2 * Copyright (C) 2005-2006 Atmel Corporation
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License version 2 as
6 * published by the Free Software Foundation.
9 #include <linux/delay.h>
10 #include <linux/dw_dmac.h>
12 #include <linux/init.h>
13 #include <linux/platform_device.h>
14 #include <linux/dma-mapping.h>
15 #include <linux/gpio.h>
16 #include <linux/spi/spi.h>
17 #include <linux/usb/atmel_usba_udc.h>
18 #include <linux/atmel-mci.h>
23 #include <mach/at32ap700x.h>
24 #include <mach/board.h>
25 #include <mach/hmatrix.h>
26 #include <mach/portmux.h>
27 #include <mach/sram.h>
29 #include <sound/atmel-abdac.h>
30 #include <sound/atmel-ac97c.h>
32 #include <video/atmel_lcdc.h>
42 .end = base + 0x3ff, \
43 .flags = IORESOURCE_MEM, \
49 .flags = IORESOURCE_IRQ, \
51 #define NAMED_IRQ(num, _name) \
56 .flags = IORESOURCE_IRQ, \
59 /* REVISIT these assume *every* device supports DMA, but several
60 * don't ... tc, smc, pio, rtc, watchdog, pwm, ps2, and more.
62 #define DEFINE_DEV(_name, _id) \
63 static u64 _name##_id##_dma_mask = DMA_BIT_MASK(32); \
64 static struct platform_device _name##_id##_device = { \
68 .dma_mask = &_name##_id##_dma_mask, \
69 .coherent_dma_mask = DMA_BIT_MASK(32), \
71 .resource = _name##_id##_resource, \
72 .num_resources = ARRAY_SIZE(_name##_id##_resource), \
74 #define DEFINE_DEV_DATA(_name, _id) \
75 static u64 _name##_id##_dma_mask = DMA_BIT_MASK(32); \
76 static struct platform_device _name##_id##_device = { \
80 .dma_mask = &_name##_id##_dma_mask, \
81 .platform_data = &_name##_id##_data, \
82 .coherent_dma_mask = DMA_BIT_MASK(32), \
84 .resource = _name##_id##_resource, \
85 .num_resources = ARRAY_SIZE(_name##_id##_resource), \
88 #define select_peripheral(port, pin_mask, periph, flags) \
89 at32_select_periph(GPIO_##port##_BASE, pin_mask, \
92 #define DEV_CLK(_name, devname, bus, _index) \
93 static struct clk devname##_##_name = { \
95 .dev = &devname##_device.dev, \
96 .parent = &bus##_clk, \
97 .mode = bus##_clk_mode, \
98 .get_rate = bus##_clk_get_rate, \
102 static DEFINE_SPINLOCK(pm_lock);
104 static struct clk osc0;
105 static struct clk osc1;
107 static unsigned long osc_get_rate(struct clk *clk)
109 return at32_board_osc_rates[clk->index];
112 static unsigned long pll_get_rate(struct clk *clk, unsigned long control)
114 unsigned long div, mul, rate;
116 div = PM_BFEXT(PLLDIV, control) + 1;
117 mul = PM_BFEXT(PLLMUL, control) + 1;
119 rate = clk->parent->get_rate(clk->parent);
120 rate = (rate + div / 2) / div;
126 static long pll_set_rate(struct clk *clk, unsigned long rate,
130 unsigned long mul_best_fit = 0;
132 unsigned long div_min;
133 unsigned long div_max;
134 unsigned long div_best_fit = 0;
136 unsigned long pll_in;
137 unsigned long actual = 0;
138 unsigned long rate_error;
139 unsigned long rate_error_prev = ~0UL;
142 /* Rate must be between 80 MHz and 200 Mhz. */
143 if (rate < 80000000UL || rate > 200000000UL)
146 ctrl = PM_BF(PLLOPT, 4);
147 base = clk->parent->get_rate(clk->parent);
149 /* PLL input frequency must be between 6 MHz and 32 MHz. */
150 div_min = DIV_ROUND_UP(base, 32000000UL);
151 div_max = base / 6000000UL;
153 if (div_max < div_min)
156 for (div = div_min; div <= div_max; div++) {
157 pll_in = (base + div / 2) / div;
158 mul = (rate + pll_in / 2) / pll_in;
163 actual = pll_in * mul;
164 rate_error = abs(actual - rate);
166 if (rate_error < rate_error_prev) {
169 rate_error_prev = rate_error;
176 if (div_best_fit == 0)
179 ctrl |= PM_BF(PLLMUL, mul_best_fit - 1);
180 ctrl |= PM_BF(PLLDIV, div_best_fit - 1);
181 ctrl |= PM_BF(PLLCOUNT, 16);
183 if (clk->parent == &osc1)
184 ctrl |= PM_BIT(PLLOSC);
191 static unsigned long pll0_get_rate(struct clk *clk)
195 control = pm_readl(PLL0);
197 return pll_get_rate(clk, control);
200 static void pll1_mode(struct clk *clk, int enabled)
202 unsigned long timeout;
206 ctrl = pm_readl(PLL1);
209 if (!PM_BFEXT(PLLMUL, ctrl) && !PM_BFEXT(PLLDIV, ctrl)) {
210 pr_debug("clk %s: failed to enable, rate not set\n",
215 ctrl |= PM_BIT(PLLEN);
216 pm_writel(PLL1, ctrl);
218 /* Wait for PLL lock. */
219 for (timeout = 10000; timeout; timeout--) {
220 status = pm_readl(ISR);
221 if (status & PM_BIT(LOCK1))
226 if (!(status & PM_BIT(LOCK1)))
227 printk(KERN_ERR "clk %s: timeout waiting for lock\n",
230 ctrl &= ~PM_BIT(PLLEN);
231 pm_writel(PLL1, ctrl);
235 static unsigned long pll1_get_rate(struct clk *clk)
239 control = pm_readl(PLL1);
241 return pll_get_rate(clk, control);
244 static long pll1_set_rate(struct clk *clk, unsigned long rate, int apply)
247 unsigned long actual_rate;
249 actual_rate = pll_set_rate(clk, rate, &ctrl);
252 if (actual_rate != rate)
256 pr_debug(KERN_INFO "clk %s: new rate %lu (actual rate %lu)\n",
257 clk->name, rate, actual_rate);
258 pm_writel(PLL1, ctrl);
264 static int pll1_set_parent(struct clk *clk, struct clk *parent)
271 ctrl = pm_readl(PLL1);
272 WARN_ON(ctrl & PM_BIT(PLLEN));
275 ctrl &= ~PM_BIT(PLLOSC);
276 else if (parent == &osc1)
277 ctrl |= PM_BIT(PLLOSC);
281 pm_writel(PLL1, ctrl);
282 clk->parent = parent;
288 * The AT32AP7000 has five primary clock sources: One 32kHz
289 * oscillator, two crystal oscillators and two PLLs.
291 static struct clk osc32k = {
293 .get_rate = osc_get_rate,
297 static struct clk osc0 = {
299 .get_rate = osc_get_rate,
303 static struct clk osc1 = {
305 .get_rate = osc_get_rate,
308 static struct clk pll0 = {
310 .get_rate = pll0_get_rate,
313 static struct clk pll1 = {
316 .get_rate = pll1_get_rate,
317 .set_rate = pll1_set_rate,
318 .set_parent = pll1_set_parent,
323 * The main clock can be either osc0 or pll0. The boot loader may
324 * have chosen one for us, so we don't really know which one until we
325 * have a look at the SM.
327 static struct clk *main_clock;
330 * Synchronous clocks are generated from the main clock. The clocks
331 * must satisfy the constraint
332 * fCPU >= fHSB >= fPB
333 * i.e. each clock must not be faster than its parent.
