xref: /qemu/hw/ppc/ppc4xx_devs.c (revision a0557225fef3efed3a0556254b9adb639c6061c1)
1008ff9d7Sj_mayer /*
2008ff9d7Sj_mayer  * QEMU PowerPC 4xx embedded processors shared devices emulation
3008ff9d7Sj_mayer  *
4008ff9d7Sj_mayer  * Copyright (c) 2007 Jocelyn Mayer
5008ff9d7Sj_mayer  *
6008ff9d7Sj_mayer  * Permission is hereby granted, free of charge, to any person obtaining a copy
7008ff9d7Sj_mayer  * of this software and associated documentation files (the "Software"), to deal
8008ff9d7Sj_mayer  * in the Software without restriction, including without limitation the rights
9008ff9d7Sj_mayer  * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10008ff9d7Sj_mayer  * copies of the Software, and to permit persons to whom the Software is
11008ff9d7Sj_mayer  * furnished to do so, subject to the following conditions:
12008ff9d7Sj_mayer  *
13008ff9d7Sj_mayer  * The above copyright notice and this permission notice shall be included in
14008ff9d7Sj_mayer  * all copies or substantial portions of the Software.
15008ff9d7Sj_mayer  *
16008ff9d7Sj_mayer  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17008ff9d7Sj_mayer  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18008ff9d7Sj_mayer  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19008ff9d7Sj_mayer  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20008ff9d7Sj_mayer  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21008ff9d7Sj_mayer  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22008ff9d7Sj_mayer  * THE SOFTWARE.
23008ff9d7Sj_mayer  */
240d75590dSPeter Maydell #include "qemu/osdep.h"
25ab3dd749SPhilippe Mathieu-Daudé #include "qemu/units.h"
2633c11879SPaolo Bonzini #include "cpu.h"
2783c9f4caSPaolo Bonzini #include "hw/hw.h"
280d09e41aSPaolo Bonzini #include "hw/ppc/ppc.h"
290d09e41aSPaolo Bonzini #include "hw/ppc/ppc4xx.h"
30e938ba0cSShreyas B. Prabhu #include "hw/boards.h"
311de7afc9SPaolo Bonzini #include "qemu/log.h"
32022c62cbSPaolo Bonzini #include "exec/address-spaces.h"
33ab3dd749SPhilippe Mathieu-Daudé #include "qemu/error-report.h"
34008ff9d7Sj_mayer 
35*a0557225SBALATON Zoltan /*#define DEBUG_UIC*/
36d12d51d5Saliguori 
37d12d51d5Saliguori #ifdef DEBUG_UIC
3893fcfe39Saliguori #  define LOG_UIC(...) qemu_log_mask(CPU_LOG_INT, ## __VA_ARGS__)
39d12d51d5Saliguori #else
40d12d51d5Saliguori #  define LOG_UIC(...) do { } while (0)
41d12d51d5Saliguori #endif
42d12d51d5Saliguori 
431bba0dc9SAndreas Färber static void ppc4xx_reset(void *opaque)
441bba0dc9SAndreas Färber {
4590cb09d9SAndreas Färber     PowerPCCPU *cpu = opaque;
461bba0dc9SAndreas Färber 
4790cb09d9SAndreas Färber     cpu_reset(CPU(cpu));
481bba0dc9SAndreas Färber }
491bba0dc9SAndreas Färber 
50008ff9d7Sj_mayer /*****************************************************************************/
5160b14d95SStefan Weil /* Generic PowerPC 4xx processor instantiation */
529391b8c5SIgor Mammedov PowerPCCPU *ppc4xx_init(const char *cpu_type,
53c227f099SAnthony Liguori                         clk_setup_t *cpu_clk, clk_setup_t *tb_clk,
54008ff9d7Sj_mayer                         uint32_t sysclk)
55008ff9d7Sj_mayer {
5657274713SAndreas Färber     PowerPCCPU *cpu;
57e2684c0bSAndreas Färber     CPUPPCState *env;
58008ff9d7Sj_mayer 
59008ff9d7Sj_mayer     /* init CPUs */
609391b8c5SIgor Mammedov     cpu = POWERPC_CPU(cpu_create(cpu_type));
6157274713SAndreas Färber     env = &cpu->env;
6257274713SAndreas Färber 
63008ff9d7Sj_mayer     cpu_clk->cb = NULL; /* We don't care about CPU clock frequency changes */
64008ff9d7Sj_mayer     cpu_clk->opaque = env;
65008ff9d7Sj_mayer     /* Set time-base frequency to sysclk */
66ddd1055bSFabien Chouteau     tb_clk->cb = ppc_40x_timers_init(env, sysclk, PPC_INTERRUPT_PIT);
67008ff9d7Sj_mayer     tb_clk->opaque = env;
68008ff9d7Sj_mayer     ppc_dcr_init(env, NULL, NULL);
69008ff9d7Sj_mayer     /* Register qemu callbacks */
7090cb09d9SAndreas Färber     qemu_register_reset(ppc4xx_reset, cpu);
71008ff9d7Sj_mayer 
722f9859fbSAndreas Färber     return cpu;
73008ff9d7Sj_mayer }
74008ff9d7Sj_mayer 
75008ff9d7Sj_mayer /*****************************************************************************/
76008ff9d7Sj_mayer /* "Universal" Interrupt controller */
77008ff9d7Sj_mayer enum {
78008ff9d7Sj_mayer     DCR_UICSR  = 0x000,
79008ff9d7Sj_mayer     DCR_UICSRS = 0x001,
80008ff9d7Sj_mayer     DCR_UICER  = 0x002,
81008ff9d7Sj_mayer     DCR_UICCR  = 0x003,
82008ff9d7Sj_mayer     DCR_UICPR  = 0x004,
83008ff9d7Sj_mayer     DCR_UICTR  = 0x005,
84008ff9d7Sj_mayer     DCR_UICMSR = 0x006,
85008ff9d7Sj_mayer     DCR_UICVR  = 0x007,
86008ff9d7Sj_mayer     DCR_UICVCR = 0x008,
87008ff9d7Sj_mayer     DCR_UICMAX = 0x009,
88008ff9d7Sj_mayer };
89008ff9d7Sj_mayer 
90008ff9d7Sj_mayer #define UIC_MAX_IRQ 32
91c227f099SAnthony Liguori typedef struct ppcuic_t ppcuic_t;
92c227f099SAnthony Liguori struct ppcuic_t {
93008ff9d7Sj_mayer     uint32_t dcr_base;
94008ff9d7Sj_mayer     int use_vectors;
954c54e875Saurel32     uint32_t level;  /* Remembers the state of level-triggered interrupts. */
96008ff9d7Sj_mayer     uint32_t uicsr;  /* Status register */
97008ff9d7Sj_mayer     uint32_t uicer;  /* Enable register */
98008ff9d7Sj_mayer     uint32_t uiccr;  /* Critical register */
99008ff9d7Sj_mayer     uint32_t uicpr;  /* Polarity register */
100008ff9d7Sj_mayer     uint32_t uictr;  /* Triggering register */
101008ff9d7Sj_mayer     uint32_t uicvcr; /* Vector configuration register */
102008ff9d7Sj_mayer     uint32_t uicvr;
103008ff9d7Sj_mayer     qemu_irq *irqs;
104008ff9d7Sj_mayer };
105008ff9d7Sj_mayer 
106c227f099SAnthony Liguori static void ppcuic_trigger_irq (ppcuic_t *uic)
107008ff9d7Sj_mayer {
108008ff9d7Sj_mayer     uint32_t ir, cr;
109008ff9d7Sj_mayer     int start, end, inc, i;
110008ff9d7Sj_mayer 
111008ff9d7Sj_mayer     /* Trigger interrupt if any is pending */
112008ff9d7Sj_mayer     ir = uic->uicsr & uic->uicer & (~uic->uiccr);
113008ff9d7Sj_mayer     cr = uic->uicsr & uic->uicer & uic->uiccr;
114d12d51d5Saliguori     LOG_UIC("%s: uicsr %08" PRIx32 " uicer %08" PRIx32
115aae9366aSj_mayer                 " uiccr %08" PRIx32 "\n"
