1*386570d7SVadim Pasternak // SPDX-License-Identifier: (GPL-2.0 OR BSD-3-Clause) 2*386570d7SVadim Pasternak // 3*386570d7SVadim Pasternak // Copyright (c) 2018 Mellanox Technologies. All rights reserved. 4*386570d7SVadim Pasternak // Copyright (c) 2018 Vadim Pasternak <vadimp@mellanox.com> 5*386570d7SVadim Pasternak 6*386570d7SVadim Pasternak #include <linux/bitops.h> 7*386570d7SVadim Pasternak #include <linux/device.h> 8*386570d7SVadim Pasternak #include <linux/io.h> 9*386570d7SVadim Pasternak #include <linux/leds.h> 10*386570d7SVadim Pasternak #include <linux/module.h> 11*386570d7SVadim Pasternak #include <linux/of_device.h> 12*386570d7SVadim Pasternak #include <linux/platform_data/mlxreg.h> 13*386570d7SVadim Pasternak #include <linux/platform_device.h> 14*386570d7SVadim Pasternak #include <linux/regmap.h> 15*386570d7SVadim Pasternak 16*386570d7SVadim Pasternak /* Codes for LEDs. */ 17*386570d7SVadim Pasternak #define MLXREG_LED_OFFSET_BLINK_3HZ 0x01 /* Offset from solid: 3Hz blink */ 18*386570d7SVadim Pasternak #define MLXREG_LED_OFFSET_BLINK_6HZ 0x02 /* Offset from solid: 6Hz blink */ 19*386570d7SVadim Pasternak #define MLXREG_LED_IS_OFF 0x00 /* Off */ 20*386570d7SVadim Pasternak #define MLXREG_LED_RED_SOLID 0x05 /* Solid red */ 21*386570d7SVadim Pasternak #define MLXREG_LED_GREEN_SOLID 0x0D /* Solid green */ 22*386570d7SVadim Pasternak #define MLXREG_LED_AMBER_SOLID 0x09 /* Solid amber */ 23*386570d7SVadim Pasternak #define MLXREG_LED_BLINK_3HZ 167 /* ~167 msec off/on - HW support */ 24*386570d7SVadim Pasternak #define MLXREG_LED_BLINK_6HZ 83 /* ~83 msec off/on - HW support */ 25*386570d7SVadim Pasternak 26*386570d7SVadim Pasternak /** 27*386570d7SVadim Pasternak * struct mlxreg_led_data - led control data: 28*386570d7SVadim Pasternak * 29*386570d7SVadim Pasternak * @data: led configuration data; 30*386570d7SVadim Pasternak * @led_classdev: led class data; 31*386570d7SVadim Pasternak * @base_color: base led color (other colors have constant offset from base); 32*386570d7SVadim Pasternak * @led_data: led data; 33*386570d7SVadim Pasternak * @data_parent: pointer to private device control data of parent; 34*386570d7SVadim Pasternak */ 35*386570d7SVadim Pasternak struct mlxreg_led_data { 36*386570d7SVadim Pasternak struct mlxreg_core_data *data; 37*386570d7SVadim Pasternak struct led_classdev led_cdev; 38*386570d7SVadim Pasternak u8 base_color; 39*386570d7SVadim Pasternak void *data_parent; 40*386570d7SVadim Pasternak char led_cdev_name[MLXREG_CORE_LABEL_MAX_SIZE]; 41*386570d7SVadim Pasternak }; 42*386570d7SVadim Pasternak 43*386570d7SVadim Pasternak #define cdev_to_priv(c) container_of(c, struct mlxreg_led_data, led_cdev) 44*386570d7SVadim Pasternak 45*386570d7SVadim Pasternak /** 46*386570d7SVadim Pasternak * struct mlxreg_led_priv_data - platform private data: 47*386570d7SVadim Pasternak * 48*386570d7SVadim Pasternak * @pdev: platform device; 49*386570d7SVadim Pasternak * @pdata: platform data; 50*386570d7SVadim Pasternak * @access_lock: mutex for attribute IO access; 51*386570d7SVadim Pasternak */ 52*386570d7SVadim Pasternak struct mlxreg_led_priv_data { 53*386570d7SVadim Pasternak struct platform_device *pdev; 54*386570d7SVadim Pasternak struct