335 static unsigned long bus_clk_get_rate(struct clk *clk, unsigned int shift)
337 return main_clock->get_rate(main_clock) >> shift;
340 static void cpu_clk_mode(struct clk *clk, int enabled)
345 spin_lock_irqsave(&pm_lock, flags);
346 mask = pm_readl(CPU_MASK);
348 mask |= 1 << clk->index;
350 mask &= ~(1 << clk->index);
351 pm_writel(CPU_MASK, mask);
352 spin_unlock_irqrestore(&pm_lock, flags);
355 static unsigned long cpu_clk_get_rate(struct clk *clk)
357 unsigned long cksel, shift = 0;
359 cksel = pm_readl(CKSEL);
360 if (cksel & PM_BIT(CPUDIV))
361 shift = PM_BFEXT(CPUSEL, cksel) + 1;
363 return bus_clk_get_rate(clk, shift);
366 static long cpu_clk_set_rate(struct clk *clk, unsigned long rate, int apply)
369 unsigned long parent_rate, child_div, actual_rate, div;
371 parent_rate = clk->parent->get_rate(clk->parent);
372 control = pm_readl(CKSEL);
374 if (control & PM_BIT(HSBDIV))
375 child_div = 1 << (PM_BFEXT(HSBSEL, control) + 1);
379 if (rate > 3 * (parent_rate / 4) || child_div == 1) {
380 actual_rate = parent_rate;
381 control &= ~PM_BIT(CPUDIV);
384 div = (parent_rate + rate / 2) / rate;
387 cpusel = (div > 1) ? (fls(div) - 2) : 0;
388 control = PM_BIT(CPUDIV) | PM_BFINS(CPUSEL, cpusel, control);
389 actual_rate = parent_rate / (1 << (cpusel + 1));
392 pr_debug("clk %s: new rate %lu (actual rate %lu)\n",
393 clk->name, rate, actual_rate);
396 pm_writel(CKSEL, control);
401 static void hsb_clk_mode(struct clk *clk, int enabled)
406 spin_lock_irqsave(&pm_lock, flags);
407 mask = pm_readl(HSB_MASK);
409 mask |= 1 << clk->index;
411 mask &= ~(1 << clk->index);
412 pm_writel(HSB_MASK, mask);
413 spin_unlock_irqrestore(&pm_lock, flags);
416 static unsigned long hsb_clk_get_rate(struct clk *clk)
418 unsigned long cksel, shift = 0;
420 cksel = pm_readl(CKSEL);
421 if (cksel & PM_BIT(HSBDIV))
422 shift = PM_BFEXT(HSBSEL, cksel) + 1;
424 return bus_clk_get_rate(clk, shift);
427 void pba_clk_mode(struct clk *clk, int enabled)
432 spin_lock_irqsave(&pm_lock, flags);
433 mask = pm_readl(PBA_MASK);
435 mask |= 1 << clk->index;
437 mask &= ~(1 << clk->index);
438 pm_writel(PBA_MASK, mask);
439 spin_unlock_irqrestore(&pm_lock, flags);
442 unsigned long pba_clk_get_rate(struct clk *clk)
444 unsigned long cksel, shift = 0;
446 cksel = pm_readl(CKSEL);
447 if (cksel & PM_BIT(PBADIV))
448 shift = PM_BFEXT(PBASEL, cksel) + 1;
450 return bus_clk_get_rate(clk, shift);
453 static void pbb_clk_mode(struct clk *clk, int enabled)
458 spin_lock_irqsave(&pm_lock, flags);
459 mask = pm_readl(PBB_MASK);
461 mask |= 1 << clk->index;
463 mask &= ~(1 << clk->index);
464 pm_writel(PBB_MASK, mask);
465 spin_unlock_irqrestore(&pm_lock, flags);
468 static unsigned long pbb_clk_get_rate(struct clk *clk)
470 unsigned long cksel, shift = 0;
472 cksel = pm_readl(CKSEL);
473 if (cksel & PM_BIT(PBBDIV))
474 shift = PM_BFEXT(PBBSEL, cksel) + 1;
476 return bus_clk_get_rate(clk, shift);
479 static struct clk cpu_clk = {
481 .get_rate = cpu_clk_get_rate,
482 .set_rate = cpu_clk_set_rate,
485 static struct clk hsb_clk = {
488 .get_rate = hsb_clk_get_rate,
490 static struct clk pba_clk = {
493 .mode = hsb_clk_mode,
494 .get_rate = pba_clk_get_rate,
497 static struct clk pbb_clk = {
500 .mode = hsb_clk_mode,
501 .get_rate = pbb_clk_get_rate,
506 /* --------------------------------------------------------------------
507 * Generic Clock operations
508 * -------------------------------------------------------------------- */
510 static void genclk_mode(struct clk *clk, int enabled)
514 control = pm_readl(GCCTRL(clk->index));
516 control |= PM_BIT(CEN);
518 control &= ~PM_BIT(CEN);
519 pm_writel(GCCTRL(clk->index), control);
522 static unsigned long genclk_get_rate(struct clk *clk)
525 unsigned long div = 1;
527 control = pm_readl(GCCTRL(clk->index));
528 if (control & PM_BIT(DIVEN))
529 div = 2 * (PM_BFEXT(DIV, control) + 1);
531 return clk->parent->get_rate(clk->parent) / div;
534 static long genclk_set_rate(struct clk *clk, unsigned long rate, int apply)
537 unsigned long parent_rate, actual_rate, div;
539 parent_rate = clk->parent->get_rate(clk->parent);
540 control = pm_readl(GCCTRL(clk->index));
542 if (rate > 3 * parent_rate / 4) {
543 actual_rate = parent_rate;
544 control &= ~PM_BIT(DIVEN);
546 div = (parent_rate + rate) / (2 * rate) - 1;
547 control = PM_BFINS(DIV, div, control) | PM_BIT(DIVEN);
548 actual_rate = parent_rate / (2 * (div + 1));
551 dev_dbg(clk->dev, "clk %s: new rate %lu (actual rate %lu)\n",
552 clk->name, rate, actual_rate);
555 pm_writel(GCCTRL(clk->index), control);
560 int genclk_set_parent(struct clk *clk, struct clk *parent)
564 dev_dbg(clk->dev, "clk %s: new parent %s (was %s)\n",
565 clk->name, parent->name, clk->parent->name);
567 control = pm_readl(GCCTRL(clk->index));
569 if (parent == &osc1 || parent == &pll1)
570 control |= PM_BIT(OSCSEL);
571 else if (parent == &osc0 || parent == &pll0)
572 control &= ~PM_BIT(OSCSEL);
576 if (parent == &pll0 || parent == &pll1)
577 control |= PM_BIT(PLLSEL);
579 control &= ~PM_BIT(PLLSEL);
581 pm_writel(GCCTRL(clk->index), control);
582 clk->parent = parent;
587 static void __init genclk_init_parent(struct clk *clk)
592 BUG_ON(clk->index > 7);
594 control = pm_readl(GCCTRL(clk->index));
595 if (control & PM_BIT(OSCSEL))
596 parent = (control & PM_BIT(PLLSEL)) ? &pll1 : &osc1;
598 parent = (control & PM_BIT(PLLSEL)) ? &pll0 : &osc0;
600 clk->parent = parent;
603 static struct dw_dma_platform_data dw_dmac0_data = {
607 static struct resource dw_dmac0_resource[] = {
611 DEFINE_DEV_DATA(dw_dmac, 0);
612 DEV_CLK(hclk, dw_dmac0, hsb, 10);
614 /* --------------------------------------------------------------------
616 * -------------------------------------------------------------------- */
617 static struct resource at32_pm0_resource[] = {
621 .flags = IORESOURCE_MEM,
626 static struct resource at32ap700x_rtc0_resource[] = {
630 .flags = IORESOURCE_MEM,
635 static struct resource at32_wdt0_resource[] = {
639 .flags = IORESOURCE_MEM,
643 static struct resource at32_eic0_resource[] = {
647 .flags = IORESOURCE_MEM,
652 DEFINE_DEV(at32_pm, 0);
653 DEFINE_DEV(at32ap700x_rtc, 0);
654 DEFINE_DEV(at32_wdt, 0);
655 DEFINE_DEV(at32_eic, 0);
658 * Peripheral clock for PM, RTC, WDT and EIC. PM will ensure that this
661 static struct clk at32_pm_pclk = {
663 .dev = &at32_pm0_device.dev,
665 .mode = pbb_clk_mode,
666 .get_rate = pbb_clk_get_rate,
671 static struct resource intc0_resource[] = {
674 struct platform_device at32_intc0_device = {
677 .resource = intc0_resource,
678 .num_resources = ARRAY_SIZE(intc0_resource),
680 DEV_CLK(pclk, at32_intc0, pbb, 1);
682 static struct clk ebi_clk = {
685 .mode = hsb_clk_mode,
686 .get_rate = hsb_clk_get_rate,
689 static struct clk hramc_clk = {
692 .mode = hsb_clk_mode,
693 .get_rate = hsb_clk_get_rate,
697 static struct clk sdramc_clk = {
698 .name = "sdramc_clk",
700 .mode = pbb_clk_mode,
701 .get_rate = pbb_clk_get_rate,
706 static struct resource smc0_resource[] = {
710 DEV_CLK(pclk, smc0, pbb, 13);
711 DEV_CLK(mck, smc0, hsb, 0);
713 static struct platform_device pdc_device = {
717 DEV_CLK(hclk, pdc, hsb, 4);
718 DEV_CLK(pclk, pdc, pba, 16);
720 static struct clk pico_clk = {
723 .mode = cpu_clk_mode,
724 .get_rate = cpu_clk_get_rate,
728 /* --------------------------------------------------------------------
730 * -------------------------------------------------------------------- */
732 struct clk at32_hmatrix_clk = {
733 .name = "hmatrix_clk",
735 .mode = pbb_clk_mode,
736 .get_rate = pbb_clk_get_rate,
742 * Set bits in the HMATRIX Special Function Register (SFR) used by the
743 * External Bus Interface (EBI). This can be used to enable special
744 * features like CompactFlash support, NAND Flash support, etc. on
745 * certain chipselects.
