_mode(priv, DDRCTRL_STAT_OPERATING_MODE_SR);
55310a511ceSYann Gautier 
55410a511ceSYann Gautier 	/*
55510a511ceSYann Gautier 	 * 9. Set the MSTR.dll_off_mode = 1.
55610a511ceSYann Gautier 	 *    warning: MSTR.dll_off_mode is a quasi-dynamic type 2 field
55710a511ceSYann Gautier 	 */
55810a511ceSYann Gautier 	stm32mp1_start_sw_done(priv->ctl);
55910a511ceSYann Gautier 
5604156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->ctl->mstr, DDRCTRL_MSTR_DLL_OFF_MODE);
5614156d4daSYann Gautier 	VERBOSE("[0x%lx] mstr = 0x%x\n",
5624156d4daSYann Gautier 		(uintptr_t)&priv->ctl->mstr,
5634156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->mstr));
56410a511ceSYann Gautier 
56510a511ceSYann Gautier 	stm32mp1_wait_sw_done_ack(priv->ctl);
56610a511ceSYann Gautier 
56710a511ceSYann Gautier 	/* 10. Change the clock frequency to the desired value. */
56810a511ceSYann Gautier 
56910a511ceSYann Gautier 	/*
57010a511ceSYann Gautier 	 * 11. Update any registers which may be required to change for the new
57110a511ceSYann Gautier 	 *     frequency. This includes static and dynamic registers.
57210a511ceSYann Gautier 	 *     This includes both uMCTL2 registers and PHY registers.
57310a511ceSYann Gautier 	 */
57410a511ceSYann Gautier 
57510a511ceSYann Gautier 	/* Change Bypass Mode Frequency Range */
57633667d29SYann Gautier 	if (clk_get_rate(DDRPHYC) < 100000000U) {
5774156d4daSYann Gautier 		mmio_clrbits_32((uintptr_t)&priv->phy->dllgcr,
57810a511ceSYann Gautier 				DDRPHYC_DLLGCR_BPS200);
57910a511ceSYann Gautier 	} else {
5804156d4daSYann Gautier 		mmio_setbits_32((uintptr_t)&priv->phy->dllgcr,
58110a511ceSYann Gautier 				DDRPHYC_DLLGCR_BPS200);
58210a511ceSYann Gautier 	}
58310a511ceSYann Gautier 
5844156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->phy->acdllcr, DDRPHYC_ACDLLCR_DLLDIS);
58510a511ceSYann Gautier 
5864156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->phy->dx0dllcr,
58710a511ceSYann Gautier 			DDRPHYC_DXNDLLCR_DLLDIS);
5884156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->phy->dx1dllcr,
58910a511ceSYann Gautier 			DDRPHYC_DXNDLLCR_DLLDIS);
5904156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->phy->dx2dllcr,
59110a511ceSYann Gautier 			DDRPHYC_DXNDLLCR_DLLDIS);
5924156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->phy->dx3dllcr,
59310a511ceSYann Gautier 			DDRPHYC_DXNDLLCR_DLLDIS);
59410a511ceSYann Gautier 
59510a511ceSYann Gautier 	/* 12. Exit the self-refresh state by setting PWRCTL.selfref_sw = 0. */
5964156d4daSYann Gautier 	mmio_clrbits_32((uintptr_t)&priv->ctl->pwrctl,
59710a511ceSYann Gautier 			DDRCTRL_PWRCTL_SELFREF_SW);
59810a511ceSYann Gautier 	stm32mp1_wait_operating_mode(priv, DDRCTRL_STAT_OPERATING_MODE_NORMAL);
59910a511ceSYann Gautier 
60010a511ceSYann Gautier 	/*
60110a511ceSYann Gautier 	 * 13. If ZQCTL0.dis_srx_zqcl = 0, the uMCTL2 performs a ZQCL command
60210a511ceSYann Gautier 	 *     at this point.
60310a511ceSYann Gautier 	 */
60410a511ceSYann Gautier 
60510a511ceSYann Gautier 	/*
60610a511ceSYann Gautier 	 * 14. Perform MRS commands as required to re-program timing registers
60710a511ceSYann Gautier 	 *     in the SDRAM for the new frequency
60810a511ceSYann Gautier 	 *     (in particular, CL, CWL and WR may need to be changed).
