2 * arch/arm/mach-netx/xc.c
4 * Copyright (c) 2005 Sascha Hauer <s.hauer@pengutronix.de>, Pengutronix
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2
8 * as published by the Free Software Foundation.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 #include <linux/init.h>
21 #include <linux/device.h>
22 #include <linux/firmware.h>
23 #include <linux/mutex.h>
26 #include <mach/hardware.h>
27 #include <mach/irqs.h>
28 #include <mach/netx-regs.h>
32 static DEFINE_MUTEX(xc_lock
);
34 static int xc_in_use
= 0;
39 unsigned int patch_ofs
;
40 unsigned int patch_entries
;
47 unsigned int reserved
[5];
48 struct fw_desc fw_desc
[3];
49 } __attribute__ ((packed
));
51 int xc_stop(struct xc
*x
)
53 writel(RPU_HOLD_PC
, x
->xmac_base
+ NETX_XMAC_RPU_HOLD_PC_OFS
);
54 writel(TPU_HOLD_PC
, x
->xmac_base
+ NETX_XMAC_TPU_HOLD_PC_OFS
);
55 writel(XPU_HOLD_PC
, x
->xpec_base
+ NETX_XPEC_XPU_HOLD_PC_OFS
);
59 int xc_start(struct xc
*x
)
61 writel(0, x
->xmac_base
+ NETX_XMAC_RPU_HOLD_PC_OFS
);
62 writel(0, x
->xmac_base
+ NETX_XMAC_TPU_HOLD_PC_OFS
);
63 writel(0, x
->xpec_base
+ NETX_XPEC_XPU_HOLD_PC_OFS
);
67 int xc_running(struct xc
*x
)
69 return (readl(x
->xmac_base
+ NETX_XMAC_RPU_HOLD_PC_OFS
) & RPU_HOLD_PC
)
70 || (readl(x
->xmac_base
+ NETX_XMAC_TPU_HOLD_PC_OFS
) & TPU_HOLD_PC
)
71 || (readl(x
->xpec_base
+ NETX_XPEC_XPU_HOLD_PC_OFS
) & XPU_HOLD_PC
) ?
75 int xc_reset(struct xc
*x
)
77 writel(0, x
->xpec_base
+ NETX_XPEC_PC_OFS
);
81 static int xc_check_ptr(struct xc
*x
, unsigned long adr
, unsigned int size
)
83 if (adr
>= NETX_PA_XMAC(x
->no
) &&
84 adr
+ size
< NETX_PA_XMAC(x
->no
) + XMAC_MEM_SIZE
)
87 if (adr
>= NETX_PA_XPEC(x
->no
) &&
88 adr
+ size
< NETX_PA_XPEC(x
->no
) + XPEC_MEM_SIZE
)
91 dev_err(x
->dev
, "Illegal pointer in firmware found. aborting\n");
96 static int xc_patch(struct xc
*x
, const void *patch
, int count
)
98 unsigned int val
, adr
;
99 const unsigned int *data
= patch
;
102 for (i
= 0; i
< count
; i
++) {
105 if (xc_check_ptr(x
, adr
, 4) < 0)
108 writel(val
, (void __iomem
*)io_p2v(adr
));
113 int xc_request_firmware(struct xc
*x
)
117 const struct firmware
*fw
;
118 struct fw_header
*head
;
124 sprintf(name
, "xc%d.bin", x
->no
);
126 ret
= request_firmware(&fw
, name
, x
->dev
);
129 dev_err(x
->dev
, "request_firmware failed\n");
133 head
= (struct fw_header
*)fw
->data
;
134 if (head
->magic
!= 0x4e657458) {
135 if (head
->magic
== 0x5874654e) {
137 "firmware magic is 'XteN'. Endianess problems?\n");
139 goto exit_release_firmware
;
141 dev_err(x
->dev
, "unrecognized firmware magic 0x%08x\n",
144 goto exit_release_firmware
;
147 x
->type
= head
->type
;
148 x
->version
= head
->version
;
152 for (i
= 0; i
< 3; i
++) {
153 src
= fw
->data
+ head
->fw_desc
[i
].ofs
;
154 dst
= *(unsigned int *)src
;
155 src
+= sizeof (unsigned int);
156 size
= head
->fw_desc
[i
].size
- sizeof (unsigned int);
158 if (xc_check_ptr(x
, dst
, size
))
159 goto exit_release_firmware
;
161 memcpy((void *)io_p2v(dst
), src
, size
);
163 src
= fw
->data
+ head
->fw_desc
[i
].patch_ofs
;
164 size
= head
->fw_desc
[i
].patch_entries
;
165 ret
= xc_patch(x
, src
, size
);
167 goto exit_release_firmware
;
172 exit_release_firmware
:
173 release_firmware(fw
);
178 struct xc
*request_xc(int xcno
, struct device
*dev
)
182 mutex_lock(&xc_lock
);
186 if (xc_in_use
& (1 << xcno
))
189 x
= kmalloc(sizeof (struct xc
), GFP_KERNEL
);
193 if (!request_mem_region
194 (NETX_PA_XPEC(xcno
), XPEC_MEM_SIZE
, kobject_name(&dev
->kobj
)))
197 if (!request_mem_region
198 (NETX_PA_XMAC(xcno
), XMAC_MEM_SIZE
, kobject_name(&dev
->kobj
)))
201 if (!request_mem_region
202 (SRAM_INTERNAL_PHYS(xcno
), SRAM_MEM_SIZE
, kobject_name(&dev
->kobj
)))
205 x
->xpec_base
= (void * __iomem
)io_p2v(NETX_PA_XPEC(xcno
));
206 x
->xmac_base
= (void * __iomem
)io_p2v(NETX_PA_XMAC(xcno
));
207 x
->sram_base
= ioremap(SRAM_INTERNAL_PHYS(xcno
), SRAM_MEM_SIZE
);
211 x
->irq
= NETX_IRQ_XPEC(xcno
);
216 xc_in_use
|= (1 << xcno
);
221 release_mem_region(SRAM_INTERNAL_PHYS(xcno
), SRAM_MEM_SIZE
);
223 release_mem_region(NETX_PA_XMAC(xcno
), XMAC_MEM_SIZE
);
225 release_mem_region(NETX_PA_XPEC(xcno
), XPEC_MEM_SIZE
);
230 mutex_unlock(&xc_lock
);
234 void free_xc(struct xc
*x
)
238 mutex_lock(&xc_lock
);
240 iounmap(x
->sram_base
);
241 release_mem_region(SRAM_INTERNAL_PHYS(xcno
), SRAM_MEM_SIZE
);
242 release_mem_region(NETX_PA_XMAC(xcno
), XMAC_MEM_SIZE
);
243 release_mem_region(NETX_PA_XPEC(xcno
), XPEC_MEM_SIZE
);
244 xc_in_use
&= ~(1 << x
->no
);
247 mutex_unlock(&xc_lock
);
250 EXPORT_SYMBOL(free_xc
);
251 EXPORT_SYMBOL(request_xc
);
252 EXPORT_SYMBOL(xc_request_firmware
);
253 EXPORT_SYMBOL(xc_reset
);
254 EXPORT_SYMBOL(xc_running
);
255 EXPORT_SYMBOL(xc_start
);
256 EXPORT_SYMBOL(xc_stop
);