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sandbox: Add a -D option to use a default device tree
[karo-tx-uboot.git] / arch / sandbox / cpu / start.c
1 /*
2  * Copyright (c) 2011-2012 The Chromium OS Authors.
3  * SPDX-License-Identifier:     GPL-2.0+
4  */
5
6 #include <common.h>
7 #include <os.h>
8 #include <cli.h>
9 #include <malloc.h>
10 #include <asm/getopt.h>
11 #include <asm/io.h>
12 #include <asm/sections.h>
13 #include <asm/state.h>
14
15 DECLARE_GLOBAL_DATA_PTR;
16
17 int sandbox_early_getopt_check(void)
18 {
19         struct sandbox_state *state = state_get_current();
20         struct sandbox_cmdline_option **sb_opt = __u_boot_sandbox_option_start;
21         size_t num_options = __u_boot_sandbox_option_count();
22         size_t i;
23         int max_arg_len, max_noarg_len;
24
25         /* parse_err will be a string of the faulting option */
26         if (!state->parse_err)
27                 return 0;
28
29         if (strcmp(state->parse_err, "help")) {
30                 printf("u-boot: error: failed while parsing option: %s\n"
31                         "\ttry running with --help for more information.\n",
32                         state->parse_err);
33                 os_exit(1);
34         }
35
36         printf(
37                 "u-boot, a command line test interface to U-Boot\n\n"
38                 "Usage: u-boot [options]\n"
39                 "Options:\n");
40
41         max_arg_len = 0;
42         for (i = 0; i < num_options; ++i)
43                 max_arg_len = max((int)strlen(sb_opt[i]->flag), max_arg_len);
44         max_noarg_len = max_arg_len + 7;
45
46         for (i = 0; i < num_options; ++i) {
47                 struct sandbox_cmdline_option *opt = sb_opt[i];
48
49                 /* first output the short flag if it has one */
50                 if (opt->flag_short >= 0x100)
51                         printf("      ");
52                 else
53                         printf("  -%c, ", opt->flag_short);
54
55                 /* then the long flag */
56                 if (opt->has_arg)
57                         printf("--%-*s <arg> ", max_arg_len, opt->flag);
58                 else
59                         printf("--%-*s", max_noarg_len, opt->flag);
60
61                 /* finally the help text */
62                 printf("  %s\n", opt->help);
63         }
64
65         os_exit(0);
66 }
67
68 static int sandbox_cmdline_cb_help(struct sandbox_state *state, const char *arg)
69 {
70         /* just flag to sandbox_early_getopt_check to show usage */
71         return 1;
72 }
73 SANDBOX_CMDLINE_OPT_SHORT(help, 'h', 0, "Display help");
74
75 int sandbox_main_loop_init(void)
76 {
77         struct sandbox_state *state = state_get_current();
78
79         /* Execute command if required */
80         if (state->cmd) {
81                 cli_init();
82
83                 run_command_list(state->cmd, -1, 0);
84                 if (!state->interactive)
85                         os_exit(state->exit_type);
86         }
87
88         return 0;
89 }
90
91 static int sandbox_cmdline_cb_command(struct sandbox_state *state,
92                                       const char *arg)
93 {
94         state->cmd = arg;
95         return 0;
96 }
97 SANDBOX_CMDLINE_OPT_SHORT(command, 'c', 1, "Execute U-Boot command");
98
99 static int sandbox_cmdline_cb_fdt(struct sandbox_state *state, const char *arg)
100 {
101         state->fdt_fname = arg;
102         return 0;
103 }
104 SANDBOX_CMDLINE_OPT_SHORT(fdt, 'd', 1, "Specify U-Boot's control FDT");
105
106 static int sandbox_cmdline_cb_default_fdt(struct sandbox_state *state,
107                                           const char *arg)
108 {
109         const char *fmt = "%s.dtb";
110         char *fname;
111         int len;
112
113         len = strlen(state->argv[0]) + strlen(fmt) + 1;
114         fname = os_malloc(len);
115         if (!fname)
116                 return -ENOMEM;
117         snprintf(fname, len, fmt, state->argv[0]);
118         state->fdt_fname = fname;
119
120         return 0;
121 }
122 SANDBOX_CMDLINE_OPT_SHORT(default_fdt, 'D', 0,
123                 "Use the default u-boot.dtb control FDT in U-Boot directory");
124
125 static int sandbox_cmdline_cb_interactive(struct sandbox_state *state,
126                                           const char *arg)
127 {
128         state->interactive = true;
129         return 0;
130 }
131
132 SANDBOX_CMDLINE_OPT_SHORT(interactive, 'i', 0, "Enter interactive mode");
133
134 static int sandbox_cmdline_cb_jump(struct sandbox_state *state,
135                                    const char *arg)
