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/*
 * drm_sysfs.c - Modifications to drm_sysfs_class.c to support
 *               extra sysfs attribute from DRM. Normal drm_sysfs_class
 *               does not allow adding attributes.
 *
 * Copyright (c) 2004 Jon Smirl <jonsmirl@gmail.com>
 * Copyright (c) 2003-2004 Greg Kroah-Hartman <greg@kroah.com>
 * Copyright (c) 2003-2004 IBM Corp.
 *
 * This file is released under the GPLv2
 *
 */

#include <linux/device.h>
#include <linux/kdev_t.h>
#include <linux/err.h>

#include "drmP.h"
#include "drm_core.h"

struct drm_sysfs_class {
	struct class_device_attribute attr;
	struct class class;
};
#define to_drm_sysfs_class(d) container_of(d, struct drm_sysfs_class, class)

struct simple_dev {
	dev_t dev;
	struct class_device class_dev;
};
#define to_simple_dev(d) container_of(d, struct simple_dev, class_dev)

static void release_simple_dev(struct class_device *class_dev)
{
	struct simple_dev *s_dev = to_simple_dev(class_dev);
	kfree(s_dev);
}

static ssize_t show_dev(struct class_device *class_dev, char *buf)
{
	struct simple_dev *s_dev = to_simple_dev(class_dev);
	return print_dev_t(buf, s_dev->dev);
}

static void drm_sysfs_class_release(struct class *class)
{
	struct drm_sysfs_class *cs = to_drm_sysfs_class(class);
	kfree(cs);
}

/* Display the version of drm_core. This doesn't work right in current design */
static ssize_t version_show(struct class *dev, char *buf)
{
	return sprintf(buf, "%s %d.%d.%d %s\n", CORE_NAME, CORE_MAJOR,
		       CORE_MINOR, CORE_PATCHLEVEL, CORE_DATE);
}

static CLASS_ATTR(version, S_IRUGO, version_show, NULL);

/**
 * drm_sysfs_create - create a struct drm_sysfs_class structure
 * @owner: pointer to the module that is to "own" this struct drm_sysfs_class
 * @name: pointer to a string for the name of this class.
 *
 * This is used to create a struct drm_sysfs_class pointer that can then be used
 * in calls to drm_sysfs_device_add().
 *
 * Note, the pointer created here is to be destroyed when finished by making a
 * call to drm_sysfs_destroy().
 */
struct drm_sysfs_class *drm_sysfs_create(struct module *owner, char *name)
{
	struct drm_sysfs_class *cs;
	int retval;

	cs = kmalloc(sizeof(*cs), GFP_KERNEL);
	if (!cs) {
		retval = -ENOMEM;
		goto error;
	}
	memset(cs, 0x00, sizeof(*cs));

	cs->class.name = name;
	cs->class.class_release = drm_sysfs_class_release;
	cs->class.release = release_simple_dev;

	cs->attr.attr.name = "dev";
	cs->attr.attr.mode = S_IRUGO;
	cs->attr.attr.owner = owner;
	cs->attr.show = show_dev;
	cs->attr.store = NULL;

	retval = class_register(&cs->class);
	if (retval)
		goto error;
	class_create_file(&cs->class, &class_attr_version);

	return cs;

      error:
	kfree(cs);
	return ERR_PTR(retval);
}

/**
 * drm_sysfs_destroy - destroys a struct drm_sysfs_class structure
 * @cs: pointer to the struct drm_sysfs_class that is to be destroyed
 *
 * Note, the pointer to be destroyed must have been created with a call to
 * drm_sysfs_create().
 */
void drm_sysfs_destroy(struct drm_sysfs_class *cs)
{
	if ((cs == NULL) || (IS_ERR(cs)))
		return;

	class_unregister(&cs->class);
}

static ssize_t show_dri(struct class_device *class_device, char *buf)
{
	drm_device_t * dev = ((drm_head_t *)class_get_devdata(class_device))->dev;
	if (dev->driver->dri_library_name)
		return dev->driver->dri_library_name(dev, buf);
	return snprintf(buf, PAGE_SIZE, "%s\n", dev->driver->pci_driver.name);
}

static struct class_device_attribute class_device_attrs[] = {
	__ATTR(dri_library_name, S_IRUGO, show_dri, NULL),
};