116aae9366aSj_mayer                 "   %08" PRIx32 " ir %08" PRIx32 " cr %08" PRIx32 "\n",
117aae9366aSj_mayer                 __func__, uic->uicsr, uic->uicer, uic->uiccr,
118008ff9d7Sj_mayer                 uic->uicsr & uic->uicer, ir, cr);
119008ff9d7Sj_mayer     if (ir != 0x0000000) {
120d12d51d5Saliguori         LOG_UIC("Raise UIC interrupt\n");
121008ff9d7Sj_mayer         qemu_irq_raise(uic->irqs[PPCUIC_OUTPUT_INT]);
122008ff9d7Sj_mayer     } else {
123d12d51d5Saliguori         LOG_UIC("Lower UIC interrupt\n");
124008ff9d7Sj_mayer         qemu_irq_lower(uic->irqs[PPCUIC_OUTPUT_INT]);
125008ff9d7Sj_mayer     }
126008ff9d7Sj_mayer     /* Trigger critical interrupt if any is pending and update vector */
127008ff9d7Sj_mayer     if (cr != 0x0000000) {
128008ff9d7Sj_mayer         qemu_irq_raise(uic->irqs[PPCUIC_OUTPUT_CINT]);
129008ff9d7Sj_mayer         if (uic->use_vectors) {
130008ff9d7Sj_mayer             /* Compute critical IRQ vector */
131008ff9d7Sj_mayer             if (uic->uicvcr & 1) {
132008ff9d7Sj_mayer                 start = 31;
133008ff9d7Sj_mayer                 end = 0;
134008ff9d7Sj_mayer                 inc = -1;
135008ff9d7Sj_mayer             } else {
136008ff9d7Sj_mayer                 start = 0;
137008ff9d7Sj_mayer                 end = 31;
138008ff9d7Sj_mayer                 inc = 1;
139008ff9d7Sj_mayer             }
140008ff9d7Sj_mayer             uic->uicvr = uic->uicvcr & 0xFFFFFFFC;
141008ff9d7Sj_mayer             for (i = start; i <= end; i += inc) {
142008ff9d7Sj_mayer                 if (cr & (1 << i)) {
143008ff9d7Sj_mayer                     uic->uicvr += (i - start) * 512 * inc;
144008ff9d7Sj_mayer                     break;
145008ff9d7Sj_mayer                 }
146008ff9d7Sj_mayer             }
147008ff9d7Sj_mayer         }
148d12d51d5Saliguori         LOG_UIC("Raise UIC critical interrupt - "
149aae9366aSj_mayer                     "vector %08" PRIx32 "\n", uic->uicvr);
150008ff9d7Sj_mayer     } else {
151d12d51d5Saliguori         LOG_UIC("Lower UIC critical interrupt\n");
152008ff9d7Sj_mayer         qemu_irq_lower(uic->irqs[PPCUIC_OUTPUT_CINT]);
153008ff9d7Sj_mayer         uic->uicvr = 0x00000000;
154008ff9d7Sj_mayer     }
155008ff9d7Sj_mayer }
156008ff9d7Sj_mayer 
157008ff9d7Sj_mayer static void ppcuic_set_irq (void *opaque, int irq_num, int level)
158008ff9d7Sj_mayer {
159c227f099SAnthony Liguori     ppcuic_t *uic;
160008ff9d7Sj_mayer     uint32_t mask, sr;
161008ff9d7Sj_mayer 
162008ff9d7Sj_mayer     uic = opaque;
163a1f7f97bSPeter Maydell     mask = 1U << (31-irq_num);
164d12d51d5Saliguori     LOG_UIC("%s: irq %d level %d uicsr %08" PRIx32
165aae9366aSj_mayer                 " mask %08" PRIx32 " => %08" PRIx32 " %08" PRIx32 "\n",
166aae9366aSj_mayer                 __func__, irq_num, level,
167008ff9d7Sj_mayer                 uic->uicsr, mask, uic->uicsr & mask, level << irq_num);
168008ff9d7Sj_mayer     if (irq_num < 0 || irq_num > 31)
169008ff9d7Sj_mayer         return;
170008ff9d7Sj_mayer     sr = uic->uicsr;
17150bf72b3Saurel32 
172008ff9d7Sj_mayer     /* Update status register */
173008ff9d7Sj_mayer     if (uic->uictr & mask) {
174008ff9d7Sj_mayer         /* Edge sensitive interrupt */
175008ff9d7Sj_mayer         if (level == 1)
176008ff9d7Sj_mayer             uic->uicsr |= mask;
177008ff9d7Sj_mayer     } else {
178008ff9d7Sj_mayer         /* Level sensitive interrupt */
1794c54e875Saurel32         if (level == 1) {
180008ff9d7Sj_mayer             uic->uicsr |= mask;
1814c54e875Saurel32             uic->level |= mask;
1824c54e875Saurel32         } else {
183008ff9d7Sj_mayer             uic->uicsr &= ~mask;
1844c54e875Saurel32             uic->level &= ~mask;
1854c54e875Saurel32         }
186008ff9d7Sj_mayer     }
187d12d51d5Saliguori     LOG_UIC("%s: irq %d level %d sr %" PRIx32 " => "
188aae9366aSj_mayer                 "%08" PRIx32 "\n", __func__, irq_num, level, uic->uicsr, sr);
189008ff9d7Sj_mayer     if (sr != uic->uicsr)
190008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
191008ff9d7Sj_mayer }
192008ff9d7Sj_mayer 
19373b01960SAlexander Graf static uint32_t dcr_read_uic (void *opaque, int dcrn)
194008ff9d7Sj_mayer {
195c227f099SAnthony Liguori     ppcuic_t *uic;
19673b01960SAlexander Graf     uint32_t ret;
197008ff9d7Sj_mayer 
198008ff9d7Sj_mayer     uic = opaque;
199008ff9d7Sj_mayer     dcrn -= uic->dcr_base;
200008ff9d7Sj_mayer     switch (dcrn) {
201008ff9d7Sj_mayer     case DCR_UICSR:
202008ff9d7Sj_mayer     case DCR_UICSRS:
203008ff9d7Sj_mayer         ret = uic->uicsr;
204008ff9d7Sj_mayer         break;
205008ff9d7Sj_mayer     case DCR_UICER:
206008ff9d7Sj_mayer         ret = uic->uicer;
207008ff9d7Sj_mayer         break;
208008ff9d7Sj_mayer     case DCR_UICCR:
209008ff9d7Sj_mayer         ret = uic->uiccr;
210008ff9d7Sj_mayer         break;
211008ff9d7Sj_mayer     case DCR_UICPR:
212008ff9d7Sj_mayer         ret = uic->uicpr;
213008ff9d7Sj_mayer         break;
214008ff9d7Sj_mayer     case DCR_UICTR:
215008ff9d7Sj_mayer         ret = uic->uictr;
216008ff9d7Sj_mayer         break;
217008ff9d7Sj_mayer     case DCR_UICMSR:
218008ff9d7Sj_mayer         ret = uic->uicsr & uic->uicer;
219008ff9d7Sj_mayer         break;
220008ff9d7Sj_mayer     case DCR_UICVR:
221008ff9d7Sj_mayer         if (!uic->use_vectors)
222008ff9d7Sj_mayer             goto no_read;
223008ff9d7Sj_mayer         ret = uic->uicvr;
224008ff9d7Sj_mayer         break;
225008ff9d7Sj_mayer     case DCR_UICVCR:
226008ff9d7Sj_mayer         if (!uic->use_vectors)
227008ff9d7Sj_mayer             goto no_read;
228008ff9d7Sj_mayer         ret = uic->uicvcr;
229008ff9d7Sj_mayer         break;
230008ff9d7Sj_mayer     default:
231008ff9d7Sj_mayer     no_read:
232008ff9d7Sj_mayer         ret = 0x00000000;
233008ff9d7Sj_mayer         break;
234008ff9d7Sj_mayer     }
235008ff9d7Sj_mayer 
236008ff9d7Sj_mayer     return ret;
237008ff9d7Sj_mayer }
238008ff9d7Sj_mayer 
23973b01960SAlexander Graf static void dcr_write_uic (void *opaque, int dcrn, uint32_t val)
240008ff9d7Sj_mayer {
241c227f099SAnthony Liguori     ppcuic_t *uic;
