// Split line start
static gchar*
begin_split_string (Transaction *trans, Split *split, gboolean t_void, CsvExportInfo *info)
{
    const gchar *str_rec_date;
    const gchar *start;
    gchar       *conv;
    gchar       *result;
    Timespec     ts = {0,0};

    if (xaccSplitGetReconcile (split) == YREC)
    {
        xaccSplitGetDateReconciledTS (split, &ts);
        str_rec_date = gnc_print_date (ts);
    }
    else
        str_rec_date = "";

    if (t_void)
    {
        start = xaccTransGetVoidReason (trans) ? xaccTransGetVoidReason (trans) : "" ;
        conv = csv_txn_test_field_string (info, start);
        result = g_strconcat (info->end_sep, info->mid_sep, info->mid_sep, str_rec_date,
                              info->mid_sep, info->mid_sep, info->mid_sep, info->mid_sep, conv, info->mid_sep, NULL);
        g_free (conv);
    }
    else
         result = g_strconcat (info->end_sep, info->mid_sep, info->mid_sep, str_rec_date,
                               info->mid_sep, info->mid_sep, info->mid_sep, info->mid_sep, info->mid_sep, NULL);

    return result;
}
示例#2
0
static /*@ dependent @*//*@ null @*/ gpointer
get_split_reconcile_state( gpointer pObject )
{
    static gchar c[2];

    g_return_val_if_fail( pObject != NULL, NULL );
    g_return_val_if_fail( GNC_IS_SPLIT(pObject), NULL );

    c[0] = xaccSplitGetReconcile( GNC_SPLIT(pObject) );
    c[1] = '\0';
    return (gpointer)c;
}
// Reconcile
static gchar*
add_reconcile (gchar *so_far, Split *split, CsvExportInfo *info)
{
    const gchar *recon;
    gchar       *conv;
    gchar       *result;

    recon = gnc_get_reconcile_str (xaccSplitGetReconcile (split));
    conv = csv_txn_test_field_string (info, recon);
    result = g_strconcat (so_far, conv, info->mid_sep, NULL);
    g_free (conv);
    g_free (so_far);
    return result;
}
示例#4
0
GtkWidget *
gnc_reconcile_view_new (Account *account, GNCReconcileViewType type,
                       time64 statement_date)
{
    GNCReconcileView *view;
    GtkListStore     *liststore;
    gboolean          include_children, auto_check;
    GList            *accounts = NULL;
    GList            *splits;
    Query            *query;

    g_return_val_if_fail (account, NULL);
    g_return_val_if_fail ((type == RECLIST_DEBIT) ||
                         (type == RECLIST_CREDIT), NULL);

    view = g_object_new (GNC_TYPE_RECONCILE_VIEW, NULL);

    /* Create the list store with 6 columns and add to treeview,
       column 0 will be a pointer to the entry */
    liststore = gtk_list_store_new (6, G_TYPE_POINTER, G_TYPE_STRING,
                G_TYPE_STRING, G_TYPE_STRING, G_TYPE_STRING,  G_TYPE_BOOLEAN );
    gtk_tree_view_set_model (GTK_TREE_VIEW (view), GTK_TREE_MODEL (liststore));
    g_object_unref (liststore);

    view->account = account;
    view->view_type = type;
    view->statement_date = statement_date;

    query = qof_query_create_for (GNC_ID_SPLIT);
    qof_query_set_book (query, gnc_get_current_book ());

    include_children = xaccAccountGetReconcileChildrenStatus (account);
    if (include_children)
        accounts = gnc_account_get_descendants (account);

    /* match the account */
    accounts = g_list_prepend (accounts, account);

    xaccQueryAddAccountMatch (query, accounts, QOF_GUID_MATCH_ANY, QOF_QUERY_AND);

    g_list_free (accounts);

    /* limit the matches to CREDITs and DEBITs only, depending on the type */
    if (type == RECLIST_CREDIT)
        xaccQueryAddValueMatch(query, gnc_numeric_zero (),
                               QOF_NUMERIC_MATCH_CREDIT,
                               QOF_COMPARE_GTE, QOF_QUERY_AND);
    else
        xaccQueryAddValueMatch(query, gnc_numeric_zero (),
                               QOF_NUMERIC_MATCH_DEBIT,
                               QOF_COMPARE_GTE, QOF_QUERY_AND);

