1552a848eSStefano Babic /*
2552a848eSStefano Babic * Copyright (C) 2010-2011 Freescale Semiconductor, Inc.
3552a848eSStefano Babic *
4552a848eSStefano Babic * SPDX-License-Identifier: GPL-2.0+
5552a848eSStefano Babic */
6552a848eSStefano Babic
7552a848eSStefano Babic #include <common.h>
8552a848eSStefano Babic #include <div64.h>
9552a848eSStefano Babic #include <asm/io.h>
10552a848eSStefano Babic #include <linux/errno.h>
11552a848eSStefano Babic #include <asm/arch/imx-regs.h>
12552a848eSStefano Babic #include <asm/arch/crm_regs.h>
13552a848eSStefano Babic #include <asm/arch/clock.h>
14552a848eSStefano Babic #include <asm/arch/sys_proto.h>
15552a848eSStefano Babic
16552a848eSStefano Babic enum pll_clocks {
17552a848eSStefano Babic PLL_SYS, /* System PLL */
18552a848eSStefano Babic PLL_BUS, /* System Bus PLL*/
19552a848eSStefano Babic PLL_USBOTG, /* OTG USB PLL */
20552a848eSStefano Babic PLL_ENET, /* ENET PLL */
21552a848eSStefano Babic PLL_AUDIO, /* AUDIO PLL */
22*ff3a5fc4SAnatolij Gustschin PLL_VIDEO, /* VIDEO PLL */
23552a848eSStefano Babic };
24552a848eSStefano Babic
25552a848eSStefano Babic struct mxc_ccm_reg *imx_ccm = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
26552a848eSStefano Babic
27552a848eSStefano Babic #ifdef CONFIG_MXC_OCOTP
enable_ocotp_clk(unsigned char enable)28552a848eSStefano Babic void enable_ocotp_clk(unsigned char enable)
29552a848eSStefano Babic {
30552a848eSStefano Babic u32 reg;
31552a848eSStefano Babic
32552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR2);
33552a848eSStefano Babic if (enable)
34552a848eSStefano Babic reg |= MXC_CCM_CCGR2_OCOTP_CTRL_MASK;
35552a848eSStefano Babic else
36552a848eSStefano Babic reg &= ~MXC_CCM_CCGR2_OCOTP_CTRL_MASK;
37552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR2);
38552a848eSStefano Babic }
39552a848eSStefano Babic #endif
40552a848eSStefano Babic
41552a848eSStefano Babic #ifdef CONFIG_NAND_MXS
setup_gpmi_io_clk(u32 cfg)42552a848eSStefano Babic void setup_gpmi_io_clk(u32 cfg)
43552a848eSStefano Babic {
44552a848eSStefano Babic /* Disable clocks per ERR007177 from MX6 errata */
45552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR4,
46552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_BCH_INPUT_APB_MASK |
47552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_BCH_INPUT_BCH_MASK |
48552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_BCH_INPUT_GPMI_IO_MASK |
49552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_INPUT_APB_MASK |
50552a848eSStefano Babic MXC_CCM_CCGR4_PL301_MX6QPER1_BCH_MASK);
51552a848eSStefano Babic
52552a848eSStefano Babic #if defined(CONFIG_MX6SX)
53552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR4, MXC_CCM_CCGR4_QSPI2_ENFC_MASK);
54552a848eSStefano Babic
55552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cs2cdr,
56552a848eSStefano Babic MXC_CCM_CS2CDR_QSPI2_CLK_PODF_MASK |
57552a848eSStefano Babic MXC_CCM_CS2CDR_QSPI2_CLK_PRED_MASK |
58552a848eSStefano Babic MXC_CCM_CS2CDR_QSPI2_CLK_SEL_MASK,
59552a848eSStefano Babic cfg);
60552a848eSStefano Babic
61552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR4, MXC_CCM_CCGR4_QSPI2_ENFC_MASK);
62552a848eSStefano Babic #else
63552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR2, MXC_CCM_CCGR2_IOMUX_IPT_CLK_IO_MASK);
64552a848eSStefano Babic
65552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cs2cdr,
66552a848eSStefano Babic MXC_CCM_CS2CDR_ENFC_CLK_PODF_MASK |
67552a848eSStefano Babic MXC_CCM_CS2CDR_ENFC_CLK_PRED_MASK |
68552a848eSStefano Babic MXC_CCM_CS2CDR_ENFC_CLK_SEL_MASK,
69552a848eSStefano Babic cfg);
70552a848eSStefano Babic
71552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR2, MXC_CCM_CCGR2_IOMUX_IPT_CLK_IO_MASK);
72552a848eSStefano Babic #endif
73552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR4,
74552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_BCH_INPUT_APB_MASK |
75552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_BCH_INPUT_BCH_MASK |
76552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_BCH_INPUT_GPMI_IO_MASK |
77552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_INPUT_APB_MASK |
78552a848eSStefano Babic MXC_CCM_CCGR4_PL301_MX6QPER1_BCH_MASK);
79552a848eSStefano Babic }
80552a848eSStefano Babic #endif
81552a848eSStefano Babic
enable_usboh3_clk(unsigned char enable)82552a848eSStefano Babic void enable_usboh3_clk(unsigned char enable)
83552a848eSStefano Babic {
84552a848eSStefano Babic u32 reg;
85552a848eSStefano Babic
86552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR6);
87552a848eSStefano Babic if (enable)
88552a848eSStefano Babic reg |= MXC_CCM_CCGR6_USBOH3_MASK;
89552a848eSStefano Babic else
90552a848eSStefano Babic reg &= ~(MXC_CCM_CCGR6_USBOH3_MASK);
91552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR6);
92552a848eSStefano Babic
93552a848eSStefano Babic }
94552a848eSStefano Babic
95552a848eSStefano Babic #if defined(CONFIG_FEC_MXC) && !defined(CONFIG_MX6SX)
enable_enet_clk(unsigned char enable)96552a848eSStefano Babic void enable_enet_clk(unsigned char enable)
97552a848eSStefano Babic {
98552a848eSStefano Babic u32 mask, *addr;
99552a848eSStefano Babic
100552a848eSStefano Babic if (is_mx6ull()) {
101552a848eSStefano Babic mask = MXC_CCM_CCGR0_ENET_CLK_ENABLE_MASK;
102552a848eSStefano Babic addr = &imx_ccm->CCGR0;
103552a848eSStefano Babic } else if (is_mx6ul()) {
104552a848eSStefano Babic mask = MXC_CCM_CCGR3_ENET_MASK;
105552a848eSStefano Babic addr = &imx_ccm->CCGR3;
106552a848eSStefano Babic } else {
107552a848eSStefano Babic mask = MXC_CCM_CCGR1_ENET_MASK;
108552a848eSStefano Babic addr = &imx_ccm->CCGR1;
109552a848eSStefano Babic }
110552a848eSStefano Babic
111552a848eSStefano Babic if (enable)
112552a848eSStefano Babic setbits_le32(addr, mask);
113552a848eSStefano Babic else
114552a848eSStefano Babic clrbits_le32(addr, mask);
115552a848eSStefano Babic }
116552a848eSStefano Babic #endif
117552a848eSStefano Babic
118552a848eSStefano Babic #ifdef CONFIG_MXC_UART
enable_uart_clk(unsigned char enable)119552a848eSStefano Babic void enable_uart_clk(unsigned char enable)
120552a848eSStefano Babic {
121552a848eSStefano Babic u32 mask;
122552a848eSStefano Babic
123552a848eSStefano Babic if (is_mx6ul() || is_mx6ull())
124552a848eSStefano Babic mask = MXC_CCM_CCGR5_UART_MASK;
125552a848eSStefano Babic else
126552a848eSStefano Babic mask = MXC_CCM_CCGR5_UART_MASK | MXC_CCM_CCGR5_UART_SERIAL_MASK;
127552a848eSStefano Babic
128552a848eSStefano Babic if (enable)
129552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR5, mask);
130552a848eSStefano Babic else
131552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR5, mask);
132552a848eSStefano Babic }
133552a848eSStefano Babic #endif
134552a848eSStefano Babic
135552a848eSStefano Babic #ifdef CONFIG_MMC
enable_usdhc_clk(unsigned char enable,unsigned bus_num)136552a848eSStefano Babic int enable_usdhc_clk(unsigned char enable, unsigned bus_num)
137552a848eSStefano Babic {
138552a848eSStefano Babic u32 mask;
139552a848eSStefano Babic
140552a848eSStefano Babic if (bus_num > 3)
141552a848eSStefano Babic return -EINVAL;
142552a848eSStefano Babic
143552a848eSStefano Babic mask = MXC_CCM_CCGR_CG_MASK << (bus_num * 2 + 2);
144552a848eSStefano Babic if (enable)
145552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR6, mask);
146552a848eSStefano Babic else
147552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR6, mask);
148552a848eSStefano Babic
149552a848eSStefano Babic return 0;
150552a848eSStefano Babic }
151552a848eSStefano Babic #endif
152552a848eSStefano Babic
153552a848eSStefano Babic #ifdef CONFIG_SYS_I2C_MXC
154552a848eSStefano Babic /* i2c_num can be from 0 - 3 */
enable_i2c_clk(unsigned char enable,unsigned i2c_num)155552a848eSStefano Babic int enable_i2c_clk(unsigned char enable, unsigned i2c_num)
156552a848eSStefano Babic {
157552a848eSStefano Babic u32 reg;
158552a848eSStefano Babic u32 mask;
159552a848eSStefano Babic u32 *addr;
160552a848eSStefano Babic
161552a848eSStefano Babic if (i2c_num > 3)
162552a848eSStefano Babic return -EINVAL;
163552a848eSStefano Babic if (i2c_num < 3) {
164552a848eSStefano Babic mask = MXC_CCM_CCGR_CG_MASK
165552a848eSStefano Babic << (MXC_CCM_CCGR2_I2C1_SERIAL_OFFSET
166552a848eSStefano Babic + (i2c_num << 1));
167552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR2);
168552a848eSStefano Babic if (enable)
169552a848eSStefano Babic reg |= mask;
170552a848eSStefano Babic else
171552a848eSStefano Babic reg &= ~mask;
172552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR2);
173552a848eSStefano Babic } else {
174552a848eSStefano Babic if (is_mx6sll())
175552a848eSStefano Babic return -EINVAL;
176552a848eSStefano Babic if (is_mx6sx() || is_mx6ul() || is_mx6ull()) {
177552a848eSStefano Babic mask = MXC_CCM_CCGR6_I2C4_MASK;
178552a848eSStefano Babic addr = &imx_ccm->CCGR6;
179552a848eSStefano Babic } else {
180552a848eSStefano Babic mask = MXC_CCM_CCGR1_I2C4_SERIAL_MASK;
181552a848eSStefano Babic addr = &imx_ccm->CCGR1;
182552a848eSStefano Babic }
183552a848eSStefano Babic reg = __raw_readl(addr);
184552a848eSStefano Babic if (enable)
185552a848eSStefano Babic reg |= mask;
186552a848eSStefano Babic else
187552a848eSStefano Babic reg &= ~mask;
188552a848eSStefano Babic __raw_writel(reg, addr);
189552a848eSStefano Babic }
190552a848eSStefano Babic return 0;
191552a848eSStefano Babic }
192552a848eSStefano Babic #endif
193552a848eSStefano Babic
194552a848eSStefano Babic /* spi_num can be from 0 - SPI_MAX_NUM */
enable_spi_clk(unsigned char enable,unsigned spi_num)195552a848eSStefano Babic int enable_spi_clk(unsigned char enable, unsigned spi_num)
196552a848eSStefano Babic {
197552a848eSStefano Babic u32 reg;
198552a848eSStefano Babic u32 mask;
199552a848eSStefano Babic
200552a848eSStefano Babic if (spi_num > SPI_MAX_NUM)
201552a848eSStefano Babic return -EINVAL;
202552a848eSStefano Babic
203552a848eSStefano Babic mask = MXC_CCM_CCGR_CG_MASK << (spi_num << 1);
204552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR1);
205552a848eSStefano Babic if (enable)
206552a848eSStefano Babic reg |= mask;
207552a848eSStefano Babic else
208552a848eSStefano Babic reg &= ~mask;
