blob: 160a8b49bdea84b8ceee33bf440c3c633d7fc288 [file] [log] [blame]
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +03001/*
2 * General Purpose functions for the global management of the
3 * Communication Processor Module.
4 * Copyright (c) 1997 Dan error_act (dmalek@jlc.net)
5 *
6 * In addition to the individual control of the communication
7 * channels, there are a few functions that globally affect the
8 * communication processor.
9 *
10 * Buffer descriptors must be allocated from the dual ported memory
11 * space. The allocator for that is here. When the communication
12 * process is reset, we reclaim the memory available. There is
13 * currently no deallocator for this memory.
14 * The amount of space available is platform dependent. On the
15 * MBX, the EPPC software loads additional microcode into the
16 * communication processor, and uses some of the DP ram for this
17 * purpose. Current, the first 512 bytes and the last 256 bytes of
18 * memory are used. Right now I am conservative and only use the
19 * memory that can never be used for microcode. If there are
20 * applications that require more DP ram, we can expand the boundaries
21 * but then we have to be careful of any downloaded microcode.
22 */
23#include <linux/errno.h>
24#include <linux/sched.h>
25#include <linux/kernel.h>
26#include <linux/dma-mapping.h>
27#include <linux/param.h>
28#include <linux/string.h>
29#include <linux/mm.h>
30#include <linux/interrupt.h>
31#include <linux/irq.h>
32#include <linux/module.h>
33#include <asm/mpc8xx.h>
34#include <asm/page.h>
35#include <asm/pgtable.h>
36#include <asm/8xx_immap.h>
37#include <asm/commproc.h>
38#include <asm/io.h>
39#include <asm/tlbflush.h>
40#include <asm/rheap.h>
41#include <asm/prom.h>
42
43#include <asm/fs_pd.h>
44
45#define CPM_MAP_SIZE (0x4000)
46
47static void m8xx_cpm_dpinit(void);
Scott Wood4b218e92007-08-21 02:36:19 +100048static uint host_buffer; /* One page of host buffer */
49static uint host_end; /* end + 1 */
50cpm8xx_t *cpmp; /* Pointer to comm processor space */
51cpic8xx_t *cpic_reg;
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +030052
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +030053static struct irq_host *cpm_pic_host;
54
55static void cpm_mask_irq(unsigned int irq)
56{
57 unsigned int cpm_vec = (unsigned int)irq_map[irq].hwirq;
58
59 clrbits32(&cpic_reg->cpic_cimr, (1 << cpm_vec));
60}
61
62static void cpm_unmask_irq(unsigned int irq)
63{
64 unsigned int cpm_vec = (unsigned int)irq_map[irq].hwirq;
65
66 setbits32(&cpic_reg->cpic_cimr, (1 << cpm_vec));
67}
68
69static void cpm_end_irq(unsigned int irq)
70{
71 unsigned int cpm_vec = (unsigned int)irq_map[irq].hwirq;
72
73 out_be32(&cpic_reg->cpic_cisr, (1 << cpm_vec));
74}
75
76static struct irq_chip cpm_pic = {
77 .typename = " CPM PIC ",
78 .mask = cpm_mask_irq,
79 .unmask = cpm_unmask_irq,
80 .eoi = cpm_end_irq,
81};
82
83int cpm_get_irq(void)
84{
85 int cpm_vec;
86
87 /* Get the vector by setting the ACK bit and then reading
88 * the register.
89 */
90 out_be16(&cpic_reg->cpic_civr, 1);
91 cpm_vec = in_be16(&cpic_reg->cpic_civr);
92 cpm_vec >>= 11;
93
94 return irq_linear_revmap(cpm_pic_host, cpm_vec);
95}
96
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +030097static int cpm_pic_host_map(struct irq_host *h, unsigned int virq,
98 irq_hw_number_t hw)
99{
100 pr_debug("cpm_pic_host_map(%d, 0x%lx)\n", virq, hw);
101
102 get_irq_desc(virq)->status |= IRQ_LEVEL;
103 set_irq_chip_and_handler(virq, &cpm_pic, handle_fasteoi_irq);
104 return 0;
105}
106
107/* The CPM can generate the error interrupt when there is a race condition
108 * between generating and masking interrupts. All we have to do is ACK it
109 * and return. This is a no-op function so we don't need any special
110 * tests in the interrupt handler.