242008ff9d7Sj_mayer 
243008ff9d7Sj_mayer     uic = opaque;
244008ff9d7Sj_mayer     dcrn -= uic->dcr_base;
24573b01960SAlexander Graf     LOG_UIC("%s: dcr %d val 0x%x\n", __func__, dcrn, val);
246008ff9d7Sj_mayer     switch (dcrn) {
247008ff9d7Sj_mayer     case DCR_UICSR:
248008ff9d7Sj_mayer         uic->uicsr &= ~val;
2494c54e875Saurel32         uic->uicsr |= uic->level;
250008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
251008ff9d7Sj_mayer         break;
252008ff9d7Sj_mayer     case DCR_UICSRS:
253008ff9d7Sj_mayer         uic->uicsr |= val;
254008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
255008ff9d7Sj_mayer         break;
256008ff9d7Sj_mayer     case DCR_UICER:
257008ff9d7Sj_mayer         uic->uicer = val;
258008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
259008ff9d7Sj_mayer         break;
260008ff9d7Sj_mayer     case DCR_UICCR:
261008ff9d7Sj_mayer         uic->uiccr = val;
262008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
263008ff9d7Sj_mayer         break;
264008ff9d7Sj_mayer     case DCR_UICPR:
265008ff9d7Sj_mayer         uic->uicpr = val;
266008ff9d7Sj_mayer         break;
267008ff9d7Sj_mayer     case DCR_UICTR:
268008ff9d7Sj_mayer         uic->uictr = val;
269008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
270008ff9d7Sj_mayer         break;
271008ff9d7Sj_mayer     case DCR_UICMSR:
272008ff9d7Sj_mayer         break;
273008ff9d7Sj_mayer     case DCR_UICVR:
274008ff9d7Sj_mayer         break;
275008ff9d7Sj_mayer     case DCR_UICVCR:
276008ff9d7Sj_mayer         uic->uicvcr = val & 0xFFFFFFFD;
277008ff9d7Sj_mayer         ppcuic_trigger_irq(uic);
278008ff9d7Sj_mayer         break;
279008ff9d7Sj_mayer     }
280008ff9d7Sj_mayer }
281008ff9d7Sj_mayer 
282008ff9d7Sj_mayer static void ppcuic_reset (void *opaque)
283008ff9d7Sj_mayer {
284c227f099SAnthony Liguori     ppcuic_t *uic;
285008ff9d7Sj_mayer 
286008ff9d7Sj_mayer     uic = opaque;
287008ff9d7Sj_mayer     uic->uiccr = 0x00000000;
288008ff9d7Sj_mayer     uic->uicer = 0x00000000;
289008ff9d7Sj_mayer     uic->uicpr = 0x00000000;
290008ff9d7Sj_mayer     uic->uicsr = 0x00000000;
291008ff9d7Sj_mayer     uic->uictr = 0x00000000;
292008ff9d7Sj_mayer     if (uic->use_vectors) {
293008ff9d7Sj_mayer         uic->uicvcr = 0x00000000;
294008ff9d7Sj_mayer         uic->uicvr = 0x0000000;
295008ff9d7Sj_mayer     }
296008ff9d7Sj_mayer }
297008ff9d7Sj_mayer 
298e2684c0bSAndreas Färber qemu_irq *ppcuic_init (CPUPPCState *env, qemu_irq *irqs,
299008ff9d7Sj_mayer                        uint32_t dcr_base, int has_ssr, int has_vr)
300008ff9d7Sj_mayer {
301c227f099SAnthony Liguori     ppcuic_t *uic;
302008ff9d7Sj_mayer     int i;
303008ff9d7Sj_mayer 
3047267c094SAnthony Liguori     uic = g_malloc0(sizeof(ppcuic_t));
305008ff9d7Sj_mayer     uic->dcr_base = dcr_base;
306008ff9d7Sj_mayer     uic->irqs = irqs;
307008ff9d7Sj_mayer     if (has_vr)
308008ff9d7Sj_mayer         uic->use_vectors = 1;
309008ff9d7Sj_mayer     for (i = 0; i < DCR_UICMAX; i++) {
310008ff9d7Sj_mayer         ppc_dcr_register(env, dcr_base + i, uic,
311008ff9d7Sj_mayer                          &dcr_read_uic, &dcr_write_uic);
312008ff9d7Sj_mayer     }
313a08d4367SJan Kiszka     qemu_register_reset(ppcuic_reset, uic);
314008ff9d7Sj_mayer 
315008ff9d7Sj_mayer     return qemu_allocate_irqs(&ppcuic_set_irq, uic, UIC_MAX_IRQ);
316008ff9d7Sj_mayer }
31761b24405Saurel32 
31861b24405Saurel32 /*****************************************************************************/
31961b24405Saurel32 /* SDRAM controller */
320c227f099SAnthony Liguori typedef struct ppc4xx_sdram_t ppc4xx_sdram_t;
321c227f099SAnthony Liguori struct ppc4xx_sdram_t {
32261b24405Saurel32     uint32_t addr;
32361b24405Saurel32     int nbanks;
324b6dcbe08SAvi Kivity     MemoryRegion containers[4]; /* used for clipping */
325b6dcbe08SAvi Kivity     MemoryRegion *ram_memories;
326a8170e5eSAvi Kivity     hwaddr ram_bases[4];
327a8170e5eSAvi Kivity     hwaddr ram_sizes[4];
32861b24405Saurel32     uint32_t besr0;
32961b24405Saurel32     uint32_t besr1;
33061b24405Saurel32     uint32_t bear;
33161b24405Saurel32     uint32_t cfg;
33261b24405Saurel32     uint32_t status;
33361b24405Saurel32     uint32_t rtr;
33461b24405Saurel32     uint32_t pmit;
33561b24405Saurel32     uint32_t bcr[4];
33661b24405Saurel32     uint32_t tr;
33761b24405Saurel32     uint32_t ecccfg;
33861b24405Saurel32     uint32_t eccesr;
33961b24405Saurel32     qemu_irq irq;
34061b24405Saurel32 };
34161b24405Saurel32 
34261b24405Saurel32 enum {
34361b24405Saurel32     SDRAM0_CFGADDR = 0x010,
34461b24405Saurel32     SDRAM0_CFGDATA = 0x011,
34561b24405Saurel32 };
34661b24405Saurel32 
34761b24405Saurel32 /* XXX: TOFIX: some patches have made this code become inconsistent:
348a8170e5eSAvi Kivity  *      there are type inconsistencies, mixing hwaddr, target_ulong
34961b24405Saurel32  *      and uint32_t
35061b24405Saurel32  */
351a8170e5eSAvi Kivity static uint32_t sdram_bcr (hwaddr ram_base,
352a8170e5eSAvi Kivity                            hwaddr ram_size)
35361b24405Saurel32 {
35461b24405Saurel32     uint32_t bcr;
35561b24405Saurel32 
35661b24405Saurel32     switch (ram_size) {
357ab3dd749SPhilippe Mathieu-Daudé     case 4 * MiB:
35861b24405Saurel32         bcr = 0x00000000;
35961b24405Saurel32         break;
360ab3dd749SPhilippe Mathieu-Daudé     case 8 * MiB:
36161b24405Saurel32         bcr = 0x00020000;
36261b24405Saurel32         break;
363ab3dd749SPhilippe Mathieu-Daudé     case 16 * MiB:
36461b24405Saurel32         bcr = 0x00040000;
36561b24405Saurel32         break;
366ab3dd749SPhilippe Mathieu-Daudé     case 32 * MiB:
36761b24405Saurel32         bcr = 0x00060000;
36861b24405Saurel32         break;
369ab3dd749SPhilippe Mathieu-Daudé     case 64 * MiB:
37061b24405Saurel32         bcr = 0x00080000;
37161b24405Saurel32         break;
372ab3dd749SPhilippe Mathieu-Daudé     case 128 * MiB:
37361b24405Saurel32         bcr = 0x000A0000;
37461b24405Saurel32         break;
375ab3dd749SPhilippe Mathieu-Daudé     case 256 * MiB:
37661b24405Saurel32         bcr = 0x000C0000;