    /* limit the matches only to Cleared and Non-reconciled splits */
    xaccQueryAddClearedMatch (query, CLEARED_NO | CLEARED_CLEARED, QOF_QUERY_AND);

    /* Initialize the QueryList */
    gnc_reconcile_view_construct (view, query);

    /* find the list of splits to auto-reconcile */
    auto_check = gnc_prefs_get_bool (GNC_PREFS_GROUP_RECONCILE, GNC_PREF_CHECK_CLEARED);

    if (auto_check)
    {
        time64 statement_date_day_end = gnc_time64_get_day_end(statement_date);
        for (splits = qof_query_run (query); splits; splits = splits->next)
        {
            Split *split = splits->data;
            char recn = xaccSplitGetReconcile (split);
            time64 trans_date = xaccTransGetDate (xaccSplitGetParent (split));

            /* Just an extra verification that our query is correct ;) */
            g_assert (recn == NREC || recn == CREC);

            if (recn == CREC &&
        gnc_difftime (trans_date, statement_date_day_end) <= 0)
        g_hash_table_insert (view->reconciled, split, split);
        }
    }

    /* Free the query -- we don't need it anymore */
    qof_query_destroy (query);

    return GTK_WIDGET (view);
}
示例#5
0
/*******************************************************
 * account_splits
 *
 * gather the splits / transactions for an account and
 * send them to a file
 *******************************************************/
static
void account_splits (CsvExportInfo *info, Account *acc, FILE *fh )
{
    Query   *q;
    GSList  *p1, *p2;
    GList   *splits;
    QofBook *book;

    gchar   *end_sep;
    gchar   *mid_sep;

    q = qof_query_create_for(GNC_ID_SPLIT);
    book = gnc_get_current_book();
    qof_query_set_book (q, book);

    /* Set up separators */
    if (info->use_quotes)
    {
        end_sep = "\"";
        mid_sep = g_strconcat ( "\"", info->separator_str, "\"", NULL);
    }
    else
    {
        end_sep = "";
        mid_sep = g_strconcat ( info->separator_str, NULL);
    }

    /* Sort by transaction date */
    p1 = g_slist_prepend (NULL, TRANS_DATE_POSTED);
    p1 = g_slist_prepend (p1, SPLIT_TRANS);
    p2 = g_slist_prepend (NULL, QUERY_DEFAULT_SORT);
    qof_query_set_sort_order (q, p1, p2, NULL);

    xaccQueryAddSingleAccountMatch (q, acc, QOF_QUERY_AND);
    xaccQueryAddDateMatchTT (q, TRUE, info->csvd.start_time, TRUE, info->csvd.end_time, QOF_QUERY_AND);

    /* Run the query */
    for (splits = qof_query_run(q); splits; splits = splits->next)
    {
        Split       *split;
        Transaction *trans;
        SplitList   *s_list;
        GList       *node;
        Split       *t_split;
        int          nSplits;
        int          cnt;
        gchar       *part1;
        gchar       *part2;
        gchar       *date;
        const gchar *currentSel;
        const gchar *split_amount;

        split = splits->data;
        trans = xaccSplitGetParent(split);
        nSplits = xaccTransCountSplits(trans);
        s_list = xaccTransGetSplitList(trans);

