Mercurial > flash_v2
view packages/redboot/current/src/main.c @ 159:511f4dc167f6
Merge from eCos master repository on 2001-05-18-01:30:05-BST
| author | jlarmour |
|---|---|
| date | Fri, 18 May 2001 06:32:28 +0000 |
| parents | f2545e5de153 |
| children | 0d0f03f76f6a |
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//========================================================================== // // main.c // // RedBoot main routine // //========================================================================== //####COPYRIGHTBEGIN#### // // ------------------------------------------- // The contents of this file are subject to the Red Hat eCos Public License // Version 1.1 (the "License"); you may not use this file except in // compliance with the License. You may obtain a copy of the License at // http://www.redhat.com/ // // Software distributed under the License is distributed on an "AS IS" // basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the // License for the specific language governing rights and limitations under // the License. // // The Original Code is eCos - Embedded Configurable Operating System, // released September 30, 1998. // // The Initial Developer of the Original Code is Red Hat. // Portions created by Red Hat are // Copyright (C) 1998, 1999, 2000, 2001 Red Hat, Inc. // All Rights Reserved. // ------------------------------------------- // //####COPYRIGHTEND#### //========================================================================== //#####DESCRIPTIONBEGIN#### // // Author(s): gthomas // Contributors: gthomas // Date: 2000-07-14 // Purpose: // Description: // // This code is part of RedBoot (tm). // //####DESCRIPTIONEND#### // //========================================================================== #define DEFINE_VARS #include <redboot.h> #include <cyg/hal/hal_arch.h> #include <cyg/hal/hal_intr.h> #include <cyg/hal/hal_if.h> #include <cyg/hal/hal_cache.h> #include CYGHWR_MEMORY_LAYOUT_H #include <cyg/hal/hal_tables.h> #ifdef CYGBLD_HAL_PLATFORM_STUB_H #include CYGBLD_HAL_PLATFORM_STUB_H #else #include <cyg/hal/plf_stub.h> #endif // Builtin Self Test (BIST) externC void bist(void); // GDB interfaces extern void breakpoint(void); // CLI command processing (defined in this file) RedBoot_cmd("version", "Display RedBoot version information", "", do_version ); RedBoot_cmd("help", "Help about help?", "[<topic>]", do_help ); RedBoot_cmd("go", "Execute code at a location", "[-w <timeout>] [entry]", do_go ); RedBoot_cmd("dump", "Display (hex dump) a range of memory", "-b <location> [-l <length>]", do_dump ); RedBoot_cmd("cksum", "Compute a 32bit checksum [POSIX algorithm] for a range of memory", "-b <location> -l <length>", do_cksum ); RedBoot_cmd("cache", "Manage machine caches", "[ON | OFF]", do_caches ); #ifdef HAL_PLATFORM_RESET RedBoot_cmd("reset", "Reset the system", "", do_reset ); #endif #ifdef CYGSEM_REDBOOT_VARIBLE_BAUD_RATE RedBoot_cmd("baudrate", "Set/Query the system console baud rate", "[-b <rate>]", do_baud_rate ); #endif // Define table boundaries CYG_HAL_TABLE_BEGIN( __RedBoot_INIT_TAB__, RedBoot_inits ); CYG_HAL_TABLE_END( __RedBoot_INIT_TAB_END__, RedBoot_inits ); extern struct init_tab_entry __RedBoot_INIT_TAB__[], __RedBoot_INIT_TAB_END__; CYG_HAL_TABLE_BEGIN( __RedBoot_CMD_TAB__, RedBoot_commands ); CYG_HAL_TABLE_END( __RedBoot_CMD_TAB_END__, RedBoot_commands ); extern struct cmd __RedBoot_CMD_TAB__[], __RedBoot_CMD_TAB_END__; CYG_HAL_TABLE_BEGIN( __RedBoot_IDLE_TAB__, RedBoot_idle ); CYG_HAL_TABLE_END( __RedBoot_IDLE_TAB_END__, RedBoot_idle ); extern struct idle_tab_entry __RedBoot_IDLE_TAB__[], __RedBoot_IDLE_TAB_END__; #ifdef HAL_ARCH_PROGRAM_NEW_STACK extern void HAL_ARCH_PROGRAM_NEW_STACK(void *fun); #endif void do_version(int argc, char *argv[]) { extern char RedBoot_version[]; printf(RedBoot_version); #ifdef HAL_PLATFORM_CPU printf("Platform: %s (%s) %s\n", HAL_PLATFORM_BOARD, HAL_PLATFORM_CPU, HAL_PLATFORM_EXTRA); #endif printf("Copyright (C) 2000, 2001, Red Hat, Inc.\n\n"); printf("RAM: %p-%p, %p-%p available\n", (void*)ram_start, (void*)ram_end, (void*)user_ram_start, (void *)user_ram_end); } void do_idle(bool is_idle) { struct idle_tab_entry *idle_entry; for (idle_entry = __RedBoot_IDLE_TAB__; idle_entry != &__RedBoot_IDLE_TAB_END__; idle_entry++) { (*idle_entry->fun)(is_idle); } } // // This is the main entry point for RedBoot // void cyg_start(void) { int res = 0; bool prompt = true; static char line[CYGPKG_REDBOOT_MAX_CMD_LINE]; struct cmd *cmd; int cur; struct init_tab_entry *init_entry; // Make sure the channels are properly initialized. hal_if_diag_init(); // Force console to output raw text - but remember the old setting // so it can be restored if interaction with a debugger is // required. cur = CYGACC_CALL_IF_SET_CONSOLE_COMM(CYGNUM_CALL_IF_SET_COMM_ID_QUERY_CURRENT); CYGACC_CALL_IF_SET_CONSOLE_COMM(CYGNUM_HAL_VIRTUAL_VECTOR_DEBUG_CHANNEL); #ifdef CYGPKG_REDBOOT_ANY_CONSOLE console_selected = false; #endif console_echo = true; CYGACC_CALL_IF_DELAY_US((cyg_int32)2*100000); ram_start = (unsigned char *)CYGMEM_REGION_ram; ram_end = (unsigned char *)(CYGMEM_REGION_ram+CYGMEM_REGION_ram_SIZE); #ifdef HAL_MEM_REAL_REGION_TOP { unsigned char *ram_end_tmp = ram_end; ram_end = HAL_MEM_REAL_REGION_TOP( ram_end_tmp ); } #endif #ifdef CYGMEM_SECTION_heap1 workspace_start = (unsigned char *)CYGMEM_SECTION_heap1; workspace_end = (unsigned char *)(CYGMEM_SECTION_heap1+CYGMEM_SECTION_heap1_SIZE); workspace_size = CYGMEM_SECTION_heap1_SIZE; #else workspace_start = (unsigned char *)CYGMEM_REGION_ram; workspace_end = (unsigned char *)(CYGMEM_REGION_ram+CYGMEM_REGION_ram_SIZE); workspace_size = CYGMEM_REGION_ram_SIZE; #endif if ( ram_end < workspace_end ) { // when *less* SDRAM is installed than the possible maximum, // but the heap1 region remains greater... workspace_end = ram_end; workspace_size = workspace_end - workspace_start; } bist(); for (init_entry = __RedBoot_INIT_TAB__; init_entry != &__RedBoot_INIT_TAB_END__; init_entry++) { (*init_entry->fun)(); } #ifdef CYGPKG_COMPRESS_ZLIB #define ZLIB_COMPRESSION_OVERHEAD 0xB400 #else #define ZLIB_COMPRESSION_OVERHEAD 0 #endif user_ram_start = workspace_start + ZLIB_COMPRESSION_OVERHEAD; user_ram_end = workspace_end; do_version(0,0); #ifdef CYGFUN_REDBOOT_BOOT_SCRIPT # ifdef CYGDAT_REDBOOT_DEFAULT_BOOT_SCRIPT if (!script) { script = CYGDAT_REDBOOT_DEFAULT_BOOT_SCRIPT; # ifndef CYGSEM_REDBOOT_FLASH_CONFIG script_timeout = CYGNUM_REDBOOT_BOOT_SCRIPT_DEFAULT_TIMEOUT; # endif } # endif if (script) { // Give the guy a chance to abort any boot script unsigned char *hold_script = script; int script_timeout_ms = script_timeout * CYGNUM_REDBOOT_BOOT_SCRIPT_TIMEOUT_RESOLUTION; printf("== Executing boot script in %d.