747 static inline void set_ebi_sfr_bits(u32 mask)
749 hmatrix_sfr_set_bits(HMATRIX_SLAVE_EBI, mask);
752 /* --------------------------------------------------------------------
754 * -------------------------------------------------------------------- */
756 static struct resource at32_tcb0_resource[] = {
760 static struct platform_device at32_tcb0_device = {
763 .resource = at32_tcb0_resource,
764 .num_resources = ARRAY_SIZE(at32_tcb0_resource),
766 DEV_CLK(t0_clk, at32_tcb0, pbb, 3);
768 static struct resource at32_tcb1_resource[] = {
772 static struct platform_device at32_tcb1_device = {
775 .resource = at32_tcb1_resource,
776 .num_resources = ARRAY_SIZE(at32_tcb1_resource),
778 DEV_CLK(t0_clk, at32_tcb1, pbb, 4);
780 /* --------------------------------------------------------------------
782 * -------------------------------------------------------------------- */
784 static struct resource pio0_resource[] = {
789 DEV_CLK(mck, pio0, pba, 10);
791 static struct resource pio1_resource[] = {
796 DEV_CLK(mck, pio1, pba, 11);
798 static struct resource pio2_resource[] = {
803 DEV_CLK(mck, pio2, pba, 12);
805 static struct resource pio3_resource[] = {
810 DEV_CLK(mck, pio3, pba, 13);
812 static struct resource pio4_resource[] = {
817 DEV_CLK(mck, pio4, pba, 14);
819 static int __init system_device_init(void)
821 platform_device_register(&at32_pm0_device);
822 platform_device_register(&at32_intc0_device);
823 platform_device_register(&at32ap700x_rtc0_device);
824 platform_device_register(&at32_wdt0_device);
825 platform_device_register(&at32_eic0_device);
826 platform_device_register(&smc0_device);
827 platform_device_register(&pdc_device);
828 platform_device_register(&dw_dmac0_device);
830 platform_device_register(&at32_tcb0_device);
831 platform_device_register(&at32_tcb1_device);
833 platform_device_register(&pio0_device);
834 platform_device_register(&pio1_device);
835 platform_device_register(&pio2_device);
836 platform_device_register(&pio3_device);
837 platform_device_register(&pio4_device);
841 core_initcall(system_device_init);
843 /* --------------------------------------------------------------------
845 * -------------------------------------------------------------------- */
846 static struct resource atmel_psif0_resource[] __initdata = {
850 .flags = IORESOURCE_MEM,
854 static struct clk atmel_psif0_pclk = {
857 .mode = pba_clk_mode,
858 .get_rate = pba_clk_get_rate,
862 static struct resource atmel_psif1_resource[] __initdata = {
866 .flags = IORESOURCE_MEM,
870 static struct clk atmel_psif1_pclk = {
873 .mode = pba_clk_mode,
874 .get_rate = pba_clk_get_rate,
878 struct platform_device *__init at32_add_device_psif(unsigned int id)
880 struct platform_device *pdev;
883 if (!(id == 0 || id == 1))
886 pdev = platform_device_alloc("atmel_psif", id);
892 pin_mask = (1 << 8) | (1 << 9); /* CLOCK & DATA */
894 if (platform_device_add_resources(pdev, atmel_psif0_resource,
895 ARRAY_SIZE(atmel_psif0_resource)))
896 goto err_add_resources;
897 atmel_psif0_pclk.dev = &pdev->dev;
898 select_peripheral(PIOA, pin_mask, PERIPH_A, 0);
901 pin_mask = (1 << 11) | (1 << 12); /* CLOCK & DATA */
903 if (platform_device_add_resources(pdev, atmel_psif1_resource,
904 ARRAY_SIZE(atmel_psif1_resource)))
905 goto err_add_resources;
906 atmel_psif1_pclk.dev = &pdev->dev;
907 select_peripheral(PIOB, pin_mask, PERIPH_A, 0);
913 platform_device_add(pdev);
917 platform_device_put(pdev);
921 /* --------------------------------------------------------------------
923 * -------------------------------------------------------------------- */
925 static struct atmel_uart_data atmel_usart0_data = {
929 static struct resource atmel_usart0_resource[] = {
933 DEFINE_DEV_DATA(atmel_usart, 0);
934 DEV_CLK(usart, atmel_usart0, pba, 3);
936 static struct atmel_uart_data atmel_usart1_data = {
940 static struct resource atmel_usart1_resource[] = {
944 DEFINE_DEV_DATA(atmel_usart, 1);
945 DEV_CLK(usart, atmel_usart1, pba, 4);
947 static struct atmel_uart_data atmel_usart2_data = {
951 static struct resource atmel_usart2_resource[] = {
955 DEFINE_DEV_DATA(atmel_usart, 2);
956 DEV_CLK(usart, atmel_usart2, pba, 5);
958 static struct atmel_uart_data atmel_usart3_data = {
962 static struct resource atmel_usart3_resource[] = {
966 DEFINE_DEV_DATA(atmel_usart, 3);
967 DEV_CLK(usart, atmel_usart3, pba, 6);
969 static inline void configure_usart0_pins(int flags)
971 u32 pin_mask = (1 << 8) | (1 << 9); /* RXD & TXD */
972 if (flags & ATMEL_USART_RTS) pin_mask |= (1 << 6);
973 if (flags & ATMEL_USART_CTS) pin_mask |= (1 << 7);
974 if (flags & ATMEL_USART_CLK) pin_mask |= (1 << 10);
976 select_peripheral(PIOA, pin_mask, PERIPH_B, AT32_GPIOF_PULLUP);
979 static inline void configure_usart1_pins(int flags)
981 u32 pin_mask = (1 << 17) | (1 << 18); /* RXD & TXD */
982 if (flags & ATMEL_USART_RTS) pin_mask |= (1 << 19);
983 if (flags & ATMEL_USART_CTS) pin_mask |= (1 << 20);
984 if (flags & ATMEL_USART_CLK) pin_mask |= (1 << 16);
986 select_peripheral(PIOA, pin_mask, PERIPH_A, AT32_GPIOF_PULLUP);
989 static inline void configure_usart2_pins(int flags)
991 u32 pin_mask = (1 << 26) | (1 << 27); /* RXD & TXD */
992 if (flags & ATMEL_USART_RTS) pin_mask |= (1 << 30);
993 if (flags & ATMEL_USART_CTS) pin_mask |= (1 << 29);
