/* Copyright (c) 2012, The Linux Foundation. All rights reserved. * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License version 2 and * only version 2 as published by the Free Software Foundation. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * */ #include #include #include #include #include #include #include #include #include #include #include #include #include "devices.h" #include "board-9615.h" /* prim = 240 x 320 x 4(bpp) x 2(pages) */ #define MSM_FB_PRIM_BUF_SIZE roundup(240 * 320 * 4 * 2, 0x10000) #define MSM_FB_SIZE roundup(MSM_FB_PRIM_BUF_SIZE, 4096) #define GPIO_PIN_EBI2_LCD_A_D 21 #define GPIO_PIN_EBI2_LCD_CS 22 #define GPIO_PIN_EBI2_LCD_RS 24 #ifdef CONFIG_FB_MSM static struct resource msm_fb_resources[] = { { .flags = IORESOURCE_MEM, } }; static int msm_fb_detect_panel(const char *name) { return 0; } static struct msm_fb_platform_data msm_fb_pdata = { .detect_client = msm_fb_detect_panel, }; static struct platform_device msm_fb_device = { .name = "msm_fb", .id = 0, .num_resources = ARRAY_SIZE(msm_fb_resources), .resource = msm_fb_resources, .dev.platform_data = &msm_fb_pdata, }; void __init mdm9615_allocate_fb_region(void) { void *addr; unsigned long size; size = MSM_FB_SIZE; addr = alloc_bootmem_align(size, 0x1000); msm_fb_resources[0].start = __pa(addr); msm_fb_resources[0].end = msm_fb_resources[0].start + size - 1; pr_info("allocating %lu bytes at %p (%lx physical) for fb\n", size, addr, __pa(addr)); } static bool ebi2_power_init; static int ebi2_panel_power(int on) { static struct regulator *panel_power; int rc; pr_debug("%s: on=%d\n", __func__, on); if (!ebi2_power_init) { panel_power = regulator_get(&msm_ebi2_lcdc_device.dev, "VDDI2"); if (IS_ERR_OR_NULL(panel_power)) { pr_err("could not get L14, rc = %ld\n", PTR_ERR(panel_power)); return -ENODEV; } rc = regulator_set_voltage(panel_power, 2800000, 3800000); if (rc) { pr_err("set_voltage L14 failed, rc=%d\n", rc); return -EINVAL; } ebi2_power_init = true; } if (on) { rc = regulator_enable(panel_power); if (rc) { pr_err("enable L14 failed, rc=%d\n", rc); return -ENODEV; } rc = gpio_request(GPIO_PIN_EBI2_LCD_A_D, "disp_a_d"); if (rc) { pr_err("request gpio EBI2_LCD_A_D failed, rc=%d\n", rc); goto error1; } rc = gpio_request(GPIO_PIN_EBI2_LCD_CS, "disp_cs"); if (rc) { pr_err("request gpio EBI2_LCD_CS failed, rc=%d\n", rc); goto error2; } rc = gpio_request(GPIO_PIN_EBI2_LCD_RS, "disp_rs"); if (rc) { pr_err("request gpio EBI2_LCD_RS failed, rc=%d\n", rc); goto error3; } } else { gpio_free(GPIO_PIN_EBI2_LCD_RS); gpio_free(GPIO_PIN_EBI2_LCD_CS); gpio_free(GPIO_PIN_EBI2_LCD_A_D); rc = regulator_disable(panel_power); if (rc) { pr_err("disable L14 failed, rc=%d\n", rc); return -ENODEV; } } return 0; error3: gpio_free(GPIO_PIN_EBI2_LCD_CS); error2: gpio_free(GPIO_PIN_EBI2_LCD_A_D); error1: regulator_disable(panel_power); return rc; } static struct lcdc_platform_data ebi2_lcdc_pdata = { .lcdc_power_save = ebi2_panel_power, }; static struct lvds_panel_platform_data ebi2_epson_s1d_pdata; static struct platform_device ebi2_epson_s1d_panel_device = { .name = "ebi2_epson_s1d_qvga", .id = 0, .dev = { .platform_data = &ebi2_epson_s1d_pdata, } }; void __init mdm9615_init_fb(void) { platform_device_register(&msm_fb_device); platform_device_register(&ebi2_epson_s1d_panel_device); msm_fb_register_device("ebi2_lcd", &ebi2_lcdc_pdata); } #endif