ROM flash size can changed with detected size, fixed #283.
This commit is contained in:
parent
f7eed2b53b
commit
5c84359b5c
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@ -29,7 +29,7 @@
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static int node_restart( lua_State* L )
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{
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system_restart();
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return 0;
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return 0;
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}
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// Lua: dsleep( us, option )
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@ -56,7 +56,7 @@ static int node_deepsleep( lua_State* L )
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else
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system_deep_sleep( us );
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}
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return 0;
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return 0;
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}
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// Lua: dsleep_set_options
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@ -80,14 +80,14 @@ static int node_info( lua_State* L )
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lua_pushinteger(L, NODE_VERSION_REVISION);
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lua_pushinteger(L, system_get_chip_id()); // chip id
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lua_pushinteger(L, spi_flash_get_id()); // flash id
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#if defined(FLASH_SAFE_API)
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#if defined(FLASH_SAFE_API)
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lua_pushinteger(L, flash_safe_get_size_byte() / 1024); // flash size in KB
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#else
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#else
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lua_pushinteger(L, flash_rom_get_size_byte() / 1024); // flash size in KB
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#endif // defined(FLASH_SAFE_API)
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#endif // defined(FLASH_SAFE_API)
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lua_pushinteger(L, flash_rom_get_mode());
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lua_pushinteger(L, flash_rom_get_speed());
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return 8;
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return 8;
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}
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// Lua: chipid()
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@ -95,7 +95,7 @@ static int node_chipid( lua_State* L )
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{
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uint32_t id = system_get_chip_id();
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lua_pushinteger(L, id);
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return 1;
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return 1;
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}
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// Lua: readvdd33()
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static int node_readvdd33( lua_State* L )
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@ -110,28 +110,23 @@ static int node_flashid( lua_State* L )
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{
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uint32_t id = spi_flash_get_id();
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lua_pushinteger( L, id );
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return 1;
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return 1;
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}
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// Lua: flashsize()
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static int node_flashsize( lua_State* L )
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{
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//uint32_t sz = 0;
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//if(lua_type(L, 1) == LUA_TNUMBER)
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//{
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// sz = luaL_checkinteger(L, 1);
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// if(sz > 0)
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// {
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// flash_set_size_byte(sz);
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// }
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//}
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if (lua_type(L, 1) == LUA_TNUMBER)
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{
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flash_rom_set_size_byte(luaL_checkinteger(L, 1));
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}
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#if defined(FLASH_SAFE_API)
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uint32_t sz = flash_safe_get_size_byte();
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#else
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uint32_t sz = flash_rom_get_size_byte();
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#endif // defined(FLASH_SAFE_API)
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lua_pushinteger( L, sz );
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return 1;
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return 1;
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}
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// Lua: heap()
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@ -139,7 +134,7 @@ static int node_heap( lua_State* L )
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{
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uint32_t sz = system_get_free_heap_size();
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lua_pushinteger(L, sz);
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return 1;
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return 1;
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}
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static lua_State *gL = NULL;
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@ -154,7 +149,7 @@ static int node_led( lua_State* L )
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if ( lua_isnumber(L, 1) )
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{
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low = lua_tointeger(L, 1);
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if ( low < 0 ){
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if ( low < 0 ) {
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return luaL_error( L, "wrong arg type" );
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}
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} else {
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@ -163,7 +158,7 @@ static int node_led( lua_State* L )
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if ( lua_isnumber(L, 2) )
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{
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high = lua_tointeger(L, 2);
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if ( high < 0 ){
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if ( high < 0 ) {
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return luaL_error( L, "wrong arg type" );