209552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR1);
210552a848eSStefano Babic return 0;
211552a848eSStefano Babic }
decode_pll(enum pll_clocks pll,u32 infreq)212552a848eSStefano Babic static u32 decode_pll(enum pll_clocks pll, u32 infreq)
213552a848eSStefano Babic {
214552a848eSStefano Babic u32 div, test_div, pll_num, pll_denom;
215552a848eSStefano Babic
216552a848eSStefano Babic switch (pll) {
217552a848eSStefano Babic case PLL_SYS:
218552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pll_sys);
219552a848eSStefano Babic div &= BM_ANADIG_PLL_SYS_DIV_SELECT;
220552a848eSStefano Babic
221552a848eSStefano Babic return (infreq * div) >> 1;
222552a848eSStefano Babic case PLL_BUS:
223552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pll_528);
224552a848eSStefano Babic div &= BM_ANADIG_PLL_528_DIV_SELECT;
225552a848eSStefano Babic
226552a848eSStefano Babic return infreq * (20 + (div << 1));
227552a848eSStefano Babic case PLL_USBOTG:
228552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_usb1_pll_480_ctrl);
229552a848eSStefano Babic div &= BM_ANADIG_USB1_PLL_480_CTRL_DIV_SELECT;
230552a848eSStefano Babic
231552a848eSStefano Babic return infreq * (20 + (div << 1));
232552a848eSStefano Babic case PLL_ENET:
233552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pll_enet);
234552a848eSStefano Babic div &= BM_ANADIG_PLL_ENET_DIV_SELECT;
235552a848eSStefano Babic
236552a848eSStefano Babic return 25000000 * (div + (div >> 1) + 1);
237552a848eSStefano Babic case PLL_AUDIO:
238552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pll_audio);
239552a848eSStefano Babic if (!(div & BM_ANADIG_PLL_AUDIO_ENABLE))
240552a848eSStefano Babic return 0;
241552a848eSStefano Babic /* BM_ANADIG_PLL_AUDIO_BYPASS_CLK_SRC is ignored */
242552a848eSStefano Babic if (div & BM_ANADIG_PLL_AUDIO_BYPASS)
243552a848eSStefano Babic return MXC_HCLK;
244552a848eSStefano Babic pll_num = __raw_readl(&imx_ccm->analog_pll_audio_num);
245552a848eSStefano Babic pll_denom = __raw_readl(&imx_ccm->analog_pll_audio_denom);
246552a848eSStefano Babic test_div = (div & BM_ANADIG_PLL_AUDIO_TEST_DIV_SELECT) >>
247552a848eSStefano Babic BP_ANADIG_PLL_AUDIO_TEST_DIV_SELECT;
248552a848eSStefano Babic div &= BM_ANADIG_PLL_AUDIO_DIV_SELECT;
249552a848eSStefano Babic if (test_div == 3) {
250552a848eSStefano Babic debug("Error test_div\n");
251552a848eSStefano Babic return 0;
252552a848eSStefano Babic }
253552a848eSStefano Babic test_div = 1 << (2 - test_div);
254552a848eSStefano Babic
255552a848eSStefano Babic return infreq * (div + pll_num / pll_denom) / test_div;
256552a848eSStefano Babic case PLL_VIDEO:
257552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pll_video);
258552a848eSStefano Babic if (!(div & BM_ANADIG_PLL_VIDEO_ENABLE))
259552a848eSStefano Babic return 0;
260552a848eSStefano Babic /* BM_ANADIG_PLL_AUDIO_BYPASS_CLK_SRC is ignored */
261552a848eSStefano Babic if (div & BM_ANADIG_PLL_VIDEO_BYPASS)
262552a848eSStefano Babic return MXC_HCLK;
263552a848eSStefano Babic pll_num = __raw_readl(&imx_ccm->analog_pll_video_num);
264552a848eSStefano Babic pll_denom = __raw_readl(&imx_ccm->analog_pll_video_denom);
265552a848eSStefano Babic test_div = (div & BM_ANADIG_PLL_VIDEO_POST_DIV_SELECT) >>
266552a848eSStefano Babic BP_ANADIG_PLL_VIDEO_POST_DIV_SELECT;
267552a848eSStefano Babic div &= BM_ANADIG_PLL_VIDEO_DIV_SELECT;
268552a848eSStefano Babic if (test_div == 3) {
269552a848eSStefano Babic debug("Error test_div\n");
270552a848eSStefano Babic return 0;
271552a848eSStefano Babic }
272552a848eSStefano Babic test_div = 1 << (2 - test_div);
273552a848eSStefano Babic
274552a848eSStefano Babic return infreq * (div + pll_num / pll_denom) / test_div;
275552a848eSStefano Babic default:
276552a848eSStefano Babic return 0;
277552a848eSStefano Babic }
278552a848eSStefano Babic /* NOTREACHED */
279552a848eSStefano Babic }
mxc_get_pll_pfd(enum pll_clocks pll,int pfd_num)280552a848eSStefano Babic static u32 mxc_get_pll_pfd(enum pll_clocks pll, int pfd_num)
281552a848eSStefano Babic {
282552a848eSStefano Babic u32 div;
283552a848eSStefano Babic u64 freq;
284552a848eSStefano Babic
285552a848eSStefano Babic switch (pll) {
286552a848eSStefano Babic case PLL_BUS:
287552a848eSStefano Babic if (!is_mx6ul() && !is_mx6ull()) {
288552a848eSStefano Babic if (pfd_num == 3) {
289552a848eSStefano Babic /* No PFD3 on PLL2 */
290552a848eSStefano Babic return 0;
291552a848eSStefano Babic }
292552a848eSStefano Babic }
293552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pfd_528);
294552a848eSStefano Babic freq = (u64)decode_pll(PLL_BUS, MXC_HCLK);
295552a848eSStefano Babic break;
296552a848eSStefano Babic case PLL_USBOTG:
297552a848eSStefano Babic div = __raw_readl(&imx_ccm->analog_pfd_480);
298552a848eSStefano Babic freq = (u64)decode_pll(PLL_USBOTG, MXC_HCLK);
299552a848eSStefano Babic break;
300552a848eSStefano Babic default:
301552a848eSStefano Babic /* No PFD on other PLL */
302552a848eSStefano Babic return 0;
303552a848eSStefano Babic }
304552a848eSStefano Babic
305552a848eSStefano Babic return lldiv(freq * 18, (div & ANATOP_PFD_FRAC_MASK(pfd_num)) >>
306552a848eSStefano Babic ANATOP_PFD_FRAC_SHIFT(pfd_num));
307552a848eSStefano Babic }
308552a848eSStefano Babic
get_mcu_main_clk(void)309552a848eSStefano Babic static u32 get_mcu_main_clk(void)
310552a848eSStefano Babic {
311552a848eSStefano Babic u32 reg, freq;
312552a848eSStefano Babic
313552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cacrr);
314552a848eSStefano Babic reg &= MXC_CCM_CACRR_ARM_PODF_MASK;
315552a848eSStefano Babic reg >>= MXC_CCM_CACRR_ARM_PODF_OFFSET;
316552a848eSStefano Babic freq = decode_pll(PLL_SYS, MXC_HCLK);
317552a848eSStefano Babic
318552a848eSStefano Babic return freq / (reg + 1);
319552a848eSStefano Babic }
320552a848eSStefano Babic
get_periph_clk(void)321552a848eSStefano Babic u32 get_periph_clk(void)
322552a848eSStefano Babic {
323552a848eSStefano Babic u32 reg, div = 0, freq = 0;
324552a848eSStefano Babic
325552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cbcdr);
326552a848eSStefano Babic if (reg & MXC_CCM_CBCDR_PERIPH_CLK_SEL) {
327552a848eSStefano Babic div = (reg & MXC_CCM_CBCDR_PERIPH_CLK2_PODF_MASK) >>
328552a848eSStefano Babic MXC_CCM_CBCDR_PERIPH_CLK2_PODF_OFFSET;
329552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cbcmr);
330552a848eSStefano Babic reg &= MXC_CCM_CBCMR_PERIPH_CLK2_SEL_MASK;
331552a848eSStefano Babic reg >>= MXC_CCM_CBCMR_PERIPH_CLK2_SEL_OFFSET;
332552a848eSStefano Babic
333552a848eSStefano Babic switch (reg) {
334552a848eSStefano Babic case 0:
335552a848eSStefano Babic freq = decode_pll(PLL_USBOTG, MXC_HCLK);
336552a848eSStefano Babic break;
337552a848eSStefano Babic case 1:
338552a848eSStefano Babic case 2:
339552a848eSStefano Babic freq = MXC_HCLK;
340552a848eSStefano Babic break;
341552a848eSStefano Babic default:
342552a848eSStefano Babic break;
343552a848eSStefano Babic }
344552a848eSStefano Babic } else {
345552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cbcmr);
346552a848eSStefano Babic reg &= MXC_CCM_CBCMR_PRE_PERIPH_CLK_SEL_MASK;
347552a848eSStefano Babic reg >>= MXC_CCM_CBCMR_PRE_PERIPH_CLK_SEL_OFFSET;
348552a848eSStefano Babic
349552a848eSStefano Babic switch (reg) {
350552a848eSStefano Babic case 0:
351552a848eSStefano Babic freq = decode_pll(PLL_BUS, MXC_HCLK);
352552a848eSStefano Babic break;
353552a848eSStefano Babic case 1:
354552a848eSStefano Babic freq = mxc_get_pll_pfd(PLL_BUS, 2);
355552a848eSStefano Babic break;
356552a848eSStefano Babic case 2:
357552a848eSStefano Babic freq = mxc_get_pll_pfd(PLL_BUS, 0);
358552a848eSStefano Babic break;
359552a848eSStefano Babic case 3:
360552a848eSStefano Babic /* static / 2 divider */
361552a848eSStefano Babic freq = mxc_get_pll_pfd(PLL_BUS, 2) / 2;
362552a848eSStefano Babic break;
363552a848eSStefano Babic default:
364552a848eSStefano Babic break;
365552a848eSStefano Babic }
366552a848eSStefano Babic }
367552a848eSStefano Babic
368552a848eSStefano Babic return freq / (div + 1);
369552a848eSStefano Babic }
370552a848eSStefano Babic
get_ipg_clk(void)371552a848eSStefano Babic static u32 get_ipg_clk(void)
372552a848eSStefano Babic {
373552a848eSStefano Babic u32 reg, ipg_podf;
374552a848eSStefano Babic
375552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cbcdr);
376552a848eSStefano Babic reg &= MXC_CCM_CBCDR_IPG_PODF_MASK;
377552a848eSStefano Babic ipg_podf = reg >> MXC_CCM_CBCDR_IPG_PODF_OFFSET;
378552a848eSStefano Babic
379552a848eSStefano Babic return get_ahb_clk() / (ipg_podf + 1);
380552a848eSStefano Babic }
381552a848eSStefano Babic
get_ipg_per_clk(void)382552a848eSStefano Babic static u32 get_ipg_per_clk(void)
383552a848eSStefano Babic {
384552a848eSStefano Babic u32 reg, perclk_podf;
385552a848eSStefano Babic
386552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cscmr1);
387552a848eSStefano Babic if (is_mx6sll() || is_mx6sl() || is_mx6sx() ||
388552a848eSStefano Babic is_mx6dqp() || is_mx6ul() || is_mx6ull()) {
389552a848eSStefano Babic if (reg & MXC_CCM_CSCMR1_PER_CLK_SEL_MASK)
390552a848eSStefano Babic return MXC_HCLK; /* OSC 24Mhz */
391552a848eSStefano Babic }
392552a848eSStefano Babic
393552a848eSStefano Babic perclk_podf = reg & MXC_CCM_CSCMR1_PERCLK_PODF_MASK;
394552a848eSStefano Babic
395552a848eSStefano Babic return get_ipg_clk() / (perclk_podf + 1);
396552a848eSStefano Babic }
397552a848eSStefano Babic
get_uart_clk(void)398552a848eSStefano Babic static u32 get_uart_clk(void)
399552a848eSStefano Babic {
400552a848eSStefano Babic u32 reg, uart_podf;
401552a848eSStefano Babic u32 freq = decode_pll(PLL_USBOTG, MXC_HCLK) / 6; /* static divider */
402552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cscdr1);
403552a848eSStefano Babic
404552a848eSStefano Babic if (is_mx6sl() || is_mx6sx() || is_mx6dqp() || is_mx6ul() ||
405552a848eSStefano Babic is_mx6sll() || is_mx6ull()) {
406552a848eSStefano Babic if (reg & MXC_CCM_CSCDR1_UART_CLK_SEL)
407552a848eSStefano Babic freq = MXC_HCLK;
408552a848eSStefano Babic }
409552a848eSStefano Babic
410552a848eSStefano Babic reg &= MXC_CCM_CSCDR1_UART_CLK_PODF_MASK;
411552a848eSStefano Babic uart_podf = reg >> MXC_CCM_CSCDR1_UART_CLK_PODF_OFFSET;
412552a848eSStefano Babic
