15eda5d79SJoel Stanley // SPDX-License-Identifier: GPL-2.0+ 25eda5d79SJoel Stanley 35eda5d79SJoel Stanley #define pr_fmt(fmt) "clk-aspeed: " fmt 45eda5d79SJoel Stanley 55eda5d79SJoel Stanley #include <linux/clk-provider.h> 65eda5d79SJoel Stanley #include <linux/mfd/syscon.h> 75eda5d79SJoel Stanley #include <linux/of_address.h> 898f3118dSJoel Stanley #include <linux/of_device.h> 998f3118dSJoel Stanley #include <linux/platform_device.h> 105eda5d79SJoel Stanley #include <linux/regmap.h> 11f7989839SJoel Stanley #include <linux/reset-controller.h> 125eda5d79SJoel Stanley #include <linux/slab.h> 135eda5d79SJoel Stanley #include <linux/spinlock.h> 145eda5d79SJoel Stanley 155eda5d79SJoel Stanley #include <dt-bindings/clock/aspeed-clock.h> 165eda5d79SJoel Stanley 17*67b6e5cfSLei YU #define ASPEED_NUM_CLKS 36 185eda5d79SJoel Stanley 1999d01e0eSJoel Stanley #define ASPEED_RESET_CTRL 0x04 2099d01e0eSJoel Stanley #define ASPEED_CLK_SELECTION 0x08 2199d01e0eSJoel Stanley #define ASPEED_CLK_STOP_CTRL 0x0c 2299d01e0eSJoel Stanley #define ASPEED_MPLL_PARAM 0x20 2399d01e0eSJoel Stanley #define ASPEED_HPLL_PARAM 0x24 2499d01e0eSJoel Stanley #define AST2500_HPLL_BYPASS_EN BIT(20) 2599d01e0eSJoel Stanley #define AST2400_HPLL_STRAPPED BIT(18) 2699d01e0eSJoel Stanley #define AST2400_HPLL_BYPASS_EN BIT(17) 2799d01e0eSJoel Stanley #define ASPEED_MISC_CTRL 0x2c 2899d01e0eSJoel Stanley #define UART_DIV13_EN BIT(12) 295eda5d79SJoel Stanley #define ASPEED_STRAP 0x70 3099d01e0eSJoel Stanley #define CLKIN_25MHZ_EN BIT(23) 3199d01e0eSJoel Stanley #define AST2400_CLK_SOURCE_SEL BIT(18) 3299d01e0eSJoel Stanley #define ASPEED_CLK_SELECTION_2 0xd8 3399d01e0eSJoel Stanley 3499d01e0eSJoel Stanley /* Globally visible clocks */ 3599d01e0eSJoel Stanley static DEFINE_SPINLOCK(aspeed_clk_lock); 365eda5d79SJoel Stanley 375eda5d79SJoel Stanley /* Keeps track of all clocks */ 385eda5d79SJoel Stanley static struct clk_hw_onecell_data *aspeed_clk_data; 395eda5d79SJoel Stanley 405eda5d79SJoel Stanley static void __iomem *scu_base; 415eda5d79SJoel Stanley 425eda5d79SJoel Stanley /** 435eda5d79SJoel Stanley * struct aspeed_gate_data - Aspeed gated clocks 445eda5d79SJoel Stanley * @clock_idx: bit used to gate this clock in the clock register 455eda5d79SJoel Stanley * @reset_idx: bit used to reset this IP in the reset register. -1 if no 465eda5d79SJoel Stanley * reset is required when enabling the clock 475eda5d79SJoel Stanley * @name: the clock name 485eda5d79SJoel Stanley * @parent_name: the name of the parent clock 495eda5d79SJoel Stanley * @flags: standard clock framework flags 505eda5d79SJoel Stanley */ 515eda5d79SJoel Stanley struct aspeed_gate_data { 525eda5d79SJoel Stanley u8 clock_idx; 535eda5d79SJoel Stanley s8 reset_idx; 545eda5d79SJoel Stanley const char *name; 555eda5d79SJoel Stanley const char *parent_name; 565eda5d79SJoel Stanley unsigned long flags; 575eda5d79SJoel Stanley }; 585eda5d79SJoel Stanley 595eda5d79SJoel Stanley /** 605eda5d79SJoel Stanley * struct aspeed_clk_gate - Aspeed specific clk_gate structure 615eda5d79SJoel Stanley * @hw: handle between common and hardware-specific interfaces 625eda5d79SJoel Stanley * @reg: register controlling gate 635eda5d79SJoel Stanley * @clock_idx: bit used to gate this clock in the clock register 645eda5d79SJoel Stanley * @reset_idx: bit used to reset this IP in the reset register. -1 if no 655eda5d79SJoel Stanley * reset is required when enabling the clock 665eda5d79SJoel Stanley * @flags: hardware-specific flags 675eda5d79SJoel Stanley * @lock: register lock 685eda5d79SJoel Stanley * 695eda5d79SJoel Stanley * Some of the clocks in the Aspeed SoC must be put in reset before enabling. 705eda5d79SJoel Stanley * This modified version of clk_gate allows an optional reset bit to be 715eda5d79SJoel Stanley * specified. 