diff options
Diffstat (limited to 'drivers/clk/aspeed')
| -rw-r--r-- | drivers/clk/aspeed/Kconfig | 21 | ||||
| -rw-r--r-- | drivers/clk/aspeed/Makefile | 4 | ||||
| -rw-r--r-- | drivers/clk/aspeed/clk-aspeed.c | 741 | ||||
| -rw-r--r-- | drivers/clk/aspeed/clk-aspeed.h | 82 | ||||
| -rw-r--r-- | drivers/clk/aspeed/clk-ast2600.c | 870 | ||||
| -rw-r--r-- | drivers/clk/aspeed/clk-ast2700.c | 1064 |
6 files changed, 2782 insertions, 0 deletions
diff --git a/drivers/clk/aspeed/Kconfig b/drivers/clk/aspeed/Kconfig new file mode 100644 index 000000000..ef50481c3 --- /dev/null +++ b/drivers/clk/aspeed/Kconfig @@ -0,0 +1,21 @@ +# SPDX-License-Identifier: GPL-2.0-only + +config COMMON_CLK_ASPEED + bool "Clock driver for Aspeed BMC SoCs" + depends on ARCH_ASPEED || COMPILE_TEST + default ARCH_ASPEED + select MFD_SYSCON + select RESET_CONTROLLER + help + This driver supports the SoC clocks on the Aspeed BMC platforms. + + The G4 and G5 series, including the ast2400 and ast2500, are supported + by this driver. + +config COMMON_CLK_AST2700 + bool "Clock driver for AST2700 SoC" + depends on ARCH_ASPEED || COMPILE_TEST + help + This driver provides support for clock on AST2700 SoC. + The driver is responsible for managing the various clocks required + by the peripherals and cores within the AST2700. diff --git a/drivers/clk/aspeed/Makefile b/drivers/clk/aspeed/Makefile new file mode 100644 index 000000000..eb5d219f7 --- /dev/null +++ b/drivers/clk/aspeed/Makefile @@ -0,0 +1,4 @@ +# SPDX-License-Identifier: GPL-2.0 +obj-$(CONFIG_COMMON_CLK_ASPEED) += clk-aspeed.o +obj-$(CONFIG_MACH_ASPEED_G6) += clk-ast2600.o +obj-$(CONFIG_COMMON_CLK_AST2700) += clk-ast2700.o diff --git a/drivers/clk/aspeed/clk-aspeed.c b/drivers/clk/aspeed/clk-aspeed.c new file mode 100644 index 000000000..38a5766a4 --- /dev/null +++ b/drivers/clk/aspeed/clk-aspeed.c @@ -0,0 +1,741 @@ +// SPDX-License-Identifier: GPL-2.0+ +// Copyright IBM Corp + +#define pr_fmt(fmt) "clk-aspeed: " fmt + +#include <linux/mfd/syscon.h> +#include <linux/of.h> +#include <linux/of_address.h> +#include <linux/platform_device.h> +#include <linux/regmap.h> +#include <linux/slab.h> + +#include <dt-bindings/clock/aspeed-clock.h> + +#include "clk-aspeed.h" + +#define ASPEED_NUM_CLKS 38 + +#define ASPEED_RESET2_OFFSET 32 + +#define ASPEED_RESET_CTRL 0x04 +#define ASPEED_CLK_SELECTION 0x08 +#define ASPEED_CLK_STOP_CTRL 0x0c +#define ASPEED_MPLL_PARAM 0x20 +#define ASPEED_HPLL_PARAM 0x24 +#define AST2500_HPLL_BYPASS_EN BIT(20) +#define AST2400_HPLL_PROGRAMMED BIT(18) +#define AST2400_HPLL_BYPASS_EN BIT(17) +#define ASPEED_MISC_CTRL 0x2c +#define UART_DIV13_EN BIT(12) +#define ASPEED_MAC_CLK_DLY 0x48 +#define ASPEED_STRAP 0x70 +#define CLKIN_25MHZ_EN BIT(23) +#define AST2400_CLK_SOURCE_SEL BIT(18) +#define ASPEED_CLK_SELECTION_2 0xd8 +#define ASPEED_RESET_CTRL2 0xd4 + +/* Globally visible clocks */ +static DEFINE_SPINLOCK(aspeed_clk_lock); + +/* Keeps track of all clocks */ +static struct clk_hw_onecell_data *aspeed_clk_data; + +static void __iomem *scu_base; + +/* TODO: ask Aspeed about the actual parent data */ +static const struct aspeed_gate_data aspeed_gates[] = { + /* clk rst name parent flags */ + [ASPEED_CLK_GATE_ECLK] = { 0, 6, "eclk-gate", "eclk", 0 }, /* Video Engine */ + [ASPEED_CLK_GATE_GCLK] = { 1, 7, "gclk-gate", NULL, 0 }, /* 2D engine */ + [ASPEED_CLK_GATE_MCLK] = { 2, -1, "mclk-gate", "mpll", CLK_IS_CRITICAL }, /* SDRAM */ + [ASPEED_CLK_GATE_VCLK] = { 3, -1, "vclk-gate", NULL, 0 }, /* Video Capture */ + [ASPEED_CLK_GATE_BCLK] = { 4, 8, "bclk-gate", "bclk", CLK_IS_CRITICAL }, /* PCIe/PCI */ + [ASPEED_CLK_GATE_DCLK] = { 5, -1, "dclk-gate", NULL, CLK_IS_CRITICAL }, /* DAC */ + [ASPEED_CLK_GATE_REFCLK] = { 6, -1, "refclk-gate", "clkin", CLK_IS_CRITICAL }, + [ASPEED_CLK_GATE_USBPORT2CLK] = { 7, 3, "usb-port2-gate", NULL, 0 }, /* USB2.0 Host port 2 */ + [ASPEED_CLK_GATE_LCLK] = { 8, 5, "lclk-gate", NULL, 0 }, /* LPC */ + [ASPEED_CLK_GATE_USBUHCICLK] = { 9, 15, "usb-uhci-gate", NULL, 0 }, /* USB1.1 (requires port 2 enabled) */ + [ASPEED_CLK_GATE_D1CLK] = { 10, 13, "d1clk-gate", NULL, 0 }, /* GFX CRT */ + [ASPEED_CLK_GATE_YCLK] = { 13, 4, "yclk-gate", NULL, 0 }, /* HAC */ + [ASPEED_CLK_GATE_USBPORT1CLK] = { 14, 14, "usb-port1-gate", NULL, 0 }, /* USB2 hub/USB2 host port 1/USB1.1 dev */ + [ASPEED_CLK_GATE_UART1CLK] = { 15, -1, "uart1clk-gate", "uart", 0 }, /* UART1 */ + [ASPEED_CLK_GATE_UART2CLK] = { 16, -1, "uart2clk-gate", "uart", 0 }, /* UART2 */ + [ASPEED_CLK_GATE_UART5CLK] = { 17, -1, "uart5clk-gate", "uart", 0 }, /* UART5 */ + [ASPEED_CLK_GATE_ESPICLK] = { 19, -1, "espiclk-gate", NULL, 0 }, /* eSPI */ + [ASPEED_CLK_GATE_MAC1CLK] = { 20, 11, "mac1clk-gate", "mac", 0 }, /* MAC1 */ + [ASPEED_CLK_GATE_MAC2CLK] = { 21, 12, "mac2clk-gate", "mac", 0 }, /* MAC2 */ + [ASPEED_CLK_GATE_RSACLK] = { 24, -1, "rsaclk-gate", NULL, 0 }, /* RSA */ + [ASPEED_CLK_GATE_UART3CLK] = { 25, -1, "uart3clk-gate", "uart", 0 }, /* UART3 */ + [ASPEED_CLK_GATE_UART4CLK] = { 26, -1, "uart4clk-gate", "uart", 0 }, /* UART4 */ + [ASPEED_CLK_GATE_SDCLK] = { 27, 16, "sdclk-gate", NULL, 0 }, /* SDIO/SD */ + [ASPEED_CLK_GATE_LHCCLK] = { 28, -1, "lhclk-gate", "lhclk", 0 }, /* LPC master/LPC+ */ +}; + +static const char * const eclk_parent_names[] = { + "mpll", + "hpll", + "dpll", +}; + +static const struct clk_div_table ast2500_eclk_div_table[] = { + { 0x0, 2 }, + { 0x1, 2 }, + { 0x2, 3 }, + { 0x3, 4 }, + { 0x4, 5 }, + { 0x5, 6 }, + { 0x6, 7 }, + { 0x7, 8 }, + { 0 } +}; + +static const struct clk_div_table ast2500_mac_div_table[] = { + { 0x0, 4 }, /* Yep, really. Aspeed confirmed this is correct */ + { 0x1, 4 }, + { 0x2, 6 }, + { 0x3, 8 }, + { 0x4, 10 }, + { 0x5, 12 }, + { 0x6, 14 }, + { 0x7, 16 }, + { 0 } +}; + +static const struct clk_div_table ast2400_div_table[] = { + { 0x0, 2 }, + { 0x1, 4 }, + { 0x2, 6 }, + { 0x3, 8 }, + { 0x4, 10 }, + { 0x5, 12 }, + { 0x6, 14 }, + { 0x7, 16 }, + { 0 } +}; + +static const struct clk_div_table ast2500_div_table[] = { + { 0x0, 4 }, + { 0x1, 8 }, + { 0x2, 12 }, + { 0x3, 16 }, + { 0x4, 20 }, + { 0x5, 24 }, + { 0x6, 28 }, + { 0x7, 32 }, + { 0 } +}; + +static struct clk_hw *aspeed_ast2400_calc_pll(const char *name, u32 val) +{ + unsigned int mult, div; + + if (val & AST2400_HPLL_BYPASS_EN) { + /* Pass through mode */ + mult = div = 1; + } else { + /* F = 24Mhz * (2-OD) * [(N + 2) / (D + 1)] */ + u32 n = (val >> 5) & 0x3f; + u32 od = (val >> 4) & 0x1; + u32 d = val & 0xf; + + mult = (2 - od) * (n + 2); + div = d + 1; + } + return clk_hw_register_fixed_factor(NULL, name, "clkin", 0, + mult, div); +}; + +static struct clk_hw *aspeed_ast2500_calc_pll(const char *name, u32 val) +{ + unsigned int mult, div; + + if (val & AST2500_HPLL_BYPASS_EN) { + /* Pass through mode */ + mult = div = 1; + } else { + /* F = clkin * [(M+1) / (N+1)] / (P + 1) */ + u32 p = (val >> 13) & 0x3f; + u32 m = (val >> 5) & 0xff; + u32 n = val & 0x1f; + + mult = (m + 1) / (n + 1); + div = p + 1; + } + + return clk_hw_register_fixed_factor(NULL, name, "clkin", 0, + mult, div); +} + +static const struct aspeed_clk_soc_data ast2500_data = { + .div_table = ast2500_div_table, + .eclk_div_table = ast2500_eclk_div_table, + .mac_div_table = ast2500_mac_div_table, + .calc_pll = aspeed_ast2500_calc_pll, +}; + +static const struct aspeed_clk_soc_data ast2400_data = { + .div_table = ast2400_div_table, + .eclk_div_table = ast2400_div_table, + .mac_div_table = ast2400_div_table, + .calc_pll = aspeed_ast2400_calc_pll, +}; + +static int aspeed_clk_is_enabled(struct clk_hw *hw) +{ + struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); + u32 clk = BIT(gate->clock_idx); + u32 rst = BIT(gate->reset_idx); + u32 enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? 0 : clk; + u32 reg; + + /* + * If the IP is in reset, treat the clock as not enabled, + * this happens with some clocks such as the USB one when + * coming from cold reset. Without this, aspeed_clk_enable() + * will fail to lift the reset. + */ + if (gate->reset_idx >= 0) { + regmap_read(gate->map, ASPEED_RESET_CTRL, ®); + if (reg & rst) + return 0; + } + + regmap_read(gate->map, ASPEED_CLK_STOP_CTRL, ®); + + return ((reg & clk) == enval) ? 1 : 0; +} + +static int aspeed_clk_enable(struct clk_hw *hw) +{ + struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); + unsigned long flags; + u32 clk = BIT(gate->clock_idx); + u32 rst = BIT(gate->reset_idx); + u32 enval; + + spin_lock_irqsave(gate->lock, flags); + + if (aspeed_clk_is_enabled(hw)) { + spin_unlock_irqrestore(gate->lock, flags); + return 0; + } + + if (gate->reset_idx >= 0) { + /* Put IP in reset */ + regmap_update_bits(gate->map, ASPEED_RESET_CTRL, rst, rst); + + /* Delay 100us */ + udelay(100); + } + + /* Enable clock */ + enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? 0 : clk; + regmap_update_bits(gate->map, ASPEED_CLK_STOP_CTRL, clk, enval); + + if (gate->reset_idx >= 0) { + /* A delay of 10ms is specified by the ASPEED docs */ + mdelay(10); + + /* Take IP out of reset */ + regmap_update_bits(gate->map, ASPEED_RESET_CTRL, rst, 0); + } + + spin_unlock_irqrestore(gate->lock, flags); + + return 0; +} + +static void aspeed_clk_disable(struct clk_hw *hw) +{ + struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); + unsigned long flags; + u32 clk = BIT(gate->clock_idx); + u32 enval; + + spin_lock_irqsave(gate->lock, flags); + + enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? clk : 0; + regmap_update_bits(gate->map, ASPEED_CLK_STOP_CTRL, clk, enval); + + spin_unlock_irqrestore(gate->lock, flags); +} + +static const struct clk_ops aspeed_clk_gate_ops = { + .enable = aspeed_clk_enable, + .disable = aspeed_clk_disable, + .is_enabled = aspeed_clk_is_enabled, +}; + +static const u8 aspeed_resets[] = { + /* SCU04 resets */ + [ASPEED_RESET_XDMA] = 25, + [ASPEED_RESET_MCTP] = 24, + [ASPEED_RESET_ADC] = 23, + [ASPEED_RESET_JTAG_MASTER] = 22, + [ASPEED_RESET_MIC] = 18, + [ASPEED_RESET_PWM] = 9, + [ASPEED_RESET_PECI] = 10, + [ASPEED_RESET_I2C] = 2, + [ASPEED_RESET_AHB] = 1, + [ASPEED_RESET_HACE] = 4, + [ASPEED_RESET_VIDEO] = 6, + + /* + * SCUD4 resets start at an offset to separate them from + * the SCU04 resets. + */ + [ASPEED_RESET_CRT1] = ASPEED_RESET2_OFFSET + 5, +}; + +static int aspeed_reset_deassert(struct reset_controller_dev *rcdev, + unsigned long id) +{ + struct aspeed_reset *ar = to_aspeed_reset(rcdev); + u32 reg = ASPEED_RESET_CTRL; + u32 bit = aspeed_resets[id]; + + if (bit >= ASPEED_RESET2_OFFSET) { + bit -= ASPEED_RESET2_OFFSET; + reg = ASPEED_RESET_CTRL2; + } + + return regmap_update_bits(ar->map, reg, BIT(bit), 0); +} + +static int aspeed_reset_assert(struct reset_controller_dev *rcdev, + unsigned long id) +{ + struct aspeed_reset *ar = to_aspeed_reset(rcdev); + u32 reg = ASPEED_RESET_CTRL; + u32 bit = aspeed_resets[id]; + + if (bit >= ASPEED_RESET2_OFFSET) { + bit -= ASPEED_RESET2_OFFSET; + reg = ASPEED_RESET_CTRL2; + } + + return regmap_update_bits(ar->map, reg, BIT(bit), BIT(bit)); +} + +static int aspeed_reset_status(struct reset_controller_dev *rcdev, + unsigned long id) +{ + struct aspeed_reset *ar = to_aspeed_reset(rcdev); + u32 reg = ASPEED_RESET_CTRL; + u32 bit = aspeed_resets[id]; + int ret, val; + + if (bit >= ASPEED_RESET2_OFFSET) { + bit -= ASPEED_RESET2_OFFSET; + reg = ASPEED_RESET_CTRL2; + } + + ret = regmap_read(ar->map, reg, &val); + if (ret) + return ret; + + return !!