diff options
Diffstat (limited to 'arch/mips/alchemy/common')
-rw-r--r-- | arch/mips/alchemy/common/Makefile | 4 | ||||
-rw-r--r-- | arch/mips/alchemy/common/au1xxx_irqmap.c | 205 | ||||
-rw-r--r-- | arch/mips/alchemy/common/clocks.c | 65 | ||||
-rw-r--r-- | arch/mips/alchemy/common/cputable.c | 52 | ||||
-rw-r--r-- | arch/mips/alchemy/common/dbdma.c | 65 | ||||
-rw-r--r-- | arch/mips/alchemy/common/irq.c | 745 | ||||
-rw-r--r-- | arch/mips/alchemy/common/power.c | 406 | ||||
-rw-r--r-- | arch/mips/alchemy/common/reset.c | 2 | ||||
-rw-r--r-- | arch/mips/alchemy/common/setup.c | 71 | ||||
-rw-r--r-- | arch/mips/alchemy/common/sleeper.S | 118 | ||||
-rw-r--r-- | arch/mips/alchemy/common/time.c | 311 |
11 files changed, 755 insertions, 1289 deletions
diff --git a/arch/mips/alchemy/common/Makefile b/arch/mips/alchemy/common/Makefile index df48fd65bbf3..d50d4764eafe 100644 --- a/arch/mips/alchemy/common/Makefile +++ b/arch/mips/alchemy/common/Makefile @@ -6,8 +6,8 @@ # obj-y += prom.o irq.o puts.o time.o reset.o \ - au1xxx_irqmap.o clocks.o platform.o power.o setup.o \ - sleeper.o cputable.o dma.o dbdma.o gpio.o + clocks.o platform.o power.o setup.o \ + sleeper.o dma.o dbdma.o gpio.o obj-$(CONFIG_PCI) += pci.o diff --git a/arch/mips/alchemy/common/au1xxx_irqmap.c b/arch/mips/alchemy/common/au1xxx_irqmap.c deleted file mode 100644 index c7ca1596394c..000000000000 --- a/arch/mips/alchemy/common/au1xxx_irqmap.c +++ /dev/null @@ -1,205 +0,0 @@ -/* - * BRIEF MODULE DESCRIPTION - * Au1xxx processor specific IRQ tables - * - * Copyright 2004 Embedded Edge, LLC - * dan@embeddededge.com - * - * This program is free software; you can redistribute it and/or modify it - * under the terms of the GNU General Public License as published by the - * Free Software Foundation; either version 2 of the License, or (at your - * option) any later version. - * - * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED - * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN - * NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, - * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT - * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF - * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON - * ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT - * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF - * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - * - * You should have received a copy of the GNU General Public License along - * with this program; if not, write to the Free Software Foundation, Inc., - * 675 Mass Ave, Cambridge, MA 02139, USA. - */ -#include <linux/init.h> -#include <linux/kernel.h> - -#include <au1000.h> - -/* The IC0 interrupt table. This is processor, rather than - * board dependent, so no reason to keep this info in the board - * dependent files. - * - * Careful if you change match 2 request! - * The interrupt handler is called directly from the low level dispatch code. - */ -struct au1xxx_irqmap __initdata au1xxx_ic0_map[] = { - -#if defined(CONFIG_SOC_AU1000) - { AU1000_UART0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_UART1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_UART2_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_UART3_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_SSI0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_SSI1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+1, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+2, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+3, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+4, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+5, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+6, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+7, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_TOY_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH2_INT, INTC_INT_RISE_EDGE, 1 }, - { AU1000_RTC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH2_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_IRDA_TX_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_IRDA_RX_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_USB_DEV_REQ_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_USB_DEV_SUS_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_USB_HOST_INT, INTC_INT_LOW_LEVEL, 0 }, - { AU1000_ACSYNC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_MAC0_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_MAC1_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_AC97C_INT, INTC_INT_RISE_EDGE, 0 }, - -#elif defined(CONFIG_SOC_AU1500) - - { AU1500_UART0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_PCI_INTA, INTC_INT_LOW_LEVEL, 0 }, - { AU1000_PCI_INTB, INTC_INT_LOW_LEVEL, 0 }, - { AU1500_UART3_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_PCI_INTC, INTC_INT_LOW_LEVEL, 0 }, - { AU1000_PCI_INTD, INTC_INT_LOW_LEVEL, 0 }, - { AU1000_DMA_INT_BASE, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+1, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+2, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+3, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+4, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+5, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+6, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+7, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_TOY_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH2_INT, INTC_INT_RISE_EDGE, 1 }, - { AU1000_RTC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH2_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_USB_DEV_REQ_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_USB_DEV_SUS_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_USB_HOST_INT, INTC_INT_LOW_LEVEL, 0 }, - { AU1000_ACSYNC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1500_MAC0_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1500_MAC1_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_AC97C_INT, INTC_INT_RISE_EDGE, 0 }, - -#elif defined(CONFIG_SOC_AU1100) - - { AU1100_UART0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1100_UART1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1100_SD_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1100_UART3_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_SSI0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_SSI1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+1, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+2, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+3, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+4, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+5, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+6, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_DMA_INT_BASE+7, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_TOY_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH2_INT, INTC_INT_RISE_EDGE, 1 }, - { AU1000_RTC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH2_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_IRDA_TX_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_IRDA_RX_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_USB_DEV_REQ_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_USB_DEV_SUS_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_USB_HOST_INT, INTC_INT_LOW_LEVEL, 0 }, - { AU1000_ACSYNC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1100_MAC0_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - /* { AU1000_GPIO215_208_INT, INTC_INT_HIGH_LEVEL, 0 }, */ - { AU1100_LCD_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_AC97C_INT, INTC_INT_RISE_EDGE, 0 }, - -#elif defined(CONFIG_SOC_AU1550) - - { AU1550_UART0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_PCI_INTA, INTC_INT_LOW_LEVEL, 0 }, - { AU1550_PCI_INTB, INTC_INT_LOW_LEVEL, 0 }, - { AU1550_DDMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_CRYPTO_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_PCI_INTC, INTC_INT_LOW_LEVEL, 0 }, - { AU1550_PCI_INTD, INTC_INT_LOW_LEVEL, 0 }, - { AU1550_PCI_RST_INT, INTC_INT_LOW_LEVEL, 0 }, - { AU1550_UART1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_UART3_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_PSC0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_PSC1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_PSC2_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_PSC3_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_TOY_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH2_INT, INTC_INT_RISE_EDGE, 1 }, - { AU1000_RTC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH2_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1550_NAND_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1550_USB_DEV_REQ_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_USB_DEV_SUS_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1550_USB_HOST_INT, INTC_INT_LOW_LEVEL, 0 }, - { AU1550_MAC0_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1550_MAC1_DMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - -#elif defined(CONFIG_SOC_AU1200) - - { AU1200_UART0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_SWT_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1200_SD_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_DDMA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_MAE_BE_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_UART1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_MAE_FE_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_PSC0_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_PSC1_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_AES_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_CAMERA_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1000_TOY_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_TOY_MATCH2_INT, INTC_INT_RISE_EDGE, 