725eda5d79SJoel Stanley */ 735eda5d79SJoel Stanley struct aspeed_clk_gate { 745eda5d79SJoel Stanley struct clk_hw hw; 755eda5d79SJoel Stanley struct regmap *map; 765eda5d79SJoel Stanley u8 clock_idx; 775eda5d79SJoel Stanley s8 reset_idx; 785eda5d79SJoel Stanley u8 flags; 795eda5d79SJoel Stanley spinlock_t *lock; 805eda5d79SJoel Stanley }; 815eda5d79SJoel Stanley 825eda5d79SJoel Stanley #define to_aspeed_clk_gate(_hw) container_of(_hw, struct aspeed_clk_gate, hw) 835eda5d79SJoel Stanley 845eda5d79SJoel Stanley /* TODO: ask Aspeed about the actual parent data */ 855eda5d79SJoel Stanley static const struct aspeed_gate_data aspeed_gates[] = { 865eda5d79SJoel Stanley /* clk rst name parent flags */ 875eda5d79SJoel Stanley [ASPEED_CLK_GATE_ECLK] = { 0, -1, "eclk-gate", "eclk", 0 }, /* Video Engine */ 885eda5d79SJoel Stanley [ASPEED_CLK_GATE_GCLK] = { 1, 7, "gclk-gate", NULL, 0 }, /* 2D engine */ 895eda5d79SJoel Stanley [ASPEED_CLK_GATE_MCLK] = { 2, -1, "mclk-gate", "mpll", CLK_IS_CRITICAL }, /* SDRAM */ 905eda5d79SJoel Stanley [ASPEED_CLK_GATE_VCLK] = { 3, 6, "vclk-gate", NULL, 0 }, /* Video Capture */ 915eda5d79SJoel Stanley [ASPEED_CLK_GATE_BCLK] = { 4, 10, "bclk-gate", "bclk", 0 }, /* PCIe/PCI */ 925eda5d79SJoel Stanley [ASPEED_CLK_GATE_DCLK] = { 5, -1, "dclk-gate", NULL, 0 }, /* DAC */ 935eda5d79SJoel Stanley [ASPEED_CLK_GATE_REFCLK] = { 6, -1, "refclk-gate", "clkin", CLK_IS_CRITICAL }, 945eda5d79SJoel Stanley [ASPEED_CLK_GATE_USBPORT2CLK] = { 7, 3, "usb-port2-gate", NULL, 0 }, /* USB2.0 Host port 2 */ 955eda5d79SJoel Stanley [ASPEED_CLK_GATE_LCLK] = { 8, 5, "lclk-gate", NULL, 0 }, /* LPC */ 965eda5d79SJoel Stanley [ASPEED_CLK_GATE_USBUHCICLK] = { 9, 15, "usb-uhci-gate", NULL, 0 }, /* USB1.1 (requires port 2 enabled) */ 975eda5d79SJoel Stanley [ASPEED_CLK_GATE_D1CLK] = { 10, 13, "d1clk-gate", NULL, 0 }, /* GFX CRT */ 985eda5d79SJoel Stanley [ASPEED_CLK_GATE_YCLK] = { 13, 4, "yclk-gate", NULL, 0 }, /* HAC */ 995eda5d79SJoel Stanley [ASPEED_CLK_GATE_USBPORT1CLK] = { 14, 14, "usb-port1-gate", NULL, 0 }, /* USB2 hub/USB2 host port 1/USB1.1 dev */ 1005eda5d79SJoel Stanley [ASPEED_CLK_GATE_UART1CLK] = { 15, -1, "uart1clk-gate", "uart", 0 }, /* UART1 */ 1015eda5d79SJoel Stanley [ASPEED_CLK_GATE_UART2CLK] = { 16, -1, "uart2clk-gate", "uart", 0 }, /* UART2 */ 1025eda5d79SJoel Stanley [ASPEED_CLK_GATE_UART5CLK] = { 17, -1, "uart5clk-gate", "uart", 0 }, /* UART5 */ 1035eda5d79SJoel Stanley [ASPEED_CLK_GATE_ESPICLK] = { 19, -1, "espiclk-gate", NULL, 0 }, /* eSPI */ 1045eda5d79SJoel Stanley [ASPEED_CLK_GATE_MAC1CLK] = { 20, 11, "mac1clk-gate", "mac", 0 }, /* MAC1 */ 1055eda5d79SJoel Stanley [ASPEED_CLK_GATE_MAC2CLK] = { 21, 12, "mac2clk-gate", "mac", 0 }, /* MAC2 */ 1065eda5d79SJoel Stanley [ASPEED_CLK_GATE_RSACLK] = { 24, -1, "rsaclk-gate", NULL, 0 }, /* RSA */ 1075eda5d79SJoel Stanley [ASPEED_CLK_GATE_UART3CLK] = { 25, -1, "uart3clk-gate", "uart", 0 }, /* UART3 */ 1085eda5d79SJoel Stanley [ASPEED_CLK_GATE_UART4CLK] = { 26, -1, "uart4clk-gate", "uart", 0 }, /* UART4 */ 1095eda5d79SJoel Stanley [ASPEED_CLK_GATE_SDCLKCLK] = { 27, 16, "sdclk-gate", NULL, 0 }, /* SDIO/SD */ 1105eda5d79SJoel Stanley [ASPEED_CLK_GATE_LHCCLK] = { 28, -1, "lhclk-gate", "lhclk", 0 }, /* LPC master/LPC+ */ 1115eda5d79SJoel Stanley }; 1125eda5d79SJoel Stanley 11398f3118dSJoel Stanley static const struct clk_div_table ast2500_mac_div_table[] = { 11498f3118dSJoel Stanley { 0x0, 4 }, /* Yep, really. Aspeed confirmed this is correct */ 11598f3118dSJoel Stanley { 0x1, 4 }, 11698f3118dSJoel Stanley { 0x2, 6 }, 11798f3118dSJoel Stanley { 0x3, 8 }, 11898f3118dSJoel Stanley { 0x4, 10 }, 11998f3118dSJoel Stanley { 0x5, 12 }, 12098f3118dSJoel Stanley { 0x6, 14 }, 12198f3118dSJoel Stanley { 0x7, 16 }, 12298f3118dSJoel Stanley { 0 } 12398f3118dSJoel Stanley }; 12498f3118dSJoel Stanley 12599d01e0eSJoel Stanley static const struct clk_div_table ast2400_div_table[] = { 12699d01e0eSJoel Stanley { 0x0, 2 }, 12799d01e0eSJoel Stanley { 0x1, 4 }, 12899d01e0eSJoel Stanley { 0x2, 6 }, 12999d01e0eSJoel Stanley { 0x3, 8 }, 13099d01e0eSJoel Stanley { 0x4, 10 }, 13199d01e0eSJoel Stanley { 0x5, 12 }, 13299d01e0eSJoel Stanley { 0x6, 14 }, 13399d01e0eSJoel Stanley { 0x7, 16 }, 13499d01e0eSJoel Stanley { 0 } 13599d01e0eSJoel Stanley }; 13699d01e0eSJoel Stanley 13799d01e0eSJoel Stanley static const struct clk_div_table ast2500_div_table[] = { 13899d01e0eSJoel Stanley { 0x0, 4 }, 13999d01e0eSJoel Stanley { 0x1, 8 }, 14099d01e0eSJoel Stanley { 0x2, 12 }, 14199d01e0eSJoel Stanley { 0x3, 16 }, 14299d01e0eSJoel Stanley { 0x4, 20 }, 14399d01e0eSJoel Stanley { 0x5, 24 }, 14499d01e0eSJoel Stanley { 0x6, 28 }, 14599d01e0eSJoel Stanley { 0x7, 32 }, 14699d01e0eSJoel Stanley { 0 } 14799d01e0eSJoel Stanley }; 14899d01e0eSJoel Stanley 14999d01e0eSJoel Stanley static struct clk_hw *aspeed_ast2400_calc_pll(const char *name, u32 val) 15099d01e0eSJoel Stanley { 15199d01e0eSJoel Stanley unsigned int mult, div; 15299d01e0eSJoel Stanley 15399d01e0eSJoel Stanley if (val & AST2400_HPLL_BYPASS_EN) { 15499d01e0eSJoel Stanley /* Pass through mode */ 