413552a848eSStefano Babic return freq / (uart_podf + 1);
414552a848eSStefano Babic }
415552a848eSStefano Babic
get_cspi_clk(void)416552a848eSStefano Babic static u32 get_cspi_clk(void)
417552a848eSStefano Babic {
418552a848eSStefano Babic u32 reg, cspi_podf;
419552a848eSStefano Babic
420552a848eSStefano Babic reg = __raw_readl(&imx_ccm->cscdr2);
421552a848eSStefano Babic cspi_podf = (reg & MXC_CCM_CSCDR2_ECSPI_CLK_PODF_MASK) >>
422552a848eSStefano Babic MXC_CCM_CSCDR2_ECSPI_CLK_PODF_OFFSET;
423552a848eSStefano Babic
424552a848eSStefano Babic if (is_mx6dqp() || is_mx6sl() || is_mx6sx() || is_mx6ul() ||
425552a848eSStefano Babic is_mx6sll() || is_mx6ull()) {
426552a848eSStefano Babic if (reg & MXC_CCM_CSCDR2_ECSPI_CLK_SEL_MASK)
427552a848eSStefano Babic return MXC_HCLK / (cspi_podf + 1);
428552a848eSStefano Babic }
429552a848eSStefano Babic
430552a848eSStefano Babic return decode_pll(PLL_USBOTG, MXC_HCLK) / (8 * (cspi_podf + 1));
431552a848eSStefano Babic }
432552a848eSStefano Babic
get_axi_clk(void)433552a848eSStefano Babic static u32 get_axi_clk(void)
434552a848eSStefano Babic {
435552a848eSStefano Babic u32 root_freq, axi_podf;
436552a848eSStefano Babic u32 cbcdr = __raw_readl(&imx_ccm->cbcdr);
437552a848eSStefano Babic
438552a848eSStefano Babic axi_podf = cbcdr & MXC_CCM_CBCDR_AXI_PODF_MASK;
439552a848eSStefano Babic axi_podf >>= MXC_CCM_CBCDR_AXI_PODF_OFFSET;
440552a848eSStefano Babic
441552a848eSStefano Babic if (cbcdr & MXC_CCM_CBCDR_AXI_SEL) {
442552a848eSStefano Babic if (cbcdr & MXC_CCM_CBCDR_AXI_ALT_SEL)
443552a848eSStefano Babic root_freq = mxc_get_pll_pfd(PLL_USBOTG, 1);
444552a848eSStefano Babic else
445552a848eSStefano Babic root_freq = mxc_get_pll_pfd(PLL_BUS, 2);
446552a848eSStefano Babic } else
447552a848eSStefano Babic root_freq = get_periph_clk();
448552a848eSStefano Babic
449552a848eSStefano Babic return root_freq / (axi_podf + 1);
450552a848eSStefano Babic }
451552a848eSStefano Babic
get_emi_slow_clk(void)452552a848eSStefano Babic static u32 get_emi_slow_clk(void)
453552a848eSStefano Babic {
454552a848eSStefano Babic u32 emi_clk_sel, emi_slow_podf, cscmr1, root_freq = 0;
455552a848eSStefano Babic
456552a848eSStefano Babic cscmr1 = __raw_readl(&imx_ccm->cscmr1);
457552a848eSStefano Babic emi_clk_sel = cscmr1 & MXC_CCM_CSCMR1_ACLK_EMI_SLOW_MASK;
458552a848eSStefano Babic emi_clk_sel >>= MXC_CCM_CSCMR1_ACLK_EMI_SLOW_OFFSET;
459552a848eSStefano Babic emi_slow_podf = cscmr1 & MXC_CCM_CSCMR1_ACLK_EMI_SLOW_PODF_MASK;
460552a848eSStefano Babic emi_slow_podf >>= MXC_CCM_CSCMR1_ACLK_EMI_SLOW_PODF_OFFSET;
461552a848eSStefano Babic
462552a848eSStefano Babic switch (emi_clk_sel) {
463552a848eSStefano Babic case 0:
464552a848eSStefano Babic root_freq = get_axi_clk();
465552a848eSStefano Babic break;
466552a848eSStefano Babic case 1:
467552a848eSStefano Babic root_freq = decode_pll(PLL_USBOTG, MXC_HCLK);
468552a848eSStefano Babic break;
469552a848eSStefano Babic case 2:
470552a848eSStefano Babic root_freq = mxc_get_pll_pfd(PLL_BUS, 2);
471552a848eSStefano Babic break;
472552a848eSStefano Babic case 3:
473552a848eSStefano Babic root_freq = mxc_get_pll_pfd(PLL_BUS, 0);
474552a848eSStefano Babic break;
475552a848eSStefano Babic }
476552a848eSStefano Babic
477552a848eSStefano Babic return root_freq / (emi_slow_podf + 1);
478552a848eSStefano Babic }
479552a848eSStefano Babic
get_mmdc_ch0_clk(void)480552a848eSStefano Babic static u32 get_mmdc_ch0_clk(void)
481552a848eSStefano Babic {
482552a848eSStefano Babic u32 cbcmr = __raw_readl(&imx_ccm->cbcmr);
483552a848eSStefano Babic u32 cbcdr = __raw_readl(&imx_ccm->cbcdr);
484552a848eSStefano Babic
485552a848eSStefano Babic u32 freq, podf, per2_clk2_podf, pmu_misc2_audio_div;
486552a848eSStefano Babic
487552a848eSStefano Babic if (is_mx6sx() || is_mx6ul() || is_mx6ull() || is_mx6sl() ||
488552a848eSStefano Babic is_mx6sll()) {
489552a848eSStefano Babic podf = (cbcdr & MXC_CCM_CBCDR_MMDC_CH1_PODF_MASK) >>
490552a848eSStefano Babic MXC_CCM_CBCDR_MMDC_CH1_PODF_OFFSET;
491552a848eSStefano Babic if (cbcdr & MXC_CCM_CBCDR_PERIPH2_CLK_SEL) {
492552a848eSStefano Babic per2_clk2_podf = (cbcdr & MXC_CCM_CBCDR_PERIPH2_CLK2_PODF_MASK) >>
493552a848eSStefano Babic MXC_CCM_CBCDR_PERIPH2_CLK2_PODF_OFFSET;
494552a848eSStefano Babic if (is_mx6sl()) {
495552a848eSStefano Babic if (cbcmr & MXC_CCM_CBCMR_PERIPH2_CLK2_SEL)
496552a848eSStefano Babic freq = MXC_HCLK;
497552a848eSStefano Babic else
498552a848eSStefano Babic freq = decode_pll(PLL_USBOTG, MXC_HCLK);
499552a848eSStefano Babic } else {
500552a848eSStefano Babic if (cbcmr & MXC_CCM_CBCMR_PERIPH2_CLK2_SEL)
501552a848eSStefano Babic freq = decode_pll(PLL_BUS, MXC_HCLK);
502552a848eSStefano Babic else
503552a848eSStefano Babic freq = decode_pll(PLL_USBOTG, MXC_HCLK);
504552a848eSStefano Babic }
505552a848eSStefano Babic } else {
506552a848eSStefano Babic per2_clk2_podf = 0;
507552a848eSStefano Babic switch ((cbcmr &
508552a848eSStefano Babic MXC_CCM_CBCMR_PRE_PERIPH2_CLK_SEL_MASK) >>
509552a848eSStefano Babic MXC_CCM_CBCMR_PRE_PERIPH2_CLK_SEL_OFFSET) {
510552a848eSStefano Babic case 0:
511552a848eSStefano Babic freq = decode_pll(PLL_BUS, MXC_HCLK);
512552a848eSStefano Babic break;
513552a848eSStefano Babic case 1:
514552a848eSStefano Babic freq = mxc_get_pll_pfd(PLL_BUS, 2);
515552a848eSStefano Babic break;
516552a848eSStefano Babic case 2:
517552a848eSStefano Babic freq = mxc_get_pll_pfd(PLL_BUS, 0);
518552a848eSStefano Babic break;
519552a848eSStefano Babic case 3:
520552a848eSStefano Babic if (is_mx6sl()) {
521552a848eSStefano Babic freq = mxc_get_pll_pfd(PLL_BUS, 2) >> 1;
522552a848eSStefano Babic break;
523552a848eSStefano Babic }
524552a848eSStefano Babic
525552a848eSStefano Babic pmu_misc2_audio_div = PMU_MISC2_AUDIO_DIV(__raw_readl(&imx_ccm->pmu_misc2));
526552a848eSStefano Babic switch (pmu_misc2_audio_div) {
527552a848eSStefano Babic case 0:
528552a848eSStefano Babic case 2:
529552a848eSStefano Babic pmu_misc2_audio_div = 1;
530552a848eSStefano Babic break;
531552a848eSStefano Babic case 1:
532552a848eSStefano Babic pmu_misc2_audio_div = 2;
533552a848eSStefano Babic break;
534552a848eSStefano Babic case 3:
535552a848eSStefano Babic pmu_misc2_audio_div = 4;
536552a848eSStefano Babic break;
537552a848eSStefano Babic }
538552a848eSStefano Babic freq = decode_pll(PLL_AUDIO, MXC_HCLK) /
539552a848eSStefano Babic pmu_misc2_audio_div;
540552a848eSStefano Babic break;
541552a848eSStefano Babic }
542552a848eSStefano Babic }
543552a848eSStefano Babic return freq / (podf + 1) / (per2_clk2_podf + 1);
544552a848eSStefano Babic } else {
545552a848eSStefano Babic podf = (cbcdr & MXC_CCM_CBCDR_MMDC_CH0_PODF_MASK) >>
546552a848eSStefano Babic MXC_CCM_CBCDR_MMDC_CH0_PODF_OFFSET;
547552a848eSStefano Babic return get_periph_clk() / (podf + 1);
548552a848eSStefano Babic }
549552a848eSStefano Babic }
550552a848eSStefano Babic
551552a848eSStefano Babic #if defined(CONFIG_VIDEO_MXS)
enable_pll_video(u32 pll_div,u32 pll_num,u32 pll_denom,u32 post_div)552552a848eSStefano Babic static int enable_pll_video(u32 pll_div, u32 pll_num, u32 pll_denom,
553552a848eSStefano Babic u32 post_div)
554552a848eSStefano Babic {
555552a848eSStefano Babic u32 reg = 0;
556552a848eSStefano Babic ulong start;
557552a848eSStefano Babic
558552a848eSStefano Babic debug("pll5 div = %d, num = %d, denom = %d\n",
559552a848eSStefano Babic pll_div, pll_num, pll_denom);
560552a848eSStefano Babic
561552a848eSStefano Babic /* Power up PLL5 video */
562552a848eSStefano Babic writel(BM_ANADIG_PLL_VIDEO_POWERDOWN |
563552a848eSStefano Babic BM_ANADIG_PLL_VIDEO_BYPASS |
564552a848eSStefano Babic BM_ANADIG_PLL_VIDEO_DIV_SELECT |
565552a848eSStefano Babic BM_ANADIG_PLL_VIDEO_POST_DIV_SELECT,
566552a848eSStefano Babic &imx_ccm->analog_pll_video_clr);
567552a848eSStefano Babic
568552a848eSStefano Babic /* Set div, num and denom */
569552a848eSStefano Babic switch (post_div) {
570552a848eSStefano Babic case 1:
571552a848eSStefano Babic writel(BF_ANADIG_PLL_VIDEO_DIV_SELECT(pll_div) |
572552a848eSStefano Babic BF_ANADIG_PLL_VIDEO_POST_DIV_SELECT(0x2),
573552a848eSStefano Babic &imx_ccm->analog_pll_video_set);
574552a848eSStefano Babic break;
575552a848eSStefano Babic case 2:
576552a848eSStefano Babic writel(BF_ANADIG_PLL_VIDEO_DIV_SELECT(pll_div) |
577552a848eSStefano Babic BF_ANADIG_PLL_VIDEO_POST_DIV_SELECT(0x1),
578552a848eSStefano Babic &imx_ccm->analog_pll_video_set);
579552a848eSStefano Babic break;
580552a848eSStefano Babic case 4:
581552a848eSStefano Babic writel(BF_ANADIG_PLL_VIDEO_DIV_SELECT(pll_div) |
582552a848eSStefano Babic BF_ANADIG_PLL_VIDEO_POST_DIV_SELECT(0x0),
583552a848eSStefano Babic &imx_ccm->analog_pll_video_set);
584552a848eSStefano Babic break;
585552a848eSStefano Babic default:
586552a848eSStefano Babic puts("Wrong test_div!\n");
587552a848eSStefano Babic return -EINVAL;
588552a848eSStefano Babic }
589552a848eSStefano Babic
590552a848eSStefano Babic writel(BF_ANADIG_PLL_VIDEO_NUM_A(pll_num),
591552a848eSStefano Babic &imx_ccm->analog_pll_video_num);
592552a848eSStefano Babic writel(BF_ANADIG_PLL_VIDEO_DENOM_B(pll_denom),
593552a848eSStefano Babic &imx_ccm->analog_pll_video_denom);
594552a848eSStefano Babic
595552a848eSStefano Babic /* Wait PLL5 lock */
596552a848eSStefano Babic start = get_timer(0); /* Get current timestamp */
597552a848eSStefano Babic
598552a848eSStefano Babic do {
599552a848eSStefano Babic reg = readl(&imx_ccm->analog_pll_video);
600552a848eSStefano Babic if (reg & BM_ANADIG_PLL_VIDEO_LOCK) {
601552a848eSStefano Babic /* Enable PLL out */
602552a848eSStefano Babic writel(BM_ANADIG_PLL_VIDEO_ENABLE,
603552a848eSStefano Babic &imx_ccm->analog_pll_video_set);
604552a848eSStefano Babic return 0;
605552a848eSStefano Babic }
606552a848eSStefano Babic } while (get_timer(0) < (start + 10)); /* Wait 10ms */
607552a848eSStefano Babic
608552a848eSStefano Babic puts("Lock PLL5 timeout\n");
609552a848eSStefano Babic
610552a848eSStefano Babic return -ETIME;
611552a848eSStefano Babic }
612552a848eSStefano Babic
613552a848eSStefano Babic /*
614552a848eSStefano Babic * 24M--> PLL_VIDEO -> LCDIFx_PRED -> LCDIFx_PODF -> LCD
615552a848eSStefano Babic *
616552a848eSStefano Babic * 'freq' using KHz as unit, see driver/video/mxsfb.c.