mlxreg_core_platform_data *pdata; 55*386570d7SVadim Pasternak struct mutex access_lock; /* protect IO operations */ 56*386570d7SVadim Pasternak }; 57*386570d7SVadim Pasternak 58*386570d7SVadim Pasternak static int 59*386570d7SVadim Pasternak mlxreg_led_store_hw(struct mlxreg_led_data *led_data, u8 vset) 60*386570d7SVadim Pasternak { 61*386570d7SVadim Pasternak struct mlxreg_led_priv_data *priv = led_data->data_parent; 62*386570d7SVadim Pasternak struct mlxreg_core_platform_data *led_pdata = priv->pdata; 63*386570d7SVadim Pasternak struct mlxreg_core_data *data = led_data->data; 64*386570d7SVadim Pasternak u32 regval; 65*386570d7SVadim Pasternak u32 nib; 66*386570d7SVadim Pasternak int ret; 67*386570d7SVadim Pasternak 68*386570d7SVadim Pasternak /* 69*386570d7SVadim Pasternak * Each LED is controlled through low or high nibble of the relevant 70*386570d7SVadim Pasternak * register byte. Register offset is specified by off parameter. 71*386570d7SVadim Pasternak * Parameter vset provides color code: 0x0 for off, 0x5 for solid red, 72*386570d7SVadim Pasternak * 0x6 for 3Hz blink red, 0xd for solid green, 0xe for 3Hz blink 73*386570d7SVadim Pasternak * green. 74*386570d7SVadim Pasternak * Parameter mask specifies which nibble is used for specific LED: mask 75*386570d7SVadim Pasternak * 0xf0 - lower nibble is to be used (bits from 0 to 3), mask 0x0f - 76*386570d7SVadim Pasternak * higher nibble (bits from 4 to 7). 77*386570d7SVadim Pasternak */ 78*386570d7SVadim Pasternak mutex_lock(&priv->access_lock); 79*386570d7SVadim Pasternak 80*386570d7SVadim Pasternak ret = regmap_read(led_pdata->regmap, data->reg, ®val); 81*386570d7SVadim Pasternak if (ret) 82*386570d7SVadim Pasternak goto access_error; 83*386570d7SVadim Pasternak 84*386570d7SVadim Pasternak nib = (ror32(data->mask, data->bit) == 0xf0) ? rol32(vset, data->bit) : 85*386570d7SVadim Pasternak rol32(vset, data->bit + 4); 86*386570d7SVadim Pasternak regval = (regval & data->mask) | nib; 87*386570d7SVadim Pasternak 88*386570d7SVadim Pasternak ret = regmap_write(led_pdata->regmap, data->reg, regval); 89*386570d7SVadim Pasternak 90*386570d7SVadim Pasternak access_error: 91*386570d7SVadim Pasternak mutex_unlock(&priv->access_lock); 92*386570d7SVadim Pasternak 93*386570d7SVadim Pasternak return ret; 94*386570d7SVadim Pasternak } 95*386570d7SVadim Pasternak 96*386570d7SVadim Pasternak static enum led_brightness 97*386570d7SVadim Pasternak mlxreg_led_get_hw(struct mlxreg_led_data *led_data) 98*386570d7SVadim Pasternak { 99*386570d7SVadim Pasternak struct mlxreg_led_priv_data *priv = led_data->data_parent; 100*386570d7SVadim Pasternak struct mlxreg_core_platform_data *led_pdata = priv->pdata; 101*386570d7SVadim Pasternak struct mlxreg_core_data *data = led_data->data; 102*386570d7SVadim Pasternak u32 regval; 103*386570d7SVadim Pasternak int err; 104*386570d7SVadim Pasternak 105*386570d7SVadim Pasternak /* 106*386570d7SVadim Pasternak * Each LED is controlled through low or high nibble of the relevant 107*386570d7SVadim Pasternak * register byte. Register offset is specified by off parameter. 108*386570d7SVadim Pasternak * Parameter vset provides color code: 0x0 for off, 0x5 for solid red, 109*386570d7SVadim Pasternak * 0x6 for 3Hz blink red, 0xd for solid green, 0xe for 3Hz blink 110*386570d7SVadim Pasternak * green. 