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Chander Kashyap1633dd12012-02-05 23:01:48 +00001/*
2 * Copyright (C) 2012 Samsung Electronics
3 *
Wolfgang Denkd79de1d2013-07-08 09:37:19 +02004 * SPDX-License-Identifier: GPL-2.0+
Chander Kashyap1633dd12012-02-05 23:01:48 +00005 */
6
7#include<common.h>
8#include<config.h>
9
Amare33add82013-04-27 11:42:59 +053010#include <asm/arch/clock.h>
11#include <asm/arch/clk.h>
Rajeshwari Shindebed24422013-07-04 12:29:17 +053012#include <asm/arch/dmc.h>
Rajeshwari Shinde507f8922013-10-08 18:42:22 +053013#include <asm/arch/periph.h>
14#include <asm/arch/pinmux.h>
Rajeshwari Shindebed24422013-07-04 12:29:17 +053015#include <asm/arch/power.h>
Rajeshwari Shindebff6d0a2013-06-25 19:17:06 +053016#include <asm/arch/spl.h>
Rajeshwari Shinde507f8922013-10-08 18:42:22 +053017#include <asm/arch/spi.h>
Amare33add82013-04-27 11:42:59 +053018
Rajeshwari Shindebed24422013-07-04 12:29:17 +053019#include "common_setup.h"
Amare33add82013-04-27 11:42:59 +053020#include "clock_init.h"
21
Rajeshwari Shindebed24422013-07-04 12:29:17 +053022DECLARE_GLOBAL_DATA_PTR;
23#define OM_STAT (0x1f << 1)
24
Amare33add82013-04-27 11:42:59 +053025/* Index into irom ptr table */
26enum index {
27 MMC_INDEX,
28 EMMC44_INDEX,
29 EMMC44_END_INDEX,
30 SPI_INDEX,
31 USB_INDEX,
32};
33
34/* IROM Function Pointers Table */
35u32 irom_ptr_table[] = {
36 [MMC_INDEX] = 0x02020030, /* iROM Function Pointer-SDMMC boot */
37 [EMMC44_INDEX] = 0x02020044, /* iROM Function Pointer-EMMC4.4 boot*/
38 [EMMC44_END_INDEX] = 0x02020048,/* iROM Function Pointer
39 -EMMC4.4 end boot operation */
40 [SPI_INDEX] = 0x02020058, /* iROM Function Pointer-SPI boot */
41 [USB_INDEX] = 0x02020070, /* iROM Function Pointer-USB boot*/
42 };
43
Amare33add82013-04-27 11:42:59 +053044void *get_irom_func(int index)
45{
46 return (void *)*(u32 *)irom_ptr_table[index];
47}
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +000048
Rajeshwari Shindebed24422013-07-04 12:29:17 +053049#ifdef CONFIG_USB_BOOTING
Chander Kashyap1633dd12012-02-05 23:01:48 +000050/*
Vivek Gautam681dd832013-01-28 00:39:59 +000051 * Set/clear program flow prediction and return the previous state.
52 */
53static int config_branch_prediction(int set_cr_z)
54{
55 unsigned int cr;
56
57 /* System Control Register: 11th bit Z Branch prediction enable */
58 cr = get_cr();
59 set_cr(set_cr_z ? cr | CR_Z : cr & ~CR_Z);
60
61 return cr & CR_Z;
62}
Rajeshwari Shindebed24422013-07-04 12:29:17 +053063#endif
Vivek Gautam681dd832013-01-28 00:39:59 +000064
Rajeshwari Shinde507f8922013-10-08 18:42:22 +053065static void spi_rx_tx(struct exynos_spi *regs, int todo,
66 void *dinp, void const *doutp, int i)
67{
68 uint *rxp = (uint *)(dinp + (i * (32 * 1024)));
69 int rx_lvl, tx_lvl;
70 uint out_bytes, in_bytes;
71
72 out_bytes = todo;
73 in_bytes = todo;
74 setbits_le32(&regs->ch_cfg, SPI_CH_RST);
75 clrbits_le32(&regs->ch_cfg, SPI_CH_RST);
76 writel(((todo * 8) / 32) | SPI_PACKET_CNT_EN, &regs->pkt_cnt);
77
78 while (in_bytes) {
79 uint32_t spi_sts;
80 int temp;
81
82 spi_sts = readl(&regs->spi_sts);
83 rx_lvl = ((spi_sts >> 15) & 0x7f);
84 tx_lvl = ((spi_sts >> 6) & 0x7f);
85 while (tx_lvl < 32 && out_bytes) {
86 temp = 0xffffffff;
87 writel(temp, &regs->tx_data);
88 out_bytes -= 4;
89 tx_lvl += 4;
90 }
91 while (rx_lvl >= 4 && in_bytes) {
92 temp = readl(&regs->rx_data);
93 if (rxp)
94 *rxp++ = temp;
95 in_bytes -= 4;
96 rx_lvl -= 4;
97 }
98 }
99}
100
101/*
102 * Copy uboot from spi flash to RAM
103 *
104 * @parma uboot_size size of u-boot to copy
105 * @param uboot_addr address in u-boot to copy
106 */
107static void exynos_spi_copy(unsigned int uboot_size, unsigned int uboot_addr)
108{
109 int upto, todo;
110 int i, timeout = 100;
111 struct exynos_spi *regs = (struct exynos_spi *)CONFIG_ENV_SPI_BASE;
112