37761b24405Saurel32         break;
37861b24405Saurel32     default:
37990e189ecSBlue Swirl         printf("%s: invalid RAM size " TARGET_FMT_plx "\n", __func__,
38090e189ecSBlue Swirl                ram_size);
38161b24405Saurel32         return 0x00000000;
38261b24405Saurel32     }
38361b24405Saurel32     bcr |= ram_base & 0xFF800000;
38461b24405Saurel32     bcr |= 1;
38561b24405Saurel32 
38661b24405Saurel32     return bcr;
38761b24405Saurel32 }
38861b24405Saurel32 
389a8170e5eSAvi Kivity static inline hwaddr sdram_base(uint32_t bcr)
39061b24405Saurel32 {
39161b24405Saurel32     return bcr & 0xFF800000;
39261b24405Saurel32 }
39361b24405Saurel32 
39461b24405Saurel32 static target_ulong sdram_size (uint32_t bcr)
39561b24405Saurel32 {
39661b24405Saurel32     target_ulong size;
39761b24405Saurel32     int sh;
39861b24405Saurel32 
39961b24405Saurel32     sh = (bcr >> 17) & 0x7;
40061b24405Saurel32     if (sh == 7)
40161b24405Saurel32         size = -1;
40261b24405Saurel32     else
403ab3dd749SPhilippe Mathieu-Daudé         size = (4 * MiB) << sh;
40461b24405Saurel32 
40561b24405Saurel32     return size;
40661b24405Saurel32 }
40761b24405Saurel32 
408b6dcbe08SAvi Kivity static void sdram_set_bcr(ppc4xx_sdram_t *sdram,
409b6dcbe08SAvi Kivity                           uint32_t *bcrp, uint32_t bcr, int enabled)
41061b24405Saurel32 {
411b6dcbe08SAvi Kivity     unsigned n = bcrp - sdram->bcr;
412b6dcbe08SAvi Kivity 
41361b24405Saurel32     if (*bcrp & 0x00000001) {
41461b24405Saurel32         /* Unmap RAM */
41561b24405Saurel32 #ifdef DEBUG_SDRAM
41690e189ecSBlue Swirl         printf("%s: unmap RAM area " TARGET_FMT_plx " " TARGET_FMT_lx "\n",
41761b24405Saurel32                __func__, sdram_base(*bcrp), sdram_size(*bcrp));
41861b24405Saurel32 #endif
419b6dcbe08SAvi Kivity         memory_region_del_subregion(get_system_memory(),
420b6dcbe08SAvi Kivity                                     &sdram->containers[n]);
421b6dcbe08SAvi Kivity         memory_region_del_subregion(&sdram->containers[n],
422b6dcbe08SAvi Kivity                                     &sdram->ram_memories[n]);
423d8d95814SPaolo Bonzini         object_unparent(OBJECT(&sdram->containers[n]));
42461b24405Saurel32     }
42561b24405Saurel32     *bcrp = bcr & 0xFFDEE001;
42661b24405Saurel32     if (enabled && (bcr & 0x00000001)) {
42761b24405Saurel32 #ifdef DEBUG_SDRAM
42890e189ecSBlue Swirl         printf("%s: Map RAM area " TARGET_FMT_plx " " TARGET_FMT_lx "\n",
42961b24405Saurel32                __func__, sdram_base(bcr), sdram_size(bcr));
43061b24405Saurel32 #endif
4312c9b15caSPaolo Bonzini         memory_region_init(&sdram->containers[n], NULL, "sdram-containers",
432b6dcbe08SAvi Kivity                            sdram_size(bcr));
433b6dcbe08SAvi Kivity         memory_region_add_subregion(&sdram->containers[n], 0,
434b6dcbe08SAvi Kivity                                     &sdram->ram_memories[n]);
435b6dcbe08SAvi Kivity         memory_region_add_subregion(get_system_memory(),
436b6dcbe08SAvi Kivity                                     sdram_base(bcr),
437b6dcbe08SAvi Kivity                                     &sdram->containers[n]);
43861b24405Saurel32     }
43961b24405Saurel32 }
44061b24405Saurel32 
441c227f099SAnthony Liguori static void sdram_map_bcr (ppc4xx_sdram_t *sdram)
44261b24405Saurel32 {
44361b24405Saurel32     int i;
44461b24405Saurel32 
44561b24405Saurel32     for (i = 0; i < sdram->nbanks; i++) {
44661b24405Saurel32         if (sdram->ram_sizes[i] != 0) {
447b6dcbe08SAvi Kivity             sdram_set_bcr(sdram,
448b6dcbe08SAvi Kivity                           &sdram->bcr[i],
44961b24405Saurel32                           sdram_bcr(sdram->ram_bases[i], sdram->ram_sizes[i]),
45061b24405Saurel32                           1);
45161b24405Saurel32         } else {
452b6dcbe08SAvi Kivity             sdram_set_bcr(sdram, &sdram->bcr[i], 0x00000000, 0);
45361b24405Saurel32         }
45461b24405Saurel32     }
45561b24405Saurel32 }
45661b24405Saurel32 
457c227f099SAnthony Liguori static void sdram_unmap_bcr (ppc4xx_sdram_t *sdram)
45861b24405Saurel32 {
45961b24405Saurel32     int i;
46061b24405Saurel32 
46161b24405Saurel32     for (i = 0; i < sdram->nbanks; i++) {
46261b24405Saurel32 #ifdef DEBUG_SDRAM
46390e189ecSBlue Swirl         printf("%s: Unmap RAM area " TARGET_FMT_plx " " TARGET_FMT_lx "\n",
46461b24405Saurel32                __func__, sdram_base(sdram->bcr[i]), sdram_size(sdram->bcr[i]));
46561b24405Saurel32 #endif
466b6dcbe08SAvi Kivity         memory_region_del_subregion(get_system_memory(),
467b6dcbe08SAvi Kivity                                     &sdram->ram_memories[i]);
46861b24405Saurel32     }
46961b24405Saurel32 }
47061b24405Saurel32 
47173b01960SAlexander Graf static uint32_t dcr_read_sdram (void *opaque, int dcrn)
47261b24405Saurel32 {
473c227f099SAnthony Liguori     ppc4xx_sdram_t *sdram;
47473b01960SAlexander Graf     uint32_t ret;
47561b24405Saurel32 
47661b24405Saurel32     sdram = opaque;
47761b24405Saurel32     switch (dcrn) {
47861b24405Saurel32     case SDRAM0_CFGADDR:
47961b24405Saurel32         ret = sdram->addr;
48061b24405Saurel32         break;
48161b24405Saurel32     case SDRAM0_CFGDATA:
48261b24405Saurel32         switch (sdram->addr) {
48361b24405Saurel32         case 0x00: /* SDRAM_BESR0 */
48461b24405Saurel32             ret = sdram->besr0;
48561b24405Saurel32             break;
48661b24405Saurel32         case 0x08: /* SDRAM_BESR1 */
48761b24405Saurel32             ret = sdram->besr1;
48861b24405Saurel32             break;
48961b24405Saurel32         case 0x10: /* SDRAM_BEAR */
49061b24405Saurel32             ret = sdram->bear;
49161b24405Saurel32             break;
49261b24405Saurel32         case 0x20: /* SDRAM_CFG */
49361b24405Saurel32             ret = sdram->cfg;
49461b24405Saurel32             break;
49561b24405Saurel32         case 0x24: /* SDRAM_STATUS */
49661b24405Saurel32             ret = sdram->status;
49761b24405Saurel32             break;
49861b24405Saurel32         case 0x30: /* SDRAM_RTR */
49961b24405Saurel32             ret = sdram->rtr;