%03d seconds - enter ^C to abort\n", script_timeout_ms/1000, script_timeout_ms%1000); script = (unsigned char *)0; res = _GETS_CTRLC; // Treat 0 timeout as ^C while (script_timeout_ms >= CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT) { res = gets(line, sizeof(line), CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT); if (res >= _GETS_OK) { printf("== Executing boot script in %d.%03d seconds - enter ^C to abort\n", script_timeout_ms/1000, script_timeout_ms%1000); continue; // Ignore anything but ^C } if (res != _GETS_TIMEOUT) break; script_timeout_ms -= CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT; } if (res == _GETS_CTRLC) { script = (unsigned char *)0; // Disable script } else { script = hold_script; // Re-enable script } } #endif while (true) { if (prompt) { printf("RedBoot> "); prompt = false; } res = gets(line, sizeof(line), CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT); if (res == _GETS_TIMEOUT) { // No input arrived } else { if (res == _GETS_GDB) { int dbgchan; // Special case of '$' - need to start GDB protocol gdb_active = true; CYGACC_CALL_IF_SET_CONSOLE_COMM(cur); #ifdef HAL_ARCH_PROGRAM_NEW_STACK HAL_ARCH_PROGRAM_NEW_STACK(breakpoint); #else breakpoint(); // Get GDB stubs started, with a proper environment, etc. #endif dbgchan = CYGACC_CALL_IF_SET_DEBUG_COMM(CYGNUM_CALL_IF_SET_COMM_ID_QUERY_CURRENT); CYGACC_CALL_IF_SET_CONSOLE_COMM(dbgchan); } else { if (strlen(line) > 0) { if ((cmd = parse(line, &argc, &argv[0])) != (struct cmd *)0) { (cmd->fun)(argc, argv); } else { printf("** Error: Illegal command: \"%s\"\n", argv[0]); } } prompt = true; } } } } void do_caches(int argc, char *argv[]) { unsigned long oldints; int dcache_on, icache_on; if (argc == 2) { if (strcmpci(argv[1], "on") == 0) { HAL_DISABLE_INTERRUPTS(oldints); HAL_ICACHE_ENABLE(); HAL_DCACHE_ENABLE(); HAL_RESTORE_INTERRUPTS(oldints); } else if (strcmpci(argv[1], "off") == 0) { HAL_DISABLE_INTERRUPTS(oldints); HAL_DCACHE_SYNC(); HAL_ICACHE_DISABLE(); HAL_DCACHE_DISABLE(); HAL_DCACHE_SYNC(); HAL_ICACHE_INVALIDATE_ALL(); HAL_DCACHE_INVALIDATE_ALL(); HAL_RESTORE_INTERRUPTS(oldints); } else { printf("Invalid cache mode: %s\n", argv[1]); } } else { HAL_DCACHE_IS_ENABLED(dcache_on); HAL_ICACHE_IS_ENABLED(icache_on); printf("Data cache: %s, Instruction cache: %s\n", dcache_on?"On":"Off", icache_on?"On":"Off"); } } void do_help(int argc, char *argv[]) { struct cmd *cmd; char *which = (char *)0; bool show; int len = 0; if (!scan_opts(argc, argv, 1, 0, 0, (void **)&which, OPTION_ARG_TYPE_STR, "<topic>")) { printf("Invalid argument\n"); return; } if (which) { len = strlen(which); } cmd = __RedBoot_CMD_TAB__; while (cmd != &__RedBoot_CMD_TAB_END__) { show = true; if (which && (strncmpci(which, cmd->str, len) != 0)) { show = false; } if (show) { printf("%s\n %s %s\n", cmd->help, cmd->str, cmd->usage); } cmd++; } return; } void do_dump(int argc, char *argv[]) { struct option_info opts[2]; unsigned long base, len; bool base_set, len_set; init_opts(&opts[0], 'b', true, OPTION_ARG_TYPE_NUM, (void **)&base, (bool *)&base_set, "base address"); init_opts(&opts[1], 'l', true, OPTION_ARG_TYPE_NUM, (void **)&len, (bool *)&len_set, "length"); if (!scan_opts(argc, argv, 1, opts, 2, 0, 0, "")) { return; } if (!base_set) { printf("Dump what [location]?