        /* Date */
        date = qof_print_date ( xaccTransGetDate(trans));
        part1 = g_strconcat ( end_sep, date, mid_sep, NULL);
        g_free(date);
        /* Name */
        currentSel = xaccAccountGetName(acc);
        part2 = g_strconcat ( part1, currentSel, mid_sep, NULL);
        g_free(part1);
        /* Number */
        currentSel = gnc_get_num_action(trans, NULL);
        part1 = g_strconcat ( part2, currentSel, mid_sep, NULL);
        g_free(part2);
        /* Description */
        currentSel = xaccTransGetDescription(trans);
        part2 = g_strconcat ( part1, currentSel, mid_sep, NULL);
        g_free(part1);
        /* Notes */
        currentSel = xaccTransGetNotes(trans);
        if (currentSel == NULL)
            part1 = g_strconcat ( part2, mid_sep, NULL);
        else
            part1 = g_strconcat ( part2, currentSel, mid_sep, NULL);
        g_free(part2);
        /* Memo */
        currentSel = xaccSplitGetMemo(split);
        part2 = g_strconcat ( part1, currentSel, mid_sep, NULL);
        g_free(part1);
        /* Category */
        currentSel = xaccSplitGetCorrAccountName(split);
        part1 = g_strconcat ( part2, currentSel, mid_sep, "T", mid_sep, NULL);
        g_free(part2);
        /* Action */
        currentSel =  gnc_get_num_action(NULL, split);
        part2 = g_strconcat ( part1, currentSel, mid_sep, NULL);
        g_free(part1);
        /* Reconcile */
        switch (xaccSplitGetReconcile (split))
        {
        case NREC:
            currentSel = "N";
            break;
        case CREC:
            currentSel = "C";
            break;
        case YREC:
            currentSel = "Y";
            break;
        case FREC:
            currentSel = "F";
            break;
        case VREC:
            currentSel = "V";
            break;
        default:
            currentSel = "N";
        }
        part1 = g_strconcat ( part2, currentSel, mid_sep, NULL);
        g_free(part2);
        /* To with Symbol */
        split_amount = xaccPrintAmount(xaccSplitGetAmount(split), gnc_split_amount_print_info(split, TRUE));
        part2 = g_strconcat ( part1, split_amount, mid_sep, NULL);
        g_free(part1);

        /* From with Symbol */
        part1 = g_strconcat ( part2, "", mid_sep, NULL);
        g_free(part2);

        /* To Number Only */
        split_amount = xaccPrintAmount(xaccSplitGetAmount(split), gnc_split_amount_print_info(split, FALSE));
        part2 = g_strconcat ( part1, split_amount, mid_sep, NULL);
        g_free(part1);

        /* From Number Only */
        part1 = g_strconcat ( part2, "", mid_sep, "", mid_sep, "", end_sep, "\n", NULL);
        g_free(part2);

        /* Write to file */
        if (!write_line_to_file(fh, part1))
        {
            info->failed = TRUE;
            break;
        }
        g_free(part1);

        /* Loop through the list of splits for the Transcation */
        node = s_list;
        cnt = 0;
        while ( (cnt < nSplits) && (info->failed == FALSE))
        {
            t_split = node->data;

            /* Start of line */
            part1 = g_strconcat ( end_sep, mid_sep, mid_sep, mid_sep, mid_sep, mid_sep, NULL);

            /* Memo */
            currentSel = xaccSplitGetMemo(t_split);
            part2 = g_strconcat ( part1, currentSel, mid_sep, NULL);
            g_free(part1);

            /* Account */
            currentSel = xaccAccountGetName( xaccSplitGetAccount(t_split));
            part1 = g_strconcat ( part2, currentSel, mid_sep, "S", mid_sep, NULL);
            g_free(part2);

            /* Action */
            currentSel = gnc_get_num_action(NULL, t_split);
            part2 = g_strconcat ( part1, currentSel, mid_sep, NULL);
            g_free(part1);

            /* Reconcile */
            switch (xaccSplitGetReconcile (split))
            {
            case NREC:
                currentSel = "N";
                break;
            case CREC:
                currentSel = "C";
                break;
            case YREC:
                currentSel = "Y";
                break;
            case FREC:
                currentSel = "F";
                break;
            case VREC:
                currentSel = "V";
                break;
            default:
                currentSel = "N";
            }
            part1 = g_strconcat ( part2, currentSel, mid_sep, NULL);
            g_free(part2);

            /* From / To with Symbol */
            split_amount = xaccPrintAmount(xaccSplitGetAmount(t_split), gnc_split_amount_print_info(t_split, TRUE));
            if (xaccSplitGetAccount(t_split) == acc)
                part2 = g_strconcat ( part1,  split_amount, mid_sep, mid_sep, NULL);
            else
                part2 = g_strconcat ( part1, mid_sep, split_amount, mid_sep, NULL);
            g_free(part1);