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}
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} else {
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@ -171,14 +166,14 @@ static int node_led( lua_State* L )
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}
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led_high_count = (uint32_t)high / READLINE_INTERVAL;
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led_low_count = (uint32_t)low / READLINE_INTERVAL;
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return 0;
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return 0;
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}
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static int long_key_ref = LUA_NOREF;
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static int short_key_ref = LUA_NOREF;
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void default_long_press(void *arg){
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if(led_high_count == 12 && led_low_count == 12){
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void default_long_press(void *arg) {
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if (led_high_count == 12 && led_low_count == 12) {
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led_low_count = led_high_count = 6;
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} else {
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led_low_count = led_high_count = 12;
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@ -188,32 +183,32 @@ void default_long_press(void *arg){
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// NODE_DBG("default_long_press is called. hc: %d, lc: %d\n", led_high_count, led_low_count);
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}
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void default_short_press(void *arg){
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void default_short_press(void *arg) {
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system_restart();
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}
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void key_long_press(void *arg){
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void key_long_press(void *arg) {
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NODE_DBG("key_long_press is called.\n");
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if(long_key_ref == LUA_NOREF){
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if (long_key_ref == LUA_NOREF) {
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default_long_press(arg);
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return;
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}
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if(!gL)
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if (!gL)
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return;
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lua_rawgeti(gL, LUA_REGISTRYINDEX, long_key_ref);
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lua_call(gL, 0, 0);
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}
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void key_short_press(void *arg){
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void key_short_press(void *arg) {
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NODE_DBG("key_short_press is called.\n");
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if(short_key_ref == LUA_NOREF){
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if (short_key_ref == LUA_NOREF) {
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default_short_press(arg);
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return;
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}
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if(!gL)
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if (!gL)
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return;
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lua_rawgeti(gL, LUA_REGISTRYINDEX, short_key_ref);
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lua_call(gL, 0, 0);
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lua_call(gL, 0, 0);
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}
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// Lua: key(type, function)
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@ -221,32 +216,32 @@ static int node_key( lua_State* L )
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{
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int *ref = NULL;
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size_t sl;
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const char *str = luaL_checklstring( L, 1, &sl );
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if (str == NULL)
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return luaL_error( L, "wrong arg type" );
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if(sl == 5 && c_strcmp(str, "short") == 0){
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if (sl == 5 && c_strcmp(str, "short") == 0) {
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ref = &short_key_ref;
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}else if(sl == 4 && c_strcmp(str, "long") == 0){
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} else if (sl == 4 && c_strcmp(str, "long") == 0) {
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ref = &long_key_ref;
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}else{
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} else {
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ref = &short_key_ref;
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}
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gL = L;
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// luaL_checkanyfunction(L, 2);
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if (lua_type(L, 2) == LUA_TFUNCTION || lua_type(L, 2) == LUA_TLIGHTFUNCTION){
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if (lua_type(L, 2) == LUA_TFUNCTION || lua_type(L, 2) == LUA_TLIGHTFUNCTION) {
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lua_pushvalue(L, 2); // copy argument (func) to the top of stack
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if(*ref != LUA_NOREF)
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if (*ref != LUA_NOREF)
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luaL_unref(L, LUA_REGISTRYINDEX, *ref);
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*ref = luaL_ref(L, LUA_REGISTRYINDEX);
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} else { // unref the key press function
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if(*ref != LUA_NOREF)
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if (*ref != LUA_NOREF)
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luaL_unref(L, LUA_REGISTRYINDEX, *ref);
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*ref = LUA_NOREF;
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*ref = LUA_NOREF;
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}
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return 0;
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return 0;
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}
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#endif
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@ -256,15 +251,15 @@ extern void dojob(lua_Load *load);
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// Lua: input("string")
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static int node_input( lua_State* L )
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{
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size_t l=0;