617552a848eSStefano Babic */
mxs_set_lcdclk(u32 base_addr,u32 freq)618552a848eSStefano Babic void mxs_set_lcdclk(u32 base_addr, u32 freq)
619552a848eSStefano Babic {
620552a848eSStefano Babic u32 reg = 0;
621552a848eSStefano Babic u32 hck = MXC_HCLK / 1000;
622552a848eSStefano Babic /* DIV_SELECT ranges from 27 to 54 */
623552a848eSStefano Babic u32 min = hck * 27;
624552a848eSStefano Babic u32 max = hck * 54;
625552a848eSStefano Babic u32 temp, best = 0;
626552a848eSStefano Babic u32 i, j, max_pred = 8, max_postd = 8, pred = 1, postd = 1;
627552a848eSStefano Babic u32 pll_div, pll_num, pll_denom, post_div = 1;
628552a848eSStefano Babic
629552a848eSStefano Babic debug("mxs_set_lcdclk, freq = %dKHz\n", freq);
630552a848eSStefano Babic
631552a848eSStefano Babic if (!is_mx6sx() && !is_mx6ul() && !is_mx6ull() && !is_mx6sl() &&
632552a848eSStefano Babic !is_mx6sll()) {
633552a848eSStefano Babic debug("This chip not support lcd!\n");
634552a848eSStefano Babic return;
635552a848eSStefano Babic }
636552a848eSStefano Babic
637552a848eSStefano Babic if (!is_mx6sl()) {
638552a848eSStefano Babic if (base_addr == LCDIF1_BASE_ADDR) {
639552a848eSStefano Babic reg = readl(&imx_ccm->cscdr2);
640552a848eSStefano Babic /* Can't change clocks when clock not from pre-mux */
641552a848eSStefano Babic if ((reg & MXC_CCM_CSCDR2_LCDIF1_CLK_SEL_MASK) != 0)
642552a848eSStefano Babic return;
643552a848eSStefano Babic }
644552a848eSStefano Babic }
645552a848eSStefano Babic
646552a848eSStefano Babic if (is_mx6sx()) {
647552a848eSStefano Babic reg = readl(&imx_ccm->cscdr2);
648552a848eSStefano Babic /* Can't change clocks when clock not from pre-mux */
649552a848eSStefano Babic if ((reg & MXC_CCM_CSCDR2_LCDIF2_CLK_SEL_MASK) != 0)
650552a848eSStefano Babic return;
651552a848eSStefano Babic }
652552a848eSStefano Babic
653552a848eSStefano Babic temp = freq * max_pred * max_postd;
654552a848eSStefano Babic if (temp < min) {
655552a848eSStefano Babic /*
656552a848eSStefano Babic * Register: PLL_VIDEO
657552a848eSStefano Babic * Bit Field: POST_DIV_SELECT
658552a848eSStefano Babic * 00 — Divide by 4.
659552a848eSStefano Babic * 01 — Divide by 2.
660552a848eSStefano Babic * 10 — Divide by 1.
661552a848eSStefano Babic * 11 — Reserved
662552a848eSStefano Babic * No need to check post_div(1)
663552a848eSStefano Babic */
664552a848eSStefano Babic for (post_div = 2; post_div <= 4; post_div <<= 1) {
665552a848eSStefano Babic if ((temp * post_div) > min) {
666552a848eSStefano Babic freq *= post_div;
667552a848eSStefano Babic break;
668552a848eSStefano Babic }
669552a848eSStefano Babic }
670552a848eSStefano Babic
671552a848eSStefano Babic if (post_div > 4) {
672552a848eSStefano Babic printf("Fail to set rate to %dkhz", freq);
673552a848eSStefano Babic return;
674552a848eSStefano Babic }
675552a848eSStefano Babic }
676552a848eSStefano Babic
677552a848eSStefano Babic /* Choose the best pred and postd to match freq for lcd */
678552a848eSStefano Babic for (i = 1; i <= max_pred; i++) {
679552a848eSStefano Babic for (j = 1; j <= max_postd; j++) {
680552a848eSStefano Babic temp = freq * i * j;
681552a848eSStefano Babic if (temp > max || temp < min)
682552a848eSStefano Babic continue;
683552a848eSStefano Babic if (best == 0 || temp < best) {
684552a848eSStefano Babic best = temp;
685552a848eSStefano Babic pred = i;
686552a848eSStefano Babic postd = j;
687552a848eSStefano Babic }
688552a848eSStefano Babic }
689552a848eSStefano Babic }
690552a848eSStefano Babic
691552a848eSStefano Babic if (best == 0) {
692552a848eSStefano Babic printf("Fail to set rate to %dKHz", freq);
693552a848eSStefano Babic return;
694552a848eSStefano Babic }
695552a848eSStefano Babic
696552a848eSStefano Babic debug("best %d, pred = %d, postd = %d\n", best, pred, postd);
697552a848eSStefano Babic
698552a848eSStefano Babic pll_div = best / hck;
699552a848eSStefano Babic pll_denom = 1000000;
700552a848eSStefano Babic pll_num = (best - hck * pll_div) * pll_denom / hck;
701552a848eSStefano Babic
702552a848eSStefano Babic /*
703552a848eSStefano Babic * pll_num
704552a848eSStefano Babic * (24MHz * (pll_div + --------- ))
705552a848eSStefano Babic * pll_denom
706552a848eSStefano Babic *freq KHz = --------------------------------
707552a848eSStefano Babic * post_div * pred * postd * 1000
708552a848eSStefano Babic */
709552a848eSStefano Babic
710552a848eSStefano Babic if (base_addr == LCDIF1_BASE_ADDR) {
711552a848eSStefano Babic if (enable_pll_video(pll_div, pll_num, pll_denom, post_div))
712552a848eSStefano Babic return;
713552a848eSStefano Babic
714552a848eSStefano Babic enable_lcdif_clock(base_addr, 0);
715552a848eSStefano Babic if (!is_mx6sl()) {
716552a848eSStefano Babic /* Select pre-lcd clock to PLL5 and set pre divider */
717552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cscdr2,
718552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF1_PRED_SEL_MASK |
719552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF1_PRE_DIV_MASK,
720552a848eSStefano Babic (0x2 << MXC_CCM_CSCDR2_LCDIF1_PRED_SEL_OFFSET) |
721552a848eSStefano Babic ((pred - 1) <<
722552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF1_PRE_DIV_OFFSET));
723552a848eSStefano Babic
724552a848eSStefano Babic /* Set the post divider */
725552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cbcmr,
726552a848eSStefano Babic MXC_CCM_CBCMR_LCDIF1_PODF_MASK,
727552a848eSStefano Babic ((postd - 1) <<
728552a848eSStefano Babic MXC_CCM_CBCMR_LCDIF1_PODF_OFFSET));
729552a848eSStefano Babic } else {
730552a848eSStefano Babic /* Select pre-lcd clock to PLL5 and set pre divider */
731552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cscdr2,
732552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF_PIX_CLK_SEL_MASK |
733552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF_PIX_PRE_DIV_MASK,
734552a848eSStefano Babic (0x2 << MXC_CCM_CSCDR2_LCDIF_PIX_CLK_SEL_OFFSET) |
735552a848eSStefano Babic ((pred - 1) <<
736552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF_PIX_PRE_DIV_OFFSET));
737552a848eSStefano Babic
738552a848eSStefano Babic /* Set the post divider */
739552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cscmr1,
740552a848eSStefano Babic MXC_CCM_CSCMR1_LCDIF_PIX_PODF_MASK,
741552a848eSStefano Babic (((postd - 1)^0x6) <<
742552a848eSStefano Babic MXC_CCM_CSCMR1_LCDIF_PIX_PODF_OFFSET));
743552a848eSStefano Babic }
744552a848eSStefano Babic
745552a848eSStefano Babic enable_lcdif_clock(base_addr, 1);
746552a848eSStefano Babic } else if (is_mx6sx()) {
747552a848eSStefano Babic /* Setting LCDIF2 for i.MX6SX */
748552a848eSStefano Babic if (enable_pll_video(pll_div, pll_num, pll_denom, post_div))
749552a848eSStefano Babic return;
750552a848eSStefano Babic
751552a848eSStefano Babic enable_lcdif_clock(base_addr, 0);
752552a848eSStefano Babic /* Select pre-lcd clock to PLL5 and set pre divider */
753552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cscdr2,
754552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF2_PRED_SEL_MASK |
755552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF2_PRE_DIV_MASK,
756552a848eSStefano Babic (0x2 << MXC_CCM_CSCDR2_LCDIF2_PRED_SEL_OFFSET) |
757552a848eSStefano Babic ((pred - 1) <<
758552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF2_PRE_DIV_OFFSET));
759552a848eSStefano Babic
760552a848eSStefano Babic /* Set the post divider */
761552a848eSStefano Babic clrsetbits_le32(&imx_ccm->cscmr1,
762552a848eSStefano Babic MXC_CCM_CSCMR1_LCDIF2_PODF_MASK,
763552a848eSStefano Babic ((postd - 1) <<
764552a848eSStefano Babic MXC_CCM_CSCMR1_LCDIF2_PODF_OFFSET));
765552a848eSStefano Babic
766552a848eSStefano Babic enable_lcdif_clock(base_addr, 1);
767552a848eSStefano Babic }
768552a848eSStefano Babic }
769552a848eSStefano Babic
enable_lcdif_clock(u32 base_addr,bool enable)770552a848eSStefano Babic int enable_lcdif_clock(u32 base_addr, bool enable)
771552a848eSStefano Babic {
772552a848eSStefano Babic u32 reg = 0;
773552a848eSStefano Babic u32 lcdif_clk_sel_mask, lcdif_ccgr3_mask;
774552a848eSStefano Babic
775552a848eSStefano Babic if (is_mx6sx()) {
776552a848eSStefano Babic if ((base_addr != LCDIF1_BASE_ADDR) &&
777552a848eSStefano Babic (base_addr != LCDIF2_BASE_ADDR)) {
778552a848eSStefano Babic puts("Wrong LCD interface!\n");
779552a848eSStefano Babic return -EINVAL;
780552a848eSStefano Babic }
781552a848eSStefano Babic /* Set to pre-mux clock at default */
782552a848eSStefano Babic lcdif_clk_sel_mask = (base_addr == LCDIF2_BASE_ADDR) ?
783552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF2_CLK_SEL_MASK :
784552a848eSStefano Babic MXC_CCM_CSCDR2_LCDIF1_CLK_SEL_MASK;
785552a848eSStefano Babic lcdif_ccgr3_mask = (base_addr == LCDIF2_BASE_ADDR) ?