            /* From / To Numbers only */
            split_amount = xaccPrintAmount(xaccSplitGetAmount(t_split), gnc_split_amount_print_info(t_split, FALSE));
            if (xaccSplitGetAccount(t_split) == acc)
                part1 = g_strconcat ( part2,  split_amount, mid_sep, mid_sep, NULL);
            else
                part1 = g_strconcat ( part2, mid_sep, split_amount, mid_sep, NULL);
            g_free(part2);

            /* From / To - Share Price / Conversion factor */
            split_amount = xaccPrintAmount(xaccSplitGetSharePrice(t_split), gnc_split_amount_print_info(t_split, FALSE));
            if (xaccSplitGetAccount(t_split) == acc)
                part2 = g_strconcat ( part1,  split_amount, mid_sep, end_sep, "\n", NULL);
            else
                part2 = g_strconcat ( part1, mid_sep, split_amount, end_sep, "\n", NULL);
            g_free(part1);

            if (!write_line_to_file(fh, part2))
                info->failed = TRUE;

            g_free(part2);
            cnt++;
            node = node->next;
        }
    }
    g_free(mid_sep);
    qof_query_destroy (q);
    g_list_free( splits );
}
示例#6
0
gboolean
gnc_tree_util_split_reg_rotate (GncTreeViewSplitReg *view, GtkTreeViewColumn *col, Transaction *trans, Split *split)
{
    GtkCellRenderer *cr0 = NULL;
    GList *renderers;
    ViewCol viewcol;

    // Get the first renderer, it has the view-column value.
    renderers = gtk_cell_layout_get_cells (GTK_CELL_LAYOUT (col));
    cr0 = g_list_nth_data (renderers, 0);
    g_list_free (renderers);

    viewcol = GPOINTER_TO_INT (g_object_get_data (G_OBJECT (cr0), "view_column"));

    if (viewcol == COL_RECN)
    {
        const char recn_flags[] = {NREC, CREC, 0}; // List of reconciled flags
        const gchar *flags;
        const gchar *text;
        gchar *this_flag;
        gint index = 0;
        char rec;

        flags = recn_flags;

        text = g_strdup_printf("%c", xaccSplitGetReconcile (split));

        /* Find the existing text in the list of flags */
        this_flag = strstr (flags, text);

        if (this_flag != NULL && *this_flag != '\0')
        {
            /* In the list, choose the next item in the list
               (wrapping around as necessary). */
            index = this_flag - flags;

            if (flags[index + 1] != '\0')
                index = index + 1;
            else
                index = 0;

            rec = recn_flags[index];
        }
        else
            rec = NREC;

        gnc_tree_view_split_reg_set_dirty_trans (view, trans);
        if (!xaccTransIsOpen (trans))
            xaccTransBeginEdit (trans);

        xaccSplitSetReconcile (split, rec);
        return TRUE;
    }

    if (viewcol == COL_TYPE)
    {
        const char type_flags[] = {TXN_TYPE_INVOICE, TXN_TYPE_PAYMENT, 0}; // list of type flags
        const gchar *flags;
        const gchar *text;
        gchar *this_flag;
        gint index = 0;
        char type;

        flags = type_flags;

        text = g_strdup_printf("%c", xaccTransGetTxnType (trans));

        /* Find the existing text in the list of flags */
        this_flag = strstr (flags, text);

        if (this_flag != NULL && *this_flag != '\0')
        {
            /* In the list, choose the next item in the list
               (wrapping around as necessary). */
            index = this_flag - flags;

            if (flags[index + 1] != '\0')
                index = index + 1;
            else
                index = 0;

            type = type_flags[index];
        }
        else
            type = TXN_TYPE_NONE;

        gnc_tree_view_split_reg_set_dirty_trans (view, trans);
        if (!xaccTransIsOpen (trans))
            xaccTransBeginEdit (trans);

        xaccTransSetTxnType (trans, type);
        return TRUE;
    }
    return FALSE;
}
static const char*
equals_node_val_vs_split_internal (xmlNodePtr node, Split* spl)
{
    xmlNodePtr mark;

    for (mark = node->children; mark != NULL; mark = mark->next)
    {
        if (g_strcmp0 ((char*)mark->name, "split:id") == 0)
        {
            GncGUID* id = dom_tree_to_guid (mark);