60910a511ceSYann Gautier 	 */
61010a511ceSYann Gautier 
61110a511ceSYann Gautier 	/* 15. Write DBG1.dis_hif = 0 to re-enable reads and writes. */
6124156d4daSYann Gautier 	mmio_clrbits_32((uintptr_t)&priv->ctl->dbg1, DDRCTRL_DBG1_DIS_HIF);
6134156d4daSYann Gautier 	VERBOSE("[0x%lx] dbg1 = 0x%x\n",
6144156d4daSYann Gautier 		(uintptr_t)&priv->ctl->dbg1,
6154156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->dbg1));
61610a511ceSYann Gautier }
61710a511ceSYann Gautier 
61810a511ceSYann Gautier static void stm32mp1_refresh_disable(struct stm32mp1_ddrctl *ctl)
61910a511ceSYann Gautier {
62010a511ceSYann Gautier 	stm32mp1_start_sw_done(ctl);
62110a511ceSYann Gautier 	/* Quasi-dynamic register update*/
6224156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&ctl->rfshctl3,
62310a511ceSYann Gautier 			DDRCTRL_RFSHCTL3_DIS_AUTO_REFRESH);
6244156d4daSYann Gautier 	mmio_clrbits_32((uintptr_t)&ctl->pwrctl, DDRCTRL_PWRCTL_POWERDOWN_EN);
6254156d4daSYann Gautier 	mmio_clrbits_32((uintptr_t)&ctl->dfimisc,
62610a511ceSYann Gautier 			DDRCTRL_DFIMISC_DFI_INIT_COMPLETE_EN);
62710a511ceSYann Gautier 	stm32mp1_wait_sw_done_ack(ctl);
62810a511ceSYann Gautier }
62910a511ceSYann Gautier 
63010a511ceSYann Gautier static void stm32mp1_refresh_restore(struct stm32mp1_ddrctl *ctl,
63110a511ceSYann Gautier 				     uint32_t rfshctl3, uint32_t pwrctl)
63210a511ceSYann Gautier {
63310a511ceSYann Gautier 	stm32mp1_start_sw_done(ctl);
63410a511ceSYann Gautier 	if ((rfshctl3 & DDRCTRL_RFSHCTL3_DIS_AUTO_REFRESH) == 0U) {
6354156d4daSYann Gautier 		mmio_clrbits_32((uintptr_t)&ctl->rfshctl3,
63610a511ceSYann Gautier 				DDRCTRL_RFSHCTL3_DIS_AUTO_REFRESH);
63710a511ceSYann Gautier 	}
63810a511ceSYann Gautier 	if ((pwrctl & DDRCTRL_PWRCTL_POWERDOWN_EN) != 0U) {
6394156d4daSYann Gautier 		mmio_setbits_32((uintptr_t)&ctl->pwrctl,
64010a511ceSYann Gautier 				DDRCTRL_PWRCTL_POWERDOWN_EN);
64110a511ceSYann Gautier 	}
6424156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&ctl->dfimisc,
64310a511ceSYann Gautier 			DDRCTRL_DFIMISC_DFI_INIT_COMPLETE_EN);
64410a511ceSYann Gautier 	stm32mp1_wait_sw_done_ack(ctl);
64510a511ceSYann Gautier }
64610a511ceSYann Gautier 
64710a511ceSYann Gautier static int board_ddr_power_init(enum ddr_type ddr_type)
64810a511ceSYann Gautier {
649d82d4ff0SYann Gautier 	if (dt_pmic_status() > 0) {
65010a511ceSYann Gautier 		return pmic_ddr_power_init(ddr_type);
65110a511ceSYann Gautier 	}
65210a511ceSYann Gautier 
65310a511ceSYann Gautier 	return 0;
65410a511ceSYann Gautier }
65510a511ceSYann Gautier 
65610a511ceSYann Gautier void stm32mp1_ddr_init(struct ddr_info *priv,
65710a511ceSYann Gautier 		       struct stm32mp1_ddr_config *config)
65810a511ceSYann Gautier {
65910a511ceSYann Gautier 	uint32_t pir;
6604156d4daSYann Gautier 	int ret = -EINVAL;