994 if (flags & ATMEL_USART_CLK) pin_mask |= (1 << 28);
996 select_peripheral(PIOB, pin_mask, PERIPH_B, AT32_GPIOF_PULLUP);
999 static inline void configure_usart3_pins(int flags)
1001 u32 pin_mask = (1 << 18) | (1 << 17); /* RXD & TXD */
1002 if (flags & ATMEL_USART_RTS) pin_mask |= (1 << 16);
1003 if (flags & ATMEL_USART_CTS) pin_mask |= (1 << 15);
1004 if (flags & ATMEL_USART_CLK) pin_mask |= (1 << 19);
1006 select_peripheral(PIOB, pin_mask, PERIPH_B, AT32_GPIOF_PULLUP);
1009 static struct platform_device *__initdata at32_usarts[4];
1011 void __init at32_map_usart(unsigned int hw_id, unsigned int line, int flags)
1013 struct platform_device *pdev;
1017 pdev = &atmel_usart0_device;
1018 configure_usart0_pins(flags);
1021 pdev = &atmel_usart1_device;
1022 configure_usart1_pins(flags);
1025 pdev = &atmel_usart2_device;
1026 configure_usart2_pins(flags);
1029 pdev = &atmel_usart3_device;
1030 configure_usart3_pins(flags);
1036 if (PXSEG(pdev->resource[0].start) == P4SEG) {
1037 /* Addresses in the P4 segment are permanently mapped 1:1 */
1038 struct atmel_uart_data *data = pdev->dev.platform_data;
1039 data->regs = (void __iomem *)pdev->resource[0].start;
1043 at32_usarts[line] = pdev;
1046 struct platform_device *__init at32_add_device_usart(unsigned int id)
1048 platform_device_register(at32_usarts[id]);
1049 return at32_usarts[id];
1052 struct platform_device *atmel_default_console_device;
1054 void __init at32_setup_serial_console(unsigned int usart_id)
1056 atmel_default_console_device = at32_usarts[usart_id];
1059 /* --------------------------------------------------------------------
1061 * -------------------------------------------------------------------- */
1063 #ifdef CONFIG_CPU_AT32AP7000
1064 static struct eth_platform_data macb0_data;
1065 static struct resource macb0_resource[] = {
1069 DEFINE_DEV_DATA(macb, 0);
1070 DEV_CLK(hclk, macb0, hsb, 8);
1071 DEV_CLK(pclk, macb0, pbb, 6);
1073 static struct eth_platform_data macb1_data;
1074 static struct resource macb1_resource[] = {
1078 DEFINE_DEV_DATA(macb, 1);
1079 DEV_CLK(hclk, macb1, hsb, 9);
1080 DEV_CLK(pclk, macb1, pbb, 7);
1082 struct platform_device *__init
1083 at32_add_device_eth(unsigned int id, struct eth_platform_data *data)
1085 struct platform_device *pdev;
1090 pdev = &macb0_device;
1092 pin_mask = (1 << 3); /* TXD0 */
1093 pin_mask |= (1 << 4); /* TXD1 */
1094 pin_mask |= (1 << 7); /* TXEN */
1095 pin_mask |= (1 << 8); /* TXCK */
1096 pin_mask |= (1 << 9); /* RXD0 */
1097 pin_mask |= (1 << 10); /* RXD1 */
1098 pin_mask |= (1 << 13); /* RXER */
1099 pin_mask |= (1 << 15); /* RXDV */
1100 pin_mask |= (1 << 16); /* MDC */
1101 pin_mask |= (1 << 17); /* MDIO */
1103 if (!data->is_rmii) {
1104 pin_mask |= (1 << 0); /* COL */
1105 pin_mask |= (1 << 1); /* CRS */
1106 pin_mask |= (1 << 2); /* TXER */
1107 pin_mask |= (1 << 5); /* TXD2 */
1108 pin_mask |= (1 << 6); /* TXD3 */
1109 pin_mask |= (1 << 11); /* RXD2 */
1110 pin_mask |= (1 << 12); /* RXD3 */
1111 pin_mask |= (1 << 14); /* RXCK */
1112 #ifndef CONFIG_BOARD_MIMC200
1113 pin_mask |= (1 << 18); /* SPD */
1117 select_peripheral(PIOC, pin_mask, PERIPH_A, 0);
1122 pdev = &macb1_device;
1124 pin_mask = (1 << 13); /* TXD0 */
1125 pin_mask |= (1 << 14); /* TXD1 */
1126 pin_mask |= (1 << 11); /* TXEN */
1127 pin_mask |= (1 << 12); /* TXCK */
1128 pin_mask |= (1 << 10); /* RXD0 */
1129 pin_mask |= (1 << 6); /* RXD1 */
1130 pin_mask |= (1 << 5); /* RXER */
1131 pin_mask |= (1 << 4); /* RXDV */
1132 pin_mask |= (1 << 3); /* MDC */
1133 pin_mask |= (1 << 2); /* MDIO */
1135 #ifndef CONFIG_BOARD_MIMC200
1137 pin_mask |= (1 << 15); /* SPD */
1140 select_peripheral(PIOD, pin_mask, PERIPH_B, 0);
1142 if (!data->is_rmii) {
1143 pin_mask = (1 << 19); /* COL */
1144 pin_mask |= (1 << 23); /* CRS */
1145 pin_mask |= (1 << 26); /* TXER */
1146 pin_mask |= (1 << 27); /* TXD2 */
1147 pin_mask |= (1 << 28); /* TXD3 */
1148 pin_mask |= (1 << 29); /* RXD2 */
1149 pin_mask |= (1 << 30); /* RXD3 */
1150 pin_mask |= (1 << 24); /* RXCK */
1152 select_peripheral(PIOC, pin_mask, PERIPH_B, 0);
1160 memcpy(pdev->dev.platform_data, data, sizeof(struct eth_platform_data));
1161 platform_device_register(pdev);
1167 /* --------------------------------------------------------------------
1169 * -------------------------------------------------------------------- */
1170 static struct resource atmel_spi0_resource[] = {
1174 DEFINE_DEV(atmel_spi, 0);
1175 DEV_CLK(spi_clk, atmel_spi0, pba, 0);
1177 static struct resource atmel_spi1_resource[] = {
1181 DEFINE_DEV(atmel_spi, 1);
1182 DEV_CLK(spi_clk, atmel_spi1, pba, 1);
1185 at32_spi_setup_slaves(unsigned int bus_num, struct spi_board_info *b,
1186 unsigned int n, const u8 *pins)
1188 unsigned int pin, mode;
1190 for (; n; n--, b++) {
1191 b->bus_num = bus_num;
1192 if (b->chip_select >= 4)
1194 pin = (unsigned)b->controller_data;
1196 pin = pins[b->chip_select];
1197 b->controller_data = (void *)pin;
1199 mode = AT32_GPIOF_OUTPUT;
1200 if (!(b->mode & SPI_CS_HIGH))
1201 mode |= AT32_GPIOF_HIGH;
1202 at32_select_gpio(pin, mode);
1206 struct platform_device *__init
1207 at32_add_device_spi(unsigned int id, struct spi_board_info *b, unsigned int n)
1210 * Manage the chipselects as GPIOs, normally using the same pins
1211 * the SPI controller expects; but boards can use other pins.