\n"); return; } if (!len_set) { len = 32; } dump_buf((void *)base, len); } void do_cksum(int argc, char *argv[]) { // Compute a CRC, using the POSIX 1003 definition extern unsigned long posix_crc32(unsigned char *s, int len); struct option_info opts[2]; unsigned long base, len, crc; bool base_set, len_set; init_opts(&opts[0], 'b', true, OPTION_ARG_TYPE_NUM, (void **)&base, (bool *)&base_set, "base address"); init_opts(&opts[1], 'l', true, OPTION_ARG_TYPE_NUM, (void **)&len, (bool *)&len_set, "length"); if (!scan_opts(argc, argv, 1, opts, 2, 0, 0, "")) { return; } if (!base_set || !len_set) { printf("usage: cksum -b <addr> -l <length>\n"); return; } crc = posix_crc32((unsigned char *)base, len); printf("POSIX cksum = 0x%08lx (%lu)\n", crc, crc); } void do_go(int argc, char *argv[]) { typedef void code_fun(void); unsigned long entry; unsigned long oldints; code_fun *fun; bool wait_time_set; int wait_time, res; struct option_info opts[1]; char line[8]; entry = (unsigned long)entry_address; // Default from last 'load' operation init_opts(&opts[0], 'w', true, OPTION_ARG_TYPE_NUM, (void **)&wait_time, (bool *)&wait_time_set, "wait timeout"); if (!scan_opts(argc, argv, 1, opts, 1, (void *)&entry, OPTION_ARG_TYPE_NUM, "starting address")) { return; } if (wait_time_set) { int script_timeout_ms = wait_time * 1000; #ifdef CYGSEM_REDBOOT_FLASH_CONFIG unsigned char *hold_script = script; script = (unsigned char *)0; #endif printf("About to start execution at %p - abort with ^C within %d seconds\n", (void *)entry, wait_time); while (script_timeout_ms >= CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT) { res = gets(line, sizeof(line), CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT); if (res == _GETS_CTRLC) { #ifdef CYGSEM_REDBOOT_FLASH_CONFIG script = hold_script; // Re-enable script #endif return; } script_timeout_ms -= CYGNUM_REDBOOT_CLI_IDLE_TIMEOUT; } } fun = (code_fun *)entry; HAL_DISABLE_INTERRUPTS(oldints); HAL_DCACHE_SYNC(); HAL_ICACHE_DISABLE(); HAL_DCACHE_DISABLE(); HAL_DCACHE_SYNC(); HAL_ICACHE_INVALIDATE_ALL(); HAL_DCACHE_INVALIDATE_ALL(); #ifdef HAL_ARCH_PROGRAM_NEW_STACK HAL_ARCH_PROGRAM_NEW_STACK(fun); #else (*fun)(); #endif } #ifdef HAL_PLATFORM_RESET void do_reset(int argc, char *argv[]) { printf("... Resetting."); CYGACC_CALL_IF_DELAY_US(2*100000); printf("\n"); CYGACC_CALL_IF_DELAY_US(50000); HAL_PLATFORM_RESET(); printf("!! oops, RESET not working on this platform\n"); } #endif #ifdef CYGSEM_REDBOOT_VARIBLE_BAUD_RATE void set_console_baud_rate(int rate) { hal_virtual_comm_table_t *__chan; int ret; if (rate != CYGNUM_HAL_VIRTUAL_VECTOR_CONSOLE_CHANNEL_BAUD) { CYGACC_CALL_IF_SET_CONSOLE_COMM(CYGNUM_CALL_IF_SET_COMM_ID_QUERY_CURRENT); __chan = CYGACC_CALL_IF_CONSOLE_PROCS(); ret = CYGACC_COMM_IF_CONTROL(*__chan, __COMMCTL_SETBAUD, rate); if (ret <= 0) { printf("Failed\n"); } } } void do_baud_rate(int argc, char *argv[]) { int new_rate, ret; bool new_rate_set; hal_virtual_comm_table_t *__chan; struct option_info opts[1]; init_opts(&opts[0], 'b', true, OPTION_ARG_TYPE_NUM, (void **)&new_rate, (bool *)&new_rate_set, "new baud rate"); if (!scan_opts(argc, argv, 1, opts, 1, 0, 0, "")) { return; } CYGACC_CALL_IF_SET_CONSOLE_COMM(CYGNUM_CALL_IF_SET_COMM_ID_QUERY_CURRENT); __chan = CYGACC_CALL_IF_CONSOLE_PROCS(); if (new_rate_set) { set_console_baud_rate(new_rate); } else { ret = CYGACC_COMM_IF_CONTROL(*__chan, __COMMCTL_GETBAUD); printf("Baud rate = "); if (ret <= 0) { printf("unknown\n"); } else { printf("%d\n", ret); } } } #endif // // [Null] Builtin [Power On] Self Test // void bist(void) CYGBLD_ATTRIB_WEAK; void bist(void) { }