66110a511ceSYann Gautier 
66210a511ceSYann Gautier 	if ((config->c_reg.mstr & DDRCTRL_MSTR_DDR3) != 0U) {
66310a511ceSYann Gautier 		ret = board_ddr_power_init(STM32MP_DDR3);
6644156d4daSYann Gautier 	} else if ((config->c_reg.mstr & DDRCTRL_MSTR_LPDDR2) != 0U) {
66510a511ceSYann Gautier 		ret = board_ddr_power_init(STM32MP_LPDDR2);
6664b549b21SYann Gautier 	} else if ((config->c_reg.mstr & DDRCTRL_MSTR_LPDDR3) != 0U) {
6674b549b21SYann Gautier 		ret = board_ddr_power_init(STM32MP_LPDDR3);
6684156d4daSYann Gautier 	} else {
6694156d4daSYann Gautier 		ERROR("DDR type not supported\n");
67010a511ceSYann Gautier 	}
67110a511ceSYann Gautier 
67210a511ceSYann Gautier 	if (ret != 0) {
67310a511ceSYann Gautier 		panic();
67410a511ceSYann Gautier 	}
67510a511ceSYann Gautier 
67610a511ceSYann Gautier 	VERBOSE("name = %s\n", config->info.name);
677a078134eSYann Gautier 	VERBOSE("speed = %u kHz\n", config->info.speed);
67810a511ceSYann Gautier 	VERBOSE("size  = 0x%x\n", config->info.size);
67910a511ceSYann Gautier 
68010a511ceSYann Gautier 	/* DDR INIT SEQUENCE */
68110a511ceSYann Gautier 
68210a511ceSYann Gautier 	/*
68310a511ceSYann Gautier 	 * 1. Program the DWC_ddr_umctl2 registers
68410a511ceSYann Gautier 	 *     nota: check DFIMISC.dfi_init_complete = 0
68510a511ceSYann Gautier 	 */
68610a511ceSYann Gautier 
68710a511ceSYann Gautier 	/* 1.1 RESETS: presetn, core_ddrc_rstn, aresetn */
68810a511ceSYann Gautier 	mmio_setbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DDRCAPBRST);
68910a511ceSYann Gautier 	mmio_setbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DDRCAXIRST);
69010a511ceSYann Gautier 	mmio_setbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DDRCORERST);
69110a511ceSYann Gautier 	mmio_setbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DPHYAPBRST);
69210a511ceSYann Gautier 	mmio_setbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DPHYRST);
69310a511ceSYann Gautier 	mmio_setbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DPHYCTLRST);
69410a511ceSYann Gautier 
69510a511ceSYann Gautier 	/* 1.2. start CLOCK */
69610a511ceSYann Gautier 	if (stm32mp1_ddr_clk_enable(priv, config->info.speed) != 0) {
69710a511ceSYann Gautier 		panic();
69810a511ceSYann Gautier 	}
69910a511ceSYann Gautier 
70010a511ceSYann Gautier 	/* 1.3. deassert reset */
70110a511ceSYann Gautier 	/* De-assert PHY rstn and ctl_rstn via DPHYRST and DPHYCTLRST. */
70210a511ceSYann Gautier 	mmio_clrbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DPHYRST);
70310a511ceSYann Gautier 	mmio_clrbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DPHYCTLRST);
70410a511ceSYann Gautier 	/*
70510a511ceSYann Gautier 	 * De-assert presetn once the clocks are active
70610a511ceSYann Gautier 	 * and stable via DDRCAPBRST bit.