15599d01e0eSJoel Stanley mult = div = 1; 15699d01e0eSJoel Stanley } else { 15799d01e0eSJoel Stanley /* F = 24Mhz * (2-OD) * [(N + 2) / (D + 1)] */ 15899d01e0eSJoel Stanley u32 n = (val >> 5) & 0x3f; 15999d01e0eSJoel Stanley u32 od = (val >> 4) & 0x1; 16099d01e0eSJoel Stanley u32 d = val & 0xf; 16199d01e0eSJoel Stanley 16299d01e0eSJoel Stanley mult = (2 - od) * (n + 2); 16399d01e0eSJoel Stanley div = d + 1; 16499d01e0eSJoel Stanley } 16599d01e0eSJoel Stanley return clk_hw_register_fixed_factor(NULL, name, "clkin", 0, 16699d01e0eSJoel Stanley mult, div); 16799d01e0eSJoel Stanley }; 16899d01e0eSJoel Stanley 16999d01e0eSJoel Stanley static struct clk_hw *aspeed_ast2500_calc_pll(const char *name, u32 val) 17099d01e0eSJoel Stanley { 17199d01e0eSJoel Stanley unsigned int mult, div; 17299d01e0eSJoel Stanley 17399d01e0eSJoel Stanley if (val & AST2500_HPLL_BYPASS_EN) { 17499d01e0eSJoel Stanley /* Pass through mode */ 17599d01e0eSJoel Stanley mult = div = 1; 17699d01e0eSJoel Stanley } else { 17799d01e0eSJoel Stanley /* F = clkin * [(M+1) / (N+1)] / (P + 1) */ 17899d01e0eSJoel Stanley u32 p = (val >> 13) & 0x3f; 17999d01e0eSJoel Stanley u32 m = (val >> 5) & 0xff; 18099d01e0eSJoel Stanley u32 n = val & 0x1f; 18199d01e0eSJoel Stanley 18299d01e0eSJoel Stanley mult = (m + 1) / (n + 1); 18399d01e0eSJoel Stanley div = p + 1; 18499d01e0eSJoel Stanley } 18599d01e0eSJoel Stanley 18699d01e0eSJoel Stanley return clk_hw_register_fixed_factor(NULL, name, "clkin", 0, 18799d01e0eSJoel Stanley mult, div); 18899d01e0eSJoel Stanley } 18999d01e0eSJoel Stanley 19098f3118dSJoel Stanley struct aspeed_clk_soc_data { 19198f3118dSJoel Stanley const struct clk_div_table *div_table; 19298f3118dSJoel Stanley const struct clk_div_table *mac_div_table; 19398f3118dSJoel Stanley struct clk_hw *(*calc_pll)(const char *name, u32 val); 19498f3118dSJoel Stanley }; 19598f3118dSJoel Stanley 19698f3118dSJoel Stanley static const struct aspeed_clk_soc_data ast2500_data = { 19798f3118dSJoel Stanley .div_table = ast2500_div_table, 19898f3118dSJoel Stanley .mac_div_table = ast2500_mac_div_table, 19998f3118dSJoel Stanley .calc_pll = aspeed_ast2500_calc_pll, 20098f3118dSJoel Stanley }; 20198f3118dSJoel Stanley 20298f3118dSJoel Stanley static const struct aspeed_clk_soc_data ast2400_data = { 20398f3118dSJoel Stanley .div_table = ast2400_div_table, 20498f3118dSJoel Stanley .mac_div_table = ast2400_div_table, 20598f3118dSJoel Stanley .calc_pll = aspeed_ast2400_calc_pll, 20698f3118dSJoel Stanley }; 20798f3118dSJoel Stanley 2088a53fc51SEddie James static int aspeed_clk_is_enabled(struct clk_hw *hw) 2098a53fc51SEddie James { 2108a53fc51SEddie James struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); 2118a53fc51SEddie James u32 clk = BIT(gate->clock_idx); 2128a53fc51SEddie James u32 enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? 0 : clk; 2138a53fc51SEddie James u32 reg; 2148a53fc51SEddie James 2158a53fc51SEddie James regmap_read(gate->map, ASPEED_CLK_STOP_CTRL, ®); 2168a53fc51SEddie James 2178a53fc51SEddie James return ((reg & clk) == enval) ? 1 : 0; 2188a53fc51SEddie James } 2198a53fc51SEddie James 22015ed8ce5SJoel Stanley static int aspeed_clk_enable(struct clk_hw *hw) 22115ed8ce5SJoel Stanley { 22215ed8ce5SJoel Stanley struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); 22315ed8ce5SJoel Stanley unsigned long flags; 22415ed8ce5SJoel Stanley u32 clk = BIT(gate->clock_idx); 22515ed8ce5SJoel Stanley u32 rst = BIT(gate->reset_idx); 2266671507fSBenjamin Herrenschmidt u32 enval; 22715ed8ce5SJoel Stanley 22815ed8ce5SJoel Stanley spin_lock_irqsave(gate->lock, flags); 22915ed8ce5SJoel Stanley 2308a53fc51SEddie James if (aspeed_clk_is_enabled(hw)) { 2318a53fc51SEddie James spin_unlock_irqrestore(gate->lock, flags); 2328a53fc51SEddie James return 0; 2338a53fc51SEddie James } 2348a53fc51SEddie James 23515ed8ce5SJoel Stanley if (gate->reset_idx >= 0) { 23615ed8ce5SJoel Stanley /* Put IP in reset */ 23715ed8ce5SJoel Stanley regmap_update_bits(gate->map, ASPEED_RESET_CTRL, rst, rst); 23815ed8ce5SJoel Stanley 23915ed8ce5SJoel Stanley /* Delay 100us */ 24015ed8ce5SJoel Stanley udelay(100); 24115ed8ce5SJoel Stanley } 24215ed8ce5SJoel Stanley 24315ed8ce5SJoel Stanley /* Enable clock */ 2446671507fSBenjamin Herrenschmidt enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? 