111*386570d7SVadim Pasternak * Parameter mask specifies which nibble is used for specific LED: mask 112*386570d7SVadim Pasternak * 0xf0 - lower nibble is to be used (bits from 0 to 3), mask 0x0f - 113*386570d7SVadim Pasternak * higher nibble (bits from 4 to 7). 114*386570d7SVadim Pasternak */ 115*386570d7SVadim Pasternak err = regmap_read(led_pdata->regmap, data->reg, ®val); 116*386570d7SVadim Pasternak if (err < 0) { 117*386570d7SVadim Pasternak dev_warn(led_data->led_cdev.dev, "Failed to get current brightness, error: %d\n", 118*386570d7SVadim Pasternak err); 119*386570d7SVadim Pasternak /* Assume the LED is OFF */ 120*386570d7SVadim Pasternak return LED_OFF; 121*386570d7SVadim Pasternak } 122*386570d7SVadim Pasternak 123*386570d7SVadim Pasternak regval = regval & ~data->mask; 124*386570d7SVadim Pasternak regval = (ror32(data->mask, data->bit) == 0xf0) ? ror32(regval, 125*386570d7SVadim Pasternak data->bit) : ror32(regval, data->bit + 4); 126*386570d7SVadim Pasternak if (regval >= led_data->base_color && 127*386570d7SVadim Pasternak regval <= (led_data->base_color + MLXREG_LED_OFFSET_BLINK_6HZ)) 128*386570d7SVadim Pasternak return LED_FULL; 129*386570d7SVadim Pasternak 130*386570d7SVadim Pasternak return LED_OFF; 131*386570d7SVadim Pasternak } 132*386570d7SVadim Pasternak 133*386570d7SVadim Pasternak static int 134*386570d7SVadim Pasternak mlxreg_led_brightness_set(struct led_classdev *cled, enum led_brightness value) 135*386570d7SVadim Pasternak { 136*386570d7SVadim Pasternak struct mlxreg_led_data *led_data = cdev_to_priv(cled); 137*386570d7SVadim Pasternak 138*386570d7SVadim Pasternak if (value) 139*386570d7SVadim Pasternak return mlxreg_led_store_hw(led_data, led_data->base_color); 140*386570d7SVadim Pasternak else 141*386570d7SVadim Pasternak return mlxreg_led_store_hw(led_data, MLXREG_LED_IS_OFF); 142*386570d7SVadim Pasternak } 143*386570d7SVadim Pasternak 144*386570d7SVadim Pasternak static enum led_brightness 145*386570d7SVadim Pasternak mlxreg_led_brightness_get(struct led_classdev *cled) 146*386570d7SVadim Pasternak { 147*386570d7SVadim Pasternak struct mlxreg_led_data *led_data = cdev_to_priv(cled); 148*386570d7SVadim Pasternak 149*386570d7SVadim Pasternak return mlxreg_led_get_hw(led_data); 150*386570d7SVadim Pasternak } 151*386570d7SVadim Pasternak 152*386570d7SVadim Pasternak static int 153*386570d7SVadim Pasternak mlxreg_led_blink_set(struct led_classdev *cled, unsigned long *delay_on, 154*386570d7SVadim Pasternak unsigned long *delay_off) 155*386570d7SVadim Pasternak { 156*386570d7SVadim Pasternak struct mlxreg_led_data *led_data = cdev_to_priv(cled); 157*386570d7SVadim Pasternak int err; 158*386570d7SVadim Pasternak 159*386570d7SVadim Pasternak /* 160*386570d7SVadim Pasternak * HW supports two types of blinking: full (6Hz) and half (3Hz). 161*386570d7SVadim Pasternak * For delay on/off zero LED is setting to solid color. For others 162*386570d7SVadim Pasternak * combination blinking is to be controlled by the software timer. 163*386570d7SVadim Pasternak */ 164*386570d7SVadim Pasternak if (!(*delay_on == 0 && *delay_off == 0) && 165*386570d7SVadim Pasternak !