1213 static u8 __initdata spi0_pins[] =
1214 { GPIO_PIN_PA(3), GPIO_PIN_PA(4),
1215 GPIO_PIN_PA(5), GPIO_PIN_PA(20), };
1216 static u8 __initdata spi1_pins[] =
1217 { GPIO_PIN_PB(2), GPIO_PIN_PB(3),
1218 GPIO_PIN_PB(4), GPIO_PIN_PA(27), };
1219 struct platform_device *pdev;
1224 pdev = &atmel_spi0_device;
1225 pin_mask = (1 << 1) | (1 << 2); /* MOSI & SCK */
1227 /* pullup MISO so a level is always defined */
1228 select_peripheral(PIOA, (1 << 0), PERIPH_A, AT32_GPIOF_PULLUP);
1229 select_peripheral(PIOA, pin_mask, PERIPH_A, 0);
1231 at32_spi_setup_slaves(0, b, n, spi0_pins);
1235 pdev = &atmel_spi1_device;
1236 pin_mask = (1 << 1) | (1 << 5); /* MOSI */
1238 /* pullup MISO so a level is always defined */
1239 select_peripheral(PIOB, (1 << 0), PERIPH_B, AT32_GPIOF_PULLUP);
1240 select_peripheral(PIOB, pin_mask, PERIPH_B, 0);
1242 at32_spi_setup_slaves(1, b, n, spi1_pins);
1249 spi_register_board_info(b, n);
1250 platform_device_register(pdev);
1254 /* --------------------------------------------------------------------
1256 * -------------------------------------------------------------------- */
1257 static struct resource atmel_twi0_resource[] __initdata = {
1261 static struct clk atmel_twi0_pclk = {
1264 .mode = pba_clk_mode,
1265 .get_rate = pba_clk_get_rate,
1269 struct platform_device *__init at32_add_device_twi(unsigned int id,
1270 struct i2c_board_info *b,
1273 struct platform_device *pdev;
1279 pdev = platform_device_alloc("atmel_twi", id);
1283 if (platform_device_add_resources(pdev, atmel_twi0_resource,
1284 ARRAY_SIZE(atmel_twi0_resource)))
1285 goto err_add_resources;
1287 pin_mask = (1 << 6) | (1 << 7); /* SDA & SDL */
1289 select_peripheral(PIOA, pin_mask, PERIPH_A, 0);
1291 atmel_twi0_pclk.dev = &pdev->dev;
1294 i2c_register_board_info(id, b, n);
1296 platform_device_add(pdev);
1300 platform_device_put(pdev);
1304 /* --------------------------------------------------------------------
1306 * -------------------------------------------------------------------- */
1307 static struct resource atmel_mci0_resource[] __initdata = {
1311 static struct clk atmel_mci0_pclk = {
1314 .mode = pbb_clk_mode,
1315 .get_rate = pbb_clk_get_rate,
1319 struct platform_device *__init
1320 at32_add_device_mci(unsigned int id, struct mci_platform_data *data)
1322 struct platform_device *pdev;
1323 struct dw_dma_slave *dws = &data->dma_slave;
1327 if (id != 0 || !data)
1330 /* Must have at least one usable slot */
1331 if (!data->slot[0].bus_width && !data->slot[1].bus_width)
1334 pdev = platform_device_alloc("atmel_mci", id);
1338 if (platform_device_add_resources(pdev, atmel_mci0_resource,
1339 ARRAY_SIZE(atmel_mci0_resource)))
1342 dws->dma_dev = &dw_dmac0_device.dev;
1343 dws->reg_width = DW_DMA_SLAVE_WIDTH_32BIT;
1344 dws->cfg_hi = (DWC_CFGH_SRC_PER(0)
1345 | DWC_CFGH_DST_PER(1));
1346 dws->cfg_lo &= ~(DWC_CFGL_HS_DST_POL
1347 | DWC_CFGL_HS_SRC_POL);
1349 if (platform_device_add_data(pdev, data,
1350 sizeof(struct mci_platform_data)))
1353 /* CLK line is common to both slots */
1354 pioa_mask = 1 << 10;
1356 switch (data->slot[0].bus_width) {
1358 pioa_mask |= 1 << 13; /* DATA1 */
1359 pioa_mask |= 1 << 14; /* DATA2 */
1360 pioa_mask |= 1 << 15; /* DATA3 */
1363 pioa_mask |= 1 << 11; /* CMD */
1364 pioa_mask |= 1 << 12; /* DATA0 */
1366 if (gpio_is_valid(data->slot[0].detect_pin))
1367 at32_select_gpio(data->slot[0].detect_pin, 0);
1368 if (gpio_is_valid(data->slot[0].wp_pin))
1369 at32_select_gpio(data->slot[0].wp_pin, 0);
1372 /* Slot is unused */
1378 select_peripheral(PIOA, pioa_mask, PERIPH_A, 0);
1381 switch (data->slot[1].bus_width) {
1383 piob_mask |= 1 << 8; /* DATA1 */
1384 piob_mask |= 1 << 9; /* DATA2 */
1385 piob_mask |= 1 << 10; /* DATA3 */
1388 piob_mask |= 1 << 6; /* CMD */
1389 piob_mask |= 1 << 7; /* DATA0 */
1390 select_peripheral(PIOB, piob_mask, PERIPH_B, 0);
1392 if (gpio_is_valid(data->slot[1].detect_pin))
1393 at32_select_gpio(data->slot[1].detect_pin, 0);
1394 if (gpio_is_valid(data->slot[1].wp_pin))
1395 at32_select_gpio(data->slot[1].wp_pin, 0);
1398 /* Slot is unused */
1401 if (!data->slot[0].bus_width)
1404 data->slot[1].bus_width = 0;
1408 atmel_mci0_pclk.dev = &pdev->dev;
1410 platform_device_add(pdev);
1414 platform_device_put(pdev);
1418 /* --------------------------------------------------------------------
1420 * -------------------------------------------------------------------- */
1421 #if defined(CONFIG_CPU_AT32AP7000) || defined(CONFIG_CPU_AT32AP7002)
1422 static struct atmel_lcdfb_info atmel_lcdfb0_data;
1423 static struct resource atmel_lcdfb0_resource[] = {
1425 .start = 0xff000000,
1427 .flags = IORESOURCE_MEM,
1431 /* Placeholder for pre-allocated fb memory */
1432 .start = 0x00000000,
1437 DEFINE_DEV_DATA(atmel_lcdfb, 0);
1438 DEV_CLK(hck1, atmel_lcdfb0, hsb, 7);
1439 static struct clk atmel_lcdfb0_pixclk = {
1441 .dev = &atmel_lcdfb0_device.dev,
1442 .mode = genclk_mode,
1443 .get_rate = genclk_get_rate,
1444 .set_rate = genclk_set_rate,
1445 .set_parent = genclk_set_parent,
1449 struct platform_device *__init
1450 at32_add_device_lcdc(unsigned int id, struct atmel_lcdfb_info *data,
1451 unsigned long fbmem_start, unsigned long fbmem_len,
1454 struct platform_device *pdev;
1455 struct atmel_lcdfb_info *info;
1456 struct fb_monspecs *monspecs;
1457 struct fb_videomode *modedb;
1458 unsigned int modedb_size;
1459 u32 portc_mask, portd_mask, porte_mask;
1462 * Do a deep copy of the fb data, monspecs and modedb. Make
1463 * sure all allocations are done before setting up the
1466 monspecs = kmemdup(data->default_monspecs,
