Statistics
| Branch: | Revision:

root / hw / palm.c @ 827df9f3

History | View | Annotate | Download (8.8 kB)

1
/*
2
 * PalmOne's (TM) PDAs.
3
 *
4
 * Copyright (C) 2006-2007 Andrzej Zaborowski  <balrog@zabor.org>
5
 *
6
 * This program is free software; you can redistribute it and/or
7
 * modify it under the terms of the GNU General Public License as
8
 * published by the Free Software Foundation; either version 2 or
9
 * (at your option) version 3 of the License.
10
 *
11
 * This program is distributed in the hope that it will be useful,
12
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14
 * GNU General Public License for more details.
15
 *
16
 * You should have received a copy of the GNU General Public License
17
 * along with this program; if not, write to the Free Software
18
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
19
 * MA 02111-1307 USA
20
 */
21
#include "hw.h"
22
#include "audio/audio.h"
23
#include "sysemu.h"
24
#include "console.h"
25
#include "omap.h"
26
#include "boards.h"
27
#include "arm-misc.h"
28
#include "devices.h"
29

    
30
static uint32_t static_readb(void *opaque, target_phys_addr_t offset)
31
{
32
    uint32_t *val = (uint32_t *) opaque;
33
    return *val >> ((offset & 3) << 3);
34
}
35

    
36
static uint32_t static_readh(void *opaque, target_phys_addr_t offset)
37
{
38
    uint32_t *val = (uint32_t *) opaque;
39
    return *val >> ((offset & 1) << 3);
40
}
41

    
42
static uint32_t static_readw(void *opaque, target_phys_addr_t offset)
43
{
44
    uint32_t *val = (uint32_t *) opaque;
45
    return *val >> ((offset & 0) << 3);
46
}
47

    
48
static void static_write(void *opaque, target_phys_addr_t offset,
49
                uint32_t value)
50
{
51
#ifdef SPY
52
    printf("%s: value %08lx written at " PA_FMT "\n",
53
                    __FUNCTION__, value, offset);
54
#endif
55
}
56

    
57
static CPUReadMemoryFunc *static_readfn[] = {
58
    static_readb,
59
    static_readh,
60
    static_readw,
61
};
62

    
63
static CPUWriteMemoryFunc *static_writefn[] = {
64
    static_write,
65
    static_write,
66
    static_write,
67
};
68

    
69
/* Palm Tunsgten|E support */
70

    
71
/* Shared GPIOs */
72
#define PALMTE_USBDETECT_GPIO        0
73
#define PALMTE_USB_OR_DC_GPIO        1
74
#define PALMTE_TSC_GPIO                4
75
#define PALMTE_PINTDAV_GPIO        6
76
#define PALMTE_MMC_WP_GPIO        8
77
#define PALMTE_MMC_POWER_GPIO        9
78
#define PALMTE_HDQ_GPIO                11
79
#define PALMTE_HEADPHONES_GPIO        14
80
#define PALMTE_SPEAKER_GPIO        15
81
/* MPU private GPIOs */
82
#define PALMTE_DC_GPIO                2
83
#define PALMTE_MMC_SWITCH_GPIO        4
84
#define PALMTE_MMC1_GPIO        6
85
#define PALMTE_MMC2_GPIO        7
86
#define PALMTE_MMC3_GPIO        11
87

    
88
static void palmte_microwire_setup(struct omap_mpu_state_s *cpu)
89
{
90
    struct uwire_slave_s *tsc;
91
    AudioState *audio = 0;
92

    
93
#ifdef HAS_AUDIO
94
    audio = AUD_init();
95
#endif
96

    
97
    tsc = tsc2102_init(omap_gpio_in_get(cpu->gpio)[PALMTE_PINTDAV_GPIO],
98
                    audio);
99

    
100
    omap_uwire_attach(cpu->microwire, tsc, 0);
101
    omap_mcbsp_i2s_attach(cpu->mcbsp1, tsc210x_codec(tsc));
102
}
103