50061b24405Saurel32             break;
50161b24405Saurel32         case 0x34: /* SDRAM_PMIT */
50261b24405Saurel32             ret = sdram->pmit;
50361b24405Saurel32             break;
50461b24405Saurel32         case 0x40: /* SDRAM_B0CR */
50561b24405Saurel32             ret = sdram->bcr[0];
50661b24405Saurel32             break;
50761b24405Saurel32         case 0x44: /* SDRAM_B1CR */
50861b24405Saurel32             ret = sdram->bcr[1];
50961b24405Saurel32             break;
51061b24405Saurel32         case 0x48: /* SDRAM_B2CR */
51161b24405Saurel32             ret = sdram->bcr[2];
51261b24405Saurel32             break;
51361b24405Saurel32         case 0x4C: /* SDRAM_B3CR */
51461b24405Saurel32             ret = sdram->bcr[3];
51561b24405Saurel32             break;
51661b24405Saurel32         case 0x80: /* SDRAM_TR */
51761b24405Saurel32             ret = -1; /* ? */
51861b24405Saurel32             break;
51961b24405Saurel32         case 0x94: /* SDRAM_ECCCFG */
52061b24405Saurel32             ret = sdram->ecccfg;
52161b24405Saurel32             break;
52261b24405Saurel32         case 0x98: /* SDRAM_ECCESR */
52361b24405Saurel32             ret = sdram->eccesr;
52461b24405Saurel32             break;
52561b24405Saurel32         default: /* Error */
52661b24405Saurel32             ret = -1;
52761b24405Saurel32             break;
52861b24405Saurel32         }
52961b24405Saurel32         break;
53061b24405Saurel32     default:
53161b24405Saurel32         /* Avoid gcc warning */
53261b24405Saurel32         ret = 0x00000000;
53361b24405Saurel32         break;
53461b24405Saurel32     }
53561b24405Saurel32 
53661b24405Saurel32     return ret;
53761b24405Saurel32 }
53861b24405Saurel32 
53973b01960SAlexander Graf static void dcr_write_sdram (void *opaque, int dcrn, uint32_t val)
54061b24405Saurel32 {
541c227f099SAnthony Liguori     ppc4xx_sdram_t *sdram;
54261b24405Saurel32 
54361b24405Saurel32     sdram = opaque;
54461b24405Saurel32     switch (dcrn) {
54561b24405Saurel32     case SDRAM0_CFGADDR:
54661b24405Saurel32         sdram->addr = val;
54761b24405Saurel32         break;
54861b24405Saurel32     case SDRAM0_CFGDATA:
54961b24405Saurel32         switch (sdram->addr) {
55061b24405Saurel32         case 0x00: /* SDRAM_BESR0 */
55161b24405Saurel32             sdram->besr0 &= ~val;
55261b24405Saurel32             break;
55361b24405Saurel32         case 0x08: /* SDRAM_BESR1 */
55461b24405Saurel32             sdram->besr1 &= ~val;
55561b24405Saurel32             break;
55661b24405Saurel32         case 0x10: /* SDRAM_BEAR */
55761b24405Saurel32             sdram->bear = val;
55861b24405Saurel32             break;
55961b24405Saurel32         case 0x20: /* SDRAM_CFG */
56061b24405Saurel32             val &= 0xFFE00000;
56161b24405Saurel32             if (!(sdram->cfg & 0x80000000) && (val & 0x80000000)) {
56261b24405Saurel32 #ifdef DEBUG_SDRAM
56361b24405Saurel32                 printf("%s: enable SDRAM controller\n", __func__);
56461b24405Saurel32 #endif
56561b24405Saurel32                 /* validate all RAM mappings */
56661b24405Saurel32                 sdram_map_bcr(sdram);
56761b24405Saurel32                 sdram->status &= ~0x80000000;
56861b24405Saurel32             } else if ((sdram->cfg & 0x80000000) && !(val & 0x80000000)) {
56961b24405Saurel32 #ifdef DEBUG_SDRAM
57061b24405Saurel32                 printf("%s: disable SDRAM controller\n", __func__);
57161b24405Saurel32 #endif
57261b24405Saurel32                 /* invalidate all RAM mappings */
57361b24405Saurel32                 sdram_unmap_bcr(sdram);
57461b24405Saurel32                 sdram->status |= 0x80000000;
57561b24405Saurel32             }
57661b24405Saurel32             if (!(sdram->cfg & 0x40000000) && (val & 0x40000000))
57761b24405Saurel32                 sdram->status |= 0x40000000;
57861b24405Saurel32             else if ((sdram->cfg & 0x40000000) && !(val & 0x40000000))
57961b24405Saurel32                 sdram->status &= ~0x40000000;
58061b24405Saurel32             sdram->cfg = val;
58161b24405Saurel32             break;
58261b24405Saurel32         case 0x24: /* SDRAM_STATUS */
58361b24405Saurel32             /* Read-only register */
58461b24405Saurel32             break;
58561b24405Saurel32         case 0x30: /* SDRAM_RTR */
58661b24405Saurel32             sdram->rtr = val & 0x3FF80000;
58761b24405Saurel32             break;
58861b24405Saurel32         case 0x34: /* SDRAM_PMIT */
58961b24405Saurel32             sdram->pmit = (val & 0xF8000000) | 0x07C00000;
59061b24405Saurel32             break;
59161b24405Saurel32         case 0x40: /* SDRAM_B0CR */
592b6dcbe08SAvi Kivity             sdram_set_bcr(sdram, &sdram->bcr[0], val, sdram->cfg & 0x80000000);
59361b24405Saurel32             break;
59461b24405Saurel32         case 0x44: /* SDRAM_B1CR */
595b6dcbe08SAvi Kivity             sdram_set_bcr(sdram, &sdram->bcr[1], val, sdram->cfg & 0x80000000);
59661b24405Saurel32             break;
59761b24405Saurel32         case 0x48: /* SDRAM_B2CR */
598b6dcbe08SAvi Kivity             sdram_set_bcr(sdram, &sdram->bcr[2], val, sdram->cfg & 0x80000000);
59961b24405Saurel32             break;
60061b24405Saurel32         case 0x4C: /* SDRAM_B3CR */
601b6dcbe08SAvi Kivity             sdram_set_bcr(sdram, &sdram->bcr[3], val, sdram->cfg & 0x80000000);
60261b24405Saurel32             break;
60361b24405Saurel32         case 0x80: /* SDRAM_TR */
60461b24405Saurel32             sdram->tr = val & 0x018FC01F;
60561b24405Saurel32             break;
60661b24405Saurel32         case 0x94: /* SDRAM_ECCCFG */
60761b24405Saurel32             sdram->ecccfg = val & 0x00F00000;
60861b24405Saurel32             break;
60961b24405Saurel32         case 0x98: /* SDRAM_ECCESR */
61061b24405Saurel32             val &= 0xFFF0F000;
61161b24405Saurel32             if (sdram->eccesr == 0 && val != 0)
61261b24405Saurel32                 qemu_irq_raise(sdram->irq);
61361b24405Saurel32             else if (sdram->eccesr != 0 && val == 0)
61461b24405Saurel32                 qemu_irq_lower(sdram->irq);