0 : clk; 2456671507fSBenjamin Herrenschmidt regmap_update_bits(gate->map, ASPEED_CLK_STOP_CTRL, clk, enval); 24615ed8ce5SJoel Stanley 24715ed8ce5SJoel Stanley if (gate->reset_idx >= 0) { 24815ed8ce5SJoel Stanley /* A delay of 10ms is specified by the ASPEED docs */ 24915ed8ce5SJoel Stanley mdelay(10); 25015ed8ce5SJoel Stanley 25115ed8ce5SJoel Stanley /* Take IP out of reset */ 25215ed8ce5SJoel Stanley regmap_update_bits(gate->map, ASPEED_RESET_CTRL, rst, 0); 25315ed8ce5SJoel Stanley } 25415ed8ce5SJoel Stanley 25515ed8ce5SJoel Stanley spin_unlock_irqrestore(gate->lock, flags); 25615ed8ce5SJoel Stanley 25715ed8ce5SJoel Stanley return 0; 25815ed8ce5SJoel Stanley } 25915ed8ce5SJoel Stanley 26015ed8ce5SJoel Stanley static void aspeed_clk_disable(struct clk_hw *hw) 26115ed8ce5SJoel Stanley { 26215ed8ce5SJoel Stanley struct aspeed_clk_gate *gate = to_aspeed_clk_gate(hw); 26315ed8ce5SJoel Stanley unsigned long flags; 26415ed8ce5SJoel Stanley u32 clk = BIT(gate->clock_idx); 2656671507fSBenjamin Herrenschmidt u32 enval; 26615ed8ce5SJoel Stanley 26715ed8ce5SJoel Stanley spin_lock_irqsave(gate->lock, flags); 26815ed8ce5SJoel Stanley 2696671507fSBenjamin Herrenschmidt enval = (gate->flags & CLK_GATE_SET_TO_DISABLE) ? clk : 0; 2706671507fSBenjamin Herrenschmidt regmap_update_bits(gate->map, ASPEED_CLK_STOP_CTRL, clk, enval); 27115ed8ce5SJoel Stanley 27215ed8ce5SJoel Stanley spin_unlock_irqrestore(gate->lock, flags); 27315ed8ce5SJoel Stanley } 27415ed8ce5SJoel Stanley 27515ed8ce5SJoel Stanley static const struct clk_ops aspeed_clk_gate_ops = { 27615ed8ce5SJoel Stanley .enable = aspeed_clk_enable, 27715ed8ce5SJoel Stanley .disable = aspeed_clk_disable, 27815ed8ce5SJoel Stanley .is_enabled = aspeed_clk_is_enabled, 27915ed8ce5SJoel Stanley }; 28015ed8ce5SJoel Stanley 281f7989839SJoel Stanley /** 282f7989839SJoel Stanley * struct aspeed_reset - Aspeed reset controller 283f7989839SJoel Stanley * @map: regmap to access the containing system controller 284f7989839SJoel Stanley * @rcdev: reset controller device 285f7989839SJoel Stanley */ 286f7989839SJoel Stanley struct aspeed_reset { 287f7989839SJoel Stanley struct regmap *map; 288f7989839SJoel Stanley struct reset_controller_dev rcdev; 289f7989839SJoel Stanley }; 290f7989839SJoel Stanley 291f7989839SJoel Stanley #define to_aspeed_reset(p) container_of((p), struct aspeed_reset, rcdev) 292f7989839SJoel Stanley 293f7989839SJoel Stanley static const u8 aspeed_resets[] = { 294f7989839SJoel Stanley [ASPEED_RESET_XDMA] = 25, 295f7989839SJoel Stanley [ASPEED_RESET_MCTP] = 24, 296f7989839SJoel Stanley [ASPEED_RESET_ADC] = 23, 297f7989839SJoel Stanley [ASPEED_RESET_JTAG_MASTER] = 22, 298f7989839SJoel Stanley [ASPEED_RESET_MIC] = 18, 299f7989839SJoel Stanley [ASPEED_RESET_PWM] = 9, 300f7989839SJoel Stanley [ASPEED_RESET_PCIVGA] = 8, 301f7989839SJoel Stanley [ASPEED_RESET_I2C] = 2, 302f7989839SJoel Stanley [ASPEED_RESET_AHB] = 1, 303f7989839SJoel Stanley }; 304f7989839SJoel Stanley 305f7989839SJoel Stanley static int aspeed_reset_deassert(struct reset_controller_dev *rcdev, 306f7989839SJoel Stanley unsigned long id) 307f7989839SJoel Stanley { 308f7989839SJoel Stanley struct aspeed_reset *ar = to_aspeed_reset(rcdev); 309f7989839SJoel Stanley u32 rst = BIT(aspeed_resets[id]); 310f7989839SJoel Stanley 311f7989839SJoel Stanley return regmap_update_bits(ar->map, ASPEED_RESET_CTRL, rst, 0); 312f7989839SJoel Stanley } 313f7989839SJoel Stanley 314f7989839SJoel Stanley static int aspeed_reset_assert(struct reset_controller_dev *rcdev, 315f7989839SJoel Stanley unsigned long id) 316f7989839SJoel Stanley { 317f7989839SJoel Stanley struct aspeed_reset *ar = to_aspeed_reset(rcdev); 318f7989839SJoel Stanley u32 rst = BIT(aspeed_resets[id]); 319f7989839SJoel Stanley 320f7989839SJoel Stanley return regmap_update_bits(ar->map, ASPEED_RESET_CTRL, rst, rst); 321f7989839SJoel Stanley } 322f7989839SJoel Stanley 323f7989839SJoel Stanley static int aspeed_reset_status(struct reset_controller_dev *rcdev, 324f7989839SJoel Stanley unsigned long id) 325f7989839SJoel Stanley { 326f7989839SJoel Stanley struct aspeed_reset *ar = to_aspeed_reset(rcdev); 327f7989839SJoel Stanley u32 val, rst = BIT(aspeed_resets[id]); 328f7989839SJoel Stanley int ret; 329f7989839SJoel Stanley 330f7989839SJoel Stanley ret = regmap_read(ar->map, ASPEED_RESET_CTRL, &val); 331f7989839SJoel Stanley if (ret) 332f7989839SJoel Stanley return ret; 333f7989839SJoel Stanley 334f7989839SJoel Stanley return !!