    
104
static struct {
105
    int row;
106
    int column;
107
} palmte_keymap[0x80] = {
108
    [0 ... 0x7f] = { -1, -1 },
109
    [0x3b] = { 0, 0 },        /* F1        -> Calendar */
110
    [0x3c] = { 1, 0 },        /* F2        -> Contacts */
111
    [0x3d] = { 2, 0 },        /* F3        -> Tasks List */
112
    [0x3e] = { 3, 0 },        /* F4        -> Note Pad */
113
    [0x01] = { 4, 0 },        /* Esc        -> Power */
114
    [0x4b] = { 0, 1 },        /*            Left */
115
    [0x50] = { 1, 1 },        /*            Down */
116
    [0x48] = { 2, 1 },        /*           Up */
117
    [0x4d] = { 3, 1 },        /*           Right */
118
    [0x4c] = { 4, 1 },        /*            Centre */
119
    [0x39] = { 4, 1 },        /* Spc        -> Centre */
120
};
121

    
122
static void palmte_button_event(void *opaque, int keycode)
123
{
124
    struct omap_mpu_state_s *cpu = (struct omap_mpu_state_s *) opaque;
125

    
126
    if (palmte_keymap[keycode & 0x7f].row != -1)
127
        omap_mpuio_key(cpu->mpuio,
128
                        palmte_keymap[keycode & 0x7f].row,
129
                        palmte_keymap[keycode & 0x7f].column,
130
                        !(keycode & 0x80));
131
}
132

    
133
static void palmte_onoff_gpios(void *opaque, int line, int level)
134
{
135
    switch (line) {
136
    case 0:
137
        printf("%s: current to MMC/SD card %sabled.\n",
138
                        __FUNCTION__, level ? "dis" : "en");
139
        break;
140
    case 1:
141
        printf("%s: internal speaker amplifier %s.\n",
142
                        __FUNCTION__, level ? "down" : "on");
143
        break;
144

    
145
    /* These LCD & Audio output signals have not been identified yet.  */
146
    case 2:
147
    case 3:
148
    case 4:
149
        printf("%s: LCD GPIO%i %s.\n",
150
                        __FUNCTION__, line - 1, level ? "high" : "low");
151
        break;
152
    case 5:
153
    case 6:
154
        printf("%s: Audio GPIO%i %s.\n",
155
                        __FUNCTION__, line - 4, level ? "high" : "low");
156
        break;
157
    }
158
}
159

    
160
static void palmte_gpio_setup(struct omap_mpu_state_s *cpu)
161
{
162
    qemu_irq *misc_gpio;
163

    
164
    omap_mmc_handlers(cpu->mmc,
165
                    omap_gpio_in_get(cpu->gpio)[PALMTE_MMC_WP_GPIO],
166
                    qemu_irq_invert(omap_mpuio_in_get(cpu->mpuio)
167
                            [PALMTE_MMC_SWITCH_GPIO]));
168

    
169
    misc_gpio = qemu_allocate_irqs(palmte_onoff_gpios, cpu, 7);
170
    omap_gpio_out_set(cpu->gpio, PALMTE_MMC_POWER_GPIO,        misc_gpio[0]);
171
    omap_gpio_out_set(cpu->gpio, PALMTE_SPEAKER_GPIO,        misc_gpio[1]);
172
    omap_gpio_out_set(cpu->gpio, 11,                        misc_gpio[2]);
173
    omap_gpio_out_set(cpu->gpio, 12,                        misc_gpio[3]);
174
    omap_gpio_out_set(cpu->gpio, 13,                        misc_gpio[4]);
175
    omap_mpuio_out_set(cpu->mpuio, 1,                        misc_gpio[5]);
176
    omap_mpuio_out_set(cpu->mpuio, 3,                        misc_gpio[6]);
177

    
178
    /* Reset some inputs to initial state.  */
179
    qemu_irq_lower(omap_gpio_in_get(cpu->gpio)[PALMTE_USBDETECT_GPIO]);
180
    qemu_irq_lower(omap_gpio_in_get(cpu->gpio)[PALMTE_USB_OR_DC_GPIO]);
181
    qemu_irq_lower(omap_gpio_in_get(cpu->gpio)[4]);
182
    qemu_irq_lower(omap_gpio_in_get(cpu->gpio)[PALMTE_HEADPHONES_GPIO]);
183
    qemu_irq_lower(omap_mpuio_in_get(cpu->mpuio)[PALMTE_DC_GPIO]);
184
    qemu_irq_raise(omap_mpuio_in_get(cpu->mpuio)[6]);
185
    qemu_irq_raise(omap_mpuio_in_get(cpu->mpuio)[7]);
186
    qemu_irq_raise(omap_mpuio_in_get(cpu->mpuio)[11]);
187
}
188