786552a848eSStefano Babic (MXC_CCM_CCGR3_LCDIF2_PIX_MASK |
787552a848eSStefano Babic MXC_CCM_CCGR3_DISP_AXI_MASK) :
788552a848eSStefano Babic (MXC_CCM_CCGR3_LCDIF1_PIX_MASK |
789552a848eSStefano Babic MXC_CCM_CCGR3_DISP_AXI_MASK);
790552a848eSStefano Babic } else if (is_mx6ul() || is_mx6ull() || is_mx6sll()) {
791552a848eSStefano Babic if (base_addr != LCDIF1_BASE_ADDR) {
792552a848eSStefano Babic puts("Wrong LCD interface!\n");
793552a848eSStefano Babic return -EINVAL;
794552a848eSStefano Babic }
795552a848eSStefano Babic /* Set to pre-mux clock at default */
796552a848eSStefano Babic lcdif_clk_sel_mask = MXC_CCM_CSCDR2_LCDIF1_CLK_SEL_MASK;
797552a848eSStefano Babic lcdif_ccgr3_mask = MXC_CCM_CCGR3_LCDIF1_PIX_MASK;
798552a848eSStefano Babic } else if (is_mx6sl()) {
799552a848eSStefano Babic if (base_addr != LCDIF1_BASE_ADDR) {
800552a848eSStefano Babic puts("Wrong LCD interface!\n");
801552a848eSStefano Babic return -EINVAL;
802552a848eSStefano Babic }
803552a848eSStefano Babic
804552a848eSStefano Babic reg = readl(&imx_ccm->CCGR3);
805552a848eSStefano Babic reg &= ~(MXC_CCM_CCGR3_LCDIF_AXI_MASK |
806552a848eSStefano Babic MXC_CCM_CCGR3_LCDIF_PIX_MASK);
807552a848eSStefano Babic writel(reg, &imx_ccm->CCGR3);
808552a848eSStefano Babic
809552a848eSStefano Babic if (enable) {
810552a848eSStefano Babic reg = readl(&imx_ccm->cscdr3);
811552a848eSStefano Babic reg &= ~MXC_CCM_CSCDR3_LCDIF_AXI_CLK_SEL_MASK;
812552a848eSStefano Babic reg |= 1 << MXC_CCM_CSCDR3_LCDIF_AXI_CLK_SEL_OFFSET;
813552a848eSStefano Babic writel(reg, &imx_ccm->cscdr3);
814552a848eSStefano Babic
815552a848eSStefano Babic reg = readl(&imx_ccm->CCGR3);
816552a848eSStefano Babic reg |= MXC_CCM_CCGR3_LCDIF_AXI_MASK |
817552a848eSStefano Babic MXC_CCM_CCGR3_LCDIF_PIX_MASK;
818552a848eSStefano Babic writel(reg, &imx_ccm->CCGR3);
819552a848eSStefano Babic }
820552a848eSStefano Babic
821552a848eSStefano Babic return 0;
822552a848eSStefano Babic } else {
823552a848eSStefano Babic return 0;
824552a848eSStefano Babic }
825552a848eSStefano Babic
826552a848eSStefano Babic /* Gate LCDIF clock first */
827552a848eSStefano Babic reg = readl(&imx_ccm->CCGR3);
828552a848eSStefano Babic reg &= ~lcdif_ccgr3_mask;
829552a848eSStefano Babic writel(reg, &imx_ccm->CCGR3);
830552a848eSStefano Babic
831552a848eSStefano Babic reg = readl(&imx_ccm->CCGR2);
832552a848eSStefano Babic reg &= ~MXC_CCM_CCGR2_LCD_MASK;
833552a848eSStefano Babic writel(reg, &imx_ccm->CCGR2);
834552a848eSStefano Babic
835552a848eSStefano Babic if (enable) {
836552a848eSStefano Babic /* Select pre-mux */
837552a848eSStefano Babic reg = readl(&imx_ccm->cscdr2);
838552a848eSStefano Babic reg &= ~lcdif_clk_sel_mask;
839552a848eSStefano Babic writel(reg, &imx_ccm->cscdr2);
840552a848eSStefano Babic
841552a848eSStefano Babic /* Enable the LCDIF pix clock */
842552a848eSStefano Babic reg = readl(&imx_ccm->CCGR3);
843552a848eSStefano Babic reg |= lcdif_ccgr3_mask;
844552a848eSStefano Babic writel(reg, &imx_ccm->CCGR3);
845552a848eSStefano Babic
846552a848eSStefano Babic reg = readl(&imx_ccm->CCGR2);
847552a848eSStefano Babic reg |= MXC_CCM_CCGR2_LCD_MASK;
848552a848eSStefano Babic writel(reg, &imx_ccm->CCGR2);
849552a848eSStefano Babic }
850552a848eSStefano Babic
851552a848eSStefano Babic return 0;
852552a848eSStefano Babic }
853552a848eSStefano Babic #endif
854552a848eSStefano Babic
855552a848eSStefano Babic #ifdef CONFIG_FSL_QSPI
856552a848eSStefano Babic /* qspi_num can be from 0 - 1 */
enable_qspi_clk(int qspi_num)857552a848eSStefano Babic void enable_qspi_clk(int qspi_num)
858552a848eSStefano Babic {
859552a848eSStefano Babic u32 reg = 0;
860552a848eSStefano Babic /* Enable QuadSPI clock */
861552a848eSStefano Babic switch (qspi_num) {
862552a848eSStefano Babic case 0:
863552a848eSStefano Babic /* disable the clock gate */
864552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR3, MXC_CCM_CCGR3_QSPI1_MASK);
865552a848eSStefano Babic
866552a848eSStefano Babic /* set 50M : (50 = 396 / 2 / 4) */
867552a848eSStefano Babic reg = readl(&imx_ccm->cscmr1);
868552a848eSStefano Babic reg &= ~(MXC_CCM_CSCMR1_QSPI1_PODF_MASK |
869552a848eSStefano Babic MXC_CCM_CSCMR1_QSPI1_CLK_SEL_MASK);
870552a848eSStefano Babic reg |= ((1 << MXC_CCM_CSCMR1_QSPI1_PODF_OFFSET) |
871552a848eSStefano Babic (2 << MXC_CCM_CSCMR1_QSPI1_CLK_SEL_OFFSET));
872552a848eSStefano Babic writel(reg, &imx_ccm->cscmr1);
873552a848eSStefano Babic
874552a848eSStefano Babic /* enable the clock gate */
875552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR3, MXC_CCM_CCGR3_QSPI1_MASK);
876552a848eSStefano Babic break;
877552a848eSStefano Babic case 1:
878552a848eSStefano Babic /*
879552a848eSStefano Babic * disable the clock gate
880552a848eSStefano Babic * QSPI2 and GPMI_BCH_INPUT_GPMI_IO share the same clock gate,
881552a848eSStefano Babic * disable both of them.
882552a848eSStefano Babic */
883552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR4, MXC_CCM_CCGR4_QSPI2_ENFC_MASK |
884552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_BCH_INPUT_GPMI_IO_MASK);
885552a848eSStefano Babic
886552a848eSStefano Babic /* set 50M : (50 = 396 / 2 / 4) */
887552a848eSStefano Babic reg = readl(&imx_ccm->cs2cdr);
888552a848eSStefano Babic reg &= ~(MXC_CCM_CS2CDR_QSPI2_CLK_PODF_MASK |
889552a848eSStefano Babic MXC_CCM_CS2CDR_QSPI2_CLK_PRED_MASK |
890552a848eSStefano Babic MXC_CCM_CS2CDR_QSPI2_CLK_SEL_MASK);
891552a848eSStefano Babic reg |= (MXC_CCM_CS2CDR_QSPI2_CLK_PRED(0x1) |
892552a848eSStefano Babic MXC_CCM_CS2CDR_QSPI2_CLK_SEL(0x3));
893552a848eSStefano Babic writel(reg, &imx_ccm->cs2cdr);
894552a848eSStefano Babic
895552a848eSStefano Babic /*enable the clock gate*/
896552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR4, MXC_CCM_CCGR4_QSPI2_ENFC_MASK |
897552a848eSStefano Babic MXC_CCM_CCGR4_RAWNAND_U_GPMI_BCH_INPUT_GPMI_IO_MASK);
898552a848eSStefano Babic break;
899552a848eSStefano Babic default:
900552a848eSStefano Babic break;
901552a848eSStefano Babic }
902552a848eSStefano Babic }
903552a848eSStefano Babic #endif
904552a848eSStefano Babic
905552a848eSStefano Babic #ifdef CONFIG_FEC_MXC
enable_fec_anatop_clock(int fec_id,enum enet_freq freq)906552a848eSStefano Babic int enable_fec_anatop_clock(int fec_id, enum enet_freq freq)
907552a848eSStefano Babic {
908552a848eSStefano Babic u32 reg = 0;
909552a848eSStefano Babic s32 timeout = 100000;
910552a848eSStefano Babic
911552a848eSStefano Babic struct anatop_regs __iomem *anatop =
912552a848eSStefano Babic (struct anatop_regs __iomem *)ANATOP_BASE_ADDR;
913552a848eSStefano Babic
914552a848eSStefano Babic if (freq < ENET_25MHZ || freq > ENET_125MHZ)
915552a848eSStefano Babic return -EINVAL;
916552a848eSStefano Babic
917552a848eSStefano Babic reg = readl(&anatop->pll_enet);
918552a848eSStefano Babic
919552a848eSStefano Babic if (fec_id == 0) {
920552a848eSStefano Babic reg &= ~BM_ANADIG_PLL_ENET_DIV_SELECT;
921552a848eSStefano Babic reg |= BF_ANADIG_PLL_ENET_DIV_SELECT(freq);
922552a848eSStefano Babic } else if (fec_id == 1) {
923552a848eSStefano Babic /* Only i.MX6SX/UL support ENET2 */
924552a848eSStefano Babic if (!(is_mx6sx() || is_mx6ul() || is_mx6ull()))
925552a848eSStefano Babic return -EINVAL;
926552a848eSStefano Babic reg &= ~BM_ANADIG_PLL_ENET2_DIV_SELECT;
927552a848eSStefano Babic reg |= BF_ANADIG_PLL_ENET2_DIV_SELECT(freq);
928552a848eSStefano Babic } else {
929552a848eSStefano Babic return -EINVAL;
930552a848eSStefano Babic }
931552a848eSStefano Babic
932552a848eSStefano Babic if ((reg & BM_ANADIG_PLL_ENET_POWERDOWN) ||
933552a848eSStefano Babic (!(reg & BM_ANADIG_PLL_ENET_LOCK))) {
934552a848eSStefano Babic reg &= ~BM_ANADIG_PLL_ENET_POWERDOWN;
935552a848eSStefano Babic writel(reg, &anatop->pll_enet);
936552a848eSStefano Babic while (timeout--) {
937552a848eSStefano Babic if (readl(&anatop->pll_enet) & BM_ANADIG_PLL_ENET_LOCK)
938552a848eSStefano Babic break;
939552a848eSStefano Babic }
940552a848eSStefano Babic if (timeout < 0)
941552a848eSStefano Babic return -ETIMEDOUT;
942552a848eSStefano Babic }
943552a848eSStefano Babic
944552a848eSStefano Babic /* Enable FEC clock */
945552a848eSStefano Babic if (fec_id == 0)
946552a848eSStefano Babic reg |= BM_ANADIG_PLL_ENET_ENABLE;
947552a848eSStefano Babic else
948552a848eSStefano Babic reg |= BM_ANADIG_PLL_ENET2_ENABLE;
949552a848eSStefano Babic reg &= ~BM_ANADIG_PLL_ENET_BYPASS;
950552a848eSStefano Babic writel(reg, &anatop->pll_enet);
951552a848eSStefano Babic
952552a848eSStefano Babic #ifdef CONFIG_MX6SX
953552a848eSStefano Babic /* Disable enet system clcok before switching clock parent */
954552a848eSStefano Babic reg = readl(&imx_ccm->CCGR3);
955552a848eSStefano Babic reg &= ~MXC_CCM_CCGR3_ENET_MASK;