(val & rst); 335f7989839SJoel Stanley } 336f7989839SJoel Stanley 337f7989839SJoel Stanley static const struct reset_control_ops aspeed_reset_ops = { 338f7989839SJoel Stanley .assert = aspeed_reset_assert, 339f7989839SJoel Stanley .deassert = aspeed_reset_deassert, 340f7989839SJoel Stanley .status = aspeed_reset_status, 341f7989839SJoel Stanley }; 342f7989839SJoel Stanley 34315ed8ce5SJoel Stanley static struct clk_hw *aspeed_clk_hw_register_gate(struct device *dev, 34415ed8ce5SJoel Stanley const char *name, const char *parent_name, unsigned long flags, 34515ed8ce5SJoel Stanley struct regmap *map, u8 clock_idx, u8 reset_idx, 34615ed8ce5SJoel Stanley u8 clk_gate_flags, spinlock_t *lock) 34715ed8ce5SJoel Stanley { 34815ed8ce5SJoel Stanley struct aspeed_clk_gate *gate; 34915ed8ce5SJoel Stanley struct clk_init_data init; 35015ed8ce5SJoel Stanley struct clk_hw *hw; 35115ed8ce5SJoel Stanley int ret; 35215ed8ce5SJoel Stanley 35315ed8ce5SJoel Stanley gate = kzalloc(sizeof(*gate), GFP_KERNEL); 35415ed8ce5SJoel Stanley if (!gate) 35515ed8ce5SJoel Stanley return ERR_PTR(-ENOMEM); 35615ed8ce5SJoel Stanley 35715ed8ce5SJoel Stanley init.name = name; 35815ed8ce5SJoel Stanley init.ops = &aspeed_clk_gate_ops; 35915ed8ce5SJoel Stanley init.flags = flags; 36015ed8ce5SJoel Stanley init.parent_names = parent_name ? &parent_name : NULL; 36115ed8ce5SJoel Stanley init.num_parents = parent_name ? 1 : 0; 36215ed8ce5SJoel Stanley 36315ed8ce5SJoel Stanley gate->map = map; 36415ed8ce5SJoel Stanley gate->clock_idx = clock_idx; 36515ed8ce5SJoel Stanley gate->reset_idx = reset_idx; 36615ed8ce5SJoel Stanley gate->flags = clk_gate_flags; 36715ed8ce5SJoel Stanley gate->lock = lock; 36815ed8ce5SJoel Stanley gate->hw.init = &init; 36915ed8ce5SJoel Stanley 37015ed8ce5SJoel Stanley hw = &gate->hw; 37115ed8ce5SJoel Stanley ret = clk_hw_register(dev, hw); 37215ed8ce5SJoel Stanley if (ret) { 37315ed8ce5SJoel Stanley kfree(gate); 37415ed8ce5SJoel Stanley hw = ERR_PTR(ret); 37515ed8ce5SJoel Stanley } 37615ed8ce5SJoel Stanley 37715ed8ce5SJoel Stanley return hw; 37815ed8ce5SJoel Stanley } 37915ed8ce5SJoel Stanley 38098f3118dSJoel Stanley static int aspeed_clk_probe(struct platform_device *pdev) 38198f3118dSJoel Stanley { 38298f3118dSJoel Stanley const struct aspeed_clk_soc_data *soc_data; 38398f3118dSJoel Stanley struct device *dev = &pdev->dev; 384f7989839SJoel Stanley struct aspeed_reset *ar; 38598f3118dSJoel Stanley struct regmap *map; 38698f3118dSJoel Stanley struct clk_hw *hw; 38798f3118dSJoel Stanley u32 val, rate; 388f7989839SJoel Stanley int i, ret; 38998f3118dSJoel Stanley 39098f3118dSJoel Stanley map = syscon_node_to_regmap(dev->of_node); 39198f3118dSJoel Stanley if (IS_ERR(map)) { 39298f3118dSJoel Stanley dev_err(dev, "no syscon regmap\n"); 39398f3118dSJoel Stanley return PTR_ERR(map); 39498f3118dSJoel Stanley } 39598f3118dSJoel Stanley 396f7989839SJoel Stanley ar = devm_kzalloc(dev, sizeof(*ar), GFP_KERNEL); 397f7989839SJoel Stanley if (!ar) 398f7989839SJoel Stanley return -ENOMEM; 399f7989839SJoel Stanley 400f7989839SJoel Stanley ar->map = map; 401f7989839SJoel Stanley ar->rcdev.owner = THIS_MODULE; 402f7989839SJoel Stanley ar->rcdev.nr_resets = ARRAY_SIZE(aspeed_resets); 403f7989839SJoel Stanley ar->rcdev.ops = &aspeed_reset_ops; 404f7989839SJoel Stanley ar->rcdev.of_node = dev->of_node; 405f7989839SJoel Stanley 406f7989839SJoel Stanley ret = devm_reset_controller_register(dev, &ar->rcdev); 407f7989839SJoel Stanley if (ret) { 408f7989839SJoel Stanley dev_err(dev, "could not register reset controller\n"); 409f7989839SJoel Stanley return ret; 410f7989839SJoel Stanley } 411f7989839SJoel Stanley 41298f3118dSJoel Stanley /* SoC generations share common layouts but have different divisors */ 41398f3118dSJoel Stanley soc_data = of_device_get_match_data(dev); 41498f3118dSJoel Stanley if (!soc_data) { 41598f3118dSJoel Stanley dev_err(dev, "no match data for platform\n"); 41698f3118dSJoel Stanley return -EINVAL; 41798f3118dSJoel Stanley } 41898f3118dSJoel Stanley 41998f3118dSJoel Stanley /* UART clock div13 setting */ 42098f3118dSJoel Stanley regmap_read(map, ASPEED_MISC_CTRL, &val); 42198f3118dSJoel Stanley if (val & UART_DIV13_EN) 42298f3118dSJoel Stanley rate = 24000000 / 13; 42398f3118dSJoel Stanley else 42498f3118dSJoel Stanley rate = 24000000; 42598f3118dSJoel Stanley /* TODO: Find the parent data for the uart clock */ 42698f3118dSJoel Stanley hw = clk_hw_register_fixed_rate(dev, "uart", NULL, 0, rate); 42798f3118dSJoel Stanley if (IS_ERR(hw)) 42898f3118dSJoel Stanley