70710a511ceSYann Gautier 	 */
70810a511ceSYann Gautier 	mmio_clrbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DDRCAPBRST);
70910a511ceSYann Gautier 
71010a511ceSYann Gautier 	/* 1.4. wait 128 cycles to permit initialization of end logic */
71110a511ceSYann Gautier 	udelay(2);
71210a511ceSYann Gautier 	/* For PCLK = 133MHz => 1 us is enough, 2 to allow lower frequency */
71310a511ceSYann Gautier 
71410a511ceSYann Gautier 	/* 1.5. initialize registers ddr_umctl2 */
71510a511ceSYann Gautier 	/* Stop uMCTL2 before PHY is ready */
7164156d4daSYann Gautier 	mmio_clrbits_32((uintptr_t)&priv->ctl->dfimisc,
71710a511ceSYann Gautier 			DDRCTRL_DFIMISC_DFI_INIT_COMPLETE_EN);
7184156d4daSYann Gautier 	VERBOSE("[0x%lx] dfimisc = 0x%x\n",
7194156d4daSYann Gautier 		(uintptr_t)&priv->ctl->dfimisc,
7204156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->dfimisc));
72110a511ceSYann Gautier 
72210a511ceSYann Gautier 	set_reg(priv, REG_REG, &config->c_reg);
72310a511ceSYann Gautier 
72410a511ceSYann Gautier 	/* DDR3 = don't set DLLOFF for init mode */
72510a511ceSYann Gautier 	if ((config->c_reg.mstr &
72610a511ceSYann Gautier 	     (DDRCTRL_MSTR_DDR3 | DDRCTRL_MSTR_DLL_OFF_MODE))
72710a511ceSYann Gautier 	    == (DDRCTRL_MSTR_DDR3 | DDRCTRL_MSTR_DLL_OFF_MODE)) {
72810a511ceSYann Gautier 		VERBOSE("deactivate DLL OFF in mstr\n");
7294156d4daSYann Gautier 		mmio_clrbits_32((uintptr_t)&priv->ctl->mstr,
73010a511ceSYann Gautier 				DDRCTRL_MSTR_DLL_OFF_MODE);
7314156d4daSYann Gautier 		VERBOSE("[0x%lx] mstr = 0x%x\n",
7324156d4daSYann Gautier 			(uintptr_t)&priv->ctl->mstr,
7334156d4daSYann Gautier 			mmio_read_32((uintptr_t)&priv->ctl->mstr));
73410a511ceSYann Gautier 	}
73510a511ceSYann Gautier 
73610a511ceSYann Gautier 	set_reg(priv, REG_TIMING, &config->c_timing);
73710a511ceSYann Gautier 	set_reg(priv, REG_MAP, &config->c_map);
73810a511ceSYann Gautier 
73910a511ceSYann Gautier 	/* Skip CTRL init, SDRAM init is done by PHY PUBL */
7404156d4daSYann Gautier 	mmio_clrsetbits_32((uintptr_t)&priv->ctl->init0,
74110a511ceSYann Gautier 			   DDRCTRL_INIT0_SKIP_DRAM_INIT_MASK,
74210a511ceSYann Gautier 			   DDRCTRL_INIT0_SKIP_DRAM_INIT_NORMAL);
7434156d4daSYann Gautier 	VERBOSE("[0x%lx] init0 = 0x%x\n",
7444156d4daSYann Gautier 		(uintptr_t)&priv->ctl->init0,
7454156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->init0));
74610a511ceSYann Gautier 
74710a511ceSYann Gautier 	set_reg(priv, REG_PERF, &config->c_perf);
74810a511ceSYann Gautier 
74910a511ceSYann Gautier 	/*  2. deassert reset signal core_ddrc_rstn, aresetn and presetn */
75010a511ceSYann Gautier 	mmio_clrbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DDRCORERST);
75110a511ceSYann Gautier 	mmio_clrbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DDRCAXIRST);
75210a511ceSYann Gautier 	mmio_clrbits_32(priv->rcc + RCC_DDRITFCR, RCC_DDRITFCR_DPHYAPBRST);
75310a511ceSYann Gautier 
75410a511ceSYann Gautier 	/*
75510a511ceSYann Gautier 	 * 3. start PHY init by accessing relevant PUBL registers
75610a511ceSYann Gautier 	 *    (DXGCR, DCR, PTR*, MR*, DTPR*)
75710a511ceSYann Gautier 	 */