956552a848eSStefano Babic writel(reg, &imx_ccm->CCGR3);
957552a848eSStefano Babic
958552a848eSStefano Babic /*
959552a848eSStefano Babic * Set enet ahb clock to 200MHz
960552a848eSStefano Babic * pll2_pfd2_396m-> ENET_PODF-> ENET_AHB
961552a848eSStefano Babic */
962552a848eSStefano Babic reg = readl(&imx_ccm->chsccdr);
963552a848eSStefano Babic reg &= ~(MXC_CCM_CHSCCDR_ENET_PRE_CLK_SEL_MASK
964552a848eSStefano Babic | MXC_CCM_CHSCCDR_ENET_PODF_MASK
965552a848eSStefano Babic | MXC_CCM_CHSCCDR_ENET_CLK_SEL_MASK);
966552a848eSStefano Babic /* PLL2 PFD2 */
967552a848eSStefano Babic reg |= (4 << MXC_CCM_CHSCCDR_ENET_PRE_CLK_SEL_OFFSET);
968552a848eSStefano Babic /* Div = 2*/
969552a848eSStefano Babic reg |= (1 << MXC_CCM_CHSCCDR_ENET_PODF_OFFSET);
970552a848eSStefano Babic reg |= (0 << MXC_CCM_CHSCCDR_ENET_CLK_SEL_OFFSET);
971552a848eSStefano Babic writel(reg, &imx_ccm->chsccdr);
972552a848eSStefano Babic
973552a848eSStefano Babic /* Enable enet system clock */
974552a848eSStefano Babic reg = readl(&imx_ccm->CCGR3);
975552a848eSStefano Babic reg |= MXC_CCM_CCGR3_ENET_MASK;
976552a848eSStefano Babic writel(reg, &imx_ccm->CCGR3);
977552a848eSStefano Babic #endif
978552a848eSStefano Babic return 0;
979552a848eSStefano Babic }
980552a848eSStefano Babic #endif
981552a848eSStefano Babic
get_usdhc_clk(u32 port)982552a848eSStefano Babic static u32 get_usdhc_clk(u32 port)
983552a848eSStefano Babic {
984552a848eSStefano Babic u32 root_freq = 0, usdhc_podf = 0, clk_sel = 0;
985552a848eSStefano Babic u32 cscmr1 = __raw_readl(&imx_ccm->cscmr1);
986552a848eSStefano Babic u32 cscdr1 = __raw_readl(&imx_ccm->cscdr1);
987552a848eSStefano Babic
988552a848eSStefano Babic if (is_mx6ul() || is_mx6ull()) {
989552a848eSStefano Babic if (port > 1)
990552a848eSStefano Babic return 0;
991552a848eSStefano Babic }
992552a848eSStefano Babic
993552a848eSStefano Babic if (is_mx6sll()) {
994552a848eSStefano Babic if (port > 2)
995552a848eSStefano Babic return 0;
996552a848eSStefano Babic }
997552a848eSStefano Babic
998552a848eSStefano Babic switch (port) {
999552a848eSStefano Babic case 0:
1000552a848eSStefano Babic usdhc_podf = (cscdr1 & MXC_CCM_CSCDR1_USDHC1_PODF_MASK) >>
1001552a848eSStefano Babic MXC_CCM_CSCDR1_USDHC1_PODF_OFFSET;
1002552a848eSStefano Babic clk_sel = cscmr1 & MXC_CCM_CSCMR1_USDHC1_CLK_SEL;
1003552a848eSStefano Babic
1004552a848eSStefano Babic break;
1005552a848eSStefano Babic case 1:
1006552a848eSStefano Babic usdhc_podf = (cscdr1 & MXC_CCM_CSCDR1_USDHC2_PODF_MASK) >>
1007552a848eSStefano Babic MXC_CCM_CSCDR1_USDHC2_PODF_OFFSET;
1008552a848eSStefano Babic clk_sel = cscmr1 & MXC_CCM_CSCMR1_USDHC2_CLK_SEL;
1009552a848eSStefano Babic
1010552a848eSStefano Babic break;
1011552a848eSStefano Babic case 2:
1012552a848eSStefano Babic usdhc_podf = (cscdr1 & MXC_CCM_CSCDR1_USDHC3_PODF_MASK) >>
1013552a848eSStefano Babic MXC_CCM_CSCDR1_USDHC3_PODF_OFFSET;
1014552a848eSStefano Babic clk_sel = cscmr1 & MXC_CCM_CSCMR1_USDHC3_CLK_SEL;
1015552a848eSStefano Babic
1016552a848eSStefano Babic break;
1017552a848eSStefano Babic case 3:
1018552a848eSStefano Babic usdhc_podf = (cscdr1 & MXC_CCM_CSCDR1_USDHC4_PODF_MASK) >>
1019552a848eSStefano Babic MXC_CCM_CSCDR1_USDHC4_PODF_OFFSET;
1020552a848eSStefano Babic clk_sel = cscmr1 & MXC_CCM_CSCMR1_USDHC4_CLK_SEL;
1021552a848eSStefano Babic
1022552a848eSStefano Babic break;
1023552a848eSStefano Babic default:
1024552a848eSStefano Babic break;
1025552a848eSStefano Babic }
1026552a848eSStefano Babic
1027552a848eSStefano Babic if (clk_sel)
1028552a848eSStefano Babic root_freq = mxc_get_pll_pfd(PLL_BUS, 0);
1029552a848eSStefano Babic else
1030552a848eSStefano Babic root_freq = mxc_get_pll_pfd(PLL_BUS, 2);
1031552a848eSStefano Babic
1032552a848eSStefano Babic return root_freq / (usdhc_podf + 1);
1033552a848eSStefano Babic }
1034552a848eSStefano Babic
imx_get_uartclk(void)1035552a848eSStefano Babic u32 imx_get_uartclk(void)
1036552a848eSStefano Babic {
1037552a848eSStefano Babic return get_uart_clk();
1038552a848eSStefano Babic }
1039552a848eSStefano Babic
imx_get_fecclk(void)1040552a848eSStefano Babic u32 imx_get_fecclk(void)
1041552a848eSStefano Babic {
1042552a848eSStefano Babic return mxc_get_clock(MXC_IPG_CLK);
1043552a848eSStefano Babic }
1044552a848eSStefano Babic
1045552a848eSStefano Babic #if defined(CONFIG_SATA) || defined(CONFIG_PCIE_IMX)
enable_enet_pll(uint32_t en)1046552a848eSStefano Babic static int enable_enet_pll(uint32_t en)
1047552a848eSStefano Babic {
1048552a848eSStefano Babic struct mxc_ccm_reg *const imx_ccm
1049552a848eSStefano Babic = (struct mxc_ccm_reg *) CCM_BASE_ADDR;
1050552a848eSStefano Babic s32 timeout = 100000;
1051552a848eSStefano Babic u32 reg = 0;
1052552a848eSStefano Babic
1053552a848eSStefano Babic /* Enable PLLs */
1054552a848eSStefano Babic reg = readl(&imx_ccm->analog_pll_enet);
1055552a848eSStefano Babic reg &= ~BM_ANADIG_PLL_SYS_POWERDOWN;
1056552a848eSStefano Babic writel(reg, &imx_ccm->analog_pll_enet);
1057552a848eSStefano Babic reg |= BM_ANADIG_PLL_SYS_ENABLE;
1058552a848eSStefano Babic while (timeout--) {
1059552a848eSStefano Babic if (readl(&imx_ccm->analog_pll_enet) & BM_ANADIG_PLL_SYS_LOCK)
1060552a848eSStefano Babic break;
1061552a848eSStefano Babic }
1062552a848eSStefano Babic if (timeout <= 0)
1063552a848eSStefano Babic return -EIO;
1064552a848eSStefano Babic reg &= ~BM_ANADIG_PLL_SYS_BYPASS;
1065552a848eSStefano Babic writel(reg, &imx_ccm->analog_pll_enet);
1066552a848eSStefano Babic reg |= en;
1067552a848eSStefano Babic writel(reg, &imx_ccm->analog_pll_enet);
1068552a848eSStefano Babic return 0;
1069552a848eSStefano Babic }
1070552a848eSStefano Babic #endif
1071552a848eSStefano Babic
1072552a848eSStefano Babic #ifdef CONFIG_SATA
ungate_sata_clock(void)1073552a848eSStefano Babic static void ungate_sata_clock(void)
1074552a848eSStefano Babic {
1075552a848eSStefano Babic struct mxc_ccm_reg *const imx_ccm =
1076552a848eSStefano Babic (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1077552a848eSStefano Babic
1078552a848eSStefano Babic /* Enable SATA clock. */
1079552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR5, MXC_CCM_CCGR5_SATA_MASK);
1080552a848eSStefano Babic }
1081552a848eSStefano Babic
enable_sata_clock(void)1082552a848eSStefano Babic int enable_sata_clock(void)
1083552a848eSStefano Babic {
1084552a848eSStefano Babic ungate_sata_clock();
1085552a848eSStefano Babic return enable_enet_pll(BM_ANADIG_PLL_ENET_ENABLE_SATA);
1086552a848eSStefano Babic }
1087552a848eSStefano Babic
disable_sata_clock(void)1088552a848eSStefano Babic void disable_sata_clock(void)
1089552a848eSStefano Babic {
1090552a848eSStefano Babic struct mxc_ccm_reg *const imx_ccm =
1091552a848eSStefano Babic (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1092552a848eSStefano Babic
1093552a848eSStefano Babic clrbits_le32(&imx_ccm->CCGR5, MXC_CCM_CCGR5_SATA_MASK);
1094552a848eSStefano Babic }
1095552a848eSStefano Babic #endif
1096552a848eSStefano Babic
1097552a848eSStefano Babic #ifdef CONFIG_PCIE_IMX
ungate_pcie_clock(void)1098552a848eSStefano Babic static void ungate_pcie_clock(void)
1099552a848eSStefano Babic {
1100552a848eSStefano Babic struct mxc_ccm_reg *const imx_ccm =
1101552a848eSStefano Babic (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1102552a848eSStefano Babic
1103552a848eSStefano Babic /* Enable PCIe clock. */
1104552a848eSStefano Babic setbits_le32(&imx_ccm->CCGR4, MXC_CCM_CCGR4_PCIE_MASK);
1105552a848eSStefano Babic }
1106552a848eSStefano Babic
enable_pcie_clock(void)1107552a848eSStefano Babic int enable_pcie_clock(void)
1108552a848eSStefano Babic {
1109552a848eSStefano Babic struct anatop_regs *anatop_regs =
1110552a848eSStefano Babic (struct anatop_regs *)ANATOP_BASE_ADDR;
1111552a848eSStefano Babic struct mxc_ccm_reg *ccm_regs = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1112552a848eSStefano Babic u32 lvds1_clk_sel;
1113552a848eSStefano Babic
1114552a848eSStefano Babic /*
1115552a848eSStefano Babic * Here be dragons!
1116552a848eSStefano Babic *
1117552a848eSStefano Babic * The register ANATOP_MISC1 is not documented in the Freescale
1118552a848eSStefano Babic * MX6RM. The register that is mapped in the ANATOP space and
1119552a848eSStefano Babic * marked as ANATOP_MISC1 is actually documented in the PMU section
1120552a848eSStefano Babic * of the datasheet as PMU_MISC1.
1121552a848eSStefano Babic *
1122552a848eSStefano Babic * Switch LVDS clock source to SATA (0xb) on mx6q/dl or PCI (0xa) on
1123552a848eSStefano Babic * mx6sx, disable clock INPUT and enable clock OUTPUT. This is important
1124552a848eSStefano Babic * for PCI express link that is clocked from the i.MX6.