111 */
Scott Wood4b218e92007-08-21 02:36:19 +1000112static irqreturn_t cpm_error_interrupt(int irq, void *dev)
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300113{
114 return IRQ_HANDLED;
115}
116
117static struct irqaction cpm_error_irqaction = {
118 .handler = cpm_error_interrupt,
119 .mask = CPU_MASK_NONE,
120 .name = "error",
121};
122
123static struct irq_host_ops cpm_pic_host_ops = {
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300124 .map = cpm_pic_host_map,
125};
126
127unsigned int cpm_pic_init(void)
128{
129 struct device_node *np = NULL;
130 struct resource res;
131 unsigned int sirq = NO_IRQ, hwirq, eirq;
132 int ret;
133
134 pr_debug("cpm_pic_init\n");
135
136 np = of_find_compatible_node(NULL, "cpm-pic", "CPM");
137 if (np == NULL) {
138 printk(KERN_ERR "CPM PIC init: can not find cpm-pic node\n");
139 return sirq;
140 }
141 ret = of_address_to_resource(np, 0, &res);
142 if (ret)
143 goto end;
144
145 cpic_reg = (void *)ioremap(res.start, res.end - res.start + 1);
146 if (cpic_reg == NULL)
147 goto end;
148
149 sirq = irq_of_parse_and_map(np, 0);
150 if (sirq == NO_IRQ)
151 goto end;
152
153 /* Initialize the CPM interrupt controller. */
154 hwirq = (unsigned int)irq_map[sirq].hwirq;
155 out_be32(&cpic_reg->cpic_cicr,
156 (CICR_SCD_SCC4 | CICR_SCC_SCC3 | CICR_SCB_SCC2 | CICR_SCA_SCC1) |
157 ((hwirq/2) << 13) | CICR_HP_MASK);
158
159 out_be32(&cpic_reg->cpic_cimr, 0);
160
Michael Ellerman52964f82007-08-28 18:47:54 +1000161 cpm_pic_host = irq_alloc_host(of_node_get(np), IRQ_HOST_MAP_LINEAR,
162 64, &cpm_pic_host_ops, 64);
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300163 if (cpm_pic_host == NULL) {
164 printk(KERN_ERR "CPM2 PIC: failed to allocate irq host!\n");
165 sirq = NO_IRQ;
166 goto end;
167 }
168 of_node_put(np);
169
170 /* Install our own error handler. */
171 np = of_find_node_by_type(NULL, "cpm");
172 if (np == NULL) {
173 printk(KERN_ERR "CPM PIC init: can not find cpm node\n");
174 goto end;
175 }
Scott Wood4b218e92007-08-21 02:36:19 +1000176 eirq = irq_of_parse_and_map(np, 0);
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300177 if (eirq == NO_IRQ)
178 goto end;
179
180 if (setup_irq(eirq, &cpm_error_irqaction))
181 printk(KERN_ERR "Could not allocate CPM error IRQ!");
182
183 setbits32(&cpic_reg->cpic_cicr, CICR_IEN);
184
185end:
186 of_node_put(np);
187 return sirq;
188}
189
190void cpm_reset(void)
191{
Scott Wood4b218e92007-08-21 02:36:19 +1000192 cpm8xx_t *commproc;
193 sysconf8xx_t *siu_conf;
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300194
195 commproc = (cpm8xx_t *)ioremap(CPM_MAP_ADDR, CPM_MAP_SIZE);
196
197#ifdef CONFIG_UCODE_PATCH
198 /* Perform a reset.