    
189
static struct arm_boot_info palmte_binfo = {
190
    .loader_start = OMAP_EMIFF_BASE,
191
    .ram_size = 0x02000000,
192
    .board_id = 0x331,
193
};
194

    
195
static void palmte_init(int ram_size, int vga_ram_size,
196
                const char *boot_device, DisplayState *ds,
197
                const char *kernel_filename, const char *kernel_cmdline,
198
                const char *initrd_filename, const char *cpu_model)
199
{
200
    struct omap_mpu_state_s *cpu;
201
    int flash_size = 0x00800000;
202
    int sdram_size = palmte_binfo.ram_size;
203
    int io;
204
    static uint32_t cs0val = 0xffffffff;
205
    static uint32_t cs1val = 0x0000e1a0;
206
    static uint32_t cs2val = 0x0000e1a0;
207
    static uint32_t cs3val = 0xe1a0e1a0;
208
    ram_addr_t phys_flash;
209
    int rom_size, rom_loaded = 0;
210

    
211
    if (ram_size < flash_size + sdram_size + OMAP15XX_SRAM_SIZE) {
212
        fprintf(stderr, "This architecture uses %i bytes of memory\n",
213
                        flash_size + sdram_size + OMAP15XX_SRAM_SIZE);
214
        exit(1);
215
    }
216

    
217
    cpu = omap310_mpu_init(sdram_size, ds, cpu_model);
218

    
219
    /* External Flash (EMIFS) */
220
    cpu_register_physical_memory(OMAP_CS0_BASE, flash_size,
221
                    (phys_flash = qemu_ram_alloc(flash_size)) | IO_MEM_ROM);
222

    
223
    io = cpu_register_io_memory(0, static_readfn, static_writefn, &cs0val);
224
    cpu_register_physical_memory(OMAP_CS0_BASE + flash_size,
225
                    OMAP_CS0_SIZE - flash_size, io);
226
    io = cpu_register_io_memory(0, static_readfn, static_writefn, &cs1val);
227
    cpu_register_physical_memory(OMAP_CS1_BASE, OMAP_CS1_SIZE, io);
228
    io = cpu_register_io_memory(0, static_readfn, static_writefn, &cs2val);
229
    cpu_register_physical_memory(OMAP_CS2_BASE, OMAP_CS2_SIZE, io);
230
    io = cpu_register_io_memory(0, static_readfn, static_writefn, &cs3val);
231
    cpu_register_physical_memory(OMAP_CS3_BASE, OMAP_CS3_SIZE, io);
232

    
233
    palmte_microwire_setup(cpu);
234

    
235
    qemu_add_kbd_event_handler(palmte_button_event, cpu);
236

    
237
    palmte_gpio_setup(cpu);
238

    
239
    /* Setup initial (reset) machine state */
240
    if (nb_option_roms) {
241
        rom_size = get_image_size(option_rom[0]);
242
        if (rom_size > flash_size)
243
            fprintf(stderr, "%s: ROM image too big (%x > %x)\n",
244
                            __FUNCTION__, rom_size, flash_size);
245
        else if (rom_size > 0 && load_image(option_rom[0],
246
                                phys_ram_base + phys_flash) > 0) {
247
            rom_loaded = 1;
248
            cpu->env->regs[15] = 0x00000000;
249
        } else
250
            fprintf(stderr, "%s: error loading '%s'\n",
251
                            __FUNCTION__, option_rom[0]);
252
    }
253

    
254
    if (!rom_loaded && !kernel_filename) {
255
        fprintf(stderr, "Kernel or ROM image must be specified\n");
256
        exit(1);
257
    }
258

    
259
    /* Load the kernel.  */
260
    if (kernel_filename) {
261
        /* Start at bootloader.  */
262
        cpu->env->regs[15] = palmte_binfo.loader_start;
263

    
264
        palmte_binfo.kernel_filename = kernel_filename;
265
        palmte_binfo.kernel_cmdline = kernel_cmdline;
266
        palmte_binfo.initrd_filename = initrd_filename;
267
        arm_load_kernel(cpu->env, &palmte_binfo);
268
    }
269

    
270
    dpy_resize(ds, 320, 320);
271
}
272

    
273
QEMUMachine palmte_machine = {
274
    "cheetah",
275
    "Palm Tungsten|E aka. Cheetah PDA (OMAP310)",
276
    palmte_init,
277
};