            if (!guid_equal (id, xaccSplitGetGUID (spl)))
            {
                g_free (id);
                return "ids differ";
            }
            g_free (id);
        }
        else if (g_strcmp0 ((char*)mark->name, "split:memo") == 0)
        {
            char* memo = dom_tree_to_text (mark);

            if (g_strcmp0 (memo, xaccSplitGetMemo (spl)) != 0)
            {
                g_free (memo);
                return "memos differ";
            }
            g_free (memo);
        }
        else if (g_strcmp0 ((char*)mark->name, "split:reconciled-state") == 0)
        {
            char* rs = dom_tree_to_text (mark);

            if (rs[0] != xaccSplitGetReconcile (spl))
            {
                g_free (rs);
                return "states differ";
            }
            g_free (rs);
        }
        else if (g_strcmp0 ((char*)mark->name, "split:value") == 0)
        {
            gnc_numeric* num = dom_tree_to_gnc_numeric (mark);
            gnc_numeric val = xaccSplitGetValue (spl);

            if (!gnc_numeric_equal (*num, val))
            {
                g_free (num);
                return g_strdup_printf ("values differ: %" G_GINT64_FORMAT "/%"
                                        G_GINT64_FORMAT " v %" G_GINT64_FORMAT
                                        "/%" G_GINT64_FORMAT,
                                        (*num).num, (*num).denom,
                                        val.num, val.denom);
            }
            g_free (num);
        }
        else if (g_strcmp0 ((char*)mark->name, "split:quantity") == 0)
        {
            gnc_numeric* num = dom_tree_to_gnc_numeric (mark);
            gnc_numeric val = xaccSplitGetAmount (spl);

            if (!gnc_numeric_equal (*num, val))
            {
                return g_strdup_printf ("quantities differ under _equal: %"
                                        G_GINT64_FORMAT "/%" G_GINT64_FORMAT
                                        " v %" G_GINT64_FORMAT "/%"
                                        G_GINT64_FORMAT,
                                        (*num).num, (*num).denom,
                                        val.num, val.denom);
            }
            if (!gnc_numeric_equal (*num, val))
            {
                g_free (num);
                return g_strdup_printf ("quantities differ: %" G_GINT64_FORMAT
                                        "/%" G_GINT64_FORMAT " v %"
                                        G_GINT64_FORMAT "/%" G_GINT64_FORMAT,
                                        (*num).num, (*num).denom,
                                        val.num, val.denom);
            }
            g_free (num);
        }
        else if (g_strcmp0 ((char*)mark->name, "split:account") == 0)
        {
            GncGUID* id = dom_tree_to_guid (mark);
            Account* account = xaccSplitGetAccount (spl);

            if (!guid_equal (id, xaccAccountGetGUID (account)))
            {
                g_free (id);
                return "accounts differ";
            }
            g_free (id);
        }
    }
    return NULL;
}
示例#8
0
static xmlNodePtr
split_to_dom_tree(const gchar *tag, Split *spl)
{
    xmlNodePtr ret;

    ret = xmlNewNode(NULL, BAD_CAST tag);

    xmlAddChild(ret, guid_to_dom_tree("split:id", xaccSplitGetGUID(spl)));

    {
        char *memo = g_strdup (xaccSplitGetMemo(spl));

        if (memo && g_strcmp0(memo, "") != 0)
        {
            xmlNewTextChild(ret, NULL, BAD_CAST "split:memo",
			    checked_char_cast (memo));
        }
	g_free (memo);
    }

    {
        char *action = g_strdup (xaccSplitGetAction(spl));

        if (action && g_strcmp0(action, "") != 0)
        {
            xmlNewTextChild(ret, NULL, BAD_CAST "split:action",
			    checked_char_cast (action));
        }
	g_free (action);
    }

    {
        char tmp[2];

        tmp[0] = xaccSplitGetReconcile(spl);
        tmp[1] = '\0';

        xmlNewTextChild(ret, NULL, BAD_CAST "split:reconciled-state",
			BAD_CAST tmp);
    }

    add_timespec(ret, "split:reconcile-date",
                 xaccSplitRetDateReconciledTS(spl), FALSE);

    add_gnc_num(ret, "split:value", xaccSplitGetValue(spl));

    add_gnc_num(ret, "split:quantity", xaccSplitGetAmount(spl));