1467 sizeof(struct fb_monspecs), GFP_KERNEL);
1471 modedb_size = sizeof(struct fb_videomode) * monspecs->modedb_len;
1472 modedb = kmemdup(monspecs->modedb, modedb_size, GFP_KERNEL);
1474 goto err_dup_modedb;
1475 monspecs->modedb = modedb;
1479 pdev = &atmel_lcdfb0_device;
1481 if (pin_mask == 0ULL)
1482 /* Default to "full" lcdc control signals and 24bit */
1483 pin_mask = ATMEL_LCDC_PRI_24BIT | ATMEL_LCDC_PRI_CONTROL;
1485 /* LCDC on port C */
1486 portc_mask = pin_mask & 0xfff80000;
1487 select_peripheral(PIOC, portc_mask, PERIPH_A, 0);
1489 /* LCDC on port D */
1490 portd_mask = pin_mask & 0x0003ffff;
1491 select_peripheral(PIOD, portd_mask, PERIPH_A, 0);
1493 /* LCDC on port E */
1494 porte_mask = (pin_mask >> 32) & 0x0007ffff;
1495 select_peripheral(PIOE, porte_mask, PERIPH_B, 0);
1497 clk_set_parent(&atmel_lcdfb0_pixclk, &pll0);
1498 clk_set_rate(&atmel_lcdfb0_pixclk, clk_get_rate(&pll0));
1502 goto err_invalid_id;
1506 pdev->resource[2].start = fbmem_start;
1507 pdev->resource[2].end = fbmem_start + fbmem_len - 1;
1508 pdev->resource[2].flags = IORESOURCE_MEM;
1511 info = pdev->dev.platform_data;
1512 memcpy(info, data, sizeof(struct atmel_lcdfb_info));
1513 info->default_monspecs = monspecs;
1515 platform_device_register(pdev);
1526 /* --------------------------------------------------------------------
1528 * -------------------------------------------------------------------- */
1529 static struct resource atmel_pwm0_resource[] __initdata = {
1533 static struct clk atmel_pwm0_mck = {
1536 .mode = pbb_clk_mode,
1537 .get_rate = pbb_clk_get_rate,
1541 struct platform_device *__init at32_add_device_pwm(u32 mask)
1543 struct platform_device *pdev;
1549 pdev = platform_device_alloc("atmel_pwm", 0);
1553 if (platform_device_add_resources(pdev, atmel_pwm0_resource,
1554 ARRAY_SIZE(atmel_pwm0_resource)))
1557 if (platform_device_add_data(pdev, &mask, sizeof(mask)))
1561 if (mask & (1 << 0))
1562 pin_mask |= (1 << 28);
1563 if (mask & (1 << 1))
1564 pin_mask |= (1 << 29);
1566 select_peripheral(PIOA, pin_mask, PERIPH_A, 0);
1569 if (mask & (1 << 2))
1570 pin_mask |= (1 << 21);
1571 if (mask & (1 << 3))
1572 pin_mask |= (1 << 22);
1574 select_peripheral(PIOA, pin_mask, PERIPH_B, 0);
1576 atmel_pwm0_mck.dev = &pdev->dev;
1578 platform_device_add(pdev);
1583 platform_device_put(pdev);
1587 /* --------------------------------------------------------------------
1589 * -------------------------------------------------------------------- */
1590 static struct resource ssc0_resource[] = {
1595 DEV_CLK(pclk, ssc0, pba, 7);
1597 static struct resource ssc1_resource[] = {
1602 DEV_CLK(pclk, ssc1, pba, 8);
1604 static struct resource ssc2_resource[] = {
1609 DEV_CLK(pclk, ssc2, pba, 9);
1611 struct platform_device *__init
1612 at32_add_device_ssc(unsigned int id, unsigned int flags)
1614 struct platform_device *pdev;
1619 pdev = &ssc0_device;
1620 if (flags & ATMEL_SSC_RF)
1621 pin_mask |= (1 << 21); /* RF */
1622 if (flags & ATMEL_SSC_RK)
1623 pin_mask |= (1 << 22); /* RK */
1624 if (flags & ATMEL_SSC_TK)
1625 pin_mask |= (1 << 23); /* TK */
1626 if (flags & ATMEL_SSC_TF)
1627 pin_mask |= (1 << 24); /* TF */
1628 if (flags & ATMEL_SSC_TD)
1629 pin_mask |= (1 << 25); /* TD */
1630 if (flags & ATMEL_SSC_RD)
1631 pin_mask |= (1 << 26); /* RD */
1634 select_peripheral(PIOA, pin_mask, PERIPH_A, 0);
1638 pdev = &ssc1_device;
1639 if (flags & ATMEL_SSC_RF)
1640 pin_mask |= (1 << 0); /* RF */
1641 if (flags & ATMEL_SSC_RK)
1642 pin_mask |= (1 << 1); /* RK */
1643 if (flags & ATMEL_SSC_TK)
1644 pin_mask |= (1 << 2); /* TK */
1645 if (flags & ATMEL_SSC_TF)
1646 pin_mask |= (1 << 3); /* TF */
1647 if (flags & ATMEL_SSC_TD)
1648 pin_mask |= (1 << 4); /* TD */
1649 if (flags & ATMEL_SSC_RD)
1650 pin_mask |= (1 << 5); /* RD */
1653 select_peripheral(PIOA, pin_mask, PERIPH_B, 0);
1657 pdev = &ssc2_device;
1658 if (flags & ATMEL_SSC_TD)
1659 pin_mask |= (1 << 13); /* TD */
1660 if (flags & ATMEL_SSC_RD)
1661 pin_mask |= (1 << 14); /* RD */
1662 if (flags & ATMEL_SSC_TK)
1663 pin_mask |= (1 << 15); /* TK */
1664 if (flags & ATMEL_SSC_TF)
1665 pin_mask |= (1 << 16); /* TF */
1666 if (flags & ATMEL_SSC_RF)
1667 pin_mask |= (1 << 17); /* RF */
1668 if (flags & ATMEL_SSC_RK)
1669 pin_mask |= (1 << 18); /* RK */
1672 select_peripheral(PIOB, pin_mask, PERIPH_A, 0);
1679 platform_device_register(pdev);
1683 /* --------------------------------------------------------------------
1684 * USB Device Controller
1685 * -------------------------------------------------------------------- */
1686 static struct resource usba0_resource[] __initdata = {
1688 .start = 0xff300000,
1690 .flags = IORESOURCE_MEM,
1692 .start = 0xfff03000,
1694 .flags = IORESOURCE_MEM,
1698 static struct clk usba0_pclk = {
1701 .mode = pbb_clk_mode,
1702 .get_rate = pbb_clk_get_rate,
1705 static struct clk usba0_hclk = {
1708 .mode = hsb_clk_mode,
1709 .get_rate = hsb_clk_get_rate,
1713 #define EP(nam, idx, maxpkt, maxbk, dma, isoc) \
1717 .fifo_size = maxpkt, \
1718 .nr_banks = maxbk, \
1723 static struct usba_ep_data at32_usba_ep[] __initdata = {
1724 EP("ep0", 0, 64, 1, 0, 0),
1725 EP("ep1", 1, 512, 2, 1, 1),
1726 EP("ep2", 2, 512, 2, 1, 1),
1727 EP("ep3-int", 3, 64, 3, 1, 0),
1728 EP("ep4-int", 4, 64, 3, 1, 0),
1729 EP("ep5", 5, 1024, 3, 1, 1),
1730 EP("ep6", 6, 1024, 3, 1, 1),
1735 struct platform_device *__init
1736 at32_add_device_usba(unsigned int id, struct usba_platform_data *data)
1739 * pdata doesn't have room for any endpoints, so we need to
1740 * append room for the ones we need right after it.