136 {
137         /* Remember to delete this U-Boot image later */
138         state->jumped_fname = arg;
139
140         return 0;
141 }
142 SANDBOX_CMDLINE_OPT_SHORT(jump, 'j', 1, "Jumped from previous U-Boot");
143
144 static int sandbox_cmdline_cb_memory(struct sandbox_state *state,
145                                      const char *arg)
146 {
147         int err;
148
149         /* For now assume we always want to write it */
150         state->write_ram_buf = true;
151         state->ram_buf_fname = arg;
152
153         err = os_read_ram_buf(arg);
154         if (err) {
155                 printf("Failed to read RAM buffer\n");
156                 return err;
157         }
158
159         return 0;
160 }
161 SANDBOX_CMDLINE_OPT_SHORT(memory, 'm', 1,
162                           "Read/write ram_buf memory contents from file");
163
164 static int sandbox_cmdline_cb_rm_memory(struct sandbox_state *state,
165                                         const char *arg)
166 {
167         state->ram_buf_rm = true;
168
169         return 0;
170 }
171 SANDBOX_CMDLINE_OPT(rm_memory, 0, "Remove memory file after reading");
172
173 static int sandbox_cmdline_cb_state(struct sandbox_state *state,
174                                     const char *arg)
175 {
176         state->state_fname = arg;
177         return 0;
178 }
179 SANDBOX_CMDLINE_OPT_SHORT(state, 's', 1, "Specify the sandbox state FDT");
180
181 static int sandbox_cmdline_cb_read(struct sandbox_state *state,
182                                    const char *arg)
183 {
184         state->read_state = true;
185         return 0;
186 }
187 SANDBOX_CMDLINE_OPT_SHORT(read, 'r', 0, "Read the state FDT on startup");
188
189 static int sandbox_cmdline_cb_write(struct sandbox_state *state,
190                                     const char *arg)
191 {
192         state->write_state = true;
193         return 0;
194 }
195 SANDBOX_CMDLINE_OPT_SHORT(write, 'w', 0, "Write state FDT on exit");
196
197 static int sandbox_cmdline_cb_ignore_missing(struct sandbox_state *state,
198                                              const char *arg)
199 {
200         state->ignore_missing_state_on_read = true;
201         return 0;
202 }
203 SANDBOX_CMDLINE_OPT_SHORT(ignore_missing, 'n', 0,
204                           "Ignore missing state on read");
205
206 static int sandbox_cmdline_cb_show_lcd(struct sandbox_state *state,
207                                        const char *arg)
208 {
209         state->show_lcd = true;
210         return 0;
211 }
212 SANDBOX_CMDLINE_OPT_SHORT(show_lcd, 'l', 0,
213                           "Show the sandbox LCD display");
214
215 static const char *term_args[STATE_TERM_COUNT] = {
216         "raw-with-sigs",
217         "raw",
218         "cooked",
219 };
220
221 static int sandbox_cmdline_cb_terminal(struct sandbox_state *state,
222                                        const char *arg)
223 {
224         int i;
225
226         for (i = 0; i < STATE_TERM_COUNT; i++) {
227                 if (!strcmp(arg, term_args[i])) {
228                         state->term_raw = i;
229                         return 0;
230                 }
231         }
232
233         printf("Unknown terminal setting '%s' (", arg);
234         for (i = 0; i < STATE_TERM_COUNT; i++)
235                 printf("%s%s", i ? ", " : "", term_args[i]);
236         puts(")\n");
237
238         return 1;
239 }
240 SANDBOX_CMDLINE_OPT_SHORT(terminal, 't', 1,
241                           "Set terminal to raw/cooked mode");
242
243 int main(int argc, char *argv[])
244 {
245         struct sandbox_state *state;
246         gd_t data;
247         int ret;
248
249         ret = state_init();
250         if (ret)
251                 goto err;
252
253         state = state_get_current();
254         if (os_parse_args(state, argc, argv))
255                 return 1;
256
257         ret = sandbox_read_state(state, state->state_fname);
258         if (ret)
259                 goto err;
260
261         /* Remove old memory file if required */
262         if (state->ram_buf_rm && state->ram_buf_fname)
263                 os_unlink(state->ram_buf_fname);
264
265         memset(&data, '\0', sizeof(data));
266         gd = &data;
267 #ifdef CONFIG_SYS_MALLOC_F_LEN
268         gd->malloc_base = CONFIG_MALLOC_F_ADDR;
269 #endif
270
271         /* Do pre- and post-relocation init */
272         board_init_f(0);
273
274         board_init_r(gd->new_gd, 0);
275
276         /* NOTREACHED - board_init_r() does not return */
277         return 0;
278
279 err:
280         printf("Error %d\n", ret);
281         return 1;
282 }