/**
 * drm_sysfs_device_add - adds a class device to sysfs for a character driver
 * @cs: pointer to the struct drm_sysfs_class that this device should be registered to.
 * @dev: the dev_t for the device to be added.
 * @device: a pointer to a struct device that is assiociated with this class device.
 * @fmt: string for the class device's name
 *
 * A struct class_device will be created in sysfs, registered to the specified
 * class.  A "dev" file will be created, showing the dev_t for the device.  The
 * pointer to the struct class_device will be returned from the call.  Any further
 * sysfs files that might be required can be created using this pointer.
 * Note: the struct drm_sysfs_class passed to this function must have previously been
 * created with a call to drm_sysfs_create().
 */
struct class_device *drm_sysfs_device_add(struct drm_sysfs_class *cs,
					  drm_head_t * head)
{
	struct simple_dev *s_dev = NULL;
	int i, retval;

	if ((cs == NULL) || (IS_ERR(cs))) {
		retval = -ENODEV;
		goto error;
	}

	s_dev = kmalloc(sizeof(*s_dev), GFP_KERNEL);
	if (!s_dev) {
		retval = -ENOMEM;
		goto error;
	}
	memset(s_dev, 0x00, sizeof(*s_dev));

	s_dev->dev = MKDEV(DRM_MAJOR, head->minor);
	s_dev->class_dev.dev = &head->dev->pdev->dev;
	s_dev->class_dev.class = &cs->class;

	snprintf(s_dev->class_dev.class_id, BUS_ID_SIZE, "card%d", head->minor);
	retval = class_device_register(&s_dev->class_dev);
	if (retval)
		goto error;

	class_device_create_file(&s_dev->class_dev, &cs->attr);
	class_set_devdata(&s_dev->class_dev, head);

	for (i = 0; i < ARRAY_SIZE(class_device_attrs); i++)
		class_device_create_file(&s_dev->class_dev, &class_device_attrs[i]);

	return &s_dev->class_dev;

error:
	kfree(s_dev);
	return ERR_PTR(retval);
}

/**
 * drm_sysfs_device_remove - removes a class device that was created with drm_sysfs_device_add()
 * @dev: the dev_t of the device that was previously registered.
 *
 * This call unregisters and cleans up a class device that was created with a
 * call to drm_sysfs_device_add()
 */
void drm_sysfs_device_remove(struct class_device *class_dev)
{
	struct simple_dev *s_dev = to_simple_dev(class_dev);
	int i;

	for (i = 0; i < ARRAY_SIZE(class_device_attrs); i++)
		class_device_remove_file(&s_dev->class_dev, &class_device_attrs[i]);