(val & BIT(bit)); +} + +static const struct reset_control_ops aspeed_reset_ops = { + .assert = aspeed_reset_assert, + .deassert = aspeed_reset_deassert, + .status = aspeed_reset_status, +}; + +static struct clk_hw *aspeed_clk_hw_register_gate(struct device *dev, + const char *name, const char *parent_name, unsigned long flags, + struct regmap *map, u8 clock_idx, u8 reset_idx, + u8 clk_gate_flags, spinlock_t *lock) +{ + struct aspeed_clk_gate *gate; + struct clk_init_data init; + struct clk_hw *hw; + int ret; + + gate = kzalloc_obj(*gate); + if (!gate) + return ERR_PTR(-ENOMEM); + + init.name = name; + init.ops = &aspeed_clk_gate_ops; + init.flags = flags; + init.parent_names = parent_name ? &parent_name : NULL; + init.num_parents = parent_name ? 1 : 0; + + gate->map = map; + gate->clock_idx = clock_idx; + gate->reset_idx = reset_idx; + gate->flags = clk_gate_flags; + gate->lock = lock; + gate->hw.init = &init; + + hw = &gate->hw; + ret = clk_hw_register(dev, hw); + if (ret) { + kfree(gate); + hw = ERR_PTR(ret); + } + + return hw; +} + +static int aspeed_clk_probe(struct platform_device *pdev) +{ + const struct aspeed_clk_soc_data *soc_data; + struct device *dev = &pdev->dev; + struct aspeed_reset *ar; + struct regmap *map; + struct clk_hw *hw; + u32 val, rate; + int i, ret; + + map = syscon_node_to_regmap(dev->of_node); + if (IS_ERR(map)) { + dev_err(dev, "no syscon regmap\n"); + return PTR_ERR(map); + } + + ar = devm_kzalloc(dev, sizeof(*ar), GFP_KERNEL); + if (!ar) + return -ENOMEM; + + ar->map = map; + ar->rcdev.owner = THIS_MODULE; + ar->rcdev.nr_resets = ARRAY_SIZE(aspeed_resets); + ar->rcdev.ops = &aspeed_reset_ops; + ar->rcdev.of_node = dev->of_node; + + ret = devm_reset_controller_register(dev, &ar->rcdev); + if (ret) { + dev_err(dev, "could not register reset controller\n"); + return ret; + } + + /* SoC generations share common layouts but have different divisors */ + soc_data = of_device_get_match_data(dev); + if (!soc_data) { + dev_err(dev, "no match data for platform\n"); + return -EINVAL; + } + + /* UART clock div13 setting */ + regmap_read(map, ASPEED_MISC_CTRL, &val); + if (val & UART_DIV13_EN) + rate = 24000000 / 13; + else + rate = 24000000; + /* TODO: Find the parent data for the uart clock */ + hw = clk_hw_register_fixed_rate(dev, "uart", NULL, 0, rate); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_UART] = hw; + + /* + * Memory controller (M-PLL) PLL. This clock is configured by the + * bootloader, and is exposed to Linux as a read-only clock rate. + */ + regmap_read(map, ASPEED_MPLL_PARAM, &val); + hw = soc_data->calc_pll("mpll", val); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_MPLL] = hw; + + /* SD/SDIO clock divider and gate */ + hw = clk_hw_register_gate(dev, "sd_extclk_gate", "hpll", 0, + scu_base + ASPEED_CLK_SELECTION, 15, 0, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + hw = clk_hw_register_divider_table(dev, "sd_extclk", "sd_extclk_gate", + 0, scu_base + ASPEED_CLK_SELECTION, 12, 3, 0, + soc_data->div_table, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_SDIO] = hw; + + /* MAC AHB bus clock divider */ + hw = clk_hw_register_divider_table(dev, "mac", "hpll", 0, + scu_base + ASPEED_CLK_SELECTION, 16, 3, 0, + soc_data->mac_div_table, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_MAC] = hw; + + if (of_device_is_compatible(pdev->dev.of_node, "aspeed,ast2500-scu")) { + /* RMII 50MHz RCLK */ + hw = clk_hw_register_fixed_rate(dev, "mac12rclk", "hpll", 0, + 50000000); + if (IS_ERR(hw)) + return PTR_ERR(hw); + + /* RMII1 50MHz (RCLK) output enable */ + hw = clk_hw_register_gate(dev, "mac1rclk", "mac12rclk", 0, + scu_base + ASPEED_MAC_CLK_DLY, 29, 0, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_MAC1RCLK] = hw; + + /* RMII2 50MHz (RCLK) output enable */ + hw = clk_hw_register_gate(dev, "mac2rclk", "mac12rclk", 0, + scu_base + ASPEED_MAC_CLK_DLY, 30, 0, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_MAC2RCLK] = hw; + } + + /* LPC Host (LHCLK) clock divider */ + hw = clk_hw_register_divider_table(dev, "lhclk", "hpll", 0, + scu_base + ASPEED_CLK_SELECTION, 20, 3, 0, + soc_data->div_table, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_LHCLK] = hw; + + /* P-Bus (BCLK) clock divider */ + hw = clk_hw_register_divider_table(dev, "bclk", "hpll", 0, + scu_base + ASPEED_CLK_SELECTION_2, 0, 2, 0, + soc_data->div_table, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_BCLK] = hw; + + /* Fixed 24MHz clock */ + hw = clk_hw_register_fixed_rate(NULL, "fixed-24m", "clkin", + 0, 24000000); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_24M] = hw; + + hw = clk_hw_register_mux(dev, "eclk-mux", eclk_parent_names, + ARRAY_SIZE(eclk_parent_names), 0, + scu_base + ASPEED_CLK_SELECTION, 2, 0x3, 0, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_ECLK_MUX] = hw; + + hw = clk_hw_register_divider_table(dev, "eclk", "eclk-mux", 0, + scu_base + ASPEED_CLK_SELECTION, 28, + 3, 0, soc_data->eclk_div_table, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[ASPEED_CLK_ECLK] = hw; + + /* + * TODO: There are a number of clocks that not included in this driver + * as more information is required: + * D2-PLL + * D-PLL + * YCLK + * RGMII + * RMII + * UART[1..5] clock source mux + */ + + for (i = 0; i < ARRAY_SIZE(aspeed_gates); i++) { + const struct aspeed_gate_data *gd = &aspeed_gates[i]; + u32 gate_flags; + + /* Special case: the USB port 1 clock (bit 14) is always + * working the opposite way from the other ones. + */ + gate_flags = (gd->clock_idx == 14) ? 0 : CLK_GATE_SET_TO_DISABLE; + hw = aspeed_clk_hw_register_gate(dev, + gd->name, + gd->parent_name, + gd->flags, + map, + gd->clock_idx, + gd->reset_idx, + gate_flags, + &aspeed_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_clk_data->hws[i] = hw; + } + + return 0; +}; + +static const struct of_device_id aspeed_clk_dt_ids[] = { + { .compatible = "aspeed,ast2400-scu", .data = &ast2400_data }, + { .compatible = "aspeed,ast2500-scu", .data = &ast2500_data }, + { } +}; + +static struct platform_driver aspeed_clk_driver = { + .probe = aspeed_clk_probe, + .driver = { + .name = "aspeed-clk", + .of_match_table = aspeed_clk_dt_ids, + .suppress_bind_attrs = true, + }, +}; +builtin_platform_driver(aspeed_clk_driver); + +static void __init aspeed_ast2400_cc(struct regmap *map) +{ + struct clk_hw *hw; + u32 val, div, clkin, hpll; + const u16 hpll_rates[][4] = { + {384, 360, 336, 408}, + {400, 375, 350, 425}, + }; + int rate; + + /* + * CLKIN is the crystal oscillator, 24, 48 or 25MHz selected by + * strapping + */ + regmap_read(map, ASPEED_STRAP, &val); + rate = (val >> 8) & 3; + if (val & CLKIN_25MHZ_EN) { + clkin = 25000000; + hpll = hpll_rates[1][rate]; + } else if (val & AST2400_CLK_SOURCE_SEL) { + clkin = 48000000; + hpll = hpll_rates[0][rate]; + } else { + clkin = 24000000; + hpll = hpll_rates[0][rate]; + } + hw = clk_hw_register_fixed_rate(NULL, "clkin", NULL, 0, clkin); + pr_debug("clkin @%u MHz\n", clkin / 1000000); + + /* + * High-speed PLL clock derived from the crystal. This the CPU clock, + * and we assume that it is enabled. It can be configured through the + * HPLL_PARAM register, or set to a specified frequency by strapping. + */ + regmap_read(map, ASPEED_HPLL_PARAM, &val); + if (val & AST2400_HPLL_PROGRAMMED) + hw = aspeed_ast2400_calc_pll("hpll", val); + else + hw = clk_hw_register_fixed_rate(NULL, "hpll", "clkin", 0, + hpll * 1000000); + + aspeed_clk_data->hws[ASPEED_CLK_HPLL] = hw; + + /* + * Strap bits 11:10 define the CPU/AHB clock frequency ratio (aka HCLK) + * 00: Select CPU:AHB = 1:1 + * 01: Select CPU:AHB = 2:1 + * 10: Select CPU:AHB = 4:1 + * 11: Select CPU:AHB = 3:1 + */ + regmap_read(map, ASPEED_STRAP, &val); + val = (val >> 10) & 0x3; + div = val + 1; + if (div == 3) + div = 4; + else if (div == 4) + div = 3; + hw = clk_hw_register_fixed_factor(NULL, "ahb", "hpll", 0, 1, div); + aspeed_clk_data->hws[ASPEED_CLK_AHB] = hw; + + /* APB clock clock selection register SCU08 (aka PCLK) */ + hw = clk_hw_register_divider_table(NULL, "apb", "hpll", 0, + scu_base + ASPEED_CLK_SELECTION, 23, 3, 0, + ast2400_div_table, + &aspeed_clk_lock); + aspeed_clk_data->hws[ASPEED_CLK_APB] = hw; +} + +static void __init aspeed_ast2500_cc(struct regmap *map) +{ + struct clk_hw *hw; + u32 val, freq, div; + + /* CLKIN is the crystal oscillator, 24 or 25MHz selected by strapping */ + regmap_read(map, ASPEED_STRAP, &val); + if (val & CLKIN_25MHZ_EN) + freq = 25000000; + else + freq = 24000000; + hw = clk_hw_register_fixed_rate(NULL, "clkin", NULL, 0, freq); + pr_debug("clkin @%u MHz\n", freq / 1000000); + + /* + * High-speed PLL clock derived from the crystal. This the CPU clock, + * and we assume that it is enabled + */ + regmap_read(map, ASPEED_HPLL_PARAM, &val); + aspeed_clk_data->hws[ASPEED_CLK_HPLL] = aspeed_ast2500_calc_pll("hpll", val); + + /* Strap bits 11:9 define the AXI/AHB clock frequency ratio (aka HCLK)*/ + regmap_read(map, ASPEED_STRAP, &val); + val = (val >> 9) & 0x7; + WARN(val == 0, "strapping is zero: cannot determine ahb clock"); + div = 2 * (val + 1); + hw = clk_hw_register_fixed_factor(NULL, "ahb", "hpll", 0, 1, div); + aspeed_clk_data->hws[ASPEED_CLK_AHB] = hw; + + /* APB clock clock selection register SCU08 (aka PCLK) */ + regmap_read(map, ASPEED_CLK_SELECTION, &val); + val = (val >> 23) & 0x7; + div = 4 * (val + 1); + hw = clk_hw_register_fixed_factor(NULL, "apb", "hpll", 0, 1, div); + aspeed_clk_data->hws[ASPEED_CLK_APB] = hw; +}; + +static void __init aspeed_cc_init(struct device_node *np) +{ + struct regmap *map; + u32 val; + int ret; + int i; + + scu_base = of_iomap(np, 0); + if (!scu_base) + return; + + aspeed_clk_data = kzalloc_flex(*aspeed_clk_data, hws, ASPEED_NUM_CLKS); + if (!aspeed_clk_data) + return; + aspeed_clk_data->num = ASPEED_NUM_CLKS; + + /* + * This way all clocks fetched before the platform device probes, + * except those we assign here for early use, will be deferred. + */ + for (i = 0; i < ASPEED_NUM_CLKS; i++) + aspeed_clk_data->hws[i] = ERR_PTR(-EPROBE_DEFER); + + map = syscon_node_to_regmap(np); + if (IS_ERR(map)) { + pr_err("no syscon regmap\n"); + return; + } + /* + * We check that the regmap works on this very first access, + * but as this is an MMIO-backed regmap, subsequent regmap + * access is not going to fail and we skip error checks from + * this point. + */ + ret = regmap_read(map, ASPEED_STRAP, &val); + if (ret) { + pr_err("failed to read strapping register\n"); + return; + } + + if (of_device_is_compatible(np, "aspeed,ast2400-scu")) + aspeed_ast2400_cc(map); + else if (of_device_is_compatible(np, "aspeed,ast2500-scu")) + aspeed_ast2500_cc(map); + else + pr_err("unknown platform, failed to add clocks\n"); + ret = of_clk_add_hw_provider(np, of_clk_hw_onecell_get, aspeed_clk_data); + if (ret) + pr_err("failed to add DT provider: %d\n", ret); +}; +CLK_OF_DECLARE_DRIVER(aspeed_cc_g5, "aspeed,ast2500-scu", aspeed_cc_init); +CLK_OF_DECLARE_DRIVER(aspeed_cc_g4, "aspeed,ast2400-scu", aspeed_cc_init); diff --git a/drivers/clk/aspeed/clk-aspeed.h b/drivers/clk/aspeed/clk-aspeed.h new file mode 100644 index 000000000..5296b15b1 --- /dev/null +++ b/drivers/clk/aspeed/clk-aspeed.h @@ -0,0 +1,82 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Structures used by ASPEED clock drivers + * + * Copyright 2019 IBM Corp. + */ + +#include <linux/clk-provider.h> +#include <linux/kernel.h> +#include <linux/reset-controller.h> +#include <linux/spinlock.h> + +struct clk_div_table; +struct regmap; + +/** + * struct aspeed_gate_data - Aspeed gated clocks + * @clock_idx: bit used to gate this clock in the clock register + * @reset_idx: bit used to reset this IP in the reset register. -1 if no + * reset is required when enabling the clock + * @name: the clock name + * @parent_name: the name of the parent clock + * @flags: standard clock framework flags + */ +struct aspeed_gate_data { + u8 clock_idx; + s8 reset_idx; + const char *name; + const char *parent_name; + unsigned long flags; +}; + +/** + * struct aspeed_clk_gate - Aspeed specific clk_gate structure + * @hw: handle between common and hardware-specific interfaces + * @reg: register controlling gate + * @clock_idx: bit used to gate this clock in the clock register + * @reset_idx: bit used to reset this IP in the reset register. -1 if no + * reset is required when enabling the clock + * @flags: hardware-specific flags + * @lock: register lock + * + * Some of the clocks in the Aspeed SoC must be put in reset before enabling. + * This modified version of clk_gate allows an optional reset bit to be + * specified. + */ +struct aspeed_clk_gate { + struct clk_hw hw; + struct regmap *map; + u8 clock_idx; + s8 reset_idx; + u8 flags; + spinlock_t *lock; +}; + +#define to_aspeed_clk_gate(_hw) container_of(_hw, struct aspeed_clk_gate, hw) + +/** + * struct aspeed_reset - Aspeed reset controller + * @map: regmap to access the containing system controller + * @rcdev: reset controller device + */ +struct aspeed_reset { + struct regmap *map; + struct reset_controller_dev rcdev; +}; + +#define to_aspeed_reset(p) container_of((p), struct aspeed_reset, rcdev) + +/** + * struct aspeed_clk_soc_data - Aspeed SoC specific divisor information + * @div_table: Common divider lookup table + * @eclk_div_table: Divider lookup table for ECLK + * @mac_div_table: Divider lookup table for MAC (Ethernet) clocks + * @calc_pll: Callback to maculate common PLL settings + */ +struct aspeed_clk_soc_data { + const struct clk_div_table *div_table; + const struct clk_div_table *eclk_div_table; + const struct clk_div_table *mac_div_table; + struct clk_hw *(*calc_pll)(const char *name, u32 val); +}; diff --git a/drivers/clk/aspeed/clk-ast2600.c b/drivers/clk/aspeed/clk-ast2600.c new file mode 100644 index 000000000..70061c961 --- /dev/null +++ b/drivers/clk/aspeed/clk-ast2600.c @@ -0,0 +1,870 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +// Copyright IBM Corp +// Copyright ASPEED Technology + +#define pr_fmt(fmt) "clk-ast2600: " fmt + +#include <linux/mfd/syscon.h> +#include <linux/of_address.h> +#include <linux/platform_device.h> +#include <linux/regmap.h> +#include <linux/slab.h> + +#include <dt-bindings/clock/ast2600-clock.h> + +#include "clk-aspeed.h" + +/* + * This includes the gates (configured from aspeed_g6_gates), plus the + * explicitly-configured clocks (ASPEED_CLK_HPLL and up). + */ +#define ASPEED_G6_NUM_CLKS 73 + +#define ASPEED_G6_SILICON_REV 0x014 +#define CHIP_REVISION_ID GENMASK(23, 16) + +#define ASPEED_G6_RESET_CTRL 0x040 +#define ASPEED_G6_RESET_CTRL2 0x050 + +#define ASPEED_G6_CLK_STOP_CTRL 0x080 +#define ASPEED_G6_CLK_STOP_CTRL2 0x090 + +#define ASPEED_G6_MISC_CTRL 0x0C0 +#define UART_DIV13_EN BIT(12) + +#define ASPEED_G6_CLK_SELECTION1 0x300 +#define ASPEED_G6_CLK_SELECTION2 0x304 +#define ASPEED_G6_CLK_SELECTION4 0x310 +#define ASPEED_G6_CLK_SELECTION5 0x314 +#define I3C_CLK_SELECTION_SHIFT 31 +#define I3C_CLK_SELECTION BIT(31) +#define I3C_CLK_SELECT_HCLK (0 << I3C_CLK_SELECTION_SHIFT) +#define I3C_CLK_SELECT_APLL_DIV (1 << I3C_CLK_SELECTION_SHIFT) +#define APLL_DIV_SELECTION_SHIFT 28 +#define APLL_DIV_SELECTION GENMASK(30, 28) +#define APLL_DIV_2 (0b001 << APLL_DIV_SELECTION_SHIFT) +#define APLL_DIV_3 (0b010 << APLL_DIV_SELECTION_SHIFT) +#define APLL_DIV_4 (0b011 << APLL_DIV_SELECTION_SHIFT) +#define APLL_DIV_5 (0b100 << APLL_DIV_SELECTION_SHIFT) +#define APLL_DIV_6 (0b101 << APLL_DIV_SELECTION_SHIFT) +#define APLL_DIV_7 (0b110 << APLL_DIV_SELECTION_SHIFT) +#define APLL_DIV_8 (0b111 << APLL_DIV_SELECTION_SHIFT) + +#define ASPEED_HPLL_PARAM 0x200 +#define ASPEED_APLL_PARAM 0x210 +#define ASPEED_MPLL_PARAM 0x220 +#define ASPEED_EPLL_PARAM 0x240 +#define ASPEED_DPLL_PARAM 0x260 + +#define ASPEED_G6_STRAP1 0x500 + +#define ASPEED_MAC12_CLK_DLY 0x340 +#define ASPEED_MAC34_CLK_DLY 0x350 + +/* Globally visible clocks */ +static DEFINE_SPINLOCK(aspeed_g6_clk_lock); + +/* Keeps track of all clocks */ +static struct clk_hw_onecell_data *aspeed_g6_clk_data; + +static void __iomem *scu_g6_base; +/* AST2600 revision: A0, A1, A2, etc */ +static u8 soc_rev; + +/* + * The majority of the clocks in the system are gates paired with a reset + * controller that holds the IP in reset; this is represented by the @reset_idx + * member of entries here. + * + * This borrows from clk_hw_register_gate, but registers two 'gates', one + * to control the clock enable register and the other to control the reset + * IP. This allows us to enforce the ordering: + * + * 1. Place IP in reset + * 2. Enable clock + * 3. Delay + * 4. Release reset + * + * Consequently, if reset_idx is set, reset control is implicit: the clock + * consumer does not need its own reset handling, as enabling the clock will + * also deassert reset. + * + * There are some gates that do not have an associated reset; these are + * handled by using -1 as the index for the reset, and the consumer must + * explicitly assert/deassert reset lines as required. + * + * Clocks marked with CLK_IS_CRITICAL: + * + * ref0 and ref1 are essential for the SoC to operate + * mpll is required if SDRAM is used + */ +static const struct aspeed_gate_data aspeed_g6_gates[] = { + /* clk rst name parent flags */ + [ASPEED_CLK_GATE_MCLK] = { 0, -1, "mclk-gate", "mpll", CLK_IS_CRITICAL }, /* SDRAM */ + [ASPEED_CLK_GATE_ECLK] = { 1, 6, "eclk-gate", "eclk", 0 }, /* Video Engine */ + [ASPEED_CLK_GATE_GCLK] = { 2, 7, "gclk-gate", NULL, 0 }, /* 2D engine */ + /* vclk parent - dclk/d1clk/hclk/mclk */ + [ASPEED_CLK_GATE_VCLK] = { 3, -1, "vclk-gate", NULL, 0 }, /* Video Capture */ + [ASPEED_CLK_GATE_BCLK] = { 4, 8, "bclk-gate", "bclk", 0 }, /* PCIe/PCI */ + /* From dpll */ + [ASPEED_CLK_GATE_DCLK] = { 5, -1, "dclk-gate", NULL, CLK_IS_CRITICAL }, /* DAC */ + [ASPEED_CLK_GATE_REF0CLK] = { 6, -1, "ref0clk-gate", "clkin", CLK_IS_CRITICAL }, + [ASPEED_CLK_GATE_USBPORT2CLK] = { 7, 3, "usb-port2-gate", NULL, 0 }, /* USB2.0 Host port 2 */ + /* Reserved 8 */ + [ASPEED_CLK_GATE_USBUHCICLK] = { 9, 15, "usb-uhci-gate", NULL, 0 }, /* USB1.1 (requires port 2 enabled) */ + /* From dpll/epll/40mhz usb p1 phy/gpioc6/dp phy pll */ + [ASPEED_CLK_GATE_D1CLK] = { 10, 13, "d1clk-gate", "d1clk", 0 }, /* GFX CRT */ + /* Reserved 11/12 */ + [ASPEED_CLK_GATE_YCLK] = { 13, 4, "yclk-gate", NULL, 0 }, /* HAC */ + [ASPEED_CLK_GATE_USBPORT1CLK] = { 14, 14, "usb-port1-gate", NULL, 0 }, /* USB2 hub/USB2 host port 1/USB1.1 dev */ + [ASPEED_CLK_GATE_UART5CLK] = { 15, -1, "uart5clk-gate", "uart", 0 }, /* UART5 */ + /* Reserved 16/19 */ + [ASPEED_CLK_GATE_MAC1CLK] = { 20, 11, "mac1clk-gate", "mac12", 0 }, /* MAC1 */ + [ASPEED_CLK_GATE_MAC2CLK] = { 21, 12, "mac2clk-gate", "mac12", 0 }, /* MAC2 */ + /* Reserved 22/23 */ + [ASPEED_CLK_GATE_RSACLK] = { 24, 4, "rsaclk-gate", NULL, 0 }, /* HAC */ + [ASPEED_CLK_GATE_RVASCLK] = { 25, 9, "rvasclk-gate", NULL, 0 }, /* RVAS */ + /* Reserved 26 */ + [ASPEED_CLK_GATE_EMMCCLK] = { 27, 16, "emmcclk-gate", NULL, 0 }, /* For card clk */ + /* Reserved 28/29/30 */ + [ASPEED_CLK_GATE_LCLK] = { 32, 32, "lclk-gate", NULL, 0 }, /* LPC */ + [ASPEED_CLK_GATE_ESPICLK] = { 33, -1, "espiclk-gate", NULL, 0 }, /* eSPI */ + [ASPEED_CLK_GATE_REF1CLK] = { 34, -1, "ref1clk-gate", "clkin", CLK_IS_CRITICAL }, + /* Reserved 35 */ + [ASPEED_CLK_GATE_SDCLK] = { 36, 56, "sdclk-gate", NULL, 0 }, /* SDIO/SD */ + [ASPEED_CLK_GATE_LHCCLK] = { 37, -1, "lhclk-gate", "lhclk", 0 }, /* LPC master/LPC+ */ + /* Reserved 38 RSA: no longer used */ + /* Reserved 39 */ + [ASPEED_CLK_GATE_I3C0CLK] = { 40, 40, "i3c0clk-gate", "i3cclk", 0 }, /* I3C0 */ + [ASPEED_CLK_GATE_I3C1CLK] = { 41, 41, "i3c1clk-gate", "i3cclk", 0 }, /* I3C1 */ + [ASPEED_CLK_GATE_I3C2CLK] = { 42, 42, "i3c2clk-gate", "i3cclk", 0 }, /* I3C2 */ + [ASPEED_CLK_GATE_I3C3CLK] = { 43, 43, "i3c3clk-gate", "i3cclk", 0 }, /* I3C3 */ + [ASPEED_CLK_GATE_I3C4CLK] = { 44, 44, "i3c4clk-gate", "i3cclk", 0 }, /* I3C4 */ + [ASPEED_CLK_GATE_I3C5CLK] = { 45, 45, "i3c5clk-gate", "i3cclk", 0 }, /* I3C5 */ + /* Reserved: 46 & 47 */ + [ASPEED_CLK_GATE_UART1CLK] = { 48, -1, "uart1clk-gate", "uart", 0 }, /* UART1 */ + [ASPEED_CLK_GATE_UART2CLK] = { 49, -1, "uart2clk-gate", "uart", 0 }, /* UART2 */ + [ASPEED_CLK_GATE_UART3CLK] = { 50, -1, "uart3clk-gate", "uart", 0 }, /* UART3 */ + [ASPEED_CLK_GATE_UART4CLK] = { 51, -1, "uart4clk-gate", "uart", 0 }, /* UART4 */ + [ASPEED_CLK_GATE_MAC3CLK] = { 52, 52, "mac3clk-gate", "mac34", 0 }, /* MAC3 */ + [ASPEED_CLK_GATE_MAC4CLK] = { 53, 53, "mac4clk-gate", "mac34", 0 }, /* MAC4 */ + [ASPEED_CLK_GATE_UART6CLK] = { 54, -1, "uart6clk-gate", "uartx", 0 }, /* UART6 */ + [ASPEED_CLK_GATE_UART7CLK] = { 55, -1, "uart7clk-gate", "uartx", 0 }, /* UART7 */ + [ASPEED_CLK_GATE_UART8CLK] = { 56, -1, "uart8clk-gate", "uartx", 0 }, /* UART8 */ + [ASPEED_CLK_GATE_UART9CLK] = { 57, -1, "uart9clk-gate", "uartx", 0 }, /* UART9 */ + [ASPEED_CLK_GATE_UART10CLK] = { 58, -1, "uart10clk-gate", "uartx", 0 }, /* UART10 */ + [ASPEED_CLK_GATE_UART11CLK] = { 59, -1, "uart11clk-gate", "uartx", 0 }, /* UART11 */ + [ASPEED_CLK_GATE_UART12CLK] = { 60, -1, "uart12clk-gate", "uartx", 0 }, /* UART12 */ + [ASPEED_CLK_GATE_UART13CLK] = { 61, -1, "uart13clk-gate", "uartx", 0 }, /* UART13 */ + [ASPEED_CLK_GATE_FSICLK] = { 62, 59, "fsiclk-gate", "fsiclk", 0 }, /* FSI */ +}; + +static const struct clk_div_table ast2600_eclk_div_table[] = { + { 0x0, 2 }, + { 0x1, 2 }, + { 0x2, 3 }, + { 0x3, 4 }, + { 0x4, 5 }, + { 0x5, 6 }, + { 0x6, 7 }, + { 0x7, 8 }, + { 0 } +}; + +static const struct clk_div_table ast2600_emmc_extclk_div_table[] = { + { 0x0, 2 }, + { 0x1, 4 }, + { 0x2, 6 }, + { 0x3, 8 }, + { 0x4, 10 }, + { 0x5, 12 }, + { 0x6, 14 }, + { 0x7, 16 }, + { 0 } +}; + +static const struct clk_div_table ast2600_mac_div_table[] = { + { 0x0, 4 }, + { 0x1, 4 }, + { 0x2, 6 }, + { 0x3, 8 }, + { 0x4, 10 }, + { 0x5, 12 }, + { 0x6, 14 }, + { 0x7, 16 }, + { 0 } +}; + +static const struct clk_div_table ast2600_div_table[] = { + { 0x0, 4 }, + { 0x1, 8 }, + { 0x2, 12 }, + { 0x3, 16 }, + { 0x4, 20 }, + { 0x5, 24 }, + { 0x6, 28 }, + { 0x7, 32 }, + { 0 } +}; + +/* For hpll/dpll/epll/mpll */ +static struct clk_hw *ast2600_calc_pll(const char *name, u32 val) +{ + unsigned int mult, div; + + if (val & BIT(24)) { + /* Pass through mode */ + mult = div = 1; + } else { + /* F = 25Mhz * [(M + 2) / (n + 1)] / (p + 1) */ + u32 m = val & 0x1fff; + u32 n = (val >> 13) & 0x3f; + u32 p = (val >> 19) & 0xf; + mult = (m + 1) / (n + 1); + div = (p + 1); + } + return clk_hw_register_fixed_factor(NULL, name, "clkin", 0, + mult, div); +}; + +static struct clk_hw *ast2600_calc_apll(const char *name, u32 val) +{ + unsigned int mult, div; + + if (soc_rev >= 2) { + if (val & BIT(24)) { + /* Pass through mode */ + mult = div = 1; + } else { + /* F = 25Mhz * [(m + 1) / (n + 1)] / (p + 1) */ + u32 m = val & 0x1fff; + u32 n = (val >> 13) & 0x3f; + u32 p = (val >> 19) & 0xf; + + mult = (m + 1); + div = (n + 1) * (p + 1); + } + } else { + if (val & BIT(20)) { + /* Pass through mode */ + mult = div = 1; + } else { + /* F = 25Mhz * (2-od) * [(m + 2) / (n + 1)] */ + u32 m = (val >> 5) & 0x3f; + u32 od = (val >> 4) & 0x1; + u32 n = val & 0xf; + + mult = (2 - od) * (m + 2); + div = n + 1; + } + } + return clk_hw_register_fixed_factor(NULL, name, "clkin", 0, + mult, div); +}; + +static u32 get_bit(u8 idx) +{ + return BIT(idx % 32); +} + +static u32 get_reset_reg(struct aspeed_clk_gate *gate) +{ + if (gate->reset_idx < 32) + return ASPEED_G6_RESET_CTRL; + + return ASPEED_G6_RESET_CTRL2; +} + +static u32 get_clock_reg(struct aspeed_clk_gate *gate) +{ + if (gate->clock_idx < 32) + return ASPEED_G6_CLK_STOP_CTRL; + + return ASPEED_G6_CLK_STOP_CTRL2; +} + +static int aspeed_g6_clk_is_enabled(struct clk_hw *hw) +{ + struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); + u32 clk = get_bit(gate->clock_idx); + u32 rst = get_bit(gate->reset_idx); + u32 reg; + u32 enval; + + /* + * If the IP is in reset, treat the clock as not enabled, + * this happens with some clocks such as the USB one when + * coming from cold reset. Without this, aspeed_clk_enable() + * will fail to lift the reset. + */ + if (gate->reset_idx >= 0) { + regmap_read(gate->map, get_reset_reg(gate), ®); + + if (reg & rst) + return 0; + } + + regmap_read(gate->map, get_clock_reg(gate), ®); + + enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? 0 : clk; + + return ((reg & clk) == enval) ? 1 : 0; +} + +static int aspeed_g6_clk_enable(struct clk_hw *hw) +{ + struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); + unsigned long flags; + u32 clk = get_bit(gate->clock_idx); + u32 rst = get_bit(gate->reset_idx); + + spin_lock_irqsave(gate->lock, flags); + + if (aspeed_g6_clk_is_enabled(hw)) { + spin_unlock_irqrestore(gate->lock, flags); + return 0; + } + + if (gate->reset_idx >= 0) { + /* Put IP in reset */ + regmap_write(gate->map, get_reset_reg(gate), rst); + /* Delay 100us */ + udelay(100); + } + + /* Enable clock */ + if (gate->flags & CLK_GATE_SET_TO_DISABLE) { + /* Clock is clear to enable, so use set to clear register */ + regmap_write(gate->map, get_clock_reg(gate) + 0x04, clk); + } else { + /* Clock is set to enable, so use write to set register */ + regmap_write(gate->map, get_clock_reg(gate), clk); + } + + if (gate->reset_idx >= 0) { + /* A delay of 10ms is specified by the ASPEED docs */ + mdelay(10); + /* Take IP out of reset */ + regmap_write(gate->map, get_reset_reg(gate) + 0x4, rst); + } + + spin_unlock_irqrestore(gate->lock, flags); + + return 0; +} + +static void aspeed_g6_clk_disable(struct clk_hw *hw) +{ + struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); + unsigned long flags; + u32 clk = get_bit(gate->clock_idx); + + spin_lock_irqsave(gate->lock, flags); + + if (gate->flags & CLK_GATE_SET_TO_DISABLE) { + regmap_write(gate->map, get_clock_reg(gate), clk); + } else { + /* Use set to clear register */ + regmap_write(gate->map, get_clock_reg(gate) + 0x4, clk); + } + + spin_unlock_irqrestore(gate->lock, flags); +} + +static const struct clk_ops aspeed_g6_clk_gate_ops = { + .enable = aspeed_g6_clk_enable, + .disable = aspeed_g6_clk_disable, + .is_enabled = aspeed_g6_clk_is_enabled, +}; + +static int aspeed_g6_reset_deassert(struct reset_controller_dev *rcdev, + unsigned long id) +{ + struct aspeed_reset *ar = to_aspeed_reset(rcdev); + u32 rst = get_bit(id); + u32 reg = id >= 32 ? ASPEED_G6_RESET_CTRL2 : ASPEED_G6_RESET_CTRL; + + /* Use set to clear register */ + return regmap_write(ar->map, reg + 0x04, rst); +} + +static int aspeed_g6_reset_assert(struct reset_controller_dev *rcdev, + unsigned long id) +{ + struct aspeed_reset *ar = to_aspeed_reset(rcdev); + u32 rst = get_bit(id); + u32 reg = id >= 32 ? ASPEED_G6_RESET_CTRL2 : ASPEED_G6_RESET_CTRL; + + return regmap_write(ar->map, reg, rst); +} + +static int aspeed_g6_reset_status(struct reset_controller_dev *rcdev, + unsigned long id) +{ + struct aspeed_reset *ar = to_aspeed_reset(rcdev); + int ret; + u32 val; + u32 rst = get_bit(id); + u32 reg = id >= 32 ? ASPEED_G6_RESET_CTRL2 : ASPEED_G6_RESET_CTRL; + + ret = regmap_read(ar->map, reg, &val); + if (ret) + return ret; + + return !!(val & rst); +} + +static const struct reset_control_ops aspeed_g6_reset_ops = { + .assert = aspeed_g6_reset_assert, + .deassert = aspeed_g6_reset_deassert, + .status = aspeed_g6_reset_status, +}; + +static struct clk_hw *aspeed_g6_clk_hw_register_gate(struct device *dev, + const char *name, const char *parent_name, unsigned long flags, + struct regmap *map, u8 clock_idx, u8 reset_idx, + u8 clk_gate_flags, spinlock_t *lock) +{ + struct aspeed_clk_gate *gate; + struct clk_init_data init; + struct clk_hw *hw; + int ret; + + gate = kzalloc_obj(*gate); + if (!gate) + return ERR_PTR(-ENOMEM); + + init.name = name; + init.ops = &aspeed_g6_clk_gate_ops; + init.flags = flags; + init.parent_names = parent_name ? &parent_name : NULL; + init.num_parents = parent_name ? 1 : 0; + + gate->map = map; + gate->clock_idx = clock_idx; + gate->reset_idx = reset_idx; + gate->flags = clk_gate_flags; + gate->lock = lock; + gate->hw.init = &init; + + hw = &gate->hw; + ret = clk_hw_register(dev, hw); + if (ret) { + kfree(gate); + hw = ERR_PTR(ret); + } + + return hw; +} + +static const char *const emmc_extclk_parent_names[] = { + "emmc_extclk_hpll_in", + "mpll", +}; + +static const char * const vclk_parent_names[] = { + "dpll", + "d1pll", + "hclk", + "mclk", +}; + +static const char * const d1clk_parent_names[] = { + "dpll", + "epll", + "usb-phy-40m", + "gpioc6_clkin", + "dp_phy_pll", +}; + +static int aspeed_g6_clk_probe(struct platform_device *pdev) +{ + struct device *dev = &pdev->dev; + struct aspeed_reset *ar; + struct regmap *map; + struct clk_hw *hw; + u32 val, rate; + int i, ret; + + map = syscon_node_to_regmap(dev->of_node); + if (IS_ERR(map)) { + dev_err(dev, "no syscon regmap\n"); + return PTR_ERR(map); + } + + ar = devm_kzalloc(dev, sizeof(*ar), GFP_KERNEL); + if (!ar) + return -ENOMEM; + + ar->map = map; + + ar->rcdev.owner = THIS_MODULE; + ar->rcdev.nr_resets = 64; + ar->rcdev.ops = &aspeed_g6_reset_ops; + ar->rcdev.of_node = dev->of_node; + + ret = devm_reset_controller_register(dev, &ar->rcdev); + if (ret) { + dev_err(dev, "could not register reset controller\n"); + return ret; + } + + /* UART clock div13 setting */ + regmap_read(map, ASPEED_G6_MISC_CTRL, &val); + if (val & UART_DIV13_EN) + rate = 24000000 / 13; + else + rate = 24000000; + hw = clk_hw_register_fixed_rate(dev, "uart", NULL, 0, rate); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_UART] = hw; + + /* UART6~13 clock div13 setting */ + regmap_read(map, 0x80, &val); + if (val & BIT(31)) + rate = 24000000 / 13; + else + rate = 24000000; + hw = clk_hw_register_fixed_rate(dev, "uartx", NULL, 0, rate); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_UARTX] = hw; + + /* EMMC ext clock */ + hw = clk_hw_register_fixed_factor(dev, "emmc_extclk_hpll_in", "hpll", + 0, 1, 2); + if (IS_ERR(hw)) + return PTR_ERR(hw); + + hw = clk_hw_register_mux(dev, "emmc_extclk_mux", + emmc_extclk_parent_names, + ARRAY_SIZE(emmc_extclk_parent_names), 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION1, 11, 1, + 0, &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + + hw = clk_hw_register_gate(dev, "emmc_extclk_gate", "emmc_extclk_mux", + 0, scu_g6_base + ASPEED_G6_CLK_SELECTION1, + 15, 0, &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + + hw = clk_hw_register_divider_table(dev, "emmc_extclk", + "emmc_extclk_gate", 0, + scu_g6_base + + ASPEED_G6_CLK_SELECTION1, 12, + 3, 0, ast2600_emmc_extclk_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_EMMC] = hw; + + /* SD/SDIO clock divider and gate */ + hw = clk_hw_register_gate(dev, "sd_extclk_gate", "hpll", 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION4, 31, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + hw = clk_hw_register_divider_table(dev, "sd_extclk", "sd_extclk_gate", + 0, scu_g6_base + ASPEED_G6_CLK_SELECTION4, 28, 3, 0, + ast2600_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_SDIO] = hw; + + /* MAC1/2 RMII 50MHz RCLK */ + hw = clk_hw_register_fixed_rate(dev, "mac12rclk", "hpll", 0, 50000000); + if (IS_ERR(hw)) + return PTR_ERR(hw); + + /* MAC1/2 AHB bus clock divider */ + hw = clk_hw_register_divider_table(dev, "mac12", "hpll", 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION1, 16, 3, 0, + ast2600_mac_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_MAC12] = hw; + + /* RMII1 50MHz (RCLK) output enable */ + hw = clk_hw_register_gate(dev, "mac1rclk", "mac12rclk", 0, + scu_g6_base + ASPEED_MAC12_CLK_DLY, 29, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_MAC1RCLK] = hw; + + /* RMII2 50MHz (RCLK) output enable */ + hw = clk_hw_register_gate(dev, "mac2rclk", "mac12rclk", 0, + scu_g6_base + ASPEED_MAC12_CLK_DLY, 30, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_MAC2RCLK] = hw; + + /* MAC1/2 RMII 50MHz RCLK */ + hw = clk_hw_register_fixed_rate(dev, "mac34rclk", "hclk", 0, 50000000); + if (IS_ERR(hw)) + return PTR_ERR(hw); + + /* MAC3/4 AHB bus clock divider */ + hw = clk_hw_register_divider_table(dev, "mac34", "hpll", 0, + scu_g6_base + 0x310, 24, 3, 0, + ast2600_mac_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_MAC34] = hw; + + /* RMII3 50MHz (RCLK) output enable */ + hw = clk_hw_register_gate(dev, "mac3rclk", "mac34rclk", 0, + scu_g6_base + ASPEED_MAC34_CLK_DLY, 29, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_MAC3RCLK] = hw; + + /* RMII4 50MHz (RCLK) output enable */ + hw = clk_hw_register_gate(dev, "mac4rclk", "mac34rclk", 0, + scu_g6_base + ASPEED_MAC34_CLK_DLY, 30, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_MAC4RCLK] = hw; + + /* LPC Host (LHCLK) clock divider */ + hw = clk_hw_register_divider_table(dev, "lhclk", "hpll", 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION1, 20, 3, 0, + ast2600_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_LHCLK] = hw; + + /* gfx d1clk : use dp clk */ + regmap_update_bits(map, ASPEED_G6_CLK_SELECTION1, GENMASK(10, 8), BIT(10)); + /* SoC Display clock selection */ + hw = clk_hw_register_mux(dev, "d1clk", d1clk_parent_names, + ARRAY_SIZE(d1clk_parent_names), 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION1, 8, 3, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_D1CLK] = hw; + + /* d1 clk div 0x308[17:15] x [14:12] - 8,7,6,5,4,3,2,1 */ + regmap_write(map, 0x308, 0x12000); /* 3x3 = 9 */ + + /* P-Bus (BCLK) clock divider */ + hw = clk_hw_register_divider_table(dev, "bclk", "epll", 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION1, 20, 3, 0, + ast2600_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_BCLK] = hw; + + /* Video Capture clock selection */ + hw = clk_hw_register_mux(dev, "vclk", vclk_parent_names, + ARRAY_SIZE(vclk_parent_names), 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION2, 12, 3, 0, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_VCLK] = hw; + + /* Video Engine clock divider */ + hw = clk_hw_register_divider_table(dev, "eclk", NULL, 0, + scu_g6_base + ASPEED_G6_CLK_SELECTION1, 28, 3, 0, + ast2600_eclk_div_table, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[ASPEED_CLK_ECLK] = hw; + + for (i = 0; i < ARRAY_SIZE(aspeed_g6_gates); i++) { + const struct aspeed_gate_data *gd = &aspeed_g6_gates[i]; + u32 gate_flags; + + if (!gd->name) + continue; + + /* + * Special case: the USB port 1 clock (bit 14) is always + * working the opposite way from the other ones. + */ + gate_flags = (gd->clock_idx == 14) ? 0 : CLK_GATE_SET_TO_DISABLE; + hw = aspeed_g6_clk_hw_register_gate(dev, + gd->name, + gd->parent_name, + gd->flags, + map, + gd->clock_idx, + gd->reset_idx, + gate_flags, + &aspeed_g6_clk_lock); + if (IS_ERR(hw)) + return PTR_ERR(hw); + aspeed_g6_clk_data->hws[i] = hw; + } + + return 0; +}; + +static const struct of_device_id aspeed_g6_clk_dt_ids[] = { + { .compatible = "aspeed,ast2600-scu" }, + { } +}; + +static struct platform_driver aspeed_g6_clk_driver = { + .probe = aspeed_g6_clk_probe, + .driver = { + .name = "ast2600-clk", + .of_match_table = aspeed_g6_clk_dt_ids, + .suppress_bind_attrs = true, + }, +}; +builtin_platform_driver(aspeed_g6_clk_driver); + +static const u32 ast2600_a0_axi_ahb_div_table[] = { + 2, 2, 3, 5, +}; + +static const u32 ast2600_a1_axi_ahb_div0_tbl[] = { + 3, 2, 3, 4, +}; + +static const u32 ast2600_a1_axi_ahb_div1_tbl[] = { + 3, 4, 6, 8, +}; + +static const u32 ast2600_a1_axi_ahb200_tbl[] = { + 3, 4, 3, 4, 2, 2, 2, 2, +}; + +static void __init aspeed_g6_cc(struct regmap *map) +{ + struct clk_hw *hw; + u32 val, div, divbits, axi_div, ahb_div; + + clk_hw_register_fixed_rate(NULL, "clkin", NULL, 0, 25000000); + + /* + * High-speed PLL clock derived from the crystal. This the CPU clock, + * and we assume that it is enabled + */ + regmap_read(map, ASPEED_HPLL_PARAM, &val); + aspeed_g6_clk_data->hws[ASPEED_CLK_HPLL] = ast2600_calc_pll("hpll", val); + + regmap_read(map, ASPEED_MPLL_PARAM, &val); + aspeed_g6_clk_data->hws[ASPEED_CLK_MPLL] = ast2600_calc_pll("mpll", val); + + regmap_read(map, ASPEED_DPLL_PARAM, &val); + aspeed_g6_clk_data->hws[ASPEED_CLK_DPLL] = ast2600_calc_pll("dpll", val); + + regmap_read(map, ASPEED_EPLL_PARAM, &val); + aspeed_g6_clk_data->hws[ASPEED_CLK_EPLL] = ast2600_calc_pll("epll", val); + + regmap_read(map, ASPEED_APLL_PARAM, &val); + aspeed_g6_clk_data->hws[ASPEED_CLK_APLL] = ast2600_calc_apll("apll", val); + + /* Strap bits 12:11 define the AXI/AHB clock frequency ratio (aka HCLK)*/ + regmap_read(map, ASPEED_G6_STRAP1, &val); + if (val & BIT(16)) + axi_div = 1; + else + axi_div = 2; + + divbits = (val >> 11) & 0x3; + if (soc_rev >= 1) { + if (!divbits) { + ahb_div = ast2600_a1_axi_ahb200_tbl[(val >> 8) & 0x3]; + if (val & BIT(16)) + ahb_div *= 2; + } else { + if (val & BIT(16)) + ahb_div = ast2600_a1_axi_ahb_div1_tbl[divbits]; + else + ahb_div = ast2600_a1_axi_ahb_div0_tbl[divbits]; + } + } else { + ahb_div = ast2600_a0_axi_ahb_div_table[(val >> 11) & 0x3]; + } + + hw = clk_hw_register_fixed_factor(NULL, "ahb", "hpll", 0, 1, axi_div * ahb_div); + aspeed_g6_clk_data->hws[ASPEED_CLK_AHB] = hw; + + regmap_read(map, ASPEED_G6_CLK_SELECTION1, &val); + val = (val >> 23) & 0x7; + div = 4 * (val + 1); + hw = clk_hw_register_fixed_factor(NULL, "apb1", "hpll", 0, 1, div); + aspeed_g6_clk_data->hws[ASPEED_CLK_APB1] = hw; + + regmap_read(map, ASPEED_G6_CLK_SELECTION4, &val); + val = (val >> 9) & 0x7; + div = 2 * (val + 1); + hw = clk_hw_register_fixed_factor(NULL, "apb2", "ahb", 0, 1, div); + aspeed_g6_clk_data->hws[ASPEED_CLK_APB2] = hw; + + /* USB 2.0 port1 phy 40MHz clock */ + hw = clk_hw_register_fixed_rate(NULL, "usb-phy-40m", NULL, 0, 40000000); + aspeed_g6_clk_data->hws[ASPEED_CLK_USBPHY_40M] = hw; + + /* i3c clock: source from apll, divide by 8 */ + regmap_update_bits(map, ASPEED_G6_CLK_SELECTION5, + I3C_CLK_SELECTION | APLL_DIV_SELECTION, + I3C_CLK_SELECT_APLL_DIV | APLL_DIV_8); + + hw = clk_hw_register_fixed_factor(NULL, "i3cclk", "apll", 0, 1, 8); + aspeed_g6_clk_data->hws[ASPEED_CLK_I3C] = hw; + + hw = clk_hw_register_fixed_factor(NULL, "fsiclk", "apll", 0, 1, 4); + aspeed_g6_clk_data->hws[ASPEED_CLK_FSI] = hw; +}; + +static void __init aspeed_g6_cc_init(struct device_node *np) +{ + struct regmap *map; + int ret; + int i; + + scu_g6_base = of_iomap(np, 0); + if (!scu_g6_base) + return; + + soc_rev = (readl(scu_g6_base + ASPEED_G6_SILICON_REV) & CHIP_REVISION_ID) >> 16; + + aspeed_g6_clk_data = kzalloc_flex(*aspeed_g6_clk_data, hws, + ASPEED_G6_NUM_CLKS); + if (!aspeed_g6_clk_data) + return; + aspeed_g6_clk_data->num = ASPEED_G6_NUM_CLKS; + + /* + * This way all clocks fetched before the platform device probes, + * except those we assign here for early use, will be deferred. + */ + for (i = 0; i < ASPEED_G6_NUM_CLKS; i++) + aspeed_g6_clk_data->hws[i] = ERR_PTR(-EPROBE_DEFER); + + /* + * We check that the regmap works on this very first access, + * but as this is an MMIO-backed regmap, subsequent regmap + * access is not going to fail and we skip error checks from + * this point. + */ + map = syscon_node_to_regmap(np); + if (IS_ERR(map)) { + pr_err("no syscon regmap\n"); + return; + } + + aspeed_g6_cc(map); + ret = of_clk_add_hw_provider(np, of_clk_hw_onecell_get, aspeed_g6_clk_data); + if (ret) + pr_err("failed to add DT provider: %d\n", ret); +}; +CLK_OF_DECLARE_DRIVER(aspeed_cc_g6, "aspeed,ast2600-scu", aspeed_g6_cc_init); diff --git a/drivers/clk/aspeed/clk-ast2700.c b/drivers/clk/aspeed/clk-ast2700.c new file mode 100644 index 000000000..536600fcd --- /dev/null +++ b/drivers/clk/aspeed/clk-ast2700.c @@ -0,0 +1,1064 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (c) 2024 ASPEED Technology Inc. + * Author: Ryan Chen <ryan_chen@aspeedtech.com> + */ +#include <linux/auxiliary_bus.h> +#include <linux/bitfield.h> +#include <linux/clk-provider.h> +#include <linux/io.h> +#include <linux/platform_device.h> +#include <linux/slab.h> +#include <linux/units.h> + +#include <dt-bindings/clock/aspeed,ast2700-scu.h> + +/* SOC0 */ +#define SCU0_HWSTRAP1 0x010 +#define SCU0_CLK_STOP 0x240 +#define SCU0_CLK_SEL1 0x280 +#define SCU0_CLK_SEL2 0x284 +#define GET_USB_REFCLK_DIV(x) ((GENMASK(23, 20) & (x)) >> 20) +#define UART_DIV13_EN BIT(30) +#define SCU0_HPLL_PARAM 0x300 +#define SCU0_DPLL_PARAM 0x308 +#define SCU0_MPLL_PARAM 0x310 +#define SCU0_D0CLK_PARAM 0x320 +#define SCU0_D1CLK_PARAM 0x330 +#define SCU0_CRT0CLK_PARAM 0x340 +#define SCU0_CRT1CLK_PARAM 0x350 +#define SCU0_MPHYCLK_PARAM 0x360 + +/* SOC1 */ +#define SCU1_REVISION_ID 0x0 +#define REVISION_ID GENMASK(23, 16) +#define SCU1_CLK_STOP 0x240 +#define SCU1_CLK_STOP2 0x260 +#define SCU1_CLK_SEL1 0x280 +#define SCU1_CLK_SEL2 0x284 +#define SCU1_CLK_I3C_DIV_MASK GENMASK(25, 23) +#define SCU1_CLK_I3C_DIV(n) ((n) - 1) +#define UXCLK_MASK GENMASK(1, 0) +#define HUXCLK_MASK GENMASK(4, 3) +#define SCU1_HPLL_PARAM 0x300 +#define SCU1_APLL_PARAM 0x310 +#define SCU1_DPLL_PARAM 0x320 +#define SCU1_UXCLK_CTRL 0x330 +#define SCU1_HUXCLK_CTRL 0x334 +#define SCU1_MAC12_CLK_DLY 0x390 +#define SCU1_MAC12_CLK_DLY_100M 0x394 +#define SCU1_MAC12_CLK_DLY_10M 0x398 + +enum ast2700_clk_type { + CLK_MUX, + CLK_PLL, + CLK_HPLL, + CLK_GATE, + CLK_MISC, + CLK_FIXED, + CLK_DIVIDER, + CLK_UART_PLL, + CLK_GATE_ASPEED, + CLK_FIXED_FACTOR, + CLK_FIXED_DISPLAY, +}; + +struct ast2700_clk_fixed_factor_data { + unsigned int mult; + unsigned int div; + int parent_id; +}; + +struct ast2700_clk_gate_data { + int parent_id; + u32 flags; + u32 reg; + u8 bit; +}; + +struct ast2700_clk_mux_data { + const struct clk_hw **parent_hws; + const unsigned int *parent_ids; + unsigned int num_parents; + u8 bit_shift; + u8 bit_width; + u32 reg; +}; + +struct ast2700_clk_div_data { + const struct clk_div_table *div_table; + unsigned int parent_id; + u8 bit_shift; + u8 bit_width; + u32 reg; +}; + +struct ast2700_clk_pll_data { + unsigned int parent_id; + u32 reg; +}; + +struct ast2700_clk_fixed_rate_data { + unsigned long fixed_rate; +}; + +struct ast2700_clk_display_fixed_data { + u32 reg; +}; + +struct ast2700_clk_info { + const char *name; + u32 id; + u32 reg; + u32 type; + union { + struct ast2700_clk_fixed_factor_data factor; + struct ast2700_clk_fixed_rate_data rate; + struct ast2700_clk_display_fixed_data display_rate; + struct ast2700_clk_gate_data gate; + struct ast2700_clk_div_data div; + struct ast2700_clk_pll_data pll; + struct