61561b24405Saurel32             sdram->eccesr = val;
61661b24405Saurel32             break;
61761b24405Saurel32         default: /* Error */
61861b24405Saurel32             break;
61961b24405Saurel32         }
62061b24405Saurel32         break;
62161b24405Saurel32     }
62261b24405Saurel32 }
62361b24405Saurel32 
62461b24405Saurel32 static void sdram_reset (void *opaque)
62561b24405Saurel32 {
626c227f099SAnthony Liguori     ppc4xx_sdram_t *sdram;
62761b24405Saurel32 
62861b24405Saurel32     sdram = opaque;
62961b24405Saurel32     sdram->addr = 0x00000000;
63061b24405Saurel32     sdram->bear = 0x00000000;
63161b24405Saurel32     sdram->besr0 = 0x00000000; /* No error */
63261b24405Saurel32     sdram->besr1 = 0x00000000; /* No error */
63361b24405Saurel32     sdram->cfg = 0x00000000;
63461b24405Saurel32     sdram->ecccfg = 0x00000000; /* No ECC */
63561b24405Saurel32     sdram->eccesr = 0x00000000; /* No error */
63661b24405Saurel32     sdram->pmit = 0x07C00000;
63761b24405Saurel32     sdram->rtr = 0x05F00000;
63861b24405Saurel32     sdram->tr = 0x00854009;
63961b24405Saurel32     /* We pre-initialize RAM banks */
64061b24405Saurel32     sdram->status = 0x00000000;
64161b24405Saurel32     sdram->cfg = 0x00800000;
64261b24405Saurel32 }
64361b24405Saurel32 
644e2684c0bSAndreas Färber void ppc4xx_sdram_init (CPUPPCState *env, qemu_irq irq, int nbanks,
645b6dcbe08SAvi Kivity                         MemoryRegion *ram_memories,
646a8170e5eSAvi Kivity                         hwaddr *ram_bases,
647a8170e5eSAvi Kivity                         hwaddr *ram_sizes,
64861b24405Saurel32                         int do_init)
64961b24405Saurel32 {
650c227f099SAnthony Liguori     ppc4xx_sdram_t *sdram;
65161b24405Saurel32 
6527267c094SAnthony Liguori     sdram = g_malloc0(sizeof(ppc4xx_sdram_t));
65361b24405Saurel32     sdram->irq = irq;
65461b24405Saurel32     sdram->nbanks = nbanks;
655b6dcbe08SAvi Kivity     sdram->ram_memories = ram_memories;
656a8170e5eSAvi Kivity     memset(sdram->ram_bases, 0, 4 * sizeof(hwaddr));
65761b24405Saurel32     memcpy(sdram->ram_bases, ram_bases,
658a8170e5eSAvi Kivity            nbanks * sizeof(hwaddr));
659a8170e5eSAvi Kivity     memset(sdram->ram_sizes, 0, 4 * sizeof(hwaddr));
66061b24405Saurel32     memcpy(sdram->ram_sizes, ram_sizes,
661a8170e5eSAvi Kivity            nbanks * sizeof(hwaddr));
662a08d4367SJan Kiszka     qemu_register_reset(&sdram_reset, sdram);
66361b24405Saurel32     ppc_dcr_register(env, SDRAM0_CFGADDR,
66461b24405Saurel32                      sdram, &dcr_read_sdram, &dcr_write_sdram);
66561b24405Saurel32     ppc_dcr_register(env, SDRAM0_CFGDATA,
66661b24405Saurel32                      sdram, &dcr_read_sdram, &dcr_write_sdram);
66761b24405Saurel32     if (do_init)
66861b24405Saurel32         sdram_map_bcr(sdram);
66961b24405Saurel32 }
670b7da58fdSaurel32 
671b7da58fdSaurel32 /* Fill in consecutive SDRAM banks with 'ram_size' bytes of memory.
672b7da58fdSaurel32  *
673b7da58fdSaurel32  * sdram_bank_sizes[] must be 0-terminated.
674b7da58fdSaurel32  *
675b7da58fdSaurel32  * The 4xx SDRAM controller supports a small number of banks, and each bank
676b7da58fdSaurel32  * must be one of a small set of sizes. The number of banks and the supported
677b7da58fdSaurel32  * sizes varies by SoC. */
678c227f099SAnthony Liguori ram_addr_t ppc4xx_sdram_adjust(ram_addr_t ram_size, int nr_banks,
679b6dcbe08SAvi Kivity                                MemoryRegion ram_memories[],
680a8170e5eSAvi Kivity                                hwaddr ram_bases[],
681a8170e5eSAvi Kivity                                hwaddr ram_sizes[],
682b7da58fdSaurel32                                const unsigned int sdram_bank_sizes[])
683b7da58fdSaurel32 {
684e206ad48SHu Tao     MemoryRegion *ram = g_malloc0(sizeof(*ram));
685c227f099SAnthony Liguori     ram_addr_t size_left = ram_size;
686b6dcbe08SAvi Kivity     ram_addr_t base = 0;
687e206ad48SHu Tao     unsigned int bank_size;
688b7da58fdSaurel32     int i;
689b7da58fdSaurel32     int j;
690b7da58fdSaurel32 
691b7da58fdSaurel32     for (i = 0; i < nr_banks; i++) {
692b7da58fdSaurel32         for (j = 0; sdram_bank_sizes[j] != 0; j++) {
693e206ad48SHu Tao             bank_size = sdram_bank_sizes[j];
6945c130f65Spbrook             if (bank_size <= size_left) {
6955c130f65Spbrook                 size_left -= bank_size;
696b7da58fdSaurel32             }
697b7da58fdSaurel32         }
6985c130f65Spbrook         if (!size_left) {
699b7da58fdSaurel32             /* No need to use the remaining banks. */
700b7da58fdSaurel32             break;
701b7da58fdSaurel32         }
702b7da58fdSaurel32     }
703b7da58fdSaurel32 
7045c130f65Spbrook     ram_size -= size_left;
705e206ad48SHu Tao     if (size_left) {
706ab3dd749SPhilippe Mathieu-Daudé         error_report("Truncating memory to %" PRId64 " MiB to fit SDRAM"
707ab3dd749SPhilippe Mathieu-Daudé                      " controller limits", ram_size / MiB);
708e206ad48SHu Tao     }
709e206ad48SHu Tao 
710e206ad48SHu Tao     memory_region_allocate_system_memory(ram, NULL, "ppc4xx.sdram", ram_size);
711e206ad48SHu Tao 
712e206ad48SHu Tao     size_left = ram_size;
713e206ad48SHu Tao     for (i = 0; i < nr_banks && size_left; i++) {
714e206ad48SHu Tao         for (j = 0; sdram_bank_sizes[j] != 0; j++) {
715e206ad48SHu Tao             bank_size = sdram_bank_sizes[j];
716e206ad48SHu Tao 
717e206ad48SHu Tao             if (bank_size <= size_left) {
718e206ad48SHu Tao                 char name[32];
719e206ad48SHu Tao                 snprintf(name, sizeof(name), "ppc4xx.sdram%d", i);
720e206ad48SHu Tao                 memory_region_init_alias(&ram_memories[i], NULL, name, ram,
721e206ad48SHu Tao                                          base, bank_size);
722e206ad48SHu Tao                 ram_bases[i] = base;
723e206ad48SHu Tao                 ram_sizes[i] = bank_size;
724e206ad48SHu Tao                 base += bank_size;
725e206ad48SHu Tao                 size_left -= bank_size;
726e206ad48SHu Tao                 break;
727e206ad48SHu Tao             }
728e206ad48SHu Tao         }