199 */
Scott Wood4b218e92007-08-21 02:36:19 +1000200 out_be16(&commproc->cp_cpcr, CPM_CR_RST | CPM_CR_FLG);
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300201
202 /* Wait for it.
203 */
204 while (in_be16(&commproc->cp_cpcr) & CPM_CR_FLG);
205
206 cpm_load_patch(commproc);
207#endif
208
209 /* Set SDMA Bus Request priority 5.
210 * On 860T, this also enables FEC priority 6. I am not sure
211 * this is what we realy want for some applications, but the
212 * manual recommends it.
213 * Bit 25, FAM can also be set to use FEC aggressive mode (860T).
214 */
215 siu_conf = (sysconf8xx_t*)immr_map(im_siu_conf);
216 out_be32(&siu_conf->sc_sdcr, 1);
217 immr_unmap(siu_conf);
218
219 /* Reclaim the DP memory for our use. */
220 m8xx_cpm_dpinit();
221
222 /* Tell everyone where the comm processor resides.
223 */
224 cpmp = commproc;
225}
226
227/* We used to do this earlier, but have to postpone as long as possible
228 * to ensure the kernel VM is now running.
229 */
230static void
231alloc_host_memory(void)
232{
233 dma_addr_t physaddr;
234
235 /* Set the host page for allocation.
236 */
237 host_buffer = (uint)dma_alloc_coherent(NULL, PAGE_SIZE, &physaddr,
238 GFP_KERNEL);
239 host_end = host_buffer + PAGE_SIZE;
240}
241
242/* We also own one page of host buffer space for the allocation of
243 * UART "fifos" and the like.
244 */
245uint
246m8xx_cpm_hostalloc(uint size)
247{
248 uint retloc;
249
250 if (host_buffer == 0)
251 alloc_host_memory();
252
253 if ((host_buffer + size) >= host_end)
254 return(0);
255
256 retloc = host_buffer;
257 host_buffer += size;
258
259 return(retloc);
260}
261
262/* Set a baud rate generator. This needs lots of work. There are
263 * four BRGs, any of which can be wired to any channel.
264 * The internal baud rate clock is the system clock divided by 16.
265 * This assumes the baudrate is 16x oversampled by the uart.
266 */
267#define BRG_INT_CLK (get_brgfreq())
268#define BRG_UART_CLK (BRG_INT_CLK/16)
269#define BRG_UART_CLK_DIV16 (BRG_UART_CLK/16)
270
271void
272cpm_setbrg(uint brg, uint rate)
273{
274 volatile uint *bp;
275
276 /* This is good enough to get SMCs running.....
277 */
278 bp = (uint *)&cpmp->cp_brgc1;
279 bp += brg;
280 /* The BRG has a 12-bit counter. For really slow baud rates (or
281 * really fast processors), we may have to further divide by 16.
282 */
283 if (((BRG_UART_CLK / rate) - 1) < 4096)
284 *bp = (((BRG_UART_CLK / rate) - 1) << 1) | CPM_BRG_EN;
285 else
286 *bp = (((BRG_UART_CLK_DIV16 / rate) - 1) << 1) |
287 CPM_BRG_EN | CPM_BRG_DIV16;
288}
289
290/*
291 * dpalloc / dpfree bits.
292 */
293static spinlock_t cpm_dpmem_lock;
294/*
295 * 16 blocks should be enough to satisfy all requests
296 * until the memory subsystem goes up...
297 */
298static rh_block_t cpm_boot_dpmem_rh_block[16];
299static rh_info_t cpm_dpmem_info;
300
301#define CPM_DPMEM_ALIGNMENT 8
Scott Wood4b218e92007-08-21 02:36:19 +1000302static u8 *dpram_vbase;
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300303static uint dpram_pbase;
304
305void m8xx_cpm_dpinit(void)
306{
307 spin_lock_init(&cpm_dpmem_lock);
308
309 dpram_vbase = immr_map_size(im_cpm.cp_dpmem, CPM_DATAONLY_BASE + CPM_DATAONLY_SIZE);
310 dpram_pbase = (uint)&((immap_t *)IMAP_ADDR)->im_cpm.cp_dpmem;
311
312 /* Initialize the info header */
313 rh_init(&cpm_dpmem_info, CPM_DPMEM_ALIGNMENT,
314 sizeof(cpm_boot_dpmem_rh_block) /
315 sizeof(cpm_boot_dpmem_rh_block[0]),
316 cpm_boot_dpmem_rh_block);
317
318 /*
319 * Attach the usable dpmem area.
