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Commit | Line | Data |
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83d290c5 | 1 | // SPDX-License-Identifier: GPL-2.0+ |
f60df20a | 2 | /* |
7b63b183 | 3 | * (C) Copyright 2015 Miao Yan <[email protected]> |
f60df20a MY |
4 | */ |
5 | ||
6 | #include <common.h> | |
7 | #include <command.h> | |
9fb625ce | 8 | #include <env.h> |
f60df20a | 9 | #include <errno.h> |
18686590 | 10 | #include <qfw.h> |
5b0b43e0 AC |
11 | #include <dm.h> |
12 | ||
13 | static struct udevice *qfw_dev; | |
f60df20a MY |
14 | |
15 | /* | |
16 | * This function prepares kernel for zboot. It loads kernel data | |
17 | * to 'load_addr', initrd to 'initrd_addr' and kernel command | |
18 | * line using qemu fw_cfg interface. | |
19 | */ | |
5b0b43e0 | 20 | static int qemu_fwcfg_cmd_setup_kernel(void *load_addr, void *initrd_addr) |
f60df20a MY |
21 | { |
22 | char *data_addr; | |
23 | uint32_t setup_size, kernel_size, cmdline_size, initrd_size; | |
24 | ||
5b0b43e0 AC |
25 | qfw_read_entry(qfw_dev, FW_CFG_SETUP_SIZE, 4, &setup_size); |
26 | qfw_read_entry(qfw_dev, FW_CFG_KERNEL_SIZE, 4, &kernel_size); | |
f60df20a | 27 | |
24272ffd | 28 | if (kernel_size == 0) { |
2f6c45eb AP |
29 | printf("fatal: no kernel available\n"); |
30 | return CMD_RET_FAILURE; | |
f60df20a MY |
31 | } |
32 | ||
33 | data_addr = load_addr; | |
24272ffd PCT |
34 | if (setup_size != 0) { |
35 | qfw_read_entry(qfw_dev, FW_CFG_SETUP_DATA, | |
36 | le32_to_cpu(setup_size), data_addr); | |
37 | data_addr += le32_to_cpu(setup_size); | |
38 | } | |
f60df20a | 39 | |
5b0b43e0 AC |
40 | qfw_read_entry(qfw_dev, FW_CFG_KERNEL_DATA, |
41 | le32_to_cpu(kernel_size), data_addr); | |
f60df20a | 42 | data_addr += le32_to_cpu(kernel_size); |
163fb376 | 43 | env_set_hex("filesize", le32_to_cpu(kernel_size)); |
f60df20a MY |
44 | |
45 | data_addr = initrd_addr; | |
5b0b43e0 | 46 | qfw_read_entry(qfw_dev, FW_CFG_INITRD_SIZE, 4, &initrd_size); |
f60df20a MY |
47 | if (initrd_size == 0) { |
48 | printf("warning: no initrd available\n"); | |
49 | } else { | |
5b0b43e0 AC |
50 | qfw_read_entry(qfw_dev, FW_CFG_INITRD_DATA, |
51 | le32_to_cpu(initrd_size), data_addr); | |
f60df20a | 52 | data_addr += le32_to_cpu(initrd_size); |
163fb376 | 53 | env_set_hex("filesize", le32_to_cpu(initrd_size)); |
f60df20a MY |
54 | } |
55 | ||
5b0b43e0 | 56 | qfw_read_entry(qfw_dev, FW_CFG_CMDLINE_SIZE, 4, &cmdline_size); |
f60df20a | 57 | if (cmdline_size) { |
5b0b43e0 AC |
58 | qfw_read_entry(qfw_dev, FW_CFG_CMDLINE_DATA, |
59 | le32_to_cpu(cmdline_size), data_addr); | |
f60df20a MY |
60 | /* |
61 | * if kernel cmdline only contains '\0', (e.g. no -append | |
62 | * when invoking qemu), do not update bootargs | |
63 | */ | |
64 | if (*data_addr != '\0') { | |
382bee57 | 65 | if (env_set("bootargs", data_addr) < 0) |
f60df20a MY |
66 | printf("warning: unable to change bootargs\n"); |
67 | } | |
68 | } | |
69 | ||
70 | printf("loading kernel to address %p size %x", load_addr, | |
71 | le32_to_cpu(kernel_size)); | |
72 | if (initrd_size) | |
73 | printf(" initrd %p size %x\n", | |
74 | initrd_addr, | |
75 | le32_to_cpu(initrd_size)); | |
76 | else | |
77 | printf("\n"); | |
78 | ||
79 | return 0; | |
80 | } | |
81 | ||
5b0b43e0 | 82 | static int qemu_fwcfg_cmd_list_firmware(void) |
25757220 MY |
83 | { |
84 | int ret; | |
099b2196 | 85 | struct fw_cfg_file_iter iter; |
25757220 MY |
86 | struct fw_file *file; |
87 | ||
88 | /* make sure fw_list is loaded */ | |
5b0b43e0 | 89 | ret = qfw_read_firmware_list(qfw_dev); |
25757220 MY |
90 | if (ret) |
91 | return ret; | |