729e206ad48SHu Tao     }
730b7da58fdSaurel32 
7315c130f65Spbrook     return ram_size;
732b7da58fdSaurel32 }
733517284a7SBALATON Zoltan 
734517284a7SBALATON Zoltan /*****************************************************************************/
735517284a7SBALATON Zoltan /* MAL */
73604534280SBALATON Zoltan 
737517284a7SBALATON Zoltan enum {
738517284a7SBALATON Zoltan     MAL0_CFG      = 0x180,
739517284a7SBALATON Zoltan     MAL0_ESR      = 0x181,
740517284a7SBALATON Zoltan     MAL0_IER      = 0x182,
741517284a7SBALATON Zoltan     MAL0_TXCASR   = 0x184,
742517284a7SBALATON Zoltan     MAL0_TXCARR   = 0x185,
743517284a7SBALATON Zoltan     MAL0_TXEOBISR = 0x186,
744517284a7SBALATON Zoltan     MAL0_TXDEIR   = 0x187,
745517284a7SBALATON Zoltan     MAL0_RXCASR   = 0x190,
746517284a7SBALATON Zoltan     MAL0_RXCARR   = 0x191,
747517284a7SBALATON Zoltan     MAL0_RXEOBISR = 0x192,
748517284a7SBALATON Zoltan     MAL0_RXDEIR   = 0x193,
749517284a7SBALATON Zoltan     MAL0_TXCTP0R  = 0x1A0,
750517284a7SBALATON Zoltan     MAL0_RXCTP0R  = 0x1C0,
751517284a7SBALATON Zoltan     MAL0_RCBS0    = 0x1E0,
752517284a7SBALATON Zoltan     MAL0_RCBS1    = 0x1E1,
753517284a7SBALATON Zoltan };
754517284a7SBALATON Zoltan 
75504534280SBALATON Zoltan typedef struct ppc4xx_mal_t ppc4xx_mal_t;
75604534280SBALATON Zoltan struct ppc4xx_mal_t {
757517284a7SBALATON Zoltan     qemu_irq irqs[4];
758517284a7SBALATON Zoltan     uint32_t cfg;
759517284a7SBALATON Zoltan     uint32_t esr;
760517284a7SBALATON Zoltan     uint32_t ier;
761517284a7SBALATON Zoltan     uint32_t txcasr;
762517284a7SBALATON Zoltan     uint32_t txcarr;
763517284a7SBALATON Zoltan     uint32_t txeobisr;
764517284a7SBALATON Zoltan     uint32_t txdeir;
765517284a7SBALATON Zoltan     uint32_t rxcasr;
766517284a7SBALATON Zoltan     uint32_t rxcarr;
767517284a7SBALATON Zoltan     uint32_t rxeobisr;
768517284a7SBALATON Zoltan     uint32_t rxdeir;
76904534280SBALATON Zoltan     uint32_t *txctpr;
77004534280SBALATON Zoltan     uint32_t *rxctpr;
77104534280SBALATON Zoltan     uint32_t *rcbs;
77204534280SBALATON Zoltan     uint8_t  txcnum;
77304534280SBALATON Zoltan     uint8_t  rxcnum;
774517284a7SBALATON Zoltan };
775517284a7SBALATON Zoltan 
77604534280SBALATON Zoltan static void ppc4xx_mal_reset(void *opaque)
77704534280SBALATON Zoltan {
77804534280SBALATON Zoltan     ppc4xx_mal_t *mal;
77904534280SBALATON Zoltan 
78004534280SBALATON Zoltan     mal = opaque;
78104534280SBALATON Zoltan     mal->cfg = 0x0007C000;
78204534280SBALATON Zoltan     mal->esr = 0x00000000;
78304534280SBALATON Zoltan     mal->ier = 0x00000000;
78404534280SBALATON Zoltan     mal->rxcasr = 0x00000000;
78504534280SBALATON Zoltan     mal->rxdeir = 0x00000000;
78604534280SBALATON Zoltan     mal->rxeobisr = 0x00000000;
78704534280SBALATON Zoltan     mal->txcasr = 0x00000000;
78804534280SBALATON Zoltan     mal->txdeir = 0x00000000;
78904534280SBALATON Zoltan     mal->txeobisr = 0x00000000;
79004534280SBALATON Zoltan }
791517284a7SBALATON Zoltan 
792517284a7SBALATON Zoltan static uint32_t dcr_read_mal(void *opaque, int dcrn)
793517284a7SBALATON Zoltan {
79404534280SBALATON Zoltan     ppc4xx_mal_t *mal;
795517284a7SBALATON Zoltan     uint32_t ret;
796517284a7SBALATON Zoltan 
797517284a7SBALATON Zoltan     mal = opaque;
798517284a7SBALATON Zoltan     switch (dcrn) {
799517284a7SBALATON Zoltan     case MAL0_CFG:
800517284a7SBALATON Zoltan         ret = mal->cfg;
801517284a7SBALATON Zoltan         break;
802517284a7SBALATON Zoltan     case MAL0_ESR:
803517284a7SBALATON Zoltan         ret = mal->esr;
804517284a7SBALATON Zoltan         break;
805517284a7SBALATON Zoltan     case MAL0_IER:
806517284a7SBALATON Zoltan         ret = mal->ier;
807517284a7SBALATON Zoltan         break;
808517284a7SBALATON Zoltan     case MAL0_TXCASR:
809517284a7SBALATON Zoltan         ret = mal->txcasr;
810517284a7SBALATON Zoltan         break;
811517284a7SBALATON Zoltan     case MAL0_TXCARR:
812517284a7SBALATON Zoltan         ret = mal->txcarr;
813517284a7SBALATON Zoltan         break;
814517284a7SBALATON Zoltan     case MAL0_TXEOBISR:
815517284a7SBALATON Zoltan         ret = mal->txeobisr;
816517284a7SBALATON Zoltan         break;
817517284a7SBALATON Zoltan     case MAL0_TXDEIR:
818517284a7SBALATON Zoltan         ret = mal->txdeir;
819517284a7SBALATON Zoltan         break;
820517284a7SBALATON Zoltan     case MAL0_RXCASR:
821517284a7SBALATON Zoltan         ret = mal->rxcasr;
822517284a7SBALATON Zoltan         break;
823517284a7SBALATON Zoltan     case MAL0_RXCARR:
824517284a7SBALATON Zoltan         ret = mal->rxcarr;
825517284a7SBALATON Zoltan         break;
826517284a7SBALATON Zoltan     case MAL0_RXEOBISR:
827517284a7SBALATON Zoltan         ret = mal->rxeobisr;
828517284a7SBALATON Zoltan         break;
829517284a7SBALATON Zoltan     case MAL0_RXDEIR:
830517284a7SBALATON Zoltan         ret = mal->rxdeir;
831517284a7SBALATON Zoltan         break;
832517284a7SBALATON Zoltan     default:
833517284a7SBALATON Zoltan         ret = 0;
834517284a7SBALATON Zoltan         break;
835517284a7SBALATON Zoltan     }
83604534280SBALATON Zoltan     if (dcrn >= MAL0_TXCTP0R && dcrn < MAL0_TXCTP0R + mal->txcnum) {
83704534280SBALATON Zoltan         ret = mal->txctpr[dcrn - MAL0_TXCTP0R];
83804534280SBALATON Zoltan     }
83904534280SBALATON Zoltan     if (dcrn >= MAL0_RXCTP0R && dcrn < MAL0_RXCTP0R + mal->rxcnum) {
84004534280SBALATON Zoltan         ret = mal->rxctpr[dcrn - MAL0_RXCTP0R];
84104534280SBALATON Zoltan     }
84204534280SBALATON Zoltan     if (dcrn >= MAL0_RCBS0 && dcrn < MAL0_RCBS0 + mal->rxcnum) {
84304534280SBALATON Zoltan         ret = mal->rcbs[dcrn - MAL0_RCBS0];
84404534280SBALATON Zoltan     }
845517284a7SBALATON Zoltan 
846517284a7SBALATON Zoltan     return ret;
847517284a7SBALATON Zoltan }
848517284a7SBALATON Zoltan 
849517284a7SBALATON Zoltan static void dcr_write_mal(void *opaque, int dcrn, uint32_t val)
850517284a7SBALATON Zoltan {
85104534280SBALATON Zoltan     ppc4xx_mal_t *mal;
852517284a7SBALATON Zoltan 
853517284a7SBALATON Zoltan     mal = opaque;