return PTR_ERR(hw); 42998f3118dSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_UART] = hw; 43098f3118dSJoel Stanley 43198f3118dSJoel Stanley /* 43298f3118dSJoel Stanley * Memory controller (M-PLL) PLL. This clock is configured by the 43398f3118dSJoel Stanley * bootloader, and is exposed to Linux as a read-only clock rate. 43498f3118dSJoel Stanley */ 43598f3118dSJoel Stanley regmap_read(map, ASPEED_MPLL_PARAM, &val); 43698f3118dSJoel Stanley hw = soc_data->calc_pll("mpll", val); 43798f3118dSJoel Stanley if (IS_ERR(hw)) 43898f3118dSJoel Stanley return PTR_ERR(hw); 43998f3118dSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_MPLL] = hw; 44098f3118dSJoel Stanley 44198f3118dSJoel Stanley /* SD/SDIO clock divider (TODO: There's a gate too) */ 44298f3118dSJoel Stanley hw = clk_hw_register_divider_table(dev, "sdio", "hpll", 0, 44398f3118dSJoel Stanley scu_base + ASPEED_CLK_SELECTION, 12, 3, 0, 44498f3118dSJoel Stanley soc_data->div_table, 44598f3118dSJoel Stanley &aspeed_clk_lock); 44698f3118dSJoel Stanley if (IS_ERR(hw)) 44798f3118dSJoel Stanley return PTR_ERR(hw); 44898f3118dSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_SDIO] = hw; 44998f3118dSJoel Stanley 45098f3118dSJoel Stanley /* MAC AHB bus clock divider */ 45198f3118dSJoel Stanley hw = clk_hw_register_divider_table(dev, "mac", "hpll", 0, 45298f3118dSJoel Stanley scu_base + ASPEED_CLK_SELECTION, 16, 3, 0, 45398f3118dSJoel Stanley soc_data->mac_div_table, 45498f3118dSJoel Stanley &aspeed_clk_lock); 45598f3118dSJoel Stanley if (IS_ERR(hw)) 45698f3118dSJoel Stanley return PTR_ERR(hw); 45798f3118dSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_MAC] = hw; 45898f3118dSJoel Stanley 45998f3118dSJoel Stanley /* LPC Host (LHCLK) clock divider */ 46098f3118dSJoel Stanley hw = clk_hw_register_divider_table(dev, "lhclk", "hpll", 0, 46198f3118dSJoel Stanley scu_base + ASPEED_CLK_SELECTION, 20, 3, 0, 46298f3118dSJoel Stanley soc_data->div_table, 46398f3118dSJoel Stanley &aspeed_clk_lock); 46498f3118dSJoel Stanley if (IS_ERR(hw)) 46598f3118dSJoel Stanley return PTR_ERR(hw); 46698f3118dSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_LHCLK] = hw; 46798f3118dSJoel Stanley 46898f3118dSJoel Stanley /* P-Bus (BCLK) clock divider */ 46998f3118dSJoel Stanley hw = clk_hw_register_divider_table(dev, "bclk", "hpll", 0, 47098f3118dSJoel Stanley scu_base + ASPEED_CLK_SELECTION_2, 0, 2, 0, 47198f3118dSJoel Stanley soc_data->div_table, 47298f3118dSJoel Stanley &aspeed_clk_lock); 47398f3118dSJoel Stanley if (IS_ERR(hw)) 47498f3118dSJoel Stanley return PTR_ERR(hw); 47598f3118dSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_BCLK] = hw; 47698f3118dSJoel Stanley 477*67b6e5cfSLei YU /* Fixed 24MHz clock */ 478*67b6e5cfSLei YU hw = clk_hw_register_fixed_rate(NULL, "fixed-24m", "clkin", 479*67b6e5cfSLei YU 0, 24000000); 480*67b6e5cfSLei YU if (IS_ERR(hw)) 481*67b6e5cfSLei YU return PTR_ERR(hw); 482*67b6e5cfSLei YU aspeed_clk_data->hws[ASPEED_CLK_24M] = hw; 483*67b6e5cfSLei YU 48415ed8ce5SJoel Stanley /* 48515ed8ce5SJoel Stanley * TODO: There are a number of clocks that not included in this driver 48615ed8ce5SJoel Stanley * as more information is required: 48715ed8ce5SJoel Stanley * D2-PLL 48815ed8ce5SJoel Stanley * D-PLL 48915ed8ce5SJoel Stanley * YCLK 49015ed8ce5SJoel Stanley * RGMII 49115ed8ce5SJoel Stanley * RMII 49215ed8ce5SJoel Stanley * UART[1..5] clock source mux 49315ed8ce5SJoel Stanley * Video Engine (ECLK) mux and clock divider 49415ed8ce5SJoel Stanley */ 49515ed8ce5SJoel Stanley 49615ed8ce5SJoel Stanley for (i = 0; i < ARRAY_SIZE(aspeed_gates); i++) { 49715ed8ce5SJoel Stanley const struct aspeed_gate_data *gd = &aspeed_gates[i]; 4986671507fSBenjamin Herrenschmidt u32 gate_flags; 49915ed8ce5SJoel Stanley 5006671507fSBenjamin Herrenschmidt /* Special case: the USB port 1 clock (bit 14) is always 5016671507fSBenjamin Herrenschmidt * working the opposite way from the other ones. 5026671507fSBenjamin Herrenschmidt */ 5036671507fSBenjamin Herrenschmidt gate_flags = (gd->clock_idx == 14) ? 