1 }, - { AU1000_RTC_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH0_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH1_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1000_RTC_MATCH2_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1200_NAND_INT, INTC_INT_RISE_EDGE, 0 }, - { AU1200_USB_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_LCD_INT, INTC_INT_HIGH_LEVEL, 0 }, - { AU1200_MAE_BOTH_INT, INTC_INT_HIGH_LEVEL, 0 }, - -#else -#error "Error: Unknown Alchemy SOC" -#endif - -}; - -int __initdata au1xxx_ic0_nr_irqs = ARRAY_SIZE(au1xxx_ic0_map); diff --git a/arch/mips/alchemy/common/clocks.c b/arch/mips/alchemy/common/clocks.c index 043429d17c5f..d8991854530e 100644 --- a/arch/mips/alchemy/common/clocks.c +++ b/arch/mips/alchemy/common/clocks.c @@ -27,12 +27,21 @@ */ #include <linux/module.h> +#include <linux/spinlock.h> +#include <asm/time.h> #include <asm/mach-au1x00/au1000.h> +/* + * I haven't found anyone that doesn't use a 12 MHz source clock, + * but just in case..... + */ +#define AU1000_SRC_CLK 12000000 + static unsigned int au1x00_clock; /* Hz */ -static unsigned int lcd_clock; /* KHz */ static unsigned long uart_baud_base; +static DEFINE_SPINLOCK(time_lock); + /* * Set the au1000_clock */ @@ -63,31 +72,45 @@ void set_au1x00_uart_baud_base(unsigned long new_baud_base) } /* - * Calculate the Au1x00's LCD clock based on the current - * cpu clock and the system bus clock, and try to keep it - * below 40 MHz (the Pb1000 board can lock-up if the LCD - * clock is over 40 MHz). + * We read the real processor speed from the PLL. This is important + * because it is more accurate than computing it from the 32 KHz + * counter, if it exists. If we don't have an accurate processor + * speed, all of the peripherals that derive their clocks based on + * this advertised speed will introduce error and sometimes not work + * properly. This function is futher convoluted to still allow configurations + * to do that in case they have really, really old silicon with a + * write-only PLL register. -- Dan */ -void set_au1x00_lcd_clock(void) +unsigned long au1xxx_calc_clock(void) { - unsigned int static_cfg0; - unsigned int sys_busclk = (get_au1x00_speed() / 1000) / - ((int)(au_readl(SYS_POWERCTRL) & 0x03) + 2); + unsigned long cpu_speed; + unsigned long flags; - static_cfg0 = au_readl(MEM_STCFG0); + spin_lock_irqsave(&time_lock, flags); - if (static_cfg0 & (1 << 11)) - lcd_clock = sys_busclk / 5; /* note: BCLK switching fails with D5 */ + /* + * On early Au1000, sys_cpupll was write-only. Since these + * silicon versions of Au1000 are not sold by AMD, we don't bend + * over backwards trying to determine the frequency. + */ + if (au1xxx_cpu_has_pll_wo()) +#ifdef CONFIG_SOC_AU1000_FREQUENCY + cpu_speed = CONFIG_SOC_AU1000_FREQUENCY; +#else + cpu_speed = 396000000; +#endif else - lcd_clock = sys_busclk / 4; + cpu_speed = (au_readl(SYS_CPUPLL) & 0x0000003f) * AU1000_SRC_CLK; - if (lcd_clock > 50000) /* Epson MAX */ - printk(KERN_WARNING "warning: LCD clock too high (%u KHz)\n", - lcd_clock); -} + /* On Alchemy CPU:counter ratio is 1:1 */ + mips_hpt_frequency = cpu_speed; + /* Equation: Baudrate = CPU / (SD * 2 * CLKDIV * 16) */ + set_au1x00_uart_baud_base(cpu_speed / (2 * ((int)(au_readl(SYS_POWERCTRL) + & 0x03) + 2) * 16)); -unsigned int get_au1x00_lcd_clock(void) -{ - return lcd_clock; + spin_unlock_irqrestore(&time_lock, flags); + + set_au1x00_speed(cpu_speed); + + return cpu_speed; } -EXPORT_SYMBOL(get_au1x00_lcd_clock); diff --git a/arch/mips/alchemy/common/cputable.c b/arch/mips/alchemy/common/cputable.c deleted file mode 100644 index ba6430bc2d03..000000000000 --- a/arch/mips/alchemy/common/cputable.c +++ /dev/null @@ -1,52 +0,0 @@ -/* - * arch/mips/au1000/common/cputable.c - * - * Copyright (C) 2004 Dan Malek (dan@embeddededge.com) - * Copied from PowerPC and updated for Alchemy Au1xxx processors. - * - * Copyright (C) 2001 Ben. Herrenschmidt (benh@kernel.crashing.org) - * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public License - * as published by the Free Software Foundation; either version - * 2 of the License, or (at your option) any later version. - */ - -#include <asm/mach-au1x00/au1000.h> - -struct cpu_spec *cur_cpu_spec[NR_CPUS]; - -/* With some thought, we can probably use the mask to reduce the - * size of the table. - */ -struct cpu_spec cpu_specs[] = { - { 0xffffffff, 0x00030100, "Au1000 DA", 1, 0, 1 }, - { 0xffffffff, 0x00030201, "Au1000 HA", 1, 0, 1 }, - { 0xffffffff, 0x00030202, "Au1000 HB", 1, 0, 1 }, - { 0xffffffff, 0x00030203, "Au1000 HC", 1, 1, 0 }, - { 0xffffffff, 0x00030204, "Au1000 HD", 1, 1, 0 }, - { 0xffffffff, 0x01030200, "Au1500 AB", 1, 1, 0 }, - { 0xffffffff, 0x01030201, "Au1500 AC", 0, 1, 0 }, - { 0xffffffff, 0x01030202, "Au1500 AD", 0, 1, 0 }, - { 0xffffffff, 0x02030200, "Au1100 AB", 1, 1, 0 }, - { 0xffffffff, 0x02030201, "Au1100 BA", 1, 1, 0 }, - { 0xffffffff, 0x02030202, "Au1100 BC", 1, 1, 0 }, - { 0xffffffff, 0x02030203, "Au1100 BD", 0, 1, 0 }, - { 0xffffffff, 0x02030204, "Au1100 BE", 0, 1, 0 }, - { 0xffffffff, 0x03030200, "Au1550 AA", 0, 1, 0 }, - { 0xffffffff, 0x04030200, "Au1200 AB", 0, 0, 0 }, - { 0xffffffff, 0x04030201, "Au1200 AC", 1, 0, 0 }, - { 0x00000000, 0x00000000, "Unknown Au1xxx", 1, 0, 0 } -}; - -void set_cpuspec(void) -{ - struct cpu_spec *sp; - u32 prid; - - prid = read_c0_prid(); - sp = cpu_specs; - while ((prid & sp->prid_mask) != sp->prid_value) - sp++; - cur_cpu_spec[0] = sp; -} diff --git a/arch/mips/alchemy/common/dbdma.c b/arch/mips/alchemy/common/dbdma.c index 601ee9180ee4..3ab6d80d150d 100644 --- a/arch/mips/alchemy/common/dbdma.c +++ b/arch/mips/alchemy/common/dbdma.c @@ -174,6 +174,11 @@ static dbdev_tab_t dbdev_tab[] = { #define DBDEV_TAB_SIZE ARRAY_SIZE(dbdev_tab) +#ifdef CONFIG_PM +static u32 au1xxx_dbdma_pm_regs[NUM_DBDMA_CHANS + 1][8]; +#endif + + static chan_tab_t *chan_tab_ptr[NUM_DBDMA_CHANS]; static dbdev_tab_t *find_dbdev_id(u32 id) @@ -975,4 +980,64 @@ u32 au1xxx_dbdma_put_dscr(u32 chanid, au1x_ddma_desc_t *dscr) return nbytes; } +#ifdef CONFIG_PM +void au1xxx_dbdma_suspend(void) +{ + int i; + u32 addr; + + addr = DDMA_GLOBAL_BASE; + au1xxx_dbdma_pm_regs[0][0] = au_readl(addr + 0x00); + au1xxx_dbdma_pm_regs[0][1] = au_readl(addr + 0x04); + au1xxx_dbdma_pm_regs[0][2] = au_readl(addr + 0x08); + au1xxx_dbdma_pm_regs[0][3] = au_readl(addr + 0x0c); + + /* save channel configurations */ + for (i = 1, addr = DDMA_CHANNEL_BASE; i < NUM_DBDMA_CHANS; i++) { + au1xxx_dbdma_pm_regs[i][0] = au_readl(addr + 0x00); + au1xxx_dbdma_pm_regs[i][1] = au_readl(addr + 0x04); + au1xxx_dbdma_pm_regs[i][2] = au_readl(addr + 0x08); + au1xxx_dbdma_pm_regs[i][3] = au_readl(addr + 0x0c); + au1xxx_dbdma_pm_regs[i][4] = au_readl(addr + 0x10); + au1xxx_dbdma_pm_regs[i][5] = au_readl(addr + 0x14); + au1xxx_dbdma_pm_regs[i][6] = au_readl(addr + 0x18); + + /* halt channel */ + au_writel(au1xxx_dbdma_pm_regs[i][0] & ~1, addr + 0x00); + au_sync(); + while (!(au_readl(addr + 0x14) & 1)) + au_sync(); + + addr += 0x100; /* next channel base */ + } + /* disable channel interrupts */ + au_writel(0, DDMA_GLOBAL_BASE + 0x0c); + au_sync(); +} + +void au1xxx_dbdma_resume(void) +{ + int i; + u32 addr; + + addr = DDMA_GLOBAL_BASE; + au_writel(au1xxx_dbdma_pm_regs[0][0], addr + 0x00); + au_writel(au1xxx_dbdma_pm_regs[0][1], addr + 0x04); + au_writel(au1xxx_dbdma_pm_regs[0][2], addr + 0x08); + au_writel(au1xxx_dbdma_pm_regs[0][3], addr + 0x0c); + + /* restore channel configurations */ + for (i = 1, addr = DDMA_CHANNEL_BASE; i < NUM_DBDMA_CHANS; i++) { + au_writel(au1xxx_dbdma_pm_regs[i][0], addr + 0x00); + au_writel(au1xxx_dbdma_pm_regs[i][1], addr + 0x04); + au_writel(au1xxx_dbdma_pm_regs[i][2], addr + 0x08); + au_writel(au1xxx_dbdma_pm_regs[i][3], addr + 0x0c); + au_writel(au1xxx_dbdma_pm_regs[i][4], addr + 0x10); + au_writel(au1xxx_dbdma_pm_regs[i][5], addr + 0x14); + au_writel(au1xxx_dbdma_pm_regs[i][6], addr + 0x18); + au_sync(); + addr += 0x100; /* next channel base */ + } +} +#endif /* CONFIG_PM */ #endif /* defined(CONFIG_SOC_AU1550) || defined(CONFIG_SOC_AU1200) */ diff --git a/arch/mips/alchemy/common/irq.c b/arch/mips/alchemy/common/irq.c index 40c6ceceb5f9..c88c821b4c36 100644 --- a/arch/mips/alchemy/common/irq.c +++ b/arch/mips/alchemy/common/irq.c @@ -24,6 +24,7 @@ * with this program; if not, write to the Free Software Foundation, Inc., * 675 Mass Ave, Cambridge, MA 02139, USA. */ + #include <linux/bitops.h> #include <linux/init.h> #include <linux/interrupt.h> @@ -36,15 +37,172 @@ #include <asm/mach-pb1x00/pb1000.h> #endif -#define EXT_INTC0_REQ0 2 /* IP 2 */ -#define EXT_INTC0_REQ1 3 /* IP 3 */ -#define EXT_INTC1_REQ0 4 /* IP 4 */ -#define EXT_INTC1_REQ1 5 /* IP 5 */ -#define MIPS_TIMER_IP 7 /* IP 7 */ - -void (*board_init_irq)(void) __initdata = NULL; +static int au1x_ic_settype(unsigned int irq, unsigned int flow_type); + +/* per-processor fixed function irqs */ +struct au1xxx_irqmap au1xxx_ic0_map[] __initdata = { + +#if