	class_device_unregister(&s_dev->class_dev);
}
>hsync_end = mode->hsync_start + ((pt->hsync_pulse_width_hi << 8) | pt->hsync_pulse_width_lo); mode->htotal = mode->hdisplay + ((pt->hblank_hi << 8) | pt->hblank_lo); mode->vdisplay = (pt->vactive_hi << 8) | pt->vactive_lo; mode->vsync_start = mode->vdisplay + ((pt->vsync_offset_hi << 8) | pt->vsync_offset_lo); mode->vsync_end = mode->vsync_start + ((pt->vsync_pulse_width_hi << 8) | pt->vsync_pulse_width_lo); mode->vtotal = mode->vdisplay + ((pt->vblank_hi << 8) | pt->vblank_lo); drm_mode_set_name(mode); if (pt->interlaced) mode->flags |= V_INTERLACE; mode->flags |= pt->hsync_positive ? V_PHSYNC : V_NHSYNC; mode->flags |= pt->vsync_positive ? V_PVSYNC : V_NVSYNC; return mode; } /* * Detailed mode info for the EDID "established modes" data to use. */ static struct drm_display_mode edid_est_modes[] = { { DRM_MODE("800x600", DRM_MODE_TYPE_DRIVER, 40000, 800, 840, 968, 1056, 0, 600, 601, 605, 628, 0, V_PHSYNC | V_PVSYNC) }, /* 800x600@60Hz */ { DRM_MODE("800x600", DRM_MODE_TYPE_DRIVER, 36000, 800, 824, 896, 1024, 0, 600, 601, 603, 625, 0, V_PHSYNC | V_PVSYNC) }, /* 800x600@56Hz */ { DRM_MODE("640x480", DRM_MODE_TYPE_DRIVER, 31500, 640, 656, 720, 840, 0, 480, 481, 484, 500, 0, V_NHSYNC | V_NVSYNC) }, /* 640x480@75Hz */ { DRM_MODE("640x480", DRM_MODE_TYPE_DRIVER, 31500, 640, 664, 704, 832, 0, 480, 489, 491, 520, 0, V_NHSYNC | V_NVSYNC) }, /* 640x480@72Hz */ { DRM_MODE("640x480", DRM_MODE_TYPE_DRIVER, 30240, 640, 704, 768, 864, 0, 480, 483, 486, 525, 0, V_NHSYNC | V_NVSYNC) }, /* 640x480@67Hz */ { DRM_MODE("640x480", DRM_MODE_TYPE_DRIVER, 25200, 640, 656, 752, 800, 0, 480, 490, 492, 525, 0, V_NHSYNC | V_NVSYNC) }, /* 640x480@60Hz */ { DRM_MODE("720x400", DRM_MODE_TYPE_DRIVER, 35500, 720, 738, 846, 900, 0, 400, 421, 423, 449, 0, V_NHSYNC | V_NVSYNC) }, /* 720x400@88Hz */ { DRM_MODE("720x400", DRM_MODE_TYPE_DRIVER, 28320, 720, 738, 846, 900, 0, 400, 412, 414, 449, 0, V_NHSYNC | V_PVSYNC) }, /* 720x400@70Hz */ { DRM_MODE("1280x1024", DRM_MODE_TYPE_DRIVER, 135000, 1280, 1296, 1440, 1688, 0, 1024, 1025, 1028, 1066, 0, V_PHSYNC | V_PVSYNC) }, /* 1280x1024@75Hz */ { DRM_MODE("1024x768", DRM_MODE_TYPE_DRIVER, 78800, 1024, 1040, 1136, 1312, 0, 768, 769, 772, 800, 0, V_PHSYNC | V_PVSYNC) }, /* 1024x768@75Hz */ { DRM_MODE("1024x768", DRM_MODE_TYPE_DRIVER, 75000, 1024, 1048, 1184, 1328, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC) }, /* 1024x768@70Hz */ { DRM_MODE("1024x768", DRM_MODE_TYPE_DRIVER, 65000, 1024, 1048, 1184, 1344, 0, 768, 771, 777, 806, 0, V_NHSYNC | V_NVSYNC) }, /* 1024x768@60Hz */ { DRM_MODE("1024x768", DRM_MODE_TYPE_DRIVER,44900, 1024, 1032, 1208, 1264, 0, 768, 768, 776, 817, 0, V_PHSYNC | V_PVSYNC | V_INTERLACE) }, /* 1024x768@43Hz */ { DRM_MODE("832x624", DRM_MODE_TYPE_DRIVER, 57284, 832, 864, 928, 1152, 0, 624, 625, 628, 667, 0, V_NHSYNC | V_NVSYNC) }, /* 832x624@75Hz */ { DRM_MODE("800x600", DRM_MODE_TYPE_DRIVER, 49500, 800, 816, 896, 1056, 0, 600, 601, 604, 625, 0, V_PHSYNC | V_PVSYNC) }, /* 800x600@75Hz */ { DRM_MODE("800x600", DRM_MODE_TYPE_DRIVER, 50000, 800, 856, 976, 1040, 0, 600, 637, 643, 666, 0, V_PHSYNC | V_PVSYNC) }, /* 800x600@72Hz */ { DRM_MODE("1152x864", DRM_MODE_TYPE_DRIVER, 108000, 1152, 1216, 1344, 1600, 0, 864, 865, 868, 900, 0, V_PHSYNC | V_PVSYNC) }, /* 1152x864@75Hz */ }; #define EDID_EST_TIMINGS 16 #define EDID_STD_TIMINGS 8 #define EDID_DETAILED_TIMINGS 4 /** * add_established_modes - get est. modes from EDID and add them * @edid: EDID block to scan * * Each EDID block contains a bitmap of the supported "established modes" list * (defined above). Tease them out and add them to the global modes list. */ static int add_established_modes(struct drm_output *output, struct edid *edid) { struct drm_device *dev = output->dev; unsigned long est_bits = edid->established_timings.t1 | (edid->established_timings.t2 << 8) | ((edid->established_timings.mfg_rsvd & 0x80) << 9); int i, modes = 0; for (i = 0; i <= EDID_EST_TIMINGS; i++) if (est_bits & (1<<i)) { struct drm_display_mode *newmode; newmode = drm_mode_duplicate(dev, &edid_est_modes[i]); drm_mode_probed_add(output, newmode); modes++; } return modes; } /** * add_standard_modes - get std. modes from EDID and add them * @edid: EDID block to scan * * Standard modes can be calculated using the CVT standard. Grab them from * @edid, calculate them, and add them to the list. */ static int add_standard_modes(struct drm_output *output, struct edid *edid) { struct drm_device *dev = output->dev; int i, modes = 0; for (i = 0; i < EDID_STD_TIMINGS; i++) { struct std_timing *t = &edid->standard_timings[i]; struct drm_display_mode *newmode; /* If std timings bytes are 1, 1 it's empty */ if (t->hsize == 1 && (t->aspect_ratio | t->vfreq) == 1) continue; newmode = drm_mode_std(dev, &edid->standard_timings[i]); drm_mode_probed_add(output, newmode); modes++; } return modes; } /** * add_detailed_modes - get detailed mode info from EDID data * @edid: EDID block to scan * * Some of the detailed timing sections may contain mode information. Grab * it and add it to the list. */ static int add_detailed_info(struct drm_output *output, struct edid *edid) { struct drm_device *dev = output->dev; int i, j, modes = 0; for (i = 0; i < EDID_DETAILED_TIMINGS; i++) { struct detailed_timing *timing = &edid->detailed_timings[i]; struct detailed_non_pixel *data = &timing->data.other_data; struct drm_display_mode *newmode; /* EDID up to and including 1.2 may put monitor info here */ if (edid->version == 1 && edid->revision < 3) continue; /* Detailed mode timing */ if (timing->pixel_clock) { newmode = drm_mode_detailed(dev, timing); /* First detailed mode is preferred */ if (i == 0 && edid->preferred_timing) newmode->type |= DRM_MODE_TYPE_PREFERRED; drm_mode_probed_add(output, newmode); modes++; continue; } /* Other timing or info */ switch (data->type) { case EDID_DETAIL_MONITOR_SERIAL: break; case EDID_DETAIL_MONITOR_STRING: break; case EDID_DETAIL_MONITOR_RANGE: /* Get monitor range data */ break; case EDID_DETAIL_MONITOR_NAME: break; case EDID_DETAIL_MONITOR_CPDATA: break; case EDID_DETAIL_STD_MODES: /* Five modes per detailed section */ for (j = 0; j < 5; i++) { struct std_timing *std; struct drm_display_mode *newmode; std = &data->data.timings[j]; newmode = drm_mode_std(dev, std); drm_mode_probed_add(output, newmode); modes++; } break; default: break; } } return modes; } #define DDC_ADDR 0x50 static unsigned char *drm_do_probe_ddc_edid(struct i2c_adapter *adapter) { unsigned char start = 0x0; unsigned char *buf = kmalloc(EDID_LENGTH, GFP_KERNEL); struct i2c_msg msgs[] = { { .addr = DDC_ADDR, .flags = 0, .len = 1, .buf = &start, }, { .addr = DDC_ADDR, .flags = I2C_M_RD, .len = EDID_LENGTH, .buf = buf, } }; if (!buf) { dev_warn(&adapter->dev, "unable to allocate memory for EDID " "block.\n"); return NULL; } if (i2c_transfer(adapter, msgs, 2) == 2) return buf; dev_info(&adapter->dev, "unable to read EDID block.\n"); kfree(buf); return NULL; } static unsigned char *drm_ddc_read(struct i2c_adapter *adapter) { struct i2c_algo_bit_data *algo_data = adapter->algo_data; unsigned char *edid = NULL; int i, j; /* * Startup the bus: * Set clock line high (but give it time to come up) * Then set clock & data low */ algo_data->setscl(algo_data->data, 1); udelay(550); /* startup delay */ algo_data->setscl(algo_data->data, 0); algo_data->setsda(algo_data->data, 0); for (i = 0; i < 3; i++) { /* For some old monitors we need the * following process to initialize/stop DDC */ algo_data->setsda(algo_data->data, 0); msleep(13); algo_data->setscl(algo_data->data, 1); for (j = 0; j < 5; j++) { msleep(10); if (algo_data->getscl(algo_data->data)) break; } if (j == 5) continue; algo_data->setsda(algo_data->data, 0); msleep(15); algo_data->setscl(algo_data->data, 0); msleep(15); algo_data->setsda(algo_data->data, 1); msleep(15); /* Do the real work */ edid = drm_do_probe_ddc_edid(adapter); algo_data->setsda(algo_data->data, 0); algo_data->setscl(algo_data->data, 0); msleep(15); algo_data->setscl(algo_data->data, 1); for (j = 0; j < 10; j++) { msleep(10); if (algo_data->getscl(algo_data->data)) break; } algo_data->setsda(algo_data->data, 1); msleep(15); algo_data->setscl(algo_data->data, 0); if (edid) break; } /* Release the DDC lines when done or the Apple Cinema HD display * will switch off */ algo_data->setsda(algo_data->data, 0); algo_data->setscl(algo_data->data, 0); algo_data->setscl(algo_data->data, 1); return edid; } /** * drm_add_edid_modes - add modes from EDID data, if available * @output: output we're probing * @adapter: i2c adapter to use for DDC * * Poke the given output's i2c channel to grab EDID data if possible. If we * get any, add the specified modes to the output's mode list. * * Return number of modes added or 0 if we couldn't find any. */ int drm_add_edid_modes(struct drm_output *output, struct i2c_adapter *adapter) { struct edid *edid; int num_modes = 0; edid = (struct edid *)drm_ddc_read(adapter); if (!edid) { dev_warn(&output->dev->pdev->dev, "%s: no EDID data\n", output->name); goto out_err; } if (!edid_valid(edid)) { dev_warn(&output->dev->pdev->dev, "%s: EDID invalid.\n", output->name); goto out_err; } num_modes += add_established_modes(output, edid); num_modes += add_standard_modes(output, edid); num_modes += add_detailed_info(output, edid); return num_modes; out_err: kfree(edid); return 0; } EXPORT_SYMBOL(drm_add_edid_modes);