    {
        Account * account = xaccSplitGetAccount (spl);

        xmlAddChild (ret, guid_to_dom_tree("split:account",
                                           xaccAccountGetGUID (account)));
    }
    {
        GNCLot * lot = xaccSplitGetLot (spl);

        if (lot)
        {
            xmlAddChild (ret, guid_to_dom_tree("split:lot",
                                               gnc_lot_get_guid(lot)));
        }
    }
    {
        xmlNodePtr kvpnode = kvp_frame_to_dom_tree("split:slots",
                             xaccSplitGetSlots(spl));
        if (kvpnode)
        {
            xmlAddChild(ret, kvpnode);
        }
    }

    return ret;
}
示例#9
0
 char getReconcile() const { return xaccSplitGetReconcile(get()); }
示例#10
0
void
gnc_autoclear_window_ok_cb (GtkWidget *widget,
                            AutoClearWindow *data)
{
    GList *node, *nc_list = 0, *toclear_list = 0;
    gnc_numeric toclear_value;
    GHashTable *sack;

    gtk_label_set_text(data->status_label, _("Searching for splits to clear ..."));

    /* Value we have to reach */
    toclear_value = gnc_amount_edit_get_amount(data->end_value);
    toclear_value = gnc_numeric_convert(toclear_value, xaccAccountGetCommoditySCU(data->account), GNC_HOW_RND_NEVER);

    /* Extract which splits are not cleared and compute the amount we have to clear */
    for (node = xaccAccountGetSplitList(data->account); node; node = node->next)
    {
        Split *split = (Split *)node->data;
        char recn;
        gnc_numeric value;

        recn = xaccSplitGetReconcile (split);
        value = xaccSplitGetAmount (split);

        if (recn == NREC)
            nc_list = g_list_append(nc_list, split);
        else
            toclear_value = gnc_numeric_sub_fixed(toclear_value, value);
    }

    /* Pretty print information */
    PINFO("Amount to clear: %s\n", gnc_numeric_to_string(toclear_value));
    PINFO("Available splits:\n");
    for (node = nc_list; node; node = node->next)
    {
        Split *split = (Split *)node->data;
        gnc_numeric value = xaccSplitGetAmount (split);
        PINFO("  %s\n", gnc_numeric_to_string(value));
    }

    /* Run knapsack */
    /* Entries in the hash table are:
     *  - key   = amount to which we know how to clear (freed by GHashTable)
     *  - value = last split we used to clear this amount (not managed by GHashTable)
     */
    PINFO("Knapsacking ...\n");
    sack = g_hash_table_new_full (ght_gnc_numeric_hash, ght_gnc_numeric_equal, g_free, NULL);
    for (node = nc_list; node; node = node->next)
    {
        Split *split = (Split *)node->data;
        gnc_numeric split_value = xaccSplitGetAmount(split);

        GList *node;
        struct _sack_foreach_data_t data[1];
        data->split_value = split_value;
        data->reachable_list = 0;

        PINFO("  Split value: %s\n", gnc_numeric_to_string(split_value));

        /* For each value in the sack, compute a new reachable value */
        g_hash_table_foreach (sack, sack_foreach_func, data);

        /* Add the value of the split itself to the reachable_list */
        data->reachable_list = g_list_append(data->reachable_list, g_memdup(&split_value, sizeof(gnc_numeric)));

        /* Add everything to the sack, looking out for duplicates */
        for (node = data->reachable_list; node; node = node->next)
        {
            gnc_numeric *reachable_value = node->data;
            Split *toinsert_split = split;

            PINFO("    Reachable value: %s ", gnc_numeric_to_string(*reachable_value));

            /* Check if it already exists */
            if (g_hash_table_lookup_extended(sack, reachable_value, NULL, NULL))
            {
                /* If yes, we are in trouble, we reached an amount using two solutions */
                toinsert_split = NULL;
                PINFO("dup");
            }
            g_hash_table_insert (sack, reachable_value, toinsert_split);
            PINFO("\n");
        }
        g_list_free(data->reachable_list);
    }