0 : CLK_GATE_SET_TO_DISABLE; 50415ed8ce5SJoel Stanley hw = aspeed_clk_hw_register_gate(dev, 50515ed8ce5SJoel Stanley gd->name, 50615ed8ce5SJoel Stanley gd->parent_name, 50715ed8ce5SJoel Stanley gd->flags, 50815ed8ce5SJoel Stanley map, 50915ed8ce5SJoel Stanley gd->clock_idx, 51015ed8ce5SJoel Stanley gd->reset_idx, 5116671507fSBenjamin Herrenschmidt gate_flags, 51215ed8ce5SJoel Stanley &aspeed_clk_lock); 51315ed8ce5SJoel Stanley if (IS_ERR(hw)) 51415ed8ce5SJoel Stanley return PTR_ERR(hw); 51515ed8ce5SJoel Stanley aspeed_clk_data->hws[i] = hw; 51615ed8ce5SJoel Stanley } 51715ed8ce5SJoel Stanley 51898f3118dSJoel Stanley return 0; 51998f3118dSJoel Stanley }; 52098f3118dSJoel Stanley 52198f3118dSJoel Stanley static const struct of_device_id aspeed_clk_dt_ids[] = { 52298f3118dSJoel Stanley { .compatible = "aspeed,ast2400-scu", .data = &ast2400_data }, 52398f3118dSJoel Stanley { .compatible = "aspeed,ast2500-scu", .data = &ast2500_data }, 52498f3118dSJoel Stanley { } 52598f3118dSJoel Stanley }; 52698f3118dSJoel Stanley 52798f3118dSJoel Stanley static struct platform_driver aspeed_clk_driver = { 52898f3118dSJoel Stanley .probe = aspeed_clk_probe, 52998f3118dSJoel Stanley .driver = { 53098f3118dSJoel Stanley .name = "aspeed-clk", 53198f3118dSJoel Stanley .of_match_table = aspeed_clk_dt_ids, 53298f3118dSJoel Stanley .suppress_bind_attrs = true, 53398f3118dSJoel Stanley }, 53498f3118dSJoel Stanley }; 53598f3118dSJoel Stanley builtin_platform_driver(aspeed_clk_driver); 53698f3118dSJoel Stanley 53799d01e0eSJoel Stanley static void __init aspeed_ast2400_cc(struct regmap *map) 53899d01e0eSJoel Stanley { 53999d01e0eSJoel Stanley struct clk_hw *hw; 54099d01e0eSJoel Stanley u32 val, freq, div; 54199d01e0eSJoel Stanley 54299d01e0eSJoel Stanley /* 54399d01e0eSJoel Stanley * CLKIN is the crystal oscillator, 24, 48 or 25MHz selected by 54499d01e0eSJoel Stanley * strapping 54599d01e0eSJoel Stanley */ 54699d01e0eSJoel Stanley regmap_read(map, ASPEED_STRAP, &val); 54799d01e0eSJoel Stanley if (val & CLKIN_25MHZ_EN) 54899d01e0eSJoel Stanley freq = 25000000; 54999d01e0eSJoel Stanley else if (val & AST2400_CLK_SOURCE_SEL) 55099d01e0eSJoel Stanley freq = 48000000; 55199d01e0eSJoel Stanley else 55299d01e0eSJoel Stanley freq = 24000000; 55399d01e0eSJoel Stanley hw = clk_hw_register_fixed_rate(NULL, "clkin", NULL, 0, freq); 55499d01e0eSJoel Stanley pr_debug("clkin @%u MHz\n", freq / 1000000); 55599d01e0eSJoel Stanley 55699d01e0eSJoel Stanley /* 55799d01e0eSJoel Stanley * High-speed PLL clock derived from the crystal. This the CPU clock, 55899d01e0eSJoel Stanley * and we assume that it is enabled 55999d01e0eSJoel Stanley */ 56099d01e0eSJoel Stanley regmap_read(map, ASPEED_HPLL_PARAM, &val); 56199d01e0eSJoel Stanley WARN(val & AST2400_HPLL_STRAPPED, "hpll is strapped not configured"); 56299d01e0eSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_HPLL] = aspeed_ast2400_calc_pll("hpll", val); 56399d01e0eSJoel Stanley 56499d01e0eSJoel Stanley /* 56599d01e0eSJoel Stanley * Strap bits 11:10 define the CPU/AHB clock frequency ratio (aka HCLK) 56699d01e0eSJoel Stanley * 00: Select CPU:AHB = 1:1 56799d01e0eSJoel Stanley * 01: Select CPU:AHB = 2:1 56899d01e0eSJoel Stanley * 10: Select CPU:AHB = 4:1 56999d01e0eSJoel Stanley * 11: Select CPU:AHB = 3:1 57099d01e0eSJoel Stanley */ 57199d01e0eSJoel Stanley regmap_read(map, ASPEED_STRAP, &val); 57299d01e0eSJoel Stanley val = (val >> 10) & 0x3; 57399d01e0eSJoel Stanley div = val + 1; 57499d01e0eSJoel Stanley if (div == 3) 57599d01e0eSJoel Stanley div = 4; 57699d01e0eSJoel Stanley else if (div == 4) 57799d01e0eSJoel Stanley div = 3; 57899d01e0eSJoel Stanley hw = clk_hw_register_fixed_factor(NULL, "ahb", "hpll", 0, 1, div); 57999d01e0eSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_AHB] = hw; 58099d01e0eSJoel Stanley 58199d01e0eSJoel Stanley /* APB clock clock selection register SCU08 (aka PCLK) */ 58299d01e0eSJoel Stanley hw = clk_hw_register_divider_table(NULL, "apb", "hpll", 0, 58399d01e0eSJoel Stanley scu_base + ASPEED_CLK_SELECTION, 23, 3, 0, 58499d01e0eSJoel Stanley ast2400_div_table, 58599d01e0eSJoel Stanley &aspeed_clk_lock); 58699d01e0eSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_APB] = hw; 58799d01e0eSJoel Stanley } 58899d01e0eSJoel Stanley 58999d01e0eSJoel Stanley static void __init aspeed_ast2500_cc(struct regmap *map) 59099d01e0eSJoel Stanley { 59199d01e0eSJoel Stanley struct clk_hw *hw; 59299d01e0eSJoel Stanley u32 val, freq, div; 59399d01e0eSJoel Stanley 59499d01e0eSJoel Stanley /* CLKIN is the crystal oscillator, 24 or 25MHz selected by strapping */ 59599d01e0eSJoel Stanley regmap_read(map, ASPEED_STRAP, &val); 59699d01e0eSJoel Stanley if (val & CLKIN_25MHZ_EN) 59799d01e0eSJoel Stanley freq = 25000000; 59899d01e0eSJoel Stanley else 59999d01e0eSJoel Stanley freq = 24000000; 60099d01e0eSJoel Stanley hw = clk_hw_register_fixed_rate(NULL, "clkin", NULL, 0, freq); 60199d01e0eSJoel Stanley pr_debug("clkin @%u MHz\n", freq / 1000000); 60299d01e0eSJoel Stanley 60399d01e0eSJoel Stanley /* 60499d01e0eSJoel Stanley * High-speed PLL clock derived from the crystal. This the CPU clock, 60599d01e0eSJoel Stanley * and we assume that it is enabled 60699d01e0eSJoel Stanley */ 60799d01e0eSJoel Stanley regmap_read(map, ASPEED_HPLL_PARAM, &val); 60899d01e0eSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_HPLL] = aspeed_ast2500_calc_pll("hpll", val); 60999d01e0eSJoel Stanley 61099d01e0eSJoel Stanley /* Strap bits 11:9 define the AXI/AHB clock frequency ratio (aka HCLK)*/ 61199d01e0eSJoel Stanley regmap_read(map, ASPEED_STRAP, &val); 61299d01e0eSJoel Stanley val = (val >> 9) & 0x7; 61399d01e0eSJoel Stanley WARN(val == 0, "strapping is zero: cannot determine ahb clock"); 61499d01e0eSJoel Stanley div = 2 * (val + 1); 61599d01e0eSJoel Stanley hw = clk_hw_register_fixed_factor(NULL, "ahb", "hpll", 0, 1, div); 61699d01e0eSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_AHB] = hw; 61799d01e0eSJoel Stanley 61899d01e0eSJoel Stanley /* APB clock clock selection register SCU08 (aka PCLK) */ 61999d01e0eSJoel Stanley regmap_read(map, ASPEED_CLK_SELECTION, &val); 62099d01e0eSJoel Stanley val = (val >> 23) & 0x7; 62199d01e0eSJoel Stanley div = 4 * (val + 1); 62299d01e0eSJoel Stanley hw = clk_hw_register_fixed_factor(NULL, "apb", "hpll", 0, 1, div); 62399d01e0eSJoel Stanley aspeed_clk_data->hws[ASPEED_CLK_APB] = hw; 62499d01e0eSJoel Stanley }; 62599d01e0eSJoel Stanley 6265eda5d79SJoel Stanley static void __init aspeed_cc_init(struct device_node *np) 6275eda5d79SJoel Stanley { 6285eda5d79SJoel Stanley struct regmap *map; 6295eda5d79SJoel Stanley u32 val; 6305eda5d79SJoel Stanley int ret; 6315eda5d79SJoel Stanley int i; 6325eda5d79SJoel Stanley 6335eda5d79SJoel Stanley scu_base = of_iomap(np, 0); 634accf475aSWei Yongjun if (!scu_base) 6355eda5d79SJoel Stanley return; 6365eda5d79SJoel Stanley 6375eda5d79SJoel Stanley aspeed_clk_data = kzalloc(sizeof(*aspeed_clk_data) + 6385eda5d79SJoel Stanley sizeof(*aspeed_clk_data->hws) * ASPEED_NUM_CLKS, 6395eda5d79SJoel Stanley GFP_KERNEL); 6405eda5d79SJoel Stanley if (!aspeed_clk_data) 6415eda5d79SJoel Stanley return; 6425eda5d79SJoel Stanley 6435eda5d79SJoel Stanley /* 6445eda5d79SJoel Stanley * This way all clocks fetched before the platform device probes, 6455eda5d79SJoel Stanley * except those we assign here for early use, will be deferred. 6465eda5d79SJoel Stanley */ 6475eda5d79SJoel Stanley for (i = 0; i < ASPEED_NUM_CLKS; i++) 6485eda5d79SJoel Stanley aspeed_clk_data->hws[i] = ERR_PTR(-EPROBE_DEFER); 6495eda5d79SJoel Stanley 6505eda5d79SJoel Stanley map = syscon_node_to_regmap(np); 6515eda5d79SJoel Stanley if (IS_ERR(map)) { 6525eda5d79SJoel Stanley pr_err("no syscon regmap\n"); 6535eda5d79SJoel Stanley return; 6545eda5d79SJoel Stanley } 6555eda5d79SJoel Stanley /* 6565eda5d79SJoel Stanley * We check that the regmap works on this very first access, 6575eda5d79SJoel Stanley * but as this is an MMIO-backed regmap, subsequent regmap 6585eda5d79SJoel Stanley * access is not going to fail and we skip error checks from 6595eda5d79SJoel Stanley * this point. 6605eda5d79SJoel Stanley */ 6615eda5d79SJoel Stanley ret = regmap_read(map, ASPEED_STRAP, &val); 6625eda5d79SJoel Stanley if (ret) { 6635eda5d79SJoel Stanley pr_err("failed to read strapping register\n"); 6645eda5d79SJoel Stanley return; 6655eda5d79SJoel Stanley } 6665eda5d79SJoel Stanley 66799d01e0eSJoel Stanley if (of_device_is_compatible(np, "aspeed,ast2400-scu")) 66899d01e0eSJoel Stanley aspeed_ast2400_cc(map); 66999d01e0eSJoel Stanley else if (of_device_is_compatible(np, "aspeed,ast2500-scu")) 67099d01e0eSJoel Stanley aspeed_ast2500_cc(map); 67199d01e0eSJoel Stanley else 67299d01e0eSJoel Stanley pr_err("unknown platform, failed to add clocks\n"); 67399d01e0eSJoel Stanley 6745eda5d79SJoel Stanley aspeed_clk_data->num = ASPEED_NUM_CLKS; 6755eda5d79SJoel Stanley ret = of_clk_add_hw_provider(np, of_clk_hw_onecell_get, aspeed_clk_data); 6765eda5d79SJoel Stanley if (ret) 6775eda5d79SJoel Stanley pr_err("failed to add DT provider: %d\n", ret); 6785eda5d79SJoel Stanley }; 6795eda5d79SJoel Stanley CLK_OF_DECLARE_DRIVER(aspeed_cc_g5, "aspeed,ast2500-scu", aspeed_cc_init); 6805eda5d79SJoel Stanley CLK_OF_DECLARE_DRIVER(aspeed_cc_g4, "aspeed,ast2400-scu", aspeed_cc_init); 681