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size_t l = 0;
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const char *s = luaL_checklstring(L, 1, &l);
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if (s != NULL && l > 0 && l < LUA_MAXINPUT - 1)
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{
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lua_Load *load = &gLoad;
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if(load->line_position == 0){
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if (load->line_position == 0) {
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c_memcpy(load->line, s, l);
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load->line[l+1] = '\0';
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load->line_position = c_strlen(load->line)+1;
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load->line[l + 1] = '\0';
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load->line_position = c_strlen(load->line) + 1;
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load->done = 1;
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NODE_DBG("Get command:\n");
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NODE_DBG(load->line); // buggy here
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@ -279,18 +274,18 @@ static int node_input( lua_State* L )
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static int output_redir_ref = LUA_NOREF;
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static int serial_debug = 1;
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void output_redirect(const char *str){
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void output_redirect(const char *str) {
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// if(c_strlen(str)>=TX_BUFF_SIZE){
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// NODE_ERR("output too long.\n");
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// return;
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// }
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if(output_redir_ref == LUA_NOREF || !gL){
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if (output_redir_ref == LUA_NOREF || !gL) {
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uart0_sendStr(str);
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return;
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}
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if(serial_debug!=0){
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if (serial_debug != 0) {
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uart0_sendStr(str);
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}
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@ -304,15 +299,15 @@ static int node_output( lua_State* L )
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{
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gL = L;
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// luaL_checkanyfunction(L, 1);
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if (lua_type(L, 1) == LUA_TFUNCTION || lua_type(L, 1) == LUA_TLIGHTFUNCTION){
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if (lua_type(L, 1) == LUA_TFUNCTION || lua_type(L, 1) == LUA_TLIGHTFUNCTION) {
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lua_pushvalue(L, 1); // copy argument (func) to the top of stack
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if(output_redir_ref != LUA_NOREF)
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if (output_redir_ref != LUA_NOREF)
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luaL_unref(L, LUA_REGISTRYINDEX, output_redir_ref);
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output_redir_ref = luaL_ref(L, LUA_REGISTRYINDEX);
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} else { // unref the key press function
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if(output_redir_ref != LUA_NOREF)
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if (output_redir_ref != LUA_NOREF)
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luaL_unref(L, LUA_REGISTRYINDEX, output_redir_ref);
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output_redir_ref = LUA_NOREF;
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output_redir_ref = LUA_NOREF;
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serial_debug = 1;
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return 0;
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}
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@ -320,26 +315,26 @@ static int node_output( lua_State* L )
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if ( lua_isnumber(L, 2) )
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{
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serial_debug = lua_tointeger(L, 2);
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if(serial_debug!=0)
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if (serial_debug != 0)
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serial_debug = 1;
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} else {
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serial_debug = 1; // default to 1
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}
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return 0;
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return 0;
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}
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static int writer(lua_State* L, const void* p, size_t size, void* u)
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{
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UNUSED(L);
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int file_fd = *( (int *)u );
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if((FS_OPEN_OK - 1)==file_fd)
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if ((FS_OPEN_OK - 1) == file_fd)
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return 1;
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NODE_DBG("get fd:%d,size:%d\n",file_fd,size);
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if(size!=0 && (size!=fs_write(file_fd, (const char *)p, size)) )
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NODE_DBG("get fd:%d,size:%d\n", file_fd, size);
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if (size != 0 && (size != fs_write(file_fd, (const char *)p, size)) )
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return 1;
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NODE_DBG("write fd:%d,size:%d\n",file_fd,size);
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NODE_DBG("write fd:%d,size:%d\n", file_fd, size);
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return 0;
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}
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@ -351,45 +346,45 @@ static int node_compile( lua_State* L )
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int file_fd = FS_OPEN_OK - 1;
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size_t len;
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const char *fname = luaL_checklstring( L, 1, &len );
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if( len > FS_NAME_MAX_LENGTH )
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if ( len > FS_NAME_MAX_LENGTH )
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return luaL_error(L, "filename too long");
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char output[FS_NAME_MAX_LENGTH];
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c_strcpy(output, fname);
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// check here that filename end with ".lua".