    /* Check solution */
    PINFO("Rebuilding solution ...\n");
    while (!gnc_numeric_zero_p(toclear_value))
    {
        gpointer psplit = NULL;

        PINFO("  Left to clear: %s\n", gnc_numeric_to_string(toclear_value));
        if (g_hash_table_lookup_extended(sack, &toclear_value, NULL, &psplit))
        {
            if (psplit != NULL)
            {
                /* Cast the gpointer to the kind of pointer we actually need */
                Split *split = (Split *)psplit;
                toclear_list = g_list_prepend(toclear_list, split);
                toclear_value = gnc_numeric_sub_fixed(toclear_value,
                                                      xaccSplitGetAmount(split));
                PINFO("    Cleared: %s -> %s\n",
                      gnc_numeric_to_string(xaccSplitGetAmount(split)),
                      gnc_numeric_to_string(toclear_value));
            }
            else
            {
                /* We couldn't reconstruct the solution */
                PINFO("    Solution not unique.\n");
                gtk_label_set_text(data->status_label, _("Cannot uniquely clear splits. Found multiple possibilities."));
                return;
            }
        }
        else
        {
            PINFO("    No solution found.\n");
            gtk_label_set_text(data->status_label, _("The selected amount cannot be cleared."));
            return;
        }
    }
    g_hash_table_destroy (sack);

    /* Show solution */
    PINFO("Clearing splits:\n");
    for (node = toclear_list; node; node = node->next)
    {
        Split *split = node->data;
        char recn;
        gnc_numeric value;

        recn = xaccSplitGetReconcile (split);
        value = xaccSplitGetAmount (split);

        PINFO("  %c %s\n", recn, gnc_numeric_to_string(value));

        xaccSplitSetReconcile (split, CREC);
    }
    if (toclear_list == 0)
        PINFO("  None\n");

    /* Free lists */
    g_list_free(nc_list);
    g_list_free(toclear_list);

    /* Close window */
    gtk_widget_destroy(data->window);
    g_free(data);
}
static xmlNodePtr
split_to_dom_tree (const gchar* tag, Split* spl)
{
    xmlNodePtr ret;

    ret = xmlNewNode (NULL, BAD_CAST tag);

    xmlAddChild (ret, guid_to_dom_tree ("split:id", xaccSplitGetGUID (spl)));

    {
        char* memo = g_strdup (xaccSplitGetMemo (spl));

        if (memo && g_strcmp0 (memo, "") != 0)
        {
            xmlNewTextChild (ret, NULL, BAD_CAST "split:memo",
                             checked_char_cast (memo));
        }
        g_free (memo);
    }

    {
        char* action = g_strdup (xaccSplitGetAction (spl));

        if (action && g_strcmp0 (action, "") != 0)
        {
            xmlNewTextChild (ret, NULL, BAD_CAST "split:action",
                             checked_char_cast (action));
        }
        g_free (action);
    }

    {
        char tmp[2];

        tmp[0] = xaccSplitGetReconcile (spl);
        tmp[1] = '\0';

        xmlNewTextChild (ret, NULL, BAD_CAST "split:reconciled-state",
                         BAD_CAST tmp);
    }

    add_timespec (ret, "split:reconcile-date",
                  xaccSplitRetDateReconciledTS (spl), FALSE);

    add_gnc_num (ret, "split:value", xaccSplitGetValue (spl));

    add_gnc_num (ret, "split:quantity", xaccSplitGetAmount (spl));

    {
        Account* account = xaccSplitGetAccount (spl);

        xmlAddChild (ret, guid_to_dom_tree ("split:account",
                                            xaccAccountGetGUID (account)));
    }
    {
        GNCLot* lot = xaccSplitGetLot (spl);

        if (lot)
        {
            xmlAddChild (ret, guid_to_dom_tree ("split:lot",
                                                gnc_lot_get_guid (lot)));
        }
    }
    /* xmlAddChild won't do anything with a NULL, so tests are superfluous. */
    xmlAddChild (ret, qof_instance_slots_to_dom_tree ("split:slots",
                                                      QOF_INSTANCE (spl)));
    return ret;
}