ast2700_clk_mux_data mux; + } data; +}; + +struct ast2700_clk_data { + const struct ast2700_clk_info *clk_info; + unsigned int nr_clks; + const int scu; +}; + +struct ast2700_clk_ctrl { + const struct ast2700_clk_data *clk_data; + struct device *dev; + void __iomem *base; + spinlock_t lock; /* clk lock */ +}; + +static const struct clk_div_table ast2700_rgmii_div_table[] = { + { 0x0, 4 }, + { 0x1, 4 }, + { 0x2, 6 }, + { 0x3, 8 }, + { 0x4, 10 }, + { 0x5, 12 }, + { 0x6, 14 }, + { 0x7, 16 }, + { 0 } +}; + +static const struct clk_div_table ast2700_rmii_div_table[] = { + { 0x0, 8 }, + { 0x1, 8 }, + { 0x2, 12 }, + { 0x3, 16 }, + { 0x4, 20 }, + { 0x5, 24 }, + { 0x6, 28 }, + { 0x7, 32 }, + { 0 } +}; + +static const struct clk_div_table ast2700_clk_div_table[] = { + { 0x0, 2 }, + { 0x1, 2 }, + { 0x2, 3 }, + { 0x3, 4 }, + { 0x4, 5 }, + { 0x5, 6 }, + { 0x6, 7 }, + { 0x7, 8 }, + { 0 } +}; + +static const struct clk_div_table ast2700_clk_div_table2[] = { + { 0x0, 2 }, + { 0x1, 4 }, + { 0x2, 6 }, + { 0x3, 8 }, + { 0x4, 10 }, + { 0x5, 12 }, + { 0x6, 14 }, + { 0x7, 16 }, + { 0 } +}; + +static const struct clk_div_table ast2700_hclk_div_table[] = { + { 0x0, 6 }, + { 0x1, 5 }, + { 0x2, 4 }, + { 0x3, 7 }, + { 0 } +}; + +static const struct clk_div_table ast2700_clk_uart_div_table[] = { + { 0x0, 1 }, + { 0x1, 13 }, + { 0 } +}; + +/* soc 0 */ +static const unsigned int psp_parent_ids[] = { + SCU0_CLK_MPLL, + SCU0_CLK_HPLL, + SCU0_CLK_HPLL, + SCU0_CLK_HPLL, + SCU0_CLK_MPLL_DIV2, + SCU0_CLK_HPLL_DIV2, + SCU0_CLK_HPLL, + SCU0_CLK_HPLL +}; + +static const struct clk_hw *psp_parent_hws[ARRAY_SIZE(psp_parent_ids)]; + +static const unsigned int hclk_parent_ids[] = { + SCU0_CLK_HPLL, + SCU0_CLK_MPLL +}; + +static const struct clk_hw *hclk_parent_hws[ARRAY_SIZE(hclk_parent_ids)]; + +static const unsigned int emmc_parent_ids[] = { + SCU0_CLK_MPLL_DIV4, + SCU0_CLK_HPLL_DIV4 +}; + +static const struct clk_hw *emmc_parent_hws[ARRAY_SIZE(emmc_parent_ids)]; + +static const unsigned int mphy_parent_ids[] = { + SCU0_CLK_MPLL, + SCU0_CLK_HPLL, + SCU0_CLK_DPLL, + SCU0_CLK_192M +}; + +static const struct clk_hw *mphy_parent_hws[ARRAY_SIZE(mphy_parent_ids)]; + +static const unsigned int u2phy_parent_ids[] = { + SCU0_CLK_MPLL, + SCU0_CLK_HPLL +}; + +static const struct clk_hw *u2phy_parent_hws[ARRAY_SIZE(u2phy_parent_ids)]; + +static const unsigned int uart_parent_ids[] = { + SCU0_CLK_24M, + SCU0_CLK_192M +}; + +static const struct clk_hw *uart_parent_hws[ARRAY_SIZE(uart_parent_ids)]; + +/* soc 1 */ +static const unsigned int uartx_parent_ids[] = { + SCU1_CLK_UARTX, + SCU1_CLK_HUARTX +}; + +static const struct clk_hw *uartx_parent_hws[ARRAY_SIZE(uartx_parent_ids)]; + +static const unsigned int uxclk_parent_ids[] = { + SCU1_CLK_APLL_DIV4, + SCU1_CLK_APLL_DIV2, + SCU1_CLK_APLL, + SCU1_CLK_HPLL +}; + +static const struct clk_hw *uxclk_parent_hws[ARRAY_SIZE(uxclk_parent_ids)]; + +static const unsigned int sdclk_parent_ids[] = { + SCU1_CLK_HPLL, + SCU1_CLK_APLL +}; + +static const struct clk_hw *sdclk_parent_hws[ARRAY_SIZE(sdclk_parent_ids)]; + +static const unsigned int peciclk_parent_ids[] = { + SCU1_CLKIN, + SCU1_CLK_HPLL_DIV4 +}; + +static const struct clk_hw *peciclk_parent_hws[ARRAY_SIZE(peciclk_parent_ids)]; + +#define FIXED_CLK(_id, _name, _rate) \ + { \ + .id = _id, \ + .type = CLK_FIXED, \ + .name = _name, \ + .data = { .rate = { .fixed_rate = _rate, } }, \ + } + +#define FIXED_DISPLAY_CLK(_id, _name, _reg) \ + { \ + .id = _id, \ + .type = CLK_FIXED_DISPLAY, \ + .name = _name, \ + .data = { .display_rate = { .reg = _reg } }, \ + } + +#define PLL_CLK(_id, _type, _name, _parent_id, _reg) \ + { \ + .id = _id, \ + .type = _type, \ + .name = _name, \ + .data = { .pll = { \ + .parent_id = _parent_id, \ + .reg = _reg, \ + } }, \ + } + +#define MUX_CLK(_id, _name, _parent_ids, _num_parents, _parent_hws, _reg, _shift, _width) \ + { \ + .id = _id, \ + .type = CLK_MUX, \ + .name = _name, \ + .data = { \ + .mux = { \ + .parent_ids = _parent_ids, \ + .parent_hws = _parent_hws, \ + .num_parents = _num_parents, \ + .reg = (_reg), \ + .bit_shift = _shift, \ + .bit_width = _width, \ + }, \ + }, \ + } + +#define DIVIDER_CLK(_id, _name, _parent_id, _reg, _shift, _width, _div_table) \ + { \ + .id = _id, \ + .type = CLK_DIVIDER, \ + .name = _name, \ + .data = { \ + .div = { \ + .parent_id = _parent_id, \ + .reg = _reg, \ + .bit_shift = _shift, \ + .bit_width = _width, \ + .div_table = _div_table, \ + }, \ + }, \ + } + +#define FIXED_FACTOR_CLK(_id, _name, _parent_id, _mult, _div) \ + { \ + .id = _id, \ + .type = CLK_FIXED_FACTOR, \ + .name = _name, \ + .data = { .factor = { .parent_id = _parent_id, .mult = _mult, .div = _div, } }, \ + } + +#define GATE_CLK(_id, _type, _name, _parent_id, _reg, _bit, _flags) \ + { \ + .id = _id, \ + .type = _type, \ + .name = _name, \ + .data = { \ + .gate = { \ + .parent_id = _parent_id, \ + .reg = _reg, \ + .bit = _bit, \ + .flags = _flags, \ + }, \ + }, \ + } + +static const struct ast2700_clk_info ast2700_scu0_clk_info[] __initconst = { + FIXED_CLK(SCU0_CLKIN, "soc0-clkin", 25 * HZ_PER_MHZ), + FIXED_CLK(SCU0_CLK_24M, "soc0-clk24Mhz", 24 * HZ_PER_MHZ), + FIXED_CLK(SCU0_CLK_192M, "soc0-clk192Mhz", 192 * HZ_PER_MHZ), + FIXED_CLK(SCU0_CLK_U2PHY_CLK12M, "u2phy_clk12m", 12 * HZ_PER_MHZ), + FIXED_DISPLAY_CLK(SCU0_CLK_D0, "d0clk", SCU0_D0CLK_PARAM), + FIXED_DISPLAY_CLK(SCU0_CLK_D1, "d1clk", SCU0_D1CLK_PARAM), + FIXED_DISPLAY_CLK(SCU0_CLK_CRT0, "crt0clk", SCU0_CRT0CLK_PARAM), + FIXED_DISPLAY_CLK(SCU0_CLK_CRT1, "crt1clk", SCU0_CRT1CLK_PARAM), + PLL_CLK(SCU0_CLK_HPLL, CLK_HPLL, "soc0-hpll", SCU0_CLKIN, SCU0_HPLL_PARAM), + PLL_CLK(SCU0_CLK_DPLL, CLK_PLL, "soc0-dpll", SCU0_CLKIN, SCU0_DPLL_PARAM), + PLL_CLK(SCU0_CLK_MPLL, CLK_PLL, "soc0-mpll", SCU0_CLKIN, SCU0_MPLL_PARAM), + FIXED_FACTOR_CLK(SCU0_CLK_HPLL_DIV2, "soc0-hpll_div2", SCU0_CLK_HPLL, 1, 2), + FIXED_FACTOR_CLK(SCU0_CLK_HPLL_DIV4, "soc0-hpll_div4", SCU0_CLK_HPLL, 1, 4), + FIXED_FACTOR_CLK(SCU0_CLK_MPLL_DIV2, "soc0-mpll_div2", SCU0_CLK_MPLL, 1, 2), + FIXED_FACTOR_CLK(SCU0_CLK_MPLL_DIV4, "soc0-mpll_div4", SCU0_CLK_MPLL, 1, 4), + FIXED_FACTOR_CLK(SCU0_CLK_MPLL_DIV8, "soc0-mpll_div8", SCU0_CLK_MPLL, 1, 8), + FIXED_FACTOR_CLK(SCU0_CLK_AXI1, "axi1clk", SCU0_CLK_MPLL, 1, 4), + MUX_CLK(SCU0_CLK_PSP, "pspclk", psp_parent_ids, ARRAY_SIZE(psp_parent_ids), + psp_parent_hws, SCU0_HWSTRAP1, 2, 3), + FIXED_FACTOR_CLK(SCU0_CLK_AXI0, "axi0clk", SCU0_CLK_PSP, 1, 2), + MUX_CLK(SCU0_CLK_AHBMUX, "soc0-ahbmux", hclk_parent_ids, ARRAY_SIZE(hclk_parent_ids), + hclk_parent_hws, SCU0_HWSTRAP1, 7, 1), + MUX_CLK(SCU0_CLK_EMMCMUX, "emmcsrc-mux", emmc_parent_ids, ARRAY_SIZE(emmc_parent_ids), + emmc_parent_hws, SCU0_CLK_SEL1, 11, 1), + MUX_CLK(SCU0_CLK_MPHYSRC, "mphysrc", mphy_parent_ids, ARRAY_SIZE(mphy_parent_ids), + mphy_parent_hws, SCU0_CLK_SEL2, 18, 2), + MUX_CLK(SCU0_CLK_U2PHY_REFCLKSRC, "u2phy_refclksrc", u2phy_parent_ids, + ARRAY_SIZE(u2phy_parent_ids), u2phy_parent_hws, SCU0_CLK_SEL2, 23, 1), + MUX_CLK(SCU0_CLK_UART, "soc0-uartclk", uart_parent_ids, ARRAY_SIZE(uart_parent_ids), + uart_parent_hws, SCU0_CLK_SEL2, 14, 1), + PLL_CLK(SCU0_CLK_MPHY, CLK_MISC, "mphyclk", SCU0_CLK_MPHYSRC, SCU0_MPHYCLK_PARAM), + PLL_CLK(SCU0_CLK_U2PHY_REFCLK, CLK_MISC, "u2phy_refclk", SCU0_CLK_U2PHY_REFCLKSRC, + SCU0_CLK_SEL2), + DIVIDER_CLK(SCU0_CLK_AHB, "soc0-ahb", SCU0_CLK_AHBMUX, + SCU0_HWSTRAP1, 5, 2, ast2700_hclk_div_table), + DIVIDER_CLK(SCU0_CLK_EMMC, "emmcclk", SCU0_CLK_EMMCMUX, + SCU0_CLK_SEL1, 12, 3, ast2700_clk_div_table2), + DIVIDER_CLK(SCU0_CLK_APB, "soc0-apb", SCU0_CLK_AXI0, + SCU0_CLK_SEL1, 23, 3, ast2700_clk_div_table2), + DIVIDER_CLK(SCU0_CLK_HPLL_DIV_AHB, "soc0-hpll-ahb", SCU0_CLK_HPLL, + SCU0_HWSTRAP1, 5, 2, ast2700_hclk_div_table), + DIVIDER_CLK(SCU0_CLK_MPLL_DIV_AHB, "soc0-mpll-ahb", SCU0_CLK_MPLL, + SCU0_HWSTRAP1, 5, 2, ast2700_hclk_div_table), + DIVIDER_CLK(SCU0_CLK_UART4, "uart4clk", SCU0_CLK_UART, + SCU0_CLK_SEL2, 30, 1, ast2700_clk_uart_div_table), + GATE_CLK(SCU0_CLK_GATE_MCLK, CLK_GATE_ASPEED, "mclk-gate", SCU0_CLK_MPLL, + SCU0_CLK_STOP, 0, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_ECLK, CLK_GATE_ASPEED, "eclk-gate", -1, SCU0_CLK_STOP, 1, 0), + GATE_CLK(SCU0_CLK_GATE_2DCLK, CLK_GATE_ASPEED, "gclk-gate", -1, SCU0_CLK_STOP, 2, 0), + GATE_CLK(SCU0_CLK_GATE_VCLK, CLK_GATE_ASPEED, "vclk-gate", -1, SCU0_CLK_STOP, 3, 0), + GATE_CLK(SCU0_CLK_GATE_BCLK, CLK_GATE_ASPEED, "bclk-gate", -1, + SCU0_CLK_STOP, 4, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_VGA0CLK, CLK_GATE_ASPEED, "vga0clk-gate", -1, + SCU0_CLK_STOP, 5, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_REFCLK, CLK_GATE_ASPEED, "soc0-refclk-gate", SCU0_CLKIN, + SCU0_CLK_STOP, 6, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_PORTBUSB2CLK, CLK_GATE_ASPEED, "portb-usb2clk-gate", -1, + SCU0_CLK_STOP, 7, 0), + GATE_CLK(SCU0_CLK_GATE_UHCICLK, CLK_GATE_ASPEED, "uhciclk-gate", -1, SCU0_CLK_STOP, 9, 0), + GATE_CLK(SCU0_CLK_GATE_VGA1CLK, CLK_GATE_ASPEED, "vga1clk-gate", -1, + SCU0_CLK_STOP, 10, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_DDRPHYCLK, CLK_GATE_ASPEED, "ddrphy-gate", -1, + SCU0_CLK_STOP, 11, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_E2M0CLK, CLK_GATE_ASPEED, "e2m0clk-gate", -1, + SCU0_CLK_STOP, 12, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_HACCLK, CLK_GATE_ASPEED, "hacclk-gate", -1, SCU0_CLK_STOP, 13, 0), + GATE_CLK(SCU0_CLK_GATE_PORTAUSB2CLK, CLK_GATE_ASPEED, "porta-usb2clk-gate", -1, + SCU0_CLK_STOP, 14, 0), + GATE_CLK(SCU0_CLK_GATE_UART4CLK, CLK_GATE_ASPEED, "uart4clk-gate", SCU0_CLK_UART4, + SCU0_CLK_STOP, 15, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_SLICLK, CLK_GATE_ASPEED, "soc0-sliclk-gate", -1, + SCU0_CLK_STOP, 16, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_DACCLK, CLK_GATE_ASPEED, "dacclk-gate", -1, + SCU0_CLK_STOP, 17, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_DP, CLK_GATE_ASPEED, "dpclk-gate", -1, + SCU0_CLK_STOP, 18, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_E2M1CLK, CLK_GATE_ASPEED, "e2m1clk-gate", -1, + SCU0_CLK_STOP, 19, CLK_IS_CRITICAL), + GATE_CLK(SCU0_CLK_GATE_CRT0CLK, CLK_GATE_ASPEED, "crt0clk-gate", -1, + SCU0_CLK_STOP, 20, 0), + GATE_CLK(SCU0_CLK_GATE_CRT1CLK, CLK_GATE_ASPEED, "crt1clk-gate", -1, + SCU0_CLK_STOP, 21, 0), + GATE_CLK(SCU0_CLK_GATE_ECDSACLK, CLK_GATE_ASPEED, "eccclk-gate", -1, + SCU0_CLK_STOP, 23, 0), + GATE_CLK(SCU0_CLK_GATE_RSACLK, CLK_GATE_ASPEED, "rsaclk-gate", -1, + SCU0_CLK_STOP, 24, 0), + GATE_CLK(SCU0_CLK_GATE_RVAS0CLK, CLK_GATE_ASPEED, "rvas0clk-gate", -1, + SCU0_CLK_STOP, 25, 0), + GATE_CLK(SCU0_CLK_GATE_UFSCLK, CLK_GATE_ASPEED, "ufsclk-gate", -1, + SCU0_CLK_STOP, 26, 0), + GATE_CLK(SCU0_CLK_GATE_EMMCCLK, CLK_GATE_ASPEED, "emmcclk-gate", SCU0_CLK_EMMC, + SCU0_CLK_STOP, 27, 