[trunk] update local function of pi.c with the opj_ prefix and the new opj types
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@ -43,31 +43,31 @@ Get next packet in layer-resolution-component-precinct order.
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@param pi packet iterator to modify
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@return returns false if pi pointed to the last packet or else returns true
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*/
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static opj_bool pi_next_lrcp(opj_pi_iterator_t * pi);
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static opj_bool opj_pi_next_lrcp(opj_pi_iterator_t * pi);
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/**
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Get next packet in resolution-layer-component-precinct order.
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@param pi packet iterator to modify
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@return returns false if pi pointed to the last packet or else returns true
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*/
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static opj_bool pi_next_rlcp(opj_pi_iterator_t * pi);
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static opj_bool opj_pi_next_rlcp(opj_pi_iterator_t * pi);
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/**
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Get next packet in resolution-precinct-component-layer order.
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@param pi packet iterator to modify
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@return returns false if pi pointed to the last packet or else returns true
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*/
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static opj_bool pi_next_rpcl(opj_pi_iterator_t * pi);
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static opj_bool opj_pi_next_rpcl(opj_pi_iterator_t * pi);
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/**
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Get next packet in precinct-component-resolution-layer order.
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@param pi packet iterator to modify
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@return returns false if pi pointed to the last packet or else returns true
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*/
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static opj_bool pi_next_pcrl(opj_pi_iterator_t * pi);
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static opj_bool opj_pi_next_pcrl(opj_pi_iterator_t * pi);
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/**
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Get next packet in component-precinct-resolution-layer order.
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@param pi packet iterator to modify
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@return returns false if pi pointed to the last packet or else returns true
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*/
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static opj_bool pi_next_cprl(opj_pi_iterator_t * pi);
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static opj_bool opj_pi_next_cprl(opj_pi_iterator_t * pi);
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/**
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* Updates the coding parameters if the encoding is used with Progression order changes and final (or cinema parameters are used).
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@ -156,10 +156,10 @@ OPJ_INT32 pi_check_next_level( OPJ_INT32 pos,
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==========================================================
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*/
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static opj_bool pi_next_lrcp(opj_pi_iterator_t * pi) {
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opj_bool opj_pi_next_lrcp(opj_pi_iterator_t * pi) {
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opj_pi_comp_t *comp = NULL;
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opj_pi_resolution_t *res = NULL;
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long index = 0;
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OPJ_UINT32 index = 0;
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if (!pi->first) {
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comp = &pi->comps[pi->compno];
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@ -196,10 +196,10 @@ LABEL_SKIP:;
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return OPJ_FALSE;
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}
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static opj_bool pi_next_rlcp(opj_pi_iterator_t * pi) {
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opj_bool opj_pi_next_rlcp(opj_pi_iterator_t * pi) {
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opj_pi_comp_t *comp = NULL;
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opj_pi_resolution_t *res = NULL;
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long index = 0;
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OPJ_UINT32 index = 0;
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if (!pi->first) {
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comp = &pi->comps[pi->compno];
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@ -235,22 +235,22 @@ LABEL_SKIP:;
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return OPJ_FALSE;
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}
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static opj_bool pi_next_rpcl(opj_pi_iterator_t * pi) {
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opj_bool opj_pi_next_rpcl(opj_pi_iterator_t * pi) {
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opj_pi_comp_t *comp = NULL;
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opj_pi_resolution_t *res = NULL;
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long index = 0;
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OPJ_UINT32 index = 0;
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if (!pi->first) {
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goto LABEL_SKIP;
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} else {
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int compno, resno;
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OPJ_UINT32 compno, resno;
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pi->first = 0;
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pi->dx = 0;
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pi->dy = 0;
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for (compno = 0; compno < pi->numcomps; compno++) {
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comp = &pi->comps[compno];
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for (resno = 0; resno < comp->numresolutions; resno++) {
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int dx, dy;
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OPJ_UINT32 dx, dy;
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res = &comp->resolutions[resno];
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dx = comp->dx * (1 << (res->pdx + comp->numresolutions - 1 - resno));
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dy = comp->dy * (1 << (res->pdy + comp->numresolutions - 1 - resno));
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@ -269,11 +269,11 @@ if (!pi->tp_on){
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for (pi->y = pi->poc.ty0; pi->y < pi->poc.ty1; pi->y += pi->dy - (pi->y % pi->dy)) {
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for (pi->x = pi->poc.tx0; pi->x < pi->poc.tx1; pi->x += pi->dx - (pi->x % pi->dx)) {
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for (pi->compno = pi->poc.compno0; pi->compno < pi->poc.compno1; pi->compno++) {
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int levelno;
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int trx0, try0;
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int trx1, try1;
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int rpx, rpy;
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int prci, prcj;
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OPJ_UINT32 levelno;
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OPJ_INT32 trx0, try0;
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OPJ_INT32 trx1, try1;
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OPJ_UINT32 rpx, rpy;
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OPJ_INT32 prci, prcj;
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comp = &pi->comps[pi->compno];
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if (pi->resno >= comp->numresolutions) {
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continue;
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@ -318,23 +318,23 @@ LABEL_SKIP:;
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return OPJ_FALSE;
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}
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static opj_bool pi_next_pcrl(opj_pi_iterator_t * pi) {
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opj_bool opj_pi_next_pcrl(opj_pi_iterator_t * pi) {
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opj_pi_comp_t *comp = NULL;
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opj_pi_resolution_t *res = NULL;
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long index = 0;
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OPJ_UINT32 index = 0;
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if (!pi->first) {
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comp = &pi->comps[pi->compno];