defined(CONFIG_SOC_AU1000) + { AU1000_UART0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_UART1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_UART2_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_UART3_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_SSI0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_SSI1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+1, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+2, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+3, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+4, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+5, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+6, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+7, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_TOY_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 1 }, + { AU1000_RTC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_IRDA_TX_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_IRDA_RX_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_USB_DEV_REQ_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_USB_DEV_SUS_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_USB_HOST_INT, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1000_ACSYNC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_MAC0_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_MAC1_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_AC97C_INT, IRQ_TYPE_EDGE_RISING, 0 }, + +#elif defined(CONFIG_SOC_AU1500) + + { AU1500_UART0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_PCI_INTA, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1000_PCI_INTB, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1500_UART3_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_PCI_INTC, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1000_PCI_INTD, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1000_DMA_INT_BASE, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+1, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+2, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+3, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+4, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+5, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+6, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+7, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_TOY_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 1 }, + { AU1000_RTC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_USB_DEV_REQ_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_USB_DEV_SUS_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_USB_HOST_INT, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1000_ACSYNC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1500_MAC0_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1500_MAC1_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_AC97C_INT, IRQ_TYPE_EDGE_RISING, 0 }, + +#elif defined(CONFIG_SOC_AU1100) + + { AU1100_UART0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1100_UART1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1100_SD_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1100_UART3_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_SSI0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_SSI1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+1, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+2, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+3, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+4, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+5, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+6, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_DMA_INT_BASE+7, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_TOY_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 1 }, + { AU1000_RTC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_IRDA_TX_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_IRDA_RX_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_USB_DEV_REQ_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_USB_DEV_SUS_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_USB_HOST_INT, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1000_ACSYNC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1100_MAC0_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1100_LCD_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_AC97C_INT, IRQ_TYPE_EDGE_RISING, 0 }, + +#elif defined(CONFIG_SOC_AU1550) + + { AU1550_UART0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_PCI_INTA, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1550_PCI_INTB, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1550_DDMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_CRYPTO_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_PCI_INTC, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1550_PCI_INTD, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1550_PCI_RST_INT, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1550_UART1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_UART3_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_PSC0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_PSC1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_PSC2_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_PSC3_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_TOY_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 1 }, + { AU1000_RTC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1550_NAND_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1550_USB_DEV_REQ_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_USB_DEV_SUS_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1550_USB_HOST_INT, IRQ_TYPE_LEVEL_LOW, 0 }, + { AU1550_MAC0_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1550_MAC1_DMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + +#elif defined(CONFIG_SOC_AU1200) + + { AU1200_UART0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_SWT_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1200_SD_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_DDMA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_MAE_BE_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_UART1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_MAE_FE_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_PSC0_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_PSC1_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_AES_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_CAMERA_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1000_TOY_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_TOY_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 1 }, + { AU1000_RTC_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH0_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH1_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1000_RTC_MATCH2_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1200_NAND_INT, IRQ_TYPE_EDGE_RISING, 0 }, + { AU1200_USB_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_LCD_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + { AU1200_MAE_BOTH_INT, IRQ_TYPE_LEVEL_HIGH, 0 }, + +#else +#error "Error: Unknown Alchemy SOC" +#endif +}; -static DEFINE_SPINLOCK(irq_lock); #ifdef CONFIG_PM @@ -130,67 +288,47 @@ void restore_au1xxx_intctl(void) #endif /* CONFIG_PM */ -inline void local_enable_irq(unsigned int irq_nr) +static void au1x_ic0_unmask(unsigned int irq_nr) { unsigned int bit = irq_nr - AU1000_INTC0_INT_BASE; - - if (bit >= 32) { - au_writel(1 << (bit - 32), IC1_MASKSET); - au_writel(1 << (bit - 32), IC1_WAKESET); - } else { - au_writel(1 << bit, IC0_MASKSET); - au_writel(1 << bit, IC0_WAKESET); - } + au_writel(1 << bit, IC0_MASKSET); + au_writel(1 << bit, IC0_WAKESET); au_sync(); } - -inline void local_disable_irq(unsigned int irq_nr) +static void au1x_ic1_unmask(unsigned int irq_nr) { - unsigned int bit = irq_nr - AU1000_INTC0_INT_BASE; + unsigned int bit = irq_nr - AU1000_INTC1_INT_BASE; + au_writel(1 << bit, IC1_MASKSET); + au_writel(1 << bit, IC1_WAKESET); - if (bit >= 32) { - au_writel(1 << (bit - 32), IC1_MASKCLR); - au_writel(1 << (bit - 32), IC1_WAKECLR); - } else { - au_writel(1 << bit, IC0_MASKCLR); - au_writel(1 << bit, IC0_WAKECLR); - } +/* very hacky. does the pb1000 cpld auto-disable this int? + * nowhere in the current kernel sources is it disabled. --mlau + */ +#if defined(CONFIG_MIPS_PB1000) + if (irq_nr == AU1000_GPIO_15) + au_writel(0x4000, PB1000_MDR); /* enable int */ +#endif au_sync(); } - -static inline void mask_and_ack_rise_edge_irq(unsigned int irq_nr) +static void au1x_ic0_mask(unsigned int irq_nr) { unsigned int bit = irq_nr - AU1000_INTC0_INT_BASE; - - if (bit >= 32) { - au_writel(1 << (bit - 32), IC1_RISINGCLR); - au_writel(1 << (bit - 32), IC1_MASKCLR); - } else { - au_writel(1 << bit, IC0_RISINGCLR); - au_writel(1 << bit, IC0_MASKCLR); - } + au_writel(1 << bit, IC0_MASKCLR); + au_writel(1 << bit, IC0_WAKECLR); au_sync(); } - -static inline void mask_and_ack_fall_edge_irq(unsigned int irq_nr) +static void au1x_ic1_mask(unsigned int irq_nr) { - unsigned int bit = irq_nr - AU1000_INTC0_INT_BASE; - - if (bit >= 32) { - au_writel(1 << (bit - 32), IC1_FALLINGCLR); - au_writel(1 << (bit - 32), IC1_MASKCLR); - } else { - au_writel(1 << bit, IC0_FALLINGCLR); - au_writel(1 << bit, IC0_MASKCLR); - } + unsigned int bit = irq_nr - AU1000_INTC1_INT_BASE; + au_writel(1 << bit, IC1_MASKCLR); + au_writel(1 << bit, IC1_WAKECLR); au_sync(); } - -static inline void mask_and_ack_either_edge_irq(unsigned int irq_nr) +static void au1x_ic0_ack(unsigned int irq_nr) { unsigned int bit = irq_nr - AU1000_INTC0_INT_BASE; @@ -198,349 +336,229 @@ static inline void mask_and_ack_either_edge_irq(unsigned int irq_nr) * This may assume that we don't get interrupts from * both edges at once, or if we do, that we don't care. */ - if (bit >= 32) { - au_writel(1 << (bit - 32), IC1_FALLINGCLR); - au_writel(1 << (bit - 32), IC1_RISINGCLR); - au_writel(1 << (bit - 32), IC1_MASKCLR); - } else { - au_writel(1 << bit, IC0_FALLINGCLR); - au_writel(1 << bit, IC0_RISINGCLR); - au_writel(1 << bit, IC0_MASKCLR); - } + au_writel(1 << bit, IC0_FALLINGCLR); + au_writel(1 << bit, IC0_RISINGCLR); au_sync(); } -static inline void mask_and_ack_level_irq(unsigned int irq_nr) +static void au1x_ic1_ack(unsigned int irq_nr) { - local_disable_irq(irq_nr); - au_sync(); -#if defined(CONFIG_MIPS_PB1000) - if (irq_nr == AU1000_GPIO_15) { - au_writel(0x8000, PB1000_MDR); /* ack int */ - au_sync(); - } -#endif -} - -static void end_irq(unsigned int irq_nr) -{ - if (!