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if(len<4 || (c_strcmp( output+len-4,".lua")!=0) )
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if (len < 4 || (c_strcmp( output + len - 4, ".lua") != 0) )
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return luaL_error(L, "not a .lua file");
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output[c_strlen(output)-2] = 'c';
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output[c_strlen(output)-1] = '\0';
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output[c_strlen(output) - 2] = 'c';
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output[c_strlen(output) - 1] = '\0';
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NODE_DBG(output);
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NODE_DBG("\n");
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if (luaL_loadfsfile(L,fname)!=0){
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return luaL_error(L, lua_tostring(L,-1));
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if (luaL_loadfsfile(L, fname) != 0) {
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return luaL_error(L, lua_tostring(L, -1));
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}
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f = toproto(L,-1);
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f = toproto(L, -1);
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int stripping = 1; /* strip debug information? */
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file_fd = fs_open(output, fs_mode2flag("w+"));
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if(file_fd < FS_OPEN_OK)
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if (file_fd < FS_OPEN_OK)
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{
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return luaL_error(L, "cannot open/write to file");
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}
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lua_lock(L);
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int result=luaU_dump(L,f,writer,&file_fd,stripping);
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int result = luaU_dump(L, f, writer, &file_fd, stripping);
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lua_unlock(L);
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fs_flush(file_fd);
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fs_close(file_fd);
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file_fd = FS_OPEN_OK - 1;
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if (result==LUA_ERR_CC_INTOVERFLOW){
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if (result == LUA_ERR_CC_INTOVERFLOW) {
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return luaL_error(L, "value too big or small for target integer type");
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}
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if (result==LUA_ERR_CC_NOTINTEGER){
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if (result == LUA_ERR_CC_NOTINTEGER) {
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return luaL_error(L, "target lua_Number is integral but fractional value found");
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}
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@ -399,7 +394,7 @@ static int node_compile( lua_State* L )
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// Module function map
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#define MIN_OPT_LEVEL 2
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#include "lrodefs.h"
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const LUA_REG_TYPE node_map[] =
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const LUA_REG_TYPE node_map[] =
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{
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{ LSTRKEY( "restart" ), LFUNCVAL( node_restart ) },
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{ LSTRKEY( "dsleep" ), LFUNCVAL( node_deepsleep ) },
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@ -416,7 +411,7 @@ const LUA_REG_TYPE node_map[] =
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{ LSTRKEY( "output" ), LFUNCVAL( node_output ) },
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{ LSTRKEY( "readvdd33" ), LFUNCVAL( node_readvdd33) },
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{ LSTRKEY( "compile" ), LFUNCVAL( node_compile) },
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// Combined to dsleep(us, option)
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// Combined to dsleep(us, option)
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// { LSTRKEY( "dsleepsetoption" ), LFUNCVAL( node_deepsleep_setoption) },
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#if LUA_OPTIMIZE_MEMORY > 0
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@ -149,27 +149,21 @@ bool flash_rom_set_size_type(uint8_t size)
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// Dangerous, here are dinosaur infested!!!!!
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// Reboot required!!!
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// If you don't know what you're doing, your nodemcu may turn into stone ...
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#if defined(FLASH_SAFE_API)
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NODE_DBG("\nBEGIN SET FLASH HEADER\n");
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uint8_t data[SPI_FLASH_SEC_SIZE] ICACHE_STORE_ATTR;
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flash_safe_read(0, (uint32 *)data, sizeof(data));
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SPIFlashInfo *p_spi_flash_info = (SPIFlashInfo *)(data);
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p_spi_flash_info->size = size;
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flash_safe_erase_sector(0);
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flash_safe_write(0, (uint32 *)data, sizeof(data));
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// TODO: CHECKSUM Firmware
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//p_spi_flash_info = flash_rom_getinfo();
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//p_spi_flash_info->size = size;
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#else
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uint8_t data[SPI_FLASH_SEC_SIZE] ICACHE_STORE_ATTR;
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spi_flash_read(0, (uint32 *)data, sizeof(data));
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SPIFlashInfo *p_spi_flash_info = (SPIFlashInfo *)(data);
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p_spi_flash_info->size = size;
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spi_flash_erase_sector(0);
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spi_flash_write(0, (uint32 *)data, sizeof(data));
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// TODO: CHECKSUM Firmware
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//p_spi_flash_info = flash_rom_getinfo();
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//p_spi_flash_info->size = size;
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#endif // defined(FLASH_SAFE_API)
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if (SPI_FLASH_RESULT_OK == spi_flash_read(0, (uint32 *)data, SPI_FLASH_SEC_SIZE))
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||||
{
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||||
((SPIFlashInfo *)(&data[0]))->size = size;
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||||
if (SPI_FLASH_RESULT_OK == spi_flash_erase_sector(0 * SPI_FLASH_SEC_SIZE))
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{
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NODE_DBG("\nERASE SUCCESS\n");
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}
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if (SPI_FLASH_RESULT_OK == spi_flash_write(0, (uint32 *)data, SPI_FLASH_SEC_SIZE))
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{
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NODE_DBG("\nWRITE SUCCESS, %u\n", size);
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}
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}
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NODE_DBG("\nEND SET FLASH HEADER\n");
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return true;
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}
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||||
|
@ -207,6 +201,16 @@ bool flash_rom_set_size_byte(uint32_t size)
|
|||
flash_size = SIZE_32MBIT;
|
||||
flash_rom_set_size_type(flash_size);
|
||||
break;
|
||||
case 8 * 1024 * 1024:
|
||||
// 64Mbit, 8MByte
|
||||
flash_size = SIZE_64MBIT;
|
||||
flash_rom_set_size_type(flash_size);
|
||||
break;
|
||||
case 16 * 1024 * 1024:
|
||||
// 128Mbit, 16MByte
|
||||
flash_size = SIZE_128MBIT;
|
||||
flash_rom_set_size_type(flash_size);
|
||||
break;
|
||||
default:
|
||||
// Unknown flash size.
