struct timer_list timeout;
 };
 
+#ifdef CONFIG_FW_LOADER
+extern struct builtin_fw __start_builtin_fw[];
+extern struct builtin_fw __end_builtin_fw[];
+#else /* Module case. Avoid ifdefs later; it'll all optimise out */
+static struct builtin_fw *__start_builtin_fw;
+static struct builtin_fw *__end_builtin_fw;
+#endif
+
 static void
 fw_load_abort(struct firmware_priv *fw_priv)
 {
        struct device *f_dev;
        struct firmware_priv *fw_priv;
        struct firmware *firmware;
+       struct builtin_fw *builtin;
        int retval;
 
        if (!firmware_p)
                return -EINVAL;
 
-       printk(KERN_INFO "firmware: requesting %s\n", name);
-
        *firmware_p = firmware = kzalloc(sizeof(*firmware), GFP_KERNEL);
        if (!firmware) {
                printk(KERN_ERR "%s: kmalloc(struct firmware) failed\n",
                goto out;
        }
 
+       for (builtin = __start_builtin_fw; builtin != __end_builtin_fw;
+            builtin++) {
+               if (strcmp(name, builtin->name))
+                       continue;
+               printk(KERN_INFO "firmware: using built-in firmware %s\n",
+                      name);
+               firmware->size = builtin->size;
+               firmware->data = builtin->data;
+               return 0;
+       }
+
+       if (uevent)
+               printk(KERN_INFO "firmware: requesting %s\n", name);
+
        retval = fw_setup_device(firmware, &f_dev, name, device, uevent);
        if (retval)
                goto error_kfree_fw;
 void
 release_firmware(const struct firmware *fw)
 {
+       struct builtin_fw *builtin;
+
        if (fw) {
+               for (builtin = __start_builtin_fw; builtin != __end_builtin_fw;
+                    builtin++) {
+                       if (fw->data == builtin->data)
+                               goto free_fw;
+               }
                vfree(fw->data);
+       free_fw:
                kfree(fw);
        }
 }
 
                VMLINUX_SYMBOL(__end_pci_fixups_resume) = .;            \
        }                                                               \
                                                                        \
+       /* Built-in firmware blobs */                                   \
+       .builtin_fw        : AT(ADDR(.builtin_fw) - LOAD_OFFSET) {      \
+               VMLINUX_SYMBOL(__start_builtin_fw) = .;                 \
+               *(.builtin_fw)                                          \
+               VMLINUX_SYMBOL(__end_builtin_fw) = .;                   \
+       }                                                               \
+                                                                       \
        /* RapidIO route ops */                                         \
        .rio_route        : AT(ADDR(.rio_route) - LOAD_OFFSET) {        \
                VMLINUX_SYMBOL(__start_rio_route_ops) = .;              \
 
 #ifndef _LINUX_FIRMWARE_H
 #define _LINUX_FIRMWARE_H
+
 #include <linux/module.h>
 #include <linux/types.h>
+#include <linux/compiler.h>
+
 #define FIRMWARE_NAME_MAX 30 
 #define FW_ACTION_NOHOTPLUG 0
 #define FW_ACTION_HOTPLUG 1
 
 struct device;
 
+struct builtin_fw {
+       char *name;
+       void *data;
+       unsigned long size;
+};
+
+/* We have to play tricks here much like stringify() to get the
+   __COUNTER__ macro to be expanded as we want it */
+#define __fw_concat1(x, y) x##y
+#define __fw_concat(x, y) __fw_concat1(x, y)
+
+#define DECLARE_BUILTIN_FIRMWARE(name, blob)                                \
+       DECLARE_BUILTIN_FIRMWARE_SIZE(name, &(blob), sizeof(blob))
+
+#define DECLARE_BUILTIN_FIRMWARE_SIZE(name, blob, size)                             \
+       static const struct builtin_fw __fw_concat(__builtin_fw,__COUNTER__) \
+       __used __section(.builtin_fw) = { name, blob, size }
+
 #if defined(CONFIG_FW_LOADER) || (defined(CONFIG_FW_LOADER_MODULE) && defined(MODULE))
 int request_firmware(const struct firmware **fw, const char *name,
                     struct device *device);