0), + GATE_CLK(SCU0_CLK_GATE_RVAS1CLK, CLK_GATE_ASPEED, "rvas1clk-gate", -1, + SCU0_CLK_STOP, 28, 0), +}; + +static const struct ast2700_clk_info ast2700_scu1_clk_info[] __initconst = { + FIXED_CLK(SCU1_CLKIN, "soc1-clkin", 25 * HZ_PER_MHZ), + PLL_CLK(SCU1_CLK_HPLL, CLK_PLL, "soc1-hpll", SCU1_CLKIN, SCU1_HPLL_PARAM), + PLL_CLK(SCU1_CLK_APLL, CLK_PLL, "soc1-apll", SCU1_CLKIN, SCU1_APLL_PARAM), + PLL_CLK(SCU1_CLK_DPLL, CLK_PLL, "soc1-dpll", SCU1_CLKIN, SCU1_DPLL_PARAM), + FIXED_FACTOR_CLK(SCU1_CLK_HPLL_DIV4, "soc1-hpll_div4", SCU1_CLK_HPLL, 1, 4), + FIXED_FACTOR_CLK(SCU1_CLK_APLL_DIV2, "soc1-apll_div2", SCU1_CLK_APLL, 1, 2), + FIXED_FACTOR_CLK(SCU1_CLK_APLL_DIV4, "soc1-apll_div4", SCU1_CLK_APLL, 1, 4), + FIXED_FACTOR_CLK(SCU1_CLK_CAN, "canclk", SCU1_CLK_APLL, 1, 10), + DIVIDER_CLK(SCU1_CLK_APB, "soc1-apb", SCU1_CLK_HPLL, + SCU1_CLK_SEL1, 18, 3, ast2700_clk_div_table2), + DIVIDER_CLK(SCU1_CLK_RMII, "rmii", SCU1_CLK_HPLL, + SCU1_CLK_SEL1, 21, 3, ast2700_rmii_div_table), + DIVIDER_CLK(SCU1_CLK_RGMII, "rgmii", SCU1_CLK_HPLL, + SCU1_CLK_SEL1, 25, 3, ast2700_rgmii_div_table), + DIVIDER_CLK(SCU1_CLK_MACHCLK, "machclk", SCU1_CLK_HPLL, + SCU1_CLK_SEL1, 29, 3, ast2700_clk_div_table), + DIVIDER_CLK(SCU1_CLK_APLL_DIVN, "soc1-apll_divn", + SCU1_CLK_APLL, SCU1_CLK_SEL2, 8, 3, ast2700_clk_div_table), + DIVIDER_CLK(SCU1_CLK_AHB, "soc1-ahb", SCU1_CLK_HPLL, + SCU1_CLK_SEL2, 20, 3, ast2700_clk_div_table), + DIVIDER_CLK(SCU1_CLK_I3C, "soc1-i3c", SCU1_CLK_HPLL, + SCU1_CLK_SEL2, 23, 3, ast2700_clk_div_table), + MUX_CLK(SCU1_CLK_SDMUX, "sdclk-mux", sdclk_parent_ids, ARRAY_SIZE(sdclk_parent_ids), + sdclk_parent_hws, SCU1_CLK_SEL1, 13, 1), + MUX_CLK(SCU1_CLK_UXCLK, "uxclk", uxclk_parent_ids, ARRAY_SIZE(uxclk_parent_ids), + uxclk_parent_hws, SCU1_CLK_SEL2, 0, 2), + MUX_CLK(SCU1_CLK_HUXCLK, "huxclk", uxclk_parent_ids, ARRAY_SIZE(uxclk_parent_ids), + uxclk_parent_hws, SCU1_CLK_SEL2, 3, 2), + MUX_CLK(SCU1_CLK_PECI, "peciclk", peciclk_parent_ids, ARRAY_SIZE(peciclk_parent_ids), + peciclk_parent_hws, SCU1_CLK_SEL2, 16, 1), + DIVIDER_CLK(SCU1_CLK_SDCLK, "sdclk", SCU1_CLK_SDMUX, + SCU1_CLK_SEL1, 14, 3, ast2700_clk_div_table), + PLL_CLK(SCU1_CLK_UARTX, CLK_UART_PLL, "uartxclk", SCU1_CLK_UXCLK, SCU1_UXCLK_CTRL), + PLL_CLK(SCU1_CLK_HUARTX, CLK_UART_PLL, "huartxclk", SCU1_CLK_HUXCLK, SCU1_HUXCLK_CTRL), + MUX_CLK(SCU1_CLK_UART0, "uart0clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 0, 1), + MUX_CLK(SCU1_CLK_UART1, "uart1clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 1, 1), + MUX_CLK(SCU1_CLK_UART2, "uart2clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 2, 1), + MUX_CLK(SCU1_CLK_UART3, "uart3clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 3, 1), + MUX_CLK(SCU1_CLK_UART5, "uart5clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 5, 1), + MUX_CLK(SCU1_CLK_UART6, "uart6clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 6, 1), + MUX_CLK(SCU1_CLK_UART7, "uart7clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 7, 1), + MUX_CLK(SCU1_CLK_UART8, "uart8clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 8, 1), + MUX_CLK(SCU1_CLK_UART9, "uart9clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 9, 1), + MUX_CLK(SCU1_CLK_UART10, "uart10clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 10, 1), + MUX_CLK(SCU1_CLK_UART11, "uart11clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 11, 1), + MUX_CLK(SCU1_CLK_UART12, "uart12clk", uartx_parent_ids, ARRAY_SIZE(uartx_parent_ids), + uartx_parent_hws, SCU1_CLK_SEL1, 12, 1), + FIXED_FACTOR_CLK(SCU1_CLK_UART13, "uart13clk", SCU1_CLK_HUARTX, 1, 1), + FIXED_FACTOR_CLK(SCU1_CLK_UART14, "uart14clk", SCU1_CLK_HUARTX, 1, 1), + GATE_CLK(SCU1_CLK_MAC0RCLK, CLK_GATE, "mac0rclk-gate", SCU1_CLK_RMII, + SCU1_MAC12_CLK_DLY, 29, 0), + GATE_CLK(SCU1_CLK_MAC1RCLK, CLK_GATE, "mac1rclk-gate", SCU1_CLK_RMII, + SCU1_MAC12_CLK_DLY, 30, 0), + GATE_CLK(SCU1_CLK_GATE_LCLK0, CLK_GATE_ASPEED, "lclk0-gate", -1, + SCU1_CLK_STOP, 0, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_LCLK1, CLK_GATE_ASPEED, "lclk1-gate", -1, + SCU1_CLK_STOP, 1, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_ESPI0CLK, CLK_GATE_ASPEED, "espi0clk-gate", -1, + SCU1_CLK_STOP, 2, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_ESPI1CLK, CLK_GATE_ASPEED, "espi1clk-gate", -1, + SCU1_CLK_STOP, 3, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_SDCLK, CLK_GATE_ASPEED, "sdclk-gate", SCU1_CLK_SDCLK, + SCU1_CLK_STOP, 4, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_IPEREFCLK, CLK_GATE_ASPEED, "soc1-iperefclk-gate", -1, + SCU1_CLK_STOP, 5, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_REFCLK, CLK_GATE_ASPEED, "soc1-refclk-gate", -1, + SCU1_CLK_STOP, 6, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_LPCHCLK, CLK_GATE_ASPEED, "lpchclk-gate", -1, + SCU1_CLK_STOP, 7, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_MAC0CLK, CLK_GATE_ASPEED, "mac0clk-gate", -1, + SCU1_CLK_STOP, 8, 0), + GATE_CLK(SCU1_CLK_GATE_MAC1CLK, CLK_GATE_ASPEED, "mac1clk-gate", -1, + SCU1_CLK_STOP, 9, 0), + GATE_CLK(SCU1_CLK_GATE_MAC2CLK, CLK_GATE_ASPEED, "mac2clk-gate", -1, + SCU1_CLK_STOP, 10, 0), + GATE_CLK(SCU1_CLK_GATE_UART0CLK, CLK_GATE_ASPEED, "uart0clk-gate", SCU1_CLK_UART0, + SCU1_CLK_STOP, 11, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART1CLK, CLK_GATE_ASPEED, "uart1clk-gate", SCU1_CLK_UART1, + SCU1_CLK_STOP, 12, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART2CLK, CLK_GATE_ASPEED, "uart2clk-gate", SCU1_CLK_UART2, + SCU1_CLK_STOP, 13, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART3CLK, CLK_GATE_ASPEED, "uart3clk-gate", SCU1_CLK_UART3, + SCU1_CLK_STOP, 14, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_I2CCLK, CLK_GATE_ASPEED, "i2cclk-gate", -1, SCU1_CLK_STOP, 15, 0), + GATE_CLK(SCU1_CLK_GATE_I3C0CLK, CLK_GATE_ASPEED, "i3c0clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 16, 0), + GATE_CLK(SCU1_CLK_GATE_I3C1CLK, CLK_GATE_ASPEED, "i3c1clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 17, 0), + GATE_CLK(SCU1_CLK_GATE_I3C2CLK, CLK_GATE_ASPEED, "i3c2clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 18, 0), + GATE_CLK(SCU1_CLK_GATE_I3C3CLK, CLK_GATE_ASPEED, "i3c3clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 19, 0), + GATE_CLK(SCU1_CLK_GATE_I3C4CLK, CLK_GATE_ASPEED, "i3c4clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 20, 0), + GATE_CLK(SCU1_CLK_GATE_I3C5CLK, CLK_GATE_ASPEED, "i3c5clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 21, 0), + GATE_CLK(SCU1_CLK_GATE_I3C6CLK, CLK_GATE_ASPEED, "i3c6clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 22, 0), + GATE_CLK(SCU1_CLK_GATE_I3C7CLK, CLK_GATE_ASPEED, "i3c7clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 23, 0), + GATE_CLK(SCU1_CLK_GATE_I3C8CLK, CLK_GATE_ASPEED, "i3c8clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 24, 0), + GATE_CLK(SCU1_CLK_GATE_I3C9CLK, CLK_GATE_ASPEED, "i3c9clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 25, 0), + GATE_CLK(SCU1_CLK_GATE_I3C10CLK, CLK_GATE_ASPEED, "i3c10clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 26, 0), + GATE_CLK(SCU1_CLK_GATE_I3C11CLK, CLK_GATE_ASPEED, "i3c11clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 27, 0), + GATE_CLK(SCU1_CLK_GATE_I3C12CLK, CLK_GATE_ASPEED, "i3c12clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 28, 0), + GATE_CLK(SCU1_CLK_GATE_I3C13CLK, CLK_GATE_ASPEED, "i3c13clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 29, 0), + GATE_CLK(SCU1_CLK_GATE_I3C14CLK, CLK_GATE_ASPEED, "i3c14clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 30, 0), + GATE_CLK(SCU1_CLK_GATE_I3C15CLK, CLK_GATE_ASPEED, "i3c15clk-gate", SCU1_CLK_I3C, + SCU1_CLK_STOP, 31, 0), + GATE_CLK(SCU1_CLK_GATE_UART5CLK, CLK_GATE_ASPEED, "uart5clk-gate", SCU1_CLK_UART5, + SCU1_CLK_STOP2, 0, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART6CLK, CLK_GATE_ASPEED, "uart6clk-gate", SCU1_CLK_UART6, + SCU1_CLK_STOP2, 1, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART7CLK, CLK_GATE_ASPEED, "uart7clk-gate", SCU1_CLK_UART7, + SCU1_CLK_STOP2, 2, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART8CLK, CLK_GATE_ASPEED, "uart8clk-gate", SCU1_CLK_UART8, + SCU1_CLK_STOP2, 3, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UART9CLK, CLK_GATE_ASPEED, "uart9clk-gate", SCU1_CLK_UART9, + SCU1_CLK_STOP2, 4, 0), + GATE_CLK(SCU1_CLK_GATE_UART10CLK, CLK_GATE_ASPEED, "uart10clk-gate", SCU1_CLK_UART10, + SCU1_CLK_STOP2, 5, 0), + GATE_CLK(SCU1_CLK_GATE_UART11CLK, CLK_GATE_ASPEED, "uart11clk-gate", SCU1_CLK_UART11, + SCU1_CLK_STOP2, 6, 0), + GATE_CLK(SCU1_CLK_GATE_UART12CLK, CLK_GATE_ASPEED, "uart12clk-gate", SCU1_CLK_UART12, + SCU1_CLK_STOP2, 7, 0), + GATE_CLK(SCU1_CLK_GATE_FSICLK, CLK_GATE_ASPEED, "fsiclk-gate", -1, SCU1_CLK_STOP2, 8, 0), + GATE_CLK(SCU1_CLK_GATE_LTPIPHYCLK, CLK_GATE_ASPEED, "ltpiphyclk-gate", -1, + SCU1_CLK_STOP2, 9, 0), + GATE_CLK(SCU1_CLK_GATE_LTPICLK, CLK_GATE_ASPEED, "ltpiclk-gate", -1, + SCU1_CLK_STOP2, 10, 0), + GATE_CLK(SCU1_CLK_GATE_VGALCLK, CLK_GATE_ASPEED, "vgalclk-gate", -1, + SCU1_CLK_STOP2, 11, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_UHCICLK, CLK_GATE_ASPEED, "usbuartclk-gate", -1, + SCU1_CLK_STOP2, 12, 0), + GATE_CLK(SCU1_CLK_GATE_CANCLK, CLK_GATE_ASPEED, "canclk-gate", SCU1_CLK_CAN, + SCU1_CLK_STOP2, 13, 0), + GATE_CLK(SCU1_CLK_GATE_PCICLK, CLK_GATE_ASPEED, "pciclk-gate", -1, + SCU1_CLK_STOP2, 14, 0), + GATE_CLK(SCU1_CLK_GATE_SLICLK, CLK_GATE_ASPEED, "soc1-sliclk-gate", -1, + SCU1_CLK_STOP2, 15, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_E2MCLK, CLK_GATE_ASPEED, "soc1-e2m-gate", -1, + SCU1_CLK_STOP2, 16, CLK_IS_CRITICAL), + GATE_CLK(SCU1_CLK_GATE_PORTCUSB2CLK, CLK_GATE_ASPEED, "portcusb2-gate", -1, + SCU1_CLK_STOP2, 17, 0), + GATE_CLK(SCU1_CLK_GATE_PORTDUSB2CLK, CLK_GATE_ASPEED, "portdusb2-gate", -1, + SCU1_CLK_STOP2, 18, 0), + GATE_CLK(SCU1_CLK_GATE_LTPI1TXCLK, CLK_GATE_ASPEED, "ltp1tx-gate", -1, + SCU1_CLK_STOP2, 19, 0), +}; + +static struct clk_hw *ast2700_clk_hw_register_fixed_display(void __iomem *reg, const char *name, + struct ast2700_clk_ctrl *clk_ctrl) +{ + unsigned int mult, div, r, n; + u32 xdclk; + u32 val; + + val = readl(clk_ctrl->base + SCU0_CLK_SEL2); + if (val & BIT(29)) + xdclk = 800 * HZ_PER_MHZ; + else + xdclk = 1000 * HZ_PER_MHZ; + + val = readl(reg); + r = val & GENMASK(15, 0); + n = (val >> 16) & GENMASK(15, 0); + mult = r; + div = 2 * n; + + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, 0, (xdclk * mult) / div); +} + +static struct clk_hw *ast2700_clk_hw_register_hpll(void __iomem *reg, + const char *name, const struct clk_hw *parent_hw, + struct ast2700_clk_ctrl *clk_ctrl) +{ + unsigned int mult, div; + u32 val; + + val = readl(clk_ctrl->base + SCU0_HWSTRAP1); + if ((readl(clk_ctrl->base) & REVISION_ID) && (val & BIT(3))) { + switch ((val & GENMASK(4, 2)) >> 2) { + case 2: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 1800 * HZ_PER_MHZ); + case 3: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 1700 * HZ_PER_MHZ); + case 6: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 1200 * HZ_PER_MHZ); + case 7: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 800 * HZ_PER_MHZ); + default: + return ERR_PTR(-EINVAL); + } + } else if ((val & GENMASK(3, 2)) != 0) { + switch ((val & GENMASK(3, 2)) >> 2) { + case 1: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 1900 * HZ_PER_MHZ); + case 2: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 1800 * HZ_PER_MHZ); + case 3: + return devm_clk_hw_register_fixed_rate(clk_ctrl->dev, name, NULL, + 0, 1700 * HZ_PER_MHZ); + default: + return ERR_PTR(-EINVAL); + } + } else { + val = readl(reg); + + if (val & BIT(24)) { + /* Pass through mode */ + mult = 1; + div = 1; + } else { + u32 m = val & 0x1fff; + u32 n = (val >> 13) & 0x3f; + u32 p = (val >> 19) & 0xf; + + mult = (m + 1) / (2 * (n + 1)); + div = p + 1; + } + } + + return devm_clk_hw_register_fixed_factor_parent_hw(clk_ctrl->dev, name, + parent_hw, 0, mult, div); +} + +static struct clk_hw *ast2700_clk_hw_register_pll(int clk_idx, void __iomem *reg, + const char *name, const struct clk_hw *parent_hw, + struct ast2700_clk_ctrl *clk_ctrl) +{ + int scu = clk_ctrl->clk_data->scu; + unsigned int mult, div; + u32 val = readl(reg); + + if (val & BIT(24)) { + /* Pass through mode */ + mult = 1; + div = 1; + } else { + u32 m = val & 0x1fff; + u32 n = (val >> 13) & 0x3f; + u32 p = (val >> 19) & 0xf; + + if (scu) { + mult = (m + 1) / (n + 1); + div = p + 1; + } else { + if (clk_idx == SCU0_CLK_MPLL) { + mult = m / (n + 1); + div = p + 1; + } else { + mult = (m + 1) / (2 * (n + 1)); + div = p + 1; + } + } + } + + return devm_clk_hw_register_fixed_factor_parent_hw(clk_ctrl->dev, name, + parent_hw, 0, mult, div); +} + +static struct clk_hw *ast2700_clk_hw_register_uartpll(void __iomem *reg, const char *name, + const struct clk_hw *parent_hw, + struct ast2700_clk_ctrl *clk_ctrl) +{ + unsigned int mult, div; + u32 val = readl(reg); + u32 r = val & 0xff; + u32 n = (val >> 8) & 0x3ff; + + mult = r; + div = n * 2; + + return devm_clk_hw_register_fixed_factor_parent_hw(clk_ctrl->dev, name, + parent_hw, 0, mult, div); +} + +static struct clk_hw *ast2700_clk_hw_register_misc(int clk_idx, void __iomem *reg, + const char *name, const struct clk_hw *parent_hw, + struct ast2700_clk_ctrl *clk_ctrl) +{ + u32 div = 0; + + if (clk_idx == SCU0_CLK_MPHY) { + div = readl(reg) + 1; + } else if (clk_idx == SCU0_CLK_U2PHY_REFCLK) { + if (readl(clk_ctrl->base) & REVISION_ID) + div = (GET_USB_REFCLK_DIV(readl(reg)) + 1) << 4; + else + div = (GET_USB_REFCLK_DIV(readl(reg)) + 1) << 1; + } else { + return ERR_PTR(-EINVAL); + } + + return devm_clk_hw_register_fixed_factor_parent_hw(clk_ctrl->dev, name, + parent_hw, 0, 1, div); +} + +static int ast2700_clk_is_enabled(struct clk_hw *hw) +{ + struct clk_gate *gate = to_clk_gate(hw); + u32 clk = BIT(gate->bit_idx); + u32 reg; + + reg = readl(gate->reg); + + return !(reg & clk); +} + +static int ast2700_clk_enable(struct clk_hw *hw) +{ + struct clk_gate *gate = to_clk_gate(hw); + u32 clk = BIT(gate->bit_idx); + + if (readl(gate->reg) & clk) + writel(clk, gate->reg + 0x04); + + return 0; +} + +static void ast2700_clk_disable(struct clk_hw *hw) +{ + struct clk_gate *gate = to_clk_gate(hw); + u32 clk = BIT(gate->bit_idx); + + /* Clock is set to enable, so use write to set register */ + writel(clk, gate->reg); +} + +static const struct clk_ops ast2700_clk_gate_ops = { + .enable = ast2700_clk_enable, + .disable = ast2700_clk_disable, + .is_enabled = ast2700_clk_is_enabled, +}; + +static struct clk_hw *ast2700_clk_hw_register_gate(struct device *dev, const char *name, + const struct clk_hw *parent_hw, + void __iomem *reg, u8 clock_idx, + unsigned long flags, spinlock_t *lock) +{ + struct clk_init_data init; + struct clk_gate *gate; + struct clk_hw *hw; + int ret = -EINVAL; + + gate = kzalloc_obj(*gate); + if (!gate) + return ERR_PTR(-ENOMEM); + + init.name = name; + init.ops = &ast2700_clk_gate_ops; + init.flags = flags; + init.parent_names = NULL; + init.parent_hws = parent_hw ? &parent_hw : NULL; + init.parent_data = NULL; + init.num_parents = parent_hw ? 1 : 0; + + gate->reg = reg; + gate->bit_idx = clock_idx; + gate->flags = 0; + gate->lock = lock; + gate->hw.init = &init; + + hw = &gate->hw; + ret = clk_hw_register(dev, hw); + if (ret) { + kfree(gate); + hw = ERR_PTR(ret); + } + + return hw; +} + +static void ast2700_soc1_configure_i3c_clk(struct ast2700_clk_ctrl *clk_ctrl) +{ + if (readl(clk_ctrl->base) & REVISION_ID) { + u32 val; + + /* I3C 250MHz = HPLL/4 */ + val = readl(clk_ctrl->base + SCU1_CLK_SEL2) & ~SCU1_CLK_I3C_DIV_MASK; + val |= FIELD_PREP(SCU1_CLK_I3C_DIV_MASK, SCU1_CLK_I3C_DIV(4)); + writel(val, clk_ctrl->base + SCU1_CLK_SEL2); + } +} + +static inline const struct clk_hw *get_parent_hw_or_null(struct clk_hw **hws, int idx) +{ + if (idx < 0) + return NULL; + else + return hws[idx]; +} + +static int ast2700_soc_clk_probe(struct platform_device *pdev) +{ + const struct ast2700_clk_data *clk_data; + struct clk_hw_onecell_data *clk_hw_data; + struct ast2700_clk_ctrl *clk_ctrl; + struct device *dev = &pdev->dev; + struct auxiliary_device *adev; + void __iomem *clk_base; + struct clk_hw **hws; + char *reset_name; + int ret; + int i; + + clk_ctrl = devm_kzalloc(dev, sizeof(*clk_ctrl), GFP_KERNEL); + if (!clk_ctrl) + return -ENOMEM; + clk_ctrl->dev = dev; + dev_set_drvdata(&pdev->dev, clk_ctrl); + + spin_lock_init(&clk_ctrl->lock); + + clk_base = devm_platform_ioremap_resource(pdev, 0); + if (IS_ERR(clk_base)) + return PTR_ERR(clk_base); + + clk_ctrl->base = clk_base; + + clk_data = device_get_match_data(dev); + if (!clk_data) + return -ENODEV; + + clk_ctrl->clk_data = clk_data; + reset_name = devm_kasprintf(dev, GFP_KERNEL, "reset%d", clk_data->scu); + + clk_hw_data = devm_kzalloc(dev, struct_size(clk_hw_data, hws, clk_data->nr_clks), + GFP_KERNEL); + if (!clk_hw_data) + return -ENOMEM; + + clk_hw_data->num = clk_data->nr_clks; + hws = clk_hw_data->hws; + + if (clk_data->scu) + ast2700_soc1_configure_i3c_clk(clk_ctrl); + + for (i = 0; i < clk_data->nr_clks; i++) { + const struct ast2700_clk_info *clk = &clk_data->clk_info[i]; + const struct clk_hw *phw = NULL; + unsigned int id = clk->id; + void __iomem *reg = NULL; + + if (id >= clk_hw_data->num || hws[id]) { + dev_err(dev, "clk id %u invalid for %s\n", id, clk->name); + return -EINVAL; + } + + if (clk->type == CLK_FIXED) { + const struct ast2700_clk_fixed_rate_data *fixed_rate = &clk->data.rate; + + hws[id] = devm_clk_hw_register_fixed_rate(dev, clk->name, NULL, 0, + fixed_rate->fixed_rate); + } else if (clk->type == CLK_FIXED_FACTOR) { + const struct ast2700_clk_fixed_factor_data *factor = &clk->data.factor; + + phw = hws[factor->parent_id]; + hws[id] = devm_clk_hw_register_fixed_factor_parent_hw(dev, clk->name, + phw, 0, factor->mult, + factor->div); + } else if (clk->type == CLK_FIXED_DISPLAY) { + reg = clk_ctrl->base + clk->data.display_rate.reg; + + hws[id] = ast2700_clk_hw_register_fixed_display(reg, clk->name, clk_ctrl); + } else if (clk->type == CLK_HPLL) { + const struct ast2700_clk_pll_data *pll = &clk->data.pll; + + reg = clk_ctrl->base + pll->reg; + phw = hws[pll->parent_id]; + hws[id] = ast2700_clk_hw_register_hpll(reg, clk->name, phw, clk_ctrl); + } else if (clk->type == CLK_PLL) { + const struct ast2700_clk_pll_data *pll = &clk->data.pll; + + reg = clk_ctrl->base + pll->reg; + phw = hws[pll->parent_id]; + hws[id] = ast2700_clk_hw_register_pll(id, reg, clk->name, phw, clk_ctrl); + } else if (clk->type == CLK_UART_PLL) { + const struct ast2700_clk_pll_data *pll = &clk->data.pll; + + reg = clk_ctrl->base + pll->reg; + phw = hws[pll->parent_id]; + hws[id] = ast2700_clk_hw_register_uartpll(reg, clk->name, phw, clk_ctrl); + } else if (clk->type == CLK_MUX) { + const struct ast2700_clk_mux_data *mux = &clk->data.mux; + + reg = clk_ctrl->base + mux->reg; + for (int j = 0; j < mux->num_parents; j++) { + unsigned int pid = mux->parent_ids[j]; + + mux->parent_hws[j] = hws[pid]; + } + + hws[id] = devm_clk_hw_register_mux_parent_hws(dev, clk->name, + mux->parent_hws, + mux->num_parents, 0, + reg, mux->bit_shift, + mux->bit_width, 0, + &clk_ctrl->lock); + } else if (clk->type == CLK_MISC) { + const struct ast2700_clk_pll_data *pll = &clk->data.pll; + + reg = clk_ctrl->base + pll->reg; + phw = hws[pll->parent_id]; + hws[id] = ast2700_clk_hw_register_misc(id, reg, clk->name, phw, clk_ctrl); + } else if (clk->type == CLK_DIVIDER) { + const struct ast2700_clk_div_data *divider = &clk->data.div; + + reg = clk_ctrl->base + divider->reg; + phw = hws[divider->parent_id]; + hws[id] = clk_hw_register_divider_table_parent_hw(dev, clk->name, + phw, + 0, reg, + divider->bit_shift, + divider->bit_width, 0, + divider->div_table, + &clk_ctrl->lock); + } else if (clk->type == CLK_GATE_ASPEED) { + const struct ast2700_clk_gate_data *gate = &clk->data.gate; + + phw = get_parent_hw_or_null(hws, gate->parent_id); + reg = clk_ctrl->base + gate->reg; + hws[id] = ast2700_clk_hw_register_gate(dev, clk->name, phw, reg, gate->bit, + gate->flags, &clk_ctrl->lock); + } else { + const struct ast2700_clk_gate_data *gate = &clk->data.gate; + + phw = get_parent_hw_or_null(hws, gate->parent_id); + reg = clk_ctrl->base + gate->reg; + hws[id] = devm_clk_hw_register_gate_parent_hw(dev, clk->name, phw, + gate->flags, reg, gate->bit, + 0, &clk_ctrl->lock); + } + + if (IS_ERR(hws[id])) + return PTR_ERR(hws[id]); + } + + ret = devm_of_clk_add_hw_provider(dev, of_clk_hw_onecell_get, clk_hw_data); + if (ret) + return ret; + + adev = devm_auxiliary_device_create(dev, reset_name, (__force void *)clk_base); + if (!adev) + return -ENODEV; + + return 0; +} + +static const struct ast2700_clk_data ast2700_clk0_data = { + .scu = 0, + .nr_clks = ARRAY_SIZE(ast2700_scu0_clk_info), + .clk_info = ast2700_scu0_clk_info, +}; + +static const struct ast2700_clk_data ast2700_clk1_data = { + .scu = 1, + .nr_clks = ARRAY_SIZE(ast2700_scu1_clk_info), + .clk_info = ast2700_scu1_clk_info, +}; + +static const struct of_device_id ast2700_scu_match[] = { + { .compatible = "aspeed,ast2700-scu0", .data = &ast2700_clk0_data }, + { .compatible = "aspeed,ast2700-scu1", .data = &ast2700_clk1_data }, + { /* sentinel */ } +}; + +MODULE_DEVICE_TABLE(of, ast2700_scu_match); + +static struct platform_driver ast2700_scu_driver = { + .probe = ast2700_soc_clk_probe, + .driver = { + .name = "clk-ast2700", + .of_match_table = ast2700_scu_match, + }, +}; + +module_platform_driver(ast2700_scu_driver); |