113 set_spi_clk(PERIPH_ID_SPI1, 50000000); /* set spi clock to 50Mhz */
114 /* set the spi1 GPIO */
115 exynos_pinmux_config(PERIPH_ID_SPI1, PINMUX_FLAG_NONE);
116
117 /* set pktcnt and enable it */
118 writel(4 | SPI_PACKET_CNT_EN, &regs->pkt_cnt);
119 /* set FB_CLK_SEL */
120 writel(SPI_FB_DELAY_180, &regs->fb_clk);
121 /* set CH_WIDTH and BUS_WIDTH as word */
122 setbits_le32(&regs->mode_cfg, SPI_MODE_CH_WIDTH_WORD |
123 SPI_MODE_BUS_WIDTH_WORD);
124 clrbits_le32(&regs->ch_cfg, SPI_CH_CPOL_L); /* CPOL: active high */
125
126 /* clear rx and tx channel if set priveously */
127 clrbits_le32(&regs->ch_cfg, SPI_RX_CH_ON | SPI_TX_CH_ON);
128
129 setbits_le32(&regs->swap_cfg, SPI_RX_SWAP_EN |
130 SPI_RX_BYTE_SWAP |
131 SPI_RX_HWORD_SWAP);
132
133 /* do a soft reset */
134 setbits_le32(&regs->ch_cfg, SPI_CH_RST);
135 clrbits_le32(&regs->ch_cfg, SPI_CH_RST);
136
137 /* now set rx and tx channel ON */
138 setbits_le32(&regs->ch_cfg, SPI_RX_CH_ON | SPI_TX_CH_ON | SPI_CH_HS_EN);
139 clrbits_le32(&regs->cs_reg, SPI_SLAVE_SIG_INACT); /* CS low */
140
141 /* Send read instruction (0x3h) followed by a 24 bit addr */
142 writel((SF_READ_DATA_CMD << 24) | SPI_FLASH_UBOOT_POS, &regs->tx_data);
143
144 /* waiting for TX done */
145 while (!(readl(&regs->spi_sts) & SPI_ST_TX_DONE)) {
146 if (!timeout) {
147 debug("SPI TIMEOUT\n");
148 break;
149 }
150 timeout--;
151 }
152
153 for (upto = 0, i = 0; upto < uboot_size; upto += todo, i++) {
154 todo = min(uboot_size - upto, (1 << 15));
155 spi_rx_tx(regs, todo, (void *)(uboot_addr),
156 (void *)(SPI_FLASH_UBOOT_POS), i);
157 }
158
159 setbits_le32(&regs->cs_reg, SPI_SLAVE_SIG_INACT);/* make the CS high */
160
161 /*
162 * Let put controller mode to BYTE as
163 * SPI driver does not support WORD mode yet
164 */
165 clrbits_le32(&regs->mode_cfg, SPI_MODE_CH_WIDTH_WORD |
166 SPI_MODE_BUS_WIDTH_WORD);
167 writel(0, &regs->swap_cfg);
168
169 /*
170 * Flush spi tx, rx fifos and reset the SPI controller
171 * and clear rx/tx channel
172 */
173 clrsetbits_le32(&regs->ch_cfg, SPI_CH_HS_EN, SPI_CH_RST);
174 clrbits_le32(&regs->ch_cfg, SPI_CH_RST);
175 clrbits_le32(&regs->ch_cfg, SPI_TX_CH_ON | SPI_RX_CH_ON);
176}
177
Vivek Gautam681dd832013-01-28 00:39:59 +0000178/*
Chander Kashyap1633dd12012-02-05 23:01:48 +0000179* Copy U-boot from mmc to RAM:
180* COPY_BL2_FNPTR_ADDR: Address in iRAM, which Contains
181* Pointer to API (Data transfer from mmc to ram)
182*/
183void copy_uboot_to_ram(void)
184{
Vivek Gautam681dd832013-01-28 00:39:59 +0000185 enum boot_mode bootmode = BOOT_MODE_OM;
Amare33add82013-04-27 11:42:59 +0530186
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530187 u32 (*copy_bl2)(u32 offset, u32 nblock, u32 dst) = NULL;
188 u32 offset = 0, size = 0;
Rajeshwari Shinde507f8922013-10-08 18:42:22 +0530189 struct spl_machine_param *param = spl_get_machine_params();
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530190#ifdef CONFIG_SUPPORT_EMMC_BOOT
Amare33add82013-04-27 11:42:59 +0530191 u32 (*copy_bl2_from_emmc)(u32 nblock, u32 dst);
192 void (*end_bootop_from_emmc)(void);
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530193#endif
194#ifdef CONFIG_USB_BOOTING
Amare33add82013-04-27 11:42:59 +0530195 u32 (*usb_copy)(void);
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530196 int is_cr_z_set;
197 unsigned int sec_boot_check;
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000198
Vivek Gautam681dd832013-01-28 00:39:59 +0000199 /* Read iRAM location to check for secondary USB boot mode */
200 sec_boot_check = readl(EXYNOS_IRAM_SECONDARY_BASE);
201 if (sec_boot_check == EXYNOS_USB_SECONDARY_BOOT)
202 bootmode = BOOT_MODE_USB;
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530203#endif
Vivek Gautam681dd832013-01-28 00:39:59 +0000204
205 if (bootmode == BOOT_MODE_OM)
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530206 bootmode = readl(samsung_get_base_power()) & OM_STAT;