|
||||
result = false;
|
||||
|
@ -272,6 +276,46 @@ uint32_t flash_rom_get_speed(void)
|
|||
return speed;
|
||||
}
|
||||
|
||||
bool flash_rom_set_speed(uint32_t speed)
|
||||
{
|
||||
// Dangerous, here are dinosaur infested!!!!!
|
||||
// Reboot required!!!
|
||||
// If you don't know what you're doing, your nodemcu may turn into stone ...
|
||||
NODE_DBG("\nBEGIN SET FLASH HEADER\n");
|
||||
uint8_t data[SPI_FLASH_SEC_SIZE] ICACHE_STORE_ATTR;
|
||||
uint8_t speed_type = SPEED_40MHZ;
|
||||
if (speed < 26700000)
|
||||
{
|
||||
speed_type = SPEED_20MHZ;
|
||||
}
|
||||
else if (speed < 40000000)
|
||||
{
|
||||
speed_type = SPEED_26MHZ;
|
||||
}
|
||||
else if (speed < 80000000)
|
||||
{
|
||||
speed_type = SPEED_40MHZ;
|
||||
}
|
||||
else if (speed >= 80000000)
|
||||
{
|
||||
speed_type = SPEED_80MHZ;
|
||||
}
|
||||
if (SPI_FLASH_RESULT_OK == spi_flash_read(0, (uint32 *)data, SPI_FLASH_SEC_SIZE))
|
||||
{
|
||||
((SPIFlashInfo *)(&data[0]))->speed = speed_type;
|
||||
if (SPI_FLASH_RESULT_OK == spi_flash_erase_sector(0 * SPI_FLASH_SEC_SIZE))
|
||||
{
|
||||
NODE_DBG("\nERASE SUCCESS\n");
|
||||
}
|
||||
if (SPI_FLASH_RESULT_OK == spi_flash_write(0, (uint32 *)data, SPI_FLASH_SEC_SIZE))
|
||||
{
|
||||
NODE_DBG("\nWRITE SUCCESS, %u\n", speed_type);
|
||||
}
|
||||
}
|
||||
NODE_DBG("\nEND SET FLASH HEADER\n");
|
||||
return true;
|
||||
}
|
||||
|
||||
bool flash_init_data_written(void)
|
||||
{
|
||||
// FLASH SEC - 4
|
||||
|
@ -356,3 +400,28 @@ uint8_t byte_of_aligned_array(const uint8_t *aligned_array, uint32_t index)
|
|||
uint8_t *p = (uint8_t *) (&v);
|
||||
return p[ (index % 4) ];
|
||||
}
|
||||
|
||||
// uint8_t flash_rom_get_checksum(void)
|
||||
// {
|
||||
// // SPIFlashInfo spi_flash_info ICACHE_STORE_ATTR = flash_rom_getinfo();
|
||||
// // uint32_t address = sizeof(spi_flash_info) + spi_flash_info.segment_size;
|
||||
// // uint32_t address_aligned_4bytes = (address + 3) & 0xFFFFFFFC;
|
||||
// // uint8_t buffer[64] = {0};
|
||||
// // spi_flash_read(address, (uint32 *) buffer, 64);
|
||||
// // uint8_t i = 0;
|
||||
// // c_printf("\nBEGIN DUMP\n");
|
||||
// // for (i = 0; i < 64; i++)
|
||||
// // {
|
||||
// // c_printf("%02x," , buffer[i]);
|
||||
// // }
|
||||
// // i = (address + 0x10) & 0x10 - 1;
|
||||
// // c_printf("\nSIZE:%d CHECK SUM:%02x\n", spi_flash_info.segment_size, buffer[i]);
|
||||
// // c_printf("\nEND DUMP\n");
|
||||
// // return buffer[0];