92 | ||
5b0b43e0 AC |
93 | for (file = qfw_file_iter_init(qfw_dev, &iter); |
94 | !qfw_file_iter_end(&iter); | |
95 | file = qfw_file_iter_next(&iter)) { | |
25757220 MY |
96 | printf("%-56s\n", file->cfg.name); |
97 | } | |
98 | ||
f60df20a MY |
99 | return 0; |
100 | } | |
101 | ||
09140113 SG |
102 | static int qemu_fwcfg_do_list(struct cmd_tbl *cmdtp, int flag, |
103 | int argc, char *const argv[]) | |
f60df20a | 104 | { |
5b0b43e0 | 105 | if (qemu_fwcfg_cmd_list_firmware() < 0) |
f60df20a MY |
106 | return CMD_RET_FAILURE; |
107 | ||
108 | return 0; | |
109 | } | |
110 | ||
09140113 SG |
111 | static int qemu_fwcfg_do_cpus(struct cmd_tbl *cmdtp, int flag, |
112 | int argc, char *const argv[]) | |
f60df20a | 113 | { |
5b0b43e0 | 114 | printf("%d cpu(s) online\n", qfw_online_cpus(qfw_dev)); |
f60df20a MY |
115 | return 0; |
116 | } | |
117 | ||
09140113 SG |
118 | static int qemu_fwcfg_do_load(struct cmd_tbl *cmdtp, int flag, |
119 | int argc, char *const argv[]) | |
f60df20a MY |
120 | { |
121 | char *env; | |
122 | void *load_addr; | |
123 | void *initrd_addr; | |
124 | ||
00caae6d | 125 | env = env_get("loadaddr"); |
f60df20a | 126 | load_addr = env ? |
7e5f460e | 127 | (void *)hextoul(env, NULL) : |
2f45b304 | 128 | (void *)CONFIG_SYS_LOAD_ADDR; |
f60df20a | 129 | |
00caae6d | 130 | env = env_get("ramdiskaddr"); |
f60df20a | 131 | initrd_addr = env ? |
7e5f460e | 132 | (void *)hextoul(env, NULL) : |
d4c8dd1e TR |
133 | #ifdef CFG_RAMDISK_ADDR |
134 | (void *)CFG_RAMDISK_ADDR; | |
86e30e67 MY |
135 | #else |
136 | NULL; | |
137 | #endif | |
f60df20a MY |
138 | |
139 | if (argc == 2) { | |
7e5f460e SG |
140 | load_addr = (void *)hextoul(argv[0], NULL); |
141 | initrd_addr = (void *)hextoul(argv[1], NULL); | |
f60df20a | 142 | } else if (argc == 1) { |
7e5f460e | 143 | load_addr = (void *)hextoul(argv[0], NULL); |
f60df20a MY |
144 | } |
145 | ||
86e30e67 MY |
146 | if (!load_addr || !initrd_addr) { |
147 | printf("missing load or initrd address\n"); | |
148 | return CMD_RET_FAILURE; | |
149 | } | |
150 | ||
5b0b43e0 | 151 | return qemu_fwcfg_cmd_setup_kernel(load_addr, initrd_addr); |
f60df20a MY |
152 | } |
153 | ||
09140113 | 154 | static struct cmd_tbl fwcfg_commands[] = { |
f60df20a MY |
155 | U_BOOT_CMD_MKENT(list, 0, 1, qemu_fwcfg_do_list, "", ""), |
156 | U_BOOT_CMD_MKENT(cpus, 0, 1, qemu_fwcfg_do_cpus, "", ""), | |
157 | U_BOOT_CMD_MKENT(load, 2, 1, qemu_fwcfg_do_load, "", ""), | |
158 | }; | |
159 | ||
09140113 SG |
160 | static int do_qemu_fw(struct cmd_tbl *cmdtp, int flag, int argc, |
161 | char *const argv[]) | |
f60df20a MY |
162 | { |
163 | int ret; | |
09140113 | 164 | struct cmd_tbl *fwcfg_cmd; |
f60df20a | 165 | |
5b0b43e0 AC |
166 | ret = qfw_get_dev(&qfw_dev); |
167 | if (ret) { | |
f60df20a MY |
168 | printf("QEMU fw_cfg interface not found\n"); |
169 | return CMD_RET_USAGE; | |
170 | } | |
171 | ||
172 | fwcfg_cmd = find_cmd_tbl(argv[1], fwcfg_commands, | |
173 | ARRAY_SIZE(fwcfg_commands)); | |
174 | argc -= 2; | |
175 | argv += 2; | |
176 | if (!fwcfg_cmd || argc > fwcfg_cmd->maxargs) | |
177 | return CMD_RET_USAGE; | |
178 | ||
179 | ret = fwcfg_cmd->cmd(fwcfg_cmd, flag, argc, argv); | |
180 | ||
181 | return cmd_process_error(fwcfg_cmd, ret); | |
182 | } | |
183 | ||
184 | U_BOOT_CMD( | |
185 | qfw, 4, 1, do_qemu_fw, | |
186 | "QEMU firmware interface", | |
187 | "<command>\n" | |
188 | " - list : print firmware(s) currently loaded\n" | |
189 | " - cpus : print online cpu number\n" | |
190 | " - load <kernel addr> <initrd addr> : load kernel and initrd (if any), and setup for zboot\n" | |
191 | ) |