854517284a7SBALATON Zoltan     switch (dcrn) {
855517284a7SBALATON Zoltan     case MAL0_CFG:
856517284a7SBALATON Zoltan         if (val & 0x80000000) {
85704534280SBALATON Zoltan             ppc4xx_mal_reset(mal);
858517284a7SBALATON Zoltan         }
859517284a7SBALATON Zoltan         mal->cfg = val & 0x00FFC087;
860517284a7SBALATON Zoltan         break;
861517284a7SBALATON Zoltan     case MAL0_ESR:
862517284a7SBALATON Zoltan         /* Read/clear */
863517284a7SBALATON Zoltan         mal->esr &= ~val;
864517284a7SBALATON Zoltan         break;
865517284a7SBALATON Zoltan     case MAL0_IER:
866517284a7SBALATON Zoltan         mal->ier = val & 0x0000001F;
867517284a7SBALATON Zoltan         break;
868517284a7SBALATON Zoltan     case MAL0_TXCASR:
869517284a7SBALATON Zoltan         mal->txcasr = val & 0xF0000000;
870517284a7SBALATON Zoltan         break;
871517284a7SBALATON Zoltan     case MAL0_TXCARR:
872517284a7SBALATON Zoltan         mal->txcarr = val & 0xF0000000;
873517284a7SBALATON Zoltan         break;
874517284a7SBALATON Zoltan     case MAL0_TXEOBISR:
875517284a7SBALATON Zoltan         /* Read/clear */
876517284a7SBALATON Zoltan         mal->txeobisr &= ~val;
877517284a7SBALATON Zoltan         break;
878517284a7SBALATON Zoltan     case MAL0_TXDEIR:
879517284a7SBALATON Zoltan         /* Read/clear */
880517284a7SBALATON Zoltan         mal->txdeir &= ~val;
881517284a7SBALATON Zoltan         break;
882517284a7SBALATON Zoltan     case MAL0_RXCASR:
883517284a7SBALATON Zoltan         mal->rxcasr = val & 0xC0000000;
884517284a7SBALATON Zoltan         break;
885517284a7SBALATON Zoltan     case MAL0_RXCARR:
886517284a7SBALATON Zoltan         mal->rxcarr = val & 0xC0000000;
887517284a7SBALATON Zoltan         break;
888517284a7SBALATON Zoltan     case MAL0_RXEOBISR:
889517284a7SBALATON Zoltan         /* Read/clear */
890517284a7SBALATON Zoltan         mal->rxeobisr &= ~val;
891517284a7SBALATON Zoltan         break;
892517284a7SBALATON Zoltan     case MAL0_RXDEIR:
893517284a7SBALATON Zoltan         /* Read/clear */
894517284a7SBALATON Zoltan         mal->rxdeir &= ~val;
895517284a7SBALATON Zoltan         break;
89604534280SBALATON Zoltan     }
89704534280SBALATON Zoltan     if (dcrn >= MAL0_TXCTP0R && dcrn < MAL0_TXCTP0R + mal->txcnum) {
89804534280SBALATON Zoltan         mal->txctpr[dcrn - MAL0_TXCTP0R] = val;
89904534280SBALATON Zoltan     }
90004534280SBALATON Zoltan     if (dcrn >= MAL0_RXCTP0R && dcrn < MAL0_RXCTP0R + mal->rxcnum) {
90104534280SBALATON Zoltan         mal->rxctpr[dcrn - MAL0_RXCTP0R] = val;
90204534280SBALATON Zoltan     }
90304534280SBALATON Zoltan     if (dcrn >= MAL0_RCBS0 && dcrn < MAL0_RCBS0 + mal->rxcnum) {
90404534280SBALATON Zoltan         mal->rcbs[dcrn - MAL0_RCBS0] = val & 0x000000FF;
905517284a7SBALATON Zoltan     }
906517284a7SBALATON Zoltan }
907517284a7SBALATON Zoltan 
90804534280SBALATON Zoltan void ppc4xx_mal_init(CPUPPCState *env, uint8_t txcnum, uint8_t rxcnum,
90904534280SBALATON Zoltan                      qemu_irq irqs[4])
910517284a7SBALATON Zoltan {
91104534280SBALATON Zoltan     ppc4xx_mal_t *mal;
912517284a7SBALATON Zoltan     int i;
913517284a7SBALATON Zoltan 
91404534280SBALATON Zoltan     assert(txcnum <= 32 && rxcnum <= 32);
91504534280SBALATON Zoltan     mal = g_malloc0(sizeof(*mal));
91604534280SBALATON Zoltan     mal->txcnum = txcnum;
91704534280SBALATON Zoltan     mal->rxcnum = rxcnum;
91804534280SBALATON Zoltan     mal->txctpr = g_new0(uint32_t, txcnum);
91904534280SBALATON Zoltan     mal->rxctpr = g_new0(uint32_t, rxcnum);
92004534280SBALATON Zoltan     mal->rcbs = g_new0(uint32_t, rxcnum);
921517284a7SBALATON Zoltan     for (i = 0; i < 4; i++) {
922517284a7SBALATON Zoltan         mal->irqs[i] = irqs[i];
923517284a7SBALATON Zoltan     }
92404534280SBALATON Zoltan     qemu_register_reset(&ppc4xx_mal_reset, mal);
925517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_CFG,
926517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
927517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_ESR,
928517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
929517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_IER,
930517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
931517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_TXCASR,
932517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
933517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_TXCARR,
934517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
935517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_TXEOBISR,
936517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
937517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_TXDEIR,
938517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
939517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_RXCASR,
940517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
941517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_RXCARR,
942517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
943517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_RXEOBISR,
944517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
945517284a7SBALATON Zoltan     ppc_dcr_register(env, MAL0_RXDEIR,
946517284a7SBALATON Zoltan                      mal, &dcr_read_mal, &dcr_write_mal);
94704534280SBALATON Zoltan     for (i = 0; i < txcnum; i++) {
94804534280SBALATON Zoltan         ppc_dcr_register(env, MAL0_TXCTP0R + i,
949517284a7SBALATON Zoltan                          mal, &dcr_read_mal, &dcr_write_mal);
95004534280SBALATON Zoltan     }
95104534280SBALATON Zoltan     for (i = 0; i < rxcnum; i++) {
95204534280SBALATON Zoltan         ppc_dcr_register(env, MAL0_RXCTP0R + i,
953517284a7SBALATON Zoltan                          mal, &dcr_read_mal, &dcr_write_mal);
95404534280SBALATON Zoltan     }
95504534280SBALATON Zoltan     for (i = 0; i < rxcnum; i++) {
95604534280SBALATON Zoltan         ppc_dcr_register(env, MAL0_RCBS0 + i,
957517284a7SBALATON Zoltan                          mal, &dcr_read_mal, &dcr_write_mal);
95804534280SBALATON Zoltan     }
959517284a7SBALATON Zoltan }
960