75810a511ceSYann Gautier 	set_reg(priv, REGPHY_REG, &config->p_reg);
75910a511ceSYann Gautier 	set_reg(priv, REGPHY_TIMING, &config->p_timing);
76010a511ceSYann Gautier 
76110a511ceSYann Gautier 	/* DDR3 = don't set DLLOFF for init mode */
76210a511ceSYann Gautier 	if ((config->c_reg.mstr &
76310a511ceSYann Gautier 	     (DDRCTRL_MSTR_DDR3 | DDRCTRL_MSTR_DLL_OFF_MODE))
76410a511ceSYann Gautier 	    == (DDRCTRL_MSTR_DDR3 | DDRCTRL_MSTR_DLL_OFF_MODE)) {
76510a511ceSYann Gautier 		VERBOSE("deactivate DLL OFF in mr1\n");
7664156d4daSYann Gautier 		mmio_clrbits_32((uintptr_t)&priv->phy->mr1, BIT(0));
7674156d4daSYann Gautier 		VERBOSE("[0x%lx] mr1 = 0x%x\n",
7684156d4daSYann Gautier 			(uintptr_t)&priv->phy->mr1,
7694156d4daSYann Gautier 			mmio_read_32((uintptr_t)&priv->phy->mr1));
77010a511ceSYann Gautier 	}
77110a511ceSYann Gautier 
77210a511ceSYann Gautier 	/*
77310a511ceSYann Gautier 	 *  4. Monitor PHY init status by polling PUBL register PGSR.IDONE
77410a511ceSYann Gautier 	 *     Perform DDR PHY DRAM initialization and Gate Training Evaluation
77510a511ceSYann Gautier 	 */
77610a511ceSYann Gautier 	stm32mp1_ddrphy_idone_wait(priv->phy);
77710a511ceSYann Gautier 
77810a511ceSYann Gautier 	/*
77910a511ceSYann Gautier 	 *  5. Indicate to PUBL that controller performs SDRAM initialization
78010a511ceSYann Gautier 	 *     by setting PIR.INIT and PIR CTLDINIT and pool PGSR.IDONE
78110a511ceSYann Gautier 	 *     DRAM init is done by PHY, init0.skip_dram.init = 1
78210a511ceSYann Gautier 	 */
78310a511ceSYann Gautier 
78410a511ceSYann Gautier 	pir = DDRPHYC_PIR_DLLSRST | DDRPHYC_PIR_DLLLOCK | DDRPHYC_PIR_ZCAL |
78510a511ceSYann Gautier 	      DDRPHYC_PIR_ITMSRST | DDRPHYC_PIR_DRAMINIT | DDRPHYC_PIR_ICPC;
78610a511ceSYann Gautier 
78710a511ceSYann Gautier 	if ((config->c_reg.mstr & DDRCTRL_MSTR_DDR3) != 0U) {
78810a511ceSYann Gautier 		pir |= DDRPHYC_PIR_DRAMRST; /* Only for DDR3 */
78910a511ceSYann Gautier 	}
79010a511ceSYann Gautier 
79110a511ceSYann Gautier 	stm32mp1_ddrphy_init(priv->phy, pir);
79210a511ceSYann Gautier 
79310a511ceSYann Gautier 	/*
79410a511ceSYann Gautier 	 *  6. SET DFIMISC.dfi_init_complete_en to 1
79510a511ceSYann Gautier 	 *  Enable quasi-dynamic register programming.
79610a511ceSYann Gautier 	 */
79710a511ceSYann Gautier 	stm32mp1_start_sw_done(priv->ctl);
79810a511ceSYann Gautier 
7994156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->ctl->dfimisc,
80010a511ceSYann Gautier 			DDRCTRL_DFIMISC_DFI_INIT_COMPLETE_EN);
8014156d4daSYann Gautier 	VERBOSE("[0x%lx] dfimisc = 0x%x\n",
8024156d4daSYann Gautier 		(uintptr_t)&priv->ctl->dfimisc,
8034156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->dfimisc));
80410a511ceSYann Gautier 
80510a511ceSYann Gautier 	stm32mp1_wait_sw_done_ack(priv->ctl);
80610a511ceSYann Gautier 
80710a511ceSYann Gautier 	/*
80810a511ceSYann Gautier 	 *  7. Wait for DWC_ddr_umctl2 to move to normal operation mode
80910a511ceSYann Gautier 	 *     by monitoring STAT.operating_mode signal
81010a511ceSYann Gautier 	 */
81110a511ceSYann Gautier 
81210a511ceSYann Gautier 	/* Wait uMCTL2 ready */
