Add a few parameters needed for parallel programming: assignment of
PAGEL and BS2 signals and the disposition of the reset pin ('dedicated' or 'io'). git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk@202 81a1dc3b-b13d-400b-aceb-764788c761c2
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@ -57,6 +57,7 @@ AVRPART * avr_new_part(void)
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p->id[0] = 0;
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p->id[0] = 0;
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p->desc[0] = 0;
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p->desc[0] = 0;
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p->reset_disposition = RESET_DEDICATED;
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p->mem = lcreat(NULL, 0);
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p->mem = lcreat(NULL, 0);
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@ -1053,6 +1054,15 @@ void avr_mem_display(char * prefix, FILE * f, AVRMEM * m, int type,
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}
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}
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char * reset_disp_str(int r)
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{
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switch (r) {
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case RESET_DEDICATED : return "dedicated";
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case RESET_IO : return "possible i/o";
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default : return "<invalid>";
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}
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}
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void avr_display(FILE * f, AVRPART * p, char * prefix, int verbose)
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void avr_display(FILE * f, AVRPART * p, char * prefix, int verbose)
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{
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{
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@ -1063,11 +1073,17 @@ void avr_display(FILE * f, AVRPART * p, char * prefix, int verbose)
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AVRMEM * m;
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AVRMEM * m;
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fprintf(f,
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fprintf(f,
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"%sAVR Part : %s\n"
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"%sAVR Part : %s\n"
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"%sChip Erase delay : %d us\n"
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"%sChip Erase delay : %d us\n"
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"%sMemory Detail :\n\n",
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"%sPAGEL : P%02X\n"
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"%sBS2 : P%02X\n"
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"%sRESET disposition : %s\n"
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"%sMemory Detail :\n\n",
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prefix, p->desc,
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prefix, p->desc,
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prefix, p->chip_erase_delay,
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prefix, p->chip_erase_delay,
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prefix, p->pagel,
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prefix, p->bs2,
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prefix, reset_disp_str(p->reset_disposition),
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prefix);
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prefix);
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px = prefix;
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px = prefix;
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@ -1082,6 +1082,9 @@ part
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desc = "ATMEGA128";
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desc = "ATMEGA128";
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devicecode = 0xB2;
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devicecode = 0xB2;
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chip_erase_delay = 9000;
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chip_erase_delay = 9000;
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pagel = 0xD7;
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bs2 = 0xA0;
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reset = dedicated;
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pgm_enable = "1 0 1 0 1 1 0 0 0 1 0 1 0 0 1 1",
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pgm_enable = "1 0 1 0 1 1 0 0 0 1 0 1 0 0 1 1",
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"x x x x x x x x x x x x x x x x";
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"x x x x x x x x x x x x x x x x";
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@ -1089,6 +1092,8 @@ part
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"x x x x x x x x x x x x x x x x";
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"x x x x x x x x x x x x x x x x";
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memory "eeprom"
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memory "eeprom"
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paged = no; /* leave this "no" */
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page_size = 8; /* for parallel programming */
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size = 4096;
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size = 4096;
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min_write_delay = 9000;
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min_write_delay = 9000;
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max_write_delay = 9000;
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max_write_delay = 9000;
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@ -51,6 +51,11 @@ enum {
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AVR_CMDBIT_OUTPUT /* this bit is an output bit */
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AVR_CMDBIT_OUTPUT /* this bit is an output bit */
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};
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};
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enum { /* these are assigned to reset_disposition of AVRPART */
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RESET_DEDICATED, /* reset pin is dedicated */
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RESET_IO /* reset pin might be configured as an I/O pin */
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};
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/*
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/*
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* serial programming instruction bit specifications
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* serial programming instruction bit specifications
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*/
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*/
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@ -72,6 +77,10 @@ typedef struct avrpart {
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char id[AVR_IDLEN]; /* short part name */
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char id[AVR_IDLEN]; /* short part name */
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int devicecode; /* Atmel STK500 device code */
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int devicecode; /* Atmel STK500 device code */
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int chip_erase_delay; /* microseconds */
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int chip_erase_delay; /* microseconds */
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unsigned char pagel; /* for parallel programming */
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unsigned char bs2; /* for parallel programming */
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int reset_disposition; /* see RESET_ enums */
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OPCODE * op[AVR_OP_MAX]; /* opcodes */
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OPCODE * op[AVR_OP_MAX]; /* opcodes */
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LISTID mem; /* avr memory definitions */
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LISTID mem; /* avr memory definitions */
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@ -62,20 +62,25 @@ static int parse_cmdbits(OPCODE * op);
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%token K_PAGE_SIZE
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%token K_PAGE_SIZE
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%token K_PAGED
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%token K_PAGED
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%token K_BS2
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%token K_BUFF
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%token K_BUFF
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%token K_CHIP_ERASE_DELAY
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%token K_CHIP_ERASE_DELAY
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%token K_DEDICATED