(irq_desc[irq_nr].status & (IRQ_DISABLED | IRQ_INPROGRESS))) - local_enable_irq(irq_nr); + unsigned int bit = irq_nr - AU1000_INTC1_INT_BASE; -#if defined(CONFIG_MIPS_PB1000) - if (irq_nr == AU1000_GPIO_15) { - au_writel(0x4000, PB1000_MDR); /* enable int */ - au_sync(); - } -#endif + /* + * This may assume that we don't get interrupts from + * both edges at once, or if we do, that we don't care. + */ + au_writel(1 << bit, IC1_FALLINGCLR); + au_writel(1 << bit, IC1_RISINGCLR); + au_sync(); } -unsigned long save_local_and_disable(int controller) +static int au1x_ic1_setwake(unsigned int irq, unsigned int on) { - int i; - unsigned long flags, mask; - - spin_lock_irqsave(&irq_lock, flags); - if (controller) { - mask = au_readl(IC1_MASKSET); - for (i = 32; i < 64; i++) - local_disable_irq(i); - } else { - mask = au_readl(IC0_MASKSET); - for (i = 0; i < 32; i++) - local_disable_irq(i); - } - spin_unlock_irqrestore(&irq_lock, flags); - - return mask; -} + unsigned int bit = irq - AU1000_INTC1_INT_BASE; + unsigned long wakemsk, flags; -void restore_local_and_enable(int controller, unsigned long mask) -{ - int i; - unsigned long flags, new_mask; - - spin_lock_irqsave(&irq_lock, flags); - for (i = 0; i < 32; i++) - if (mask & (1 << i)) { - if (controller) - local_enable_irq(i + 32); - else - local_enable_irq(i); - } + /* only GPIO 0-7 can act as wakeup source: */ + if ((irq < AU1000_GPIO_0) || (irq > AU1000_GPIO_7)) + return -EINVAL; - if (controller) - new_mask = au_readl(IC1_MASKSET); + local_irq_save(flags); + wakemsk = au_readl(SYS_WAKEMSK); + if (on) + wakemsk |= 1 << bit; else - new_mask = au_readl(IC0_MASKSET); + wakemsk &= ~(1 << bit); + au_writel(wakemsk, SYS_WAKEMSK); + au_sync(); + local_irq_restore(flags); - spin_unlock_irqrestore(&irq_lock, flags); + return 0; } - -static struct irq_chip rise_edge_irq_type = { - .name = "Au1000 Rise Edge", - .ack = mask_and_ack_rise_edge_irq, - .mask = local_disable_irq, - .mask_ack = mask_and_ack_rise_edge_irq, - .unmask = local_enable_irq, - .end = end_irq, -}; - -static struct irq_chip fall_edge_irq_type = { - .name = "Au1000 Fall Edge", - .ack = mask_and_ack_fall_edge_irq, - .mask = local_disable_irq, - .mask_ack = mask_and_ack_fall_edge_irq, - .unmask = local_enable_irq, - .end = end_irq, -}; - -static struct irq_chip either_edge_irq_type = { - .name = "Au1000 Rise or Fall Edge", - .ack = mask_and_ack_either_edge_irq, - .mask = local_disable_irq, - .mask_ack = mask_and_ack_either_edge_irq, - .unmask = local_enable_irq, - .end = end_irq, +/* + * irq_chips for both ICs; this way the mask handlers can be + * as short as possible. + * + * NOTE: the ->ack() callback is used by the handle_edge_irq + * flowhandler only, the ->mask_ack() one by handle_level_irq, + * so no need for an irq_chip for each type of irq (level/edge). + */ +static struct irq_chip au1x_ic0_chip = { + .name = "Alchemy-IC0", + .ack = au1x_ic0_ack, /* edge */ + .mask = au1x_ic0_mask, + .mask_ack = au1x_ic0_mask, /* level */ + .unmask = au1x_ic0_unmask, + .set_type = au1x_ic_settype, }; -static struct irq_chip level_irq_type = { - .name = "Au1000 Level", - .ack = mask_and_ack_level_irq, - .mask = local_disable_irq, - .mask_ack = mask_and_ack_level_irq, - .unmask = local_enable_irq, - .end = end_irq, +static struct irq_chip au1x_ic1_chip = { + .name = "Alchemy-IC1", + .ack = au1x_ic1_ack, /* edge */ + .mask = au1x_ic1_mask, + .mask_ack = au1x_ic1_mask, /* level */ + .unmask = au1x_ic1_unmask, + .set_type = au1x_ic_settype, + .set_wake = au1x_ic1_setwake, }; -static void __init setup_local_irq(unsigned int irq_nr, int type, int int_req) +static int au1x_ic_settype(unsigned int irq, unsigned int flow_type) { - unsigned int bit = irq_nr - AU1000_INTC0_INT_BASE; - - if (irq_nr > AU1000_MAX_INTR) - return; - - /* Config2[n], Config1[n], Config0[n] */ - if (bit >= 32) { - switch (type) { - case INTC_INT_RISE_EDGE: /* 0:0:1 */ - au_writel(1 << (bit - 32), IC1_CFG2CLR); - au_writel(1 << (bit - 32), IC1_CFG1CLR); - au_writel(1 << (bit - 32), IC1_CFG0SET); - set_irq_chip(irq_nr, &rise_edge_irq_type); - break; - case INTC_INT_FALL_EDGE: /* 0:1:0 */ - au_writel(1 << (bit - 32), IC1_CFG2CLR); - au_writel(1 << (bit - 32), IC1_CFG1SET); - au_writel(1 << (bit - 32), IC1_CFG0CLR); - set_irq_chip(irq_nr, &fall_edge_irq_type); - break; - case INTC_INT_RISE_AND_FALL_EDGE: /* 0:1:1 */ - au_writel(1 << (bit - 32), IC1_CFG2CLR); - au_writel(1 << (bit - 32), IC1_CFG1SET); - au_writel(1 << (bit - 32), IC1_CFG0SET); - set_irq_chip(irq_nr, &either_edge_irq_type); - break; - case INTC_INT_HIGH_LEVEL: /* 1:0:1 */ - au_writel(1 << (bit - 32), IC1_CFG2SET); - au_writel(1 << (bit - 32), IC1_CFG1CLR); - au_writel(1 << (bit - 32), IC1_CFG0SET); - set_irq_chip(irq_nr, &level_irq_type); - break; - case INTC_INT_LOW_LEVEL: /* 1:1:0 */ - au_writel(1 << (bit - 32), IC1_CFG2SET); - au_writel(1 << (bit - 32), IC1_CFG1SET); - au_writel(1 << (bit - 32), IC1_CFG0CLR); - set_irq_chip(irq_nr, &level_irq_type); - break; - case INTC_INT_DISABLED: /* 0:0:0 */ - au_writel(1 << (bit - 32), IC1_CFG0CLR); - au_writel(1 << (bit - 32), IC1_CFG1CLR); - au_writel(1 << (bit - 32), IC1_CFG2CLR); - break; - default: /* disable the interrupt */ - printk(KERN_WARNING "unexpected int type %d (irq %d)\n", - type, irq_nr); - au_writel(1 << (bit - 32), IC1_CFG0CLR); - au_writel(1 << (bit - 32), IC1_CFG1CLR); - au_writel(1 << (bit - 32), IC1_CFG2CLR); - return; - } - if (int_req) /* assign to interrupt request 1 */ - au_writel(1 << (bit - 32), IC1_ASSIGNCLR); - else /* assign to interrupt request 0 */ - au_writel(1 << (bit - 32), IC1_ASSIGNSET); - au_writel(1 << (bit - 32), IC1_SRCSET); - au_writel(1 << (bit - 32), IC1_MASKCLR); - au_writel(1 << (bit - 32), IC1_WAKECLR); + struct irq_chip *chip; + unsigned long icr[6]; + unsigned int bit, ic; + int ret; + + if (irq >= AU1000_INTC1_INT_BASE) { + bit = irq - AU1000_INTC1_INT_BASE; + chip = &au1x_ic1_chip; + ic = 1; } else { - switch (type) { - case INTC_INT_RISE_EDGE: /* 0:0:1 */ - au_writel(1 << bit, IC0_CFG2CLR); - au_writel(1 << bit, IC0_CFG1CLR); - au_writel(1 << bit, IC0_CFG0SET); - set_irq_chip(irq_nr, &rise_edge_irq_type); - break; - case INTC_INT_FALL_EDGE: /* 0:1:0 */ - au_writel(1 << bit, IC0_CFG2CLR); - au_writel(1 << bit, IC0_CFG1SET); - au_writel(1 << bit, IC0_CFG0CLR); - set_irq_chip(irq_nr, &fall_edge_irq_type); - break; - case INTC_INT_RISE_AND_FALL_EDGE: /* 0:1:1 */ - au_writel(1 << bit, IC0_CFG2CLR); - au_writel(1 << bit, IC0_CFG1SET); - au_writel(1 << bit, IC0_CFG0SET); - set_irq_chip(irq_nr, &either_edge_irq_type); - break; - case INTC_INT_HIGH_LEVEL: /* 1:0:1 */ - au_writel(1 << bit, IC0_CFG2SET); - au_writel(1 << bit, IC0_CFG1CLR); - au_writel(1 << bit, IC0_CFG0SET); - set_irq_chip(irq_nr, &level_irq_type); - break; - case INTC_INT_LOW_LEVEL: /* 1:1:0 */ - au_writel(1 << bit, IC0_CFG2SET); - au_writel(1 << bit, IC0_CFG1SET); - au_writel(1 << bit, IC0_CFG0CLR); - set_irq_chip(irq_nr, &level_irq_type); - break; - case INTC_INT_DISABLED: /* 0:0:0 */ - au_writel(1 << bit, IC0_CFG0CLR); - au_writel(1 << bit, IC0_CFG1CLR); - au_writel(1 << bit, IC0_CFG2CLR); - break; - default: /* disable the interrupt */ - printk(KERN_WARNING "unexpected int type %d (irq %d)\n", - type, irq_nr); - au_writel(1 << bit, IC0_CFG0CLR); - au_writel(1 << bit, IC0_CFG1CLR); - au_writel(1 << bit, IC0_CFG2CLR); - return; - } - if (int_req) /* assign to interrupt request 1 */ - au_writel(1 << bit, IC0_ASSIGNCLR); - else /* assign to interrupt request 0 */ - au_writel(1 << bit, IC0_ASSIGNSET); - au_writel(1 << bit, IC0_SRCSET); - au_writel(1 << bit, IC0_MASKCLR); - au_writel(1 << bit, IC0_WAKECLR); + bit = irq - AU1000_INTC0_INT_BASE; + chip = &au1x_ic0_chip; + ic = 0; + } + + if (bit > 31) + return -EINVAL; + + icr[0] = ic ? IC1_CFG0SET : IC0_CFG0SET; + icr[1] = ic ? IC1_CFG1SET : IC0_CFG1SET; + icr[2] = ic ? IC1_CFG2SET : IC0_CFG2SET; + icr[3] = ic ? IC1_CFG0CLR : IC0_CFG0CLR; + icr[4] = ic ? IC1_CFG1CLR : IC0_CFG1CLR; + icr[5] = ic ? IC1_CFG2CLR : IC0_CFG2CLR; + + ret = 0; + + switch (flow_type) { /* cfgregs 2:1:0 */ + case IRQ_TYPE_EDGE_RISING: /* 0:0:1 */ + au_writel(1 << bit, icr[5]); + au_writel(1 << bit, icr[4]); + au_writel(1 << bit, icr[0]); + set_irq_chip_and_handler_name(irq, chip, + handle_edge_irq, "riseedge"); + break; + case IRQ_TYPE_EDGE_FALLING: /* 0:1:0 */ + au_writel(1 << bit, icr[5]); + au_writel(1 << bit, icr[1]); + au_writel(1 << bit, icr[3]); + set_irq_chip_and_handler_name(irq, chip, + handle_edge_irq, "falledge"); + break; + case IRQ_TYPE_EDGE_BOTH: /* 0:1:1 */ + au_writel(1 << bit, icr[5]); + au_writel(1 << bit, icr[1]); + au_writel(1 << bit, icr[0]); + set_irq_chip_and_handler_name(irq, chip, + handle_edge_irq, "bothedge"); + break; + case IRQ_TYPE_LEVEL_HIGH: /* 1:0:1 */ + au_writel(1 << bit, icr[2]); + au_writel(1 << bit, icr[4]); + au_writel(1 << bit, icr[0]); + set_irq_chip_and_handler_name(irq, chip, + handle_level_irq, "hilevel"); + break; + case IRQ_TYPE_LEVEL_LOW: /* 1:1:0 */ + au_writel(1 << bit, icr[2]); + au_writel(1 << bit, icr[1]); + au_writel(1 << bit, icr[3]); + set_irq_chip_and_handler_name(irq, chip, + handle_level_irq, "lowlevel"); + break; + case IRQ_TYPE_NONE: /* 0:0:0 */ + au_writel(1 << bit, icr[5]); + au_writel(1 << bit, icr[4]); + au_writel(1 << bit, icr[3]); + /* set at least chip so we can call set_irq_type() on it */ + set_irq_chip(irq, chip); + break; + default: + ret = -EINVAL; } au_sync(); -} -/* - * Interrupts are nested. Even if an interrupt handler is registered - * as "fast", we might get another interrupt before we return from - * intcX_reqX_irqdispatch(). - */ + return ret; +} -static void intc0_req0_irqdispatch(void) +asmlinkage void plat_irq_dispatch(void) { - static unsigned long intc0_req0; - unsigned int bit; - - intc0_req0 |= au_readl(IC0_REQ0INT); + unsigned int pending = read_c0_status() & read_c0_cause(); + unsigned long s, off, bit; - if (!intc0_req0) + if (pending & CAUSEF_IP7) { + do_IRQ(MIPS_CPU_IRQ_BASE + 7); return; - + } else if (pending & CAUSEF_IP2) { + s = IC0_REQ0INT; + off = AU1000_INTC0_INT_BASE; + } else if (pending & CAUSEF_IP3) { + s = IC0_REQ1INT; + off = AU1000_INTC0_INT_BASE; + } else if (pending & CAUSEF_IP4) { + s = IC1_REQ0INT; + off = AU1000_INTC1_INT_BASE; + } else if (pending & CAUSEF_IP5) { + s = IC1_REQ1INT; + off = AU1000_INTC1_INT_BASE; + } else + goto spurious; + + bit = 0; + s = au_readl(s); + if (unlikely(!s)) { +spurious: + spurious_interrupt(); + return; + } #ifdef AU1000_USB_DEV_REQ_INT /* * Because of the tight timing of SETUP token to reply * transactions, the USB devices-side packet complete * interrupt needs the highest priority. */ - if ((intc0_req0 & (1 << AU1000_USB_DEV_REQ_INT))) { - intc0_req0 &= ~(1 << AU1000_USB_DEV_REQ_INT); + bit = 1 << (AU1000_USB_DEV_REQ_INT - AU1000_INTC0_INT_BASE); + if ((pending & CAUSEF_IP2) && (s & bit)) { do_IRQ(AU1000_USB_DEV_REQ_INT); return; } #endif - bit = __ffs(intc0_req0); - intc0_req0 &= ~(1 << bit); - do_IRQ(AU1000_INTC0_INT_BASE + bit); + do_IRQ(__ffs(s) + off); } - -static void intc0_req1_irqdispatch(void) -{ - static unsigned long intc0_req1; - unsigned int bit; - - intc0_req1 |= au_readl(IC0_REQ1INT); - - if (!intc0_req1) - return; - - bit = __ffs(intc0_req1); - intc0_req1 &= ~(1 << bit); - do_IRQ(AU1000_INTC0_INT_BASE + bit); -} - - -/* - * Interrupt Controller 1: - * interrupts 32 - 63 - */ -static void intc1_req0_irqdispatch(void) +/* setup edge/level and assign request 0/1 */ +void __init au1xxx_setup_irqmap(struct au1xxx_irqmap *map, int count) { - static unsigned long intc1_req0; - unsigned int bit; - - intc1_req0 |= au_readl(IC1_REQ0INT); - - if (!intc1_req0) - return; - - bit = __ffs(intc1_req0); - intc1_req0 &= ~(1 << bit); - do_IRQ(AU1000_INTC1_INT_BASE + bit); -} - - -static void intc1_req1_irqdispatch(void) -{ - static unsigned long intc1_req1; - unsigned int bit; - - intc1_req1 |= au_readl(IC1_REQ1INT); - - if (!intc1_req1) - return; - - bit = __ffs(intc1_req1); - intc1_req1 &= ~(1 << bit); - do_IRQ(AU1000_INTC1_INT_BASE + bit); -} - -asmlinkage void plat_irq_dispatch(void) -{ - unsigned int pending = read_c0_status() & read_c0_cause(); + unsigned int bit, irq_nr; + + while (count--) { + irq_nr = map[count].im_irq; + + if (((irq_nr < AU1000_INTC0_INT_BASE) || + (irq_nr >= AU1000_INTC0_INT_BASE + 32)) && + ((irq_nr < AU1000_INTC1_INT_BASE) || + (irq_nr >= AU1000_INTC1_INT_BASE + 32))) + continue; + + if (irq_nr >= AU1000_INTC1_INT_BASE) { + bit = irq_nr - AU1000_INTC1_INT_BASE; + if (map[count].im_request) + au_writel(1 << bit, IC1_ASSIGNCLR); + } else { + bit = irq_nr - AU1000_INTC0_INT_BASE; + if (map[count].im_request) + au_writel(1 << bit, IC0_ASSIGNCLR); + } - if (pending & CAUSEF_IP7) - do_IRQ(MIPS_CPU_IRQ_BASE + 7); - else if (pending & CAUSEF_IP2) - intc0_req0_irqdispatch(); - else if (pending & CAUSEF_IP3) - intc0_req1_irqdispatch(); - else if (pending & CAUSEF_IP4) - intc1_req0_irqdispatch(); - else if (pending & CAUSEF_IP5) - intc1_req1_irqdispatch(); - else - spurious_interrupt(); + au1x_ic_settype(irq_nr, map[count].im_type); + } } void __init arch_init_irq(void) { int i; - struct au1xxx_irqmap *imp; - extern struct au1xxx_irqmap au1xxx_irq_map[]; - extern struct au1xxx_irqmap au1xxx_ic0_map[]; - extern int au1xxx_nr_irqs; - extern int au1xxx_ic0_nr_irqs; /* * Initialize interrupt controllers to a safe state. @@ -569,28 +587,25 @@ void __init arch_init_irq(void) mips_cpu_irq_init(); - /* - * Initialize IC0, which is fixed per processor. + /* register all 64 possible IC0+IC1 irq sources as type "none". + * Use set_irq_type() to set edge/level behaviour at runtime. */ - imp = au1xxx_ic0_map; - for (i = 0; i < au1xxx_ic0_nr_irqs; i++) { - setup_local_irq(imp->im_irq, imp->im_type, imp->im_request); - imp++; - } + for (i = AU1000_INTC0_INT_BASE; + (i < AU1000_INTC0_INT_BASE + 32); i++) + au1x_ic_settype(i, IRQ_TYPE_NONE); + + for (i = AU1000_INTC1_INT_BASE; + (i < AU1000_INTC1_INT_BASE + 32); i++) + au1x_ic_settype(i, IRQ_TYPE_NONE); /* - * Now set up the irq mapping for the board. + * Initialize IC0, which is fixed per processor. */ - imp = au1xxx_irq_map; - for (i = 0; i < au1xxx_nr_irqs; i++) { - setup_local_irq(imp->im_irq, imp->im_type, imp->im_request); - imp++; - } - - set_c0_status(IE_IRQ0 | IE_IRQ1 | IE_IRQ2 | IE_IRQ3 | IE_IRQ4); + au1xxx_setup_irqmap(au1xxx_ic0_map, ARRAY_SIZE(au1xxx_ic0_map)); - /* Board specific IRQ initialization. + /* Boards can register additional (GPIO-based) IRQs. */ - if (board_init_irq) - board_init_irq(); + board_init_irq(); + + set_c0_status(IE_IRQ0 | IE_IRQ1 | IE_IRQ2 | IE_IRQ3); } diff --git a/arch/mips/alchemy/common/power.c b/arch/mips/alchemy/common/power.c index bd854a6d1d89..6ab7b42aa1be 100644 --- a/arch/mips/alchemy/common/power.c +++ b/arch/mips/alchemy/common/power.c @@ -35,25 +35,12 @@ #include <linux/jiffies.h> #include <asm/uaccess.h> -#include <asm/cacheflush.h> #include <asm/mach-au1x00/au1000.h> - -#ifdef CONFIG_PM - -#define DEBUG 1 -#ifdef DEBUG -#define DPRINTK(fmt, args...) printk(KERN_DEBUG "%s: " fmt, __func__, ## args) -#else -#define DPRINTK(fmt, args...) +#if defined(CONFIG_SOC_AU1550) || defined(CONFIG_SOC_AU1200) +#include <asm/mach-au1x00/au1xxx_dbdma.h> #endif -static void au1000_calibrate_delay(void); - -extern unsigned long save_local_and_disable(int controller); -extern void restore_local_and_enable(int controller, unsigned long mask); -extern void local_enable_irq(unsigned int irq_nr); - -static DEFINE_SPINLOCK(pm_lock); +#ifdef CONFIG_PM /* * We need to save/restore a bunch of core registers that are @@ -65,29 +52,16 @@ static DEFINE_SPINLOCK(pm_lock); * We only have to save/restore registers that aren't otherwise * done as part of a driver pm_* function. */ -static unsigned int sleep_aux_pll_cntrl; -static unsigned int sleep_cpu_pll_cntrl; -static unsigned int sleep_pin_function; -static unsigned int sleep_uart0_inten; -static unsigned int sleep_uart0_fifoctl; -static unsigned int sleep_uart0_linectl; -static unsigned int sleep_uart0_clkdiv; -static unsigned int sleep_uart0_enable; -static unsigned int sleep_usbhost_enable; -static unsigned int sleep_usbdev_enable; -static unsigned int sleep_static_memctlr[4][3]; +static unsigned int sleep_uart0_inten; +static unsigned int sleep_uart0_fifoctl; +static unsigned int sleep_uart0_linectl; +static unsigned int sleep_uart0_clkdiv; +static unsigned int sleep_uart0_enable; +static unsigned int sleep_usb[2]; +static unsigned int sleep_sys_clocks[5]; +static unsigned int sleep_sys_pinfunc; +static unsigned int sleep_static_memctlr[4][3]; -/* - * Define this to cause the value you write to /proc/sys/pm/sleep to - * set the TOY timer for the amount of time you want to sleep. - * This is done mainly for testing, but may be useful in other cases. - * The value is number of 32KHz ticks to sleep. - */ -#define SLEEP_TEST_TIMEOUT 1 -#ifdef SLEEP_TEST_TIMEOUT -static int sleep_ticks; -void wakeup_counter0_set(int ticks); -#endif static void save_core_regs(void) { @@ -105,31 +79,45 @@ static void save_core_regs(void) sleep_uart0_linectl = au_readl(UART0_ADDR + UART_LCR); sleep_uart0_clkdiv = au_readl(UART0_ADDR + UART_CLK); sleep_uart0_enable = au_readl(UART0_ADDR + UART_MOD_CNTRL); + au_sync(); +#ifndef CONFIG_SOC_AU1200 /* Shutdown USB host/device. */ - sleep_usbhost_enable = au_readl(USB_HOST_CONFIG); + sleep_usb[0] = au_readl(USB_HOST_CONFIG); /* There appears to be some undocumented reset register.... */ - au_writel(0, 0xb0100004); au_sync(); - au_writel(0, USB_HOST_CONFIG); au_sync(); + au_writel(0, 0xb0100004); + au_sync(); + au_writel(0, USB_HOST_CONFIG); + au_sync(); - sleep_usbdev_enable = au_readl(USBD_ENABLE); - au_writel(0, USBD_ENABLE); au_sync(); + sleep_usb[1] = au_readl(USBD_ENABLE); + au_writel(0, USBD_ENABLE); + au_sync(); + +#else /* AU1200 */ + + /* enable access to OTG mmio so we can save OTG CAP/MUX. + * FIXME: write an OTG driver and move this stuff there! + */ + au_writel(au_readl(USB_MSR_BASE + 4) | (1 << 6), USB_MSR_BASE + 4); + au_sync(); + sleep_usb[0] = au_readl(0xb4020020); /* OTG_CAP */ + sleep_usb[1] = au_readl(0xb4020024); /* OTG_MUX */ +#endif /* Save interrupt controller state. */ save_au1xxx_intctl(); /* Clocks and PLLs. */ - sleep_aux_pll_cntrl = au_readl(SYS_AUXPLL); + sleep_sys_clocks[0] = au_readl(SYS_FREQCTRL0); + sleep_sys_clocks[1] = au_readl(SYS_FREQCTRL1); + sleep_sys_clocks[2] = au_readl(SYS_CLKSRC); + sleep_sys_clocks[3] = au_readl(SYS_CPUPLL); + sleep_sys_clocks[4] = au_readl(SYS_AUXPLL); - /* - * We don't really need to do this one, but unless we - * write it again it won't have a valid value if we - * happen to read it. - */ - sleep_cpu_pll_cntrl = au_readl(SYS_CPUPLL); - - sleep_pin_function = au_readl(SYS_PINFUNC); + /* pin mux config */ + sleep_sys_pinfunc = au_readl(SYS_PINFUNC); /* Save the static memory controller configuration. */ sleep_static_memctlr[0][0] = au_readl(MEM_STCFG0); @@ -144,16 +132,45 @@ static void save_core_regs(void) sleep_static_memctlr[3][0] = au_readl(MEM_STCFG3); sleep_static_memctlr[3][1] = au_readl(MEM_STTIME3); sleep_static_memctlr[3][2] = au_readl(MEM_STADDR3); + +#if defined(CONFIG_SOC_AU1550) || defined(CONFIG_SOC_AU1200) + au1xxx_dbdma_suspend(); +#endif } static void restore_core_regs(void) { - extern void restore_au1xxx_intctl(void); - extern void wakeup_counter0_adjust(void); + /* restore clock configuration. Writing CPUPLL last will + * stall a bit and stabilize other clocks (unless this is + * one of those Au1000 with a write-only PLL, where we dont + * have a valid value) + */ + au_writel(sleep_sys_clocks[0], SYS_FREQCTRL0); + au_writel(sleep_sys_clocks[1], SYS_FREQCTRL1); + au_writel(sleep_sys_clocks[2], SYS_CLKSRC); + au_writel(sleep_sys_clocks[4], SYS_AUXPLL); + if (!au1xxx_cpu_has_pll_wo()) + au_writel(sleep_sys_clocks[3], SYS_CPUPLL); + au_sync(); - au_writel(sleep_aux_pll_cntrl, SYS_AUXPLL); au_sync(); - au_writel(sleep_cpu_pll_cntrl, SYS_CPUPLL); au_sync(); - au_writel(sleep_pin_function, SYS_PINFUNC); au_sync(); + au_writel(sleep_sys_pinfunc, SYS_PINFUNC); + au_sync(); + +#ifndef CONFIG_SOC_AU1200 + au_writel(sleep_usb[0], USB_HOST_CONFIG); + au_writel(sleep_usb[1], USBD_ENABLE); + au_sync(); +#else + /* enable accces to OTG memory */ + au_writel(au_readl(USB_MSR_BASE + 4) | (1 << 6), USB_MSR_BASE + 4); + au_sync(); + + /* restore OTG caps and port mux. */ + au_writel(sleep_usb[0], 0xb4020020 + 0); /* OTG_CAP */ + au_sync(); + au_writel(sleep_usb[1], 0xb4020020 + 4); /* OTG_MUX */ + au_sync(); +#endif /* Restore the static memory controller configuration. */ au_writel(sleep_static_memctlr[0][0], MEM_STCFG0); @@ -184,282 +201,17 @@ static void restore_core_regs(void) } restore_au1xxx_intctl(); - wakeup_counter0_adjust(); -} - -unsigned long suspend_mode; -void wakeup_from_suspend(void) -{ - suspend_mode = 0; +#if defined(CONFIG_SOC_AU1550) || defined(CONFIG_SOC_AU1200) + au1xxx_dbdma_resume(); +#endif } -int au_sleep(void) +void au_sleep(void) { - unsigned long wakeup, flags; - extern void save_and_sleep(void); - - spin_lock_irqsave(&pm_lock, flags); - save_core_regs(); - - flush_cache_all(); - - /** - ** The code below is all system dependent and we should probably - ** have a function call out of here to set this up. You need - ** to configure the GPIO or timer interrupts that will bring - ** you out of sleep. - ** For testing, the TOY counter wakeup is useful. - **/ -#if 0 - au_writel(au_readl(SYS_PINSTATERD) & ~(1 << 11), SYS_PINSTATERD); - - /* GPIO 6 can cause a wake up event */ - wakeup = au_readl(SYS_WAKEMSK); - wakeup &= ~(1 << 8); /* turn off match20 wakeup */ - wakeup |= 1 << 6; /* turn on GPIO 6 wakeup */ -#else - /* For testing, allow match20 to wake us up. */ -#ifdef SLEEP_TEST_TIMEOUT - wakeup_counter0_set(sleep_ticks); -#endif - wakeup = 1 << 8; /* turn on match20 wakeup */ - wakeup = 0; -#endif - au_writel(1, SYS_WAKESRC); /* clear cause */ - au_sync(); - au_writel(wakeup, SYS_WAKEMSK); - au_sync(); - - save_and_sleep(); - - /* - * After a wakeup, the cpu vectors back to 0x1fc00000, so - * it's up to the boot code to get us back here. - */ + au1xxx_save_and_sleep(); restore_core_regs(); - spin_unlock_irqrestore(&pm_lock, flags); - return 0; -} - -static int pm_do_sleep(ctl_table *ctl, int write, struct file *file, - void __user *buffer, size_t *len, loff_t *ppos) -{ -#ifdef SLEEP_TEST_TIMEOUT -#define TMPBUFLEN2 16 - char buf[TMPBUFLEN2], *p; -#endif - - if (!write) - *len = 0; - else { -#ifdef SLEEP_TEST_TIMEOUT - if (*len > TMPBUFLEN2 - 1) - return -EFAULT; - if (copy_from_user(buf, buffer, *len)) - return -EFAULT; - buf[*len] = 0; - p = buf; - sleep_ticks = simple_strtoul(p, &p, 0); -#endif - - au_sleep(); - } - return 0; -} - -static int pm_do_freq(ctl_table *ctl, int write, struct file *file, - void __user *buffer, size_t *len, loff_t *ppos) -{ - int retval = 0, i; - unsigned long val, pll; -#define TMPBUFLEN 64 -#define MAX_CPU_FREQ 396 - char buf[TMPBUFLEN], *p; - unsigned long flags, intc0_mask, intc1_mask; - unsigned long old_baud_base, old_cpu_freq, old_clk, old_refresh; - unsigned long new_baud_base, new_cpu_freq, new_clk, new_refresh; - unsigned long baud_rate; - - spin_lock_irqsave(&pm_lock, flags); - if (!write) - *len = 0; - else { - /* Parse the new frequency */ - if (*len > TMPBUFLEN - 1) { - spin_unlock_irqrestore(&pm_lock, flags); - return -EFAULT; - } - if (copy_from_user(buf, buffer, *len)) { - spin_unlock_irqrestore(&pm_lock, flags); - return -EFAULT; - } - buf[*len] = 0; - p = buf; - val = simple_strtoul(p, &p, 0); - if (val > MAX_CPU_FREQ) { - spin_unlock_irqrestore(&pm_lock, flags); - return -EFAULT; - } - - pll = val / 12; - if ((pll > 33) || (pll < 7)) { /* 396 MHz max, 84 MHz min */ - /* Revisit this for higher speed CPUs */ - spin_unlock_irqrestore(&pm_lock, flags); - return -EFAULT; - } - - old_baud_base = get_au1x00_uart_baud_base(); - old_cpu_freq = get_au1x00_speed(); - - new_cpu_freq = pll * 12 * 1000000; - new_baud_base = (new_cpu_freq / (2 * ((int)(au_readl(SYS_POWERCTRL) - & 0x03) + 2) * 16)); - set_au1x00_speed(new_cpu_freq); - set_au1x00_uart_baud_base(new_baud_base); - - old_refresh = au_readl(MEM_SDREFCFG) & 0x1ffffff; - new_refresh = ((old_refresh * new_cpu_freq) / old_cpu_freq) | - (au_readl(MEM_SDREFCFG) & ~0x1ffffff); - - au_writel(pll, SYS_CPUPLL); - au_sync_delay(1); - au_writel(new_refresh, MEM_SDREFCFG); - au_sync_delay(1); - - for (i = 0; i < 4; i++) - if (au_readl(UART_BASE + UART_MOD_CNTRL + - i * 0x00100000) == 3) { - old_clk = au_readl(UART_BASE + UART_CLK + - i * 0x00100000); - baud_rate = old_baud_base / old_clk; - /* - * We won't get an exact baud rate and the error - * could be significant enough that our new - * calculation will result in a clock that will - * give us a baud rate that's too far off from - * what we really want. - */ - if (baud_rate > 100000) - baud_rate = 115200; - else if (baud_rate > 50000) - baud_rate = 57600; - else if (baud_rate > 30000) - baud_rate = 38400; - else if (baud_rate > 17000) - baud_rate = 19200; - else - baud_rate = 9600; - new_clk = new_baud_base / baud_rate; - au_writel(new_clk, UART_BASE + UART_CLK + - i * 0x00100000); - au_sync_delay(10); - } - } - - /* - * We don't want _any_ interrupts other than match20. Otherwise our - * au1000_calibrate_delay() calculation will be off, potentially a lot. - */ - intc0_mask = save_local_and_disable(0); - intc1_mask = save_local_and_disable(1); - local_enable_irq(AU1000_TOY_MATCH2_INT); - spin_unlock_irqrestore(&pm_lock, flags); - au1000_calibrate_delay(); - restore_local_and_enable(0, intc0_mask); - restore_local_and_enable(1, intc1_mask); - - return retval; } - -static struct ctl_table pm_table[] = { - { - .ctl_name = CTL_UNNUMBERED, - .procname = "sleep", - .data = NULL, - .maxlen = 0, - .mode = 0600, - .proc_handler = &pm_do_sleep - }, - { - .ctl_name = CTL_UNNUMBERED, - .procname = "freq", - .data = NULL, - .maxlen = 0, - .mode = 0600, - .proc_handler = &pm_do_freq - }, - {} -}; - -static struct ctl_table pm_dir_table[] = { - { - .ctl_name = CTL_UNNUMBERED, - .procname = "pm", - .mode = 0555, - .child = pm_table - }, - {} -}; - -/* - * Initialize power interface - */ -static int __init pm_init(void) -{ - register_sysctl_table(pm_dir_table); - return 0; -} - -__initcall(pm_init); - -/* - * This is right out of init/main.c - */ - -/* - * This is the number of bits of precision for the loops_per_jiffy. - * Each bit takes on average 1.5/HZ seconds. This (like the original) - * is a little better than 1%. - */ -#define LPS_PREC 8 - -static void au1000_calibrate_delay(void) -{ - unsigned long ticks, loopbit; - int lps_precision = LPS_PREC; - - loops_per_jiffy = 1 << 12; - - while (loops_per_jiffy <<= 1) { - /* Wait for "start of" clock tick */ - ticks = jiffies; - while (ticks == jiffies) - /* nothing */ ; - /* Go ... */ - ticks = jiffies; - __delay(loops_per_jiffy); - ticks = jiffies - ticks; - if (ticks) - break; - } - - /* - * Do a binary approximation to get loops_per_jiffy set to be equal - * one clock (up to lps_precision bits) - */ - loops_per_jiffy >>= 1; - loopbit = loops_per_jiffy; - while (lps_precision-- && (loopbit >>= 1)) { - loops_per_jiffy |= loopbit; - ticks = jiffies; - while (ticks == jiffies); - ticks = jiffies; - __delay(loops_per_jiffy); - if (jiffies != ticks) /* longer than 1 tick */ - loops_per_jiffy &= ~loopbit; - } -} #endif /* CONFIG_PM */ diff --git a/arch/mips/alchemy/common/reset.c b/arch/mips/alchemy/common/reset.c index d555429c8d6f..0191c936cb5e 100644 --- a/arch/mips/alchemy/common/reset.c +++ b/arch/mips/alchemy/common/reset.c @@ -31,8 +31,6 @@ #include <asm/mach-au1x00/au1000.h> -extern int au_sleep(void); - void au1000_restart(char *command) { /* Set all integrated peripherals to disabled states */ diff --git a/arch/mips/alchemy/common/setup.c b/arch/mips/alchemy/common/setup.c index 1ac6b06f42a3..3f036b3d400e 100644 --- a/arch/mips/alchemy/common/setup.c +++ b/arch/mips/alchemy/common/setup.c @@ -35,7 +35,6 @@ #include <asm/time.h> #include <au1000.h> -#include <prom.h> extern void __init board_setup(void); extern void au1000_restart(char *); @@ -45,80 +44,34 @@ extern void set_cpuspec(void); void __init plat_mem_setup(void) { - struct cpu_spec *sp; - char *argptr; - unsigned long prid, cpufreq, bclk; + unsigned long est_freq; - set_cpuspec(); - sp = cur_cpu_spec[0]; + /* determine core clock */ + est_freq = au1xxx_calc_clock(); + est_freq += 5000; /* round */ + est_freq -= est_freq % 10000; + printk(KERN_INFO "(PRId %08x) @ %lu.