Chander Kashyap1633dd12012-02-05 23:01:48 +0000207
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000208 switch (bootmode) {
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530209#ifdef CONFIG_SPI_BOOTING
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000210 case BOOT_MODE_SERIAL:
Rajeshwari Shinde507f8922013-10-08 18:42:22 +0530211 /* Customised function to copy u-boot from SF */
212 exynos_spi_copy(param->uboot_size, CONFIG_SYS_TEXT_BASE);
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000213 break;
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530214#endif
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000215 case BOOT_MODE_MMC:
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530216 offset = BL2_START_OFFSET;
217 size = BL2_SIZE_BLOC_COUNT;
Amare33add82013-04-27 11:42:59 +0530218 copy_bl2 = get_irom_func(MMC_INDEX);
Amare33add82013-04-27 11:42:59 +0530219 break;
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530220#ifdef CONFIG_SUPPORT_EMMC_BOOT
Amare33add82013-04-27 11:42:59 +0530221 case BOOT_MODE_EMMC:
222 /* Set the FSYS1 clock divisor value for EMMC boot */
223 emmc_boot_clk_div_set();
224
225 copy_bl2_from_emmc = get_irom_func(EMMC44_INDEX);
226 end_bootop_from_emmc = get_irom_func(EMMC44_END_INDEX);
227
228 copy_bl2_from_emmc(BL2_SIZE_BLOC_COUNT, CONFIG_SYS_TEXT_BASE);
229 end_bootop_from_emmc();
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000230 break;
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530231#endif
232#ifdef CONFIG_USB_BOOTING
Vivek Gautam681dd832013-01-28 00:39:59 +0000233 case BOOT_MODE_USB:
234 /*
235 * iROM needs program flow prediction to be disabled
236 * before copy from USB device to RAM
237 */
238 is_cr_z_set = config_branch_prediction(0);
Amare33add82013-04-27 11:42:59 +0530239 usb_copy = get_irom_func(USB_INDEX);
Vivek Gautam681dd832013-01-28 00:39:59 +0000240 usb_copy();
241 config_branch_prediction(is_cr_z_set);
242 break;
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530243#endif
Rajeshwari Shinde9cb48e82012-11-02 01:15:38 +0000244 default:
245 break;
246 }
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530247
248 if (copy_bl2)
249 copy_bl2(offset, size, CONFIG_SYS_TEXT_BASE);
Chander Kashyap1633dd12012-02-05 23:01:48 +0000250}
251
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530252void memzero(void *s, size_t n)
253{
254 char *ptr = s;
255 size_t i;
256
257 for (i = 0; i < n; i++)
258 *ptr++ = '\0';
259}
260
261/**
262 * Set up the U-Boot global_data pointer
263 *
264 * This sets the address of the global data, and sets up basic values.
265 *
266 * @param gdp Value to give to gd
267 */
268static void setup_global_data(gd_t *gdp)
269{
270 gd = gdp;
271 memzero((void *)gd, sizeof(gd_t));
272 gd->flags |= GD_FLG_RELOC;
273 gd->baudrate = CONFIG_BAUDRATE;
274 gd->have_console = 1;
275}
276
Chander Kashyap1633dd12012-02-05 23:01:48 +0000277void board_init_f(unsigned long bootflag)
278{
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530279 __aligned(8) gd_t local_gd;
Chander Kashyap1633dd12012-02-05 23:01:48 +0000280 __attribute__((noreturn)) void (*uboot)(void);
Rajeshwari Shindebed24422013-07-04 12:29:17 +0530281
282 setup_global_data(&local_gd);
283
284 if (do_lowlevel_init())
285 power_exit_wakeup();
286
Chander Kashyap1633dd12012-02-05 23:01:48 +0000287 copy_uboot_to_ram();
288
289 /* Jump to U-Boot image */
290 uboot = (void *)CONFIG_SYS_TEXT_BASE;
291 (*uboot)();
292 /* Never returns Here */
293}
294
295/* Place Holders */
296void board_init_r(gd_t *id, ulong dest_addr)
297{
298 /* Function attribute is no-return */
299 /* This Function never executes */
300 while (1)
301 ;
302}
Chander Kashyap1633dd12012-02-05 23:01:48 +0000303void save_boot_params(u32 r0, u32 r1, u32 r2, u32 r3) {}