(*delay_on == MLXREG_LED_BLINK_3HZ && 166*386570d7SVadim Pasternak *delay_off == MLXREG_LED_BLINK_3HZ) && 167*386570d7SVadim Pasternak !(*delay_on == MLXREG_LED_BLINK_6HZ && 168*386570d7SVadim Pasternak *delay_off == MLXREG_LED_BLINK_6HZ)) 169*386570d7SVadim Pasternak return -EINVAL; 170*386570d7SVadim Pasternak 171*386570d7SVadim Pasternak if (*delay_on == MLXREG_LED_BLINK_6HZ) 172*386570d7SVadim Pasternak err = mlxreg_led_store_hw(led_data, led_data->base_color + 173*386570d7SVadim Pasternak MLXREG_LED_OFFSET_BLINK_6HZ); 174*386570d7SVadim Pasternak else if (*delay_on == MLXREG_LED_BLINK_3HZ) 175*386570d7SVadim Pasternak err = mlxreg_led_store_hw(led_data, led_data->base_color + 176*386570d7SVadim Pasternak MLXREG_LED_OFFSET_BLINK_3HZ); 177*386570d7SVadim Pasternak else 178*386570d7SVadim Pasternak err = mlxreg_led_store_hw(led_data, led_data->base_color); 179*386570d7SVadim Pasternak 180*386570d7SVadim Pasternak return err; 181*386570d7SVadim Pasternak } 182*386570d7SVadim Pasternak 183*386570d7SVadim Pasternak static int mlxreg_led_config(struct mlxreg_led_priv_data *priv) 184*386570d7SVadim Pasternak { 185*386570d7SVadim Pasternak struct mlxreg_core_platform_data *led_pdata = priv->pdata; 186*386570d7SVadim Pasternak struct mlxreg_core_data *data = led_pdata->data; 187*386570d7SVadim Pasternak struct mlxreg_led_data *led_data; 188*386570d7SVadim Pasternak struct led_classdev *led_cdev; 189*386570d7SVadim Pasternak enum led_brightness brightness; 190*386570d7SVadim Pasternak int i; 191*386570d7SVadim Pasternak int err; 192*386570d7SVadim Pasternak 193*386570d7SVadim Pasternak for (i = 0; i < led_pdata->counter; i++, data++) { 194*386570d7SVadim Pasternak led_data = devm_kzalloc(&priv->pdev->dev, sizeof(*led_data), 195*386570d7SVadim Pasternak GFP_KERNEL); 196*386570d7SVadim Pasternak if (!led_data) 197*386570d7SVadim Pasternak return -ENOMEM; 198*386570d7SVadim Pasternak 199*386570d7SVadim Pasternak led_cdev = &led_data->led_cdev; 200*386570d7SVadim Pasternak led_data->data_parent = priv; 201*386570d7SVadim Pasternak if (strstr(data->label, "red") || 202*386570d7SVadim Pasternak strstr(data->label, "orange")) { 203*386570d7SVadim Pasternak brightness = LED_OFF; 204*386570d7SVadim Pasternak led_data->base_color = MLXREG_LED_RED_SOLID; 205*386570d7SVadim Pasternak } else if (strstr(data->label, "amber")) { 206*386570d7SVadim Pasternak brightness = LED_OFF; 207*386570d7SVadim Pasternak led_data->base_color = MLXREG_LED_AMBER_SOLID; 208*386570d7SVadim Pasternak } else { 209*386570d7SVadim Pasternak brightness = LED_OFF; 210*386570d7SVadim Pasternak led_data->base_color = MLXREG_LED_GREEN_SOLID; 211*386570d7SVadim Pasternak } 212*386570d7SVadim Pasternak sprintf(led_data->led_cdev_name, "%s:%s", "mlxreg", 213*386570d7SVadim Pasternak data->label); 214*386570d7SVadim Pasternak led_cdev->name = led_data->led_cdev_name; 215*386570d7SVadim Pasternak led_cdev->brightness = brightness; 216*386570d7SVadim Pasternak led_cdev->max_brightness = LED_ON; 217*386570d7SVadim Pasternak led_cdev->brightness_set_blocking = 218*386570d7SVadim Pasternak mlxreg_led_brightness_set; 219*386570d7SVadim Pasternak led_cdev->brightness_get = mlxreg_led_brightness_get; 