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%token K_DESC
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%token K_DESC
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%token K_DEVICECODE
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%token K_DEVICECODE
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%token K_EEPROM
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%token K_EEPROM
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%token K_ERRLED
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%token K_ERRLED
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%token K_FLASH
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%token K_FLASH
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%token K_ID
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%token K_ID
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%token K_IO
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%token K_LOADPAGE
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%token K_LOADPAGE
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%token K_MAX_WRITE_DELAY
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%token K_MAX_WRITE_DELAY
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%token K_MIN_WRITE_DELAY
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%token K_MIN_WRITE_DELAY
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%token K_MISO
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%token K_MISO
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%token K_MOSI
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%token K_MOSI
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%token K_NUM_PAGES
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%token K_NUM_PAGES
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%token K_PAGEL
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%token K_PAR
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%token K_PAR
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%token K_PART
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%token K_PART
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%token K_PGMLED
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%token K_PGMLED
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@ -331,6 +336,10 @@ part_parms :
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;
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;
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reset_disposition :
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K_DEDICATED | K_IO
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;
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part_parm :
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part_parm :
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K_ID TKN_EQUAL TKN_STRING
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K_ID TKN_EQUAL TKN_STRING
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{
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{
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@ -359,6 +368,28 @@ part_parm :
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free_token($3);
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free_token($3);
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} |
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} |
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K_PAGEL TKN_EQUAL TKN_NUMBER
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{
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current_part->pagel = $3->value.number;
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free_token($3);
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} |
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K_BS2 TKN_EQUAL TKN_NUMBER
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{
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current_part->bs2 = $3->value.number;
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free_token($3);
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} |
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K_RESET TKN_EQUAL reset_disposition
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{
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if ($3->primary == K_DEDICATED)
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current_part->reset_disposition = RESET_DEDICATED;
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else if ($3->primary == K_IO)
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current_part->reset_disposition = RESET_IO;
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free_token($3);
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} |
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/*
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/*
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K_EEPROM { current_mem = AVR_M_EEPROM; }
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K_EEPROM { current_mem = AVR_M_EEPROM; }
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mem_specs |
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mem_specs |
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@ -117,14 +117,17 @@ SIGN [+-]
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bank_size { yylval=NULL; return K_PAGE_SIZE; }
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bank_size { yylval=NULL; return K_PAGE_SIZE; }
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banked { yylval=NULL; return K_PAGED; }
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banked { yylval=NULL; return K_PAGED; }
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bs2 { yylval=NULL; return K_BS2; }
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buff { yylval=NULL; return K_BUFF; }
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buff { yylval=NULL; return K_BUFF; }
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chip_erase_delay { yylval=NULL; return K_CHIP_ERASE_DELAY; }
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chip_erase_delay { yylval=NULL; return K_CHIP_ERASE_DELAY; }
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dedicated { yylval=new_token(K_DEDICATED); return K_DEDICATED; }
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desc { yylval=NULL; return K_DESC; }
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desc { yylval=NULL; return K_DESC; }
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devicecode { yylval=NULL; return K_DEVICECODE; }
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devicecode { yylval=NULL; return K_DEVICECODE; }
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eeprom { yylval=NULL; return K_EEPROM; }
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eeprom { yylval=NULL; return K_EEPROM; }
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errled { yylval=NULL; return K_ERRLED; }
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errled { yylval=NULL; return K_ERRLED; }
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flash { yylval=NULL; return K_FLASH; }
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flash { yylval=NULL; return K_FLASH; }
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id { yylval=NULL; return K_ID; }
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id { yylval=NULL; return K_ID; }
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io { yylval=new_token(K_IO); return K_IO; }
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max_write_delay { yylval=NULL; return K_MAX_WRITE_DELAY; }
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max_write_delay { yylval=NULL; return K_MAX_WRITE_DELAY; }
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min_write_delay { yylval=NULL; return K_MIN_WRITE_DELAY; }
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min_write_delay { yylval=NULL; return K_MIN_WRITE_DELAY; }
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miso { yylval=NULL; return K_MISO; }
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miso { yylval=NULL; return K_MISO; }
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@ -133,6 +136,7 @@ num_banks { yylval=NULL; return K_NUM_PAGES; }
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num_pages { yylval=NULL; return K_NUM_PAGES; }
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num_pages { yylval=NULL; return K_NUM_PAGES; }
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page_size { yylval=NULL; return K_PAGE_SIZE; }
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page_size { yylval=NULL; return K_PAGE_SIZE; }
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paged { yylval=NULL; return K_PAGED; }
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paged { yylval=NULL; return K_PAGED; }
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pagel { yylval=NULL; return K_PAGEL; }
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part { yylval=NULL; return K_PART; }
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part { yylval=NULL; return K_PART; }
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pgmled { yylval=NULL; return K_PGMLED; }
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pgmled { yylval=NULL; return K_PGMLED; }
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par { yylval=NULL; return K_PAR; }
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par { yylval=NULL; return K_PAR; }
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