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goto LABEL_SKIP;
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} else {
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int compno, resno;
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OPJ_UINT32 compno, resno;
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pi->first = 0;
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pi->dx = 0;
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pi->dy = 0;
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for (compno = 0; compno < pi->numcomps; compno++) {
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comp = &pi->comps[compno];
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for (resno = 0; resno < comp->numresolutions; resno++) {
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int dx, dy;
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OPJ_UINT32 dx, dy;
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res = &comp->resolutions[resno];
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dx = comp->dx * (1 << (res->pdx + comp->numresolutions - 1 - resno));
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dy = comp->dy * (1 << (res->pdy + comp->numresolutions - 1 - resno));
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@ -353,12 +353,12 @@ static opj_bool pi_next_pcrl(opj_pi_iterator_t * pi) {
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for (pi->x = pi->poc.tx0; pi->x < pi->poc.tx1; pi->x += pi->dx - (pi->x % pi->dx)) {
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for (pi->compno = pi->poc.compno0; pi->compno < pi->poc.compno1; pi->compno++) {
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comp = &pi->comps[pi->compno];
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for (pi->resno = pi->poc.resno0; pi->resno < int_min(pi->poc.resno1, comp->numresolutions); pi->resno++) {
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int levelno;
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int trx0, try0;
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int trx1, try1;
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int rpx, rpy;
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int prci, prcj;
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for (pi->resno = pi->poc.resno0; pi->resno < uint_min(pi->poc.resno1, comp->numresolutions); pi->resno++) {
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OPJ_UINT32 levelno;
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OPJ_INT32 trx0, try0;
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OPJ_INT32 trx1, try1;
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OPJ_UINT32 rpx, rpy;
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OPJ_INT32 prci, prcj;
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res = &comp->resolutions[pi->resno];
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levelno = comp->numresolutions - 1 - pi->resno;
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trx0 = int_ceildiv(pi->tx0, comp->dx << levelno);
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@ -399,10 +399,10 @@ LABEL_SKIP:;
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return OPJ_FALSE;
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}
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static opj_bool pi_next_cprl(opj_pi_iterator_t * pi) {
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opj_bool opj_pi_next_cprl(opj_pi_iterator_t * pi) {
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opj_pi_comp_t *comp = NULL;
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opj_pi_resolution_t *res = NULL;
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long index = 0;
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OPJ_UINT32 index = 0;
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if (!pi->first) {
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comp = &pi->comps[pi->compno];
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@ -412,12 +412,12 @@ static opj_bool pi_next_cprl(opj_pi_iterator_t * pi) {
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}
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for (pi->compno = pi->poc.compno0; pi->compno < pi->poc.compno1; pi->compno++) {
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int resno;
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OPJ_UINT32 resno;
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comp = &pi->comps[pi->compno];
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pi->dx = 0;
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pi->dy = 0;
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for (resno = 0; resno < comp->numresolutions; resno++) {
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int dx, dy;
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OPJ_UINT32 dx, dy;
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res = &comp->resolutions[resno];
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dx = comp->dx * (1 << (res->pdx + comp->numresolutions - 1 - resno));
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dy = comp->dy * (1 << (res->pdy + comp->numresolutions - 1 - resno));
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@ -432,12 +432,12 @@ static opj_bool pi_next_cprl(opj_pi_iterator_t * pi) {
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}
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for (pi->y = pi->poc.ty0; pi->y < pi->poc.ty1; pi->y += pi->dy - (pi->y % pi->dy)) {
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for (pi->x = pi->poc.tx0; pi->x < pi->poc.tx1; pi->x += pi->dx - (pi->x % pi->dx)) {
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for (pi->resno = pi->poc.resno0; pi->resno < int_min(pi->poc.resno1, comp->numresolutions); pi->resno++) {
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int levelno;
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int trx0, try0;
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int trx1, try1;
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int rpx, rpy;
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int prci, prcj;
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for (pi->resno = pi->poc.resno0; pi->resno < uint_min(pi->poc.resno1, comp->numresolutions); pi->resno++) {
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OPJ_UINT32 levelno;
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OPJ_INT32 trx0, try0;
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OPJ_INT32 trx1, try1;
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OPJ_UINT32 rpx, rpy;
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OPJ_INT32 prci, prcj;
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res = &comp->resolutions[pi->resno];
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levelno = comp->numresolutions - 1 - pi->resno;
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trx0 = int_ceildiv(pi->tx0, comp->dx << levelno);
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@ -1173,15 +1173,15 @@ void pi_destroy(opj_pi_iterator_t *pi, opj_cp_t *cp, int tileno) {
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opj_bool pi_next(opj_pi_iterator_t * pi) {
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switch (pi->poc.prg) {
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case LRCP:
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return pi_next_lrcp(pi);
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return opj_pi_next_lrcp(pi);
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case RLCP:
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return pi_next_rlcp(pi);
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return opj_pi_next_rlcp(pi);
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case RPCL:
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return pi_next_rpcl(pi);
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return opj_pi_next_rpcl(pi);
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case PCRL:
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return pi_next_pcrl(pi);
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return opj_pi_next_pcrl(pi);
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case CPRL:
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return pi_next_cprl(pi);
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return opj_pi_next_cprl(pi);
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case PROG_UNKNOWN:
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return OPJ_FALSE;
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}
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@ -44,7 +44,7 @@ by some function in T2.C.
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/*@{*/
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/**
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FIXME: documentation
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FIXME DOC
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*/
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typedef struct opj_pi_resolution {
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int pdx, pdy;
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@ -52,7 +52,7 @@ typedef struct opj_pi_resolution {
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} opj_pi_resolution_t;
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/**
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FIXME: documentation
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FIXME DOC
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*/
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typedef struct opj_pi_comp {
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int dx, dy;
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