1743 struct usba_platform_data pdata;
1744 struct usba_ep_data ep[7];
1746 struct platform_device *pdev;
1751 pdev = platform_device_alloc("atmel_usba_udc", 0);
1755 if (platform_device_add_resources(pdev, usba0_resource,
1756 ARRAY_SIZE(usba0_resource)))
1760 usba_data.pdata.vbus_pin = data->vbus_pin;
1762 usba_data.pdata.vbus_pin = -EINVAL;
1764 data = &usba_data.pdata;
1765 data->num_ep = ARRAY_SIZE(at32_usba_ep);
1766 memcpy(data->ep, at32_usba_ep, sizeof(at32_usba_ep));
1768 if (platform_device_add_data(pdev, data, sizeof(usba_data)))
1771 if (gpio_is_valid(data->vbus_pin))
1772 at32_select_gpio(data->vbus_pin, 0);
1774 usba0_pclk.dev = &pdev->dev;
1775 usba0_hclk.dev = &pdev->dev;
1777 platform_device_add(pdev);
1782 platform_device_put(pdev);
1786 /* --------------------------------------------------------------------
1787 * IDE / CompactFlash
1788 * -------------------------------------------------------------------- */
1789 #if defined(CONFIG_CPU_AT32AP7000) || defined(CONFIG_CPU_AT32AP7001)
1790 static struct resource at32_smc_cs4_resource[] __initdata = {
1792 .start = 0x04000000,
1794 .flags = IORESOURCE_MEM,
1796 IRQ(~0UL), /* Magic IRQ will be overridden */
1798 static struct resource at32_smc_cs5_resource[] __initdata = {
1800 .start = 0x20000000,
1802 .flags = IORESOURCE_MEM,
1804 IRQ(~0UL), /* Magic IRQ will be overridden */
1807 static int __init at32_init_ide_or_cf(struct platform_device *pdev,
1808 unsigned int cs, unsigned int extint)
1810 static unsigned int extint_pin_map[4] __initdata = {
1816 static bool common_pins_initialized __initdata = false;
1817 unsigned int extint_pin;
1821 if (extint >= ARRAY_SIZE(extint_pin_map))
1823 extint_pin = extint_pin_map[extint];
1827 ret = platform_device_add_resources(pdev,
1828 at32_smc_cs4_resource,
1829 ARRAY_SIZE(at32_smc_cs4_resource));
1834 select_peripheral(PIOE, (1 << 21), PERIPH_A, 0);
1835 hmatrix_sfr_set_bits(HMATRIX_SLAVE_EBI, HMATRIX_EBI_CF0_ENABLE);
1838 ret = platform_device_add_resources(pdev,
1839 at32_smc_cs5_resource,
1840 ARRAY_SIZE(at32_smc_cs5_resource));
1845 select_peripheral(PIOE, (1 << 22), PERIPH_A, 0);
1846 hmatrix_sfr_set_bits(HMATRIX_SLAVE_EBI, HMATRIX_EBI_CF1_ENABLE);
1852 if (!common_pins_initialized) {
1853 pin_mask = (1 << 19); /* CFCE1 -> CS0_N */
1854 pin_mask |= (1 << 20); /* CFCE2 -> CS1_N */
1855 pin_mask |= (1 << 23); /* CFRNW -> DIR */
1856 pin_mask |= (1 << 24); /* NWAIT <- IORDY */
1858 select_peripheral(PIOE, pin_mask, PERIPH_A, 0);
1860 common_pins_initialized = true;
1863 select_peripheral(PIOB, extint_pin, PERIPH_A, AT32_GPIOF_DEGLITCH);
1865 pdev->resource[1].start = EIM_IRQ_BASE + extint;
1866 pdev->resource[1].end = pdev->resource[1].start;
1871 struct platform_device *__init
1872 at32_add_device_ide(unsigned int id, unsigned int extint,
1873 struct ide_platform_data *data)
1875 struct platform_device *pdev;
1877 pdev = platform_device_alloc("at32_ide", id);
1881 if (platform_device_add_data(pdev, data,
1882 sizeof(struct ide_platform_data)))
1885 if (at32_init_ide_or_cf(pdev, data->cs, extint))
1888 platform_device_add(pdev);
1892 platform_device_put(pdev);
1896 struct platform_device *__init
1897 at32_add_device_cf(unsigned int id, unsigned int extint,
1898 struct cf_platform_data *data)
1900 struct platform_device *pdev;
1902 pdev = platform_device_alloc("at32_cf", id);
1906 if (platform_device_add_data(pdev, data,
1907 sizeof(struct cf_platform_data)))
1910 if (at32_init_ide_or_cf(pdev, data->cs, extint))
1913 if (gpio_is_valid(data->detect_pin))
1914 at32_select_gpio(data->detect_pin, AT32_GPIOF_DEGLITCH);
1915 if (gpio_is_valid(data->reset_pin))
1916 at32_select_gpio(data->reset_pin, 0);
1917 if (gpio_is_valid(data->vcc_pin))
1918 at32_select_gpio(data->vcc_pin, 0);
1919 /* READY is used as extint, so we can't select it as gpio */
1921 platform_device_add(pdev);
1925 platform_device_put(pdev);
1930 /* --------------------------------------------------------------------
1931 * NAND Flash / SmartMedia
1932 * -------------------------------------------------------------------- */
1933 static struct resource smc_cs3_resource[] __initdata = {
1935 .start = 0x0c000000,
1937 .flags = IORESOURCE_MEM,
1939 .start = 0xfff03c00,
1941 .flags = IORESOURCE_MEM,
1945 struct platform_device *__init
1946 at32_add_device_nand(unsigned int id, struct atmel_nand_data *data)
1948 struct platform_device *pdev;
1950 if (id != 0 || !data)
1953 pdev = platform_device_alloc("atmel_nand", id);
1957 if (platform_device_add_resources(pdev, smc_cs3_resource,
1958 ARRAY_SIZE(smc_cs3_resource)))
1961 if (platform_device_add_data(pdev, data,
1962 sizeof(struct atmel_nand_data)))
1965 hmatrix_sfr_set_bits(HMATRIX_SLAVE_EBI, HMATRIX_EBI_NAND_ENABLE);
1966 if (data->enable_pin)
1967 at32_select_gpio(data->enable_pin,
1968 AT32_GPIOF_OUTPUT | AT32_GPIOF_HIGH);
1970 at32_select_gpio(data->rdy_pin, 0);
1972 at32_select_gpio(data->det_pin, 0);
1974 platform_device_add(pdev);
1978 platform_device_put(pdev);
1982 /* --------------------------------------------------------------------
1984 * -------------------------------------------------------------------- */
1985 static struct resource atmel_ac97c0_resource[] __initdata = {
1989 static struct clk atmel_ac97c0_pclk = {
1992 .mode = pbb_clk_mode,
1993 .get_rate = pbb_clk_get_rate,
1997 struct platform_device *__init
1998 at32_add_device_ac97c(unsigned int id, struct ac97c_platform_data *data,
2001 struct platform_device *pdev;
2002 struct dw_dma_slave *rx_dws;
2003 struct dw_dma_slave *tx_dws;
2004 struct ac97c_platform_data _data;
2010 pdev = platform_device_alloc("atmel_ac97c", id);
2014 if (platform_device_add_resources(pdev, atmel_ac97c0_resource,
2015 ARRAY_SIZE(atmel_ac97c0_resource)))
2016 goto out_free_resources;
2020 memset(data, 0, sizeof(struct ac97c_platform_data));
2021 data->reset_pin = -ENODEV;
2024 rx_dws = &data->rx_dws;
2025 tx_dws = &data->tx_dws;
2027 /* Check if DMA slave interface for capture should be configured. */
2028 if (flags & AC97C_CAPTURE) {