220*386570d7SVadim Pasternak led_cdev->blink_set = mlxreg_led_blink_set; 221*386570d7SVadim Pasternak led_cdev->flags = LED_CORE_SUSPENDRESUME; 222*386570d7SVadim Pasternak led_data->data = data; 223*386570d7SVadim Pasternak err = devm_led_classdev_register(&priv->pdev->dev, led_cdev); 224*386570d7SVadim Pasternak if (err) 225*386570d7SVadim Pasternak return err; 226*386570d7SVadim Pasternak 227*386570d7SVadim Pasternak if (led_cdev->brightness) 228*386570d7SVadim Pasternak mlxreg_led_brightness_set(led_cdev, 229*386570d7SVadim Pasternak led_cdev->brightness); 230*386570d7SVadim Pasternak dev_info(led_cdev->dev, "label: %s, mask: 0x%02x, offset:0x%02x\n", 231*386570d7SVadim Pasternak data->label, data->mask, data->reg); 232*386570d7SVadim Pasternak } 233*386570d7SVadim Pasternak 234*386570d7SVadim Pasternak return 0; 235*386570d7SVadim Pasternak } 236*386570d7SVadim Pasternak 237*386570d7SVadim Pasternak static int mlxreg_led_probe(struct platform_device *pdev) 238*386570d7SVadim Pasternak { 239*386570d7SVadim Pasternak struct mlxreg_core_platform_data *led_pdata; 240*386570d7SVadim Pasternak struct mlxreg_led_priv_data *priv; 241*386570d7SVadim Pasternak 242*386570d7SVadim Pasternak led_pdata = dev_get_platdata(&pdev->dev); 243*386570d7SVadim Pasternak if (!led_pdata) { 244*386570d7SVadim Pasternak dev_err(&pdev->dev, "Failed to get platform data.\n"); 245*386570d7SVadim Pasternak return -EINVAL; 246*386570d7SVadim Pasternak } 247*386570d7SVadim Pasternak 248*386570d7SVadim Pasternak priv = devm_kzalloc(&pdev->dev, sizeof(*priv), GFP_KERNEL); 249*386570d7SVadim Pasternak if (!priv) 250*386570d7SVadim Pasternak return -ENOMEM; 251*386570d7SVadim Pasternak 252*386570d7SVadim Pasternak mutex_init(&priv->access_lock); 253*386570d7SVadim Pasternak priv->pdev = pdev; 254*386570d7SVadim Pasternak priv->pdata = led_pdata; 255*386570d7SVadim Pasternak 256*386570d7SVadim Pasternak return mlxreg_led_config(priv); 257*386570d7SVadim Pasternak } 258*386570d7SVadim Pasternak 259*386570d7SVadim Pasternak static int mlxreg_led_remove(struct platform_device *pdev) 260*386570d7SVadim Pasternak { 261*386570d7SVadim Pasternak struct mlxreg_led_priv_data *priv = dev_get_drvdata(&pdev->dev); 262*386570d7SVadim Pasternak 263*386570d7SVadim Pasternak mutex_destroy(&priv->access_lock); 264*386570d7SVadim Pasternak 265*386570d7SVadim Pasternak return 0; 266*386570d7SVadim Pasternak } 267*386570d7SVadim Pasternak 268*386570d7SVadim Pasternak static struct platform_driver mlxreg_led_driver = { 269*386570d7SVadim Pasternak .driver = { 270*386570d7SVadim Pasternak .name = "leds-mlxreg", 271*386570d7SVadim Pasternak }, 272*386570d7SVadim Pasternak .probe = mlxreg_led_probe, 273*386570d7SVadim Pasternak .remove = mlxreg_led_remove, 274*386570d7SVadim Pasternak }; 275*386570d7SVadim Pasternak 276*386570d7SVadim Pasternak module_platform_driver(mlxreg_led_driver); 277*386570d7SVadim Pasternak 278*386570d7SVadim Pasternak MODULE_AUTHOR("Vadim Pasternak <vadimp@mellanox.com>"); 279*386570d7SVadim Pasternak MODULE_DESCRIPTION("Mellanox LED regmap driver"); 280*386570d7SVadim Pasternak MODULE_LICENSE("Dual BSD/GPL"); 281*386570d7SVadim Pasternak MODULE_ALIAS("platform:leds-mlxreg"); 282