%02lu MHz\n", read_c0_prid(), + est_freq / 1000000, ((est_freq % 1000000) * 100) / 1000000); - board_setup(); /* board specific setup */ - - prid = read_c0_prid(); - if (sp->cpu_pll_wo) -#ifdef CONFIG_SOC_AU1000_FREQUENCY - cpufreq = CONFIG_SOC_AU1000_FREQUENCY / 1000000; -#else - cpufreq = 396; -#endif - else - cpufreq = (au_readl(SYS_CPUPLL) & 0x3F) * 12; - printk(KERN_INFO "(PRID %08lx) @ %ld MHz\n", prid, cpufreq); + _machine_restart = au1000_restart; + _machine_halt = au1000_halt; + pm_power_off = au1000_power_off; - if (sp->cpu_bclk) { - /* Enable BCLK switching */ - bclk = au_readl(SYS_POWERCTRL); - au_writel(bclk | 0x60, SYS_POWERCTRL); - printk(KERN_INFO "BCLK switching enabled!\n"); - } + board_setup(); /* board specific setup */ - if (sp->cpu_od) + if (au1xxx_cpu_needs_config_od()) /* Various early Au1xx0 errata corrected by this */ set_c0_config(1 << 19); /* Set Config[OD] */ else /* Clear to obtain best system bus performance */ clear_c0_config(1 << 19); /* Clear Config[OD] */ - argptr = prom_getcmdline(); - -#ifdef CONFIG_SERIAL_8250_CONSOLE - argptr = strstr(argptr, "console="); - if (argptr == NULL) { - argptr = prom_getcmdline(); - strcat(argptr, " console=ttyS0,115200"); - } -#endif - -#ifdef CONFIG_FB_AU1100 - argptr = strstr(argptr, "video="); - if (argptr == NULL) { - argptr = prom_getcmdline(); - /* default panel */ - /*strcat(argptr, " video=au1100fb:panel:Sharp_320x240_16");*/ - } -#endif - -#if defined(CONFIG_SOUND_AU1X00) && !defined(CONFIG_SOC_AU1000) - /* au1000 does not support vra, au1500 and au1100 do */ - strcat(argptr, " au1000_audio=vra"); - argptr = prom_getcmdline(); -#endif - _machine_restart = au1000_restart; - _machine_halt = au1000_halt; - pm_power_off = au1000_power_off; - /* IO/MEM resources. */ set_io_port_base(0); ioport_resource.start = IOPORT_RESOURCE_START; ioport_resource.end = IOPORT_RESOURCE_END; iomem_resource.start = IOMEM_RESOURCE_START; iomem_resource.end = IOMEM_RESOURCE_END; - - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_E0S); - au_writel(SYS_CNTRL_E0 | SYS_CNTRL_EN0, SYS_COUNTER_CNTRL); - au_sync(); - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_T0S); - au_writel(0, SYS_TOYTRIM); } #if defined(CONFIG_64BIT_PHYS_ADDR) diff --git a/arch/mips/alchemy/common/sleeper.S b/arch/mips/alchemy/common/sleeper.S index 3006e270c8bc..4f4b16741d12 100644 --- a/arch/mips/alchemy/common/sleeper.S +++ b/arch/mips/alchemy/common/sleeper.S @@ -15,16 +15,17 @@ #include <asm/regdef.h> #include <asm/stackframe.h> + .extern __flush_cache_all + .text - .set macro - .set noat + .set noreorder + .set noat .align 5 /* Save all of the processor general registers and go to sleep. * A wakeup condition will get us back here to restore the registers. */ -LEAF(save_and_sleep) - +LEAF(au1xxx_save_and_sleep) subu sp, PT_SIZE sw $1, PT_R1(sp) sw $2, PT_R2(sp) @@ -33,14 +34,6 @@ LEAF(save_and_sleep) sw $5, PT_R5(sp) sw $6, PT_R6(sp) sw $7, PT_R7(sp) - sw $8, PT_R8(sp) - sw $9, PT_R9(sp) - sw $10, PT_R10(sp) - sw $11, PT_R11(sp) - sw $12, PT_R12(sp) - sw $13, PT_R13(sp) - sw $14, PT_R14(sp) - sw $15, PT_R15(sp) sw $16, PT_R16(sp) sw $17, PT_R17(sp) sw $18, PT_R18(sp) @@ -49,12 +42,9 @@ LEAF(save_and_sleep) sw $21, PT_R21(sp) sw $22, PT_R22(sp) sw $23, PT_R23(sp) - sw $24, PT_R24(sp) - sw $25, PT_R25(sp) sw $26, PT_R26(sp) sw $27, PT_R27(sp) sw $28, PT_R28(sp) - sw $29, PT_R29(sp) sw $30, PT_R30(sp) sw $31, PT_R31(sp) mfc0 k0, CP0_STATUS @@ -66,20 +56,26 @@ LEAF(save_and_sleep) mfc0 k0, CP0_CONFIG sw k0, 0x14(sp) + /* flush caches to make sure context is in memory */ + la t1, __flush_cache_all + lw t0, 0(t1) + jalr t0 + nop + /* Now set up the scratch registers so the boot rom will * return to this point upon wakeup. + * sys_scratch0 : SP + * sys_scratch1 : RA */ - la k0, 1f - lui k1, 0xb190 - ori k1, 0x18 - sw sp, 0(k1) - ori k1, 0x1c - sw k0, 0(k1) + lui t3, 0xb190 /* sys_xxx */ + sw sp, 0x0018(t3) + la k0, 3f /* resume path */ + sw k0, 0x001c(t3) -/* Put SDRAM into self refresh. Preload instructions into cache, - * issue a precharge, then auto refresh, then sleep commands to it. - */ - la t0, sdsleep + /* Put SDRAM into self refresh: Preload instructions into cache, + * issue a precharge, auto/self refresh, then sleep commands to it. + */ + la t0, 1f .set mips3 cache 0x14, 0(t0) cache 0x14, 32(t0) @@ -87,24 +83,57 @@ LEAF(save_and_sleep) cache 0x14, 96(t0) .set mips0 -sdsleep: - lui k0, 0xb400 - sw zero, 0x001c(k0) /* Precharge */ - sw zero, 0x0020(k0) /* Auto refresh */ - sw zero, 0x0030(k0) /* SDRAM sleep */ +1: lui a0, 0xb400 /* mem_xxx */ +#if defined(CONFIG_SOC_AU1000) || defined(CONFIG_SOC_AU1100) || \ + defined(CONFIG_SOC_AU1500) + sw zero, 0x001c(a0) /* Precharge */ + sync + sw zero, 0x0020(a0) /* Auto Refresh */ + sync + sw zero, 0x0030(a0) /* Sleep */ + sync +#endif + +#if defined(CONFIG_SOC_AU1550) || defined(CONFIG_SOC_AU1200) + sw zero, 0x08c0(a0) /* Precharge */ sync + sw zero, 0x08d0(a0) /* Self Refresh */ + sync + + /* wait for sdram to enter self-refresh mode */ + lui t0, 0x0100 +2: lw t1, 0x0850(a0) /* mem_sdstat */ + and t2, t1, t0 + beq t2, zero, 2b + nop - lui k1, 0xb190 - sw zero, 0x0078(k1) /* get ready to sleep */ + /* disable SDRAM clocks */ + lui t0, 0xcfff + ori t0, t0, 0xffff + lw t1, 0x0840(a0) /* mem_sdconfiga */ + and t1, t0, t1 /* clear CE[1:0] */ + sw t1, 0x0840(a0) /* mem_sdconfiga */ sync - sw zero, 0x007c(k1) /* Put processor to sleep */ +#endif + + /* put power supply and processor to sleep */ + sw zero, 0x0078(t3) /* sys_slppwr */ + sync + sw zero, 0x007c(t3) /* sys_sleep */ sync + nop + nop + nop + nop + nop + nop + nop + nop /* This is where we return upon wakeup. * Reload all of the registers and return. */ -1: nop - lw k0, 0x20(sp) +3: lw k0, 0x20(sp) mtc0 k0, CP0_STATUS lw k0, 0x1c(sp) mtc0 k0, CP0_CONTEXT @@ -113,10 +142,11 @@ sdsleep: lw k0, 0x14(sp) mtc0 k0, CP0_CONFIG - /* We need to catch the ealry Alchemy SOCs with + /* We need to catch the early Alchemy SOCs with * the write-only Config[OD] bit and set it back to one... */ jal au1x00_fixup_config_od + nop lw $1, PT_R1(sp) lw $2, PT_R2(sp) lw $3, PT_R3(sp) @@ -124,14 +154,6 @@ sdsleep: lw $5, PT_R5(sp) lw $6, PT_R6(sp) lw $7, PT_R7(sp) - lw $8, PT_R8(sp) - lw $9, PT_R9(sp) - lw $10, PT_R10(sp) - lw $11, PT_R11(sp) - lw $12, PT_R12(sp) - lw $13, PT_R13(sp) - lw $14, PT_R14(sp) - lw $15, PT_R15(sp) lw $16, PT_R16(sp) lw $17, PT_R17(sp) lw $18, PT_R18(sp) @@ -140,15 +162,11 @@ sdsleep: lw $21, PT_R21(sp) lw $22, PT_R22(sp) lw $23, PT_R23(sp) - lw $24, PT_R24(sp) - lw $25, PT_R25(sp) lw $26, PT_R26(sp) lw $27, PT_R27(sp) lw $28, PT_R28(sp) - lw $29, PT_R29(sp) lw $30, PT_R30(sp) lw $31, PT_R31(sp) - addiu sp, PT_SIZE - jr ra -END(save_and_sleep) + addiu sp, PT_SIZE +END(au1xxx_save_and_sleep) diff --git a/arch/mips/alchemy/common/time.c b/arch/mips/alchemy/common/time.c index 563d9390a872..f58d4ffb8945 100644 --- a/arch/mips/alchemy/common/time.c +++ b/arch/mips/alchemy/common/time.c @@ -1,5 +1,7 @@ /* + * Copyright (C) 2008 Manuel Lauss <mano@roarinelk.homelinux.net> * + * Previous incarnations were: * Copyright (C) 2001, 2006, 2008 MontaVista Software, <source@mvista.com> * Copied and modified Carsten Langgaard's time.c * @@ -23,244 +25,141 @@ * * ######################################################################## * - * Setting up the clock on the MIPS boards. - * - * We provide the clock interrupt processing and the timer offset compute - * functions. If CONFIG_PM is selected, we also ensure the 32KHz timer is - * available. -- Dan + * Clocksource/event using the 32.768kHz-clocked Counter1 ('RTC' in the + * databooks). Firmware/Board init code must enable the counters in the + * counter control register, otherwise the CP0 counter clocksource/event + * will be installed instead (and use of 'wait' instruction is prohibited). */ -#include <linux/types.h> -#include <linux/init.h> +#include <linux/clockchips.h> +#include <linux/clocksource.h> +#include <linux/interrupt.h> #include <linux/spinlock.h> -#include <asm/mipsregs.h> #include <asm/time.h> #include <asm/mach-au1x00/au1000.h> -static int no_au1xxx_32khz; -extern int allow_au1k_wait; /* default off for CP0 Counter */ - -#ifdef CONFIG_PM -#if HZ < 100 || HZ > 1000 -#error "unsupported HZ value! Must be in [100,1000]" -#endif -#define MATCH20_INC (328 * 100 / HZ) /* magic number 328 is for HZ=100... */ -static unsigned long last_pc0, last_match20; -#endif +/* 32kHz clock enabled and detected */ +#define CNTR_OK (SYS_CNTRL_E0 | SYS_CNTRL_32S) -static DEFINE_SPINLOCK(time_lock); - -unsigned long wtimer; +extern int allow_au1k_wait; /* default off for CP0 Counter */ -#ifdef CONFIG_PM -static irqreturn_t counter0_irq(int irq, void *dev_id) +static cycle_t au1x_counter1_read(void) { - unsigned long pc0; - int time_elapsed; - static int jiffie_drift; - - if (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_M20) { - /* should never happen! */ - printk(KERN_WARNING "counter 0 w status error\n"); - return IRQ_NONE; - } - - pc0 = au_readl(SYS_TOYREAD); - if (pc0 < last_match20) - /* counter overflowed */ - time_elapsed = (0xffffffff - last_match20) + pc0; - else - time_elapsed = pc0 - last_match20; - - while (time_elapsed > 0) { - do_timer(1); -#ifndef CONFIG_SMP - update_process_times(user_mode(get_irq_regs())); -#endif - time_elapsed -= MATCH20_INC; - last_match20 += MATCH20_INC; - jiffie_drift++; - } - - last_pc0 = pc0; - au_writel(last_match20 + MATCH20_INC, SYS_TOYMATCH2); - au_sync(); - - /* - * Our counter ticks at 10.009765625 ms/tick, we we're running - * almost 10 uS too slow per tick. - */ - - if (jiffie_drift >= 999) { - jiffie_drift -= 999; - do_timer(1); /* increment jiffies by one */ -#ifndef CONFIG_SMP - update_process_times(user_mode(get_irq_regs())); -#endif - } - - return IRQ_HANDLED; + return au_readl(SYS_RTCREAD); } -struct irqaction counter0_action = { - .handler = counter0_irq, - .flags = IRQF_DISABLED, - .name = "alchemy-toy", - .dev_id = NULL, +static struct clocksource au1x_counter1_clocksource = { + .name = "alchemy-counter1", + .read = au1x_counter1_read, + .mask = CLOCKSOURCE_MASK(32), + .flags = CLOCK_SOURCE_IS_CONTINUOUS, + .rating = 100, }; -/* When we wakeup from sleep, we have to "catch up" on all of the - * timer ticks we have missed. - */ -void wakeup_counter0_adjust(void) +static int au1x_rtcmatch2_set_next_event(unsigned long delta, + struct clock_event_device *cd) { - unsigned long pc0; - int time_elapsed; - - pc0 = au_readl(SYS_TOYREAD); - if (pc0 < last_match20) - /* counter overflowed */ - time_elapsed = (0xffffffff - last_match20) + pc0; - else - time_elapsed = pc0 - last_match20; - - while (time_elapsed > 0) { - time_elapsed -= MATCH20_INC; - last_match20 += MATCH20_INC; - } - - last_pc0 = pc0; - au_writel(last_match20 + MATCH20_INC, SYS_TOYMATCH2); + delta += au_readl(SYS_RTCREAD); + /* wait for register access */ + while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_M21) + ; + au_writel(delta, SYS_RTCMATCH2); au_sync(); + return 0; } -/* This is just for debugging to set the timer for a sleep delay. */ -void wakeup_counter0_set(int ticks) +static void au1x_rtcmatch2_set_mode(enum clock_event_mode mode, + struct clock_event_device *cd) { - unsigned long pc0; - - pc0 = au_readl(SYS_TOYREAD); - last_pc0 = pc0; - au_writel(last_match20 + (MATCH20_INC * ticks), SYS_TOYMATCH2); - au_sync(); } -#endif -/* - * I haven't found anyone that doesn't use a 12 MHz source clock, - * but just in case..... - */ -#define AU1000_SRC_CLK 12000000 - -/* - * We read the real processor speed from the PLL. This is important - * because it is more accurate than computing it from the 32 KHz - * counter, if it exists. If we don't have an accurate processor - * speed, all of the peripherals that derive their clocks based on - * this advertised speed will introduce error and sometimes not work - * properly. This function is futher convoluted to still allow configurations - * to do that in case they have really, really old silicon with a - * write-only PLL register, that we need the 32 KHz when power management - * "wait" is enabled, and we need to detect if the 32 KHz isn't present - * but requested......got it? :-) -- Dan - */ -unsigned long calc_clock(void) +static irqreturn_t au1x_rtcmatch2_irq(int irq, void *dev_id) { - unsigned long cpu_speed; - unsigned long flags; - unsigned long counter; - - spin_lock_irqsave(&time_lock, flags); - - /* Power management cares if we don't have a 32 KHz counter. */ - no_au1xxx_32khz = 0; - counter = au_readl(SYS_COUNTER_CNTRL); - if (counter & SYS_CNTRL_E0) { - int trim_divide = 16; - - au_writel(counter | SYS_CNTRL_EN1, SYS_COUNTER_CNTRL); - - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_T1S); - /* RTC now ticks at 32.768/16 kHz */ - au_writel(trim_divide - 1, SYS_RTCTRIM); - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_T1S); + struct clock_event_device *cd = dev_id; + cd->event_handler(cd); + return IRQ_HANDLED; +} - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_C1S); - au_writel(0, SYS_TOYWRITE); - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_C1S); - } else - no_au1xxx_32khz = 1; +static struct clock_event_device au1x_rtcmatch2_clockdev = { + .name = "rtcmatch2", + .features = CLOCK_EVT_FEAT_ONESHOT, + .rating = 100, + .irq = AU1000_RTC_MATCH2_INT, + .set_next_event = au1x_rtcmatch2_set_next_event, + .set_mode = au1x_rtcmatch2_set_mode, + .cpumask = CPU_MASK_ALL_PTR, +}; - /* - * On early Au1000, sys_cpupll was write-only. Since these - * silicon versions of Au1000 are not sold by AMD, we don't bend - * over backwards trying to determine the frequency. - */ - if (cur_cpu_spec[0]->cpu_pll_wo) -#ifdef CONFIG_SOC_AU1000_FREQUENCY - cpu_speed = CONFIG_SOC_AU1000_FREQUENCY; -#else - cpu_speed = 396000000; -#endif - else - cpu_speed = (au_readl(SYS_CPUPLL) & 0x0000003f) * AU1000_SRC_CLK; - /* On Alchemy CPU:counter ratio is 1:1 */ - mips_hpt_frequency = cpu_speed; - /* Equation: Baudrate = CPU / (SD * 2 * CLKDIV * 16) */ - set_au1x00_uart_baud_base(cpu_speed / (2 * ((int)(au_readl(SYS_POWERCTRL) - & 0x03) + 2) * 16)); - spin_unlock_irqrestore(&time_lock, flags); - return cpu_speed; -} +static struct irqaction au1x_rtcmatch2_irqaction = { + .handler = au1x_rtcmatch2_irq, + .flags = IRQF_DISABLED | IRQF_TIMER, + .name = "timer", + .dev_id = &au1x_rtcmatch2_clockdev, +}; void __init plat_time_init(void) { - unsigned int est_freq = calc_clock(); - - est_freq += 5000; /* round */ - est_freq -= est_freq%10000; - printk(KERN_INFO "CPU frequency %u.%02u MHz\n", - est_freq / 1000000, ((est_freq % 1000000) * 100) / 1000000); - set_au1x00_speed(est_freq); - set_au1x00_lcd_clock(); /* program the LCD clock */ + struct clock_event_device *cd = &au1x_rtcmatch2_clockdev; + unsigned long t; + + /* Check if firmware (YAMON, ...) has enabled 32kHz and clock + * has been detected. If so install the rtcmatch2 clocksource, + * otherwise don't bother. Note that both bits being set is by + * no means a definite guarantee that the counters actually work + * (the 32S bit seems to be stuck set to 1 once a single clock- + * edge is detected, hence the timeouts). + */ + if (CNTR_OK != (au_readl(SYS_COUNTER_CNTRL) & CNTR_OK)) + goto cntr_err; -#ifdef CONFIG_PM /* - * setup counter 0, since it keeps ticking after a - * 'wait' instruction has been executed. The CP0 timer and - * counter 1 do NOT continue running after 'wait' - * - * It's too early to call request_irq() here, so we handle - * counter 0 interrupt as a special irq and it doesn't show - * up under /proc/interrupts. - * - * Check to ensure we really have a 32 KHz oscillator before - * we do this. + * setup counter 1 (RTC) to tick at full speed */ - if (no_au1xxx_32khz) - printk(KERN_WARNING "WARNING: no 32KHz clock found.\n"); - else { - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_C0S); - au_writel(0, SYS_TOYWRITE); - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_C0S); - - au_writel(au_readl(SYS_WAKEMSK) | (1 << 8), SYS_WAKEMSK); - au_writel(~0, SYS_WAKESRC); - au_sync(); - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_M20); + t = 0xffffff; + while ((au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_T1S) && --t) + asm volatile ("nop"); + if (!t) + goto cntr_err; - /* Setup match20 to interrupt once every HZ */ - last_pc0 = last_match20 = au_readl(SYS_TOYREAD); - au_writel(last_match20 + MATCH20_INC, SYS_TOYMATCH2); - au_sync(); - while (au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_M20); - setup_irq(AU1000_TOY_MATCH2_INT, &counter0_action); + au_writel(0, SYS_RTCTRIM); /* 32.768 kHz */ + au_sync(); - /* We can use the real 'wait' instruction. */ - allow_au1k_wait = 1; - } + t = 0xffffff; + while ((au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_C1S) && --t) + asm volatile ("nop"); + if (!t) + goto cntr_err; + au_writel(0, SYS_RTCWRITE); + au_sync(); -#endif + t = 0xffffff; + while ((au_readl(SYS_COUNTER_CNTRL) & SYS_CNTRL_C1S) && --t) + asm volatile ("nop"); + if (!t) + goto cntr_err; + + /* register counter1 clocksource and event device */ + clocksource_set_clock(&au1x_counter1_clocksource, 32768); + clocksource_register(&au1x_counter1_clocksource); + + cd->shift = 32; + cd->mult = div_sc(32768, NSEC_PER_SEC, cd->shift); + cd->max_delta_ns = clockevent_delta2ns(0xffffffff, cd); + cd->min_delta_ns = clockevent_delta2ns(8, cd); /* ~0.25ms */ + clockevents_register_device(cd); + setup_irq(AU1000_RTC_MATCH2_INT, &au1x_rtcmatch2_irqaction); + + printk(KERN_INFO "Alchemy clocksource installed\n"); + + /* can now use 'wait' */ + allow_au1k_wait = 1; + return; + +cntr_err: + /* counters unusable, use C0 counter */ + r4k_clockevent_init(); + init_r4k_clocksource(); + allow_au1k_wait = 0; } |