|
||||
// return 0;
|
||||
// }
|
||||
|
||||
// uint8_t flash_rom_calc_checksum(void)
|
||||
// {
|
||||
// return 0;
|
||||
// }
|
|
@ -16,10 +16,10 @@
|
|||
|
||||
#define FLASH_SIZE_256KBYTE (FLASH_SIZE_2MBIT / 8)
|
||||
#define FLASH_SIZE_512KBYTE (FLASH_SIZE_4MBIT / 8)
|
||||
#define FLASH_SIZE_1MBYTE (FLASH_SIZE_8MBIT / 8)
|
||||
#define FLASH_SIZE_1MBYTE (FLASH_SIZE_8MBIT / 8)
|
||||
#define FLASH_SIZE_2MBYTE (FLASH_SIZE_16MBIT / 8)
|
||||
#define FLASH_SIZE_4MBYTE (FLASH_SIZE_32MBIT / 8)
|
||||
#define FLASH_SIZE_8MBYTE (FLASH_SIZE_64MBIT / 8)
|
||||
#define FLASH_SIZE_8MBYTE (FLASH_SIZE_64MBIT / 8)
|
||||
#define FLASH_SIZE_16MBYTE (FLASH_SIZE_128MBIT/ 8)
|
||||
|
||||
#define FLASH_SAFEMODE_ENTER() \
|
||||
|
@ -57,8 +57,8 @@ do { \
|
|||
|
||||
typedef struct
|
||||
{
|
||||
uint8_t magic_e9;
|
||||
uint8_t segments;
|
||||
uint8_t header_magic;
|
||||
uint8_t segment_count;
|
||||
enum
|
||||
{
|
||||
MODE_QIO = 0,
|
||||
|
@ -83,6 +83,9 @@ typedef struct
|
|||
SIZE_64MBIT = 5,
|
||||
SIZE_128MBIT = 6,
|
||||
} size : 4;
|
||||
uint32_t entry_point;
|
||||
uint32_t memory_offset;
|
||||
uint32_t segment_size;
|
||||
} ICACHE_STORE_TYPEDEF_ATTR SPIFlashInfo;
|
||||
|
||||
uint32_t flash_detect_size_byte(void);
|
||||
|
@ -104,5 +107,7 @@ bool flash_init_data_default(void);
|
|||
bool flash_init_data_blank(void);
|
||||
bool flash_self_destruct(void);
|
||||
uint8_t byte_of_aligned_array(const uint8_t* aligned_array, uint32_t index);
|
||||
// uint8_t flash_rom_get_checksum(void);
|
||||
// uint8_t flash_rom_calc_checksum(void);
|
||||
|
||||
#endif // __FLASH_API_H__
|
||||
|
|
|
@ -60,7 +60,19 @@ void nodemcu_init(void)
|
|||
NODE_DBG("Can not init platform for modules.\n");
|
||||
return;
|
||||
}
|
||||
|
||||
|
||||
#if defined(FLASH_SAFE_API)
|
||||
if( flash_safe_get_size_byte() != flash_rom_get_size_byte()) {
|
||||
NODE_ERR("Self adjust flash size.\n");
|
||||
// Fit hardware real flash size.
|
||||
flash_rom_set_size_byte(flash_safe_get_size_byte());
|
||||
// Flash init data at FLASHSIZE - 0x04000 Byte.
|
||||
flash_init_data_default();
|
||||
// Flash blank data at FLASHSIZE - 0x02000 Byte.
|
||||
flash_init_data_blank();
|
||||
}
|
||||
#endif // defined(FLASH_SAFE_API)
|
||||
|
||||
if( !flash_init_data_written() ){
|
||||
NODE_ERR("Restore init data.\n");
|
||||
// Flash init data at FLASHSIZE - 0x04000 Byte.
|
||||
|
|
Loading…
Reference in New Issue