81310a511ceSYann Gautier 	stm32mp1_wait_operating_mode(priv, DDRCTRL_STAT_OPERATING_MODE_NORMAL);
81410a511ceSYann Gautier 
81510a511ceSYann Gautier 	/* Switch to DLL OFF mode */
81610a511ceSYann Gautier 	if ((config->c_reg.mstr & DDRCTRL_MSTR_DLL_OFF_MODE) != 0U) {
81710a511ceSYann Gautier 		stm32mp1_ddr3_dll_off(priv);
81810a511ceSYann Gautier 	}
81910a511ceSYann Gautier 
82010a511ceSYann Gautier 	VERBOSE("DDR DQS training : ");
82110a511ceSYann Gautier 
82210a511ceSYann Gautier 	/*
82310a511ceSYann Gautier 	 *  8. Disable Auto refresh and power down by setting
82410a511ceSYann Gautier 	 *    - RFSHCTL3.dis_au_refresh = 1
82510a511ceSYann Gautier 	 *    - PWRCTL.powerdown_en = 0
82610a511ceSYann Gautier 	 *    - DFIMISC.dfiinit_complete_en = 0
82710a511ceSYann Gautier 	 */
82810a511ceSYann Gautier 	stm32mp1_refresh_disable(priv->ctl);
82910a511ceSYann Gautier 
83010a511ceSYann Gautier 	/*
83110a511ceSYann Gautier 	 *  9. Program PUBL PGCR to enable refresh during training
83210a511ceSYann Gautier 	 *     and rank to train
83310a511ceSYann Gautier 	 *     not done => keep the programed value in PGCR
83410a511ceSYann Gautier 	 */
83510a511ceSYann Gautier 
83610a511ceSYann Gautier 	/*
83710a511ceSYann Gautier 	 * 10. configure PUBL PIR register to specify which training step
83810a511ceSYann Gautier 	 * to run
8395def13ebSNicolas Le Bayon 	 * RVTRN is executed only on LPDDR2/LPDDR3
84010a511ceSYann Gautier 	 */
8415def13ebSNicolas Le Bayon 	pir = DDRPHYC_PIR_QSTRN;
8425def13ebSNicolas Le Bayon 	if ((config->c_reg.mstr & DDRCTRL_MSTR_DDR3) == 0U) {
8435def13ebSNicolas Le Bayon 		pir |= DDRPHYC_PIR_RVTRN;
8445def13ebSNicolas Le Bayon 	}
8455def13ebSNicolas Le Bayon 
8465def13ebSNicolas Le Bayon 	stm32mp1_ddrphy_init(priv->phy, pir);
84710a511ceSYann Gautier 
84810a511ceSYann Gautier 	/* 11. monitor PUB PGSR.IDONE to poll cpmpletion of training sequence */
84910a511ceSYann Gautier 	stm32mp1_ddrphy_idone_wait(priv->phy);
85010a511ceSYann Gautier 
85110a511ceSYann Gautier 	/*
85210a511ceSYann Gautier 	 * 12. set back registers in step 8 to the orginal values if desidered
85310a511ceSYann Gautier 	 */
85410a511ceSYann Gautier 	stm32mp1_refresh_restore(priv->ctl, config->c_reg.rfshctl3,
85510a511ceSYann Gautier 				 config->c_reg.pwrctl);
85610a511ceSYann Gautier 
85710a511ceSYann Gautier 	/* Enable uMCTL2 AXI port 0 */
8584156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->ctl->pctrl_0,
8594156d4daSYann Gautier 			DDRCTRL_PCTRL_N_PORT_EN);
8604156d4daSYann Gautier 	VERBOSE("[0x%lx] pctrl_0 = 0x%x\n",
8614156d4daSYann Gautier 		(uintptr_t)&priv->ctl->pctrl_0,
8624156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->pctrl_0));
86310a511ceSYann Gautier 
86410a511ceSYann Gautier 	/* Enable uMCTL2 AXI port 1 */
8654156d4daSYann Gautier 	mmio_setbits_32((uintptr_t)&priv->ctl->pctrl_1,
8664156d4daSYann Gautier 			DDRCTRL_PCTRL_N_PORT_EN);
8674156d4daSYann Gautier 	VERBOSE("[0x%lx] pctrl_1 = 0x%x\n",
8684156d4daSYann Gautier 		(uintptr_t)&priv->ctl->pctrl_1,
8694156d4daSYann Gautier 		mmio_read_32((uintptr_t)&priv->ctl->pctrl_1));
87010a511ceSYann Gautier }
871