1125552a848eSStefano Babic */
1126552a848eSStefano Babic #define ANADIG_ANA_MISC1_LVDSCLK1_IBEN (1 << 12)
1127552a848eSStefano Babic #define ANADIG_ANA_MISC1_LVDSCLK1_OBEN (1 << 10)
1128552a848eSStefano Babic #define ANADIG_ANA_MISC1_LVDS1_CLK_SEL_MASK 0x0000001F
1129552a848eSStefano Babic #define ANADIG_ANA_MISC1_LVDS1_CLK_SEL_PCIE_REF 0xa
1130552a848eSStefano Babic #define ANADIG_ANA_MISC1_LVDS1_CLK_SEL_SATA_REF 0xb
1131552a848eSStefano Babic
1132552a848eSStefano Babic if (is_mx6sx())
1133552a848eSStefano Babic lvds1_clk_sel = ANADIG_ANA_MISC1_LVDS1_CLK_SEL_PCIE_REF;
1134552a848eSStefano Babic else
1135552a848eSStefano Babic lvds1_clk_sel = ANADIG_ANA_MISC1_LVDS1_CLK_SEL_SATA_REF;
1136552a848eSStefano Babic
1137552a848eSStefano Babic clrsetbits_le32(&anatop_regs->ana_misc1,
1138552a848eSStefano Babic ANADIG_ANA_MISC1_LVDSCLK1_IBEN |
1139552a848eSStefano Babic ANADIG_ANA_MISC1_LVDS1_CLK_SEL_MASK,
1140552a848eSStefano Babic ANADIG_ANA_MISC1_LVDSCLK1_OBEN | lvds1_clk_sel);
1141552a848eSStefano Babic
1142552a848eSStefano Babic /* PCIe reference clock sourced from AXI. */
1143552a848eSStefano Babic clrbits_le32(&ccm_regs->cbcmr, MXC_CCM_CBCMR_PCIE_AXI_CLK_SEL);
1144552a848eSStefano Babic
1145552a848eSStefano Babic /* Party time! Ungate the clock to the PCIe. */
1146552a848eSStefano Babic #ifdef CONFIG_SATA
1147552a848eSStefano Babic ungate_sata_clock();
1148552a848eSStefano Babic #endif
1149552a848eSStefano Babic ungate_pcie_clock();
1150552a848eSStefano Babic
1151552a848eSStefano Babic return enable_enet_pll(BM_ANADIG_PLL_ENET_ENABLE_SATA |
1152552a848eSStefano Babic BM_ANADIG_PLL_ENET_ENABLE_PCIE);
1153552a848eSStefano Babic }
1154552a848eSStefano Babic #endif
1155552a848eSStefano Babic
1156552a848eSStefano Babic #ifdef CONFIG_SECURE_BOOT
hab_caam_clock_enable(unsigned char enable)1157552a848eSStefano Babic void hab_caam_clock_enable(unsigned char enable)
1158552a848eSStefano Babic {
1159552a848eSStefano Babic u32 reg;
1160552a848eSStefano Babic
1161552a848eSStefano Babic if (is_mx6ull() || is_mx6sll()) {
1162552a848eSStefano Babic /* CG5, DCP clock */
1163552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR0);
1164552a848eSStefano Babic if (enable)
1165552a848eSStefano Babic reg |= MXC_CCM_CCGR0_DCP_CLK_MASK;
1166552a848eSStefano Babic else
1167552a848eSStefano Babic reg &= ~MXC_CCM_CCGR0_DCP_CLK_MASK;
1168552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR0);
1169552a848eSStefano Babic } else {
1170552a848eSStefano Babic /* CG4 ~ CG6, CAAM clocks */
1171552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR0);
1172552a848eSStefano Babic if (enable)
1173552a848eSStefano Babic reg |= (MXC_CCM_CCGR0_CAAM_WRAPPER_IPG_MASK |
1174552a848eSStefano Babic MXC_CCM_CCGR0_CAAM_WRAPPER_ACLK_MASK |
1175552a848eSStefano Babic MXC_CCM_CCGR0_CAAM_SECURE_MEM_MASK);
1176552a848eSStefano Babic else
1177552a848eSStefano Babic reg &= ~(MXC_CCM_CCGR0_CAAM_WRAPPER_IPG_MASK |
1178552a848eSStefano Babic MXC_CCM_CCGR0_CAAM_WRAPPER_ACLK_MASK |
1179552a848eSStefano Babic MXC_CCM_CCGR0_CAAM_SECURE_MEM_MASK);
1180552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR0);
1181552a848eSStefano Babic }
1182552a848eSStefano Babic
1183552a848eSStefano Babic /* EMI slow clk */
1184552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR6);
1185552a848eSStefano Babic if (enable)
1186552a848eSStefano Babic reg |= MXC_CCM_CCGR6_EMI_SLOW_MASK;
1187552a848eSStefano Babic else
1188552a848eSStefano Babic reg &= ~MXC_CCM_CCGR6_EMI_SLOW_MASK;
1189552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR6);
1190552a848eSStefano Babic }
1191552a848eSStefano Babic #endif
1192552a848eSStefano Babic
enable_pll3(void)1193552a848eSStefano Babic static void enable_pll3(void)
1194552a848eSStefano Babic {
1195552a848eSStefano Babic struct anatop_regs __iomem *anatop =
1196552a848eSStefano Babic (struct anatop_regs __iomem *)ANATOP_BASE_ADDR;
1197552a848eSStefano Babic
1198552a848eSStefano Babic /* make sure pll3 is enabled */
1199552a848eSStefano Babic if ((readl(&anatop->usb1_pll_480_ctrl) &
1200552a848eSStefano Babic BM_ANADIG_USB1_PLL_480_CTRL_LOCK) == 0) {
1201552a848eSStefano Babic /* enable pll's power */
1202552a848eSStefano Babic writel(BM_ANADIG_USB1_PLL_480_CTRL_POWER,
1203552a848eSStefano Babic &anatop->usb1_pll_480_ctrl_set);
1204552a848eSStefano Babic writel(0x80, &anatop->ana_misc2_clr);
1205552a848eSStefano Babic /* wait for pll lock */
1206552a848eSStefano Babic while ((readl(&anatop->usb1_pll_480_ctrl) &
1207552a848eSStefano Babic BM_ANADIG_USB1_PLL_480_CTRL_LOCK) == 0)
1208552a848eSStefano Babic ;
1209552a848eSStefano Babic /* disable bypass */
1210552a848eSStefano Babic writel(BM_ANADIG_USB1_PLL_480_CTRL_BYPASS,
1211552a848eSStefano Babic &anatop->usb1_pll_480_ctrl_clr);
1212552a848eSStefano Babic /* enable pll output */
1213552a848eSStefano Babic writel(BM_ANADIG_USB1_PLL_480_CTRL_ENABLE,
1214552a848eSStefano Babic &anatop->usb1_pll_480_ctrl_set);
1215552a848eSStefano Babic }
1216552a848eSStefano Babic }
1217552a848eSStefano Babic
enable_thermal_clk(void)1218552a848eSStefano Babic void enable_thermal_clk(void)
1219552a848eSStefano Babic {
1220552a848eSStefano Babic enable_pll3();
1221552a848eSStefano Babic }
1222552a848eSStefano Babic
mxc_get_clock(enum mxc_clock clk)1223552a848eSStefano Babic unsigned int mxc_get_clock(enum mxc_clock clk)
1224552a848eSStefano Babic {
1225552a848eSStefano Babic switch (clk) {
1226552a848eSStefano Babic case MXC_ARM_CLK:
1227552a848eSStefano Babic return get_mcu_main_clk();
1228552a848eSStefano Babic case MXC_PER_CLK:
1229552a848eSStefano Babic return get_periph_clk();
1230552a848eSStefano Babic case MXC_AHB_CLK:
1231552a848eSStefano Babic return get_ahb_clk();
1232552a848eSStefano Babic case MXC_IPG_CLK:
1233552a848eSStefano Babic return get_ipg_clk();
1234552a848eSStefano Babic case MXC_IPG_PERCLK:
1235552a848eSStefano Babic case MXC_I2C_CLK:
1236552a848eSStefano Babic return get_ipg_per_clk();
1237552a848eSStefano Babic case MXC_UART_CLK:
1238552a848eSStefano Babic return get_uart_clk();
1239552a848eSStefano Babic case MXC_CSPI_CLK:
1240552a848eSStefano Babic return get_cspi_clk();
1241552a848eSStefano Babic case MXC_AXI_CLK:
1242552a848eSStefano Babic return get_axi_clk();
1243552a848eSStefano Babic case MXC_EMI_SLOW_CLK:
1244552a848eSStefano Babic return get_emi_slow_clk();
1245552a848eSStefano Babic case MXC_DDR_CLK:
1246552a848eSStefano Babic return get_mmdc_ch0_clk();
1247552a848eSStefano Babic case MXC_ESDHC_CLK:
1248552a848eSStefano Babic return get_usdhc_clk(0);
1249552a848eSStefano Babic case MXC_ESDHC2_CLK:
1250552a848eSStefano Babic return get_usdhc_clk(1);
1251552a848eSStefano Babic case MXC_ESDHC3_CLK:
1252552a848eSStefano Babic return get_usdhc_clk(2);
1253552a848eSStefano Babic case MXC_ESDHC4_CLK:
1254552a848eSStefano Babic return get_usdhc_clk(3);
1255552a848eSStefano Babic case MXC_SATA_CLK:
1256552a848eSStefano Babic return get_ahb_clk();
1257552a848eSStefano Babic default:
1258552a848eSStefano Babic printf("Unsupported MXC CLK: %d\n", clk);
1259552a848eSStefano Babic break;
1260552a848eSStefano Babic }
1261552a848eSStefano Babic
1262552a848eSStefano Babic return 0;
1263552a848eSStefano Babic }
1264552a848eSStefano Babic
1265552a848eSStefano Babic /*
1266552a848eSStefano Babic * Dump some core clockes.
1267552a848eSStefano Babic */
do_mx6_showclocks(cmd_tbl_t * cmdtp,int flag,int argc,char * const argv[])1268552a848eSStefano Babic int do_mx6_showclocks(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
1269552a848eSStefano Babic {
1270552a848eSStefano Babic u32 freq;
1271552a848eSStefano Babic freq = decode_pll(PLL_SYS, MXC_HCLK);
1272552a848eSStefano Babic printf("PLL_SYS %8d MHz\n", freq / 1000000);
1273552a848eSStefano Babic freq = decode_pll(PLL_BUS, MXC_HCLK);
1274552a848eSStefano Babic printf("PLL_BUS %8d MHz\n", freq / 1000000);
1275552a848eSStefano Babic freq = decode_pll(PLL_USBOTG, MXC_HCLK);
1276552a848eSStefano Babic printf("PLL_OTG %8d MHz\n", freq / 1000000);
1277552a848eSStefano Babic freq = decode_pll(PLL_ENET, MXC_HCLK);
1278552a848eSStefano Babic printf("PLL_NET %8d MHz\n", freq / 1000000);
1279552a848eSStefano Babic
1280552a848eSStefano Babic printf("\n");
1281552a848eSStefano Babic printf("ARM %8d kHz\n", mxc_get_clock(MXC_ARM_CLK) / 1000);
1282552a848eSStefano Babic printf("IPG %8d kHz\n", mxc_get_clock(MXC_IPG_CLK) / 1000);
1283552a848eSStefano Babic printf("UART %8d kHz\n", mxc_get_clock(MXC_UART_CLK) / 1000);
1284552a848eSStefano Babic #ifdef CONFIG_MXC_SPI
1285552a848eSStefano Babic printf("CSPI %8d kHz\n", mxc_get_clock(MXC_CSPI_CLK) / 1000);
1286552a848eSStefano Babic #endif
1287552a848eSStefano Babic printf("AHB %8d kHz\n", mxc_get_clock(MXC_AHB_CLK) / 1000);
1288552a848eSStefano Babic printf("AXI %8d kHz\n", mxc_get_clock(MXC_AXI_CLK) / 1000);
1289552a848eSStefano Babic printf("DDR %8d kHz\n", mxc_get_clock(MXC_DDR_CLK) / 1000);
1290552a848eSStefano Babic printf("USDHC1 %8d kHz\n", mxc_get_clock(MXC_ESDHC_CLK) / 1000);
1291552a848eSStefano Babic printf("USDHC2 %8d kHz\n", mxc_get_clock(MXC_ESDHC2_CLK) / 1000);
1292552a848eSStefano Babic printf("USDHC3 %8d kHz\n", mxc_get_clock(MXC_ESDHC3_CLK) / 1000);
1293552a848eSStefano Babic printf("USDHC4 %8d kHz\n", mxc_get_clock(MXC_ESDHC4_CLK) / 1000);
1294552a848eSStefano Babic printf("EMI SLOW %8d kHz\n", mxc_get_clock(MXC_EMI_SLOW_CLK) / 1000);
1295552a848eSStefano Babic printf("IPG PERCLK %8d kHz\n", mxc_get_clock(MXC_IPG_PERCLK) / 1000);
1296552a848eSStefano Babic
1297552a848eSStefano Babic return 0;
1298552a848eSStefano Babic }
1299552a848eSStefano Babic
1300552a848eSStefano Babic #ifndef CONFIG_MX6SX
enable_ipu_clock(void)1301552a848eSStefano Babic void enable_ipu_clock(void)
1302552a848eSStefano Babic {
1303552a848eSStefano Babic struct mxc_ccm_reg *mxc_ccm = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1304552a848eSStefano Babic int reg;
1305552a848eSStefano Babic reg = readl(&mxc_ccm->CCGR3);
1306552a848eSStefano Babic reg |= MXC_CCM_CCGR3_IPU1_IPU_MASK;
1307552a848eSStefano Babic writel(reg, &mxc_ccm->CCGR3);
1308552a848eSStefano Babic
1309552a848eSStefano Babic if (is_mx6dqp()) {
1310552a848eSStefano Babic setbits_le32(&mxc_ccm->CCGR6, MXC_CCM_CCGR6_PRG_CLK0_MASK);
1311552a848eSStefano Babic setbits_le32(&mxc_ccm->CCGR3, MXC_CCM_CCGR3_IPU2_IPU_MASK);
1312552a848eSStefano Babic }
1313552a848eSStefano Babic }
1314552a848eSStefano Babic #endif
1315552a848eSStefano Babic
1316552a848eSStefano Babic #if defined(CONFIG_MX6Q) || defined(CONFIG_MX6D) || defined(CONFIG_MX6DL) || \
1317552a848eSStefano Babic defined(CONFIG_MX6S)
disable_ldb_di_clock_sources(void)1318552a848eSStefano Babic static void disable_ldb_di_clock_sources(void)
1319552a848eSStefano Babic {
1320552a848eSStefano Babic struct mxc_ccm_reg *mxc_ccm = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1321552a848eSStefano Babic int reg;
1322552a848eSStefano Babic
1323552a848eSStefano Babic /* Make sure PFDs are disabled at boot. */
1324552a848eSStefano Babic reg = readl(&mxc_ccm->analog_pfd_528);
1325552a848eSStefano Babic /* Cannot disable pll2_pfd2_396M, as it is the MMDC clock in iMX6DL */
1326552a848eSStefano Babic if (is_mx6sdl())
1327552a848eSStefano Babic reg |= 0x80008080;
1328552a848eSStefano Babic else
1329552a848eSStefano Babic reg |= 0x80808080;
1330552a848eSStefano Babic writel(reg, &mxc_ccm->analog_pfd_528);
1331552a848eSStefano Babic
1332552a848eSStefano Babic /* Disable PLL3 PFDs */
1333552a848eSStefano Babic reg = readl(&mxc_ccm->analog_pfd_480);
1334552a848eSStefano Babic reg |= 0x80808080;
1335552a848eSStefano Babic writel(reg, &mxc_ccm->analog_pfd_480);
1336552a848eSStefano Babic
1337552a848eSStefano Babic /* Disable PLL5 */
1338552a848eSStefano Babic reg = readl(&mxc_ccm->analog_pll_video);
1339552a848eSStefano Babic reg &= ~(1 << 13);
1340552a848eSStefano Babic writel(reg, &mxc_ccm->analog_pll_video);
1341552a848eSStefano Babic }
1342552a848eSStefano Babic
enable_ldb_di_clock_sources(void)1343552a848eSStefano Babic static void enable_ldb_di_clock_sources(void)
1344552a848eSStefano Babic {
1345552a848eSStefano Babic struct mxc_ccm_reg *mxc_ccm = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1346552a848eSStefano Babic int reg;
1347552a848eSStefano Babic
1348552a848eSStefano Babic reg = readl(&mxc_ccm->analog_pfd_528);
1349552a848eSStefano Babic if (is_mx6sdl())
1350552a848eSStefano Babic reg &= ~(0x80008080);
1351552a848eSStefano Babic else
1352552a848eSStefano Babic reg &= ~(0x80808080);
1353552a848eSStefano Babic writel(reg, &mxc_ccm->analog_pfd_528);
1354552a848eSStefano Babic
1355552a848eSStefano Babic reg = readl(&mxc_ccm->analog_pfd_480);
1356552a848eSStefano Babic reg &= ~(0x80808080);
1357552a848eSStefano Babic writel(reg, &mxc_ccm->analog_pfd_480);
1358552a848eSStefano Babic }
1359552a848eSStefano Babic
1360552a848eSStefano Babic /*
1361552a848eSStefano Babic * Try call this function as early in the boot process as possible since the
1362552a848eSStefano Babic * function temporarily disables PLL2 PFD's, PLL3 PFD's and PLL5.