320 * XXX: This is actually crap. CPM_DATAONLY_BASE and
321 * CPM_DATAONLY_SIZE are a subset of the available dparm. It varies
322 * with the processor and the microcode patches applied / activated.
323 * But the following should be at least safe.
324 */
Timur Tabi4c356302007-05-08 14:46:36 -0500325 rh_attach_region(&cpm_dpmem_info, CPM_DATAONLY_BASE, CPM_DATAONLY_SIZE);
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300326}
327
328/*
329 * Allocate the requested size worth of DP memory.
330 * This function returns an offset into the DPRAM area.
331 * Use cpm_dpram_addr() to get the virtual address of the area.
332 */
Timur Tabi4c356302007-05-08 14:46:36 -0500333unsigned long cpm_dpalloc(uint size, uint align)
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300334{
Timur Tabi4c356302007-05-08 14:46:36 -0500335 unsigned long start;
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300336 unsigned long flags;
337
338 spin_lock_irqsave(&cpm_dpmem_lock, flags);
339 cpm_dpmem_info.alignment = align;
340 start = rh_alloc(&cpm_dpmem_info, size, "commproc");
341 spin_unlock_irqrestore(&cpm_dpmem_lock, flags);
342
343 return (uint)start;
344}
345EXPORT_SYMBOL(cpm_dpalloc);
346
Timur Tabi4c356302007-05-08 14:46:36 -0500347int cpm_dpfree(unsigned long offset)
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300348{
349 int ret;
350 unsigned long flags;
351
352 spin_lock_irqsave(&cpm_dpmem_lock, flags);
Timur Tabi4c356302007-05-08 14:46:36 -0500353 ret = rh_free(&cpm_dpmem_info, offset);
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300354 spin_unlock_irqrestore(&cpm_dpmem_lock, flags);
355
356 return ret;
357}
358EXPORT_SYMBOL(cpm_dpfree);
359
Timur Tabi4c356302007-05-08 14:46:36 -0500360unsigned long cpm_dpalloc_fixed(unsigned long offset, uint size, uint align)
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300361{
Timur Tabi4c356302007-05-08 14:46:36 -0500362 unsigned long start;
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300363 unsigned long flags;
364
365 spin_lock_irqsave(&cpm_dpmem_lock, flags);
366 cpm_dpmem_info.alignment = align;
Timur Tabi4c356302007-05-08 14:46:36 -0500367 start = rh_alloc_fixed(&cpm_dpmem_info, offset, size, "commproc");
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300368 spin_unlock_irqrestore(&cpm_dpmem_lock, flags);
369
Timur Tabi4c356302007-05-08 14:46:36 -0500370 return start;
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300371}
372EXPORT_SYMBOL(cpm_dpalloc_fixed);
373
374void cpm_dpdump(void)
375{
376 rh_dump(&cpm_dpmem_info);
377}
378EXPORT_SYMBOL(cpm_dpdump);
379
Timur Tabi4c356302007-05-08 14:46:36 -0500380void *cpm_dpram_addr(unsigned long offset)
Vitaly Bordugf2a0bd32007-01-24 22:41:24 +0300381{
382 return (void *)(dpram_vbase + offset);
383}
384EXPORT_SYMBOL(cpm_dpram_addr);
385
386uint cpm_dpram_phys(u8* addr)
387{
388 return (dpram_pbase + (uint)(addr - dpram_vbase));
389}
Jochen Friedrich83af9192007-09-24 19:13:46 +0200390EXPORT_SYMBOL(cpm_dpram_phys);