2029 rx_dws->dma_dev = &dw_dmac0_device.dev;
2030 rx_dws->reg_width = DW_DMA_SLAVE_WIDTH_16BIT;
2031 rx_dws->cfg_hi = DWC_CFGH_SRC_PER(3);
2032 rx_dws->cfg_lo &= ~(DWC_CFGL_HS_DST_POL | DWC_CFGL_HS_SRC_POL);
2035 /* Check if DMA slave interface for playback should be configured. */
2036 if (flags & AC97C_PLAYBACK) {
2037 tx_dws->dma_dev = &dw_dmac0_device.dev;
2038 tx_dws->reg_width = DW_DMA_SLAVE_WIDTH_16BIT;
2039 tx_dws->cfg_hi = DWC_CFGH_DST_PER(4);
2040 tx_dws->cfg_lo &= ~(DWC_CFGL_HS_DST_POL | DWC_CFGL_HS_SRC_POL);
2043 if (platform_device_add_data(pdev, data,
2044 sizeof(struct ac97c_platform_data)))
2045 goto out_free_resources;
2047 /* SDO | SYNC | SCLK | SDI */
2048 pin_mask = (1 << 20) | (1 << 21) | (1 << 22) | (1 << 23);
2050 select_peripheral(PIOB, pin_mask, PERIPH_B, 0);
2052 if (gpio_is_valid(data->reset_pin))
2053 at32_select_gpio(data->reset_pin, AT32_GPIOF_OUTPUT
2056 atmel_ac97c0_pclk.dev = &pdev->dev;
2058 platform_device_add(pdev);
2062 platform_device_put(pdev);
2066 /* --------------------------------------------------------------------
2068 * -------------------------------------------------------------------- */
2069 static struct resource abdac0_resource[] __initdata = {
2073 static struct clk abdac0_pclk = {
2076 .mode = pbb_clk_mode,
2077 .get_rate = pbb_clk_get_rate,
2080 static struct clk abdac0_sample_clk = {
2081 .name = "sample_clk",
2082 .mode = genclk_mode,
2083 .get_rate = genclk_get_rate,
2084 .set_rate = genclk_set_rate,
2085 .set_parent = genclk_set_parent,
2089 struct platform_device *__init
2090 at32_add_device_abdac(unsigned int id, struct atmel_abdac_pdata *data)
2092 struct platform_device *pdev;
2093 struct dw_dma_slave *dws;
2096 if (id != 0 || !data)
2099 pdev = platform_device_alloc("atmel_abdac", id);
2103 if (platform_device_add_resources(pdev, abdac0_resource,
2104 ARRAY_SIZE(abdac0_resource)))
2105 goto out_free_resources;
2109 dws->dma_dev = &dw_dmac0_device.dev;
2110 dws->reg_width = DW_DMA_SLAVE_WIDTH_32BIT;
2111 dws->cfg_hi = DWC_CFGH_DST_PER(2);
2112 dws->cfg_lo &= ~(DWC_CFGL_HS_DST_POL | DWC_CFGL_HS_SRC_POL);
2114 if (platform_device_add_data(pdev, data,
2115 sizeof(struct atmel_abdac_pdata)))
2116 goto out_free_resources;
2118 pin_mask = (1 << 20) | (1 << 22); /* DATA1 & DATAN1 */
2119 pin_mask |= (1 << 21) | (1 << 23); /* DATA0 & DATAN0 */
2121 select_peripheral(PIOB, pin_mask, PERIPH_A, 0);
2123 abdac0_pclk.dev = &pdev->dev;
2124 abdac0_sample_clk.dev = &pdev->dev;
2126 platform_device_add(pdev);
2130 platform_device_put(pdev);
2134 /* --------------------------------------------------------------------
2136 * -------------------------------------------------------------------- */
2137 static struct clk gclk0 = {
2139 .mode = genclk_mode,
2140 .get_rate = genclk_get_rate,
2141 .set_rate = genclk_set_rate,
2142 .set_parent = genclk_set_parent,
2145 static struct clk gclk1 = {
2147 .mode = genclk_mode,
2148 .get_rate = genclk_get_rate,
2149 .set_rate = genclk_set_rate,
2150 .set_parent = genclk_set_parent,
2153 static struct clk gclk2 = {
2155 .mode = genclk_mode,
2156 .get_rate = genclk_get_rate,
2157 .set_rate = genclk_set_rate,
2158 .set_parent = genclk_set_parent,
2161 static struct clk gclk3 = {
2163 .mode = genclk_mode,
2164 .get_rate = genclk_get_rate,
2165 .set_rate = genclk_set_rate,
2166 .set_parent = genclk_set_parent,
2169 static struct clk gclk4 = {
2171 .mode = genclk_mode,
2172 .get_rate = genclk_get_rate,
2173 .set_rate = genclk_set_rate,
2174 .set_parent = genclk_set_parent,
2178 static __initdata struct clk *init_clocks[] = {
2209 &atmel_usart0_usart,
2210 &atmel_usart1_usart,
2211 &atmel_usart2_usart,
2212 &atmel_usart3_usart,
2214 #if defined(CONFIG_CPU_AT32AP7000)
2220 &atmel_spi0_spi_clk,
2221 &atmel_spi1_spi_clk,
2224 #if defined(CONFIG_CPU_AT32AP7000) || defined(CONFIG_CPU_AT32AP7002)
2226 &atmel_lcdfb0_pixclk,
2243 void __init setup_platform(void)
2245 u32 cpu_mask = 0, hsb_mask = 0, pba_mask = 0, pbb_mask = 0;
2248 if (pm_readl(MCCTRL) & PM_BIT(PLLSEL)) {
2250 cpu_clk.parent = &pll0;
2253 cpu_clk.parent = &osc0;
2256 if (pm_readl(PLL0) & PM_BIT(PLLOSC))
2257 pll0.parent = &osc1;
2258 if (pm_readl(PLL1) & PM_BIT(PLLOSC))
2259 pll1.parent = &osc1;
2261 genclk_init_parent(&gclk0);
2262 genclk_init_parent(&gclk1);
2263 genclk_init_parent(&gclk2);
2264 genclk_init_parent(&gclk3);
2265 genclk_init_parent(&gclk4);
2266 #if defined(CONFIG_CPU_AT32AP7000) || defined(CONFIG_CPU_AT32AP7002)
2267 genclk_init_parent(&atmel_lcdfb0_pixclk);
2269 genclk_init_parent(&abdac0_sample_clk);
2272 * Build initial dynamic clock list by registering all clocks
2274 * At the same time, turn on all clocks that have at least one
2275 * user already, and turn off everything else. We only do this
2276 * for module clocks, and even though it isn't particularly
2277 * pretty to check the address of the mode function, it should
2280 for (i = 0; i < ARRAY_SIZE(init_clocks); i++) {
2281 struct clk *clk = init_clocks[i];
2283 /* first, register clock */
2284 at32_clk_register(clk);
2286 if (clk->users == 0)
2289 if (clk->mode == &cpu_clk_mode)
2290 cpu_mask |= 1 << clk->index;
2291 else if (clk->mode == &hsb_clk_mode)
2292 hsb_mask |= 1 << clk->index;
2293 else if (clk->mode == &pba_clk_mode)
2294 pba_mask |= 1 << clk->index;
2295 else if (clk->mode == &pbb_clk_mode)
2296 pbb_mask |= 1 << clk->index;
2299 pm_writel(CPU_MASK, cpu_mask);
2300 pm_writel(HSB_MASK, hsb_mask);
2301 pm_writel(PBA_MASK, pba_mask);
2302 pm_writel(PBB_MASK, pbb_mask);
2304 /* Initialize the port muxes */
2305 at32_init_pio(&pio0_device);
2306 at32_init_pio(&pio1_device);
2307 at32_init_pio(&pio2_device);
2308 at32_init_pio(&pio3_device);
2309 at32_init_pio(&pio4_device);
2312 struct gen_pool *sram_pool;
2314 static int __init sram_init(void)
2316 struct gen_pool *pool;
2318 /* 1KiB granularity */
2319 pool = gen_pool_create(10, -1);
2323 if (gen_pool_add(pool, 0x24000000, 0x8000, -1))
2330 gen_pool_destroy(pool);
2332 pr_err("Failed to create SRAM pool\n");
2335 core_initcall(sram_init);