1363552a848eSStefano Babic */
select_ldb_di_clock_source(enum ldb_di_clock clk)1364552a848eSStefano Babic void select_ldb_di_clock_source(enum ldb_di_clock clk)
1365552a848eSStefano Babic {
1366552a848eSStefano Babic struct mxc_ccm_reg *mxc_ccm = (struct mxc_ccm_reg *)CCM_BASE_ADDR;
1367552a848eSStefano Babic int reg;
1368552a848eSStefano Babic
1369552a848eSStefano Babic /*
1370552a848eSStefano Babic * Need to follow a strict procedure when changing the LDB
1371552a848eSStefano Babic * clock, else we can introduce a glitch. Things to keep in
1372552a848eSStefano Babic * mind:
1373552a848eSStefano Babic * 1. The current and new parent clocks must be disabled.
1374552a848eSStefano Babic * 2. The default clock for ldb_dio_clk is mmdc_ch1 which has
1375552a848eSStefano Babic * no CG bit.
1376552a848eSStefano Babic * 3. In the RTL implementation of the LDB_DI_CLK_SEL mux
1377552a848eSStefano Babic * the top four options are in one mux and the PLL3 option along
1378552a848eSStefano Babic * with another option is in the second mux. There is third mux
1379552a848eSStefano Babic * used to decide between the first and second mux.
1380552a848eSStefano Babic * The code below switches the parent to the bottom mux first
1381552a848eSStefano Babic * and then manipulates the top mux. This ensures that no glitch
1382552a848eSStefano Babic * will enter the divider.
1383552a848eSStefano Babic *
1384552a848eSStefano Babic * Need to disable MMDC_CH1 clock manually as there is no CG bit
1385552a848eSStefano Babic * for this clock. The only way to disable this clock is to move
1386552a848eSStefano Babic * it to pll3_sw_clk and then to disable pll3_sw_clk
1387552a848eSStefano Babic * Make sure periph2_clk2_sel is set to pll3_sw_clk
1388552a848eSStefano Babic */
1389552a848eSStefano Babic
1390552a848eSStefano Babic /* Disable all ldb_di clock parents */
1391552a848eSStefano Babic disable_ldb_di_clock_sources();
1392552a848eSStefano Babic
1393552a848eSStefano Babic /* Set MMDC_CH1 mask bit */
1394552a848eSStefano Babic reg = readl(&mxc_ccm->ccdr);
1395552a848eSStefano Babic reg |= MXC_CCM_CCDR_MMDC_CH1_HS_MASK;
1396552a848eSStefano Babic writel(reg, &mxc_ccm->ccdr);
1397552a848eSStefano Babic
1398552a848eSStefano Babic /* Set periph2_clk2_sel to be sourced from PLL3_sw_clk */
1399552a848eSStefano Babic reg = readl(&mxc_ccm->cbcmr);
1400552a848eSStefano Babic reg &= ~MXC_CCM_CBCMR_PERIPH2_CLK2_SEL;
1401552a848eSStefano Babic writel(reg, &mxc_ccm->cbcmr);
1402552a848eSStefano Babic
1403552a848eSStefano Babic /*
1404552a848eSStefano Babic * Set the periph2_clk_sel to the top mux so that
1405552a848eSStefano Babic * mmdc_ch1 is from pll3_sw_clk.
1406552a848eSStefano Babic */
1407552a848eSStefano Babic reg = readl(&mxc_ccm->cbcdr);
1408552a848eSStefano Babic reg |= MXC_CCM_CBCDR_PERIPH2_CLK_SEL;
1409552a848eSStefano Babic writel(reg, &mxc_ccm->cbcdr);
1410552a848eSStefano Babic
1411552a848eSStefano Babic /* Wait for the clock switch */
1412552a848eSStefano Babic while (readl(&mxc_ccm->cdhipr))
1413552a848eSStefano Babic ;
1414552a848eSStefano Babic /* Disable pll3_sw_clk by selecting bypass clock source */
1415552a848eSStefano Babic reg = readl(&mxc_ccm->ccsr);
1416552a848eSStefano Babic reg |= MXC_CCM_CCSR_PLL3_SW_CLK_SEL;
1417552a848eSStefano Babic writel(reg, &mxc_ccm->ccsr);
1418552a848eSStefano Babic
1419552a848eSStefano Babic /* Set the ldb_di0_clk and ldb_di1_clk to 111b */
1420552a848eSStefano Babic reg = readl(&mxc_ccm->cs2cdr);
1421552a848eSStefano Babic reg |= ((7 << MXC_CCM_CS2CDR_LDB_DI1_CLK_SEL_OFFSET)
1422552a848eSStefano Babic | (7 << MXC_CCM_CS2CDR_LDB_DI0_CLK_SEL_OFFSET));
1423552a848eSStefano Babic writel(reg, &mxc_ccm->cs2cdr);
1424552a848eSStefano Babic
1425552a848eSStefano Babic /* Set the ldb_di0_clk and ldb_di1_clk to 100b */
1426552a848eSStefano Babic reg = readl(&mxc_ccm->cs2cdr);
1427552a848eSStefano Babic reg &= ~(MXC_CCM_CS2CDR_LDB_DI1_CLK_SEL_MASK
1428552a848eSStefano Babic | MXC_CCM_CS2CDR_LDB_DI0_CLK_SEL_MASK);
1429552a848eSStefano Babic reg |= ((4 << MXC_CCM_CS2CDR_LDB_DI1_CLK_SEL_OFFSET)
1430552a848eSStefano Babic | (4 << MXC_CCM_CS2CDR_LDB_DI0_CLK_SEL_OFFSET));
1431552a848eSStefano Babic writel(reg, &mxc_ccm->cs2cdr);
1432552a848eSStefano Babic
1433552a848eSStefano Babic /* Set the ldb_di0_clk and ldb_di1_clk to desired source */
1434552a848eSStefano Babic reg = readl(&mxc_ccm->cs2cdr);
1435552a848eSStefano Babic reg &= ~(MXC_CCM_CS2CDR_LDB_DI1_CLK_SEL_MASK
1436552a848eSStefano Babic | MXC_CCM_CS2CDR_LDB_DI0_CLK_SEL_MASK);
1437552a848eSStefano Babic reg |= ((clk << MXC_CCM_CS2CDR_LDB_DI1_CLK_SEL_OFFSET)
1438552a848eSStefano Babic | (clk << MXC_CCM_CS2CDR_LDB_DI0_CLK_SEL_OFFSET));
1439552a848eSStefano Babic writel(reg, &mxc_ccm->cs2cdr);
1440552a848eSStefano Babic
1441552a848eSStefano Babic /* Unbypass pll3_sw_clk */
1442552a848eSStefano Babic reg = readl(&mxc_ccm->ccsr);
1443552a848eSStefano Babic reg &= ~MXC_CCM_CCSR_PLL3_SW_CLK_SEL;
1444552a848eSStefano Babic writel(reg, &mxc_ccm->ccsr);
1445552a848eSStefano Babic
1446552a848eSStefano Babic /*
1447552a848eSStefano Babic * Set the periph2_clk_sel back to the bottom mux so that
1448552a848eSStefano Babic * mmdc_ch1 is from its original parent.
1449552a848eSStefano Babic */
1450552a848eSStefano Babic reg = readl(&mxc_ccm->cbcdr);
1451552a848eSStefano Babic reg &= ~MXC_CCM_CBCDR_PERIPH2_CLK_SEL;
1452552a848eSStefano Babic writel(reg, &mxc_ccm->cbcdr);
1453552a848eSStefano Babic
1454552a848eSStefano Babic /* Wait for the clock switch */
1455552a848eSStefano Babic while (readl(&mxc_ccm->cdhipr))
1456552a848eSStefano Babic ;
1457552a848eSStefano Babic /* Clear MMDC_CH1 mask bit */
1458552a848eSStefano Babic reg = readl(&mxc_ccm->ccdr);
1459552a848eSStefano Babic reg &= ~MXC_CCM_CCDR_MMDC_CH1_HS_MASK;
1460552a848eSStefano Babic writel(reg, &mxc_ccm->ccdr);
1461552a848eSStefano Babic
1462552a848eSStefano Babic enable_ldb_di_clock_sources();
1463552a848eSStefano Babic }
1464552a848eSStefano Babic #endif
1465552a848eSStefano Babic
1466552a848eSStefano Babic #ifdef CONFIG_MTD_NOR_FLASH
enable_eim_clk(unsigned char enable)1467552a848eSStefano Babic void enable_eim_clk(unsigned char enable)
1468552a848eSStefano Babic {
1469552a848eSStefano Babic u32 reg;
1470552a848eSStefano Babic
1471552a848eSStefano Babic reg = __raw_readl(&imx_ccm->CCGR6);
1472552a848eSStefano Babic if (enable)
1473552a848eSStefano Babic reg |= MXC_CCM_CCGR6_EMI_SLOW_MASK;
1474552a848eSStefano Babic else
1475552a848eSStefano Babic reg &= ~MXC_CCM_CCGR6_EMI_SLOW_MASK;
1476552a848eSStefano Babic __raw_writel(reg, &imx_ccm->CCGR6);
1477552a848eSStefano Babic }
1478552a848eSStefano Babic #endif
1479552a848eSStefano Babic
1480552a848eSStefano Babic /***************************************************/
1481552a848eSStefano Babic
1482552a848eSStefano Babic U_BOOT_CMD(
1483552a848eSStefano Babic clocks, CONFIG_SYS_MAXARGS, 1, do_mx6_showclocks,
1484552a848eSStefano Babic "display clocks",
1485552a848eSStefano Babic ""
1486552a848eSStefano Babic );
1487